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Influence of Hot Molding Parameters on Tribological and Wear Properties of a Friction Material

机译:热成型参数对摩擦材料的摩擦磨损性能的影响

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摘要

The manufacturing process of organic friction material used for braking applications is of importance with regard to their properties and performance. This article deals with a friction material manufactured according to two different hot molding conditions. An original analysis of polymerization of the phenolic resin matrix led to the choice of temperature and duration of the hot molding process. Two materials were developed, changing the hot molding process according to these two dependent parameters, and their friction and wear behaviors were investigated for various thermal severities of sliding conditions. The thermal conductivity was also analyzed and found to be higher when the hot molding temperature was low and the hot molding duration was long. Wear test results showed that friction was not significantly affected by the process change. On the contrary, wear appeared to be sensitive to hot molding temperature and duration. Hot molding at elevated temperature for a short duration led to higher wear resistance because the rubbing conditions were not severe. On the contrary, hot molding at low temperature for a long duration was in favor of the wear resistance for higher severities of the rubbing conditions.
机译:就制动性能而言,用于制动应用的有机摩擦材料的制造过程非常重要。本文涉及根据两种不同的热成型条件制造的摩擦材料。酚醛树脂基体聚合的原始分析导致选择温度和热成型过程的持续时间。开发了两种材料,根据这两个相关参数更改了热成型工艺,并针对各种滑动条件下的热强度研究了它们的摩擦和磨损行为。还分析了热导率,发现当热成型温度低且热成型持续时间长时,热导率更高。磨损测试结果表明,摩擦没有受到工艺变化的明显影响。相反,磨损似乎对热成型温度和持续时间敏感。短时间在高温下进行热成型会导致较高的耐磨性,因为摩擦条件并不严格。相反,在高温下长时间进行热成型有利于在更高的摩擦条件下提高耐磨性。

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