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A study on the numerical simulation of thermal stress during the solidification of shaped castings

机译:异型铸件凝固过程中热应力数值模拟的研究

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In order to study the development of thermal stress and to predict the hot tearing and residual stress of shaped casting, two models were used to carry out the stress analysis of the two stages of solidification. The rheological model [H]–[H|N]–[N|S] was used for the quasi-solid zone while the thermo-elasto-plastic model was used for the period after solidification. Coupling the thermal analysis based on the finite different method with the stress analysis based on the finite element method, a FDM/FEM integrated system of thermal stresses analysis during the solidification process was developed. After experimental verification, the system was put into practical application. The analysis results during the quasi-solid zone show that the visco-plastic strain is an important factor for the occurrence of hot tearing. The hot tearing of a case steel casting and the residual stresses and deformation of a hydro-turbine blade steel casting were analyzed and predicted using the system. The simulation and the practical results were basically in agreement.
机译:为了研究热应力的发展并预测异型铸件的热撕裂和残余应力,我们使用两个模型对凝固两个阶段进行了应力分析。流变模型[H] – [H | N] – [N | S]用于准固相区,而热弹塑性模型用于固结后。将基于有限差分法的热分析与基于有限元法的应力分析相结合,开发了FDM / FEM集成过程中热应力分析的集成系统。经过实验验证,该系统投入实际应用。准固态区的分析结果表明,粘塑性应变是发生热撕裂的重要因素。使用该系统分析并预测了铸钢件的热撕裂以及水轮机叶片铸件的残余应力和变形。仿真与实际结果基本吻合。

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