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首页> 外文期刊>Mechanics of Structures and Machines >On the Elastic-Plastic Deformation of a Rotating Disk Subjected to a Radial Temperature Gradient
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On the Elastic-Plastic Deformation of a Rotating Disk Subjected to a Radial Temperature Gradient

机译:径向温度梯度作用下转盘的弹塑性变形

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Elastic-plastic stress distribution in a nonisotherraal rotating annular disk is analyzed by the use of Tresca and von Mises criteria. An energy equation that accounts for the convective heat transfer with a variable heat transfer coefficient is modeled. For a given angular velocity, the steady temperature distribution in the disk is obtained by the analytical solution of the energy equation. Tresca yield criterion and its associated flow rule are used to obtain the analytical stress distributions for a linearly hardening material. A computational model is developed to and analyze elastic-plastic deformations of the disk using von Mises yield criterion And its flow rule. This model incorporates Swift's hardening law to simulate linear as well as nonlinear hardening material behavior. It is shown that the stress distribution in the disk is affected significantly by the presence of the temperature gradient.
机译:使用Tresca和von Mises标准分析非等温旋转环形盘中的弹塑性应力分布。建模了一个能量方程,该方程解释了对流热传递具有可变的热传递系数。对于给定的角速度,通过能量方程的解析解可获得磁盘中的稳态温度分布。 Tresca屈服准则及其相关的流动规则用于获得线性硬化材料的分析应力分布。利用冯·米塞斯屈服准则及其流动规律,建立了计算模型,对圆盘的弹塑性变形进行了分析。该模型结合了Swift的硬化定律来模拟线性和非线性硬化材料行为。结果表明,温度梯度的存在会严重影响圆盘中的应力分布。

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