Predicting high cycle fatigue life with unified mechanics theory
Author:
Publisher
Elsevier BV
Subject
Mechanics of Materials,General Materials Science,Instrumentation
Reference73 articles.
1. Physical Metallurgy Principles;Abbaschian,2009
2. Physical Chemistry;Atkins,2018
3. Introduction to Unified Mechanics Theory with Applications;Basaran,2021
4. Using finite element analysis for simulation of reliability tests on solder joints in microelectronic packaging;Basaran;Comput. Struct.,2000
5. Electromigration induced strain field simulations for nanoelectronics lead-free solder joints;Basaran;Int. J. Solid Struct.,2007
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