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Reliability design and case study of refrigerator parts subjected to repetitive loads under consumer usage conditions

机译:消费者使用条件下承受重复载荷的冰箱零件的可靠性设计和案例研究

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摘要

When newly designed refrigerator parts failed due to repetitive loads under consumer usage conditions in the field, a general method for reliability design was proposed. A newly designed refrigerator compressor system that brings greater energy efficiency to side-by-side (SBS) refrigerators was studied. The laboratory failure mode and mechanism of the compressor was a stopping nose due to design flaws. The data on the failed products in the field, accelerated life tests (ALT) and corrective action plans were used to identify the key control parameters for the mechanical compressor system. The missing controllable design parameters of the compressor system in the design phase were the gap between the frame and the upper due to the stator frame shape. After a tailored series of accelerated life tests with corrective action plans, the B_1 life of the new compressor system is now guaranteed to be over 10 years with a yearly failure rate of 0.1%.
机译:当新设计的冰箱部件由于在现场消费者使用条件下的重复载荷而失效时,提出了一种通用的可靠性设计方法。研究了一种新设计的冰箱压缩机系统,该系统为并排(SBS)冰箱带来了更高的能源效率。压缩机的实验室故障模式和机制由于设计缺陷而令人不寒而栗。现场故障产品的数据,加速寿命测试(ALT)和纠正措施计划用于确定机械压缩机系统的关键控制参数。在设计阶段,由于定子框架的形状,压缩机系统缺少的可控设计参数是框架和上部之间的间隙。经过一系列针对性的加速寿命测试并采取了纠正措施后,新压缩机系统的B_1寿命现已保证超过10年,年故障率为0.1%。

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