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首页> 外文期刊>Journal of Manufacturing Processes >Design and evaluation of an embedded double jet nozzle for MQL delivery intending machinability improvement in turning operation
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Design and evaluation of an embedded double jet nozzle for MQL delivery intending machinability improvement in turning operation

机译:用于MQL递送的嵌入式双喷嘴的设计与评估,打算改善转动操作

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摘要

Minimum quantity lubrication (MQL) is a promising solution as an alternative to conventional flood cooling and dry machining. It is a bridging technology between the dry and conventional flood cooling. In this work, an embedded double jet nozzle has been designed and developed for enhancing the effectiveness of MQL. Grey based Taguchi multi-response optimization was applied to find out the MQL parameters (i.e. nozzle size, nozzle angle, air pressure and oil flow rate) for reducing cutting temperature, surface roughness, chip reduction coefficient and main cutting force. Consequently, the MQL and nozzle parameters were ranked. In this regard, Taguchi's orthogonal array (L18) was used for experimental design. GRA (Grey relational analysis) was employed to convert the multiple objectives (responses) into a single objective and finally, Taguchi's S/N ratios were used for optimization. The analysis results demonstrated that the most influential factor for an optimum response was nozzle diameter followed by air pressure, secondary nozzle angle, oil flow rate and primary nozzle angle and their optimum values are 1 mm, 19 bar, 15 degrees, 80 ml/h and 20 degrees respectively. A confirmation test was conducted to verify the feasibility of using a grey-based Taguchi optimization method. In the final part of this work, the performance of double jet MQL micro nozzle was compared against dry machining and single jet MQL machining and found most effective among three machining condition regarding cutting temperature, surface roughness, chip reduction coefficient, main cutting force and tool wears in turning medium carbon steel by coated carbide insert. A supplementary benefit of this simple embedded double jet nozzle is set up time minimization and consistent cooling without extra supervision.
机译:最小数量润滑(MQL)是一种有希望的解决方案,作为传统的泛洪和干加工的替代方案。它是干燥和常规洪水冷却之间的桥接技术。在这项工作中,设计并开发了一种嵌入式双喷嘴,用于提高MQL的有效性。基于灰色的Taguchi多响应优化,用于找出MQL参数(即喷嘴尺寸,喷嘴角度,空气压力和油流量),用于降低切削温度,表面粗糙度,芯片减少系数和主切割力。因此,排名MQL和喷嘴参数。在这方面,Taguchi的正交阵列(L18)用于实验设计。使用GRA(灰色关系分析)将多个物镜(反应)转化为单个目标,最后,Taguchi的S / N比率用于优化。分析结果表明,最佳响应的最具影响力的因素是喷嘴直径,然后是空气压力,二次喷嘴角度,油流量和初级喷嘴角度,其最佳值为1mm,19巴,15度,80毫升/小时分别为20度。进行了确认测试以验证使用基于灰色的Taguchi优化方法的可行性。在这项工作的最后一部分中,将双喷射MQL微喷嘴的性能与干燥加工和单喷射MQL加工进行比较,并在切割温度,表面粗糙度,芯片减少系数,主切割力和工具的三种加工条件下发现最有效通过涂层硬质合金插入磨损中碳钢。这种简单的嵌入式双喷嘴的补充益处是设置时间最小化和一致的冷却而无需额外的监督。

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