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A novel autofrettage method for strengthening and design of thick-walled cylinders

机译:一种新型的自动强化壁厚钢瓶的方法

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摘要

In this paper, autofrettage of the thick-walled cylinders is investigated based on a new method named "rotational autofrettage". The method is inspired from this fact that the cylinders under a large enough angular velocity can experience elastoplastic deformations and the residual stresses. Prior to industrial uses of cylindrical vessels, the process of autofrettage is done by applying an angular velocity which generate the residual stresses. The best angular velocity for the autofrettage operation is selected such that the equivalent and hoop stresses are more uniformly distributed throughout the wall thickness than the case of non-autofrettage. For this purpose, an exact elastoplastic analytical solution is obtained for a rotating thick-walled cylinder made of elastic-perfectly plastic material using Tresca's yield criterion with considering Bauschinger effect. In order to evaluate the performance of the proposed autofrettage approach, the results are compared with those of the routine approach of pressure autofrettage. It was observed that the stress distribution obtained from the proposed method is more uniform rather than the approach of pressure autofrettage. Finally, the optimum geometrical dimensions for a thick walled cylinder are obtained where large internal pressures have to be withstood. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文基于一种称为“旋转自紧”的新方法,对厚壁圆筒的自紧进行了研究。该方法的灵感来自于以下事实:在足够大的角速度下,圆柱体会经历弹塑性变形和残余应力。在工业上使用圆柱形容器之前,通过施加会产生残余应力的角速度来完成自动强化的过程。选择用于自动强化的最佳角速度,以使等效应力和环向应力比非自动强化的情况更均匀地分布在整个壁厚上。为此,使用Tresca的屈服准则并考虑了包辛格效应,可以为由弹性完美塑性材料制成的旋转厚壁圆筒获得精确的弹塑性分析解决方案。为了评估所提出的自动强化方法的性能,将结果与压力自动强化的常规方法进行了比较。观察到,从所提出的方法获得的应力分布比压力自动强化方法更均匀。最后,在必须承受较大内部压力的情况下,可以获得厚壁圆筒的最佳几何尺寸。 (C)2016 Elsevier Ltd.保留所有权利。

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