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使用选定多准则方法进行磨料水射流切割钛合金的实验研究

Experimental Research on the Use of a Selected Multi-Criteria Method for the Cutting of Titanium Alloy with an Abrasive Water Jet.

作者信息

Radomska-Zalas Aleksandra

机构信息

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

出版信息

Materials (Basel). 2023 Aug 1;16(15):5405. doi: 10.3390/ma16155405.

Abstract

The use of selected multi-criteria decision methods for the optimization of cutting processes by abrasive water jet methods is increasingly being used in industrial processes. This is due to the complexity of the processes and the need to reduce operating costs. Process optimization methods are available to support organizational processes including the design phase, quality assurance, production automation, and many more. This article presents the current state of research on the water-abrasive cutting process and the use of multi-criteria methods in optimizing this process. This article presents a detailed methodological study of the VIKOR approach to optimization, indicating the applicability conditions, assumptions, and limitations on the example of high-pressure abrasive water jet cutting of elements made of titanium alloy utilizing HPX garnet abrasive. As a result of the research conducted, the best input parameters of the cutting process for abrasive flow rate, pressure, and the traverse speed of the cutting process were determined. The achieved result is consistent with the assumption that the most favorable output parameters are the highest cutting depth and the lowest level of roughness.

摘要

在工业生产过程中,越来越多地采用选定的多准则决策方法来优化磨料水射流切割工艺。这是由于工艺的复杂性以及降低运营成本的需求。有多种工艺优化方法可用于支持包括设计阶段、质量保证、生产自动化等在内的组织流程。本文介绍了水磨切割工艺的研究现状以及多准则方法在该工艺优化中的应用。本文对用于优化的VIKOR方法进行了详细的方法学研究,以利用HPX石榴石磨料进行钛合金元件高压磨料水射流切割为例,说明了其适用条件、假设和局限性。通过所进行的研究,确定了切割工艺中磨料流量、压力和切割过程横向速度的最佳输入参数。所取得的结果与最有利的输出参数是最高切割深度和最低粗糙度水平这一假设相一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d74b/10420179/ec8483c07e03/materials-16-05405-g001.jpg

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