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Air Jet Assisted Machining of Titanium Alloy

机译:喷气辅助钛合金加工

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摘要

Titanium alloy has been applied to elements and structures in aerospace engineering, bioengineering, marine engineering, etc. because of its superior properties. However, machining of this alloy is likely to accelerate tool wear, shorten tool life and deteriorate the surface integrity. Therefore, high-speed machining of this alloy has been studied for many years. In this study, finish-turning of Ti-6Al-4V was conducted at higher cutting speeds using a new lubrication method called air jet assisted (AJA) machining, in which not only the cutting fluid but also the jet of compressed air was applied to the cutting zone to extend tool life. The results of cutting experiments using an uncoated cemented carbide tool showed that the air jet toward the tool tip applied to the conventional wet machining was effective to extend the tool life. Finally, cooling mechanism in AJA machining was discussed from a viewpoint of enhancement of the heat transfer coefficient from the cutting tool to the cutting fluid.
机译:钛合金由于其优越的性能已被应用于航空航天工程,生物工程,海洋工程等领域的元素和结构。但是,对该合金进行机械加工可能会加速工具磨损,缩短工具寿命并降低表面完整性。因此,已经对该合金的高速加工进行了多年研究。在这项研究中,Ti-6Al-4V的精加工采用一种称为空气喷射辅助(AJA)加工的新润滑方法,以较高的切削速度进行,该切削方法不仅将切削液而且还应用压缩空气射流。切削区域,以延长刀具寿命。使用未涂覆的硬质合金刀具进行切削实验的结果表明,向应用于传统湿式加工的刀尖的空气喷射有效地延长了刀具寿命。最后,从提高切削刀具到切削液传热系数的角度出发,对AJA加工中的冷却机理进行了探讨。

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