首页> 外文期刊>Acta Mechanica et Automatica >Experimental Estimation of Wear Resistance of Polyamide Composites, Reinforced By Carbon and Glass Fibres Used in Metal-Polymer Gearings
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Experimental Estimation of Wear Resistance of Polyamide Composites, Reinforced By Carbon and Glass Fibres Used in Metal-Polymer Gearings

机译:金属 - 聚合物钢材用碳和玻璃纤维加固的聚酰胺复合材料的实验估计

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摘要

The method of model triboexperimental studies to determine the basic mathematical model parameters of materials wear resistance at sliding friction is considered. The quantitative relative experimental characteristics of wear resistance of glass fibre and carbon fibre reinforced polyamide used in metal-polymer gear couple have been determined. Wear resistance functions of these functional polymeric composites have been established as the basic ones in the tribokinetic mathematical model of material wear for sliding friction conditions. Also, according to the conducted researches, wear resistance diagrams were constructed. They may be used as graphical indicators of wear resistance in the required range of specific friction forces. The dependences that connect the characteristic functions of wear resistance of these materials (obtained by the developed mathematical tribokinetic wear model) with linear wear and gearing service life are presented.
机译:考虑了模型摩擦解研究的方法,以确定材料耐磨性在滑动摩擦下的基本数学模型参数。 确定了金属 - 聚合物齿轮耦合中使用的玻璃纤维和碳纤维增强聚酰胺的耐磨性的定量相对实验特征。 已经建立了这些官能聚合物复合材料的耐磨函数作为用于滑动摩擦条件的材料磨损的二手道数学模型中的基本模型。 此外,根据进行的研究,构建耐磨性图。 它们可以用作特定摩擦力所需范围的耐磨性的图形指示器。 提出了连接这些材料的耐磨性特性功能的依赖性(由发达的数学二极管磨损模型获得)具有线性磨损和齿轮使用寿命。

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