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首页> 外文期刊>Journal of Thermoplastic Composite Materials >Preparation and characterization of polypropylene composites with nonmetallic materials recycled from printed circuit boards
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Preparation and characterization of polypropylene composites with nonmetallic materials recycled from printed circuit boards

机译:从印刷电路板回收的具有非金属材料的聚丙烯复合材料的制备和表征

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摘要

After separation of metals from printed circuit boards (PCBs), they are sent to recycling process; however, significant amounts of useless nonmetallic particles are also included. Recycling useful materials from used PCBs is a major challenging problem that must be solved in China renewable resource industries through harmless and feasible processes. In this article, a novel beta-polypropylene (PP)onmetals composite was prepared and evaluated. The nonmetallic particles were treated with calcium pimelate (PA, a beta-nucleating agent for PP) and then compounded with PP through melt blending method. The results show that when cooling and crystallizing from the melt, beta-PP are formed because of the surface effects of PA. This observation is assumed as the source of good rigidity and toughness of prepared PP composites. In the composite containing 10 wt % nonmetallic particles treated with 5 wt % PA, the content of beta-PP was found to be larger than 90% and the impact strength and flexural modulus of PP composite increased by 205.3 and 61.8%, respectively, compared with those of neat PP. Although the addition of PA-modified nonmetals slightly increased the tensile strength of PP, considering all factors, the optimal mass ratio of PPonmetals/PA composites to reach optimum mechanical properties was observed as 100/10/0.5. Thus, the application of treated nonmetals to prepare nonmetals/beta-PP composites provides a promising way to recycle PCBs waste and produce useful PP composites.
机译:从印刷电路板(PCB)中分离出金属后,将其送至回收流程;然而,也包括大量无用的非金属颗粒。从用过的PCB中回收有用材料是一个重大的挑战性问题,在中国可再生资源行业中,必须通过无害且可行的过程来解决该问题。在本文中,制备并评估了新型的β-聚丙烯(PP)/非金属复合材料。用庚二酸钙(PA,PP的β成核剂)处理非金属颗粒,然后通过熔融共混法将其与PP混合。结果表明,当冷却并从熔体中结晶时,由于PA的表面效应,形成了β-PP。该观察结果被认为是制备的PP复合材料良好的刚性和韧性的来源。在含有5 wt%PA处理的10 wt%非金属颗粒的复合材料中,β-PP的含量大于90%,并且PP复合材料的冲击强度和弯曲模量分别提高了205.3和61.8%。与那些纯净的PP。尽管添加PA改性的非金属会稍微提高PP的拉伸强度,但考虑到所有因素,观察到PP /非金属/ PA复合材料达到最佳机械性能的最佳质量比为100/10 / 0.5。因此,将处理过的非金属应用于制备非金属/β-PP复合材料提供了一种有前途的方法,可回收PCB废料并生产有用的PP复合材料。

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