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Strength Analysis and Structure Optimization of Gate Valve Body Based on Finite Element Software

机译:基于有限元软件的闸阀阀体强度分析与结构优化

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Stress concentration zone and maximumdeformation zone ofgate valve at 1.6MPaworking pressure were found out according to strength calculationand analysisby ANSYSsoftware, which proceedsthe processes of modeling, meshing, constraintsdefine, applyingloadsand solving. Design variables,state variablesand optimize targetswere defined by target optimization design function of ANSYS Workbenchin ordertoreveal the influence law of eachdesign variable onthe gate valve body equivalent stress,and the optimal valuesof design variablescould be obtained after calculation. The valve structure was improved and stress concentration was reduced from the perspective of safety and economy,whichcouldprovidea referencefor reliable valvedesign.The shape of the valve body was optimized by topology optimization design in order to achieve the rational use of materials.Researchresultsshow that the maximum stress lies on both sides of the valve rib plateand the stress is beyond thematerial allowable value, but the valve body has little deformation.After optimization the maximum equivalent stress of valve body is decreasedby23.91%and the valvebodyhasuniformstress distribution, the mass of the valve body is reduced by1.4%as well. Material utilization is improvedeffectively,which indicates that the optimizationdesignbased onANSYS Workbenchis highly efficient and reliable.
机译:通过ANSYS软件的强度计算和分析,找出1.6MPa工作压力下闸阀的应力集中区和最大变形区,进行建模,网格划分,约束定义,施加载荷和求解等过程。通过ANSYS Workbenchin的目标优化设计功能定义了设计变量,状态变量和优化目标,通过每个变量对闸阀阀体等效应力的影响规律,计算出最优值。从安全性和经济性的角度出发,对阀体结构进行了改进,降低了应力集中,可为可靠的阀体设计提供参考。通过拓扑优化设计对阀体的形状进行了优化,以达到合理使用材料的目的。阀体位于阀肋板两侧,应力超过材料允许值,但阀体变形很小。优化后,阀体的最大等效应力降低了23.91%,阀体应力分布均匀,阀体质量也减少了1.4%。材料利用率得到有效提高,表明基于ANSYS Workbenchis的优化设计高效可靠。

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