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Machining performance evaluation of Ti6A14V alloy with laser textured tools under MQL and nano-MQL environments

机译:在MQL和纳米MQL环境下使用激光纹理化工具评估Ti6A14V合金的加工性能

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摘要

The study aims to conduct experimental investigations towards an integrated coolant and cutting tool based strategies for sustainable machining of Ti6Al4V alloy. Laser textured cutting tools were used under vegetable oil based MQL, and alumina suspended DI water based nMQL environments. The results were compared with plain and textured tools under dry condition with the same machining parameters. A detailed experimental plan was executed to conduct the series of experiments considering machining parameters, texture parameters and machining environment collectively. The MQL and nMQL parameters were selected based on spreadability of droplets at varying air pressure and flow rate. The results have shown a reduction in cutting forces, apparent friction coefficient, contact length, tool wear and chip adhesion over the rake face with textured tools under MQL environment. Nano fluid based cooling has a limited advantage over the range of cutting speeds and feeds as alumina nanoparticles get accumulated in the textured space. Reduced curling radius is obtained with textured tools due to the intense heat generated and associated interface multipoint micro-cutting (IMP-mu C) mechanism.
机译:这项研究旨在对Ti6Al4V合金可持续加工的基于冷却液和切削刀具的综合策略进行实验研究。激光纹理切割工具用于植物油基MQL和氧化铝悬浮DI水基nMQL环境。将结果与在相同加工参数下干燥条件下的普通工具和纹理工具进行了比较。执行了详细的实验计划,以综合考虑加工参数,织构参数和加工环境进行一系列实验。 MQL和nMQL参数是基于在变化的气压和流速下液滴的扩散性来选择的。结果表明,在MQL环境下,具有纹理化工具的前刀面的切削力,表观摩擦系数,接触长度,工具磨损和切屑附着力均降低。基于纳米流体的冷却在切割速度和进料范围内具有有限的优势,因为氧化铝纳米颗粒会积聚在纹理空间中。由于产生的大量热量以及相​​关联的界面多点微切割(IMP-μC)机制,使用纹理工具可以减小卷曲半径。

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