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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Cutting forces and tool failure in high-speed milling of titanium alloy TC21 with coated carbide tools
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Cutting forces and tool failure in high-speed milling of titanium alloy TC21 with coated carbide tools

机译:用涂层硬质合金刀具高速铣削TC21钛合金时的切削力和刀具故障

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摘要

TC21 alloy is a new alpha-beta damage tolerance titanium alloy with high strength and high toughness. Little work has been done in the field of machinability analysis since this alloy was developed. The cutting forces and tool wear in high-speed milling of TC21 alloy with physical vapor deposition ((Ti, Al)N-TiN)-coated carbide tools under different cutting conditions were investigated in this article. The results showed that the cutting force component F-x was more dominant of the three components, and the cutting forces presented an increasing trend with the tool wear progress, which in turn deteriorated the cutting condition and accelerated the tool failure progress. The major tool wear modes in high-speed side-milling TC21 alloy with coated carbide were adhesion and chipping on the rake face along with chipping and transverse crack on the flank face. Moreover, there was obvious nose depression from both the rake face and the flank face. Chipping along the flank and rake faces was identified as the main factor responsible for the failure of the coated carbide tools during the milling of titanium alloy TC21.
机译:TC21合金是一种具有高强度和高韧性的新型α-β耐损伤钛合金。自从这种合金被开发以来,在可加工性分析领域做的工作很少。本文研究了在不同切削条件下用物理气相沉积((Ti,Al)N-TiN)涂层硬质合金刀具对TC21合金进行高速铣削时的切削力和刀具磨损。结果表明,切削力分量F-x在这三个分量中占主导地位,并且切削力随着刀具磨损程度的增加而呈现增加的趋势,这反过来又恶化了切削条件并加速了刀具故障的进展。高速侧铣TC21涂层硬质合金的主要刀具磨损方式是前刀面上的附着力和崩裂以及侧面的崩裂和横向裂纹。此外,前刀面和后刀面都有明显的鼻子凹陷。沿侧面和前刀面的切屑被认为是造成钛合金TC21铣削过程中涂层硬质合金刀具失效的主要因素。

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