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Designing for Turbine Housing Weight Reduction Using Thermal Fatigue Crack Propagation Prediction Technology
Journal Article
2019-01-0533
ISSN: 2641-9645, e-ISSN: 2641-9645
Sector:
Topic:
Citation:
San'o, T., Sorazawa, M., and Takahashi, S., "Designing for Turbine Housing Weight Reduction Using Thermal Fatigue Crack Propagation Prediction Technology," SAE Int. J. Adv. & Curr. Prac. in Mobility 1(3):1065-1073, 2019, https://doi.org/10.4271/2019-01-0533.
Language:
English
References
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- Chan , P.H. , Tshai , K.Y. , Johnson , M. , and Choo , H.L. Finite Element Modelling of Static and Fatigue Failure of Composite Repair System in Offshore Pipe Risers Advanced Materials Research 875-877 1063 1068 2014
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- Zheng , T. and Du , Z.-Z. Use Direct Cyclic and Sub-Modeling Approach to Analyze Solder Joint Fatigue Reliability ASME International Mechanical Engineering Congress and Exposition, Proceedings 2008 5 333 338
- Du , Z.-Z. , Wang , J. , and Fan , X. 5
- Arifeen , S.U. , Wolemiwa , V. , Nwoke , D. , Barannyk , L.L. et al. Finite Element Analysis and Fatigue Life Prediction of an Aluminum Alloy Braze for High Temperature Thermoelectric Generator Package Assembly ASME International Mechanical Engineering Congress and Exposition, Proceedings (IMECE) 2014 10
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