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Improving the Reliability of a Domestic Refrigerator Compressor Subjected to Repetitive Loading
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作者 Seong-Woo Woo Dennis L. O’Neal 《Engineering(科研)》 2016年第3期99-115,共17页
As a reliability quantitative specification, parametric accelerated life testing was used to assess the reliability of a newly designed compressor of a commercial refrigerator subjected to repetitive stresses. A gener... As a reliability quantitative specification, parametric accelerated life testing was used to assess the reliability of a newly designed compressor of a commercial refrigerator subjected to repetitive stresses. A generalized life-stress failure model and new sample size equation with a new load concept were derived starting with the basic refrigeration cycle. The sample size equation with the acceleration factor also enabled the parametric accelerated life testing to quickly evaluate the expected lifetime. The design of this testing should help an engineer uncover the design parameters affecting reliability during the design process of the compressor system. Consequently, it should help companies improve product reliability and avoid recalls due to the product failures in the field. A newly designed compressor in a commercial refrigerator was used as a test case. 展开更多
关键词 Refrigeration System Generalized life-Stress Failure Model Load Analysis Sample Size Equation Acceleration Factor parametric accelerated life testing COMPRESSOR Suction Reed Valve
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Reliability Design of Ice-Maker System Subjected to Repetitive Loading
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作者 Seong-Woo Woo 《Engineering(科研)》 2016年第9期618-632,共16页
Parametric Accelerated Life Testing (ALT) was used to improve the reliability of ice-maker system with a fractured helix upper dispenser in field. By using bond graphs and state equations, a variety of mechanical load... Parametric Accelerated Life Testing (ALT) was used to improve the reliability of ice-maker system with a fractured helix upper dispenser in field. By using bond graphs and state equations, a variety of mechanical loads in the assembly were analyzed. The acceleration factor was derived from a generalized life-stress failure model with a new load concept. To reproduce the failure modes and mechanisms causing the fracture, new sample size equation was derived. The sample size equation with the acceleration factor also enabled the parametric accelerated life testing to quickly reproduce early failure in field. Consequently, the failure modes and mechanisms found were identical with those of the failed sample. The design of this testing should help an engineer uncover the design parameters affecting the reliability of fractured helix upper dispenser in field. By eliminating the design flaws, gaps and weldline, the B1 life of the redesign of helix upper dispenser is now guaranteed to be over 10 years with a yearly failure rate of 0.1% that is the reliability quantitative test specifications (RQ). 展开更多
关键词 Reliability Design Sample Size Equation Acceleration Factor parametric accelerated life testing Helix Upper Dispenser Reliability Quantitative Test Specifications (RQ)
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