Eco-friendly machining of advanced ceramics: wheel cleaning jet for greenhouse gas reduction

IF 2.9 3区 工程技术 Q2 AUTOMATION & CONTROL SYSTEMS International Journal of Advanced Manufacturing Technology Pub Date : 2024-03-15 DOI:10.1007/s00170-024-13433-x
Douglas Lyra de Moraes, Andrigo Elisiario da Silva, Lucas Marcel Aparecido Costa Pilati, Anthony Gaspar Talon, Fernando Sabino Fonteque Ribeiro, Luiz Eduardo de Angelo Sanchez, Eduardo Carlos Bianchi, José Claudio Lopes
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Abstract

The constant development of new materials, such as ceramics with high wear resistance, makes it necessary to adapt machining processes by creating new methods or improving existing ones. Moreover, grinding is widely used as a finishing process in workpieces since it provides excellent surface roughness and dimensional tolerances. Due to the high volume of cutting fluid used in conventional lubrication (flood), associated with harmful effects such as contamination and intoxication, alternative methods have become highly necessary. The minimum quantity lubrication (MQL) technique reduces fluid use but has low cooling capacity, in addition to barely removing chips, making it essential to seek improvements to make it competitive. In this sense, adding water to the MQL can improve the cooling capacity at the cost of reducing lubrication. At the same time, applying a wheel cleaning jet (WCJ) of compressed air assists in chip removal. Thus, this work aims to analyze the results of external cylindrical grinding of alumina (Al2O3) using a synthetic diamond grinding wheel, comparing the techniques of conventional MQL, diluted MQL, and MQL + WCJ against the flood method. Surface roughness, roundness deviation, diametrical wheel wear, G ratio, grinding power, tangential cutting force, grinding cost analyses, and CO2 pollution emission were conducted for this. The results show that adding water to MQL, associated with WCJ, significantly improved roughness, wear, and grinding power. Furthermore, the analysis of costs and pollution showed that using MQL significantly reduced costs and CO2 emissions, proving the socio-environmental advantage of the MQL method against the flood method.

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先进陶瓷的环保型加工:减少温室气体的砂轮清洁喷射器
随着新材料(如高耐磨性陶瓷)的不断发展,有必要通过创造新方法或改进现有方法来调整加工工艺。此外,磨削还被广泛用作工件的精加工工艺,因为它能提供出色的表面粗糙度和尺寸公差。由于传统润滑(浸入式)中使用的切削液量大,而且会产生污染和中毒等有害影响,因此非常有必要采用替代方法。最小量润滑(MQL)技术可减少液体用量,但冷却能力低,而且几乎无法清除切屑,因此必须寻求改进,使其具有竞争力。从这个意义上说,在 MQL 中加水可以提高冷却能力,但代价是减少润滑。同时,使用压缩空气的砂轮清洁喷射器(WCJ)也有助于排屑。因此,这项工作旨在分析使用人造金刚石砂轮对氧化铝(Al2O3)进行外圆磨削的结果,并将传统 MQL、稀释 MQL 和 MQL + WCJ 技术与水浸法进行比较。为此进行了表面粗糙度、圆度偏差、直径砂轮磨损、G 比、磨削功率、切向切削力、磨削成本分析和二氧化碳污染排放分析。结果表明,在与 WCJ 相关联的 MQL 中加水,可显著改善粗糙度、磨损和磨削功率。此外,成本和污染分析表明,使用 MQL 可显著降低成本和二氧化碳排放量,证明了 MQL 方法相对于水淹法的社会环境优势。
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来源期刊
CiteScore
5.70
自引率
17.60%
发文量
2008
审稿时长
62 days
期刊介绍: The International Journal of Advanced Manufacturing Technology bridges the gap between pure research journals and the more practical publications on advanced manufacturing and systems. It therefore provides an outstanding forum for papers covering applications-based research topics relevant to manufacturing processes, machines and process integration.
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