用于高可靠性应用的汽车接线端子的鉴定试验

P. Lees
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引用次数: 4

摘要

汽车电子系统的日益复杂化给连接器设计师和材料工程师带来了一些独特的挑战。汽车环境是恶劣的,但可靠性必须在较长时间内保持。例如,安全相关部件的寿命必须超过车辆的寿命。汽车零部件受到随机振动、热漂移、腐蚀性气体、湿度和越来越长时间暴露在高温下的影响。为了确定连接器设计的可靠性,已经发展了全面的测试规范。典型的电池测试包括随机振动、随湿度的温度循环、暴露于混合流动气体和热老化。本研究探讨接触光洁度对汽车端子性能的影响。通过改变接触光洁度来探索降低成本的机会。这些端子经受了低循环耐久性测试、温度与湿度循环测试、随机振动测试以及Battelle流动混合气体环境测试。根据低电平电路电阻的变化来评价系统的稳定性。给出了测试结果,数据表明不同的响应取决于接触光洁度。结果表明,薄的多层覆层嵌体触点材料的性能满足了所有测试要求,并提供了最低的系统总成本
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Qualification testing of automotive terminals for high reliability applications
The increasing sophistication of automotive electronic systems has presented some unique challenges to both the connector designer and the materials engineer. The automotive environment is abusive, yet reliability must be maintained over extended periods of time. For example, the life of safety related components must exceed the life of the vehicle. Automotive components are subjected to random vibration, thermal excursions, corrosive gasses, humidity and increasingly prolonged exposures to elevated temperatures. To determine the reliability of a connector design, comprehensive test specifications have evolved. A typical battery of tests includes, random vibration, temperature cycling with humidity, exposure to mixed flowing gas and thermal aging. This study examines the effect of contact finish on the performance of an automotive terminal. The contact finish was varied to explore cost reduction opportunities. The terminals were subjected to low cycle durability testing, temperature cycling with humidity, random vibration, and Battelle flowing mixed gas environments. System stability was evaluated in terms of low level circuit resistance changes. Test results are presented and the data indicate different responses depending on the contact finish properties. It was found that the performance of a thin, multi-layer clad inlay contact material met all test requirements and offered the lowest total system cost.<>
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