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Numerical Simulation of Ram Extrusion Process for Ceramic Materials

机译:陶瓷材料冲压成形过程的数值模拟

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The freeze-form extrusion process for aqueous-based ceramic paste is complex due to the non-Newtonian behavior of the paste. In this paper the process is studied numerically using a developed mathematical model. The ceramic paste viscosity is characterized by the Herschel-Bulkley model. The relationship between plunger velocity and extrusion force is computed numerically. The influence of air, which is mixed with the paste during the loading process, is also examined. Due to the compressibility introduced by the trapped air, the plunger force dynamic response is typically dominated by a first order response. It is also shown that the extrusion plunger force depends on the volume of air in the extruder. Good agreement is obtained between the simulation results and experimental data.
机译:由于水基陶瓷浆料的非牛顿性,其冻结形式的挤出工艺非常复杂。在本文中,使用开发的数学模型对过程进行了数值研究。陶瓷糊的粘度由Herschel-Bulkley模型表征。数值计算柱塞速度和挤压力之间的关系。还检查了在加载过程中与糊状物混合的空气的影响。由于滞留的空气引入了可压缩性,因此柱塞力动态响应通常以一阶响应为主。还显示出挤出柱塞力取决于挤出机中的空气量。仿真结果与实验数据吻合良好。

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