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Proceeding Paper

Study on Intensifying the Fatigue of Mechanical Products: Examination of Household Refrigerator †

1
Mechanical Technology Faculty, Ethiopian Technical University, Addis Ababa P.O. Box 190310, Ethiopia
2
Department of Mechanical Engineering, Dean of Engineering and Computer Science, Baylor University, Waco, TX 76798-7356, USA
*
Author to whom correspondence should be addressed.
Presented at the 4th International Electronic Conference on Applied Sciences, 27 October–10 November 2023; Available online: https://asec2023.sciforum.net/.
Eng. Proc. 2023, 56(1), 107; https://doi.org/10.3390/ASEC2023-15371
Published: 26 October 2023
(This article belongs to the Proceedings of The 4th International Electronic Conference on Applied Sciences)

Abstract

To refine the fatigue lifespan of products such as automobiles, refrigerators, etc., parametric accelerated life testing (ALT), as a new method for ensuring structured reliability, put forward to assess designs by subjecting them to repeated loads. This method is based on identifying the failure mechanism and redesigning the product. It involves: (1) a parametric ALT procedure based on BX lifespan, (2) load evaluation for elevated life experiments, (3) a tailored sample of parametric ALTs with changes, and (4) a calculation of whether the product reaches the BX lifespan objective. As such, life-stress failure type are suggested along with effort idea, accelerated factor, and sample size. This method of structured reliability, such as parametric ALT, might help designers to discover the product flaws influencing reliability, as indicated by enhancement in life, LB, and lower failure rate, λ, seen during the design phase. As a result, manufacturers may avoid recall due to market failure. As a test investigation, we redesigned a hinge kit system (HKS) in a household refrigerator. After tailoring the ALT parameters, HKSs with modifications were predicted to fulfil the life objective—B1 life of ten years.
Keywords: fatigue; design defects; mechanical product; parametric ALT; HKS fatigue; design defects; mechanical product; parametric ALT; HKS

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MDPI and ACS Style

Woo, S.; O’Neal, D.L.; Hassen, Y.M.; Mebrahtu, G. Study on Intensifying the Fatigue of Mechanical Products: Examination of Household Refrigerator. Eng. Proc. 2023, 56, 107. https://doi.org/10.3390/ASEC2023-15371

AMA Style

Woo S, O’Neal DL, Hassen YM, Mebrahtu G. Study on Intensifying the Fatigue of Mechanical Products: Examination of Household Refrigerator. Engineering Proceedings. 2023; 56(1):107. https://doi.org/10.3390/ASEC2023-15371

Chicago/Turabian Style

Woo, Seongwoo, Dennis L. O’Neal, Yimer Mohammed Hassen, and Gezae Mebrahtu. 2023. "Study on Intensifying the Fatigue of Mechanical Products: Examination of Household Refrigerator" Engineering Proceedings 56, no. 1: 107. https://doi.org/10.3390/ASEC2023-15371

APA Style

Woo, S., O’Neal, D. L., Hassen, Y. M., & Mebrahtu, G. (2023). Study on Intensifying the Fatigue of Mechanical Products: Examination of Household Refrigerator. Engineering Proceedings, 56(1), 107. https://doi.org/10.3390/ASEC2023-15371

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