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Self-lubricating CrAlMoN high performance tool coatings for machining of TiAl6V4

材料科学 摩擦学 机械加工 高功率脉冲磁控溅射 溅射沉积 刀具磨损 涂层 摩擦学 硬质合金 物理气相沉积 复合材料 模数 冶金 碳化物 溅射 薄膜 纳米技术
作者
Kirsten Bobzin,C. Kalscheuer,M. Carlet,N. Stachowski,Wolfgang Hintze,Carsten Möller,P. Ploog
出处
期刊:Production Engineering [Springer Science+Business Media]
卷期号:17 (3-4): 437-444 被引量:3
标识
DOI:10.1007/s11740-022-01161-8
摘要

Abstract TiAl6V4 allows significant performance improvements in industrial applications. However, the machining is a considerable challenge due to low thermal conductivity, Young’s modulus and strong adhesion tendency. This leads to high thermal and mechanical loads on the cutting edge resulting in early tool failure. Today, uncoated cemented carbide tools are commonly used. However, temperature active physical vapor deposition (PVD) coatings like CrAlVN and CrAlMoN provide a promising approach to increase tool life. For this, the coating’s ability to form lubricating oxide phases is vital. In the present study, CrAlVN and CrAlMoN coatings were investigated to determine the more suitable version for increasing the economic efficiency of machining TiAl6V4. The coatings were deposited by hybrid direct current magnetron sputtering/high power pulsed magnetron sputtering (dcMS/HPPMS) processes. Morphology, thickness, chemical composition, indentation hardness, indentation modulus and oxide phase composition were analyzed. Moreover, friction and wear behavior of the coated tools were determined using a pin on disc (PoD) tribometer at various temperatures. Additionally, tool life and deformation behavior were analyzed after turning TiAl6V4. The CrAlVN and CrAlMoN coatings show a dense morphology and a smooth surface topography. Both variants have a good adhesion to the cemented carbide tools. For increased temperatures, the tribological analyses showed a reduction in the coefficient of friction. In case of CrAlMoN coated samples, a friction reduction compared to CrAlVN was observed at lower temperatures. Due to this, an increased tool life was achieved for CrAlMoN coated cutting inserts during turning of TiAl6V4.
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