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The Influence of Torsional-Rigidity Bounds for Composite Shafts with Specific Cross-Sections

机译:扭转刚度边界对特殊截面复合轴的影响

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We consider the Saint-Venant torsion problem of composite shafts. Two different kinds of imperfect interfaces are considered. One models a thin interphase of low shear modulus and the other models a thin interphase of high shear modulus. The imperfect interfaces are characterized by parameters given in terms of the thickness and shear modulus of the interphases. Using variational principles, we derive rigorous bounds for the torsional rigidity of composite shafts with cross-sections of arbitrary shapes. The analysis is based on the construction of admissible fields in the inclusions and in the matrix. We obtain the general expression for the bounds and demonstrate the results with some particular examples. Specifically, circular, elliptical and trianglar shafts are considered to exemplify the derived bounds. We incorporate the cross-section shape factor into the bounds and show how the position and size of the inclusion influence the bounds. Under specific conditions, the lower and upper bounds will coincide and agree with the exact torsional rigidity.
机译:我们考虑了复合材料轴的Saint-Venant扭转问题。考虑了两种不同类型的不完善接口。一种模拟低剪切模量的薄相,另一种模拟高剪切模量的薄相。不完美的界面的特征在于根据相的厚度和剪切模量给出的参数。使用变分原理,我们得出具有任意形状横截面的复合轴的扭转刚度的严格界限。该分析基于内含物和矩阵中可允许字段的构造。我们获得了边界的一般表达式,并用一些特定的例子证明了结果。具体地,考虑圆形,椭圆形和三角形轴以举例说明导出的边界。我们将横截面形状因子合并到边界中,并显示夹杂物的位置和大小如何影响边界。在特定条件下,上下限将重合并与确切的扭转刚度一致。

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