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Preparation of rubber composites from ground tire rubber reinforced with waste-tire fiber through mechanical milling

机译:机械研磨由废轮胎纤维增强的地轮胎橡胶制备橡胶复合材料

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摘要

Composites made from ground tire rubber (GTR) and waste fiber produced in tire reclamation were prepared by mechanical milling. The effects of the fiber content, pan milling, and fiber orientation on the mechanical properties of the composites were investigated. The results showed that the stress-induced mechanochemical devulcanization of waste rubber and the reinforcement of devulcanized waste rubber with waste-tire fibers could be achieved through comilling. For a comilled system, the tensile strength and elongation at break of revulcanized GTR/fiber composites reached maximum values of 9.6 MPa and 215.9%, respectively, with 5 wt % fiber. Compared with those of a composite prepared in a conventional mixing manner, the mechanical properties were greatly improved by comilling. Oxygen-containing groups on the surface of GTR particles, which were produced during pan milling, increased interfacial interactions between GTR and waste fibers. The fiber-filled composites showed anisotropy in the stress-strain properties because of preferential orientation of the short fibers along the roll-milling direction (longitudinal), and the adhesion between the fiber and rubber matrix was improved by the comilling of the fiber with waste rubber. The proposed process provides an economical and ecologically sound method for tire-rubber recycling. (c) 2006 Wiley Periodicals, Inc.
机译:通过机械研磨制备由地面轮胎橡胶(GTR)和轮胎开垦中产生的废纤维制成的复合材料。研究了纤维含量,盘磨和纤维取向对复合材料力学性能的影响。结果表明,通过压缩可以实现废旧橡胶的应力诱导机械化学脱硫和废轮胎纤维对脱硫废橡胶的增强。对于精练系统,硫化的GTR /纤维复合材料的拉伸强度和断裂伸长率在纤维含量为5 wt%时分别达到9.6 MPa和215.9%的最大值。与以常规混合方式制备的复合材料相比,通过压缩可大大改善机械性能。在锅磨过程中产生的GTR颗粒表面上的含氧基团增加了GTR与废纤维之间的界面相互作用。纤维填充的复合材料由于短纤维沿轧制方向(纵向)的优先取向而在应力应变性能中表现出各向异性,并且通过将纤维与废料混合,改善了纤维与橡胶基体之间的粘合性橡胶。所提出的方法为轮胎橡胶的回收提供了一种经济和生态上合理的方法。 (c)2006年Wiley Periodicals,Inc.

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