首页> 外文会议>The 4th ASME/JSME Joint Fluids Engineering Conference Vol.2 Pt.C; Jul 6-10, 2003; Honolulu, Hawaii >COMPUTER MODELING AND EXPERIMENTAL VERIFICATION OF MOLD FILLING IN COUNTER-GRAVITY LOST FOAM CASTING PROCESS
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COMPUTER MODELING AND EXPERIMENTAL VERIFICATION OF MOLD FILLING IN COUNTER-GRAVITY LOST FOAM CASTING PROCESS

机译:反重力消失模铸造过程中模具充填的计算机建模与实验验证

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A dynamics of the molten metal-polymeric foam interface has been experimentally observed in "window counter-gravity lost foam casting" of standard GM plates. The observations allowed revealing the effect of the purolisis of polymeric foam material on molten metal propagation velocity. FLOW-3D software (Flow Science, Inc.) has been used to simulate liquid metal filling dynamics and the molten metal-polymeric foam interface velocity in foam plates. The effect of the degradation gaseous products on the molten metal-polymeric foam interface velocity was taken into consideration through specially written sub-routing program. The results of the simulations are compared with the experimental data obtained in this study.
机译:在标准GM板的“窗口失重失重泡沫铸造”中已通过实验观察到熔融金属-聚合物泡沫界面的动力学。这些观察结果揭示了聚合物泡沫材料的粉末分解对熔融金属传播速度的影响。 FLOW-3D软件(Flow Science,Inc.)已用于模拟泡沫板中的液态金属填充动力学和熔融金属与聚合物泡沫的界面速度。通过专门编写的子路由程序考虑了降解气态产物对熔融金属-聚合物泡沫界面速度的影响。仿真结果与本研究中获得的实验数据进行了比较。

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