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首页> 外文期刊>Acta Mechanica >Elastoplastic modeling of progressive interfacial debonding for particle-reinforced metal-matrix composites
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Elastoplastic modeling of progressive interfacial debonding for particle-reinforced metal-matrix composites

机译:颗粒增强金属基复合材料的渐进界面脱胶的弹塑性建模

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The purpose of this study is to model the elastoplastic behavior of particle-reinforced metal-matrix composites with particle-matrix interfacial debonding. The partially debonding process at the interface is represented by the debonding angles. The equivalent orthotropic elastic moduli are constructed for the debonded yet isotropic particles to characterize the reduction of the load-transfer ability in the debonded directions. To simulate the debonding evolution and the transition between various debonding modes, the volume fractions of various particles are expressed in terms of the Weibull's statistical functions. Micromechanical homogenization procedures are utilized to estimate the effective moduli and the overall yield function of the resultant multi-phase composites. The associative plastic flow rule and isotropic hardening law are postulated based on the continuum plasticity theory. The effects of partially interfacial debonding on the overall yield surfaces and stress-strain relations of the composites are investigated and illustrated via numerical examples as well.
机译:这项研究的目的是模拟具有颗粒-基质界面剥离的颗粒增强金属-基质复合材料的弹塑性行为。界面处的部分剥离过程由剥离角度表示。为脱胶但各向同性的颗粒构造等效的正交各向异性弹性模量,以表征在脱胶方向上载荷传递能力的降低。为了模拟脱粘的演变和各种脱粘模式之间的过渡,用威布尔的统计函数表示各种颗粒的体积分数。微机械均质化程序用于估算所得多相复合材料的有效模量和总屈服函数。根据连续塑性理论,推导了缔合塑性流动规律和各向同性硬化规律。还通过数值实例研究和说明了部分界面剥离对复合材料整体屈服表面和应力-应变关系的影响。

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