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Coupling Analysis on Hydrauic Press and Forming Moulds of the Containment of Nuclear Power Reactor

机译:液压机耦合分析及核电反应堆遏制成型模具

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Based on actual production, the each mould in the production line of containment of nuclear power reactor and the frame of THP22-4000 hydraulic press was modeled by coupling method. By using the finite element analysis simulation software ANSYS Workbench, the stiffness and strength of each coupling models were analyzed by node-coupling method. According to the results having been analyzed formerly, the distribution of stress and strain of each coupling models were studied, and the influence rules of assembly area of mould on workbench and close-height of mould on coupling stiffness were drawn, so as to guide the mold and the hydraulic structure design and optimization. Under the prerequisite of ensuring the forming precision of containment, it would be possible to configure and optimize scientifically and rationally the structure of forming molds and equipments, lower the costs of productions, and obtain higher economic benefits.
机译:基于实际生产,通过耦合法模型建模了核电电抗器壳体生产线中的每种模具和THP22-4000液压机框架。通过使用有限元分析仿真软件ANSYS工作台,通过节点耦合方法分析每个耦合模型的刚度和强度。根据以前分析的结果,研究了每个耦合模型的应力和应变的分布,并绘制了耦合刚度模具上模具的组装区域的影响规则,以指导模具和液压结构设计和优化。在确保遏制成型精度的先决条件下,可以科学地配置和优化成型模具和设备的结构,降低生产成本,并获得更高的经济效益。

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