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Failure analysis and life prediction of polymeric rollers for industrial applications

机译:工业应用聚合物辊的失效分析和寿命预测

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摘要

The present study investigates the behaviour of polymeric rollers employed in a cam mechanism of an industrial machine, consisting of two concentrically fitted rings made of polyurethane and short fibre-reinforced PEEK.rnA cyclic mechanical characterisation of the materials was at first carried out by strain controlled fatigue tests. The safe range of working conditions of the rollers in terms of rotating speed and contact load was then investigated by rolling contact tests carried out on roller prototypes with a dedicated test rig. These tests allowed obtaining important information about the different damage mechanisms occurring in the component: above a critical working temperature, rollers failure resulted from rings unfitting due to excessive deformations, while fatigue crack nucleation in the outer ring at the interface with the inner one was observed below this threshold, at high contact load levels. No contact fatigue damage appeared.rnFEM models of the roller were also developed, based on cyclic material data, in order to analyse the cyclic stress and strain field and to predict the fatigue life, finding a satisfactory agreement with the experimental rolling contact tests results.
机译:本研究调查了工业机械的凸轮机构中使用的聚合物辊的性能,该辊由两个同心装配的聚氨酯和短纤维增强PEEK制成的同心环组成。首先通过应变控制对材料进行循环机械表征疲劳测试。然后,通过使用专用测试装置对辊子原型进行的滚动接触测试,研究了辊子在旋转速度和接触载荷方面的安全工作条件范围。这些测试允许获得有关部件中发生的不同损坏机理的重要信息:在临界工作温度以上,由于过度变形而使环不适合而导致辊子损坏,同时观察到外环与内环的界面处疲劳裂纹成核。在高接触负载水平下低于此阈值。没有出现接触疲劳损伤。基于循环材料数据,开发了轧辊的有限元模型,以便分析循环应力和应变场并预测疲劳寿命,并与实验滚动接触试验结果令人满意。

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