Engineering plastics not only retain the
good characteristics of ordinary plastics, but also far exceed the heat
resistance and mechanical strength of ordinary plastics. Engineering plastics
can generally be operated at high temperatures above 100℃~200℃ for a long time, so they can be used in many applications. Can
replace metal as the application of engineering materials.
With the development of society and technology, we have put forward higher requirements for industrial equipment, cars, etc.: light weight, energy saving, beautiful, safe, environmentally friendly, etc. And because of its good functions, low price, and simple processing technology, plastic products have gained more and more significant advantages in the PK of metal materials.
Taking the car as an example, plastic products are widely used in the car industry to replace various precious non-ferrous metals and alloy materials. This not only improves the appearance of the car and the flexibility of planning, but also reduces the cost of parts processing, assembly and repair.And can also reduce the energy consumption of cars.
General Motors in the United States has conducted a test. In the manufacturing process of a car equipment, a total of 38 metal parts are required, and the cost is as high as 75 US dollars. Similarly, if engineering plastics are used to integrate all components into one component, the cost is only 30 US dollars, which shortens the assembly time by 55% and achieves a qualified yield of 99%. This is due to the integration of parts in the production process of engineering plastics, low secondary processing costs, shortened planning cycles, good quality, and high productivity.
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