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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >The use of niobium carbide (NbC) as cutting tools and for wear resistant tribosystems
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The use of niobium carbide (NbC) as cutting tools and for wear resistant tribosystems

机译:使用碳化铌(NbC)作为切削工具和耐磨摩擦系统

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The tribological profile of alumina (99.7%) mated against rotating disks made in binder-less niobium carbide (NbC) and cobalt-bonded NbC were determined under unidirectional sliding tests (0.1 m/s to 8.0 m/s; 22 degrees C and 400 degrees C) as well as in oscillation tests (f = 20 Hz, Delta x = 0.2 mm, 2/50/98% rel. humidity, n = 10(5)/10(6) cycles) under unlubricated (dry) conditions. In addition, the microstructure and mechanical properties of binderless NbC and NbC bonded with 8% cobalt were determined as well. The reason for testing hot-pressed NbC was to avoid side effects generated by sintering additives and/or second phases. The tribological data obtained were benchmarked with different ceramics, cermets and thermally sprayed coatings. NbC and cobalt-bonded NbC exhibited low wear rates under dry sliding associated with high load carrying capacity. The tribological profile established revealed a strong position of NbC bearing materials under tribological considerations and for closed tribo-systems against traditional references, such as WC, Cr3C2 and (Ti,Mo)(C,N). (C) 2014 Elsevier Ltd. All rights reserved.
机译:在单向滑动试验(0.1 m / s至8.0 m / s; 22摄氏度和400摄氏度)下,测定了氧化铝(99.7%)与无粘结剂碳化铌(NbC)和钴结合的NbC制成的旋转盘配合时的摩擦学特性。摄氏度)以及在非润滑(干燥)条件下的振动测试(f = 20 Hz,Delta x = 0.2 mm,相对湿度2/50/98%,n = 10(5)/ 10(6)个循环) 。另外,还测定了无粘结剂的NbC和与8%钴结合的NbC的微观结构和力学性能。测试热压NbC的原因是避免烧结添加剂和/或第二相而产生的副作用。获得的摩擦学数据以不同的陶瓷,金属陶瓷和热喷涂涂层为基准。 NbC和钴键结合的NbC在干式滑动下表现出较低的磨损率,并具有较高的承载能力。建立的摩擦学特征表明,在摩擦学考虑下以及在封闭摩擦系统中,NbC轴承材料相对于传统参考材料(如WC,Cr3C2和(Ti,Mo)(C,N))具有很强的地位。 (C)2014 Elsevier Ltd.保留所有权利。

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