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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Comparison between different test methods for evaluation of galling properties of surface engineered tool surfaces
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Comparison between different test methods for evaluation of galling properties of surface engineered tool surfaces

机译:评估表面工程工具表面的磨损性能的不同测试方法之间的比较

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摘要

In forming operations, galling is a tribological process associated with pick-up of formed material by the surface of the tool and subsequent damage of the work material surface. In lubricated operations, it is associated to lubricant film breakdown. Currently the main focus in development of forming tools is on improving their galling resistance, mainly by including new forming tool steels, improving surface finish, and applying surface treatments and coatings. However, in order to qualitatively rank the galling resistance of material couples, a proper test method for galling evaluation is needed. During the years several methods for determining the galling resistance have been reported in the literature. In the present investigation three different test methods were compared and evaluated as to their ability to assess the galling tendencies of coated and un-coated forming tool steel. The study included the pin-on-disc configuration, a modified cylinder-on-cylinder test with a spring loading system, and a new load-scanning test method, which involves two crossed cylinders. It was proved that the load-scanning test rig is both a very simple and the most suitable method to evaluate galling properties of tool steels. It gives the capability to compare different tool steels, tool surface finishes and treatments, and hard coatings in terms of friction level, amount of material transfer, and critical load for galling initiation.
机译:在成型操作中,磨损是一种摩擦过程,与工具表面拾取成型材料以及随后损坏工作材料表面有关。在润滑操作中,它与润滑膜破裂有关。当前,开发成型工具的主要重点是提高其耐磨损性,主要是通过加入新的成型工具钢,改善表面光洁度以及进行表面处理和涂层来实现。但是,为了定性地对材料对的抗磨损性进行排名,需要一种合适的测试方法来评估抗磨损性。多年来,文献中已经报道了几种用于确定耐磨损性的方法。在本研究中,对三种不同的测试方法进行了比较和评估,以评估它们评估涂层和未涂层​​成型工具钢的磨损趋势的能力。这项研究包括针盘式配置,带有弹簧加载系统的改进的气缸对气缸测试以及新的负载扫描测试方法,其中涉及两个交叉的气缸。事实证明,载荷扫描试验台是评估工具钢磨损性能的一种非常简单且最合适的方法。它可以比较不同的工具钢,工具的表面光洁度和处理方式以及硬质涂层的摩擦水平,材料转移量和产生磨损的临界载荷。

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