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首页> 外文期刊>Journal of Manufacturing Processes >Static and oscillation superimposed ring compression tests with structured and coated tools for Sheet-Bulk Metal Forming
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Static and oscillation superimposed ring compression tests with structured and coated tools for Sheet-Bulk Metal Forming

机译:静态和振荡叠加环压缩试验,具有用于片散装金属成形的结构化和涂层工具

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Forming tools with tailored surfaces or functional surface modifications offer great potential for the adaption and optimization of forming processes. However, the interaction of the resulting tribological conditions with additional process oscillations and lubricants has not yet been sufficiently investigated. In the field of sheet-bulk metal forming the superimposition of oscillations is a new, highly promising approach for optimizing the forming of metallic materials. The aim of this study is therefore to investigate the forming behavior of metallic materials with an oscillation superimposition in combination with structured tool surfaces. In order to examine to what extend the friction factor and the forming force can be influenced by structured surfaces and PVD-coatings ring compression tests were conducted to re-create the real process conditions. The experiments were carried out statically and with an oscillation superimposition in the main force flow of the machine under lubrication and dry conditions. Occurring interactions between surface applications, lubrication and oscillation superimposition are identified and analyzed within the context of this work. Thereby, three different deterministic surface structures of the ring compression tools were considered. A radial and tangential arrangement of a wave-like structure as well as an isotropic honeycomb structure were applied on the forming tools by means of micromilling. For a lubricated and vibration superimposed process, especially the isotropic honeycomb structure caused a significant decrease in friction. This was attributed to the formation of lubrication pockets. Despite the reduced friction, in some cases no reduction of the forming force occurred by using an oscillation superimposed forming process. This behavior was attributed to damping effects caused by the lubricating pockets.
机译:形成具有定制表面或功能表面修改的工具,可为成型过程的适应和优化提供巨大的潜力。然而,所产生的摩擦学条件与额外的过程振荡和润滑剂的相互作用尚未得到充分研究。在形成叠加的叠片块状金属领域中,振荡叠加是一种用于优化金属材料的形成的新型,高度有前途的方法。因此,该研究的目的是研究金属材料的成形行为与结构化工具表面的组合,振荡叠加。为了检查到延伸的摩擦系数和成形力可以受到结构表面的影响,并进行PVD涂层环形压缩测试以重新产生真实的工艺条件。实验在润滑和干燥条件下静态进行,并且在机器的主力流动中进行振荡叠加。在这项工作的背景下识别和分析了表面应用,润滑和振荡叠加之间的发生的相互作用。由此,考虑了环形压缩工具的三个不同的确定性表面结构。通过微米施加在成形工具上施加波状结构的径向和切向布置以及各向同性蜂窝结构。对于润滑和振动叠加工艺,特别是各向同性蜂窝结构导致摩擦显着降低。这归因于润滑口袋的形成。尽管摩擦力降低,但在某些情况下,通过使用振荡叠加的成形过程不会发生成形力的减小。这种行为归因于润滑袋引起的阻尼效果。

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