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Chemical surface etching methods for ground tire rubber as sustainable approach for environmentally-friendly composites development- a review

机译:地面轮胎橡胶的化学表面蚀刻方法作为环保复合材料的可持续方法开发 - 评论

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摘要

Ground tire rubber (GTR) has been used as a sustainable low-cost modifier in various composites. However, due to the hydrophobic nature of GTR, it is in compatible with most matrices and results in deterioration in both mechanical and physical properties of composites. This necessitates pre-modification of the powdered rubber to improve the interfacial bonding at the rubber-matric interface. The most common GTR modification research relies on surface etching via use of various techniques. The current review aims to give a detailed overview of the surface etching chemical modification methods for GTR for incorporation into various matrices such as concrete, bitumen and polymers. The review will serve as a guide for engineers, chemists and manufactures with interest of including GTR in any type of composite for achieving compatibility with the main matrix. The surface chemical etching treatment methods such as acid etching, hydroxylation, oxidation, and radiation methods are discussed in this work. The characterization methods to confirm the functional groups on the modified GTR and the effect of the treatment on the resultant GTR composites are also highlighted. Finally, this review highlights the ad-vantages and limitations of the chemical surface etching processes for GTR.
机译:接地轮胎橡胶(GTR)已被用作各种复合材料的可持续低成本修饰符。然而,由于GTR的疏水性质,它与大多数矩阵相容并导致复合材料的机械和物理性质的劣化。这需要预改性粉末橡胶以改善橡胶 - Matric界面处的界面键合。最常见的GTR改性研究通过使用各种技术依赖于表面蚀刻。目前的审查旨在详细概述用于GTR的表面蚀刻化学改性方法,用于掺入各种基质,例如混凝土,沥青和聚合物。该审查将作为工程师,化学家和制造商的指南,其利益在任何类型的复合材料中包括GTR,以实现与主要矩阵的兼容性。在这项工作中讨论了表面化学蚀刻处理方法,例如酸蚀刻,羟化,氧化和辐射方法。还突出显示了在改性的GTR上确认官能团和处理对所得GTR复合材料的效果的表征方法。最后,本综述突出了GTR的化学表面蚀刻工艺的广泛和局限性。

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