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Friction analysis of thermally sprayed coatings finished by ball burnishing and grinding

机译:球磨打磨完成的热喷涂涂层的摩擦分析

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摘要

Thermally sprayed coatings offer a promising approach as efficient method to increase the wear-resistance of sheet metal forming tools. However, the roughness of thermally sprayed surfaces is quite high. The use of these coatings for deep drawing tools results in poor sheet surface qualities and low drawing ratios. Because it is suspected that high friction is the reason for the low drawability, hard metal coatings (WC–12Co), deposited by high velocity oxygen fuel flame-spraying, were machined by grinding and ball burnishing to improve their friction behavior and the accuracy of the tool shape. The investigation was conducted by plane strip drawing tests. Strips of high strength steel were mated with these novel and effective coatings at different normal contact pressures and drawing velocities. Uncoated friction elements made of C60 steel were considered as reference during the analysis. The results revealed that coated but unmachined friction elements showed high friction values, which led to scratch marks on the sheet surface after drawing. Applying the finishing processes, the friction coefficient could be reduced significantly. Additionally, deep drawing tests were carried out to determine the drawing ratio for coated, unmachined as well as for processed, coated dies. Thermally sprayed and ball burnished as well as thermally sprayed and ground coatings are feasible for deep drawing. Due to the post treatment, the drawing ratio β = 1.8 was increased to 2.0. This is consistent to the results of the friction tests.
机译:热喷涂涂层作为增加钣金成形工具耐磨性的有效方法提供了一种有前途的方法。但是,热喷涂表面的粗糙度很高。将这些涂料用于深冲工具会导致薄板的表面质量较差,而拉深比也较低。由于怀疑高摩擦是导致低拉丝性的原因,因此对高速氧气燃料火焰喷涂沉积的硬质金属涂层(WC-12Co)进行了打磨和滚珠抛光加工,以改善其摩擦性能和精度。工具形状。该调查是通过平面条形图测试进行的。在不同的法向接触压力和拉拔速度下,将高强度钢带与这些新颖有效的涂层配对。在分析过程中,将C60钢制成的未涂层摩擦元件作为参考。结果表明,涂​​覆但未加工的摩擦元件显示出很高的摩擦值,从而在拉伸后在板材表面产生划痕。应用精加工过程,可以显着降低摩擦系数。另外,进行了深冲试验,以确定涂覆的,未加工的以及加工的涂覆模具的拉伸比。热喷涂和滚珠抛光以及热喷涂和地面涂层对于深拉是可行的。由于进行了后期处理,拉伸比β= 1.8增加到2.0。这与摩擦测试的结果一致。

著录项

  • 来源
    《Production Engineering》 |2013年第6期|601-610|共10页
  • 作者单位

    Institute of Forming Technology and Lightweight Construction TU Dortmund University">(1);

    Institute of Forming Technology and Lightweight Construction TU Dortmund University">(1);

    Institute of Machining Technology TU Dortmund University">(2);

    Institute of Forming Technology and Lightweight Construction TU Dortmund University">(1);

    Institute of Machining Technology TU Dortmund University">(2);

    Institute of Forming Technology and Lightweight Construction TU Dortmund University">(1);

    Institute of Forming Technology and Lightweight Construction TU Dortmund University">(1);

    Institute of Machining Technology TU Dortmund University">(2);

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hard material coating; Ball burnishing; Grinding; Friction; Strip drawing; Deep drawing tools;

    机译:硬质材料涂层;球打磨;研磨;摩擦;带状图;拉深工具;

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