首页> 外文期刊>Journal of Zhejiang University. Science >Performance evaluation of minimum quantity lubrication by vege- table oil in terms of cutting force, cutting zone temperature, tool wear, job dimension and surface finish in turning AISI-1060 steel
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Performance evaluation of minimum quantity lubrication by vege- table oil in terms of cutting force, cutting zone temperature, tool wear, job dimension and surface finish in turning AISI-1060 steel

机译:在切削AISI-1060钢时,根据切削力,切削区温度,刀具磨损,工作尺寸和表面光洁度,通过蔬菜油进行最小量润滑的性能评估

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摘要

In all machining processes, tool wear is a natural phenomenon and it leads to tool failure. The growing demands for high productivity of machining need use of high cutting velocity and feed rate. Such machining inherently produces high cutting temperature, which not only reduces tool life but also impairs the product quality. Metal cutting fluid changes the performance of machining operations because of their lubrication, cooling and chip flushing functions, but the use of cutting fluid has become more problematic in terms of both employee health and environmental pollution. The minimization of cutting fluid also leads to economical benefits by way of saving lubricant costs and workpiece/tool/machine cleaning cycle time. The concept of minimum quantity lubrication (MQL) has been suggested since a decade ago as a means of addressing the issues of environmental intru-siveness and occupational hazards associated with the airborne cutting fluid particles on factory shop floors. This paper deals with experimental investigation on the role of MQL by vegetable oil on cutting temperature, tool wear, surface roughness and dimensional deviation in turning AISI-1060 steel at industrial speed-feed combinations by uncoated carbide insert. The encouraging results include significant reduction in tool wear rate, dimensional inaccuracy and surface roughness by MQL mainly through reduction in the cutting zone temperature and favorable change in the chip-tool and work-tool interaction.
机译:在所有加工过程中,刀具磨损都是自然现象,会导致刀具故障。对高机械生产率的日益增长的需求要求使用高切削速度和进给速度。这种机加工固有地产生高切削温度,这不仅缩短了刀具寿命,而且损害了产品质量。金属切削液由于其润滑,冷却和排屑功能而改变了加工操作的性能,但就员工健康和环境污染而言,切削液的使用已成为问题。通过节省润滑剂成本和工件/工具/机器清洁周期时间,使切削液的最少化也带来了经济利益。自从十年前就提出了最低润滑量(MQL)的概念,作为解决与工厂车间空气中切削液颗粒相关的环境侵入性和职业危害问题的一种手段。本文研究了用植物油进行的MQL在无涂层硬质合金刀片工业转速进给下车削AISI-1060钢时切削温度,刀具磨损,表面粗糙度和尺寸偏差的作用的实验研究。令人鼓舞的结果包括通过MQL显着降低了刀具磨损率,尺寸误差和表面粗糙度,这主要是通过降低切削区域的温度以及切屑工具和工作工具相互作用的有利变化而实现的。

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