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Design Technology of Accelerated Life Test Based on the Load Spectrum Compilation and D-efficiency

机译:基于载荷谱编译和D效率的加速寿命试验设计技术

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摘要

The accelerated life test is a highly efficient method for long life evaluation of products, but the operation profile validity and test time optimization are unavoidable in the actual application. Herein, a design technology research was conducted. First, the load spectrum of temperature and vibration on operation profile of a rail transportation equipment was measured. Thus the load spectrum was compiled based on 3-parameter rain-flow counting method and operation profile was equivalently designed based on Corten-Dolan cumulative damage model to ensure the validity. Then step-stress accelerated life test model based on generalized Eyring model and Weibull distribution was developed. The design method of step-stress accelerated life test with the shortest test time was given. Finally, the design method was applied in signal output board of rail transportation case. The residual life assessment was made for the 2-year-used equipment taking the current usage profile as the first step of the step-stress accelerated life test which verifying the design method.
机译:加速寿命测试是一种用于产品长寿命评估的高效方法,但是在实际应用中不可避免地要进行操作曲线有效性和测试时间优化。在此,进行了设计技术研究。首先,测量轨道交通设备的运行曲线上的温度和振动的载荷谱。因此,基于三参数雨流计数法编制了负荷谱,并基于Corten-Dolan累积损伤模型等效地设计了运行曲线,以确保有效性。然后建立了基于广义Eyring模型和Weibull分布的阶梯应力加速寿命试验模型。给出了测试时间最短的阶梯应力加速寿命试验的设计方法。最后,将该设计方法应用于轨道交通运输箱的信号输出板。对两年使用过的设备进行剩余寿命评估,将当前的使用情况作为逐步应力加速寿命测试的第一步,以验证设计方法。

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