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DLC for tools protection in warm massive forming

机译:DLC用于温暖大批量成形中的刀具保护

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摘要

In order to find an alternative to solid lubricants in bulk metal forming with contact temperatures between work piece and tool up to 600 deg C, low wear friction coatings like hydrogenated amorphous diamond-like carbon (DLC), silicon doped diamond-like carbon (Si-DLC), sputtered molybdenum disulfide and a multilayer system of TiC and TiN (TiCN) were tested in a modified forced-in test at contact temperatures between room temperature and 500 deg C. Caused by the high normal pressure between work piece and tool, this test models heavy sliding friction which can lead to adhesive wear. The tested solid lubricants showed, for all tested temperatures, lower coefficients of friction than the four coatings, but their values were very low too. Only the bolt coated with Si-DLC failed the test at room temperature and the TiCN coating did not work at all temperatures. The lowest press force of the coatings at 400 deg C was needed for the Si-DLC, while for the other temperatures MoS_2 was best. The surfaces of the sleeves showed no visible failures. In endurance tests with the same bolt in different sleeves, surfaces formed with a Si-DLC coated bolt had no mistakes after 16 repetitions at 500 deg C, while tests with the MoS_2 coating failed after nine times and with DLC after two times. At 400 deg C the Si-DLC coating showed the best results too, while MoS_2 was best at room temperature.
机译:为了找到可替代散装金属固体润滑剂的方法,工件与工具之间的接触温度高达600摄氏度,使用了低磨损摩擦涂层,例如氢化无定形类金刚石碳(DLC),掺硅类金刚石碳(Si -DLC),溅射的二硫化钼以及TiC和TiN(TiCN)的多层系统在改进的强制插入测试中在室温至500摄氏度之间的接触温度下进行了测试。由于工件和工具之间的高常压,该测试模拟了严重的滑动摩擦,该摩擦可能导致粘合剂磨损。经测试的固体润滑剂在所有测试温度下均显示出比四种涂层更低的摩擦系数,但其值也非常低。仅涂有Si-DLC的螺栓在室温下未通过测试,而TiCN涂层并非在所有温度下均可工作。 Si-DLC需要涂层在400摄氏度下的最低压力,而在其他温度下,MoS_2最好。套筒表面未见可见故障。在不同套筒中使用相同螺栓进行的耐力测试中,用Si-DLC涂层螺栓形成的表面在500摄氏度下重复16次后没有错误,而使用MoS_2涂层的试验在9次后失败,而在DLC的试验在两次后失败。在400摄氏度时,Si-DLC涂层也显示出最好的结果,而MoS_2在室温下是最好的。

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