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Evaluation of Workpiece Temperature during Drilling of GLARE Fiber Metal Laminates Using Infrared Techniques: Effect of Cutting Parameters, Fiber Orientation and Spray Mist Application

机译:使用红外技术评估GLARE纤维金属层压板钻孔过程中的工件温度:切削参数,纤维取向和喷雾应用的影响

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摘要

The rise in cutting temperatures during the machining process can influence the final quality of the machined part. The impact of cutting temperatures is more critical when machining composite-metal stacks and fiber metal laminates due to the stacking nature of those hybrids which subjects the composite to heat from direct contact with metallic part of the stack and the evacuated hot chips. In this paper, the workpiece surface temperature of two grades of fiber metal laminates commercially know as GLARE is investigated. An experimental study was carried out using thermocouples and infrared thermography to determine the emissivity of the upper, lower and side surfaces of GLARE laminates. In addition, infrared thermography was used to determine the maximum temperature of the bottom surface of machined holes during drilling GLARE under dry and minimum quantity lubrication (MQL) cooling conditions under different cutting parameters. The results showed that during the machining process, the workpiece surface temperature increased with the increase in feed rate and fiber orientation influenced the developed temperature in the laminate.
机译:加工过程中切削温度的升高会影响加工零件的最终质量。当加工复合金属叠层和纤维金属层压板时,切削温度的影响更为关键,这是由于这些杂化物的叠层性质,使复合材料直接与叠层的金属部分和排空的热切屑直接接触而产生热量。在本文中,研究了两种等级的商业上称为GLARE的纤维金属层压板的工件表面温度。使用热电偶和红外热像仪进行了实验研究,以确定GLARE层压板的上,下和侧面的发射率。此外,在不同的切削参数下,在干法和最小量润滑(MQL)冷却条件下进行GLARE钻孔时,使用红外热成像法确定加工孔底表面的最高温度。结果表明,在加工过程中,工件表面温度随进给速度的增加而增加,纤维取向影响层压板的显影温度。

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