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Friction and Wear Properties of Recycled Natural Fiber Reinforced Plant-Derived Polyamide 1010 Biomass Composites

机译:再生天然纤维增强植物衍生聚酰胺1010生物质复合材料的摩擦和磨损性能

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To develop new engineering materials for sliding mechanical parts (referred to as tribomaterials in this paper) using only inedible plant-derived materials, this study aimed to investigate the frictional and wear properties of recycled natural fiber reinforced plant-derived polyamide 1010 (PA1010) biomass composites. Two types of recycled natural fibers: recycled jute fiber (R-JF) and recycled sisal fiber (R-SF) were used as the reinforcement fibers. PA1010 is made of sebacic acid and decamethylenediamine, which are obtained from plant-derived castor oil. In this study, R-JF and RSF were surface-treated by two types of surface treatment: (a) alkali treatment by sodium hydroxide (NaOH) solution and surface treatment by ureidosilane coupling agent, and (b) alkali treatment by sodium chlorite (NaC1O_2) solution and surface treatment by ureidosilane coupling agent before addition to PA1010. These fiber reinforced PA1010 biomass composites were then extruded using a twin extruder and injection-molded. Their frictional and wear properties were evaluated by ring-on-plate type sliding wear test. Their worn surface, the transfer film on the counterface, and wear debris were observed with a scanning electron microscope to understand the wear mode. It was found that the frictional coefficient and specific wear rate of the biomass composites improved when added with R-JF and R-SF whose surface have been treated by alkali treatment and silane coupling agent. In particular, the combination of NaCIO, and ureido silane coupling agent was found to be the most effective surface treatment for improving the tribological properties of the biomass composites in constant load and velocity test. These results may be attributed to the change in the mode of wear mechanism according to the types of natural fiber used, surface treatment performed for realizing good dispersion of fibers in the composites, and good interaction adhesion between fiber and matrix polymer.
机译:该研究开发用于滑动机械零件(本文中称为摩擦物质的摩擦物质的新工程材料,本研究旨在研究再生天然纤维增强植物衍生的聚酰胺1010(PA1010)生物质的摩擦和磨损性能复合材料。两种类型的再循环天然纤维:再循环黄麻纤维(R-JF)和再循环的Sisal纤维(R-SF)用作增强纤维。 PA1010由癸二酸和甲基二胺制成,其由植物衍生的蓖麻油获得。在本研究中,通过两种类型的表面处理表面处理R-JF和RSF:(a)通过氢氧化钠(NaOH)溶液和由ureidosilane偶联剂的表面处理的碱处理,并通过亚氯酸钠处理(b)碱处理( NaC1O_2)通过ureidosilane偶联剂的溶液和表面处理在加入PA1010之前。然后使用双挤出机挤出这些纤维增强PA1010生物质复合材料并注塑成型。通过环形型滑动磨损试验评估其摩擦和磨损性能。它们的磨损表面,用扫描电子显微镜观察逆面上的转印膜,并用扫描电子显微镜观察磨损以了解磨损模式。发现,当添加与R-JF和R-SF的添加时改善生物质复合材料的摩擦系数和特定磨损率,其表面已经通过碱处理和硅烷偶联剂处理。特别地,发现NaCiO和Ureido硅烷偶联剂的组合是用于改善恒定载荷和速度试验的生物质复合材料的摩擦学性质的最有效表面处理。这些结果可以归因于根据所用天然纤维类型的磨损机构模式的变化,用于实现复合材料中纤维良好分散的表面处理,以及纤维和基质聚合物之间的良好相互作用粘附。

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