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Tribological properties of AlNCeO2Si3N4 cutting materials in unlubricated sliding against tool steel and cast iron

机译:抗螺旋钢和铸铁铸铁无螺旋滑动中ALNCEO2SI3N4切割材料的摩擦学性质

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摘要

Ceramic pins of the AIN-CeO2-Si3N4 system were tested in a pin-on-disc tribometer against discs of tool steel and grey cast iron,at room temperature, without lubrication, in different conditions of humidity and sliding speed. Ceramic samples were selected onthe basis of their mechanical properties (hardness and fracture toughness), and microstructural characteristics, namely porosity, volume of intergranular phase and nitrogen content of the glass phase.Water vapour increased the weight loss of the nitride by promoting the tribo-oxidation wear mode and by weakening theadhesion of debris to the ceramic surfaces. In dry air, the adhering wear debris provided protection to the sliding surfaces andthe wear coefficients of the ceramic converged to similar values for tests with both iron alloys. For the ceramic/tool steeltribopairs, the ceramic surfaces become more protected as the amount of the intergranular glassy layer of the nitride is increased, as the glassy phase gives enhanced debris adhesion. Microcracking of the ceramic surface was the dominant wear mode and the volumic wear rate was found to be dependent on the inverse of hardness and fracture toughness. In humid environments, the effectof roughness of the grey cast iron worn surface surmounted the dependence of the wear rate on microstructural and mechanicalproperties of the nitride, which was found in the ceramic/steel tribopairs.The sliding speed has a strong effect on the wear behaviour. At low speeds, no protective plates of debris were detected on the worn surfaces. When the speed was increased above 0.5 ms -I, the wear coefficient values fell down almost one order of magnitude. The wear coefficients of porous nitride materials of relative open porosity close to 20%, tested against cast iron, were unexpectedlylower than the values obtained for dense materials of same composition (K ~ 2 x 10- 15 Pa- 1 for porous samples and K~ 1.5 x 10-14 Pa-l, for fully dense samples). SEM observations showed an extensive coating by the metallic rich debris, that performed a solid lubricant action.
机译:的AIN-的CeO 2-氮化硅系统的陶瓷销的销 - 盘对工具钢和灰口铸铁,在室温下的盘摩擦计进行了测试,无需润滑,在湿度和滑动速度的不同的条件。陶瓷样品选择它们的机械性能(硬度和断裂韧性),和微观结构特征,即孔隙率,晶间相和玻璃phase.Water蒸气通过促进tribo-增加的重量损失的氮化物的氮含量的体积的onthe基础氧化磨损模式和通过削弱碎片theadhesion到陶瓷表面上。在干燥空气中,附着的磨损粉末提供保护,使滑动面的陶瓷的并且所述磨损系数收敛到相似的值与两个铁合金测试。对于陶瓷材料/工具steeltribopairs,陶瓷表面变得更受保护的作为氮化物的晶界玻璃层的量增加,作为玻璃相给出增强碎屑粘附性。陶瓷表面的微裂纹为优势的磨损模式和volumic磨损率被发现是依赖于硬度和断裂韧性的倒数。在潮湿的环境中,灰铸铁磨损表面的粗糙度effectof克服显微组织和氮化物,这是在陶瓷材料/钢tribopairs.The滑动速度发现的机械性能的磨损率的依赖性具有上的磨损行为有强烈的影响。在低速时,磨损表面上检测到的碎片无保护板。当速度高于0.5毫秒增加-I,磨损系数值倒头几乎一个数量级。相对开口孔隙率接近20%,而铸铁测试的多孔氮化物材料的磨损系数分别unexpectedlylower比相同组成的致密材料获得的值(K〜2×10 15 PA-1为多孔样品和K〜 1.5×10-14帕-1,对于完全致密样品)。 SEM观察通过金属富碎片,即进行固体润滑剂作用显示出广泛的涂层。

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