首页> 外文会议>ASME Pressure Vessels and Piping Division/K-PVP conference;PVP2010 >DETERMINATION OF CANDU END FITTING JACKING LIMITS USING ELASTIC-PLASTIC FINITE ELEMENT ANALYSIS
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DETERMINATION OF CANDU END FITTING JACKING LIMITS USING ELASTIC-PLASTIC FINITE ELEMENT ANALYSIS

机译:弹塑性有限元分析确定坎杜接头接缝极限

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In one CANDU reactor unit in Ontario, the west end fitting is designed to connect to the end shield via a stop collar. The outboard end of the stop collar is welded to an attachment ring which shrink-fits on the end fitting body. The east side end fitting is supported by inboard and outboard journal rings resting on their respective bearing sleeves which allow the 'free' axial movement of the channel. In support of some maintenance activities, the west end fitting is required to be jacked to get certain clearance for accommodating the operating tools. The previous elastic calculation got the jacking limit of 0.35" while did not provide enough clearance for tooling. In this paper, an elastic-plastic finite element analysis following ASME B&PV code Section Ⅲ, Division 1, Subsection NB is performed to increase the jacking limit. The finite element analysis is carried out using ANSYS and validated by an ABAQUS model. In the elastic-plastic finite element analysis, the following effects are considered: strain hardening of stop collar material, stress concentration in stop collar weld, notch effect on stress concentration and fatigue in stop collar. Cyclic jacking loads as displacement controlled loading are applied in the analysis. Considering the time to the end of unit life, the maximum anticipated end fitting jacking cycles are 8. The higher jacking limit is achieved with an acceptable plastic deformation and fatigue damage at the stop collar, which is the weakest part during the end fitting jacking. The results show that the end fitting can be jacked at west side End-face with 1.17" for 1-3 cycles, 1.15" for 4 cycles, 1.03" for 5 cycles, 0.95" for 6 cycles, 0.85" for 7 cycles and 0.80" for 8cycles. The jacking limits achieved in this paper provide enough clearance for the required maintenance operations.
机译:在安大略省的一个CANDU反应堆装置中,西端配件设计为通过止动环连接到端罩。止动环的外侧端焊接到一个固定环上,该固定环可收缩配合在端部接头本体上。东侧端部配件由靠在各自轴承套上的内侧和外侧轴颈环支撑,这允许通道的“自由”轴向运动。为了支持某些维护活动,要求将西端配件顶起以留出一定的间隙,以容纳操作工具。先前的弹性计算得出顶进极限为0.35“,但没有提供足够的工具间隙。在本文中,按照ASME B&PV法规Ⅲ,1区,NB子节进行了弹塑性有限元分析,以增加顶进极限。利用ANSYS进行有限元分析,并通过ABAQUS模型进行验证;在弹塑性有限元分析中,考虑了以下影响:挡圈材料的应变硬化,挡圈焊缝中的应力集中,缺口对应力的影响限位环的集中度和疲劳度。在分析中应用了循环顶升载荷作为位移控制载荷。考虑到单元寿命结束的时间,最大预期的端部装配顶升循环为8。使用可接受的塑料可以达到更高的顶升极限端环顶拔过程中最薄弱的部位是挡圈的变形和疲劳损伤,结果表明端角可以在西侧端面上顶起1.17“(1-3个循环),1.15”(4个循环),1.03“(5个循环),0.95”(6个循环),0.85“(7个循环)和0.80”(8个) 周期。本文中实现的顶升极限为所需的维护操作提供了足够的间隙。

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