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An analysis of thermal autofrettage process with heat treatment

机译:热处理热自动压缩过程分析

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摘要

In this work, a finite element method (FEM) analysis of a thermal autofrettage process coupled with heat treatment is carried out. The objective is to strengthen a cylindrical pressure vessel with compressive stresses on the outer as well as inner walls. In the proposed method, after thermal autofrettage, the outer wall of the cylinder is heated above the lower critical temperature to cause austenization of the cylinder in its vicinity. When the cylinder is quenched to room temperature, it retains beneficial compressive residual stresses at both the inner and outer walls. The analysis considers temperature and microstructure dependent material properties of AISI 1080 steel. Phase transformation kinetics is incorporated through user defined subroutine UMATHT in commercial FEM package ABAQUS. The simulation results indicate that heat treatment after thermal autofrettage converts tensile residual stresses at the outer wall to compressive residual stresses. On the other hand, it does cause a slight relaxation of compressive residual stresses at the inner wall. Nevertheless, with the ability to retain significant amount of compressive residual stresses at both the walls, the process can mitigate the problems of stress-corrosion cracking and fatigue failure due to tensile residual stresses at the surface.
机译:在这项工作中,进行了与热处理耦合的热自动分析过程的有限元方法(FEM)分析。目的是加强具有在外壁和内壁上的压缩应力的圆柱形压力容器。在拟议的方法中,在热自动分流之后,汽缸的外壁在低临界温度高于以上,以使汽缸在其附近的奥委区化。当汽缸淬火到室温时,它在内壁和外壁上保持有益的压缩残余应力。分析考虑了AISI 1080钢的温度和微观结构依赖性材料性能。通过商业有限元包ABAQUS中的用户定义的子程序umatht掺入相位转换动力学。仿真结果表明,热自动分流后的热处理在外壁上转换拉伸残余应力以压缩残余应力。另一方面,它确实导致内壁处的压缩残余应力轻微松弛。然而,通过在两个壁上保留大量压缩残余应力的能力,该方法可以减轻由于表面上拉伸残余应力引起的应力 - 腐蚀裂纹和疲劳失效的问题。

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