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Effect of Mold Temperature on the Impact Behavior and Morphology of Injection Molded Foams Based on Polypropylene Polyethylene–Octene Copolymer Blends

机译:模具温度对聚丙烯-辛烯-丙烯共聚物共混泡沫塑料的冲击行为和形貌的影响

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摘要

In this work, an isotactic polypropylene (PP) and a polyethylene–octene copolymer (POE) have been blended and injection-molded, obtaining solids and foamed samples with a relative density of 0.76. Different mold temperature and injection temperature were used. The Izod impact strength was measured. For solids, higher mold temperature increased the impact resistance, whereas in foams, the opposite trend was observed. In order to understand the reasons of this behavior, the morphology of the elastomeric phase, the crystalline morphology and the cellular structure have been studied. The presence of the elastomer near the skin in the case of high mold temperature can explain the improvement produced with a high mold temperature in solids. For foams, aspects as the elastomer coarsening in the core of the sample or the presence of a thicker solid skin are the critical parameters that justify the improved behavior of the materials produced with a lower mold temperature.
机译:在这项工作中,已将等规聚丙烯(PP)和聚乙烯-辛烯共聚物(POE)混合并注塑成型,获得相对密度为0.76的固体和泡沫样品。使用了不同的模具温度和注射温度。测量了悬臂梁式冲击强度。对于固体,较高的模具温度提高了抗冲击性,而在泡沫中,则观察到相反的趋势。为了理解这种行为的原因,已经研究了弹性体相的形态,晶体形态和孔结构。在高模具温度的情况下,在皮肤附近存在弹性体可以解释在固体中高模具温度导致的改进。对于泡沫而言,诸如弹性体在样品芯中变粗或存在较厚的固体表皮等方面是关键参数,这些参数可证明以较低的模具温度改善所生产材料的性能。

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