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Polyplastics Targets DURANEX(R) PBT Grades for Autonomous Driving

Kyodo JBN-AsiaNet
2020-07-17 08:32

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TOKYO, July 14, 2020 /Kyodo JBN-AsiaNet/--

As the automotive industry makes a strong shift to electric vehicles, Polyplastics Co., Ltd., a leading global supplier of engineering plastics, sees strong potential for its innovative resin products in Advanced Driver-Assistance Systems (ADAS) parts that enable autonomous driving. The company's DURANEX(R) PBT materials--targeted for actuators and communications equipment--deliver strong durability, alkali resistance, hydrolysis resistance, and heat shock resistance.

In by-wire systems, the actuator requires a higher level of reliability as ADAS parts become more sophisticated and electronic controls become automated. Polyplastics' DURANEX(R) PBT is chosen for many electric actuator parts because it capably continues to perform even in harsh environments. Underbody parts are exposed to water and snow-melting agents from road surfaces as well as oil and other substances. These parts also heat up since they are close to the engine, motor, and other heat-generating parts. As a result, PBT is chosen in many actuator parts due to its high heat resistance, superior chemical resistance, and low rate of water absorption.

DURANEX(R) PBT 330HR, 531HS, and 532AR are grades with the superior durability (hydrolysis resistance) to withstand conditions such as these. DURANEX 532AR has resistance to alkali matter and does not easily experience stress cracking even when in contact with rust fluid from metal. This makes it optimal for parts on the underside of cars.

In communications equipment, flame-retardant PBT resins are also in demand in motor applications exposed to high voltages, batteries, and charging parts. DURANEX(R) PBT 750AM is a UL V-0 grade with a high level of durability in car-mounted environments. Since it also possesses the ability to stabilize the shapes of cases and connectors, this grade is increasingly being used in auto parts that require flame retardancy in recent years.


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