Dzionk Stefan, Dobrzynski Michal, Ścibiorski Bogdan
Institute of Production Engineering and Materials, Faculty of Mechanical Engineering and Ship Technology, Gdansk University of Technology, 80-233 Gdansk, Poland.
Materials (Basel). 2021 Mar 16;14(6):1441. doi: 10.3390/ma14061441.
During the low plasticity burnishing process of soft materials such as carbon steel with a hardness of up to 40 HRC (Rockwell grade) a raised structure of the material known as the Jumping Wave forms in front of the tool roll. This phenomenon significantly disturbs the burnishing process, but is very poorly described in the literature. This article presents studies of this phenomenon on the example of burnished 1.0562 steel. The research concerns the changes in the surface structure of the processed material as well as changes in the structure of the material during this process. The research shows changes in the geometric structure of the surface made in the 3D system and their parametric description. Moreover, the work presents an analysis of the metallographic structure in the tool zone. The research showed occurrence of material slippages in the wave in front of the tool, which creates an additional structure on the surface. These tests make it possible to better understand the process of changes that take place in the surface layer of the processed element in the low plasticity burnishing process.
在对硬度高达40 HRC(洛氏硬度等级)的碳钢等软材料进行低塑性滚光处理的过程中,在工具辊前方会形成一种被称为“跳跃波”的材料凸起结构。这种现象严重干扰了滚光过程,但在文献中对此的描述非常少。本文以1.0562钢的滚光为例,对这一现象进行了研究。研究涉及加工材料表面结构的变化以及在此过程中材料结构的变化。研究展示了在三维系统中加工表面的几何结构变化及其参数描述。此外,该工作还对工具区域的金相结构进行了分析。研究表明,在工具前方的波中出现了材料滑动,这在表面上形成了额外的结构。这些测试有助于更好地理解在低塑性滚光过程中加工元件表面层发生的变化过程。