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The influence of void size on the micropolar constitutive properties of model heterogeneous materials

机译:空隙尺寸对模型异质材料微极本构特性的影响

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摘要

In this paper the mechanical behaviour of model heterogeneous materials consisting of regular periodic arrays of circular voids within a polymeric matrix is investigated. Circular ring samples of the materials were fabricated by machining the voids into commercially available polymer sheet. Ring samples of differing sizes but similar geometries were loaded using mechanical testing equipment. Sample stiffness was found to depend on sample size with stiffness increasing as size reduced. The periodic nature of the void arrays also facilitated detailed finite element analysis of each sample. The results obtained by analysis substantiate the observed dependence of stiffness on size. Classical elasticity theory does not acknowledge this size effect but more generalized elasticity theories do predict it. Micropolar elasticity theory has therefore been used to interpret the sample stiffness data and identify constitutive properties. Modulus values for the model materials have been quantified. Values of two additional constitutive properties, the characteristic length and the coupling number, which are present within micropolar elasticity but absent from its classic counterpart have also been determined. The dependence of these additional properties on void size has been investigated and characteristic length values compared to the length scales inherent within the structure of the model materials.
机译:在本文中,研究了由聚合物基体内的圆形空隙的规则周期性阵列组成的模型异质材料的力学行为。通过将空隙加工成可商购的聚合物片材来制造材料的圆环样品。使用机械测试设备加载大小不同但几何形状相似的环形样品。发现样品的刚度取决于样品的大小,并且随着尺寸的减小而增加。空隙阵列的周期性也有助于对每个样品进行详细的有限元分析。通过分析获得的结果证实了所观察到的刚度对尺寸的依赖性。古典弹性理论并没有承认这种规模效应,但是更广义的弹性理论确实可以预测这种效应。因此,微极性弹性理论已被用于解释样品刚度数据并确定本构性质。模型材料的模量值已经量化。还确定了微极性弹性内存在的两个附加本构特性(特征长度和耦合数)的值,而经典的对应特性不存在。已经研究了这些附加属性对空隙尺寸的依赖性,并将特征长度值与模型材料结构中固有的长度尺度进行了比较。

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