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WIRE FLEXURE FATIGUE MODEL FOR ASYMMETRIC BOND HEIGHT

机译:不对称粘结高度的线弯曲疲劳模型

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摘要

This paper presents the first physics-of-failure based life prediction model for flexural failure of wires ultrasonically wedge bonded to pads at different heights. The life prediction model consists of a load transformation model and a damage model. The load transformation model determines the cyclic strain at the heel of the wire during temperature cycling. This cyclic strain is created by a change in wire curvature at the heel of the wire resulting from expansion of the wire and displacement of the frame. The damage model calculates the life based on the strain cycle magnitude and the elastic-plastic fatigue response of the wire. The model supports virtual qualification of power modules where wire flexural fatigue is a dominant failure mechanism. The model has been validated using temperature cycling test results, and can be used to derive design guidelines and establish a relation between accelerated test results and field life.
机译:本文介绍了第一个基于故障物理的寿命预测模型,该模型用于超声楔形结合在不同高度的焊盘上的导线的弯曲破坏。寿命预测模型由负荷转换模型和损伤​​模型组成。负载转换模型确定温度循环过程中导线根部的循环应变。这种周期性应变是由金属丝的膨胀和框架的位移导致的金属丝根部的金属丝曲率变化而产生的。损伤模型根据应变循环幅度和线材的弹塑性疲劳响应来计算寿命。该模型支持电源模块的虚拟鉴定,其中电线弯曲疲劳是主要的失效机制。该模型已使用温度循环测试结果进行了验证,可用于得出设计准则并建立加速测试结果与现场寿命之间的关系。

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