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首页> 外文期刊>Latin American Journal of Solids and Structures >An Enhanced Random Vibration and Fatigue Model for Printed Circuit Boards
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An Enhanced Random Vibration and Fatigue Model for Printed Circuit Boards

机译:印刷电路板的增强型随机振动和疲劳模型

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摘要

Aerospace vehicles are mostly exposed to random vibration loads during its operational lifetime. These harsh conditions excites vibration responses in the vehicles printed circuit boards, what can cause failure on mission functionality due to fatigue damage of electronic components. A novel analytical model to evaluate the useful life of embedded electronic components (capacitors, chips, oscillators etc.) mounted on Printed Circuit Boards (PCB) is presented. The fatigue damage predictions are calculated by the relative displacement between the PCB and the component, the lead stiffness, as well the natural vibration modes of the PCB and the component itself. Statistical methods are used for fatigue cycle counting. The model is applied to experimental fatigue tests of PCBs available on literature. The analytical results are of the same magnitude order of the experimental findings.
机译:航空航天器在其使用寿命期间通常会受到随机振动载荷的影响。这些苛刻的条件激发了车辆印刷电路板的振动响应,这可能由于电子元件的疲劳损坏而导致任务功能失败。提出了一种新颖的分析模型,用于评估安装在印刷电路板(PCB)上的嵌入式电子组件(电容器,芯片,振荡器等)的使用寿命。疲劳损伤的预测是通过PCB与组件之间的相对位移,引线刚度以及PCB与组件本身的固有振动模式来计算的。统计方法用于疲劳循环计数。该模型适用于文献中提供的PCB的实验疲劳测试。分析结果与实验结果的数量级相同。

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