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SiCp/6061Al合金复合材料循环变形行为的有限元模拟

郭素娟 , 康国政

金属学报

在细观分析模型的基础上, 利用ABAQUS有限元程序对T6热处理后不同体积分数的颗粒增强SiCP/6061Al合金复合材料的单调拉伸行为和单轴循环变形行为进行了有限元数值模拟; 同时, 通过与相应的实验结果的比较对模拟效果进行了评价. 模拟结果表明: 由于针对基体采用了新发展的、能够描述其循环棘轮行为的材料本构模型, 本文建立的有限元分析模型对颗粒增强金属基复合材料的循环变形行为, 特别是循环棘轮行为得到了较为合理的描述. 模拟结果同时还揭示了复合材料内循环变形行为在细观层次上的不均匀性和复杂性.

关键词: 金属基复合材料 , Particulate , Cyclic deformation , Ratcheting , Finite element method

Experimental Study on the Uniaxial Cyclic Deformation of 25CDV4.11 Steel

Guozheng KANG , Qianhua KAN , Juan ZHANG

材料科学技术(英)

The strain cyclic characteristics and ratcheting behavior of 25CDV4.11 steel were studied by the experiments under uniaxial cyclic loading with relatively high cyclic number and at room temperature. The cyclic hardening/softening feature of the material was first observed under the uniaxial strain cycling with various strain amplitudes. Then, the ratcheting behavior of the material was researched in detail, and the effects of stress amplitude and mean stress on the ratcheting were discussed under uniaxial asymmetrical stress cycling. Comparing with the experimental results of SS316L stainless steel, it is concluded that the material exhibits remarkable cyclic softening feature, and then a special ratcheting behavior is caused. Some conclusions useful to establish corresponding constitutive model are obtained.

关键词: Ratcheting , null , null , null

Uniaxial Ratcheting Behaviors of Metals with Diffent Crystal Structures or Values of Fault Energy: Macroscopic Experiments

Guozheng Kang

材料科学技术(英)

The uniaxial ratcheting behaviors of several metals with different crystal structures or values of fault energy were observed by the stress-controlled cyclic tests at room temperature. The prescribed metals included 316L stainless steel, pure copper, pure aluminum, and ordinary 20# carbon steel. The effects of applied mean stress, stress amplitude and stress ratio on the uniaxial ratcheting were also investigated. The observations show that different crystal structures or values of fault energy result in more or less different ratcheting behaviors for the prescribed metals. The different ratcheting behaviors are partially caused by the variation of dislocation mobility.

关键词: Ratcheting

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