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首页> 外文期刊>Journal of Materials Science >Fatigue behavior of sylramic-iBN/BN/CVI SiC ceramic matrix composite in combustion environment
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Fatigue behavior of sylramic-iBN/BN/CVI SiC ceramic matrix composite in combustion environment

机译:sylramic-iBN / BN / CVI SiC陶瓷基复合材料在燃烧环境下的疲劳行为

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摘要

Fatigue behavior of Sylramic-iBN/BN/CVI SiC CMC was investigated under tension-tension fatigue using a test facility which simulated simultaneously both loading and combustion conditions of hot-section components of gas turbine engines. Combustion environment was created using a high-velocity oxygen fuel gun to impinge combustion flame on one side of specimen subjected to fatigue to simulate the real situation. The flame-impinged surface of specimen was heated to average temperature of 1250, 1350, or 1480 A degrees C. Ultimate tensile strength of CMC was about 270 MPa at 1480 A degrees C under combustion environment. Fatigue life diagram was established at stress ratio of 0.1 and frequency of 1 Hz. The CMC survived up to 25 h at 46 and 33 % of ultimate tensile strength under combustion at 1250 and 1350 A degrees C, respectively. However, it could not survive 25 h at 1480 A degrees C under combustion fatigue environment even with no stress on the specimen due to degradation/erosion of the material. Microscopic analysis of fracture surface showed oxidation of BN interface, which was more on flame side than other side. Fracture surfaces showed oxide formation over matrix, fibers, and/or fiber/matrix interphase causing embrittlement and thereafter failure of CMC.
机译:使用测试设备,同时模拟燃气轮机热截面部件的载荷和燃烧条件,研究了Sylramic-iBN / BN / CVI SiC CMC在拉伸张力疲劳下的疲劳行为。使用高速氧气燃料枪创建燃烧环境,将燃烧火焰撞击在遭受疲劳的样本一侧,以模拟真实情况。将被火焰撞击的样品表面加热到1250、1350或1480 A的平均温度。在燃烧环境下,CMC的极限拉伸强度在1480 A时约为270 MPa。建立疲劳寿命图,应力比为0.1,频率为1 Hz。在1250和1350 A摄氏度的燃烧下,CMC在极限抗拉强度分别为46%和33%的条件下可存活长达25小时。然而,即使由于材料的降解/腐蚀而在试样上没有应力,它也不能在燃烧疲劳环境下在1480 A的温度下存活25小时。断裂表面的显微分析表明,BN界面被氧化,在火焰侧比在另一侧更多。断裂表面显示出在基体,纤维和/或纤维/基体中间相上形成氧化物,从而导致脆化并随后使CMC失效。

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