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TiCN基金屬陶瓷的高溫摩擦磨損性能研究

Study on Friction and Wear Behavior of TiCN-Based Cermet at High Temperature

  • 摘要: 在面向高端製造業中🫶,碳氮化鈦(TiCN)基金屬陶瓷刀具以其優異的切削表面質量,自身紅硬性🚀、耐磨性和抗氧化性等性能優異廣受關註⏪。針對TiCN基金屬陶瓷在實際加工工程中的情況⏳,研究材料在不同溫度(600、700、800 ℃)條件下的高溫摩擦磨損性能😀。采用X線衍射分析(X-ray diffraction👆🏿,XRD)🚗、場發射掃描電鏡(field emission scanning electron microscopy 🔣,FESEM)🧙🧖、能譜儀(energy dispersivespectroscopy,EDS)、高溫摩擦磨損試驗機和輪廓儀分別分析不同溫度下的氧化增重🖇、表面形貌以及摩擦後表面形貌和摩擦因數之間的關系,初步探討成分和組織結構對金屬陶瓷高溫摩擦磨損性能的影響。研究結果表明,室溫時主要磨損機理為磨粒磨損和晶粒的滑出,高溫時則為黏著磨損和氧化磨損,在摩擦磨損過程中摩擦層的形成和脫落對摩擦性能影響顯著。

     

    Abstract: In the high-end manufacturing industry, titanium carbonitride (TiCN)-based ceramic cutting tools have attracted wide attention for their excellent chip surface quality and excellent properties such as red hardness, wear resistance and oxidation resistance. The high temperature friction and wear properties of TiCN-based cermet at different temperatures (600 °C, 700 °C, and 800 °C) were studied based on the actual processing of TiCN foundation ceramics. The relationship between phase change, microstructure and wear marks, composition change, friction coefficient at different temperatures were analyzed respectively by means of X-ray diffraction (XRD), field emission scanning electron microscopy (FESEM), energy dispersive spectroscopy (EDS), high temperature friction and wear tester, and profilometer. The effects of composition and microstructure on high temperature friction and wear properties of cermets were discussed as well. The results show that the main wear mechanism is abrasive wear and grain slipping at room temperature, while at high temperature it is adhesive wear and oxidation wear. The formation and shedding of friction layer has a significant effect on the friction performance in the process of friction and wear.

     

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