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Dry and Compressed Air Cooling Comparative Study on 6061 Aluminium Alloy Drilling Using Coated Drill

机译:用涂层钻头6061铝合金钻孔干燥和压缩空气冷却比较研究

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The use of aluminium alloy in the manufacturing industry has increased tremendously in the past decade mainly in the areas of aeronautics and automobiles. The ease of machinability of this material makes it a more desirable operand in manufacturing usage. Hence, in this research, a study was undertaken to perform a comparative analysis of dry and cold air drilling on 6061 aluminium alloy. The drill tool used in the drilling process was HSS Cobalt coated tool which has not featured in many research papers. Subsequently, the quality of each hole was identified based on the diameter accuracy of the hole and the surface roughness of the hole. A variation in the parameters was employed to identify the best feed rate and spindle speed that can accommodate a quality hole. In addition, during the drilling operations, force was measured to analyse the ensemble of parameters that present the highest and lowest force. Based on the data collected, an analysis was performed to identify the best quality hole. The force measured for cold air drilling was relatively lower than those measured in dry drilling primarily when high feed rate of 80 mm/min and high speed of 6000 rpm is used. The surface roughness and hole diameter does not differ much between cold air and dry drilling. Therefore, it is highly recommended that feed rate of 80 mm/min coupled with a spindle speed of 6000 rpm be used for drilling operations with a 5mm diameter tool.
机译:在过去十年中,在制造业中的使用在过去十年中,主要在航空和汽车领域的使用增加了。这种材料的可容易的可加工性使其成为制造使用中更期望的操作数。因此,在本研究中,对6061铝合金进行了对干燥和冷空气钻孔的比较分析。钻井过程中使用的钻床是HSS钴涂层工具,该工具在许多研究论文中尚未出现。随后,基于孔的直径精度和孔的表面粗糙度来识别每个孔的质量。采用参数的变化来识别最佳的进料速率和可以容纳质量孔的主轴速度。另外,在钻井作业期间,测量力以分析呈现最高和最低力的参数的集合。基于收集的数据,执行分析以识别最佳质量孔。用于冷空气钻孔测量的力比在使用80mm / min的高进料速率和6000rpm的高进给速率时,相对低于干燥钻孔的力。冷空气和干燥钻孔之间的表面粗糙度和孔径在很大的情况下没有多大。因此,强烈建议使用6000 rpm的主轴速度的80 mm / min的进料速率用于钻孔操作,直径为5mm。

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