Retreatment of Polymer Wastes by Disintegrator Milling

P. Kulu, D. Goljandin
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引用次数: 1

Abstract

Global introduction of waste utilization techniques to the polymer market is currently not fully developed but has enormous potential. Before reintegration of used material into a new product, it normally requires grinding, that is shredding, crushing, or milling. In traditional grinders, the generated stresses in the material to be ground are equal to or less than the strength of the material. If by traditional methods, the stresses generated are compressive + shift, so by milling based on collision are tension + shift. Due to the high stress-material strength ratio at collision, it is possible to crush not only brittle materials but also ductile materials. This process allows easily combining the grinding of composite materials with their separation into individual constituents. In the current study, the mechanical recycling of the following groups of polymer materials was studied: pure brittle and soft polymers (PMMA, HDPE and IER), blends of plastics (ABS+PMMA, PC + ABS), reinforced plastics (PMMA+GFP); elastomers (rubber and tyres), and printed circuit boards (PCB).
聚合物废弃物的粉碎再处理
全球将废物利用技术引入聚合物市场目前尚未充分发展,但具有巨大的潜力。在将使用过的材料重新整合成新产品之前,通常需要研磨,即切碎、粉碎或碾磨。在传统的研磨机中,被研磨材料中产生的应力等于或小于材料的强度。如果说传统方法产生的应力是压缩+位移,那么基于碰撞的铣削方法产生的应力是张力+位移。由于在碰撞时具有较高的应力-材料强度比,不仅可以粉碎脆性材料,而且可以粉碎延性材料。这个过程可以很容易地将复合材料的研磨与分离成单独的成分结合起来。在目前的研究中,研究了以下几类高分子材料的机械回收:纯脆性和软性聚合物(PMMA、HDPE和IER)、塑料共混物(ABS+PMMA、PC + ABS)、增强塑料(PMMA+GFP);弹性体(橡胶和轮胎)和印刷电路板(PCB)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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