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Influence of processing parameters in reaction injection foam molding for multi-layer parts on foam structure and mechanical properties

机译:加工参数在反应喷射泡沫成型中的影响,用于多层部件泡沫结构和机械性能

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Reaction injection molding is a plastic processing method to produce net shape parts using reactive systems. By integrating semi-finished products as inserts, complex multi-layer parts can be generated in highly integrative and energy efficient processes. The material by far mostly used is polyurethane, a polymer which results from the reaction of isocyanate and polyol. By adding blowing agents, like for example water, to the polyol component, foamed parts can be realized. In contrast to thermoplastic injection molding a chemical reaction takes part during molding within the cavity. Therefore the processing parameters have a significant effect on this chemical reaction and on the properties of the finished part. In this work the influences of different processing parameters like for example mold temperature and injection volume on the resulting foam structure are investigated for reaction injection foam molding. Therefore multi-layer parts based on polyurethane materials (thermoplastic and reactive) were molded varying relevant processing parameters. The foaming took place within an open cavity. The resulting foam structures were characterized using scanning electron microscopy (SEM). Additional the multi-layer parts were characterized mechanically to reveal the resulting effects on the mechanical properties of parts containing a foamed reactive polyurethane component.
机译:反应注塑是一种使用反应系统生产净形零件的塑料加工方法。通过将半成品作为插入物集成,可以在高度综合和节能的过程中产生复杂的多层部件。远远主要使用的材料是聚氨酯,由异氰酸酯和多元醇的反应产生的聚合物。通过向多元醇组分加入吹风剂,例如水,可以实现发泡部件。与热塑性注塑成型对比化学反应在腔内的成型期间参加。因此,加工参数对该化学反应具有显着影响和成品部分的性质。在该工作中,研究了不同加工参数,例如模具温度和注射体积对所得泡沫结构的影响,用于反应注射泡沫成型。因此,基于聚氨酯材料(热塑性和反应性)的多层部件被模塑改变不同的相关加工参数。泡沫发生在开放式腔内。使用扫描电子显微镜(SEM)表征得到的泡沫结构。额外的多层部分机械表征,以揭示对含有发泡反应性聚氨酯组分的部件的机械性能的所得到的效果。

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