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首页> 外文期刊>Journal of Materials Processing Technology >Investigation on machining characteristics of TC4 alloy by simultaneous application of ultrasonic vibration assisted milling (UVAM) and economical-environmental MQL technology
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Investigation on machining characteristics of TC4 alloy by simultaneous application of ultrasonic vibration assisted milling (UVAM) and economical-environmental MQL technology

机译:超声振动辅助研磨(UVAM)和经济环境MQL技术同时应用TC4合金加工特性研究

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摘要

The optimization of machining methods is one of important guiding principles for achieving high-quality, cost saving and environmental protection machining of difficult-to-machine materials in modern manufacturing. Considering the principles and advantages of ultrasonic machining (UM) method and minimum quantity lubrication (MQL) technique, the simultaneous application of UM and MQL methods is anticipated to further improve machining performance in terms of cutting force, surface quality and chip morphology. Theoretical analysis indicates that the MQL system in UVAM could provide enhanced lubrication and cooling performance because of the separate-type cutting mechanism, the surface acoustic and the cavitation phenomenon of resonant workpiece in UM. Conventional milling (CM) trials, general UVAM trials and combined UVAM&MQL trials were conducted to investigate the effect of UVAM and MQL methods on machining performance of TC4 alloy, where the results of CM and general UVAM could provide indispensable reference. Multifaceted comparisons are presented in machining results of CM, UVAM and UVAM&MQL trials in terms of time-domain analysis and frequency-domain analysis of milling force, average cutting force, surface topography, surface profile and surface roughness. The results show that cutting force features could be significantly affected under UVAM and UVAM&MQL condition compared with that in general milling due to intermittent cutting mechanism and the coupling effect of UVAM and MQL methods. The uniform micro-textured surfaces with improved profile fluctuations could be obtained when applying the UVAM&MQL strategy. Compared with surface roughness in CM and UVAM, the surface roughness in UVAM&MQL is improved by about 30-50% and about 20-30%, respectively. The excellent machining performance demonstrates the feasibility and effectiveness of simultaneously applying UVAM and MQL methods.
机译:加工方法的优化是在现代制造业实现高品质,低成本节能环保加工难加工材料的重要指导原则之一。考虑的原则和超声波加工(UM)方法和最小量润滑(MQL)技术的优势,UM和MQL方法同时施加预期进一步改善在切削力,表面质量和芯片形态学方面的机加工性能。理论分析表明,在该UVAM MQL系统可以提供增强的,因为分离型切割机构,所述表面弹性并在UM谐振工件的气蚀现象的润滑和冷却性能。常规的研磨(CM)试验中,一般UVAM试验和组合UVAM&MQL试验进行了调查的UVAM和MQL方法对TC4合金,其中,CM和一般UVAM的结果可以提供不可缺少参考的加工性能的影响。多方面的比较是在时域分析和研磨力,平均切削力,表面形貌,表面轮廓和表面粗糙度频域分析方面CM,UVAM和UVAM&MQL试验的加工结果呈现。结果表明,切削力特征可以下UVAM和UVAM&MQL条件来显著影响与在普通铣床相比由于断续切削机构和UVAM和MQL方法的耦合效应。具有改进的轮廓的波动均匀微纹理化的表面可以施加UVAM&MQL策略时来获得。在CM表面粗糙度和UVAM相比,UVAM&MQL表面粗糙度由约30-50%至约分别20-30%,改善。优良的机械加工性能演示的可行性和同时施加UVAM和MQL方法的有效性。

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