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热-机械载荷下厚壁圆筒自增强压力优化分析
引用本文:郑小涛,王彪,喻九阳,彭常飞,王明伍.热-机械载荷下厚壁圆筒自增强压力优化分析[J].压力容器,2012(9):24-27,6.
作者姓名:郑小涛  王彪  喻九阳  彭常飞  王明伍
作者单位:武汉工程大学机电工程学院,湖北武汉430205
基金项目:国家自然科学基金项日(50976080);武汉工程大学科学研究基金项目(14125061)
摘    要:理论上推导了厚壁圆筒在内压及热载荷共同作用下的最佳自增强压力,并基于ANSYS的优化分析结果对理论解进行了验证。结果表明最佳自增强压力的理论解与数值解一致,最大误差不超过1%;另外,不考虑热载荷进行自增强后,会增大工作状态下厚壁圆筒内外壁应力差,降低结构的疲劳强度;工程上可根据本文解析解进行自增强处理,以提高厚壁圆筒的承载能力。

关 键 词:厚壁圆筒  自增强  疲劳  ANSYS

Investigation on Autofrettage of Thick Cylinder under Internal Pressure and Thermal Load
ZHENG Xiao-tao,WANG Biao,YU Jiu-yang,PENG Chang-fei,WANG Ming-wu.Investigation on Autofrettage of Thick Cylinder under Internal Pressure and Thermal Load[J].Pressure Vessel Technology,2012(9):24-27,6.
Authors:ZHENG Xiao-tao  WANG Biao  YU Jiu-yang  PENG Chang-fei  WANG Ming-wu
Affiliation:ZHENG Xiao - tao, WANG Biao, YU Jiu - yang, PENG Chang - fei, WANG Ming - wu ( Wuhan Institute of Technology, School of Mechanical Engineering, Wuhan 430205, China)
Abstract:The optimum autofrettage pressure Of thick - walled cylinders under thermo - mechanical load- ings was analyzed. The theoretical solutions were compared with those numerical results obtained by the optimization analysis based on ANSYS. The results indicated that the analytic solutions of the optimum au- tofrettage pressure are in good agreement with the numerical solutions and the maximum error is less than 1%. Moreover,without considering the effect of thermal load,autofrettage may increase the difference of the equivalent stress between the inner and outer wall, which decreases the fatigue strength of thick cylin- ders. The analytic solution of the optimum autofrettage pressure can be used for engineering designs to im- prove the load -carrying capacity of thick cylinders.
Keywords:thick cylinder  autofrettage  fatigue  ANSYS
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