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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Extrusion Process 'Modeling for Aqueous-Based Ceramic Pastes-Part 1: Constitutive Model
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Extrusion Process 'Modeling for Aqueous-Based Ceramic Pastes-Part 1: Constitutive Model

机译:水性陶瓷糊料的挤出工艺建模-第1部分:本构模型

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摘要

The extrusion process for aqueous-based ceramic pastes is complex due to the non-Newtonian behavior of these pastes. In this study, the extrusion process is modeled by characterizing the ceramic paste viscosity using a modified Herschel-Bulkley model. The steady-state relationship between plunger velocity and extrusion force is built based on this viscosity model and the Navier-Stokes equations. The influence of air, which may be trapped in the paste during the paste preparation and loading processes, is also examined as it significantly affects the dynamic response of the extrusion force. Combining these effects with the steady-state extrusion model, a constitutive law for the extrusion process of aqueous-based ceramic pastes is created. Because of the compressibility introduced by the trapped air, the dynamic response of the extrusion force is described by a first-order nonlinear equation when plunger velocity is taken as an input. It is shown that the extrusion response time depends on the amount of air in the extruder and the magnitude of the extrusion force. Air bubble release, a phenomenon that causes the extrusion force to suddenly drop due to the change of paste volume in the nozzle, is analyzed based on the developed constitutive model.
机译:由于这些浆料的非牛顿性,其水性挤出工艺非常复杂。在这项研究中,通过使用改进的Herschel-Bulkley模型表征陶瓷浆料的粘度来对挤出过程进行建模。基于此粘度模型和Navier-Stokes方程建立了柱塞速度与挤压力之间的稳态关系。还检查了可能在糊料制备和加载过程中滞留在糊料中的空气的影响,因为它会显着影响挤出力的动态响应。将这些效应与稳态挤出模型相结合,创建了水性陶瓷浆料挤出过程的本构律。由于滞留的空气引入了可压缩性,当以柱塞速度为输入时,挤出力的动态响应由一阶非线性方程描述。结果表明,挤出响应时间取决于挤出机中的空气量和挤出力的大小。基于开发的本构模型分析了气泡释放现象,气泡释放现象是由于喷嘴中浆料体积的变化而导致挤出力突然下降的现象。

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