Isro Nurul Hadi, S. Hastuti, N. Nurhadi, Anaya Putri Riskia, R. Afandi, R. A. P. Tarigan
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引用次数: 0

摘要

稻壳的利用被广泛用作植物的堆肥介质。稻壳增强复合材料可用于制造轻型、耐腐蚀的电动汽车内饰和车身。本研究的目的是分析聚丙烯塑料填充的稻壳增强复合材料的拉伸和冲击性能。复合基体采用不饱和聚酯BQTN-157树脂,催化剂用量为1-2%。稻壳用15% NaOH化学处理5小时。本研究采用体积分数比较基质:稻壳:聚丙烯(80%:15%:5%,80%:10%:10%,80%:5%:5%)。拉伸试验参照ASTM A370标准,冲击试验参照ASTM E23标准。拉伸强度在体积分数为80%:15%:5%时最大,为42.13 Mpa。在体积分数为80%:10%:10%和80%:5%:5%的情况下,稻壳的弹性模量下降了5%,分别为1.916和46 MPa。弹性模量的降低是由于纤维方向的随机排列引起的。冲击试验结果表明,在体积分数为80%:15%:5%时,冲击值最高,为10320.04 J/mm2。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analisa Uji Tarik dan Uji Impak Pada Komposit Sekam Padi Perlakuan NaOH dan Pengisi Plastik Polypropylene (PP) dengan Matriks Resin BQTN-157
Utilization of rice husk is widely used as a compost medium for plants. Rice husk reinforced composite materials can be used to manufacture electric car interiors and bodies with lightweight and corrosion resistance. The purpose of this study was to analyze the mechanical properties of the results of tensile and impact testing of rice husk reinforced composites with polypropylene plastic fillers. The composite matrix uses Unsaturated Polyester BQTN-157 resin with 1-2% catalyst. Rice husk was chemically treated with 15% NaOH for 5 hours. This study used a volume fraction comparison Matrix: Rice Husk: Polypropylene (80% : 15% : 5% , 80% : 10% : 10% , and 80% : 5% : 5%). The tensile test refers to the ASTM A370 standard and the impact test refers to the ASTM E23 standard. The greatest tensile strength is found in the volume fraction of 80% : 15% : 5%, with a value of 42.13 Mpa. The modulus of elasticity decreased in the volume fraction of 80% : 10% : 10% and 80% : 5% : 5%, with a difference of 5% decrease in rice husk of 1.916,46 MPa. The decrease in the elastic modulus occurs due to the random arrangement of fiber directions. The results of the impact test obtained the highest impact value at a volume fraction of 80% : 15% : 5% , with a value of 10320.04 J/mm2.  
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