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Creep rupture behavior of oxide/oxide Nextel 720/AS and MI SiC/SiC composites with effusion holes

机译:带有渗出孔的氧化物/氧化物Nextel 720 / AS和MI SiC / SiC复合材料的蠕变断裂行为

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摘要

Woven Oxide/Oxide and SiC/SiC ceramic matrix composites (CMC) are targeted for high-temperature aerospace applications such as combustors, combustor liners, exhaust washed structures, exhaust nozzle flaps and seals, and blade outer air seals. Some of these components contain stress concentration sites such as holes and attachment points. Components such as combustors may also include effusion holes, which are used to lay down a film of cooling air on the hot wall to create a boundary layer effect and to cool the component by providing more internal surface area. During service, these locations will be subjected to long-term exposures and thermal stresses. Hence, the knowledge of the effect of sustained (creep) loading on the deformation and rupture of notched oxide/oxide and SiC/SiC composites is required for durability assessment. The results from creep tests of unnotched and notched Nextel 72O/Alumina-Silica (Nextel 720/AS-O) and Melt Infiltrated (MI) SiC/SiC are discussed in this paper. Nextel 72O/AS-O was evaluated at 1100℃ and SiC/SiC at 982℃ and 1200℃ in laboratory air. In the case of large notches, i.e., notch length greater than average tow size, the notch-sensitivity increased significantly under sustained loading for both composite. Under sustained loading, the effusion hole (diameter less than tow size) specimens also exhibited notch-sensitivity comparable to that of specimens with large notches.
机译:机织氧化物/氧化物和SiC / SiC陶瓷基复合材料(CMC)适用于高温航空航天应用,例如燃烧室,燃烧室衬套,排气洗涤结构,排气喷嘴风门和密封件以及叶片外部空气密封件。其中一些组件包含应力集中点,例如孔和附着点。诸如燃烧器之类的组件还可以包括排放孔,该排放孔用于在热壁上沉积一层冷却空气以产生边界层效应并通过提供更多的内部表面积来冷却该组件。在使用过程中,这些位置将承受长期暴露和热应力。因此,对于耐久性评估,需要了解持续(蠕变)载荷对缺口氧化物/氧化物和SiC / SiC复合材料的变形和破裂的影响的知识。本文讨论了无缺口和有缺口的Nextel 72O /氧化铝-二氧化硅(Nextel 720 / AS-O)和熔体渗透(MI)SiC / SiC的蠕变测试结果。在实验室空气中,在1100℃下评估Nextel 72O / AS-O,在982℃和1200℃下评估SiC / SiC。在大切口的情况下,即切口长度大于平均丝束尺寸,在两种复合材料的持续载荷下,切口敏感性显着提高。在持续载荷下,积液孔(直径小于丝束直径)样品的缺口敏感性也与大缺口样品相当。

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