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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Creep in Interlaminar Shear of an Oxide/Oxide Ceramic-Matrix Composite at Elevated Temperature
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Creep in Interlaminar Shear of an Oxide/Oxide Ceramic-Matrix Composite at Elevated Temperature

机译:高温下氧化物/氧化物陶瓷基复合材料的层间剪切蠕变

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摘要

Creep behavior in interlaminar shear of an oxide-oxide ceramic composite was evaluated at 1100℃ in laboratory air and in steam environment. The composite (N720/AS) consists of a porous aluminosilicate matrix reinforced with laminated, woven mullitel alumina (Nextel™720) fibers, has no interface between the fiber and matrix, and relies on the porous matrix for flaw tolerance. The interlaminar shear properties were measured. The interlaminar shear strength (ILSS) was determined as 7.6 MPa. The creep behavior was examined for interlaminar shear stresses in the 2-6 MPa range. Primary and secondary creep regimes were observed in all tests conducted in air and in steam. Tertiary creep was noted in tests performed at 6 MPa. Creep run-out defined as 100 hrs at creep stress was not achieved in any of the tests. Larger creep strains and higher creep strain rates were produced in steam. However, the presence of steam had a beneficial effect on creep lifetimes. Composite microstructure, as well as damage and failure mechanisms, was investigated.
机译:在实验室空气和蒸汽环境中,在1100℃下评估了氧化物-氧化物陶瓷复合材料的层间剪切蠕变行为。复合材料(N720 / AS)由多孔铝硅酸盐基质组成,该基质用层压的机织莫来石氧化铝(Nextel™720)纤维增强,在纤维和基质之间没有界面,并且依靠多孔基质来提高耐缺损性。测量层间剪切性能。层间剪切强度(ILSS)确定为7.6MPa。对于2-6 MPa范围内的层间剪切应力,检查了蠕变行为。在空气和蒸汽中进行的所有测试中均观察到初级和次级蠕变状态。在6 MPa下进行的测试中发现了第三蠕变。在任何测试中均未达到蠕变应力,即蠕变应力为100小时。在蒸汽中产生较大的蠕变应变和较高的蠕变应变速率。但是,蒸汽的存在对蠕变寿命具有有益的影响。研究了复合材料的微观结构,以及破坏和破坏机理。

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