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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Assessment of the effect of borax and boric acid additives in cutting fluids on milling of AISI O2 using MQL system
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Assessment of the effect of borax and boric acid additives in cutting fluids on milling of AISI O2 using MQL system

机译:使用MQL系统对硼砂和硼酸添加剂在切割流体中的影响评估

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摘要

The present study assesses the effects of eco-friendly cutting fluids prepared on cutting performance and tool wear in hard milling of AISI O2 cold work tool steel applying the minimum quantity lubrication (MQL) technique for sustainable manufacturing. Boron compounds such as boric acid (BA) (5% wt.) and borax (BX) (5% wt.) as additives were added to ethylene glycol (EG) of base fluid. For the purpose of comparison, commercial boron oil was utilized in addition to the dry machining as a benchmark using MQL method. The lowest surface roughness value (0.411 mu m) was reached in the cutting fluid containing BA. Compared with the dry condition, the surface roughness value was determined to be improved as 52 and 38% in cutting fluids containing BA and BX, respectively. The highest tool life was measured as a cutting length of 3.15 m in the cutting fluid containing BX. According to the experimental results, a raise of tool life occurred in cutting fluids prepared using both BA and BX. Compared with dry condition, tool life was increased by 110% with cutting fluid prepared by BA and by 50% by cutting fluid prepared by BX. The cutting forces decreased with cutting fluids containing both boron compounds. After milling process, the wear type and mechanism of the cutting tool were analyzed by scanning electron microscopy (SEM) aided with energy dispersive spectroscopy (EDS). Furthermore, it has been found that the diffusion and abrasion are dominant wear mechanisms on cutting tools, all the cutting fluids studied. Consequently, the promising results were obtained by adding boron compounds, which are harmless and non-toxic to human and environmental health, to cutting fluid-based EG for improving machinability of AISI O2 cold work tool steel.
机译:本研究评估了在AISI O2冷轧工具钢的硬铣削中对切割性能和工具磨损的生态友好切削液的影响应用于可持续制造的最小量润滑(MQL)技术。将硼化合物如硼酸(Ba)(5%wt。)和硼(Bx)(5%wt。)作为添加剂加入基础液中的乙二醇(例如)。出于比较的目的,除了使用MQL方法的干燥加工之外,还利用了商业硼油。在含有Ba的切削液中达到最低表面粗糙度值(0.411μm)。与干燥条件相比,测定表面粗糙度值分别在含有Ba和Bx的切削液中改善为52和38%。在含有Bx的切削液中,测量最高刀具寿命为3.15μm的切割长度。根据实验结果,使用BA和BX制备的切削液中发生刀具寿命。与干燥条件相比,通过通过Bx制备的切割流体,通过Ba和50%制备的切割流体增加110%。切割力随含有硼化合物的切削液而降低。在铣削过程之后,通过扫描电子显微镜(SEM)辅助能量分散光谱(EDS)来分析切削刀具的磨损类型和机制。此外,已经发现扩散和磨损是切削刀具上的主要磨损机制,所有切削液都研究。因此,通过加入硼化合物来获得有前途的结果,该化合物对人和环境健康的无害和无毒,以切割基于流体的例如用于改善AISI O2冷工具钢的可加工性。

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