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圆柱型功能梯度双材料界面周期裂纹问题研究 被引量:1
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作者 赵志耀 张雪霞 赵文彬 《太原科技大学学报》 2020年第1期50-54,共5页
研究了反平面剪切载荷作用下圆柱型功能梯度双材料界面周期裂纹尖端场的力学问题。建立圆柱型功能梯度双材料的控制方程和弧形界面周期裂纹边界条件,将力学问题转变为偏微分方程组的边值问题。利用分离变量和待定系数的方法,设定一个具... 研究了反平面剪切载荷作用下圆柱型功能梯度双材料界面周期裂纹尖端场的力学问题。建立圆柱型功能梯度双材料的控制方程和弧形界面周期裂纹边界条件,将力学问题转变为偏微分方程组的边值问题。利用分离变量和待定系数的方法,设定一个具有待定系数的特殊位移函数,借助于边界条件,获得满足边界条件的偏微分方程的解。引入位错密度函数以及奇异积分方程,从而推导出应力强度因子的计算公式。 展开更多
关键词 圆柱型 功能梯度双材料 弧形界面周期裂纹 分离变量法 应力强度因子
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Phase composition, transition and structure stability of functionally graded cemented carbide with dual phase structure 被引量:2
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作者 张立 陈述 +3 位作者 熊湘君 贺跃辉 黄伯云 张传福 《Journal of Central South University of Technology》 EI 2007年第2期149-152,共4页
The phase composition, phase transition and phase structure transformation of the wire-cut section of functionally graded WC-Co cemented carbide with dual phase structure were investigated by XRD phase analysis. It is... The phase composition, phase transition and phase structure transformation of the wire-cut section of functionally graded WC-Co cemented carbide with dual phase structure were investigated by XRD phase analysis. It is shown that the composition of η phase in the core zone is Co_3W_3C (M_6 C type). The structure of cobalt based solid solution binder phase is fcc type. At the cooling stage of the sintering process, the phase transition of η phase, i.e. M_6C→M_12C and the martensitic phase transition of the cobalt based solid solution binder phase, i.e. fcc→hcp are suppressed, which facilitates the strengthening of the alloy. Because the instantaneous temperature of the discharge channel is as high as 10 000 ℃ during the wire cutting process, the processed surface is oxidized. Nevertheless, the oxide layer thickness is in micro grade. In the oxide film, η phase is decomposed into W_2C and CoO, and cobalt based solid solution binder is selectively oxidized, while WC remains stable due to the existence of carbon containing liquid organic cutting medium. 展开更多
关键词 cemented carbide dual phase structure functionally graded material phase identification fracture toughness testing
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Asymmetric Green's functions for exponentially graded transversely isotropic substrate–coating system
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作者 F.Akbari A.Khojasteh M.Rahimian 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第1期169-184,共16页
By virtue of a complete set of two displacement potentials,an analytical derivation of the elastostatic Green’s functions of an exponentially graded transversely isotropic substrate–coating system is presented.Three... By virtue of a complete set of two displacement potentials,an analytical derivation of the elastostatic Green’s functions of an exponentially graded transversely isotropic substrate–coating system is presented.Three-dimensional point–load and patch–load Green’s functions for stresses and displacements are given in line-integral representations.The formulation includes a complete set of transformed stress–potential and displacement–potential relations,with utilizing Fourier series and Hankel transforms.As illustrations,the present Green’s functions are degenerated to the special cases such as an exponentially graded half-space and a homogeneous two-layered half-space Green’s functions.Because of complicated integrand functions,the integrals are evaluated numerically and for numerical computation of the integrals,a robust and effective methodology is laid out which gives the necessary account of the presence of singularities of integration.Comparisons of the existing numerical solutions for homogeneous two-layered isotropic and transversely isotropic half-spaces are made to confirm the accuracy of the present solutions.Some typical numerical examples are also given to show the general features of the exponentially graded two-layered half-space Green’s functions that the effect of degree of variation of material properties will be recognized. 展开更多
关键词 functionally graded material transversely isotropic BI-MATERIAL Green’s function coating-substrate displacement potential
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