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Reliability test induced failures vs field performance: Contact fretting perspective

机译:可靠性测试导致的故障与现场性能的关系:接触微动的角度

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Connectors, based on the applications, can be exposed to a wide variety of reliability risks. To ensure products meet reliability requirements, qualifications tests are performed in laboratory settings. These tests are accelerated to meet the time-to-market requirements. Incorrect accelerated reliability models can lead to inaccurate field reliability risk assessment. Additionally, a chosen test can generate different failure modes, which are unlikely to be accelerated the same amount in the laboratory settings. In this paper, the authors evaluate some of the existing test methods and requirements vs. actual field vibration data for vibration induced contact fretting. The reliability model for contact fretting is based on a multiscale finite element approach. This model is used to evaluate contact micromotion from the standards based test methods that cover operational vibration in automotive electronics and non- operational packaged shipping vibration. The same model is then used to study contact micromotion in actual use condition. Intent of this exercise is to validate the appropriateness of standards based test in reflecting field reliability risks from a contact fretting perspective.
机译:根据应用,连接器可能会面临各种各样的可靠性风险。为了确保产品满足可靠性要求,在实验室环境中进行了资格测试。加快了这些测试的速度,以满足上市时间的要求。不正确的加速可靠性模型可能导致不正确的现场可靠性风险评估。此外,选定的测试可能会产生不同的故障模式,在实验室设置中不可能以相同的数量加速。在本文中,作者评估了一些现有的测试方法和要求与实际的现场振动数据进行振动诱发的接触微动的关系。接触微动的可靠性模型基于多尺度有限元方法。该模型用于评估基于标准的测试方法的接触微动,这些测试方法涵盖了汽车电子产品中的操作振动和非操作性包装运输振动。然后使用相同的模型研究实际使用条件下的接触微动。该练习的目的是验证基于标准的测试在从接触微动角度反映现场可靠性风险方面的适当性。

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