Investigations on Varying Compositions of Nylon 6 Polymer Matrix Composites for Wear Reduction in Application to Gears

V. Karthi, N. M. Raj, J. Baskaran
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Abstract

In power transmission systems, gears are the most essential parts. Gear failure would happen at any regular working cycles and it must be avoided with special care. The mode of failure suggests that optimum material and suitable post processing has to be done. Industry demands more efficient, reliable, and lightweight gears. Hence more efficient, reliable, and lightweight gears must be developed and manufactured. Eventhough lot of investment is being done on research and implementing new technologies while manufacturing gears, stills some failures is arised. Many physical factors, including the inappropriate materials composition, may induce gear failure. In this paper, some typical diverse materials, like nylon 6 and glass fibers are mixed with various volume proportions to enhance wear resistance and improve gear’s life. Polymer gears developed in this study offer more superior life than pure nylon gears. All the prepared specimen samples are tested to a variety of studies including Tensile, Compression, Flexural, Impact, TGA and Wear tests. Depreciation is not reducing low, however. 90% nylon 6 + 10 % Glass fiber to 10% nylon 6+ 90Glass fiber 10 % Nylon 6 has mixed for investigation. Based on the investigation, 70% of Nylon 6 + 30% glass fiber has high strength, low wear, and high wear resistance.
尼龙 6 聚合物基复合材料不同成分在齿轮减磨应用中的研究
在动力传输系统中,齿轮是最重要的部件。齿轮在任何常规工作循环中都会发生故障,必须特别小心避免。故障模式表明,必须使用最佳材料和进行适当的后处理。工业需要更高效、可靠和轻质的齿轮。因此,必须开发和制造更高效、可靠和轻质的齿轮。尽管在研究和采用新技术制造齿轮方面进行了大量投资,但仍然出现了一些故障。许多物理因素,包括不适当的材料成分,都可能导致齿轮失效。在本文中,一些典型的多样化材料,如尼龙 6 和玻璃纤维,以不同的体积比例混合在一起,增强了耐磨性,提高了齿轮的使用寿命。与纯尼龙齿轮相比,本研究开发的聚合物齿轮具有更长的使用寿命。所有制备的试样都经过了拉伸、压缩、挠曲、冲击、TGA 和磨损等多项测试。不过,折旧率并没有降低。90% 尼龙 6 + 10% 玻璃纤维与 10% 尼龙 6 + 90% 玻璃纤维 + 10% 尼龙 6 混合进行了研究。根据调查,70% 尼龙 6 + 30% 玻璃纤维具有高强度、低磨损和高耐磨性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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