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Simulation of effects of particle size and volume fraction on Al alloy strength, elongation, and toughness by using strain gradient plasticity concept
L. Zhou ; S. X. Li ; S. T. Huang
刊名Materials & Design
2011
卷号32期号:1页码:353-360
关键词ultrafine-grained aluminum conventional theory matrix composites microbend test indentation fracture deformation
ISSN号0261-3069
中文摘要By using the constitutive equation based on the mechanism-based strain gradient plasticity with finite element software, the yield strength, uniform elongation, and toughness of aluminum alloy 6063 with different grain sizes, different particle diameters and volume fractions were studied numerically. The toughness is defined as the product of yield strength and uniform elongation. The calculation results indicate that the grain refinement and particle refinement cannot substantially improve the uniform elongation but can increase the yield strength of Al alloy when the grain size is on the order of the micron and submicron scale. When the grain size less than 2 mu m, Al alloys usually exhibit high strength and low uniform elongation, and when the grain size greater than 5 mu m, the materials exhibit low strength and high elongation; in either case the toughness is low. However, in the grain size of several micrometers, the toughness of Al alloy is the highest. (C) 2010 Elsevier Ltd. All rights reserved.
原文出处://WOS:000282242300042
公开日期2012-04-13
内容类型期刊论文
源URL[http://210.72.142.130/handle/321006/30985]  
专题金属研究所_中国科学院金属研究所
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L. Zhou,S. X. Li,S. T. Huang. Simulation of effects of particle size and volume fraction on Al alloy strength, elongation, and toughness by using strain gradient plasticity concept[J]. Materials & Design,2011,32(1):353-360.
APA L. Zhou,S. X. Li,&S. T. Huang.(2011).Simulation of effects of particle size and volume fraction on Al alloy strength, elongation, and toughness by using strain gradient plasticity concept.Materials & Design,32(1),353-360.
MLA L. Zhou,et al."Simulation of effects of particle size and volume fraction on Al alloy strength, elongation, and toughness by using strain gradient plasticity concept".Materials & Design 32.1(2011):353-360.
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