Numerical simulation on welding residual stress of supporting ring and cylinder in reactor pressure vessel of small modular reactor
Vol. 49, Issue 7, Pages: 1-6(2019)
DOI:
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QIU Yang, LUO Ying, YANG Min, et al. Numerical simulation on welding residual stress of supporting ring and cylinder in reactor pressure vessel of small modular reactor. [J]. 49(7):1-6(2019)
DOI:
QIU Yang, LUO Ying, YANG Min, et al. Numerical simulation on welding residual stress of supporting ring and cylinder in reactor pressure vessel of small modular reactor. [J]. 49(7):1-6(2019)DOI:
Numerical simulation on welding residual stress of supporting ring and cylinder in reactor pressure vessel of small modular reactor
The welding residual stress of reactor pressure vessel’s(RPV)supporting ring and cylinder welded mockup with a thickness of 300 mm was investigated with the finite element method,and the stress was measured with the hole-drilling method to validate the simulated result. The investigated results shows that the through-thickness radial stress distribution within the weld zone presents a self-equilibrating distribution,and the through-thickness hoop stress within the weld zone is almost tensile stress with the peak tensile stress occurring at a certain depth beneath the surfaces and a minimum stress appears near the mid-thickness. The location where the minimum hoop and radial stress appears at the weld centerline is decided by the weld metal height of the second welding step for the welding procedure used in the present study. In addition,a large stress change occurs near the top surface of the weld metal after the first welding step due to the strong stiffness of the mockups.
关键词
模块式小型堆反应堆压力容器支承环筒体焊接残余应力数值模拟有限元法
Keywords
small modular reactorreactor pressure vesselsupporting ringcylinderwelding residual stressnumerical simulationfinite element method
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College of Material Science and Engineering,Chongqing University
China Nuclear Industry 24 Construction Co.,LTD
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