...
首页> 外文期刊>Annals of Solid and Structural Mechanics >Elastic–plastic analysis of rotating disks having non-linearly variable thickness: residual stresses by overspeeding and service stress state reduction
【24h】

Elastic–plastic analysis of rotating disks having non-linearly variable thickness: residual stresses by overspeeding and service stress state reduction

机译:厚度非线性变化的转盘的弹塑性分析:超速和工作应力状态降低引起的残余应力

获取原文
获取原文并翻译 | 示例
           

摘要

Two models for evaluation of elastic and elastic–plastic stress and strain in non-linear variable thickness rotating disks, either solid or annular, subjected to such a rotational speed to determine stresses beyond yielding are presented. The first model regards the elastic field and the second concerns the elastic–plastic field, assuming that material hardening is isotropic and follows a most general hardening power-law. In the elastic region, a non-homogeneous hypergeometric differential equation is obtained. Such differential equation, which solves the elastic problem in closed form for non-linear variable thickness disks, with thickness given by the power of a linear function which may define a fourfold infinity of profiles, is integrated in closed form. As concerns the elastic–plastic analysis, first of all the introduction is made of a correlation between equivalent plastic strain and equivalent stress according to Von Mises, which is more general than those known from literature. In the case of isotropic hardening a second-order, non-homogeneous, non-linear differential equation is found, which governs the stress state in the plastic region of the disk. The procedure allows to calculate stress and displacement states in the two regions—plastic and elastic—of the disk subjected to prestressing by overspeeding. Several examples of disks, also prestressed by overspeeding, are considered (annular and solid, convex or concave, and linear tapered disks); the matching of results of the theoretical model and those obtained by means of FEA is very good. Lastly, the residual stress state can be found in a prestressed disk by overspeeding and the stress state in the actual operating condition in the same disk is evaluated.
机译:提出了两种用于评估非线性可变厚度旋转盘(固态或环形)中的弹性和弹塑性应力与应变的模型,该模型经受了这样的旋转速度以确定超出屈服的应力。假设材料硬化是各向同性的并且遵循最一般的硬化幂律,则第一个模型涉及弹性场,第二个模型涉及弹塑性场。在弹性区域中,获得了非齐次超几何微分方程。这样的微分方程以闭合形式积分,该方程解决了非线性可变厚度盘的闭合形式的弹性问题,其厚度由线性函数的幂给出,该线性函数的功率可以定义轮廓的四倍无穷大。关于弹塑性分析,首先介绍的是冯·米塞斯(Von Mises)提出的等效塑性应变和等效应力之间的相关性,这种相关性比文献记载的更为普遍。在各向同性硬化的情况下,发现了一个二阶,非均匀,非线性的微分方程,该方程控制着磁盘塑性区域中的应力状态。该程序允许计算在磁盘的两个区域(塑性和弹性)中的应力和位移状态,该区域受到超速预应力。考虑了一些磁盘示例,这些磁盘也因超速而受到预应力(环形和固态,凸形或凹形以及线性锥形盘);理论模型的结果与通过有限元分析获得的结果的匹配非常好。最后,可以通过超速在预应力盘中找到残余应力状态,并评估同一盘中实际工作条件下的应力状态。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号