Krenicky Tibor, Olejarova Stefania, Servatka Milos
Department of Technical Systems Design and Monitoring, Faculty of Manufacturing Technologies with a Seat in Presov, Technical University of Kosice, Sturova 31, 08001 Presov, Slovakia.
IMSLOV, P. Horova 19, 08001 Presov, Slovakia.
Materials (Basel). 2022 Feb 13;15(4):1381. doi: 10.3390/ma15041381.
This article deals with the evaluation of selected aspects of abrasive water jet technology (AWJ) in the cutting of abrasion-resistant steel (HARDOX 500) with a thickness of 40 mm. The high abrasion resistance as a typical significant property of this steel ranks it among the special materials that are increasingly used. As the AWJ is a multiparametric technology, selected levels of feed rate, abrasive mass flow and pump working pressure were used in the experiments from the spectrum of technological parameters. For the purposes of evaluation, the examined cut surfaces were documented by a modified photographic method of displaying the cut surface by means of side lighting on the untreated cutting surface. The experimental part evaluates the dependences of selected cutting surface quality parameters (surface roughness and abrasive water jet deflection) on selected important technological parameters of the production system with AWJ technology (abrasive mass flow, technological head feed rate and pump working pressure). Based on the evaluation of the experiments, regression models were created to interpolate and extrapolate data to compare or supplement existing solutions in the field of research and as a basis for optimizing operating costs and increasing the efficiency of production systems with abrasive water jet technology.
本文探讨了在切割厚度为40毫米的耐磨钢(HARDOX 500)时,对磨料水射流技术(AWJ)某些选定方面的评估。这种钢具有高耐磨性,这一典型的显著特性使其跻身于越来越常用的特殊材料之列。由于AWJ是一种多参数技术,在实验中从工艺参数范围内选择了进给速度、磨料质量流量和泵工作压力等水平。为了进行评估,通过一种改进的摄影方法对检查的切割表面进行记录,该方法是通过在未处理的切割表面上进行侧光照明来展示切割表面。实验部分评估了选定的切割表面质量参数(表面粗糙度和磨料水射流偏斜)与采用AWJ技术的生产系统的选定重要工艺参数(磨料质量流量、工艺头进给速度和泵工作压力)之间的相关性。基于对实验的评估,创建了回归模型,以对数据进行插值和外推,从而比较或补充该研究领域现有的解决方案,并作为优化运营成本和提高磨料水射流技术生产系统效率的基础。