Estimation of tribotechnical parameters of composite polymer with metal filler

О.О. Skvortsov, Оksana Mikosianchyk
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Abstract

Р The use of composition material based on the polyamide (caprolon) Ertalon 4.6 as an anti-friction material in the sliding units in the aviation industry is considered. Low carbon electrotechnical sheet steel 21864 of different concentrations was used as filler of composite material. The article presents the thermal calculation of plain bearings with polymer insert in different operating modes. It is determined that the addition of a metal filler to polyamide causes a temperature decrease in the friction zone due to the effective heat exchange from the shaft to the bearing housing. The article conducts a study of tribo-technical properties of the proposed composite material on installation PT-4C under sliding conditions according to the scheme “cylinder-plane”, as well as modeling of the support unit in the software complex DS SolidWorks. It has been experimentally determined that the addition of finely dispersed steel filler enhances the antifriction properties of the Ertalon 4.6 polymer and extends the temperature range of the composite insert performance. Increasing the filler concentration to 20% results in a reduction of the friction coefficient by an average of 3.6 times and an increase in the temperature range of composite material use to 100 °C. The load-bearing capacity of the composite material bushing is increased to 25 MPa at a 20% filler concentration respectively. The practical significance of the work lies in the analysis of the antifriction properties of the polymer with metallic filler in comparison with the polymer without filler, which will prove the effectiveness of the use of such polymers in friction units instead of non-ferrous metals (bronze, babbitt).
金属填料复合聚合物摩擦学参数的估算
Р考虑在航空工业滑动装置中使用基于聚酰胺(卡普隆)Ertalon 4.6的组合材料作为抗摩擦材料。采用不同浓度的低碳电工钢板21864作为复合材料的填料。本文介绍了聚合物嵌套滑动轴承在不同工况下的热计算。确定在聚酰胺中添加金属填料会导致摩擦区温度降低,这是由于从轴到轴承壳的有效热交换。本文按照“圆柱-平面”方案对所提出的复合材料在PT-4C安装件滑动条件下的摩擦技术性能进行了研究,并在DS SolidWorks软件综合体中对支撑单元进行了建模。实验结果表明,细分散钢填料的加入提高了Ertalon 4.6聚合物的抗摩擦性能,并扩大了复合材料嵌套性能的温度范围。将填料浓度提高到20%,摩擦系数平均降低3.6倍,复合材料的使用温度范围提高到100℃。填料浓度为20%时,复合材料衬套的承载能力分别提高到25 MPa。本文的实际意义在于分析了含金属填料的聚合物与不含金属填料的聚合物的抗摩擦性能,从而证明了这种聚合物在摩擦单元中代替有色金属(青铜、巴氏合金)的有效性。
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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