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Scissor lifts are a type of "mobile scaffolding", with a wheel-mounted machinery which provides power to a work platform which moves down and up. The lift could be powered by electricity, propane, diesel or gas. Scissor lifts are characterized by various scissor-like joints that raise the machinery by expanding and collapsing. Numerous safety features are built into modern scissor lifts, particularly the newer models. Like with any safety features, they might not be able to guarantee safety and some features can be overridden by operators manually or they could occasionally malfunction.
Usually, construction workers utilize scissor lifts to work on ceilings or on higher aspects of the jobsite. The workers would have to hoist the platforms just to right beneath the level of the ceiling. The problem with accidental elevation could occur if the workers accidentally bump into the elevation controls while working. In the ceiling scenario, the controls might be activated accidentally and the platform can rise up and inadvertently crush them into the ceiling.
A different way workers need to be extremely cautious is to be sure they are familiar with the surroundings they are in while operating the machine in order to make sure they don't accidentally electrocute themselves. If, for instance, the operator inadvertently touches or makes direct contact with an electrical conductor or an induction field, tragic consequences can happen.
While operating a scissor lift, it is vital know the loading limitations in the guidebook of your scissor lift. Really terrible consequences can take place if the platform is mis-loaded. A lateral-load is among the potential problems which could take place if the whole lift overturns. This situation takes place when a heavy material or tool like for example a concrete slab which hangs over the side of a scissor lift platform, causing the whole machinery to become unbalanced right away and really prone to dangerously tipping over.
Around that same time, there was a strong industrial expansion in Spain. This period saw Imausa making more advanced machine tools, jigs and various types of tools for both external and in-house use. Moreover, the company specialized in manufacturing pre-fabricated steel structures especially for industrial buildings.
Imausa's initiation into the crane market was an almost inevitable if not logical step. The Spanish tourist industry exploded to soon become amongst the world's biggest tourism magnets. This mass expansion of course brought a parallel demand for hospitals, schools and housing among various other things. The corporation became really busy, very fast.
The first simple cranes made were saddle-jib. These machines were best suited for the particular building methods being utilized at that time. The first crane model eventually grew into a range of cranes with a capacity ranging from 12 to 42 metric-tons.
Linden Comansa saddle-jib cranes had already met the two hundred metric-ton barrier by the early 1970s. Linden Comansa has surpassed the standard and has continued to engineer and design cranes that surpass the 900 metric ton capacity. There is currently manufacturing and design facilities that permit the development and production of more incredible and even larger equipments.