Thermo-mechanical deformation and stress analysis of a rotating FG hollow cylindrical body

IF 3.5 Q1 ENGINEERING, MULTIDISCIPLINARY
L. Sondhi, R. Sahu, Shubhankar Bhowmick, Royal Madan
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引用次数: 1

Abstract

PurposeThe purpose of this study was to perform thermo-mechanical deformation and stress analysis in a functionally graded (FG) hollow cylinder considering steady-state temperature distribution under the effect of rotation, gravity and constant heat generation.Design/methodology/approachNavier's equation was used to solve the problem, and the obtained results were validated with benchmarks found to be in excellent agreement. The variation of temperature and other material properties such as Young's modulus, density, thermal expansion coefficient and thermal conductivity varied radially as per power-law variation.FindingsThe effect of rotation was found to be vital compared to gravity and heat generation when compared individually and in combination. The results of displacement and stresses were presented for varying grading indices.Practical implicationsFG cylinders have huge industrial applications as it opens the possibility of developing structures with a high strength/weight ratio. The present study will benefit industries in identifying the effective grading index that can be used by industries for fabricating FG structures.Originality/valueThe effect of rotation, body force and heat generation on a cylindrical body has not been studied before. Furthermore, the combined effect of rotation, body force and heat generation has been studied to understand the behaviour of cylinders operating under similar conditions.
旋转FG空心圆柱体的热机械变形与应力分析
目的本研究的目的是对考虑旋转、重力和恒定发热影响下稳态温度分布的功能梯度(FG)空心圆柱体进行热机械变形和应力分析。使用设计/方法论/方法Navier方程来解决问题,并用发现非常一致的基准对所获得的结果进行了验证。温度和其他材料特性的变化,如杨氏模量、密度、热膨胀系数和热导率,按照幂律变化呈径向变化。研究发现,当单独或组合比较时,旋转的影响与重力和热量产生相比至关重要。给出了不同级配指数下的位移和应力结果。实际意义FG圆柱体具有巨大的工业应用,因为它为开发具有高强度/重量比的结构开辟了可能性。本研究将有利于行业确定可供行业用于制造FG结构的有效分级指数。独创性/价值以前从未研究过旋转、物体力和热量对圆柱体的影响。此外,还研究了旋转、外力和热量产生的综合效应,以了解在类似条件下运行的圆柱体的行为。
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来源期刊
International Journal of Structural Integrity
International Journal of Structural Integrity ENGINEERING, MULTIDISCIPLINARY-
CiteScore
5.40
自引率
14.80%
发文量
42
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