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Experimental Investigation on Machinability of Aluminum Alloy during Dry Micro Cutting Process Using Helical Micro End Mills with Micro Textures

机译:用微型纹理螺旋微终铣刀在干微型切削过程中铝合金可加工性的实验研究

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Aluminum alloy material is widely used in the electronics, weapons, aviation and aerospace industries, due to its medium strength, good corrosion resistance, good toughness and excellent oxidation properties. With the trend of product miniaturization, micro cutting has become the mainstream technique for fabricating micro parts and components, so it is very meaningful and vital to work on removing the cutting fluid from the micro cutting process and make it totally sustainable and eco-friendly. In this work, an attempt has been made to fabricate micro textures onto the rear surface of helical micro end mills with diameters of less than 1 mm. Micro textures in the form of grooves were fabricated using a noncontact low speed wire electrical discharge turning technique. Dry micro cutting experiments were carried out on an aluminum alloy material using helical micro end mills with micro textures and the dry micro cutting surface quality and tool wear have been investigated. The influence of dry micro cutting parameters on the surface roughness parameters were also investigated. Experimental results showed that the S a and S q can be reduced to be about 1.56 μm and 2.08 μm, respectively. Contrasting results indicate that the implantation of micro textures does not deteriorate the dry micro cutting surface but improves the machined surface consistency of an aluminum alloy workpiece. The tool wear on helical micro end mills with micro textures involved in the dry micro cutting process of Al 6061 mainly include rear frictional wear, oxidation wear and diffusion wear.
机译:铝合金材料广泛应用于电子,武器,航空和航空航天行业,由于其中型强度,耐腐蚀性好,韧性良好,氧化性能良好。随着产品小型化的趋势,微型切割已成为制造微零件和部件的主流技术,因此对从微型切割过程中取出切割液并使其完全可持续和环保是非常有意义的并且至关重要。在这项工作中,已经尝试制造在螺旋微端铣刀的后表面上的微纹理,直径小于1mm。使用非接触式低速线电放电转动技术制造凹槽形式的微纹理。使用带有微纹理的螺旋微端铣刀在铝合金材料上进行干燥的微切割实验,并研究了干细微切割表面质量和工具磨损。还研究了干微切参数对表面粗糙度参数的影响。实验结果表明,S A和S Q分别降低至约1.56μm和2.08μm。对比结果表明微纹理的植入不会劣化干细微切割表面,而是改善铝合金工件的加工表面稠度。螺旋微端铣刀的工具磨损,涉及Al 6061的干微切割过程中涉及的微纹理,主要包括后摩擦磨损,氧化磨损和扩散磨损。

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