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首页> 外文期刊>Ceramic Engineering and Science Proceedings >FIBER PUSH-OUT NANOINDENTATION STUDY OF BN INTERFACE IN SIC/SIC COMPOSITES EXPOSED TO HIGH TEMPERATURES
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FIBER PUSH-OUT NANOINDENTATION STUDY OF BN INTERFACE IN SIC/SIC COMPOSITES EXPOSED TO HIGH TEMPERATURES

机译:高温下SIC / SIC复合材料中BN界面的纤维挤出纳米取向研究

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摘要

Interfacial properties of boron nitride fiber coatings are studied in melt infiltrated Hi-Nicalon/BN(CVI)/SiC composites subjected to room temperature cyclic fatigue loading and long term annealing to 1000-1200℃ in air. Interfacial shear strength was determined from single fiber push-out tests. Hi-Nicalon fibers with diameters of 13-14.5 μm were pushed out from specimens with thicknesses ranging from 110-280 μm using a spherical tip with a 1 um radius and 90° conical shape. Interfacial shear strength was calculated from sliding load, fiber diameter and specimen thickness. Due to significant scattering, 30 individual push tests in every sample were used to obtain the average interfacial shear strength. The virgin specimen has Interfacial shear strength of 20 MPa which is higher than tensile tested specimens (12 MPa). It was shown that strength of room temperature tensile and fatigue tested samples correlates with their interfacial shear strength obtained from fiber push-out study. Annealing of a virgin specimen for 100 hours at 1000℃ slightly increase shear strength up to 21.5 MPa while annealing at 1100℃ and 1200℃ led to significant increase of shear strength up to 29 and 39 MPa correspondingly. This effect is associated with BN degradation at temperatures >1000℃.
机译:研究了熔渗的Hi-Nicalon / BN(CVI)/ SiC复合材料在室温循环疲劳载荷下和在空气中长期退火至1000-1200℃后的氮化硼纤维涂层的界面性能。界面剪切强度由单纤维推出试验确定。使用具有1 um半径和90°圆锥形的球形尖端将直径为13-14.5μm的Hi-Nicalon纤维从厚度为110-280μm的样品中推出。由滑动载荷,纤维直径和样品厚度计算出界面剪切强度。由于存在明显的散射,每个样品中进行了30次单独的推挤测试,以获取平均界面剪切强度。原始样品的界面剪切强度为20 MPa,高于拉伸试验的样品(12 MPa)。结果表明,室温拉伸和疲劳测试样品的强度与其从纤维推出研究中获得的界面剪切强度相关。原始样品在1000℃退火100小时会稍微增加剪切强度,达到21.5 MPa,而在1100℃和1200℃退火时,剪切强度会分别显着增加,分别达到29和39 MPa。这种作用与> 1000℃的BN降解有关。

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