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Optimum failure truncated testing strategies.

机译:最佳失败会截断测试策略。

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摘要

Accumulated fatigue damage on mechanical components due to random stress loads eventually causes failure. Therefore products with lower failure rates are more desirable. Testing mechanical components for their intended purpose under predetermined working conditions is a common practice used by industries to prevent failures. Fatigue tests are categorized as Time Truncated or Failure Truncated, known in the literature as Type I and Type II tests, respectively. In failure truncated tests, the mechanical components are tested until the desired number of results is obtained. The parameters of a typical failure truncated test include the capacity of the test facility, the actual number of components placed on the test, the termination of the test once a predetermined number of test results has been collected and the duration of the test. Also, important is the cost for test time and components as well as the desired confidence in the results. The investigation of varying Type II testing strategies to determine optimal test methods is the essence of this research. Also, in this research a new failure truncated test is investigated. This research considers two different Type II test strategies. The strategies are termed: the Modified Sudden Death Test (MSDT) and the Classified Sudden Death Test (CSDT). In this study, the time and cost domains for MSDT and CSDT are investigated. The theoretical research in test completion time for the MSDT and CSDT is done to establish the most advantageous testing strategy from both a time and cost perspective.
机译:由于随机应力载荷而导致的机械部件上累积的疲劳损坏最终会导致故障。因此,故障率较低的产品是更理想的。在预定的工作条件下对机械部件进行测试以达到其预期目的是工业界为防止故障而采用的一种常见做法。疲劳测试分为时间截断或故障截断,在文献中分别称为I型和II型测试。在故障截断测试中,对机械组件进行测试,直到获得所需的结果数量为止。典型的被截断的失败测试的参数包括测试设施的容量,放置在测试上的实际组件数,一旦收集到预定数量的测试结果即终止测试以及测试的持续时间。同样,重要的是测试时间和组件的成本以及对结果的期望置信度。研究各种II型测试策略以确定最佳测试方法是本研究的本质。此外,在这项研究中,还研究了一种新的失效截断测试。这项研究考虑了两种不同的II型测试策略。这些策略被称为:改进的猝死测试(MSDT)和分类的猝死测试(CSDT)。在这项研究中,研究了MSDT和CSDT的时间和成本域。从时间和成本的角度,对MSDT和CSDT的测试完成时间进行了理论研究,以建立最有利的测试策略。

著录项

  • 作者

    Kostandyan, Erik.;

  • 作者单位

    Western Michigan University.;

  • 授予单位 Western Michigan University.;
  • 学科 Engineering Industrial.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 139 p.
  • 总页数 139
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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