Envalior

Envalior in Automotive

Our innovative high-performance plastics are developed to meet a wide variety of technological challenges in automotive. Browse these pages to learn more about how our industry experts, scientists and engineers work hand in hand with our customers to develop next generation solutions.

High Performance Plastics for e-drivetrain

Electrical insulation applications must be made from materials that can withstand the harshest temperatures and conditions over an extended period.

End laminates

End laminates play a key role in the demanding e-vehicle’s motors – acting as insulators that separate the copper wire windings from the steel rotor parts.

The laminate must be able to withstand the most extreme conditions – including severe overload and motor-block that sends temperatures soaring to 250°C and higher. Failure of the laminate can result in permanent motor failure.

Enter Stanyl polyamide 46 - the only high-performance thermoplastic that meets this challenge, with an HDT of 290°C and high crystallinity to survive high wire peak temperatures and maintain its insulation properties at these extreme temperatures.

Furthermore, Stanyl offers exceptional ductility and flow coupled with excellent mechanical properties. Walls as thin as 0.4mm thickness can be molded more easily while retaining the toughness needed to cope with typical high-speed assembly processes. Alternative materials like PPS and PPA are prone to brittle failures and cracking…which results in high reject rates.

Coil insulation

Next-generation materials can make a major difference to coil performance.

Polyamide 46 grades like Stanyl provide outstanding coil insulation and overmolding, plus better flowability and processing versus PPS and PPA. Furthermore, you can build better performing coils with lower wall thickness and thus less induction losses and potentially more windings. This also leads to more freedom of choice in coil length or specific torque; and lower voltage peaks and high nominal voltage or better efficiency.

Browse our solutions

汽车电动机线轴

汽车 | 电动动力传动系统 | 高压电机

Stanyl® PA46 凭借其耐高温性(经 UL1446 认证为 H 级)、在高温下的抗蠕变性、良好的韧性和电气绝缘性,能够实现可靠的解决方案;Stanyl® PA46 拥有优于 PPS 和 PPA 的流动性和可加工性,可实现薄壁设计,因此能够实现具有成本效益的解决方案

碳刷架(电动机)

汽车 | 电动动力传动系统 | 高压电机

Stanyl® PA46 凭借其耐高温性(经 UL1446 认证为 H 级)、在高温下的抗蠕变性、良好的韧性和电气绝缘性,能够实现可靠的解决方案;Stanyl® PA46 拥有优于 PPS 和 PPA 的流动性和可加工性,可实现薄壁设计,因此能够实现具有成本效益的解决方案

线圈绝缘骨架

汽车 | 电动动力传动系统 | 高压电机

Stanyl® PA46 凭借其耐高温性(经 UL1446 认证为 H 级)、在高温下的抗蠕变性、良好的韧性和电气绝缘性,能够实现可靠的解决方案;Stanyl® PA46 拥有优于 PPS 和 PPA 的流动性和可加工性,可实现薄壁设计,因此能够实现具有成本效益的解决方案

末端层压件(电动机)

汽车 | 电动动力传动系统 | 高压电机

Stanyl® PA46 凭借其耐高温性(经 UL1446 认证为 H 级)、在高温下的抗蠕变性、良好的韧性和电气绝缘性,能够实现可靠的解决方案;Stanyl® PA46 拥有优于 PPS 和 PPA 的流动性和可加工性,可实现薄壁设计,因此能够实现具有成本效益的解决方案

启/停:交流发电机和起动机部件

汽车 | 电动动力传动系统 | 高压电机

Stanyl® PA46 凭借其耐高温性、在高温下的抗蠕变性、高韧性、卓越的磨损和摩擦性能以及良好的电气绝缘性能,能够实现可靠的解决方案;ForTii® PA4T 的熔点高达 325°C,能耐受极高的峰值温度,因此能够实现可靠的解决方案;Stanyl® PA46 和 ForTii® PA4T 拥有比 PPS 和 PPA 更出色的流动性和可加工性,因此能实现薄壁设计,实现具有成本效益的解决方案

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