Saturday, 15 July 2017

Glass Cleaning Process


 Of the questions I get asked about vehicle detailing the one that is asked most often is on glass cleaning (followed closely by how to care for leather upholstery) BTW 15 to 20% of a car’s surface is glass. 
Looking at glass under a microscope you’ll see that its surface has many peaks and valleys to which water, minerals, and soap residue and environmental contaminates can cling to these pitted surfaces, all of which requires regular cleaning.
Water ‘spots’- there are two categories of water mark (the so-called water spots)
Stage I (Surface) Corrosion [: defined as a surface with light to moderate corrosion damage to the paint surface]
Stage II (Sub-surface) Corrosion [: definition when the dirt/corrosion deposits are no longer on the surface but have started to break down the molecular structure, leaving an etched or white haze on the surface( a concave circular mark ) after the stain has been removed, with moderate to serious paint damage]
 a) Surface water spots- (Stage I Corrosion) alkaline watermarks consist of calcium (Ca) and magnesium (Mg) both of which are basic (alkaline pH 10) that alight on the surface; ultra violet (heat) radiation (UVR) will leave a white ‘water mark’, the minute crystals bond to the surface, they will not wash off as they are insoluble and if left for any length of time they will etch the paint film surface leaving a concave circular mark, remove surface deposits with detailer’s clay and an acetic acid pH 2.0 (vinegar) to naturalise the alkaline

b) Below surface (etched) spots- (Stage II Corrosion ) are caused by an aggressive alkaline or an acidic solution (acid rain, bird excrement or industrial fallout) causing a chemical reaction, if left for any length of time they will etch the paint film surface leaving a concave circular mark. Unlike water spots which typically have a white outline of the spot, acid rain etching is smaller and you can see the damage in the clear coat.

Ratings for Different Types of Windshields on the Mohs Scale Windshields are a crucial piece of safety equipment on aircraft, cars, buses and other vehicles. Aerodynamically designed, windshields typically consist of an inner cellulose layer covered by two layers of glass; one on the outside and one on the inside. Since shattered glass from windshields can cause serious injuries or fatalities when a collision occurs, it's important that the vehicle's windshield be strong.

Referring to the Mohs scale is a good way to discern the relative toughness of a windshield. There are two main types of windshields: Tempered glass windshields and Laminated safety glass windshields (more common). 
The ratings of these vary on the Mohs scale.

Laminated Safety Glass Windshields
In a laminated windshield, a layer of clear plastic (typically cellulose-based) is blanketed by two standard glass planes. This type of windshield is most common and scores between a 6 and 6.5 on the Mohs scale, making it harder than regular glass (5.5), but not as hard as emerald (7.5). Though this kind scratches somewhat easily, they're designed well. When the windshield breaks in a collision, the interior plastic layer holds the glass shards, protecting the driver and passenger from getting cut.

Tempered Glass Windshields
Are heat-treated to harden the glass surface (on the outside, not inside) and enhance scratch resistance, tempered glass windshields are harder than laminated varieties, rating a 7 on the Mohs scale. The tempering also has another effect; when the glass breaks, it's designed to shatter into tiny chunks instead of big jagged pieces. This decreases the likelihood of serious injuries.

Rock chips
These micro-chips are caused by road grit impacting the glass surface, they appear as ‘white spots’ when filled with a wax or polymer sealant. In a recent windshield damage study conducted by the Motor Industry Research Association (MIRA), it was found that; extreme temperatures and structural fatigue will cause existing windshield chips to spread quickly, requiring glass replacement.

Thermal shock occurs when a thermal gradient causes different parts of an object to expand by different amounts, this differential expansion and at some point this stress overcomes the strength of the material, causing a crack to form. If nothing stops this crack from propagating through the material, it will cause the object's structure to fail. This occurs if you wash a cold surface with warm / hot water or conversely a warm / hot surface with cold water Thermal shock can be prevented by reducing the thermal gradient seen by the object ( i.e. by changing its temperature less rapidly)

In cold weather conditions, windshields will develop a more concave shape. As a result, windshield chips and dings are more likely to spread in a horizontal fashion. Chips were likely to spread more than 80 percent of the time at temperatures of 14 degrees (-10° C). Those tested at 32 degrees were nearly 60 percent likely to crack. Warm weather conditions cause windshields chips to spread more vertically. The same study conducted suggested that the heat itself distorts the shape of the windshield glass, which can lead to cracking by itself.

However, it was also found that the cooling effect of the air conditioning unit is likely to set off a crack. Driving over a speed bump, pothole or other uneven terrain can cause a chip to crack. The force radiates through the car and puts additional pressure on the edges of the chip, which can quickly lead to a crack. Although it is not possible to suggest how long it will take for a chip to spread, the study suggests that stressors like weather changes and simple driving will eventually cause or lengthen a windshield crack.

What kind of damages can be repaired?
Many glass polishing products can’t actually remove etched spots, but will thoroughly clean and fill them (Kaolin clay) so they appear virtually invisible. However a windshield repair is a process that uses skill to repair stone damage on a windshield instead of replacing it altogether. Stone damage or stone "chips" up to the size of a quarter, if you can catch your fingernail in the scratch 0.4 Mil (10µ) deep, you should consult a professional auto glass company Best results are obtained when the damage is repaired right away, before contamination occurs from car washing, road grime, or inclement weather.

Once the surface has been washed and cleaned (detailers clay) any minor imperfections can be removed with an abrasive glass polish (CarPro CeriGlass, Autoglym Car Class Polish or Zaino Z-12 Clear-View Glass Polish) These products remove "light" scratches, acid water spots, bird and bug stains, including alkaline mineral deposits, and then smoothes out etched glass (See article “Polishing Glass”

 Windshield Haze or ‘Fog’ (Interior) 
The vinyl used on vehicle dashboards contain diethylhexyl phthalate (DEHP) plasticizers, these low molecular weight compounds maintain semi-rigid vinyl’s flexibility. The vinyl used in modern vehicle interiors vent (out-gassing) these are the plasticizers evaporating (more prevalent on newer vehicles or a dash with freshly applied vinyl dressing) Crack open vehicle windows when parked to allow the gasses to vent and do not use any vinyl protection product for fifteen days or so on a new vehicle. 

Ultra violet (UV-A) heat radiation will also cause the plasticizers to dry out, resulting in a chemical film that when combined with road oils, dirt and grease introduced via by the vehicles AC system or smoker's residue, which results in a stubborn haze or fog that forms a cohesive bond with the interior glass surfaces. 

For severe out gassing or the removal of stubborn grime; spray the glass surface (otherwise you are diluting the product strength) with 1:10 solution distilled water /Isopropyl alcohol and wipe with a clean cloth and the result is a crystal clear finish. You may need to repeat this process Ensure that all cabin fabrics (seats, carpets and mats) are thoroughly dry; otherwise their moisture evaporation will exacerbate the problem 

Glass Cleaning
Looking at glass under a microscope you’ll see that its surface has many peaks and valleys to which water, minerals, surfactants and car wash soap residue and environmental contaminates can cling to these pitted surfaces, all of which requires regular cleaning / removal. A dirty or distorted windshield and/or worn wiper blades are dangerous; 90% of your driving decisions are based on a clear, unobstructed view of the road, it's a critical safety concern that your car's wipers provide you with the cleanest windshield possible. 

Wiper blades should be checked for wear and replaced annually or when showing signs of wear. Dirty windscreens add to the danger when the sun is low. If you can't see, slow down accordingly, keeping an eye on the traffic behind, in case the following vehicle doesn't see you against the sun. As it makes driving safer allowing you to see the road ahead clearly, it enables the glass to defrost even quicker and removes the contaminants that contribute to the oily film on the glass, driving, especially on a dark and rainy night without being able to see through the windshield is to say the least, impairment. 

Ghost’ marks (from suction cups or wiper blades) - factory glass is installed with the help of strong suction cups to assist in its placement, they are lubricated with a special release agent compound, this helps the air suction applied to be broken. 

Unfortunately they often leave marks that are only visible in direct sunlight. These can usually be removed (least abrasive first) a chemical paint cleaner (P21S Paintwork Cleanse) detailer’s clay or a glass polish (Autoglym Car Class Polish or Zaino Z-12 Clear-View Glass Polish) agitation with a soft brush or a terry cloth towel helps to clean out the micro pores of the glass. 

If the above methodology fails to remove them use a diluted Cerium Oxide (CeO20) / distilled water solution Exposure to bugs, road oil and tar, and catalytic converter emissions makes automotive exterior glass cleaning a challenge. The film on the inside of your windows is caused by "out gassing" of the plastic and vinyl components of your interior. Ammonia is harmful to many car surfaces including vinyl, rubber, and leather; there is also a potential danger of becoming asphyxiated without adequate ventilation. A newly detailed vehicles appearance would be ruined with soiled glass surfaces. All it takes to rectify is a little time, the correct method and cleaning products for crystal clear clean glass and plastic. 

The difference clean glass surfaces make to a detailed vehicle is night and day. Put your hand in a plastic sandwich bag and lightly run your fingertips over the windshield's surface. Chances are, it will have a rough, gritty feel, and glass cleaners will not remove this grit. Window cleaning has always presented a challenge for professional and enthusiast detailers, both demand perfection with streak-free, crystal-clear glass. But without using the correct methodology, the correct towel and the correct product required to produce perfectly clear glass surfaces every time 

Application Technique Water in whatever form of filtration / purification is a very good solvent; however on its own it will not dissolve grease, oil, road dirt or the plasticizers that outgas from vinyl. I usually advocate spraying car care products on to a towel and not directly onto the surface being detailed. The exception to this is when cleaning glass, rather than letting the cleaner soak into the towel, which results in insufficient product as a large majority is absorbed by the towel, better results will be achieved by soaking the dirt / grease residue on the glass surface. 

 Use a fine mist directly onto the glass surface, allow to dwell if it starts to dry, re-mist. Glass cleaning products contain a combination of ingredients including alcohol, ammonia, and detergents that will clean, but may also cause steaks. 

Depending on how fast or slow these ingredients evaporate, and their concentration, streaking problems may occur. The residue from these ingredients sometimes dries and evaporates on the glass before they are removed .As with all chemicals they need a certain amount of time to work, so allow area to soak for a few minutes, dry the glass with a clean, dry towel. For each area of glass use the clean side of a folded towel If there is condensation on the glass, use the vehicles heating and / or air conditioning to remove the moisture. Moist cold air and damp towels will exacerbate the moisture making it pretty much impossible to clean glass surfaces. 

Glass Cleaners 
There are dozens of different companies who make glass cleaner. Using alcohol and white vinegar together makes a quickly evaporating glass cleaner 8 oz. isopropyl alcohol (IPA) 8 oz. distilled water 0.25 oz. white vinegar All you need is the right glass cleaner, a glass towel, and the correct technique to get clear, practically invisible glass. For truly clean, streak-free glass, mist one side of the windshield with the glass cleaner of your choice; use the folded towel to wipe up and down the glass in long strokes. Then wipe side to side in long strokes. Flip the towel to the dry side and wipe the glass again in this method. Then move on to the other side of the windshield and on to the rest of the windows. You may not be able to clean it perfectly the first time. Repeat the above process and continue to wipe in long strokes. Always finish by wiping the glass with a dry side of the towel to eliminate streaks. 

Dr Joe dedicated Lint-Free 100% Cotton Surgical Towels, that have a tight cotton herringbone weave and a thread count of 170 per square inch, which is ideal for hard surfaces like glass as they have more ‘grip’ than micro fibre towels and helps to break up the surface debris. Fold the towel in half and then half again. Mist the glass surface with 1:1 ratio of distilled white vinegar and water solution in a spray bottle or Stoners Invisible Glass™ Trigger Spray Bottle. 

Use one towel for product application and one for removal / buffing. In hot, humid weather conditions spray and clean one window at a time Once the glass has been thoroughly cleaned, wipe it dry. Using two clean micro-fibre Waffle Weave towels soak one it in clean water and wring it almost dry. Wipe the glass and then using the other towel dry the glass completely. Once glass surfaces are clean and dry protect it with a sealant or wax. 

 Washing/ Care- reserve two Waffle Weave towels for glass cleaning .Wash these towel with distilled white vinegar (no detergent or fabric softeners) Drying Pattern Use a different drying pattern for interior / exterior glass surfaces (i.e. horizontal for interior and vertical for exterior) utilizing this technique you can easily determine the location of any streaking. A waffle weave towel is excellent when used for this purpose 

 Alternative Products – a)Optimum Glass Towel- that is also lint free and cleans glass without chemicals, making glass cleaner chemicals virtually obsolete, slightly dampen the towel with distilled water and the results will be crystal clear  
b)Ultra-51 Glass Towel- It has no nap, making it very similar to a huck towel but with the added benefit of micro fibre technology – Towels by Dr Joe Washing/ Care - rinse cloth thoroughly or wash prior to first use, always use cloth damp. Simply wet it with water and wring it out well. If you're getting water spots that stay on your surface; you have too much moisture in your cloth. Wash with liquid soap, but do not use fabric softeners, hand or machine wash cloths alone or with lint-free clothing. Bleaching is great for disinfecting the cloth (DO NOT use bleach on Microfiber). 

 Fabric softeners coat the cloth which can cause streaking and can also keep the patented fibres from being able to pull the dirt from your surfaces. Allow to air dry, without any dryer sheets Kitchen paper towels have lanolin in the fibres and will leave streaks. 

Newspaper are currently recycled, and most are formulated with adhesives, which class cleaners will break down leaving a tacky reside and paper ‘lint’ on the glass surface. The inks used and some chemicals can allow ink transfer to the glass. Newspaper inks are now water-based (unlike the older oil-based they will not shine glass) But they will stain your hand black (they dissolve with body heat) so be careful what surfaces you touch after handling newspaper (fabric, leather, plastic, etc.) as they may stain. 

Caution - Do not use products that contain ammonia, as it is very harmful to vinyl, plastic and rubber. It will cause plastic to ‘yellow’ and become clouded and it will also turn Mylar (plastic) window tint purple and may have a negative effect on the adhesive. Some people prefer to use plain water to clean their windows. While this is a very safe method, but water is sometimes not enough of a solvent to cut the protein base of stubborn grease / grime spots (use a 1:10 solution distilled water /Isopropyl alcohol) Side window felt Using a micro fibre towel and an old credit card, dampen the micro fibre with a 1:1 diluted solution of isopropyl alcohol/distilled water and wipe the felt 

 Drying / buffing glass Once the glass surface has been cleaned use a waffle weave micro fibre towel to final clean and polish the glass, when they are wet they’re very soft and super absorbent, and glide easily over the surface, the ‘pockets’ in the weave ‘hold’ any dirt or surface debris unlike some other super absorbing products that trap dirt between the towel and paint surface with the potential to cause serious scratches (never use it when it’s dry as it can potentially scratch) That goes for whatever you use for drying, including cotton towels. To use ensure that the towel is really wet and then wring it out thoroughly before using. 

 Non-Lint Surgical Glass Cleaning Towels Although the name suggests that these towels be used inside operating rooms, surgical huck towels are great for a lot of other detailing uses. Surgical huck towels are made from 100%cotton; they are lint free and have excellent absorption. For cleaning and drying windows, soft enough to polish and finish plated metals; these surgical towels are terrific for removing the cloudy film on windows. Use with a glass microfiber towel for perfect glass. Large sized (16 x 24") Towel care 

Always wash Lint-Free Surgical Towels and any glass cleaning micro fibre towels separately do not use fabric softeners but add a teaspoon per towel distilled white vinegar in place of a softener, the vinegar doesn't coat the fibres but instead works to eliminate detergent residue and the acid counteracts any alkaline minerals in the water supply. 

Vinegar (Acetic acid, pH 2) works well in the rinse cycle to make your towels softer. Detergent is an alkaline (pH 12, the opposite of acidic on the pH scale). 

External Glass 
Use detailer’s clay to remove road debris, brake dust, tar, etc. I would not advocate the use of synthetic steel or brass wool on glass surfaces; the reasons being are that no matter how fine of a grit (even #00000) you use you are actually micro scratching the surface of the glass allowing more spaces for dirt to build and settle where normal washing will not remove it, even though the glass looks super smooth to the naked eye. Grades of steel wool are similar to grit in finishing papers; the finest steel wool is grade #0000 steel wool or 1000 grit 

A better way to clean glass would be to use a Hi-Tech Body Sponge™ this innovative rubber polymer product safely and easily removes water spots, tree sap, rail dust, bugs and other bonded surface contaminants from the surface of automotive glass, mouldings and, may be used with any kind of lubricant and being an abrasive it will also produce a shine. With rubber side down, gently rub Body Sponge on glass using diluted car wash soap as a lubricant 

Glass Protection
 Once external glass surfaces have been cleaned apply an acrylic polymer as a rain repellent / protectant to help keep glass clear and cleaner for longer. Durable windshield and glass coating provides unsurpassed protection and water sheeting to provide clear vision Optimum Opti-Glass Coating forms a durable, cross-linking bond to glass and other silica-based surfaces, providing the utmost in chip, scratch and mar resistance. This coating creates an immense amount of surface tension on glass surfaces that water will simply bead up and roll off at speeds above 35 mph, rendering your windshield wipers virtually unnecessary at highway speeds Rain, sleet, ice and snow will not stick to treated exterior glass surfaces, providing you with a clearer view of the road ahead. 

Optimum Opti-Glass Coating lasts up to a year and is incredibly easy to apply for maximum protection apply the coating first and maintain the protective coating using the Opti-Glass Clean & Protect Directions: Apply within a surface temperature is between 60°-90° F (15°-30°C). Do not apply in direct sunlight. Thoroughly clean surface and use a product to remove bonded contaminants. 

 Polish glass if scratches are present. Before applying, wipe glass down with a 1:15 solution of isopropyl alcohol /distilled water. Spray Opti-Glass directly onto foam applicator pad and apply in an overlapping, circular motion. Allow Opti-Glass to cure for 2 minutes and remove excess with a clean, dry microfiber towel. Alternate Products Klasse All-In-One) Gtechniq G1 Clear Vision Smart Glass 

Relevant Articles

1.“Polishing Glass” - http://www.autopia.org/forum/guide-detailing/137878-polishing-glass.html#post1464140

Friday, 14 July 2017

Personal Protective Equipment (PPE)


PPE is specialised clothing or equipment worn by an employee for protection against a hazard. General work clothes (e.g., uniforms, pants, shirts or blouses) not intended to function as protection against a hazard is not considered to be personal protective equipment.
 For your safety and the legally required protection of employees, you will need to have personal protective equipment available that will include a respirator fitting for you and your employees. At no time should you endanger yourself or others, take any unnecessary risks or infringe any laws. OSHA standards require that employers maintain or improve workplace conditions to protect employees.

Protection from Potential Health Hazards
Wear appropriate personal protective clothing to include: Boots, Chemical resistant gloves, Aprons, No loose fitting clothing or articles that may be caught in moving parts, Avoid belts with buckles that may damage painted surfaces, Avoid sharp objects that may damage leather or fabric upholstery
1. Warning: Always use a ground circuit fault indicator) (GFPI) when using any electrical device around water

2. Eye Protection: I would strongly advise the wearing of safety glasses or visor (prescription eyeglasses are not a substitute) when operating any machine polisher. OSHA requires employers to ensure the safety of all employees in the work environment. Eye and face protection must be provided whenever necessary to protect against chemical, environmental, radiological or mechanical irritants and hazards.

3. Hearing Protection; the constant pitch of a polishing machine could affect your hearing so wearing ear plugs would be wise to protect you from hearing loss. Studies have shown that one-half of workers that wear ear defenders receive half or less of the protection they should. This is because their ear defenders are not worn correctly or continuously due to improper or uncomfortable fit. Ear plugs that are comfortable fit every time and are also easy to use; the result of this is that the user wears them and that they do the job.UK - http://www.ultimateear.com/industrial.php

4. Hand Protection; Gloves- with the verity of chemicals a detailer uses on a daily basis wearing chemical-resistant gloves resist penetration and permeation and will provide protection against dermatitis and chemical burns. Gloves can provide protection, but they must be chosen with care, the proper selection matched to the hazard is critical as they offer a much needed protective barrier when handling cleaning chemicals such as wheel cleaners and 
multipurpose cleaners.

Nitrile gloves are made of synthetic latex. They contain no latex proteins and offer excellent resistance to punctures and tears. Nitrile gloves are three times more puncture resistant than rubber and can be used to offer superior resistance to many types of chemicals.

Chemical-resistant gloves resist penetration and permeation and can protect against dermatitis, chemical burns and corrosion. Nitrile gloves are three times more puncture resistant than latex rubber and can be used to offer superior resistance to many types of chemicals. Unlike other latex gloves, Nitrile gloves have low resistance to friction and are very easy to slide on –
Clove Chemical Resistance Chart - http://www.adenna.com/pdf/ChemicalsResistance.pdf

5. Respiratory Protection (N95): Materials such as aluminium oxide (Aluminium oxide is on EPA's TRI list if it is a fibrous form) or silicon carbide (Nuisance particulate-Accumulation in lungs) used in polishes and compounds, and powdered fillers

Crystalline silica (polishes and compounds) poses a serious inhalation hazard because it can cause silicosis and Isocyanate clear coat residue represent a hazard to your lungs and may cause respiratory distress. Use an NIOSH-approved half face respirator equipped with a combination filter cartridge should be worn while using them

Consult the current 3M Respiratory Selection Guide for additional information or call 1-800-243-4630 for 3M technical assistance.

6. Material Safety Data Sheets:  Use a ring binder or other filing system to ensure the appropriate MSDS is always available to identify hazardous substances

7. Work Hygienic Practices: Rinse gloves under running water before removing them

8. Chemical clean-up: small spillage: absorb spill with an inert absorbent material (e.g. dry sand or kitty litter), then place in a chemical waste container. If liquid has been spilt in large quantities clean up promptly by scoop or vacuum.

9. Protect yourself, work safely. As in all things, allow common sense to prevail and proceed with due caution

Health and Safety Executive (HSE) Control of substances hazardous to health (COSHH) is the UK law that requires employers to control substances that are hazardous to health - http://www.hse

GFCI and Extension Cord
Ground Fault Circuit Interrupter and Extension cord selection is based on two main principles. First, the cable should be able to carry the current load imposed on it without overheating. It should be able to do this in the most extreme conditions of temperature it will encounter during its working life.
Second, it should offer sufficiently sound earthing to (a) limit the voltage to which people are exposed to a safe level and (b) allow the fault current to trip the fuse or MCB in a short time. To meet these requirements requires consideration of the circuit load current (AMPS) a reasonable voltage drop, cable thickness (G) and length (feet) and the over-current protection device

Prime Wire & Cable Duplex GFCI - a residual current device is also known as a ground fault circuit interrupter (GFCI) Junction Box with 6-Ft. cord, Model# GF200806 Portable GFCI duplex receptacle detects power leaks and shuts off electricity in less than a second to prevent shock. Test and reset buttons Tough job site box with 6-ft. 12/3 SJTW power cord UL listed, meets OSHA standards.

Prime Wire & Cable 50-Ft extension 12/3 Neon Power Cord — Blue, Model# NS514830 Bright NEON extension cord stands out for easy identification. 12 Gauge, SJTW, 3 prong cord features super-flexible vinyl jacket with a cold temperature rating of -31°F. LIGHTED connector indicates when power is on. Cord is water and flame resistant and rated at 15 amps, 125V, 1875 watts, UL listed and meets OSHA standards – Northern Tool

Eye Protection
I would strongly advise the wearing of safety glasses or visor (prescription eyeglasses are not a substitute) when operating any machine polisher. Safety glasses are usually made with shatter-resistant plastic lenses to protect the eye from flying debris. Although safety lenses may be constructed from a variety of materials of various impact resistances, certain standards suggest that they maintain a minimum 1-millimetre thickness at the thinnest point, regardless of material.

OSHA requires employers to ensure the safety of all employees in the work environment. Eye and face protection must be provided whenever necessary to protect against chemical, environmental, radiological or mechanical irritants and hazards.

The type of safety eye protection you should wear depends on the hazards in your workplace. If you are working in an area that has particles, flying objects, or dust, you must at least wear safety glasses with side protection (side shields). If you are working with chemicals, you should wear goggles. If you are working near hazardous grinding, welding or abrasive polishing; you must use special-purpose safety glasses, goggles, face shields, or helmets designed for that task.

The Wise Owl Program, sponsored by Prevent Blindness America, has recognised more than 86,000 people who avoided losing their sight in a workplace accident because they were wearing proper eye protection.

Chemical Burns to the Eye
In all cases of eye contact with chemicals:
· Immediately flush the eye with water or any other drinkable liquid. Hold the eye under a faucet or shower, or pour water into the eye using a clean container. Keep the eye open and as wide as possible while flushing. Continue flushing for at least 15 minutes.
· DO NOT use an eyecup.
· If a contact lens is in the eye, begin flushing over the lens immediately. This may wash away the lens.
· DO NOT bandage the eye.
· Seek immediate medical treatment after flushing.
Specks in the Eye
· DO NOT rub the eye
· Try to let tears wash the speck out or use an eyewash.
· Try lifting the upper eyelid outward and down over the lower lid.
· If the speck does not wash out, keep the eye closed, bandage it lightly, and see a doctor

Ear Protection
The constant pitch of a polishing machine could affect your hearing so wearing ear plugs would be wise to protect you from hearing loss. There are mainly two types of earplugs for hearing protection:
1. Foam earplugs, mainly made of memory foam, which is compressed and put into the ear canal, where they expand to plug it.
2. Silicone earplugs, which are rolled into a ball and carefully moulded to fit over the external portion of the ear canal, providing a snug custom fit for the wearer.

Noise Levels dB (A)
What are the occupational exposure limits for workplace noise?

Occupational exposure limits (OELs) for noise are typically given as the maximum duration of exposure permitted for various noise levels.

Level of noise dB (A) Maximum daily exposure
85 8 hours
91 2 hours
95 1 hour
97 0.5 hour
           100 0.25 hour

What is the criterion level? The criterion level, often abbreviated as Lc, is the steady noise level permitted for a full eight-hour work shift. This is 90 dB (A) in most jurisdictions, but in some jurisdictions, it is 85 dB (A).

Hand Protection
Gloves provide a barrier protection; with the verity of chemicals a detailer uses on a daily basis wearing chemical-resistant gloves resist penetration and permeation, and will provide protection against dermatitis and chemical burns. Gloves can provide protection, but they must be chosen with care, the proper selection matched to the hazard is critical as they offer a much needed protective barrier when handling cleaning chemicals such as wheel cleaners and multipurpose cleaners.

Chemical-resistant gloves resist penetration and permeation, and cam protects against dermatitis, chemical burns and corrosion. Nitrile gloves are three times more puncture resistant than latex rubber and can be used to offer superior resistance to many types of chemicals. Unlike other latex gloves, Nitrile gloves have low resistance to friction and are very easy to slide on.

Clove Chemical Resistance Chart - http://www.adenna.com/pdf/ChemicalsResistance.pdf
Nitrile gloves are made of synthetic latex. They contain no latex proteins and offer excellent resistance to punctures and tears. Nitrile gloves are three times more puncture resistant than rubber and can be used to offer superior resistance to many types of chemicals.

Nitrile gloves vary in softness and flexibility Nitrile and latex protective gloves both come in various degrees of thickness, powdered or non-powdered and sterile or non-sterile. Nitrile is favoured by many, primarily because so many people have latex allergies. Nitrile gloves are also more resistant to punctures, making this material suitable for many professions

1. Vinyl gloves have great strength, contain no protein or allergenic proteins, however, they do not offer the same tactile properties as latex or Nitrile
2. Latex gloves, due to their high level of elasticity, comfort and dexterity and fit the user hands very well
3. Latex gloves and vinyl gloves are generally very affordable. Nitrile gloves, polyurethane gloves and other synthetic gloves are usually more costly.

Hand Arm Vibration Syndrome (HAVS)
Hand-arm vibration syndrome causes symptoms in fingers, hands and arms caused by vibrating tools. It used to be called vibration white finger (Raynaud's phenomenon). The name was changed to HAVS as other symptoms may occur in addition to white fingers.

What causes hand-arm vibration syndrome?
It‘s caused by repeated and frequent use of hand-held vibrating tools. For example, power drills, chainsaws, pneumatic drills, etc. It may also be caused by holding or working with machinery that vibrates. It is not clear how vibration causes the condition. It is probably due to slight but repeated injury to the small nerves and blood vessels in the fingers. Over time these may gradually lose some of their function and cause symptoms. Possibly, up to 1 in 10 people who work regularly with vibrating tools may develop HAVS.

The following steps are thought to help prevent HAVS in workers who use vibrating tools:
· Hold tools as loosely as possible, and in varying positions.
· Do not use an excessively tight grip or to use a tool for longer than necessary.
· Ensure that tools are well maintained
· Use the correct counter-balance in oscillating polishers
· Use tools correctly and use the right tool for the job.
· Use ant vibration gloves.
· Take regular breaks of at least 10 minutes, short bursts of work are better than long periods without a break.
· Keep your hands warm.

A medicine called Nifedipine may be prescribed if symptoms of Raynaud's phenomenon are severe. It works by opening up (dilating) the small blood vessels. Some people take Nifedipine regularly, each day, to prevent symptoms. Some people take Nifedipine just during the winter, or just during cold weather spells.

Mechanics (Mechanix) Glove - heavy duty mechanical gloves use a special fabric, unlike leather it breathes offering comfort and non-slip in wet, double padding in the palm for extra protection and a layer of silicon fingers tips giving extra protection.

Anti Vibration (AV) Gloves - the range of gloves available are designed to exceed the rigorous requirements of the ISO Standard 10819 (ANSI S3.4-2002) for the absorption of vibration due to direct hand contact with vibrating equipment, machinery or hand held tools.
AV Glove Liner - can be worn alone or under standard work, gloves to protect against shock and impact, Akton® padding cushions the hand and spreads vibration energy away from the original point of contact, allows complete fingertip dexterity for improved control. Breathable cotton spandex body

Respiratory Protection
Materials such as aluminium oxide (Aluminium oxide is on EPA's TRI list if it is a fibrous form) or silicon carbide (Nuisance particulate-Accumulation in lungs) used in polishes and compounds, and powdered fillers (Crystalline silica poses a serious inhalation hazard because it can cause silicosis) and Isocyanate clear coat residue represent a hazard to your lungs and may cause respiratory distress. Use an NIOSH-approved half face respirator equipped with a combination filter cartridge should be worn while using them

Consult the current 3M Respiratory Selection Guide for additional information or call 1-800-243-4630 for 3M technical assistance.

Bibliography
1. American Conference of Governmental Industrial Hygienists (ACGIH®) publications
2. Occupational Safety and Health Administration (OSHA) Regulations & Compliance Links
3. Handbook of Hearing and the Effects of Noise, K.D. Kryter

Relevant Articles


About the author TOGWT


[Although there is no such thing as perfection; if we work towards perfection hopefully we can achieve excellence] - Vince Lombardi

Allow me introduce myself; I have a background in the physical and chemical sciences earned a Ph.D. (Professional doctorate) and Master's degrees in Chemical Engineering and Biotechnology from Imperial College London and graduated from an MBA program with an MSc Business Administration and Strategy from the London School of Economics. Attended Royal Air Force College (RAFC) Cranwell, graduating with the rank of Flight Lieutenant. With more than four decades in polymer R&D and the chemical and performance coatings industry for both the National Aeronautics and Space Administration (NASA) and Naval Air Systems Command (NAVAIR) utilizing polymer technologies radar scattering materials (RSM)

My style of detailing is Science meets Aesthetics. Science - includes such elements as chemicals, equipment, and knowledge of vehicle surfaces, industry standards, and customer requirements.

Aesthetics - is the activity of combining these elements into the proper application methodologies that produce an aesthetically pleasing outcome for each specific situation. My involvement with aesthetics comes from my interest in Architectural Engineering, however I was given the opportunity to study Chemical Engineering, which became my chosen (thirty year) profession

A little science is useful to understand both the How and Why of detailing and to be of real practical use, a subject like automotive detailing requires a great deal of research, and updating as new products become available. The advent of materials like detailing clay, micro fibre technologies and finely milled micro diminishing abrasives, suitable for ceramic nanotechnology paints are examples of why it’s so important to monitor the industries new products, chemical technologies and ideas that are constantly being introduced, as are the techniques for applying them, hence all of the in-depth articles will be up-dated and revised on a regular basis

Always be willing to learn; because the more you learn, the more you’ll realize what you don’t know. You should never stop learning, and your quest for information should be part of your everyday process. It is said that knowledge is power, with the caveat that it includes access to a reliable information sources. I would like to think that these articles become an asset to anyone who is new to detailing and to professional’s alike, as well as industry experts who seek to advance their knowledge.

I detailed my first vehicle at the age of fourteen (1958) forty plus years later I started to write detailing articles to share my experiences. For about fifteen years or so I started to contribute to various detailing forums answering questions posted by neophyte’s, enthusiasts and professionals alike. My mantra has always been Experience Unshared Knowledge Wasted.

I began detailing Mercedes-Benz / BMW helping out at my Father’s dealership in 1958, where we would spend three or four days or more detailing vehicles, this included paint renovation, leather repair and restoration on both classic automobiles and Concours level vehicles. As well as his Jag collection, which back in the late 50's he used to enter in Concours d’élégance events and as such I’m used to a large number of high-end new and used cars. The one thing I learned (and still have that last 98% to learn, mind you) way back then still holds true today “It’s the surface preparation that makes the difference, not the product”.

Having been involved in detailing some of the world’s finest classic and high-end exotic and luxury automobiles for five decades TOGWT® is the first place both Professional and Enthusiast detailer’s look to for an uncompromising level of commercially unbiased technical and scientific knowledge.

Working closely with the industry’s leading-edge product manufacturers from around the world means the best technology and product advice is available to enable you to care for your automobile.
As a semi-professional detailer with vast knowledge and experience (five plus decades) of detailing to Concours d’élégance level as both entrant and senior judge.

First started detailing in 1958, established a detailing writing / publishing company TOGWT 1980, Autopia Detailing Forum contributor since 2003 and was allocated a section within the forum to post my articles

I believe that knowledge is a fundamental right. What is needed is an open, accessible, public space to access knowledge online. TOGWT Q & A is such a space. To provide Knowledge and share Experience, by a detailer with more than five decade of experience and an advanced degree in Chemical Engineer who is prepared to share his unbiased knowledge to help detailers understand the products that are available and how best to use them

I’ve been providing unbiased opinions that professionals, experienced, enthusiast and neophyte detailer’s use and trust on various leading detailing forums in the United States, UK, Canada, South America, Australia, South Africa, Asia, the Middle East and the EU for about twelve or so years

In the interest of full disclosure, I am in no way affiliated with, employed by, have any vested interest, or in any way receive compensation from the sale or distribution of any of the product lines reviewed or the company that manufactures or markets it. No endorsement of companies or their products mentioned is intended, nor is criticism implied of similar companies or their products if they are omitted.

I have tested and / or used all the products, so the recommendation comes from first-hand knowledge of their use and / or its application methodologies. Any product endorsement is entirely unbiased and means that the product “Does what it says on the tin” A close relationship with readers and a thorough command of the technical and chemical developments that affect detailing have been at the core of my philosophy since 1980.

To be of real practical use; a subject like automotive detailing requires a great deal of research, and updating as new products become available. The advent of materials like detailing clay, microfiber technologies and finely milled micro diminishing abrasives, suitable for ceramic nano-technology paints and nano coatings are examples of why it’s so important to monitor the industries new products, chemical technologies and ideas that are constantly being introduced, as are the techniques for applying them.

Commercially unbiased information written by a detailer with extensive experience allied with a chemical technical background, without the need to meet corporate goals or sales quotas, requires a dynamic learning tool like a website that can be revised and updated as and when needed, these articles are updated and / or revised on an as-needed basis. There is also a facility to seek clarification or ask questions in 'real time'.


Tuesday, 10 January 2017

Ozone Health Effects

Ozone Health Effects

Ozone [: an inorganic molecule with the chemical formula O3
It is a pale blue gas with a distinctively pungent smell. It is an allotrope 02 of oxygen that is much less stable than the diatomic allotrope, breaking down in the lower atmosphere to dioxygen

The Environmental Protection Agency (EPA) has done extensive research of the most credible scientific information available on the effects of ozone and the devices that generate ozone. This can be found at www.epa.gov/iaq/pubs/ozonegen.html.

What is ozone?

Ozone is a molecule composed of three atoms of oxygen. Two atoms of oxygen form the basic oxygen molecule 02— the oxygen we breathe that is essential to life. The third oxygen atom can detach from the ozone molecule, and re-attach to molecules of other substances, thereby altering their chemical composition. It is this ability to react with other substances that forms the basis of manufacturers’ claims.

Why is Ozone Dangerous?

There is no “safe” level of ozone. For many people, even at the 50 parts per billion of ozone allowed by the EPA, exposure far exceeds the tolerance level.Ozone is a potent lung irritant and exposure to elevated levels is a contributor to the exacerbation of lung disease; it is especially dangerous for persons with asthma and other chronic lung diseases, children and the elderly.

Ozone is a tiny molecule which is composed of three oxygen atoms. It is highly reactive which makes it an unstable and potentially toxic gas. Ground-level ozone is considered to be a major component of smog which plagues larger cities during the summertime and has been tied to a variety of potential health risks.

Health Effects of Ozone

The EPA has reported there is a variety of health effects associated with high levels of ozone. This may include decreased lung function, throat irritation, severe asthma symptoms, cough, chest pain, shortness of breath, irritation of lung tissue, and the higher sensitivity to respiratory infection. They went on to note that there were additional risk factors which can perpetuate the side effects of ozone such as undertaking activities which raise breathing rates (such as exercising indoors), certain pre-existing lung diseases, and greater duration of exposure.

Why You Should Avoid Air Purifiers that Produce Ozone

Not only is ozone potentially dangerous to your health, it may not even work at all. Below are four reasons why you should never use an air purifier that produces ozone.

Ozone Generators May Not Work at All
Some manufacturers suggest that ozone will render nearly every chemical contaminant in the home harmless by producing a chemical reaction. This is incredibly misleading because a thorough review of scientific research has shown that in order for many of the dangerous chemicals found indoors to be eliminated the chemical reaction process may take months or even years. Other studies have also (PDF) noted that ozone cannot effectively remove carbon monoxide or from outside. If used at concentrations that do not exceed public health standards, ozone applied to indoor air pollution does not effectively remove viruses, mold, bacteria, or other biological pollutants.

Chemical Reaction Can Be Dangerous
Even if ozone generators were proven to be effective at eliminating these chemicals, there are certain side effects everyone must be aware of. Many of the chemicals ozone reacts to results in a variety of harmful by-products. For example, when ozone was mixed with chemicals from new carpet in a laboratory setting, the ozone reduced many of the chemicals but created a variety of dangerous organic chemicals in the air. While the target chemicals were reduced, the dangerous byproducts rendered the process moved.

Ozone Generators Do Not Remove Particulates
A third factor to consider when looking at ozone generators is that they do not remove particulates such as dust or pollen from the air. This includes the particles which are primarily responsible for allergic reactions. To combat this, some ozone generators include an ionizer which disperses negatively charged ions into the air. In recent analysis’s, this process was found to be less competent in the removal of air-borne molecules of dust, smoke, pollen, and mold spores than HEPA filters and electrostatic precipitators.

It Is Impossible to Predict Exposure Levels
The EPA notes that it is increasingly difficult to determine the actual concentration of ozone produced by an ozone generator because so many different factors come into play. Concentrations will be higher if more powerful devices used in smaller spaces.

Whether or not the interior doors are closed rather than open will affect concentrations as well. Additional factors which affect concentration levels include how many materials and furnishings are in the room to react with ozone, the level of outdoor air ventilation, and the proximity of a person to the ozone generating device.

Summery

Available scientific evidence shows that, at concentrations that do not exceed public health standards, ozone is generally ineffective at controlling indoor air pollution. In the process of reacting with chemicals indoors, ozone can produce other chemicals that themselves can be irritating and corrosive.

An odour is an invisible gas, and so it can permeate any material or crevice. Many odours are caused by micro-organisms such as bacteria, mould, and mildew. Ozone generators will not eliminate particulates, such as dust, pollen, mold spores, bacteria, pet dander, and other allergens.

Relevent Articles


2. Mould (Mold) Remediation - http://togwt1980.blogspot.co.uk/2015/09/mould-mold-removal-and-remediation.html