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Selected Properties of the Surface Layer of C45 Steel Parts Subjected to Laser Cutting and Ball Burnishing

机译:激光切割和球抛光的C45钢部件表面层的选择性能

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摘要

In this article, we report the results of experimental studies on the impact of ball burnishing parameters on the roughness, microstructure and microhardness of the surface layer of laser-cut C45 steel parts. We also analysed the distribution of residual stresses generated in the surface layer of these parts. Laser-cut parts often require finishing to improve the quality of their surface. The tests performed in this study were aimed at assessing whether ball burnishing could be used as a finishing operation for parts of this type. Ball burnishing tests were performed on an FV-580a vertical machining centre using a mechanically controlled burnishing tool. The following parameters were varied during the ball burnishing tests: burnishing force , path interval and the diameter of the burnishing ball . Ball burnishing of laser-cut C45 steel parts reduced the surface roughness parameters and by up to 60% in relation to the values obtained after laser cutting. Finish machining also led to the reorganization of the geometric structure of the surface, resulting in an increase in the absolute value of skewness . This was accompanied by an increment in microhardness (maximum microhardness increment was Δ = 95 HV0.05, and the thickness of the hardened layer was = 40 µm) and formation of compressive residual stresses in the surface layer.
机译:在本文中,我们报告了对滚珠抛光参数对激光切割C45钢部件表面层的粗糙度,微观结构和显微硬度的实验研究结果。我们还分析了这些部件的表面层中产生的残余应力的分布。激光切割部件通常需要完成以提高其表面的质量。本研究中进行的测试旨在评估球抛光是否可以用作这种类型的部分的整理操作。使用机械控制的抛光工具对FV-580A垂直加工中心进行球抛光测试。在球抛光测试期间,以下参数变化:抛光力,路径间隔和抛光球的直径。 BALL抛光的激光切割C45钢部件减少了表面粗糙度参数,相对于激光切割后获得的值,最高可达60%。完成加工也导致了表面的几何结构的重组,导致偏振的绝对值增加。这伴随着显微硬度的增量(最大微硬度增量是δ= 95hv0.05,并且硬化层的厚度=40μm)并在表面层中形成压缩残余应力。

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