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Failure dependent progression of contact resistance in thermal-shock testing of spring-clip contacts

机译:弹簧夹触点的热冲击测试中接触电阻的故障相关进展

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Through ever changing terms and regulations on fuel consumption and emissions, weight becomes the number one concern of car manufacturers. Meeting those new regulations and the customer's desire for more options and variations is only possible without adding more weight by changing the wiring harnesses' technology. One solution to face this problem can be found by the application of flexible flat cables (FFCs) instead of common round cable wire systems. For a holistic approach, it is important not only to establish automated ways of cable installation, but also methods of automatically contacting components. Therefore, a new direct contacting method was developed at the Institute for Factory Automation and Production Systems (FAPS). The innovative contacting method enables to contact an automatically mounted one side accessible FFC with kinematic systems of industrial robots in an automated way. However, before new technologies can be applied to serial production, car manufacturers demand standardized climatic tests. In this paper, a correlation was discovered between the progression of contact resistance and failure mechanisms during thermal shock testing. Furthermore, an influence of different peak temperatures and materials was identified and the results were verified via SEM micrographs.
机译:通过不断变化的有关燃料消耗和排放的条款和法规,重量已成为汽车制造商的头等大事。满足这些新规定以及满足客户对更多选项和变化的需求的可能性只有在不改变线束技术的情况下才能增加重量。可以通过使用柔性扁平电缆(FFC)代替普通的圆形电缆电线系统找到解决此问题的一种解决方案。对于整体方法,重要的是不仅要建立自动化的电缆安装方式,而且要建立自动接触组件的方法。因此,工厂自动化和生产系统研究所(FAPS)开发了一种新的直接接触方法。创新的接触方法可以使自动安装的一侧可触及的FFC与工业机器人的运动系统自动接触。但是,在将新技术应用于批量生产之前,汽车制造商需要标准化的气候测试。在本文中,发现了在热冲击测试期间接触电阻的进展与失效机理之间的相关性。此外,确定了不同峰值温度和材料的影响,并通过SEM显微照片验证了结果。

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