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Wheel wear and workpiece surface analyses after grinding hardened steel with minimum quantity lubrication technique assisted with wheel cleaning jet (MQL-AWCJ)

机译:使用最小量的润滑技术和车轮清洁喷嘴(MQL-AWCJ)磨削淬硬钢后的车轮磨损和工件表面分析

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Minimum Quantity Lubrication (MQL) technique has been consolidated in the machining processes as an alternative to conventional technique because of its cleaner production characteristics. However, for grinding process some problems exist when using the MQL technique, such as the wheel clogging phenomenon which impairs the process efficiency. This is mainly caused by an inefficient chip removal from the cutting zone that results to the formation of sludge composed of oil and chips that clogs the pores of the wheel. An alternative to overcome this problem can be the use wheel cleaning system during grinding. In order to explore the potential of the MQL technique in grinding, this paper evaluated the wheel wear and workpiece material surface after plunge grinding a hardened steel with the MQL technique assisted with the wheel cleaning jet under various cutting conditions. Grinding tests were also performed with the traditional MQL technique and with the conventional coolant technique (flood coolant) for comparisons. The results showed that the MQL-AWCJ technique outperformed other techniques tested, thereby justifying it as a technically viable method for grinding operation.
机译:由于其更清洁的生产特性,最小加工量润滑(MQL)技术已在加工过程中得到了巩固,可以替代传统技术。但是,对于磨削工艺,使用MQL技术时会存在一些问题,例如砂轮堵塞现象会削弱工艺效率。这主要是由于无法从切削区域有效地去除木屑,导致形成由油和木屑组成的污泥,这些污泥会堵塞砂轮的孔。解决该问题的另一种方法是在研磨过程中使用砂轮清洁系统。为了探究MQL技术在磨削中的潜力,本文评估了在各种切削条件下,借助MQL技术和砂轮清洁射流对淬硬钢进行切入磨削后的砂轮磨损和工件材料表面。为了进行比较,还使用传统的MQL技术和传统的冷却剂技术(溢流冷却剂)进行了磨削测试。结果表明,MQL-AWCJ技术的性能优于其他测试技术,因此证明它是一种在磨削操作中具有技术可行性的方法。

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