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首页> 外文期刊>Composites Science and Technology >Effect of frequency and environment on fatigue behavior of a CVI SiC/SiC ceramic matrix composite at 1200 ℃
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Effect of frequency and environment on fatigue behavior of a CVI SiC/SiC ceramic matrix composite at 1200 ℃

机译:频率和环境对1200℃CVI SiC / SiC陶瓷基复合材料疲劳性能的影响

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The fatigue behavior of a SiC/SiC CMC (ceramic matrix composite) was investigated at 1200 ℃ in laboratory air and in steam environment. The composite consists of a SiC matrix reinforced with laminated woven Hi-Nicalon™ fibers. Fiber preforms had boron nitride fiber coating applied and were then densi-fied with CVI SiC. Tensile stress-strain behavior and tensile properties were evaluated at 1200 ℃. Tension-tension fatigue tests were conducted at frequencies of 0.1, 1.0, and 10 Hz for fatigue stresses ranging from 80 to 120 MPa in air and from 60 to 110 MPa in steam. Fatigue run-out was defined as 105 cycles at the frequency of 0.1 Hz and as 2 x 105 cycles at the frequencies of 1.0 and lOHz. Presence of steam significantly degraded the fatigue performance. In both test environments the fatigue limit and fatigue lifetime decreased with increasing frequency. Specimens that achieved run-out were subjected to tensile tests to failure to characterize the retained tensile properties. The material retained 100% of its tensile strength, yet modulus loss up to 22% was observed. Composite microstructure, as well as damage and failure mechanisms were investigated.
机译:研究了SiC / SiC CMC(陶瓷基复合材料)在1200℃的实验室空气和蒸汽环境下的疲劳行为。该复合材料由SiC基质和层压的Hi-Nicalon™层压纤维增强而成。纤维预成型件涂有氮化硼纤维涂层,然后用CVI SiC进行致密化。在1200℃下评价了拉伸应力-应变行为和拉伸性能。在空气中80至120 MPa和蒸汽中60至110 MPa范围内的疲劳应力分别以0.1、1.0和10 Hz的频率进行了拉伸疲劳试验。疲劳跳动定义为在0.1 Hz的频率下为105个周期,在1.0和10Hz的频率下为2 x 105个周期。蒸汽的存在显着降低了疲劳性能。在两种测试环境中,疲劳极限和疲劳寿命都随着频率的增加而降低。对达到跳动的样品进行拉伸测试,以表征保留的拉伸性能。该材料保留了其拉伸强度的100%,但观察到模量损失高达22%。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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