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Design stage confirmation of lifetime improvement for newly modified products through accelerated life testing

机译:通过加速寿命测试,在设计阶段确认新改进产品的寿命改进

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摘要

After a modification to the original version of a product and before mass production, the expected improvement in the product lifetime or reliability needs to be validated. This paper presents three approaches based on accelerated life testing to verify, estimate and confirm the lifetime or reliability of a newly modified product at design stage: ALT comparative approach, reliability estimation approach, and reliability validation test. Test samples of the original and modified versions are expected to fail during the tests in order to obtain their failure time data. In ALT comparative approach, the statistical comparison between failure time data of the original and modified versions is used to verify the required improvement in lifetime. In reliability estimation approach, the relationship made between available lifetime and failure time data of the original version is used to extrapolate lifetime data of the modified version from its failure time data. Since modified versions are usually highly reliable, all test samples might survive the tests (without any failures) that results in the lack of failure time data for statistical analysis. To confirm a level of service reliability with confidence, reliability validation test is presented to make an estimate of the number of samples required to survive the tests. To fulfill the same level of confidence for fewer number of prototypes (as test samples), the test time must be extended. On the other hand, more prototypes are needed to pass a shorter test time if there are any time constraints.
机译:在对产品的原始版本进行修改之后,在批量生产之前,需要验证产品寿命或可靠性方面的预期改进。本文提出了三种基于加速寿命测试的方法来验证,估计和确认设计阶段新修改产品的寿命或可靠性:ALT比较方法,可靠性估计方法和可靠性验证测试。原始版本和修改版本的测试样本在测试期间可能会失败,以便获取其失败时间数据。在ALT比较方法中,原始版本和修改版本的故障时间数据之间的统计比较用于验证寿命方面所需的改进。在可靠性估计方法中,可用寿命与原始版本的故障时间数据之间的关系用于从修改版本的故障时间数据中推断出修改版本的寿命数据。由于修改后的版本通常是高度可靠的,因此所有测试样本都可以在测试中幸存下来(没有任何故障),从而导致缺少用于统计分析的故障时间数据。为了放心地确定服务可靠性水平,提出了可靠性验证测试,以估计在测试中幸存的样本数量。为了以更少的原型数量(作为测试样本)达到相同的置信度,必须延长测试时间。另一方面,如果有任何时间限制,则需要更多的原型来通过较短的测试时间。

著录项

  • 来源
    《Reliability Engineering & System Safety》 |2010年第8期|P.897-905|共9页
  • 作者单位

    Centre Interuniversitaire de Recherche sur les Reseaux d'Entreprise, la Logistique et le Transport (CIRRELT), Departement de Gtnie Mecanique, Pavilion Adrien-Pouliot, Universite Laval, Quebec, Canada G1V 0A6 Centre Interdisciplinaire de Recherche en Readaptation et en Integration Sociale (CIRRIS), Institut de Readaptation en Deficience Physique de Quebec, 525 Boul. Hamel, Quebec,Canada G1M 2S8;

    Centre Interuniversitaire de Recherche sur les Reseaux d'Entreprise, la Logistique et le Transport (CIRRELT), Departement de Gtnie Mecanique, Pavilion Adrien-Pouliot, Universite Laval, Quebec, Canada G1V 0A6 Centre Interdisciplinaire de Recherche en Readaptation et en Integration Sociale (CIRRIS), Institut de Readaptation en Deficience Physique de Quebec, 525 Boul. Hamel, Quebec,Canada G1M 2S8;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    accelerated life testing; newly modified product; reliability; validation test; lifetime;

    机译:加速寿命测试;新改良的产品;可靠性;验证测试;一生;

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