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Structural Changes of Surface Layers of HardTurned Parts by Wiper and Conventional Geometry

机译:刮削和常规几何形状的淬硬零件表面层的结构变化

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Aims: The aim of this paper is to achieve information about surface and sub-surface layers after hard turning by mixed ceramic tool with different geometry – Wiper and conventional and to compare achieved results to find out advantages of its use. Second aim is to obtain graphs of the influence of the tool wear on the surface structural changes.Study Design: The experiment on hard turning was carried out with differently shaped mixed ceramic tools.Place and Duration of Study: Slovak University of Technology in Bratislava, Faculty of Materials Science and Technology, Institute of Production Technologies and Institute of Materials Science, between November 2013 and May 2014.Methodology: In the case of cutting tool wear and structural changes measurement this experiment was carried out on two different workpiece sizes – 1. 125 mm long cylinder to achieve cutting tool wear, 2. 10 mm long rings for structural changes. Microscopy for cutting tool wear measurement and X – ray diffraction for structural changes measurement was used. Cutting tool wear was represented by VB parameter and structural changes were represented by structural phase content, crystallites and lattice.Results: Information about structural phase contents was achieved. There are some differences between surface and sub-surface layers after hard turning by mixed ceramic tool. Surface layer consists of more austenite phase than sub-surface layers. But there were not very big differences between used cutting tool geometry and its influence on the cutting tool wear. Both geometries were used more than 40 minutes till the flank wear parameter VB reached to 0.25 mm. The thickness of the surface heat influenced layer depends on the cutting tool wear and it is influenced by the cutting tool geometry – application of the Wiper geometry leads to thinner “white layer”.Conclusion: It is very important to take into consideration cutting tool geometry when dealing with surface integrity after hard turning. But all achieved results depend on the used cutting parameters, cutting tool material, workpiece material, cutting force components, machine stiffness in specific experiments.
机译:目的:本文的目的是通过使用具有不同几何形状的混合陶瓷工具(刮水器和常规刮刀)在硬车削后获得有关表面和次表面层的信息,并比较所获得的结果以发现其使用的优势。第二个目的是获得工具磨损对表面结构变化的影响的图表。研究设计:使用不同形状的混合陶瓷工具进行硬车削实验。研究的地点和时间:斯洛伐克工业大学,布拉迪斯拉发,生产技术研究所和材料科学研究所材料科学与技术学院,于2013年11月至2014年5月之间。 125毫米长的气缸可实现切削工具的磨损; 2。10毫米长的环用于结构变化。显微镜用于切削刀具的磨损测量,而X射线衍射用于结构变化的测量。切削刀具的磨损用VB参数表示,结构变化用结构相含量,微晶和晶格表示。结果:获得了有关结构相含量的信息。使用混合陶瓷工具进行硬车削后,表面层和次表面层之间存在一些差异。表层比下表层包含更多的奥氏体相。但是,二手切削刀具的几何形状及其对切削刀具磨损的影响之间并没有很大的区别。使用这两种几何形状都超过40分钟,直到侧面磨损参数VB达到0.25 mm。表面热影响层的厚度取决于切削工具的磨损,并且受切削工具的几何形状影响–刮水器几何形状的应用会导致更薄的“白层”。结论:考虑切削工具的几何形状非常重要硬车削后处理表面完整性时。但是,所有获得的结果取决于特定实验中使用的切削参数,切削工具材料,工件材料,切削力分量,机器刚度。

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