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PREDICTION OF DEFORMATION AND HOT TEAR FORMATION USING A VISCOPLASTIC MODEL WITH DAMAGE

机译:用粘液模型预测变形和热撕裂形成损伤

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A viscoplastic deformation model considering material damage is used to predict hot tear formation in a permanent mold magnesium alloy casting. The simulation model calculates the solid deformation and ductile damage. The viscoplastic constitutive theory accounts for temperature dependent properties and includes creep and isotropic hardening. Ductile damage theory is used to find mechanically induced voiding, and hot tears are expected in regions of extensive damage. Previously performed experiments are used to validate the simulation predictions. The test casting consists of a long horizontal bar connected to a vertical sprue on one side and an anchoring flange on the other. Hot tears are observed at the junction between the horizontal bar and the vertical sprue. The hot tearing severity is manipulated by adjusting the initial mold temperature. The simulation results are in good agreement with the experimental observations, both in terms of location and severity of the hot tears.
机译:考虑材料损伤的粘液变形模型用于预测永久模具镁合金铸造中的热撕裂形成。仿真模型计算固体变形和延展性损伤。粘胶组成型理论用于温度依赖性,包括蠕变和各向同性硬化。球墨击损伤理论用于找到机械诱导的排尿,并且在广泛损坏的区域中预期热泪。先前执行的实验用于验证模拟预测。试验铸件由长时间的长水平杆组成,在一侧连接到垂直浇口和另一个锚固凸缘。在水平杆和垂直浇口之间的连接处观察到热撕裂。通过调节初始模具温度来操纵热撕裂严重程度。仿真结果与实验观察结果良好,无论是在热泪的位置和严重程度方面都是如此。

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