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Friction and wear characteristics between cermet alloy and cast iron

机译:金属陶瓷合金与铸铁之间的摩擦磨损特性

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Friction and wear tests between the TiCN cermet chip and FC250 cast iron roller have been carried out using a roller-chip type testing machine in air under unlubricated condition. The friction force-sliding distance curves were obtained under the following test conditions: normal loads between 1ON-30N, sliding speeds between 0.05 m/s-0.3 m/s, and a total sliding distance of 2000 m. The friction force was affected by the sliding distance in the different manners depending on sliding conditions. The friction force-sliding distance curves for the tests could be divided into three groups (type A, type B and type C), depending on the characteristic of the profile, especially in the early stage (~500 m in sliding distance) of each wear test. In type A, the friction force rapidly increased to a maximum value at the beginning of a test, and then decreased to a certain stable value for the sliding distance after that. In type B, such rapid decrease in the friction force after a maximum value did not appear, although sudden drops or rises were observed irregularly during the test. In type C, the friction force decreased after reaching to a maximum and again increased to a certain stable value for the sliding distance after that. The amount of wear after the test was relatively large in the TiCN cermet chip for type B, but remarkably large in cast iron roller for type C. The origin of such three types of friction force-sliding distance curve and the tendency of wear in both chip and roller were discussed in relation with the results of the sliding surface SEM observation and EPMA analysis.
机译:TiCN金属陶瓷切屑和FC250铸铁辊之间的摩擦和磨损测试是使用辊切式试验机在未润滑的空气中进行的。在以下测试条件下获得了摩擦力-滑动距离曲线:正常载荷在1ON-30N之间,滑动速度在0.05 m / s-0.3 m / s之间,总滑动距离为2000 m。取决于滑动条件,摩擦力以不同方式受到滑动距离的影响。根据轮廓的特性,测试的摩擦力-滑动距离曲线可以分为三组(A型,B型和C型),尤其是在每种情况的早期(滑动距离约为500 m)磨损测试。在A型中,摩擦力在测试开始时迅速增加到最大值,然后在滑动距离减小到一定的稳定值。在B型中,尽管在测试过程中观察到不规则的突然下降或上升,但在最大值之后没有出现这种摩擦力的快速下降。在类型C中,摩擦力在达到最大值后减小,并在此后再次增大到某个稳定值。测试后的磨损量在B型的TiCN金属陶瓷芯片中相对较大,但在C型的铸铁辊中则非常大。这三种摩擦力-滑动距离曲线的起源以及两种磨损趋势结合滑动面SEM观察结果和EPMA分析结果讨论了切屑和辊子。

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