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Experimental evaluation of the basic properties and performance of nanolubricant in machining

机译:加工中纳米润滑剂的基本性能和性能的实验评估

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Machining is one of the most fundamental and indispensable processes in manufacturing industry. The heat generated in the cutting zone during machining is critical in deciding the workpiece quality. Though cutting fluids are widely employed to carry away the heat in machining, their usage poses threat to ecology and the health of workers. Hence, there arises a need to identify eco-friendly and user-friendly alternatives to conventional cutting fluids. The present work features a specific study on the application of nano solid lubricant suspensions in lubricating oil in turning ofAISI 11040 steel with carbide tool. Coconut oil is taken as base lubricant and boric acid solid lubricant of 50 nmparticle size are added as suspensions. Boric acid nanoparticles are added to the oil on weightpercentage basis and the variation of its basic properties like flash point, fire point, viscosity, thermal conductivity and heat transfer coefficient are analysed. Variation of cutting tool temperatures, average tool flank wear and the surface roughness of the machined surface are studied with nano solid lubricant suspensions in lubricating oil.
机译:机加工是制造业中最基本,必不可少的过程之一。加工过程中在切削区域产生的热量对于确定工件质量至关重要。尽管切削液被广泛用于带走加工中的热量,但切削液的使用对生态和工人的健康构成了威胁。因此,需要确定传统切削液的生态友好和用户友好的替代品。目前的工作是针对在使用硬质合金刀具车削AISI 11040钢中使用纳米固体润滑剂悬浮液在润滑油中的应用进行专门研究。将椰子油用作基础润滑剂,并以悬浮液形式添加粒径为50 nm的硼酸固体润滑剂。将硼酸纳米颗粒按重量百分比添加到油中,并分析其基本特性(如闪点,着火点,粘度,导热系数和热传递系数)的变化。用润滑油中的纳米固体润滑剂悬浮液研究了切削刀具温度,平均刀具侧面磨损和加工表面的表面粗糙度的变化。

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