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Friction Measurement under Consideration of Contact Conditions and Type of Lubricant in Bulk Metal Forming

机译:考虑接触条件和大金属成形中润滑剂类型的摩擦测量

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摘要

The tribological system plays a critical part in designing robust and efficient cold forging operations. The appropriate selection of lubrication allows to forge defect-free workpieces with high dimensional precision and desired surface finish while ensuring that no defects, such as cracks or seams, occur. Additionally, friction and wear are highly affected by the choice of tribological system, which in turn influence the cost-effectiveness of the forging operation by preventing premature tool failure. Next to the employed tool coating and work piece material, the lubrication system and work piece surface topography are the main factors influencing the aforementioned constraints when designing efficient forging operations. In order to choose the appropriate tribological system before implementing it within an industrial forging operation, tribometers are used to characterize the performance of the tribological system. In this paper, the necessity to account for not only the tribological loads when designing these tribometer tests as is typical for existing methodologies, but also for process and lubricant specific properties will be highlighted. With the help of the tribometer sliding compression test, it will be shown that using liquid lubricants necessitates the need to account for the escape of lubricant, while this is not true for solid lubricants. The escape of lubricant from the contact zone is governed by lubricant properties as well as the contact kinematics and may lead to significantly different results regarding friction and wear. In order to account for this escape, the tribometer test must be specifically designed to reproduce the contact kinematics of the investigated industrial forging operation.
机译:摩擦学系统在设计稳固而高效的冷锻操作中起着至关重要的作用。适当的润滑选择可以锻造出具有高尺寸精度和所需表面光洁度的无缺陷工件,同时确保不会出现诸如裂纹或接缝之类的缺陷。此外,摩擦和磨损会受到摩擦学系统的选择的极大影响,而摩擦学系统的选择又会通过防止工具过早失效而影响锻造的成本效益。在设计有效的锻造操作时,除采用的工具涂层和工件材料外,润滑系统和工件表面形貌是影响上述约束的主要因素。为了在工业锻造作业中实施之前选择合适的摩擦学系统,使用摩擦计来表征摩擦学系统的性能。在本文中,将突出强调在设计这些摩擦计测试时不仅要考虑现有方法中常见的摩擦负荷,而且还要考虑工艺和润滑剂的特定性能。在摩擦计滑动压缩测试的帮助下,将显示出使用液体润滑剂需要考虑润滑剂的逸出,而对于固体润滑剂却并非如此。润滑剂从接触区的逸出受润滑剂性能以及接触运动学的控制,并且可能导致有关摩擦和磨损的结果大不相同。为了解决这种逃逸问题,必须对摩擦计测试进行专门设计,以再现所研究的工业锻造操作的接触运动学。

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