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Incremental dry forging - Interaction of W-DLC Coatings and Surface Structures for Rotary Swaging Tools

机译:增量干锻-旋转型锻工具的W-DLC涂层和表面结构的相互作用

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Rotary swaging is an incremental cold forging process with very short cycle times for manufacturing of complex bar or tube profiles such as axles or gear shafts made of steel or aluminum alloys. Conventional rotary swaging requires high amounts of lubricants usually made of crude oil. Dry rotary swaging would improve the ecological balance of this process considerably and would also accelerate the process due to cleaning of the manufactured components after processing becomes obsolete. This study deals with a first benchmark of dry rotary swaging as a function of macro and micro-structured tool surfaces coated with wear resistant and low friction a-C:H:W coating systems with respect to the resulting workpiece quality and tribological process conditions. In addition, the influence of a surface finishing is investigated related to the dominating and locally changing coating wear mechanisms. The presented results allow for further coating development towards dry rotary swaging.
机译:旋转锻造是一种渐进式冷锻工艺,具有非常短的循环时间,用于制造复杂的棒材或管材轮廓,例如钢或铝合金制成的轴或齿轮轴。传统的旋转型锻需要大量通常由原油制成的润滑剂。干式旋转型锻将大大改善该过程的生态平衡,并且由于在加工变得过时后对制造的部件进行清洁而还将加速该过程。这项研究针对干式旋转锻造的第一个基准,该基准是相对于所得的工件质量和摩擦过程条件而言,宏观和微观结构的刀具表面均涂覆有耐磨和低摩擦a-C:H:W涂层系统的功能。此外,还研究了与主要和局部变化的涂层磨损机理有关的表面光洁度的影响。呈现的结果允许进一步向干旋转型锻发展涂层。

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