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Experimental and Numerical Investigation of the Effect of Process Conditions on Residual Wall Thickness and Cooling and Surface Characteristics of Water-Assisted Injection Molded Hollow Products

机译:工艺条件对水辅注塑中空产品剩余壁厚和冷却和表面特性的实验和数值研究

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摘要

Recently, water-assisted injection molding was employed in the automobile industry to manufacture three-dimensional hollow tube-type products with functionalities. However, process optimization is difficult in the case of water-assisted injection molding because of the various rheological interactions between the injected water and the polymer. In this study, the boiling phenomenon that occurs because of the high melt temperature when injecting water and the molding characteristics of the hollow section during the water-assisted injection process were analyzed by a water-assisted injection molding analysis. In addition, the changes in the residual wall thickness accompanying changes in the process conditions were compared with the analysis results by considering water-assisted injection molding based on gas-assisted injection molding. Furthermore, by comparing the cooling characteristics and inner wall surface qualities corresponding to the formation of the hollow section by gas and water injections, a water-assisted injection molding technique was proposed for manufacturing hollow products with functionality.
机译:最近,在汽车工业中采用水辅注塑成型,制造具有功能的三维中空管型产品。然而,由于注射水与聚合物之间的各种流变相互作用,在水辅注射成型的情况下,过程优化难以。在该研究中,通过水辅助注射成型分析分析了由于在水辅助注射过程中注入水的高熔体温度和中空部分的模制特性而发生的沸腾现象。此外,通过考虑基于气体辅助注射成型的水辅注射成型,将伴随处理条件的变化的残留壁厚的变化与分析结果进行了比较。此外,通过将对应于气体和注水的中空部分的形成对应的冷却特性和内壁表面质量,提出了一种具有功能性的中空产品的水辅助注射成型技术。

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