Performance Evaluation of Hybrid MQL-Brass Nano-Fluid Coolant on Aisi 304 SS for Efficient Machining Operation

F. O. Borokinni, B. Bolaji, B. Olorunfemi, K. Bello, O. Oginni
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Abstract

Brass Nanofluid is a substance made from synthetic copper and zinc powder. It has outstanding mechanical, electrical, thermal and optical qualities employed in a variety of applications including, solar, touch screen, bison. The nanoparticles used in this study were developed from brass alloy which was locally sourced and machined to the required nano-size of 40 µm. A top-down strategy was used for the preparation of nanofluid and ball milling utilized to ground the brass alloy and sieved after grinding using a 40 µm sleeve. A double approach strategy was applied to prepare the nanofluid and the sonification process of brass nanofluid was conducted using ultra sonic equipment. The result shows that the light paraffin oil with varying concentration percentage of brass alloy and conventional cutting fluid (castrole oil) with varying concentration percentage of brass alloy display similar performance. Optimizing the additive ratio of nano particle provided better outcomes identified in the range of 2-10g with 200 ml of cutting fluid. This improves the surface roughness finish of machined part while inclusion of brass nano particle with cutting fluid improves the material removal rate, reduce the temperature and the cutting zone providing a guaranteed finish product compared to other base fluid.
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用于 Aisi 304 SS 高效加工的混合 MQL-青铜纳米流体冷却液性能评估
纳米黄铜流体是一种由合成铜和锌粉制成的物质。它具有出色的机械、电气、热和光学特性,可用于太阳能、触摸屏、野牛等多种应用。本研究中使用的纳米粒子由黄铜合金制成,黄铜合金就地取材,加工成所需的 40 微米纳米尺寸。纳米流体的制备采用了自上而下的策略,利用球磨研磨黄铜合金,并在研磨后使用 40 微米的套筒进行筛分。采用双重方法制备纳米流体,并使用超声设备对黄铜纳米流体进行超声处理。结果表明,不同黄铜合金浓度百分比的轻质石蜡油和不同黄铜合金浓度百分比的传统切削液(铸烯油)具有相似的性能。优化纳米微粒的添加比例,在 200 毫升切削液中添加 2-10 克纳米微粒时,效果更好。与其他基础油相比,在切削液中加入黄铜纳米粒子可以提高材料去除率,降低温度,减少切削区域,从而保证加工产品的表面粗糙度。
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