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Comparative assessment of cooling conditions, including MQL technology on machining factors in an environmentally friendly approach

机译:冷却条件的比较评估,包括以环保方法加工因子的MQL技术

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摘要

Manufacturers need to continuously improve productivity and reduce the most disadvantages. In the current work, an experimental study has been carried out in order to evaluate the influence of different cutting parameters on the various machining factors such as surface roughness, cutting force, cutting power, metal removal rate, and tool wear during turning of X210Cr12 steel using a multilayer-coated tungsten carbide insert with various nose radii (r). Tests are designed according to Taguchi's L-18 (2(1) x 3(4)) orthogonal array. ANOVA has been performed to determine the effect of the cutting conditions, and mathematical models have been developed through response surface methodology (RSM). The results indicate that the feed rate and the tool nose radius are the main affecting factors on surface roughness while both tangential force and cutting power are affected mainly by the depth of cut followed by the feed rate and the nose radius. Other special tests of long term have been established in order to study the wear evolution and consequently to determine the tool life. The results indicate also that minimum quantity lubrication (MQL) leads to an important improvement in terms of the cutting tool life by a gain of 23 similar to 40% compared to wet and dry machining. It has been found that the MQL is an interesting way to minimize lubrication cost and protect operator health and the environment while keeping better machining quality.
机译:制造商需要不断提高生产率并降低最缺点。在当前的工作中,已经进行了实验研究,以评估不同切削参数对X210Cr12钢的转弯过程中的各种加工因子的影响,如表面粗糙度,切割力,切割功率,金属去除率和工具磨损使用具有各种鼻子半径(R)的多层涂覆的碳化钨插入物。根据Taguchi的L-18(2(1)x 3(4))正交阵列设计测试。已经进行了ANOVA以确定切割条件的效果,并且通过响应面方法(RSM)开发了数学模型。结果表明,进料速率和刀尖半径是表面粗糙度的主要影响因素,而切向力和切割功率主要受切割深度,然后是进料速率和鼻径的影响。已经建立了其他长期的特殊测试,以研究磨损进化,从而确定刀具寿命。结果表明,与湿式和干燥加工相比,最小量润滑(MQL)通过23的增益导致切削刀具寿命的重要改进。已经发现MQL是一种有趣的方法,可以最大限度地减少润滑成本并保护操作员健康和环境,同时保持更好的加工质量。

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