曲线各向异性可变形连续体应力集中分析

T. Akano, O. Fakinlede, P. Olayiwola
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引用次数: 1

摘要

在圆柱连续体中,由于周向破坏而产生环向应力。这主要发生在圆柱受到沿圆周方向变化的机械载荷时。另一方面,径向应力是在圆柱体中心轴方向或相反方向的应力。本文研究了曲线各向异性对极正交异性空心圆柱体径向和切向应力的影响。推导了计算材料内部径向和环向应力的控制方程。利用微分变换法(DTM)实现了对极正交各向异性空心圆柱的半解析方法。基于径向和周向载荷对生长圆柱体径向和环向应力影响的极正交异性研究结果显示,弹性响应有助于识别曲线各向异性连续体的一些突出特性。研究还表明,纤维取向、径向和切向应力对不同壁厚圆柱段的特性响应有影响。研究表明,曲线各向异性对极正交异性空心圆柱体的径向和环向应力有显著影响。
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On Analysis of Stress Concentration in Curvilinear Anisotropic Deformable Continuum Bodies
In cylindrical continua, hoop stresses are induced due to the circumferential failure. This mainly happens when the cylinder is subjected to mechanical loads which vary in the circumferential directions. On the other hand, radial stress is stress in the direction of or opposite to the central axis of a cylindrical body. In the present study, the influence of curvilinear anisotropy on the radial and tangential stresses of the polar-orthotropic hollow cylinder is presented. The governing equations were derived to evaluate the radial and hoop stresses inside the material. A semi-analytical method through differential transform method (DTM) for the polar-orthotropic hollow cylinder is implemented in the solution. The findings, based on polar-orthotropy, of the effect of the radial and circumferential loads on the radial and hoop stresses of the growing cylinders, show elastic responses that assist in identifying some of the outstanding properties of the curvilinear anisotropic continuums. It is also revealed that the characteristic response of various wall thicknesses of the cylindrical segment is influenced by the fibre orientation, radial and tangential stresses. This work has shown that the curvilinear anisotropy momentously affects the radial and hoop stresses on the polar-orthotropic hollow cylinder.
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