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低温处理对钒6工具钢硬度、断裂韧性及磨损性能的影响

Effect of Cryogenic Treatments on Hardness, Fracture Toughness, and Wear Properties of Vanadis 6 Tool Steel.

作者信息

Yarasu Venu, Jurci Peter, Ptacinova Jana, Dlouhy Ivo, Hornik Jakub

机构信息

Faculty of Materials Technology Based in Trnava, Slovak University of Technology Based in Bratislava, 917 24 Trnava, Slovakia.

Institute of Physics of Materials, Czech Academy of Sciences, Zizkova 22, 616 62 Brno, Czech Republic.

出版信息

Materials (Basel). 2024 Apr 7;17(7):1688. doi: 10.3390/ma17071688.

Abstract

The ability of cryogenic treatment to improve tool steel performance is well established; however, the selection of optimal heat treatment is pivotal for cost reduction and extended tool life. This investigation delves into the influence of distinct cryogenic and tempering treatments on the hardness, fracture toughness, and tribological properties of Vanadis 6 tool steel. Emphasis was given to comprehending wear mechanisms, wear mode identification, volume loss estimation, and detailed characterization of worn surfaces through scanning electron microscopy coupled with energy dispersive spectroscopy and confocal microscopy. The findings reveal an 8-9% increase and a 3% decrease in hardness with cryogenic treatment compared to conventional treatment when tempered at 170 °C and 530 °C, respectively. Cryotreated specimens exhibit an average of 15% improved fracture toughness after tempering at 530 °C compared to conventional treatment. Notably, cryogenic treatment at -140 °C emerges as the optimum temperature for enhanced wear performance in both low- and high-temperature tempering scenarios. The identified wear mechanisms range from tribo-oxidative at lower contacting conditions to severe delaminative wear at intense contacting conditions. These results align with microstructural features, emphasizing the optimal combination of reduced retained austenite and the highest carbide population density observed in -140 °C cryogenically treated steel.

摘要

深冷处理改善工具钢性能的能力已得到充分证实;然而,选择最佳热处理对于降低成本和延长刀具寿命至关重要。本研究深入探讨了不同深冷和回火处理对Vanadis 6工具钢硬度、断裂韧性和摩擦学性能的影响。重点在于通过扫描电子显微镜结合能谱和共聚焦显微镜来理解磨损机制、识别磨损模式、估算体积损失以及对磨损表面进行详细表征。研究结果表明,与传统处理相比,在170℃和530℃回火时,深冷处理分别使硬度提高8 - 9%和降低3%。在530℃回火后,深冷处理的试样与传统处理相比,平均断裂韧性提高了15%。值得注意的是,在低温和高温回火情况下,-140℃的深冷处理均是提高磨损性能的最佳温度。所确定的磨损机制包括较低接触条件下的摩擦氧化磨损到强烈接触条件下的严重分层磨损。这些结果与微观结构特征相符,强调了在-140℃深冷处理的钢中观察到的残余奥氏体减少和碳化物数量密度最高的最佳组合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33b9/11012650/1c8d73c48388/materials-17-01688-g001.jpg

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