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Fuzzy logic-based approach to investigate the novel uses of nano suspended lubrication in precise machining of aerospace AL tempered grade 6061

机译:基于模糊逻辑的方法研究纳米悬浮润滑在航空航天AL回火级6061精密加工中的新颖用途

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摘要

Temper-grade aluminum alloy Al-6061-T6 is commonly used for many engineering purposes owing to its superior mechanical properties. Due to the practical importance, machining Al-6061-T6 alloy is crucial for different applications. The development of computer numerical control (CNC) of milling machines is in progress by researchers worldwide for its noteworthy advantages. The quality of machining determines the product's appearance, function and reliability. Appropriate lubrication at the machining zone improves the tribological characteristic of Al-6061-T6 alloy, leading to higher product quality. For reasons of ambiguity during machining, the soft computing technique is chosen to predict the output. In this particular research scope, a new fuzzy logic-based approach is adopted to determine the machining performance while milling Al-6061-T6 alloy using SiO2 nanoparticles added to the lubricant. The effects of nanoparticle concentration, nozzle angle and air pressure are investigated to determine the optimum machining conditions, such as lowest cutting force, cutting temperature and surface roughness. Four membership functions are designated to connect with each input. The predicted results are computed by fuzzy logic and compared with the experimental results. The proposed fuzzy model exhibits high degree of reliability according to the experimental results. The computed results showed 96.195, 98.27 and 91.37 accuracy with experimental results for cutting force, cutting temperature and surface roughness. (C) 2014 Elsevier Ltd. All rights reserved.
机译:回火级铝合金Al-6061-T6由于其优越的机械性能而通常用于许多工程目的。由于实际的重要性,加工Al-6061-T6合金对于不同的应用至关重要。铣削机的计算机数控技术(CNC)的发展由于其引人注目的优势而受到全世界研究人员的关注。加工质量决定产品的外观,功能和可靠性。在加工区适当润滑可改善Al-6061-T6合金的摩擦学特性,从而提高产品质量。由于加工过程中的歧义,选择了软计算技术来预测输出。在这个特殊的研究范围内,采用了一种新的基于模糊逻辑的方法来确定在使用润滑剂中添加SiO2纳米颗粒铣削Al-6061-T6合金时的加工性能。研究了纳米颗粒浓度,喷嘴角度和气压的影响,以确定最佳加工条件,例如最低切削力,切削温度和表面粗糙度。指定了四个隶属函数以与每个输入连接。预测结果通过模糊逻辑计算并与实验结果进行比较。实验结果表明,所提出的模糊模型具有较高的可靠性。计算结果显示出96.195、98.27和91.37的精度,以及切削力,切削温度和表面粗糙度的实验结果。 (C)2014 Elsevier Ltd.保留所有权利。

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