Which One of These Machines Does Not Typically Need Safeguards

There seem to be as many hazards created by moving machine parts as there are types of machines. They usually conform to machine design and function b.


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The following are all machine safeguarding requirements except.

. T or F TRUE 7. Safeguards are essential for protecting workers from needless and preventable. In fact machine guarding violations are one of the most commonly cited OSHA standards.

Must prevent workers from lubricating a machine without removing the safeguard. There is reduced risk that poor design might create hazards d. They limit point-of-operation exposure to hazards.

While most single-purpose machines. Adjustable guards are a more flexible kind of machine. Safety trip controls provide a quick means for deactivating the machine in an emergency situation.

One reason is that not all equipment has required safety controls in place. The information in this booklet does not specif-ically address amputation hazards on all types of machinery in general industry construction mar-itime and agricultural operations. The minimum general safety requirements for machines include all these safeguards EXCEPT.

The rate at which natural gas is lost from a tank through one vent tube isa 13 times 10-5 mathrmkg mathrmday b 32 times 10-5 mathrmkg mathrmday c 8. Which of the following is an exception to the general rule for safeguarding to prevent hazards during servicing and maintenance of machines. Why do so many machine guarding violations occur.

B Maintenance is minimal and. Crushed hands and arms severed fingers blindness the list of possible machinery-related injuries is as long as it is horrifying. Machines shears food slicers meat grinders meat-cutting band saws drill presses milling machines grinding machines and slitting machines.

It may stop. Whose machine safety responsibility is it to ensure all machinery is properly guarded. Both types of safeguards need to be properly designed constructed installed used and maintained in good operating condition.

If the operator or anyone trips loses balance or is drawn toward the machine applying pressure. A Servicing or maintenance is not hazardous for employees. The use of administrative and engineering controls is the best way to control hazards.

This helps a company determine the total cost associated with an accident and the financial and operational benefits resulting from the use of various machine safeguards. Exposure to a machine that could cause the injury while working with or around the machine eg entanglement contact with blade etc potential human behaviour while performing these tasks. Automatic feeds reduce the operator exposure during the work process and often do not require any effort by.

Guards are barriers which prevent access to danger areas. Fixed guards are a type of safeguard permanently fixed to a part of the machine not a moving part typically where access is infrequent. Moving machine parts can lead to severe workplace injuries.

There are situations where barrier guards are not considered as a practical solution. These substances can cause ailments ranging from dermatitis to serious illnesses and disease. Following are 4 general methods of safeguarding machinery and equipment.

Choosing the best machine safeguard requires performing a Risk Assess-mentRisk Reduction analysis. With older machinery they may be the only option c. Because some machines require the use of cutting fluids coolants and other potentially harmful substances operators maintenance workers and others in the vicinity may need protection.

These three factors can be combined to determine the probability of injury from a particular task. Five General Classifications of Machine Safeguards. We can group machine safeguards under five general classifications.

Machine safeguards prevent visual inspection during operations. Specially constructed safeguards ventilation and. Basics of machine safeguarding.

This is the simplest form of machine guarding can be constructed from sheet metal plastic screen etc and will usually require a tool for removal. For hazards at the point of operation where moving parts actually perform work on stock several kinds of safeguarding may be possible. CHAPTER 2 PART 2 Methods of Machine Safeguarding.

Based on the safety standards a machine buyer may need to add a motor-starter device that prevents the drill from automatically restarting after a power interruption. The danger posed by machines may seem obvious and yet accidents and incidents happen frequently. Safeguarding devices either prevent or detect operator contact with the point of operation or stop potentially hazardous machine motion if any part of an individuals body is within the hazardous portion of the machine.

We can group safeguards under five general classifications. Such an analysis focuses a shops attention on solving each machine-hazard. Reports of machine breakdowns etc.

One must always choose the most effective and practical means available. Any part of a machine which ___ while in operation can cause a hazard. Five General Classifications of Safeguards.

Operators should receive training on how and why to use safeguards and how and when safeguards can be removed and. There are four general types of guards and well discuss them in the next section. For instance consider a new drill presswhich again does not have to be provided with all necessary safeguards by the manufacturer of the machine see Figure 1.

A safety device may perform one of several functions. Using one of the following five feeding and ejection methods to safeguard machines does not eliminate the need for guards and other devices which must be used as necessary to provide protection from exposure to hazards. What is one advantage of user-built machine guards.

Safeguards are essential for protecting workers from needless and preventable machinery related injuries. A pressure-sensitive body bar when depressed will deactivate the machine.


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