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Influence of Initial Fiber Length on the Mechanical and Tribological Properties of Hemp Fiber Reinforced Plants-Derived Polyamide 1010 Biomass Composites

机译:初始纤维长度对大麻纤维增强植物衍生聚酰胺1010生物量复合材料的机械和摩擦学性质的影响

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The aim of this study is to investigate the influence of initial fiber length on the mechanical and tribological properties of hemp fiber filled plants-derived polyamide 1010 biomass composites in order to develop the new engineering materials such as structural materials and tribomaterials based on all plants-derived materials. Plants-derived polyamide 1010 (PA1010) was made from plants-derived castor oil. Hemp fiber (HF) was previously cut into length of 5mm, 10mm, 20mm and 50mm, and was surface-treated by two types of treatment: alkali treatment by NaOH solution and surface treatment by ureidosilane coupling agent (HF-S). The volume fraction of HF-S in the composites was fixed with 20vol.%. HF-S/PA1010 biomass composites were extruded by a twin screw extruder and injection-molded. Their mechanical properties such as tensile, bending, and Izod impact test, and tribological properties by ring-on-plate type sliding wear testing were evaluated. It was found that the mechanical properties of HF-S/PA1010 biomass composites change with the initial fiber length of HF. The critical fiber lengths of various mechanical properties of these biomass composites decrease as follows: strength> modulus> elongation at break> Izod impact strength. Tribological properties such as frictional coefficient and specific wear rate also change with the initial fiber length. The frictional coefficient of these biomass composites slightly decrease with increasing the fiber length. On the other hand, the specific wear rate of these biomass composites dramatically improved with increasing the fiber length, and has a minimum peak at 20mm. It follows from these results that it may be possible to develop the new higher performance engineering materials by selecting the suitable fiber length.
机译:本研究的目的是研究以开发基于所有株植物的新的工程材料如结构材料和tribomaterials初始纤维长度的上麻纤维填充的植物衍生的聚酰胺1010生物质复合材料的机械和摩擦性能的影响衍生的材料。植物衍生的聚酰胺1010(PA1010)从植物中衍生的蓖麻油制成。麻纤维(HF)中的溶液预先切成5毫米为10mm,20毫米与50mm的长度,并进行表面处理由两种类型的处理:碱处理通过NaOH溶液和表面处理通过脲基偶联剂(HF-S)。 HF-S在复合材料中的体积分数固定20体积%。 HF-S / PA1010生物质复合材料是由双螺杆挤出机和注模挤出。它们的机械性能如拉伸,弯曲,和悬臂梁式冲击试验,并通过环上板型滑动磨损试验摩擦磨损性能进行了评价。已经发现,HF-S / PA1010生物质复合材料与HF的初始纤维长度变化的机械性能。这些生物质复合材料的各种机械性能的临界纤维长度减少如下:强度>模量>断裂伸长率>悬臂梁式冲击强度。摩擦学性质如摩擦系数和比磨损率也与初始纤维长度变化。这些生物质复合材料的摩擦系数随纤维长度稍微下降。在另一方面,这些生物质复合材料的特定磨损率显着地随着光纤长度的提高,且具有20mm处最小峰值。从这些结果得出,有可能通过选择合适的纤维长度,以开发新的更高性能的工程材料。

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