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纳米铝合金的断裂与塑性变形 被引量:1
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作者 朱其芳 孙泽明 +4 位作者 邵贝羚 尤振平 田晓峰 王福生 张金波 《稀有金属》 EI CAS CSCD 北大核心 2007年第4期451-456,共6页
在结构非均匀的多晶材料中,局域化塑性变形不仅在微观层次而且也在介观层次上具有波动特征,并以塑性波形态进行扩展,这一现象与材料亚韧性断裂之间有相互关系。纳米晶、亚微米微晶2009铝合金试样在经受拉伸应力实验时,试样上各点的应变... 在结构非均匀的多晶材料中,局域化塑性变形不仅在微观层次而且也在介观层次上具有波动特征,并以塑性波形态进行扩展,这一现象与材料亚韧性断裂之间有相互关系。纳米晶、亚微米微晶2009铝合金试样在经受拉伸应力实验时,试样上各点的应变量在三维方向上均呈波动性变化,且随着外加载荷的增加而波动的幅度增加。塑性变形的波动的传播是在加载过程中,试样内的剪切稳定性丧失后,由于晶粒群转动,在试样上沿最大剪应力方向形成了吕得尔斯条带而逐步形成的。主剪切带形成了一个塑性变形的波峰,接下去侧生条带和次生带形成波峰和波低谷区,周而复始,形成了塑性变形的波动的传播。应力应变峰值的形成与材料缺陷所造成应力集中有关。试样于应力集中点起始迅速开裂。宏观断裂强度仅体现了材质缺陷弥散程度的统计平均数。 展开更多
关键词 介观力学 2009铝合金 形变波动性 纳米晶
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The form-invariance of wave equations without requiring a priori relations between field variables
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作者 XIANG Zhi Hai 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第12期2285-2296,共12页
According to the principle of relativity,the equations describing the laws of physics should have the same forms in all admissible frames of reference,i.e.,form-invariance is an intrinsic property of correct wave equa... According to the principle of relativity,the equations describing the laws of physics should have the same forms in all admissible frames of reference,i.e.,form-invariance is an intrinsic property of correct wave equations.However,so far in the design of metamaterials by transformation methods,the form-invariance is always proved by using certain relations between field variables before and after coordinate transformation.The main contribution of this paper is to give general proofs of form-invariance of electromagnetic,sound and elastic wave equations in the global Cartesian coordinate system without using any assumption of the relation between field variables.The results show that electromagnetic wave equations and sound wave equations are intrinsically form-invariant,but traditional elastodynamic equations are not.As a by-product,one can naturally obtain new elastodynamic equations in the time domain that are locally accurate to describe the elastic wave propagation in inhomogeneous media.The validity of these new equations is demonstrated by some numerical simulations of a perfect elastic wave rotator and an approximate elastic wave cloak.These findings are important for solving inverse scattering problems in many fields such as seismology,nondestructive evaluation and metamaterials. 展开更多
关键词 wave equations transformation methods INHOMOGENEITY METAMATERIALS
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