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核电主蒸汽超级管道管嘴成形有限元分析
英文标题:FEA on nozzle forming for nuclear power main steam super pipeline
作者:杜艳梅 赵伟星 孟建涛 张艳艳 周洪昌 
单位:河北汇中管道装备有限公司 
关键词:核电主蒸汽超级管道 管嘴 凸模形状 凸模高度 摩擦力 
分类号:TG356
出版年,卷(期):页码:2016,41(6):44-49
摘要:

 针对核电主蒸汽超级管道管嘴的成形工艺难点:加热工艺、管嘴挤压成形工艺,采用有限元软件ABAQUS分析了影响核电主蒸汽超级管道管嘴成形的主要因素:凸模形状、凸模高度、接触摩擦力和材料温降等。分析结果表明,凸模轮廓直接影响材料的等效塑性应变和管嘴成形尺寸;凸模高度、表面摩擦条件影响管嘴壁厚和高度变化。优化这些影响因素后,进行管嘴一次挤压成形试验,试验结果表明,采用凸形凸模、调整凸模高度、增加润滑条件和降低坯料温降,可以成形出合格的管嘴零件。

 

 For the difficulties in nozzle forming such as heating and extrusion in the nuclear power main steam super pipeline, the  major influential factors of the nuclear power main steam super pipeline forming, namely, the shape and height of the punch, the friction and temperature drop of the material and so on, were analyzed by FEA (ABAQUS). The analysis results show that the outline of the punch directly affects the equivalent plastic strain of the material and the size of the nozzle, and the punch height and surface friction coefficient also directly affect wall thickness and height of nozzle. After optimizing the above influence factors, the extrusion test of nozzle forming was conducted. Thus, the test results show that the required nozzle can be gained by convex punch, adjusting punch height, increasing lubrication and lowering the temperature drop of the material.

基金项目:
作者简介:
作者简介:杜艳梅(1984-),女,硕士,工程师 E-mail:yanmeidu2013@163.com
参考文献:

 
[1]中科华核电技术研究院有限公司. RCC-M-2002+2002补遗, 压水堆核岛机械设备设计和建造规则[M]. 上海:上海科学技术文献出版社,2010.Progress of Nuclear Power Technology Research Institute Co., Ltd. RCC-M-2002+2002 addenda,PWR Nuclear Machinery Design and Construction Rules[M]. Shanghai: Shanghai Science and Technology Literature Publishing House, 2010.



[2]庄茁, 张帆, 岑松. ABAQUS非线性有限元分析与实例[M]. 北京: 科学出版社, 2008.Zhuang Z, Zhang F, Cen S. ABAQUS Nonlinear FEM Analysis and Examples[M]. Beijing: Science Press, 2008.


[3]李国强, 陈凯, 蒋首超,等. 高温下Q345钢的材料性能试验研究[J]. 建筑结构, 2001, 31(1):53-55. Li G Q, Zhang K, Jiang S C, et al. Experimental studies on the high temperature material properties of Q345 steel[J]. Building Structure, 2001, 31(1):53-55.


[4]李俊, 游理华. 16Mn钢奥氏体动态再结晶及晶粒细化研究[J]. 上海金属, 1998, 20(2):3-7.Li J, You L H. Research on the dynamic recrystallization of austenite and grain refinement in 16Mn steel[J]. Shanghai Metal, 1998, 20(2):3-7.


[5]刘志云, 何成宏, 杨国泰,等. 锥状凸模与柱形凸模圆孔翻边的比较分析[J]. 精密成形工程, 2003, 21(6):33-34.Liu Z Y, He C H, Yang G T, et al. The analysis of stress and strain in the round-hole flanging among the cone-punch and pillar-punch[J]. Precision Forming Engineering, 2003, 21(6):33-34.


[6]牛铁. 基于45号钢热变形条件下接触热传导系数的确定[D]. 太原:太原科技大学, 2009.Niu T. The Heat Transfer Coefficient of 45 Steel during the Thermal Deformation[D]. Taiyuan: Taiyuan University of Science and Technology, 2009.


[7]杨世铭, 陶文铨. 传热学[M]. 北京:高等教育出版社,2006.Yang S M, Tao W S. Heat Transfer[M]. Beijing: Higher Education Press, 2006.
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