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Study of microcellular injection-molded polypropylene/waste ground rubber tire powder blend

机译:微孔注塑聚丙烯/废磨胶轮胎粉共混物的研究

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摘要

Microcellular polypropylene/waste ground rubber tire powder blend processing was performed on an injection-molding machine with a chemical foaming agent. The molded samples produced based on the design of experiments (DOE) matrices were subjected to tensile testing and scanning electron microscope (SEM) analyses. Molding conditions and waste ground rubber tire (WGRT) powder have been found to have profound effects on the cell structures and mechanical properties of polypropylene (PP) and waste ground rubber tire powder composite samples. The result shows that microceilular PP/WGRT blend samples exhibit smaller cell size and higher cell density compare with polypropylene resin. Among the molding parameters studied, chemical foaming agent weight percentage has the most significant effect on cell size, cell density, and tensile strength. The results also suggest that tensile strength of microcellular PP/WGRT composites is sensitive to weight reduction, and skin thickness.
机译:微孔聚丙烯/废地面橡胶轮胎粉末共混物加工是在注塑机上用化学发泡剂进行的。对基于实验设计(DOE)矩阵生产的模制样品进行拉伸测试和扫描电子显微镜(SEM)分析。已经发现成型条件和废磨碎的橡胶轮胎(WGRT)粉对聚丙烯(PP)和废磨碎的橡胶轮胎粉复合材料样品的孔结构和机械性能具有深远的影响。结果表明,与聚丙烯树脂相比,微孔PP / WGRT共混物样品具有较小的孔尺寸和较高的孔密度。在研究的成型参数中,化学发泡剂的重量百分比对泡孔尺寸,泡孔密度和拉伸强度影响最大。结果还表明,微孔PP / WGRT复合材料的拉伸强度对重量减轻和皮肤厚度敏感。

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  • 来源
    《Materials & design 》 |2010年第1期| 589-593| 共5页
  • 作者单位

    Key laboratory of Rubber -Plastics (Qingdao University of Science and Technology), Ministry of Education. Qingdao 266042, People's Republic of China School of Nano and Advanced Materials Engineering, Gyeongsang National University, Gyeongnam, Jinju 660-701, South Korea;

    Key laboratory of Rubber -Plastics (Qingdao University of Science and Technology), Ministry of Education. Qingdao 266042, People's Republic of China School of Nano and Advanced Materials Engineering, Gyeongsang National University, Gyeongnam, Jinju 660-701, South Korea;

    School of Nano and Advanced Materials Engineering, Gyeongsang National University, Gyeongnam, Jinju 660-701, South Korea;

    School of Nano and Advanced Materials Engineering, Gyeongsang National University, Gyeongnam, Jinju 660-701, South Korea;

    School of Nano and Advanced Materials Engineering, Gyeongsang National University, Gyeongnam, Jinju 660-701, South Korea;

    School of Nano and Advanced Materials Engineering, Gyeongsang National University, Gyeongnam, Jinju 660-701, South Korea;

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