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Computational contact mechanics analysis of laterally graded orthotropic half-planes

机译:横向梯度正交各向异性半平面的计算接触力学分析

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Purpose - Frictional sliding contact problems between laterally graded orthotropic half-planes and a flat rigid stamp are investigated. The presented study aims at guiding engineering applications in the prediction of the contact response of orthotropic laterally graded members. Design/methodology/approach - The solution procedure is based on a finite element (FE) approach which is conducted with an efficient FE analysis software ANSYS. The spatial gradations of the orthotropic stiffness constants through the horizontal axis are enabled utilizing the homogeneous FE approach. The Augmented Lagrangian contact algorithm is used as an iterative non-linear solution method in the contact analysis. Findings - The accuracy of the proposed FE solution method is approved by using the comparisons of the results with those computed using an analytical technique. The prominent results indicate that the surface contact stresses can be mitigated upon increasing the degree of orthotropy and positive lateral gradations. Originality/value - One can infer from the literature survey that, the contact mechanics analysis of orthotropic laterally graded materials has not been investigated so far. In this study, an FE method-based computational solution procedure for the aforementioned problem is addressed. The presented study aims at guiding engineering applications in the prediction of the contact response of orthotropic laterally graded members. Additionally, this study provides some useful points related to computational contact mechanics analysis of orthotropic structures.
机译:目的-研究横向梯度正交异性半平面和平坦刚性压模之间的摩擦滑动接触问题。提出的研究旨在指导正交异性横向渐变构件的接触响应预测中的工程应用。设计/方法/方法-解决程序基于有限元(FE)方法,该方法是通过高效的FE分析软件ANSYS进行的。利用齐次有限元方法,可以通过水平轴实现正交各向异性刚度常数的空间渐变。在接触分析中,将增强拉格朗日接触算法用作迭代非线性求解方法。结果-通过将结果与使用分析技术计算出的结果进行比较,可以验证所提出的有限元求解方法的准确性。突出的结果表明,通过增加正交各向异性的程度和正的横向渐变,可以减轻表面接触应力。独创性/价值-从文献调查中可以得出,到目前为止,尚未研究正交异性横向梯度材料的接触力学分析。在这项研究中,针对上述问题的基于有限元方法的计算解决程序得以解决。提出的研究旨在指导正交异性横向渐变构件的接触响应预测中的工程应用。此外,这项研究提供了一些与正交异性结构的计算接触力学分析有关的有用的观点。

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