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热喷涂镍基自熔合金涂层研究中的建模与优化:综述

Modeling and Optimization in Investigating Thermally Sprayed Ni-Based Self-Fluxing Alloy Coatings: A Review.

作者信息

Simunovic Katica, Havrlisan Sara, Saric Tomislav, Vukelic Djordje

机构信息

Mechanical Engineering Faculty in Slavonski Brod, University of Slavonski Brod, 35000 Slavonski Brod, Croatia.

Faculty of Technical Sciences, University of Novi Sad, 21000 Novi Sad, Serbia.

出版信息

Materials (Basel). 2020 Oct 15;13(20):4584. doi: 10.3390/ma13204584.

Abstract

In investigating thermally sprayed Ni-based self-fluxing alloy coatings, widely applied under conditions of wear, corrosion, and high temperatures, designed experiments and statistical methods as a basis for modeling and optimization have become an important tool in making valid and comparable conclusions. Therefore, this paper gives an overview of investigating Ni-based self-fluxing alloy coatings deposited by thermal spraying by the use of designed experiments and statistical methods. The investigation includes the period of the last two decades and covers the treatments of flame spraying, high-velocity oxy/air fuel spraying, plasma spraying, plasma-transferred arc welding, and laser cladding. The main aim was to separate input variables, as well as measured responses, and to point out the importance of correct application of statistical design of experiment. After the review of the papers, it was concluded that investigators have used the process knowledge to analyze and interpret the results of the statistical analysis of experimental data, which is in fact the best way of using the design of experiment in every research. Nevertheless, more attention should be given to correct planning and conducting the experiments to derive the models suitable for the prediction of measured response and which could be an appropriate input for single- or multi-objective optimization.

摘要

在研究广泛应用于磨损、腐蚀和高温条件下的热喷涂镍基自熔合金涂层时,设计实验和统计方法作为建模与优化的基础,已成为得出有效且可比结论的重要工具。因此,本文概述了运用设计实验和统计方法对热喷涂镍基自熔合金涂层进行的研究。该研究涵盖过去二十年,涉及火焰喷涂、高速氧/空气燃料喷涂、等离子喷涂、等离子转移弧焊和激光熔覆等处理工艺。主要目的是区分输入变量和测量响应,并指出正确应用实验统计设计的重要性。在对相关论文进行综述后得出结论,研究者利用工艺知识来分析和解释实验数据的统计分析结果,这实际上是在每项研究中运用实验设计的最佳方式。然而,应更加重视正确规划和开展实验,以得出适用于预测测量响应的模型,这些模型可作为单目标或多目标优化的合适输入。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccb3/7602437/9e9c64e391b0/materials-13-04584-g001.jpg

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