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使用回收磨料材料的水射流切割工具钢的效率

Efficiency of Tool Steel Cutting by Water Jet with Recycled Abrasive Materials.

作者信息

Perec Andrzej, Radomska-Zalas Aleksandra, Fajdek-Bieda Anna, Kawecka Elzbieta

机构信息

Faculty of Technology, Jacob of Paradies University, 66-400 Gorzów Wielkopolski, Poland.

出版信息

Materials (Basel). 2022 Jun 2;15(11):3978. doi: 10.3390/ma15113978.

Abstract

High-pressure water jet machining is characterized by wide possibilities of cutting diverse materials together with multi-layer materials with dissimilar properties, accurate cutting complex profiles, as well as conducting them in uncommon conditions, especially in cases of thick materials. An additional advantage of water jet technology is its environmental friendliness. This paper presents tests of the cutting performance of tool steel with the use of an abrasive water jet (AWJ). The state-of-the-art has shown insufficient scientific evidence in AWJ tool steels cutting using recycled abrasive materials. Therefore, the main motivation for this paper was to carry out research from an environment aspect. The reuse of abrasives and the use of recycled materials have immense potential to reduce processing costs while remaining environmentally friendly. The RSM method was used for modeling and optimization. A response surface design (RSM) is a package of an advanced design-of-experiment (DOE) approaches that support better understanding and optimize response, exploring the relationships between several explanatory variables and one or more response variables. Based on this research, feed rate is the key factor influencing the depth of cut, while the water nozzle diameter has a secondary effect, and the concentration of abrasive has the least influence on the depth of cut. High level of variance (the percentage of variability in the reaction that is interpreted by the formula) confirms that the models fit well to the investigational data.

摘要

高压水射流加工的特点是能够切割各种材料以及具有不同特性的多层材料,切割复杂轮廓精确,并且能够在特殊条件下进行切割,尤其是对于厚材料。水射流技术的另一个优点是其环保性。本文介绍了使用磨料水射流(AWJ)切割工具钢的性能测试。目前的技术水平表明,在使用回收磨料材料进行AWJ切割工具钢方面,科学证据不足。因此,本文的主要动机是从环境角度进行研究。磨料的再利用和回收材料的使用在降低加工成本的同时保持环境友好方面具有巨大潜力。采用响应曲面法(RSM)进行建模和优化。响应曲面设计(RSM)是一套先进的实验设计(DOE)方法,有助于更好地理解和优化响应,探索几个解释变量与一个或多个响应变量之间的关系。基于这项研究,进给速度是影响切削深度的关键因素,而水喷嘴直径的影响次之,磨料浓度对切削深度的影响最小。高方差水平(由公式解释的反应变异性百分比)证实模型与研究数据拟合良好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aed9/9182330/0f5afd2d9e9f/materials-15-03978-g001.jpg

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