Thursday, 10 January 2013

e-weldone Newsletter - Dec 2012

e-Weldone Newsletter October  2011 Vol. 39
Product Update
GMAW PROCESS FOR ALUMINIUM WELDING
An Overview
Aluminum and its alloys can be welded by MMAW, TIG as well as MIG welding. Choice of process is decided by technical and economical factors. Welding of aluminum by Gas Metal Arc Welding for aluminium is very critical and requires special attention for wire feeding. Application of MIG welding is in all types of aluminum fabrication structures. To understand MIG welding with aluminum electrode we must study properties of aluminum and complete wire feeding system along with its effect on wire feeding.

Aluminum is a reactive metal and forms an oxide film on being exposed. It is important that aluminum oxide film is removed before commencing welding, preferably with a stainless steel wire brush.
ATTRIBUTES
MILD STEEL
ALUMINIUM
SIGNIFICANCE
Density gms/cc7.852.7Al is approximately 3 times lighter than steel
Thermal conductivity26 to 37.5136Al conducts heat 5 times faster than steel wire
Melting temperature ⁰F/C2550
1539
1220
660
Al melts at lower temperature
Young’s modulus
Gpa, (Giga pascal)
21070Al is 3 times more ductile. It is a measure of stiffness. So feeding of Al wire is difficult as its columnar strength is low.
Some aluminum electrode wire specifications are as follows.
(Reference from data sheets.)
ER 4043:
  • Silicon content: 5 %
  • Tensile strength: 29000 psi
  • Good puddle control
  • Good bead appearance
ER 5356:
  • Magnesium content: 5 %
  • Tensile strength: 38000 psi
  • Good puddle control
  • It offers corrosion resistance when exposed to salt water.
  • Feeding is better than ER 4043 due to high columnar strength.
To study welding procedure with Al electrode we will study complete wire feeding system and its set up. Wire feeding system consists of following components:
  • wire spool
  • drive rolls
  • torch
  • liner
  • contact tip
WIRE SPOOL:
Normally diameter of spool is 300 mm and weight of complete Al electrode spool is around 6.5 Kg. There is brake setting provided on wire feeder hub. The brake setting of spool should be such that, while stopping spool should not be free wheeling as well as it should not be too tight. If brake is loose then wire will come out and tangle, if brake is too tight wire may slip on roller and there will be extra load on wire feed motor.
DRIVE ROLLERS:
For aluminum electrode wire, rollers with‘U’type groove are adequate. Select proper size of groove as per wire diameter. ‘U’ types grooves are used to avoid sharp edges (‘V’ groove) which shaves off soft aluminium wire.

Once wire is shaved off, it changes shape and creates feeding problem through contact tip. During feeding wire from spool to roller and roller to torch, unsupported wire should be avoided. Unsupported wire has tendency to buckle; even small resistance is experienced by moving wire.

If possible use inlet and outlet guides fabricated out of nylon 66 or Teflon material. This material helps soft aluminium wire against deformation and prevents abrasion.
Tension on drive roll should be less as compared to what we apply in case of solid steel wire to avoid crushing of soft Al wire. The burr produced due to crushing accumulates in torch liner and obstructs feeding.
TORCH:
Problems with standard torch:

Standard torches with either EURO connection or standard connection are unable to give satisfactory performance for Al welding with 0.8 and 1.2 mm diameter wire due to following reasons.
  1. The columnar strength of Al wire is 33 % that of steel wire which makes it difficult to keep its column while traveling through torch liner and tend to buckle even with small friction and obstacle along the path.
  2. Any bend in the torch, created by welder during welding, disturbs wire feeding and results into wire burning at contact tip due to birds nesting at drive rolls.
  3. Excessive pressure on wire deforms the shape of wire and creates erratic wire feeding.
Suitability of standard torch:
Standard torch with 3 meter or 4 meter length can be used for 1.6 mm and above Al
wire of grade 5356 by keeping torch straight. It is preferable to use 4 roll drive mechanism to ensure gentle pressure on wire. All other accessories such as ‘U’ groove rollers, Teflon liner and proper contact tip must be used to get trouble free welding. 
PUSH PULL TORCH:
To feed 0.8 mm and 1.2 mm Al wire we should use push pull torch for satisfactory welding. More ever these torches can be feed all diameters and all grades of aluminum.We can get these torches in 4, 6, 8, 10 meter length as per customer requirement.
FUNCTION OF PUSH PULL TORCH:  
A push pull torch has following main components
  • Euro connector
  • Gas passage
  • Torch current cable
  • Liner
  • Contact tip
  • Pull motor with rollers
  • Torch neck
Out of these components liner, pull motor with roller, contact tip, torch neck, drive rolls of push wire feeders are main parts for push pull torch.
PULL MOTOR WITH ROLLER:
Wire is pushed by conventional wire feeder and simultaneously pulled by pull motor. Pull motor is located in torch handle. This arrangement avoids friction in liner while feeding wire from spool to contact tip. As per load pull motor matches linear speed to main wire feed motor. Pull motor behaves as take up motor. It takes wire from push motor and delivers to weld puddle through inbuilt drive roll and contact tip.
Voltage rating of pull motor is generally 24 v dc or 42 v dc and supplied through power source.
LINER: 
Aluminum is softer than steel and hence Teflon liner is preferred to reduce frictionbetween Al wire and Teflon material. Teflon liner offers less friction to Al wire as compared to steel liner and so wire feeding is smooth. Teflon has low coefficient of friction and it gives slippery feel to wire. This is why it is used for feeding of Al wire. 
CONTACT TIP:
As Al has more thermal expansion than steel, bore of contact tip should be higher by 10 to 20 % to accommodate expanded Al wire. Otherwise during welding tip and wire gets heated and it results into erratic welding due to irregular wire feeding.
SWAN NECK:
The neck of gun is usually bent by 45 to 30 degrees so that wire travels smoothly up to weld puddle through contact tip. Neck with 360 degrees swiveling angle is best for all position welding.
SHIELDING GASES:
  1. Pure argon
  2. Pure helium
  3. Argon helium mixture
RECOMMENDATIONS:
  1. Use Argon or Helium or mixture of both as shielding gas for Al welding
  2. Polarity: DC +
  3. Use pulsed MIG equipment for better welding in difficult positions like vertical welding.
  4. Stick out more than 15 mm. (spray mode welding)
  5. Al has higher melting rate, so requires higher wire speed.
  6. As thermal conductivity is high, travel speed should be more
    Typical setup of GMAW process for Aluminum welding with Pushpull Torch.
  7. Use forehand welding techniques to ensure shielding gas is ahead of welding arc.
  8. Up to 250 ampere, use gas cooled torch; above 250 ampere use water cooled torch.
  9. Use push pull torch for 0.8 and 1.2 mm Al wire.
  10. Contact tip with higher bore size.
  11. ‘U’ groove rollers
  12. Teflon liner
For assistance in selection of welding equipment as well as precautions to be followed for defect free welding of Aluminum and its alloys, please  write to cmo@adorians.comor visit www.adorwelding.com
  • Most reliable and dependable thyristor based power source for high quality MIG/MAG semiautomatic manual and semiautomatic mechanised
    welding applications
  • Hexa phase, full wave full control bridge rectification circuit reduces ripple in the welding output - resulting spatterfree welding
read more
  • It has a very special coating and high melting rate. To avoid burn-through and excessive spattering, keep the arc as short as possible.
read more
Visit our Stand No. SSB 301
at 
ARABIA ESSEN WELDING & CUTTING 2013 during 
7th -10th  Jan 2013
 at Dubai, UAE.
  • KING TIGER
    Portable Gas Cutting Machine
  • KING JOIN - AGWT / HT-1
    Gas Heating Torch
  • KING PANTHER
    Portable Gas Cutting Machine
read more
  • KING COOL - 600 AMPS - Medium Duty
  • KING SWORD - 600 AMPS - Heavy Duty
  • HEAVY DUTY EARTHING CLAMP - 600 AMPS
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  • KING SHIELD - HEAD
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  • ADOR Welding HAND GLOVES
  • ADOR SAFETY FOOTWEAR
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Service Clinics
During the Month of
November2012
  • M/S CHETTINAD CEMENTS - ARIYALUR - COIMBATORE AO.- 4 Nos.
  • M/S MANISH FOUNDARIES PVT LTD - DINDUGUL- COIMBATORE AO. - 7 Nos.
  • M/S NARMADA CEMENT, JAFARABAD RAJULA - AHMEDABAD AO. - 17 Nos.
  • M/S ATUL AUTO LTD, RAJKOT-AHMEDABAD AO. - 40 Nos.
Ador Welding Academy (AWA)
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Create New Welders and
Upgrade Skills of Existing Welders
www.adorwelding.com
cmo@adorians.com

Wednesday, 5 December 2012

e-Weldone Newsletter - Nov 2012

e-Weldone Newsletter October  2011 Vol. 39
Product Update
KINGBOND - KING OF E 6013 ELECTRODES
An Overview
In a developed economy, per capita consumption of steel is about 300 kg / person / year. When a country is in infrastructure creation mode, the consumption goes up even to 1,000 kg / person / year and finally may stabilize at around 300 kg. The per capita steel consumption reported for China is 220 kg and that for South Korea is as high as 950 kg presently. India's steel consumption is 35 kg / person / year at present. This indicates the potential for growth for steel consumption in our country.  In 2010-11, India produced around 78 Million tonnes of steel from both primary and secondary producers. Using the empirical formula of 0.5 kg of weld per ton of steel means 39 million tonnes of weld. Out of these 27 million tonnes of weld would be by manual Metal Arc Welding and the rest by continuous welding. This gives an approximate requirement figure of 40 million tonnes after accounting for stub losses of manual welding electrodes, out of which about 30 million tonnes of General Purpose Mild Steel electrodes and the rest by special purpose electrodes. This gives an indication of the potential for E 6013 electrodes.
Why the need for a new E 6013 type of electrode?
Most of the traditional electrodes available are meant for specific applications – we need to choose correct type depending on the application. Some examples are described below:
  • If welding with AC power source is good, then there is no low OCV performance.
  • When we get good weld bead finish, then we can not do smooth vertical down welding.
  • When there is welder’s appeal, then there is no weld toughness.
  • If we get good slag detachability then the spatter loss is high.
There was a need to combine many of the above conflicting requirements into one single electrode.
Kingbond has been designed keeping the above points in mind.
Kingbond – Special Features:
  • It can be operated on AC, DCEP, DCEN i.e. on Transformer, Rectifier & Generator.
  • It can also be operated at voltage as low as 55 V OCV - hence even local make transformers can be used for welding Kingbond.
  • With very smooth arc, the metal transfer across the arc is smooth. This result in least spatter – more deposit and less work to remove spatter - higher value for money.
  • Due to soft arc, poor fit up of edges can be easily managed even in light sheet metals without any defects like burn through, undercuts etc.
  • As the arc is very stable, the skill required for the welder is low.
  • Fast freezing slag enables easy vertical down welding.
  • The “Cup Depth” is less compared to most of the electrodes in this class – this makes the arc re-stricking by short circuit mode much easier – This makes repeated welding of small beads or spot welds so much easier.
  • Excellent self peeling slag– less trouble with deslagging resulting in higher productivity and better quality weld.
  • The weld bead obtained is fine rippled and smooth - extra surface dressing is not required.
  • It is a low fume emitting electrode.
Excellent fusion with base metals provides a longer bead for each electrode - this is advantageous in welding sheet metals.
Easy vertical down performance.
  • The coating is designed to take higher currents without electrode loosing its properties – Even with higher currents, we can weld till the end of the electrode, without any weld defects.
  • The result is a weld which passes X ray test
  • We get a weld metal with excellent toughness even at 0oC.
Quality and Approval
The high quality of Kingbond is approved and certified by BIS with IS 814 – ER4211X classification.
Applications:
  • General fabrication of mild structural steels like IS 2062, 226, ASTM SA 283 etc.
  • All kind of light construction work.
  • Storage tanks.
  • Shipbuilding.
  • Sheet metal work, furniture.
  • Automobile bodies.
  • Pipes.
  • Machine frames.
  • Truck bodies.
  • Construction equipment.
  • Railway coach panels.
Conclusion:
Kingbond electrodes can be used with any welding equipment, using welder of any skill level, in any welding position and in any application involving C-Mn steel of 25mm (max.) thickness to deposit welds that meets radiographic quality and toughness up to 0oC.
To know more about Kingbond and other superior general purpose electrodes, please write to us : cmo@adorians.com or visit us www.adorwelding.com
  • KING TIGER
    Portable Gas Cutting Machine
  • KING JOIN - AGWT / HT-1
    Gas Heating Torch
  • KING PANTHER
    Portable Gas Cutting Machine
read more
  • KING COOL - 600 AMPS - Medium Duty
  • KING SWORD - 600 AMPS - Heavy Duty
  • HEAVY DUTY EARTHING CLAMP - 600 AMPS
  • KING SHIELD- HAND (83 X 108mm)
  • KING SHIELD - HEAD
  • KING SHIELD - AUTO
  • ADOR Welding HAND GLOVES
  • ADOR SAFETY FOOTWEAR
read more
Service Clinics
During the Month of
September2012
  • M/S  JINDAL STEEL WORKS BELLARY  –  BANGALORE  AREA - 36 Nos.
  • M/S  JUPITOR  WAGON  LTD BANDEL  KOLKATA – KOLKATA AREA - 11 Nos.
Ador Welding Academy (AWA)
www.adorwelding.com
cmo@adorians.com

Wednesday, 7 November 2012

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Tuesday, 6 November 2012

e-Weldone Newsletter - Oct 2012

e-Weldone Newsletter October  2011 Vol. 39
Product Update
SAFETY PRECAUTIONS IN GAS CUTTING AND WELDING
Introduction
Oxy/fuel gas equipment has many uses - welding, cutting, heating, straightening, and descaling. Oxy fuel process may use a variety of fuel gases such as acetylene, LPG, Propane, Nitrogen, natural gas, the most common being acetylene. The equipment is versatile, easy to move and cheap. It is so widely used that sometimes people forget about the dangers. Many people are injured each year by the incorrect or careless use of oxy/fuel gas equipment. Some people die. This paper describes the hazards associated with portable oxy/fuel gas equipment and the precautions for avoiding injury and damage to property.
The Main Hazards are:
  1. Fire caused by heat, sparks, molten metal or direct contact with the flame.
  2. Explosion when cutting up or repairing tanks or drums which contain or may have contained flammable materials.
  3. Explosion caused by gas leaks.
  4. Explosion caused by backfires and flashbacks.
  5. Fumes created during flame cutting.
  6. Fire/burns resulting from misuse of oxygen.
  7. Burns from contact with the flame or hot metal.
  8. Crushing or impact injuries when handling and transporting cylinders.
Figure 1: Standard Oxy-Acetylene Cutting Set up
Some of the precautions to be taken to avoid injury and damage are described below.
1. Preventing fire from heat, sparks, molten metal or direct contact with flame
The flame from an oxy/fuel gas torch (often called a ‘blowpipe’) is a very powerful source of ignition. Careless use of oxy/fuel torches has caused many fires. The flame will quickly set light to combustible material such as wood, paper, cardboard, textiles, rubber, and plastics. Many processes also generate sparks and hot spatter which can also ignite these materials.

The following precautions will help prevent fire:
  • Move the workpiece to a safe location for carrying out hot work.
  • Remove nearby combustible materials (such as flammable liquids, wood, paper, textiles, packaging or plastics).
  • Protect nearby combustible materials that cannot be moved. Use suitable guards or covers such as metal sheeting, mineral fibre boards or fire-retardant blankets.
  • Check that there are no combustible materials hidden behind walls or in partitions, particularly if the welding or cutting will go on for some time. Some wall panels contain flammable insulation materials, e.g. polystyrene.
  • Use flame-resistant sheets or covers to prevent hot particles passing through openings in floors and walls (doorways, windows, cable runs, etc).
  • If the consequences of a fire are severe, eg work inside ships, you may need to appoint a fire watch during and after the work finishes. It is normal to maintain fire watch for 30 minutes after hot work finishes.
  • Prevent flame, heat, sparks or hot spatter from landing on the hoses.
  • Keep fire extinguishers nearby.
2. Explosion when cutting up or repairing tanks, drums and tyres
Figure 2: Cutting up scrap
If a welding blowpipe or burner is used on a tank or drum containing flammable material (solid, liquid or vapour), it can explode. Such explosions have killed people.
As well as flammable liquids such as petrol, diesel and fuel oil, substances such as paints, glue, anti-freeze and cleaning agents may also release flammable vapours.
Tanks and drums that are ‘empty’ usually still have residues in the bottom, and in seams and crevices. Just a teaspoon of flammable liquid in a drum can be enough to cause an explosion.

Never use an oxy/fuel gas blowpipe on a drum or tank that has contained, or may have contained, flammable material, unless you know it is safe. It may be safer for a specialist company to carry out the work. If in doubt, ask.
Tyres
The heat from hot work can generate flammable vapour from any oil or flammable residue on the inner rim of the wheel. The rubber itself can degrade when heated and release flammable materials and toxic emissions. This vapour, confined by the tyre can cause an explosion. These explosions are very violent and can kill. Avoid welding or flame cutting on wheels which have tyres fitted, even if the tyre is deflated.
If you can’t remove the tyre, use cold cutting methods, e.g. a saw or hydraulic shears.
3. Fire/explosion caused by gas leaks
Acetylene, LPG and other fuel gases are highly flammable, and form explosive mixtures with air and oxygen. Even small leaks can cause a flash fire or explosion, particularly if they are leaking into a poorly ventilated room or confined space where the gases can accumulate. Gas leaks are often the result of damaged or poorly maintained equipment, poor connections or not closing valves properly after use.

The following precautions will help to prevent leaks:
  • Turn the gas supply off at the cylinder when the job is finished or before the cylinders are moved or transported.
  • Isolate and purge or remove hoses and equipment from enclosed or poorly ventilated spaces when there is a break in work.
  • Keep hoses away from sharp edges and abrasive surfaces or where vehicles can run over them.
  • Do not allow hot metal or spatter to fall on hoses.
  • Maintain all equipment and regularly check its condition.
Checking for leaks
Regularly check all connections and equipment for faults and leaks. Equipment used in aggressive conditions such as demolition work or heavy engineering will normally need more frequent checks, e.g. weekly.
  • Use a proprietary leak detecting spray or solution suitable for use with oxy/fuel systems. Do not use soapy water or solutions containing grease or oils on oxygen systems.
  • Never look for gas leaks with a naked flame.
  • Immediately repair or replace leaking components.
Leaking hoses should not be repaired, but they can be shortened to remove a damaged section. Refit hose tails using crimp clips designed for that task. Screw tightened crimps (jubilee clips) are not recommended. There is a risk of leaks due to over tightening or under tightening them.

If a cylinder leaks when the valve is closed
If it is safe to do so, move the cylinder outside and away from sources of ignition (naked flames, sparks, electric motors, etc). Prevent unauthorised access and notify the cylinder supplier immediately.
4. Explosion caused by Backfires and flashbacks
Backfires
A backfire is when the flame burns back into the torch, often with a sharp bang.
This may happen when the torch is held too close to the workpiece, or if the nozzle is partly blocked. The flame may go out or it may reignite at the nozzle. Sometimes the flame burns back into the torch, and burning continues inside it. Backfires do not usually cause injury or damage, but they can indicate a fault in the equipment.
If a backfire does occur:
  • Shut off the torch valves, oxygen first (usually coloured blue) and then the fuel gas (usually coloured red).
  • Shut off the oxygen and fuel gas cylinder valves.
  • Cool the blowpipe with water if necessary.
  • Check the equipment for damage or faults, particularly the nozzle.
Flashbacks
Flashbacks are commonly caused by a reverse flow of oxygen into the fuel gas hose (or fuel into the oxygen hose), producing an explosive mixture within the hose. The flame can then burn back through the torch, into the hose and may even reach the regulator and the cylinder. Flashbacks can result in damage or destruction of equipment, and could even cause the cylinder to explode.

The following precautions will help to prevent flashbacks:
  • Use the correct lighting-up procedure. Purge the hoses before lighting the torch to remove any potentially explosive gas mixtures. Use a spark igniter and light the gas quickly after turning it on.
  • Make sure the blowpipe is fitted with spring-loaded non-return valves.
  • Use the correct gas pressures and nozzle size for the job.
  • Maintain the equipment in good condition.
These measures will reduce the risk of a flashback but will not completely eliminate it. Non-return valves will not stop a flashback once it has occurred.
Protecting cylinders from flashbacks
Fit flashback arresters to both the oxygen and fuel gas hoses near to the regulators. For long lengths of hose, fit arresters on both the torch and the regulator.
Figure 3: Flashback Arrestor
The fitting of a flashback arrester is not a substitute for safe working practice.
If a flashback does occur:
  • If it is safe to do so, close the cylinder valves on both fuel gas and oxygen.
  • If the fire cannot be put out at once, evacuate the area and call the emergency fire services.
  • After a flashback, carefully check for damage to the torch, hoses, regulators, flashback arresters and other components. Replace parts if you need to. If in doubt, consult your supplier.
Acetylene cylinders
You should pay particular attention to any acetylene cylinder which has been involved in a flashback or affected by fire. There is a risk that the acetylene could start to decompose, and the cylinder could explode. If an acetylene cylinder becomes hot or starts to vibrate, you must evacuate immediately and call the emergency fire services.
5. Fumes created during welding and  flame cutting
The fume from welding and flame cutting metals is harmful. You can use fume extraction and/or filtering respirators (respiratory protective equipment or RPE) to reduce the risk of ill health.

Dirt, grease and other contamination increases the amount of fume generated and can introduce very toxic substances to it. Hot work on items with lead paint, chromium (chromate) paint or cadmium plating is particularly hazardous.
  • If you flame cut outdoors and the metal is clean and unpainted you will not normally need RPE. Try to work in a position where the wind blows the fume cloud away from you and other people.
  • If you flame cut indoors or in conditions were there is little air movement, the need for extraction and/or RPE depends on how much cutting you are going to do.
  • Automated flame cutting machines, particularly multi-head machines need fume extraction fitted to them.
  • Work on materials coated with lead or chromate paints, galvanised or cadmium  plated or metal contaminated with oil, grease etc are likely to require fume control such as extraction and/or RPE.
6. Fire/burns from misuse of oxygen
Oxygen leaks also increase the fire risk. Clothing contaminated with oxygen, even fire-retardant clothing, will catch fire easily and burn very fiercely. Oxygen can cause explosions if used with incompatible materials. In particular, oxygen reacts explosively with oil and grease.

You must take the following precautions:
  • Never use oxygen to blow dust off clothing.
  • Never attempt to improve air quality inside confined spaces by releasing oxygen in the space.
  • Never allow oil or grease to come into contact with oxygen valves or cylinder  fittings.
  • Only use equipment designed for use with oxygen. In particular, check that the regulator is safe for oxygen and for the cylinder pressure.
7. Contact burns
The following precautions will help to prevent burns from contact with the flame, hot metal, sparks and molten slag:
  • Work in a safe location away from other people.
  • Wear protective clothing, boots, gauntlets and eye protection.
  • Shut off the torch when not in use. Do not leave a lighted torch on a bench or the floor as the force of the flame may cause it to move.
  • Clamp the workpiece, avoid holding it by hand.
8. Crushing or impact injury
The following precautions will help prevent injury when handling and transporting cylinders:
  • Prevent cylinders from falling or being knocked over by securing them with a stout chain or strap. It is normal to chain them to a wheeled trolley or against a wall.
  • If a cylinder falls over and its valve strikes something and is knocked off, the cylinder will become a deadly missile.
  • Avoid moving a cylinder by tilting it on its base and rolling it. It is better to use a trolley.
  • If transported in a road vehicle, the cylinders should be secured so they don’t come loose in an accident.
 Training
Oxy/fuel equipment is relatively easy to use but users may still need some instruction or training in:
  • The safe use of the equipment, including the correct methods to purge the gas, light and shut down.
  • General safe working practices and the precautions to take.
  • Ensure personal safety by wearing eye goggles and protective work clothing during operation.
  • Hose pipes have a colour code. Use the right colour hose pipe for the particular gas eg LPG should not be used in pipe coded for acetylene. 
  • Use genuine spares when replacing/ repairing equipment.
  • When and how to use the fire extinguishers.
  • Information about escape routes, how to raise the fire alarm and emergency procedures.
Permit-to-work
The potential for injury and property damage are such that many companies want to control hot work very closely. One way to achieve this is to operate a written permit system for welding and flame cutting work. Sometimes called hot work permits, they aim to ensure that welding and flame cutting does not start until after the risks for that particular task are identified and measures to eliminate or control risk are in place.

 A permit should specify:
  • What work will be done.
  • How and when it is to be done.
  • What safety and health precautions are needed.
  • Who is responsible for checking it is safe to start.
  • Who will check the work is done safely.
  • Who is responsible for confirming that work is complete and there is no longer a  risk from, or to, the people doing the work.
Preventing fire or explosion when storing and transporting cylinders
Small leaks may not be detected immediately. If they leak into a poorly ventilated room, a van or confined space, a dangerous concentration of gas may accumulate.

To prevent gas accumulating:
  • Close the cylinder valves when the equipment is not in use.
  • Always provide adequate ventilation during welding and cutting operations.
  • Store gas cylinders outside whenever possible, or in a well-ventilated place.
  • Avoid taking gas cylinders into poorly ventilated rooms or confined spaces.
The most important safety measure when transporting cylinders in vehicles is to close the cylinder valve. It is preferable to carry cylinders in an open-backed, pick-up style van. Fitting cages to the load bed may help prevent theft of the equipment. If cylinders are carried in enclosed load spaces then there should be additional ventilation fitted. Cabin ventilation is not sufficient.
For further information on safety precautions and to know more about AWL range of Gas Cutting Products and Accessories, please do write on cmo@adorians.com or visit us www.adorwelding.com
  • KING TIGER
    Portable Gas Cutting Machine
  • KING JOIN - AGWT / HT-1
    Gas Heating Torch
  • KING PANTHER
    Portable Gas Cutting Machine
read more
  • KING COOL - 600 AMPS - Medium Duty - PART NO .S12.06.001.0201
  • KING SWORD - 600 AMPS - Heavy Duty - PART NO .S12.06.001.0202
  • HEAVY DUTY EARTHING CLAMP - 600 AMPS
    PART NO. .S12.06.001.0203
  • KING SHIELD- HAND (83 X 108mm)
    PART NO. .S12.06.001.0204
  • KING SHIELD - HEAD
    PART NO. .S12.06.001.0205
  • KING SHIELD - AUTO
    PART NO. .S12.06.001.0206
  • ADOR Welding HAND GLOVES
    PART NO. .S12.06.001.0207
  • ADOR SAFETY FOOTWEAR
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Visit our Stand No. 6B01
at
INDIA ESSEN WELDING
& CUTTING 2012
(5th International Trade Fair Joining Cutting Surfacing)
at Mumbai, INDIA
during 30th/31st Oct & 1st Nov. 2012.
Service Clinics
During the Month of
September2012
  • M/s ONSHORE CONSTRUCTION COMPANY  KALAMBOLI –  MUMBAI AREA - 22 Nos.
  • M/s  WMI CRANES JEJURI – PUNE AREA - 17 Nos.
 
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