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A Novel Model of Reliability Assessment for Circular Electrical Connectors

机译:圆形电连接器可靠性评估的新模型

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The reliability of circular electrical connectors was usually assessed according to standards like MIL-HDBK-217 (Reliability Prediction of Electronic Equipment). Given to their limitations and mislead results, a new assessment method needs to be presented. Some concerns on the physics of failure (PoF) modeling and reliability assessment of circular electrical connectors are addressed in this paper to overcome this defect. An original approach combining laboratory accelerated degradation testing (ADT) and PoF modeling is proposed for effectively assessing connector reliability. Random vibration and current stress are selected as acceleration factors that affect the contact life of electrical connectors. Then, an appropriate multiple-stresses ADT scheme is derived. The PoF model for electrical connectors under multiple stresses yielded the generalized Eyring relationship. According to the system reliability model for multiposition connectors, connectors’ life follows Weibull distribution, which is derived from extreme-value distribution theory. Through ADT and data gained from tests, statistical analysis result yielded the estimated value of reliability character of MIL-C-38999 I series electrical connectors under the action of vibration and current stresses.
机译:圆形电连接器的可靠性通常根据MIL-HDBK-217(电子设备的可靠性预测)等标准进行评估。考虑到它们的局限性和误导性结果,需要提出一种新的评估方法。本文针对圆形电连接器的失效物理(PoF)建模和可靠性评估提出了一些担忧,以克服这一缺陷。提出了一种结合实验室加速退化测试(ADT)和PoF建模的原始方法,以有效评估连接器的可靠性。选择随机振动和电流应力作为影响电连接器接触寿命的加速因子。然后,得出适当的多应力ADT方案。电连接器在多种应力下的PoF模型产生了广义的Eyring关系。根据多位置连接器的系统可靠性模型,连接器的寿命遵循威布尔分布,该分布是从极值分布理论推导而来的。通过ADT和测试数据,统计分析结果得出了MIL-C-38999 I系列电连接器在振动和电流应力作用下的可靠性特性估计值。

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