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Effects of size and boundary conditions on the yield strength of heterogeneous materials

机译:尺寸和边界条件对异质材料屈服强度的影响

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摘要

Studied is the apparent yield strength of a specimen consisting of an elastic -perfectly plastic heterogeneous material and being smaller than a representative volume element. The two funda- mental variation principles of limit analysis, reformulated by means of dual gauge functions, are applied to qualitatively bring out effects of size and boundary conditions. It is shown that (i) the static apparent yield strength domain of any specimen is includes n its kinematic one; (ii) the static apparent yield strength domain of any specimen includes the intersection of the static apparent yield strength domains of the smaller specimens resulting form the partition of the ini- tial one; (iii) the kinematic apparent yield strength domain of any specimen is included in the volume fraction weighted convex combination of the kinematic apparent yield strength domains of the smaller specimens partitioning the initial one. These results give rise to a hierarchical chain of apparent yield strength domain inclusions.
机译:研究了由弹性完美塑性异质材料组成且小于代表性体积元素的试样的表观屈服强度。极限分析的两个基本变化原理(通过双重量规函数重新制定)适用于定性地显示尺寸和边界条件的影响。结果表明:(i)任何试样的静态表观屈服强度范围在其运动学范围内都包括在内; (ii)任何试样的静态表观屈服强度域都包括较小试样的静态表观屈服强度域的交集,这些域是由初始试样的隔板形成的; (iii)任何样品的运动表观屈服强度域都包括在划分初始样品的较小样品的运动表观屈服强度域的体积分数加权凸组合中。这些结果导致表观屈服强度域包含物的层次链。

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