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Grinding behavior of austempered ductile iron: a study about the effect of pure and diluted MQL technique applying different friability wheels

机译:奥斯特型韧性铸铁的研磨行为:纯净稀释MQL技术应用不同脆性轮的研究

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摘要

Abrasion machining has stood out in the current industry due to constant improvements in the dimensional accuracy of a workpiece in its finishing process. Thus, it is necessary to use cutting fluid to cool and lubricate the workpiece-wheel contact, to reduce both the high temperatures reached and the friction. However, conventional cutting fluid is harmful to the environment and poses a risk to the operator's health. As a result, the minimum lubricant quantity (MQL) technique emerged, using extremely smaller amounts of fluid and, however, showing excellent results in its applications. In this way, it could further optimize this method through studies on oil dilution, combating low cooling capacity. A fundamental concept for selecting the grinding wheel type to be used in grinding is friability, but there are few studies on its influence on the process. For these reasons, this research analyzed the impact of friability and the effects of MQL dilution on the grinding of austempered ductile iron, the use of two CBN wheels with high and low friability, and four types of lubri-refrigerant methods: flood, pure MQL, and diluted MQL in the oil-water ratio 1:5 and 1:10. Output parameters were analyzed: surface roughness (Ra), roundness error, diametrical wheel wear, cutting power, acoustic emission, viscosity, 3D confocal, and microhardness. The results show an improvement of the diluted MQL over the pure, coming close to the conventional method. Besides, the low friability wheel was more efficient in the analysis of surface roughness, roundness error, and diametrical wheel wear. However, most friable stood out in the results of acoustic emission and grinding power.
机译:由于在其整理过程中工件的尺寸精度恒定地改善,磨损加工在当前的行业中突出。因此,必须使用切削液冷却并润滑工件 - 车轮接触,以减少达到的高温和摩擦。然而,传统的切削液对环境有害,并对操作员的健康构成风险。结果,使用极小较少量的流体出现的最小润滑剂量(MQL)技术,并且在其应用中显示出优异的结果。通过这种方式,通过对油稀释的研究,可以进一步优化这种方法,使低冷却能力进行降低。用于选择用于研磨的磨轮类型的基本概念是脆弱性,但仍有关于其对该过程的影响。出于这些原因,本研究分析了脆性的影响和MQL稀释对锻造型延展铁的磨削的影响,使用两种CBN轮子的高低脆性,以及四种类型的润滑油制冷剂方法:泛滥,纯MQL ,并在油水比1:5和1:10中稀释MQL。分析输出参数:表面粗糙度(RA),圆度误差,直径轮磨损,切割电源,声发射,粘度,3D共焦和微硬度。结果表明,在纯的纯度下稀释的MQL改善,接近常规方法。此外,在表面粗糙度,圆度误差和直径轮磨损的分析中,低底轮更有效。然而,最易碎的声发射和磨削功率的结果。

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