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A Study on the Machining Characteristics and Energy Efficiency of Ti-6AI-4V in Laser-Assisted Trochoidal Milling

机译:Ti-6AI-4V激光辅助摆线铣削的加工特性和能效研究

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摘要

Titanium alloys are widely used in high value-added applications such as aerospace and automobile products. However, their superior mechanical properties also make them difficult-to-cut materials. Various machining methods have been developed for machining difficult-to-cut materials. One of these methods, the trochoidal milling method, combines a linear tool movement with a circular movement. It has several advantages, including low cutting force and better tool life, and it can also be applied to high speed machining. Laser-assisted machining (LAM) is another hybrid machining method for difficult-to-cut materials. When the material is locally preheated by a laser heat source prior to machining by the cutting tool, cutting resistance is reduced, and processing efficiency is increased. The purpose of this study is to develop a laser-assisted trochoidal milling process by combining the two machining methods. The processing efficiency of the trochoidal milling method was verified through experiments and comparison with conventional milling. Also, the cutting force and energy efficiency by considering specific cutting energy during the laser-assisted trochoidal milling of Ti-6Al-4V were analyzed for various machining conditions and compared with trochoidal milling.
机译:钛合金广泛用于航空航天和汽车产品等高附加值的应用。但是,它们优异的机械性能也使它们难以切割。已经开发出各种加工方法来加工难以切割的材料。摆线铣削方法是这些方法之一,它结合了线性刀具运动和圆形运动。它具有几个优点,包括较低的切削力和更长的刀具寿命,并且还可以应用于高速加工。激光辅助加工(LAM)是用于难切削材料的另一种混合加工方法。在通过切削工具进行加工之前,通过激光热源对材料进行局部预热时,切削阻力降低,加工效率提高。这项研究的目的是通过结合两种加工方法来开发激光辅助摆线铣削工艺。通过实验和与常规铣削的比较,证明了摆线铣削方法的加工效率。此外,在各种加工条件下分析了Ti-6Al-4V激光辅助摆线铣削过程中考虑比切削能的切削力和能效,并与摆线铣削进行了比较。

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