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Sliding wear resistance of sintered SiC-fiber bonded ceramics

机译:烧结SiC纤维粘结陶瓷的滑动耐磨性

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摘要

Advanced SiC-based ceramics and fiber reinforced composites are interesting materials for a wide variety of applications involving sliding wear conditions because of their excellent thermomechanical properties. The microstructure and wear resistance of sintered SiC fiber bonded ceramics (SA Tyrannohex) were studied. The material is composed of SiC-fibers in two orientations, with polygonal cross sections and cores having higher carbon content than their surroundings, as observed with SEM. A thin layer of C exists between the fibers. This layer has been found to be a turbostratic-layered structure oriented parallel to the fiber surface. XRD shows that the material is highly crystalline and composed mostly of β-SiC. Unlubricated wear behavior of the SA-Tyrannohex material when sliding against a Si3N4 ball in air at room temperature was evaluated. Experiments were performed using a pin on disk apparatus, under different normal loads of 2, 5 and 10 N at sliding speeds of 25, 50, 100 mm/s. A decrease of the friction coefficient with load was found due to the presence of the turbostratic carbon layer between the fibers. Wear rates of the order of 100 mm3/MJ were obtained, independently of sliding speed. Microfracture of the fibers is the main wear mechanism.
机译:先进的SiC基陶瓷和纤维增强复合材料具有出色的热机械性能,因此在涉及滑动磨损条件的各种应用中都是令人感兴趣的材料。研究了烧结SiC纤维粘结陶瓷(SA Tyrannohex)的显微组织和耐磨性。扫描电镜观察到,该材料由两个方向的SiC纤维组成,具有多边形的横截面和比周围高碳含量的纤芯。纤维之间存在一层C薄层。已经发现该层是平行于纤维表面取向的涡轮层结构。 XRD显示该材料是高度结晶的并且主要由β-SiC组成。评估了SA-Tyrannohex材料在室温下在空气中与Si3N4球滑动时的未润滑磨损行为。使用销钉在磁盘设备上以25、50、100 mm / s的滑动速度在2、5和10 N的不同法向载荷下进行实验。由于在纤维之间存在涡轮层碳层,发现随负载的摩擦系数降低。获得的磨损率约为100 mm3 / MJ,与滑动速度无关。纤维的微断裂是主要的磨损机理。

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