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Water Penetration Behavior in Water-assisted Injection Molding (WAIM): A Study of Product Quality for Different Process and Material Parameters

机译:水辅助注射成型(WAIM)中的水渗透行为:不同工艺和材料参数的产品质量研究

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摘要

This study investigates the relation between water penetration behavior and product quality in water-assisted injection molding (WAIM) for different process and material parameters. The principle mechanisms responsible for both building up the residual wall thickness (RWT) and formation of part defects as well as the influence of these process and material parameters on the RWT and occurrence of part defects could be revealed. This is done by relating the measurements of water pressure and water volume flow rate, visualizing in-mold variations during water injection, to both the part weight and a visual inspection of part cross-sections, for different process settings and materials. It was found that the RWT as well as the formation of part defects depend on the polymer resistance, since the variation of the latter leads to a change in both the water bubble width and velocity. On the one hand, the resistance is determined by the process parameters having an influence on the amount of melt ahead of the water bubble, depending on injector opening time, water volume flow rate and water injection delay time. On the other hand, the resistance also depends on the friction between the polymer chains, which is determined by the zero-shear viscosity and the shear thinning behavior of the polymer. In addition, the occurrence of part defects is directly related to the polymer crystallization behavior. The resulting product quality therefore depends on a combination of the process parameters and the applied material.
机译:这项研究探讨了水辅助注塑成型(WAIM)中水渗透行为与产品质量之间在不同工艺和材料参数之间的关系。可以揭示造成残余壁厚(RWT)和零件缺陷形成的主要机理,以及这些工艺和材料参数对RWT和零件缺陷发生的影响。通过将水压和水体积流量的测量值相关联,可视化注水过程中的模内变化与零件重量和零件横截面的目视检查(针对不同的工艺设置和材料)相关联来完成。已经发现,RWT以及部分缺陷的形成取决于聚合物的电阻,因为后者的变化导致水泡宽度和速度的变化。一方面,阻力由工艺参数确定,该工艺参数对水泡之前的融化量有影响,取决于喷射器打开时间,水体积流量和注水延迟时间。另一方面,电阻还取决于聚合物链之间的摩擦,该摩擦由零剪切粘度和聚合物的剪切稀化行为决定。另外,部分缺陷的发生与聚合物的结晶行为直接相关。因此,最终的产品质量取决于工艺参数和所施加材料的组合。

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