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An Experimental Study on Friction and Wear of Polyethylene with Rice-Husk

机译:稻壳稻壳摩擦磨损及磨损的实验研究

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As global policy has devoted much effort to promoting energy conservation and carbon reduction over the past few decades, low energy consumption and less pollution have become the future trends. Moreover, with natural resources gradually turning deficient gradually, it is very important for Taiwan to further establish key technologies from reprocessed natural resources as soon as possible. The special geographical features of East Asia have always displayed a large amount of rice-husk, and therefore this paper investigates the green technology of thermoplastic polymerization with rice-husk. This paper clarifies the adhesive wear and tribological properties to evaluate the anti-slip performance of the reprocessed natural resources step by step and uses a self-developed reciprocating friction tester with measurement systems. To monitor the tribological behaviors between the interfaces, the responses of friction coefficient are recorded during the friction processes. After each test, wear loss is measured by an accuracy balance and OM is utilized to observe the worn surface. Therefore, the anti-slip performance of the reprocessed natural resources can be evaluated and a better agricultural economy can thus be obtained.
机译:随着全球政策致力于促进过去几十年的节能和碳减少的努力,低能源消耗和污染较少已成为未来的趋势。此外,由于自然资源逐渐逐步转动,台湾非常重要,以便尽快进一步建立从再加工自然资源资源的关键技术。东亚的特殊地理特征始终展示大量的稻壳,因此本文研究了热塑性聚合与稻壳的绿色技术。本文阐明了粘合剂磨损和摩擦学特性,以评价再加工自然资源的防滑性能一步一步,并使用自开发的往复式摩擦测试仪进行测量系统。为了监视界面之间的摩擦学行为,在摩擦过程中记录摩擦系数的响应。在每个测试之后,通过精度平衡来测量磨损损耗,并且使用OM来观察磨损的表面。因此,可以评估再加工自然资源的防滑性能,因此可以获得更好的农业经济。

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