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Study of tribological properties of polymer derived ZrB2-SiC ceramics

机译:聚合物衍生ZRB2-SiC陶瓷摩擦学性能研究

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摘要

ZrB2-SiC composite ceramics with different compositions (20 and 60 vol% ZrB2-SiC, 2OZS and 60 ZS, respectively) were prepared. Wear tests were conducted on the obtained ceramics in multiple distances using ball-onflat tribotester. Volume loss and cross-sectional profiles of samples were measured by three-dimensional (3D) profilometer to study the onset of track wear damages. Pressure-depth curves and hardness were measured by indentation to investigate defects produced in the tribo-film by the debris. The debris of 20zS was found to be joined to the tribo-film and accumulated with distance, shifting from microcrack ( 10,000 cycles) to abrasive wear (50,000 cycles). Compared to 20ZS, lower debris accumulation of 60ZS resulted in better wear resistance, leading to thinner and more stable non-substrate regions for this sample. These differences between both samples basically resulted from different particle sizes. Fine grains were easily pulled out in the experiment, resulting in abrasive wear of the specimen. While transgranular fracture of grains and the pinning led to larger grains with less debris, the damage mode remained transgranular fracture.
机译:制备具有不同组成的ZrB2-SiC复合陶瓷(分别为不同的组合物(20和60体积%ZRB2-SiC,2盎司和60 zs)。使用球onflat Tribotester在多个距离中在所获得的陶瓷上进行磨损试验。通过三维(3D)轮廓仪测量样品的体积损失和横截面轮廓,以研究轨道磨损损伤的开始。通过压痕测量压力深度曲线和硬度,以调查碎片在摩擦膜中产生的缺陷。发现20zs的碎屑被发现与摩擦膜连接并用距离累积,从微裂纹(10,000个循环)移位到研磨磨损(50,000个循环)。与20zs相比,较低的碎片累积为60z,导致耐磨性更好,导致该样品的较薄和更稳定的非衬底区域。两种样品之间的这些差异基本上由不同的粒度尺寸导致。在实验中容易拔出细粒,导致样品的磨料磨损。虽然晶粒和钉扎的旋转骨折导致较大的晶粒,碎片较少,损伤模式仍然是响囊骨折。

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