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Performance of nitrogen and liquid nitrogen as coolants in orthogonal machining of AISI 1020 Steel alloy with uncoated carbide tools

机译:氮和液态氮作为冷却剂在AISI 1020合金无涂层硬质合金刀具正交加工中的性能

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The growing cost associated with insurance, handling and disposing of conventional metal working fluids (oil and water based) continues to drive a need for alternative metal working fluids. An orthogonal tube turning experiment was conducted to study the effects of nitrogen and liquid nitrogen in machining of AISI 1020 steel alloy on a HAAS CNC lathe along with a Kistler Dynamometer to record the force data. Two levels of uncut chip thickness, 0.002" and 0.004" per revolution are maintained with a constant feed and depth of cut of 0.125". The tool used in this study is an uncoated carbide insert at three different rake angles of 0°, 7° and 15°, with no chip breaker. The statistical design of the experiment established the machining for a duration of 1 minute at each factor level combination. Force data from the dynamometer is analyzed along with wear of the tooling. Tool inserts were studied under a 3- dimensional optical microscope to measure the rake face tool wear. Simple nitrogen produced less wear than the more expensive liquid nitrogen setup.
机译:与保险,处理和处置常规金属加工液(油和水基)相关的成本不断增长,继续推动了对替代金属加工液的需求。进行了正交管车削实验,研究了氮气和液氮在HAAS CNC车床上加工AISI 1020合金时的效果,并用Kistler测功机记录了力数据。在恒定进给和0.125“切削深度的情况下,每转可保持两个水平的未切削切屑厚度,分别为0.002”和0.004“。本研究中使用的刀具为0°,7°三种前角的无涂层硬质合金刀片。和15°,没有断屑器。实验的统计设计确定了在每个因子水平组合下的加工时间为1分钟,分析了测功机的力数据以及工具的磨损情况,并在以下条件下研究了刀具刀片:用于测量前刀面刀具磨损的3维光学显微镜,与更昂贵的液氮装置相比,简单的氮气产生的磨损更少。

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