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首页> 外文期刊>Journal of Applied Polymer Science >EFFECT OF PROCESS CONDITIONS ON BIREFRINGENCE DEVELOPMENT IN INJECTION-MOLDED PARTS .1. NUMERICAL ANALYSIS
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EFFECT OF PROCESS CONDITIONS ON BIREFRINGENCE DEVELOPMENT IN INJECTION-MOLDED PARTS .1. NUMERICAL ANALYSIS

机译:工艺条件对注塑件双折射发展的影响1。数值分析

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Analysis of the injection-molding process based on Leonov viscoelastic fluid model has been employed to study the effects of process conditions on the residual stress and birefringence development in injection-molded parts during the entire molding process. An integrated formulation was derived and numerically implemented to solve the nonisothermal, compressible, and viscoelastic nature of polymer melt flow. Simulations under process conditions of different melt temperatures, mold temperatures, filling speeds, and packing pressures are performed to predict the birefringence variation in both gapwise and planar direction. It has been found that melt temperature and the associated frozen layer thickness are the dominant factors that determine the birefringence development within the molded part. For a higher mold temperature, melt temperature, and injection speed, the averaged birefringence along gapwise direction is lower. The birefringence also increases significantly with the increased packing pressure especially along gate area. The simulated results show good consistency with those measured experimentally. (C) 1995 John Wiley and Sons, Inc. [References: 28]
机译:基于Leonov粘弹性流体模型对注塑过程进行了分析,以研究整个注塑过程中工艺条件对注塑零件的残余应力和双折射发展的影响。得出了一个综合公式,并进行了数值计算,以解决聚合物熔体流动的非等温,可压缩和粘弹性的问题。在不同熔体温度,模具温度,填充速度和填充压力的工艺条件下进行模拟,以预测间隙方向和平面方向上的双折射变化。已经发现,熔体温度和相关的冻结层厚度是决定模塑部件内双折射发展的主要因素。对于较高的模具温度,熔融温度和注射速度,沿间隙方向的平均双折射较低。随着包装压力的增加,双折射也会显着增加,尤其是沿浇口区域。模拟结果与实验测量结果具有良好的一致性。 (C)1995 John Wiley and Sons,Inc. [参考:28]

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