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At the center of the 5 steps and this regulation, there is a machine that stands on a triangular footprint and lifts heavy weights to impressive heights. The key objective is to be able to keep the telehandler upright, but for sure there are dangers.
The rear-axle pivot point, and the two front wheels make up the triangular base of the telehandler. Normally the back axle oscillates and thus, the rear wheels are not a part of the base. The telehandler remains upright so long as the center of gravity of the machine, which is defined as the point in 3 dimensions around which the machine's weight is balanced, stays oriented inside the stability triangle.
When the boom is down, adding a load to the forks at that time moves the center of gravity down and forward. Raising the load will move the center of gravity to the rear and upwards. At the same time, the stability triangle shrinks when this happens. Hence, the higher you lift a load, the less of a margin for error you have since the stability triangle lessens.
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At construction sites and other kinds of environments where the surface is not paved, the rough terrain forklift is recommended. This kind of forklift is utilized to shuttle materials around lumberyards.
These types of forklifts are really designed for rough terrain. Then again, the machine is top heavy and must be handled carefully in rough locations. The machinery needs to be level with all tires on the ground when lifting.
Steering is more challenging at higher speeds. The Occupational Safety and Health Administration does not set speed limitations on forklifts. Then again, drivers are responsible for operating forklifts at a safe speed, specially when driving on rough terrain and when turning.