基于模糊MCDM技术的双相aln涂层MDC-K工具钢磨损参数优化

Sunil Kumar, S. Maity, Lokeswar Patnaik
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引用次数: 11

摘要

本工作评估了不同摩擦学工艺参数对双相TiAlN涂层MDC-K工具钢材料硬度、摩擦系数、表面粗糙度、磨损质量损失和磨损深度等测量响应的影响。考虑的摩擦学过程参数包括载荷、滑动速度和滑动距离。采用了27次实验运行的全因子设计,并基于响应值,随后确定了摩擦学过程参数的最佳组合。不同的多目标优化技术,综合评价准则和基于模糊的多准则决策方法(基于与平均解的距离的模糊评价、通过与理想解的相似性确定偏好顺序的模糊技术和模糊复比例评估)被用于识别所考虑的摩擦学过程参数的最佳组合。对反应权重的变化进行敏感性分析,以验证得出的试验排名,而方差分析结果显示,最重要的参数正在影响反应。除此之外,还使用所提出的方法解决了与磨损参数优化有关的两个不同的已发表问题,以检查其性能
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Optimization of Wear Parameters for Duplex-TiAlN Coated MDC-K Tool Steel Using Fuzzy MCDM Techniques
: The present work evaluates the effects of different tribological process parameters on the measured responses such as hardness, coefficient of friction, surface roughness, wear mass loss and wear depth of duplex-TiAlN coated MDC-K tool steel material. The considered tribological process parameters are load, sliding velocity, and sliding distance. A full factorial design with 27 experimental runs is employed and based on the response values, an optimal combination of the tribological process parameters is subsequently determined. Different multi-objective optimization techniques, like overall evaluation criteria and fuzzy-based multi-criteria decision-making methods (fuzzy evaluation based on distance from the average solution, fuzzy technique for order of preference by similarity to ideal solution, and fuzzy complex proportional assessment) are utilized to identify the optimal intermixes of the considered tribological process parameters. Sensitivity analysis with respect to changing weights of the responses is performed to validate the derived rankings of the trials, whereas the results of analysis of variance revealed the most significant parameters were influencing the responses. In addition to this, two different published problems related to optimization of wear parameters were solved using the proposed method to check its capability
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来源期刊
CiteScore
7.90
自引率
0.00%
发文量
25
审稿时长
15 weeks
期刊最新文献
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