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首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >Evaluation of the shear stresses on surface structured workpieces in dry forming using a novel pin-on-cylinder tribometer with axial feed
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Evaluation of the shear stresses on surface structured workpieces in dry forming using a novel pin-on-cylinder tribometer with axial feed

机译:用轴向进料使用新型焊盘摩擦计对干燥成型表面结构化工件的剪切应力评价

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摘要

In production engineering cold forging processes are of great importance due to the high material utilization and the associated energy and resource efficiency. In order to successfully perform cold forging processes, liquid and solid lubricants are used, which are often questionable due to ecological, economic and legislative reasons. For these reasons, dry forming exhibits an increased research potential. The absence of lubricants in dry forming significantly contributes to the waste reduction in manufacturing processes and to the goal of a lubricant-free factory. However, this goes along with the requirement that the dry tribological system has to incur the functions of absent lubricants. In this work, it is proposed to reduce friction by surface structures on workpieces. Positive effects of surface structures were already observed in dry sheet metal forming. However, sheet metal forming significantly differs from cold forging due to lower contact pressures and a lower surface expansion of the workpiece. In order to enable dry forming in cold forging for the first time, friction-optimized surface structures on workpieces are explored. Using a newly developed Pin-On-Cylinder tribometer, experiments present the influence of selected surface structures and surface layer states on the frictional shear stresses in dry contacts.
机译:在生产工程中,由于高素质利用率和相关的能源和资源效率,冷锻工艺具有重要的重要性。为了成功进行冷锻方法,使用液体和固体润滑剂,由于生态,经济和立法原因,通常是值得怀疑的。由于这些原因,干成型表现出增加的研究潜力。干燥成形中没有润滑剂显着促进制造过程的废物减少和无润滑剂工厂的目标。然而,这与干燥的摩擦学系统必须产生缺乏润滑剂的功能的要求。在这项工作中,建议通过在工件上减少摩擦摩擦。已经在干金属板形成中观察到表面结构的正效。然而,由于较低的接触压力和工件的较低表面膨胀,金属板形成显着不同于冷锻和较低的表面膨胀。为了在第一次冷锻中能够在冷锻中形成干燥,探索了工件上的摩擦优化的表面结构。使用新开发的柱塞摩特计,实验呈现所选择的表面结构和表面层状态对干触点的摩擦剪切应力的影响。

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