首页> 外文会议>7th Conference amp; Exhibition of the European Ceramic Society Pt.1, Sep 9-13, 2001, Brugge, Belgium >A Model for a Single Screw Paste Extruder with Non-Constant Channel Depth
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A Model for a Single Screw Paste Extruder with Non-Constant Channel Depth

机译:具有非恒定通道深度的单螺杆糊料挤出机的模型

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The most common mathematical models for single screw extruders are based on polymeric materials. Based on a fluid mechanics approach they require a full constitutive fluid model if they are to be successfully applied. In the case of ceramic pastes, effective constitutive models are difficult to deduce due to the development of slip layers near to shearing surfaces. A semi-empirical flow model that explicitly takes account of the slip layer is thought to be more appropriate. Here we develop a general one dimensional model for single screw paste extrusion in a complex geometry. A model of this type for a screw with channels of constant depth was previously developed, a serious constraint as this is rarely the case in industrial machines. In the current paper improvements to the previous model include relaxing the assumption of a constant channel depth. The model is developed in two parts: firstly a volume conservation equation is derived subject to kinematic boundary conditions. This is then coupled to the force balance in the system in order to solve for the pressure and velocity as a function of channel length.
机译:单螺杆挤出机最常用的数学模型是基于聚合物材料的。如果要成功应用流体力学方法,则需要完整的本构流体模型。在陶瓷浆料的情况下,由于在剪切表面附近形成了滑移层,因此很难得出有效的本构模型。明确考虑滑移层的半经验流模型被认为更合适。在这里,我们为复杂几何形状中的单螺杆糊料挤出开发了一个通用的一维模型。先前已经开发了具有恒定深度的通道的这种类型的螺钉模型,这是一个严重的约束,因为在工业机械中很少出现这种情况。在当前论文中,对先前模型的改进包括放宽恒定通道深度的假设。该模型分为两个部分:首先,根据运动学边界条件推导体积守恒方程。然后将其耦合到系统中的力平衡,以便根据通道长度来求解压力和速度。

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