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注塑模充模过程动态分析
引用本文:刘春太,申长雨,肖长江,王利霞. 注塑模充模过程动态分析[J]. 应用力学学报, 2002, 19(3): 31-34
作者姓名:刘春太  申长雨  肖长江  王利霞
作者单位:郑州大学,郑州,450002
基金项目:国家"十五"重点科技攻关项目(2001BA203B16-02)和河南省自然科学基金项目(004060300)资助
摘    要:
注塑成型是利用型腔模制造理想制品主要的成型加工方式 ,塑料熔体的流动行为将直接影响着最终塑件的质量 ,塑料熔体在三维薄壁型腔内的流动属于带有运动边界的粘性不可压缩流体的流动 ,本文针对塑料注塑成型特点 ,经过量纲分析和引入合理而必要的假设 ,得到了适合于充模分析的数学模型。控制方程的求解主要包括三个阶段 :压力场、温度场和流动前沿位置的确定。数值求解采用有限元法求解压力场、有限差分法求解温度场、并利用控制体积法跟踪熔体前沿 ,实现了充模过程的动态模拟

关 键 词:注塑成型  充模流动  数值分析  有限元/有限差分/控制体积法
文章编号:1000-4939(2002)03-0031-04
修稿时间:2001-03-12

Dynamic Simulation of Injection Molding Filling Process
Liu Chuntai Shen Changyu Xiao Changjiang Wan Lixia. Dynamic Simulation of Injection Molding Filling Process[J]. Chinese Journal of Applied Mechanics, 2002, 19(3): 31-34
Authors:Liu Chuntai Shen Changyu Xiao Changjiang Wan Lixia
Abstract:
Injection Molding is one of the most widely used processes on manufacturing plastics and composite products. One of the most significant factors that influences part quality in injection molding process is the polymer flow pattern. The mold filling of polymer melt in three dimensional thin parts is a viscous, incompressible flow with moving boundaries. After discussed some assumptions, such as material properties and cavity geometry of injection molding, a simplified set of equations for analysis of the filling is presented in this paper. Solution of the equations is done in three main stages: calculation of the pressure field, calculation of the temperature field and finally advancement of the flow front. Finite element methods are used for the pressure calculation while temperature calculation use finite difference methods. Advancement of flow front uses a control volume approach and dynamic simulation of the mold filling process is achieved.
Keywords:injection molding   mold filling   numerical analysis   FEM/FDM /Control Volume Methods.
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