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Utilization of Leather Waste Fibers in Polymer Matrix Composites Based on Acrylonitrile-Butadiene Rubber

机译:基于丙烯腈 - 丁二烯橡胶的聚合物基复合材料在高分子基质复合材料中利用皮革废纤维

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摘要

In this study, we present the fabrication of nitrile butadiene rubber/waste leather fiber (NBR/WLF) composites with different weight percentages of WLF and NBR (0/100, 20/80, 30/70, 40/60, 50/50, 60/40 wt/wt). WLF was prepared by cutting the scrap leathers from the waste product of the Vietnamese leather industry. Subsequently, in order to make the short fibers, it was mixed by a hammer mill. The characteristics of WLF/NBR composites such as mechanical properties (tensile strength, tear strength, hardness), dynamic mechanical properties, toluene absorption, and morphology were carefully evaluated. As a result, the tensile strength and tear strength become larger with increasing WLF content from 0 to 50 wt% and they decrease when further increasing WLF content. The highest tensile strength of 12.5 MPa and tear strength of 72.47 N/mm were achieved with the WLF/NBR ratio of 50/50 wt%. Both hardness and resistance of the developed materials with toluene increased with increasing WLF content. The SEM results showed a good adhesion of NBR matrix and the WLF. The increasing of storage modulus (E’) in comparison with raw NBR showed good compatibility between WLF and NBR matrix. This research showed that the recycled material from waste leather and NBR was successfully prepared and has great potential for manufacturing products such as floor covering courts and playgrounds, etc.
机译:在这项研究中,我们介绍了丁腈丁烯橡胶/废皮革纤维(NBR / WLF)复合材料的制造,具有不同重量百分比的WLF和NBR(0/100,20 / 80,30 / 70,40 / 60,50/50 ,60/40 wt / wt)。 WLF是通过从越南皮革工业的废品中切割废皮革制备。随后,为了使短纤维制成短纤维,它由锤磨机混合。仔细评估WLF / NBR复合材料的特性,例如机械性能(拉伸强度,撕裂强度,硬度),动态力学性能,甲苯吸收和形态学。结果,抗拉强度和撕裂强度随着0至50wt%的增加而变大,并且在进一步增加WLF含量时它们会降低。使用50/50wt%的WLF / NBR%来实现12.5MPa和72.47n / mm的最高拉伸强度。随着WLF含量的增加,通过甲苯的开发材料的硬度和抗性。 SEM结果表明NBR基质和WLF的良好粘附。与RAW NBR相比,储存模量(E')的增加显示了WLF和NBR矩阵之间的良好兼容性。该研究表明,从废皮革和NBR的再生材料成功制备,并具有巨大的制造产品,如地板覆盖法院和操场等。

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