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首页> 外文期刊>JOM >Wear Characterizations of Polyoxymethylene (POM) Reinforced with Carbon Nanotubes (POM/CNTs) Using the Paraffin Oil Dispersion Technique
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Wear Characterizations of Polyoxymethylene (POM) Reinforced with Carbon Nanotubes (POM/CNTs) Using the Paraffin Oil Dispersion Technique

机译:使用石蜡油分散技术增强碳纳米管(POM / CNT)增强的聚甲醛(POM)的磨损特性

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摘要

The wear of polyoxymethylene (POM) is considered a key design parameter of polymer gears and some mechanical applications, and it determines the service time span. This work investigates the influence of carbon nanotubes (CNTs) on the specific wear rate of POM/CNT nanocomposites by using a pin-on-disk test rig (sliding only). The CNTs were synthesized with a fully automatic machine via the arc-discharge multi-electrode technique and subsequently dispersed in a POM matrix to manufacture test specimens. The CNT weight percentages were varied within the range 0-0.03 wt.% in three different operating media (air, distilled water, and mineral oil). The wear mechanism was examined by microscopy. The mechanical and thermal properties of POM/CNT were studied by using calorimetric analysis and by mechanical tensile testing. In addition, the thermal and mechanical properties were improved to an optimum CNT ratio of 0.02 wt.% due to the improvement in crystallinity of POM and a decrease in the fusion defects. The crystallinity degree increased by 7%, and the melting temperature also increased. The results further indicate that the specific wear rate (Ws) for POM/CNT containing 0.03 wt.% CNT in air and water media was improved by 73% and 66%, respectively, compared with virgin POM. In addition, the tensile strength of the mechanical properties and Young's modulus increased by 31% and 29%, respectively.
机译:聚甲醛(POM)的磨损被认为是聚合物齿轮和某些机械应用的关键设计参数,它决定了使用寿命。这项工作通过使用针式磁盘测试台(仅滑动式)研究了碳纳米管(CNT)对POM / CNT纳米复合材料比磨损率的影响。 CNT通过电弧放电多电极技术用全自动机器合成,然后分散在POM基质中以制造测试样品。在三种不同的操作介质(空气,蒸馏水和矿物油)中,CNT的重量百分比在0-0.03 wt。%的范围内变化。通过显微镜检查磨损机理。通过量热分析和机械拉伸试验研究了POM / CNT的机械和热性能。另外,由于POM的结晶性的改善和熔合缺陷的减少,将热和机械性能提高至最佳的CNT比率为0.02重量%。结晶度提高了7%,熔融温度也提高了。结果还表明,与原始POM相比,空气和水介质中含有0.03 wt%CNT的POM / CNT的比磨损率(Ws)分别提高了73%和66%。此外,机械性能的拉伸强度和杨氏模量分别增加了31%和29%。

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