解析加速试验模型在新型接触法寿命预测中的应用与比较

M. Spahr, S. Kreitlein, R. Haas, A. Jaumann, T. Gläßel, S. Spreng, J. Franke
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引用次数: 5

摘要

根据客户对车辆个性化的需求,新的电子设备支持的功能正在不断增加。汽车线束必须在不增加重量和体积的前提下满足这些要求。模块化车辆设计的基本趋势,以及生产和装配过程不断增加的复杂性,支持在混合布线系统架构中使用柔性扁平电缆(ffc)。对于集成方法,开发ffc与组件电接触的相应替代方案也很重要。为此,ffc的进程条件、片面可及性是一个特别的挑战。在这些挑战的激励下,FAPS研究所开发了ffc的自动化装配系统和柔性电接触系统的新概念,使安装的ffc能够直接电接触。为了验证这种新的接触方法,必须根据不同的汽车工业规范进行耗时且成本高的气候试验。在这里,使用解析加速试验模型可以预测电子触点在负载情况下的失效。该方法的范围是将三种不同的加速测试方法(Arrhenius, Coffin-Manson和Norris-Landzberg)应用于新型接触方法并进行比较。首先,在不同的高温下进行了气候试验,并从试验数据中得出了终生预后。其次,所有三个模型都通过进一步的气候试验进行验证,以确定加速试验方法的可能现场应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application and comparison of analytic accelerated test-models for lifetime prediction of a novel contacting method
Through customers' desire for an individualization of vehicles, new electronics-supported functions are continuously being added. The automobile wiring harness must meet these requests without any further increase of weight and volume. The basic trend towards a modular vehicular design, the continually growing complexity of production and assembly processes, supports the use of flexible flat cables (FFCs) in a hybrid wiring system architecture. For an integral approach, it is also important to develop corresponding alternatives for electrically contacting FFCs with the components. To that end, the process-conditional, one-sided accessibility of FFCs represents a particular challenge. Motivated by these challenges, the Institute FAPS has developed an automated assembly system of FFCs and a new concept for a flexible electric contacting system enabling direct electrical contacting of installed FFCs. To qualify this new contacting method, time and cost consuming climatic tests according to different specifications of the automotive industry have to be carried out. Here, the use of analytic accelerated test-models can predict the failure of electronic contacts subject to the load case. The scope of this approach is the application and comparison of three different accelerated test-methods (Arrhenius, Coffin-Manson and Norris-Landzberg) to the novel contacting method. Firstly climatic tests were performed at different elevated temperatures and from the test data, a lifetime prognosis was derived. Secondly all three models were validated with further climatic testing to determine the possible field application of accelerated test methods.
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