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首页> 外文期刊>International Journal of Fatigue >Effects of frequency and environment on fatigue behavior of an oxide-oxide ceramic composite at 1200 ℃
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Effects of frequency and environment on fatigue behavior of an oxide-oxide ceramic composite at 1200 ℃

机译:频率和环境对1200℃氧化物陶瓷复合材料疲劳性能的影响

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摘要

The effect of frequency on fatigue behavior of an oxide-oxide continuous fiber ceramic composite (CFCC) was investigated at 1200 ℃ in laboratory air and in steam environment. The composite consists of a porous alumina matrix reinforced with laminated, woven mullite-alumina (Nextel™720) fibers, has no interface between the fiber and matrix, and relies on the porous matrix for flaw tolerance. Tension-tension fatigue tests were performed at frequencies of 0.1 and 10 Hz for fatigue stresses ranging from 75 to 170 MPa. Fatigue run-out was defined as 10~5 cycles at the frequency of 0.1 Hz and as 10~6 cycles at the frequency of 10 Hz. The CFCC exhibited excellent fatigue resistance in laboratory air. The fatigue limit was 170 MPa (88% UTS at 1200 ℃). The material retained 100% of its tensile strength. Presence of steam significantly degraded the fatigue performance, with the degradation being most pronounced at 0.1 Hz. Composite microstructure, as well as damage and failure mechanisms were investigated. Examination of fracture surfaces revealed higher degrees of fiber pull-out in specimens tested at 10 Hz, indicating weakening of the fiber/matrix interface. A qualitative spectral analysis showed evidence of silicon species migration from the fiber to the matrix.
机译:在1200℃的实验室空气和蒸汽环境中,研究了频率对氧化物-氧化物连续纤维陶瓷复合材料(CFCC)疲劳行为的影响。该复合材料由多孔氧化铝基质组成,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,并且依靠多孔基质实现耐缺损性。在0.1和10 Hz的频率下进行了75至170 MPa的疲劳应力拉伸疲劳测试。疲劳跳动的定义是在0.1 Hz的频率下10〜5个周期,在10 Hz的频率下10〜6个周期。 CFCC在实验室空气中表现出出色的抗疲劳性。疲劳极限为170 MPa(1200℃时为88%UTS)。该材料保留了其拉伸强度的100%。蒸汽的存在显着降低了疲劳性能,在0.1 Hz时最明显。研究了复合材料的微观结构,以及破坏和破坏机理。断裂表面的检查显示,在10 Hz的测试样本中,纤维拔出的程度更高,表明纤维/基质界面减弱。定性光谱分析显示出硅物种从纤维迁移到基质的证据。

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