变厚度夹持梯度功能转盘的应力和变形分析

Q3 Engineering
A. K. Thawait, L. Sondhi, S. Sanyal, Shubhankar Bhowmick
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引用次数: 6

摘要

摘要本文报道了变厚度功能梯度旋转圆盘的线弹性分析。通过改变组成成分的体积分数比,圆盘材料呈径向梯度。在无夹紧边界条件下,考虑了三种分布规律,即幂律、指数律和Mori-Tanaka格式,并对其产生的变形和应力进行了计算。采用基于单元的材料性能分级方法对离散单元进行了研究。针对各类物料分布规律,研究了级配对变形和应力的影响。此外,还对不同类型的分布进行了比较。结果表明,在旋转圆盘中,变形场和应力场可由体积分数比的分布规律和分级参数n来控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stress and Deformation Analysis of Clamped Functionally graded Rotating Disks with Variable Thickness
Abstract The present study reports the linear elastic analysis of variable thickness functionally graded rotating disks. Disk material is graded radially by varying the volume fraction ratios of the constituent components. Three types of distribution laws, namely power law, exponential law and Mori–Tanaka scheme are considered on a concave thickness profile rotating disk, and the resulting deformation and stresses are evaluated for clamped-free boundary condition. The investigation is carried out using element based grading of material properties on the discretized elements. The effect of grading on deformation and stresses is investigated for each type of material distribution law. Further, a comparison is made between different types of distributions. The results obtained show that in a rotating disk, the deformation and stress fields can be controlled by the distribution law and grading parameter n of the volume fraction ratio.
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来源期刊
Mechanics and Mechanical Engineering
Mechanics and Mechanical Engineering Engineering-Automotive Engineering
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