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A numerical solution to thermo-mechanical behavior of temperature dependent rotating functionally graded annulus disks

机译:温度依赖性旋转功能分级环盘的热力学行为的数值解决方案

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PurposeThe purpose of this study is to investigate Thermo-mechanical limit elastic speed analysis of functionally graded (FG) rotating disks with the temperature-dependent material properties. Three different material models i.e. power law, sigmoid law and exponential law, along with varying disk profiles, namely, uniform thickness, tapered and exponential disk was considered.Design/methodology/approachThe methodology adopted was variational principle wherein the solution was obtained by Galerkin's error minimization principle. The Young's modulus, coefficient of thermal expansion and yield stress variation were considered temperature-dependent.FindingsThe study shows a substantial increase in limit speed as disk profiles change from uniform thickness to exponentially varying thickness. At any radius in a disk, the difference in von Mises stress and yield strength shows the remaining stress-bearing capacity of material at that location.Practical implicationsRotating disks are irreplaceable components in machinery and are used widely from power transmission assemblies (for example, gas turbine disks in an aircraft) to energy storage devices. During operations, these structures are mainly subjected to a combination of mechanical and thermal loadings.Originality/valueThe findings of the present study illustrate the best material models and their grading index, desired for the fabrication of uniform, as well as varying FG disks. Finite element analysis has been performed to validate the present study and good agreement between both the methods is seen.
机译:本研究的目的目的是研究功能梯度(FG)旋转盘的热机密限位弹性分析,具有温度依赖性材料特性。三种不同的材料模型,即电力法,琴状法和指数定律以及不同的磁盘剖面,即均匀的厚度,锥形和指数磁盘.Design/methodology/Approach采用的方法是变分原理,其中通过Galerkin的误差获得了解决方案最小化原则。杨氏模量,热膨胀系数和屈服应力变化被认为是温度依赖性的.Findingsthe研究表明,由于磁盘型材从均匀厚度变为指数变化的厚度,所以限制速度的显着增加。在磁盘中的任何半径处,Von Mises应力和产量强度的差异显示了该位置的材料的剩余应力承载能力。正常的含义调节盘是机械中的不可替代的部件,并且广泛地由动力传动组件(例如,气体)广泛使用(例如,气体飞机中的涡轮机磁盘)到储能器件。在操作期间,这些结构主要受到机械和热载荷的组合。本研究的敏捷/ valethe发现的结果示出了所需的制造均匀的最佳材料模型及其分级指数,以及不同的FG磁盘。已经进行了有限元分析以验证目前的研究和两种方法之间的良好一致性。

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