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A REVIEW OF METHODS FOR DEVELOPING ACCELERATED TESTING CRITERIA

机译:开发加速测试标准的方法综述

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Accelerated vibration testing seeks to compress long service exposures to vibration into a reduced length laboratory test by increasing the amplitude and/or frequency of the applied inputs during the laboratory test relative to the amplitude and/or frequency experienced during service. This testing procedure provides an important tool that can reduce testing time associated with a new design and reduce time to market. This paper will summarize current methods that are employed to develop accelerated testing criteria and will highlight the attributes and limitations of these methods. Typically there are two ways of accelerating vibration testing. The first method involves testing at fewer cycles but at higher amplitude levels; and the second method involves testing at higher frequencies (rates). A combination of the two is also an option. Development of an accelerated test based on either of these methods requires a priori knowledge of the controlling failure mechanisms. The review will begin with a discussion of Miner's Rule for developing accelerated testing criteria. This rule, which is based on a linear damage accumulation assumption, was first proposed in the 1940's for fatigue failures of ductile metals loaded repetitively in bending. Confounding factors associated with developing accelerated testing criteria for nonlinear vibration response (e.g., rattling of components) will be illustrated with an example.
机译:加速振动测试试图通过增加在实验室测试期间相对于服务期间经历的幅度和/或频率增加所施加的输入的幅度和/或频率来压缩长期服务暴露于减小的长度实验室测试。此测试程序提供了一个重要的工具,可以减少与新设计相关的测试时间并将时间缩短到市场。本文将总结用于开发加速测试标准的当前方法,并将突出这些方法的属性和限制。通常,有两种方式可以加速振动测试。第一种方法涉及在更少的循环中进行测试,但在较高的幅度水平下;第二种方法涉及在较高频率(速率)上进行测试。两者的组合也是一种选择。基于这些方法中的任一种的加速测试的开发需要先验的控制失败机制。审查将首先讨论矿工规则,以开发加速测试标准。本规则基于线性损伤累积假设,首先在1940年中提出,用于重复地弯曲的延性金属的疲劳失效。将用一个例子说明与开发加速测试标准的混淆因素(例如,组分的嘎嘎作响)。

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