作者
Jody N Hall, J Wayne Jones, Anil K Sachdev
发表日期
1994/6/15
期刊
Materials Science and Engineering: A
卷号
183
期号
1-2
页码范围
69-80
出版商
Elsevier
简介
The effects of particle size, volume fraction and matrix strength on the stress-controlled axial fatigue behavior and the probability of particle fracture were evaluated for 2124 aluminum alloy reinforced with SiC particles. Average particle sizes of 2, 5, 9 and 20 μm and volume fractions of 0.10, 0.20 and 0.35 were examined for four different microstructural conditions. Tensile and yield strengths and fatigue life were substantially higher in the reinforced alloys. Strength and fatigue life increased as reinforcement particle size decreased and volume fraction loading increased. The frequency of particle fracture during crack propagation was found to be dependent on matrix strength, particle size and volume fraction and on maximum crack tip stress intensity. particle fracture can be rationalized, phenomenologically, by the application of modified process zone models, originally derived for static fracture processes, and …
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