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Investigations of Machining Characteristics in the Upgraded MQL-Assisted Turning of Pure Titanium Alloys Using Evolutionary Algorithms

机译:使用进化算法研究纯钛合金升级版MQL辅助车削中的加工特性

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摘要

Environmental protection is the major concern of any form of manufacturing industry today. As focus has shifted towards sustainable cooling strategies, minimum quantity lubrication (MQL) has proven its usefulness. The current survey intends to make the MQL strategy more effective while improving its performance. A Ranque–Hilsch vortex tube (RHVT) was implemented into the MQL process in order to enhance the performance of the manufacturing process. The RHVT is a device that allows for separating the hot and cold air within the compressed air flows that come tangentially into the vortex chamber through the inlet nozzles. Turning tests with a unique combination of cooling technique were performed on titanium (Grade 2), where the effectiveness of the RHVT was evaluated. The surface quality measurements, forces values, and tool wear were carefully investigated. A combination of analysis of variance (ANOVA) and evolutionary techniques (particle swarm optimization (PSO), bacteria foraging optimization (BFO), and teaching learning-based optimization (TLBO)) was brought into use in order to analyze the influence of the process parameters. In the end, an appropriate correlation between PSO, BFO, and TLBO was investigated. It was shown that RHVT improved the results by nearly 15% for all of the responses, while the TLBO technique was found to be the best optimization technique, with an average time of 1.09 s and a success rate of 90%.
机译:环境保护是当今任何形式的制造业的主要关注点。随着人们的注意力转向可持续冷却策略,最小量润滑(MQL)已证明其有用性。当前的调查旨在使MQL策略更有效,同时提高其性能。在MQL过程中实施了Ranque–Hilsch涡流管(RHVT),以增强制造过程的性能。 RHVT是一种用于将压缩空气流中的热空气和冷空气分离的装置,该压缩空气流通过入口喷嘴切向进入涡流室。在钛合金(等级2)上进行了具有独特冷却技术组合的车削测试,并评估了RHVT的有效性。仔细研究了表面质量测量,力值和工具磨损。结合使用方差分析(ANOVA)和进化技术(粒子群优化(PSO),细菌觅食优化(BFO)和基于学习的教学优化(TLBO))来分析过程的影响参数。最后,研究了PSO,BFO和TLBO之间的适当相关性。结果表明,对于所有响应,RHVT将结果提高了近15%,而TLBO技术被认为是最佳的优化技术,平均时间为1.09 s,成功率为90%。

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