BRIC Automotive Plastics Are Produced With Advanced Technologies and Are Used To Protect the Outer Cover of the Vehicle from Various Damages
BRIC
automotive plastics are used and produced everywhere in the world, including in
regions such as Europe and APAC. Today, BRIC automotive plastics technology
enables the replacement of car parts with plastic composites. Windows, lights,
and tailgates can be integrated with BRIC automotive plastics to offer great
design perspectives in terms of style, lines, and overall price of the car
while achieving significant weight savings over traditional building
methods.
Due
to current environmental and economic concerns, automakers are using advanced
plastic materials to reduce weight and make vehicles more fuel-efficient.
Polyvinyl chloride (PVC) is a plastic used in the manufacture of BRIC
automotive plastics. It is known for its flexibility, great thermal stability,
flame retardancy, and low lead content. It can be sprayed, pressed, or blown to
produce a variety of rigid and flexible plastic products, depending on the type
and quantity of plasticizer used. In regions such as Europe, the increasing
consumerism towards automobiles has also increased the production of BRIC
automotive plastics. For instance, according to European Automobile
Manufacturers Association, in 2018 there were around 292 million cars in
Europe.
It
is used in the manufacture of various types of car parts and components. One of
the advantages of using PVC is that it can be used in various plastic molding
processes. These range from standard plastic injection molding to blow molding
and compression molding. An important factor in the implementation of these
strategies is the lightweight weighting of automotive plastic parts. Plastics
enable cost-saving part consolidation and enable modular assembly processes to
reduce production
Many
BRIC automotive plastics parts weigh 50% less than similar components made of
other materials. BRIC automotive plastics have become one of the key materials
for the structure, performance, and safety of cars, and in recent years the
increase in plastic consumption has been driven by the trend towards
light-weighting. The high absorption properties of plastics allow vehicles to
meet stricter safety standards when used; construction of plastics allows for
minimizing the mass of parts used in the vehicle and offers more design
flexibility than anything else. The emergence and rapid growth of off-road
performance have become a key issue in assessing the automotive outlook due to
polymer demand.
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