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Rotational Molding of Liquid Plastic Systems: An Assessment of Material Moldability

机译:液态塑料系统的旋转模塑:材料模塑性的评估

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This article describes the outcome of an investigation into the rotational molding of liquid plastics. Three liquid plastic systems were assessed: (1) a nylon block copolymer, Nyrim; (2) two grades of polyvinyl chloride plastisol, Acrol DS409A and Hydro PRC/65/0307/9270; and (3) two grades of polyurethane, Hyperlast 7850506 and Hyperlast 7853184. Initially, resin flow behavior was assessed in the uniaxial rotation mode. Characteristic flow regimes were identified for each liquid. The onset and duration of a particular regime depends on the initial viscosity of the liquid, its repooling behavior, and its curing profile. For a particular material, the finished part appearance (hydrocysts, bubbles, fault-free, etc.) depends on the mold rotation speed and material shot size, as well as mold geometry. A fault-free operating criterion is presented for the uniaxial rotation of liquid plastics. Uniaxial rotation tests are useful for predicting general trends in biaxial rotation of liquid plastics. The most important factors in determining the state of a finished part made by biaxial rotation are: (ⅰ) resin initial viscosity and curing profile; (ⅱ) mold rotation speed; (ⅲ) shot size; and (ⅳ) mold shape. An ideal viscosity profile for a rotational molding liquid resin, based on information gained from both uniaxial and biaxial rotation tests, is proposed. The rheology of each material was also examined and the profiles observed were related to the molding behavior of each liquid.
机译:本文介绍了对液态塑料滚塑成型的研究成果。评估了三种液体塑料体系:(1)尼龙嵌段共聚物Nyrim; (2)两种等级的聚氯乙烯增塑溶胶:Acrol DS409A和Hydro PRC / 65/0307/9270; (3)两种等级的聚氨酯,Hyperlast 7850506和Hyperlast7853184。最初,以单轴旋转模式评估树脂的流动性能。确定每种液体的特征流态。特定方案的开始和持续时间取决于液体的初始粘度,其回缩行为及其固化曲线。对于特定的材料,成品零件的外观(水囊,气泡,无缺陷等)取决于模具的转速和材料的注射量以及模具的几何形状。提出了用于液体塑料单轴旋转的无故障操作准则。单轴旋转测试可用于预测液态塑料双轴旋转的总体趋势。确定双轴旋转成品零件状态的最重要因素是:(ⅰ)树脂初始粘度和固化曲线; (ⅱ)模具转速; (ⅲ)投篮大小; (ⅳ)模具形状。基于从单轴和双轴旋转测试中获得的信息,提出了用于旋转模塑液态树脂的理想粘度曲线。还检查了每种材料的流变性,观察到的轮廓与每种液体的成型行为有关。

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