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Repeated Thermal Shock Behavior of ZrB2–SiC–Graphite Composite under Pre-Stress in Air and Ar Atmospheres

机译:ZrB2-SiC-石墨复合材料在预应力下在空气和Ar气氛中的反复热冲击行为

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摘要

The thermo–chemo–mechanical coupling on the thermal shock resistance of 20 vol%-ZrB –15 vol%-SiC–graphite composite is investigated with the use of a self-developed material testing system. In each test, a specimen under prescribed constant tensile pre-stress ( = 0, 10, 20 and 30 MPa) was subjected to 60 cycles of thermal shock. In each cycle, the specimen was heated from room temperature to 2000 °C within 5 s in an air atmosphere or an Ar atmosphere. The residual flexural strength of each specimen was tested, and the fracture morphology was characterized by using scanning electron microscopy (SEM). There were three different regions in the fracture surface of a specimen tested in the air, while no such difference could be observed in the fracture surfaces of the specimens that were tested in Ar. The residual flexural strength of the composite that was tested in Ar generally decreases with the increase of . However, in the range of 0 ≤ ≤ 10 MPa, the residual flexural strength of the composite that was tested in the air ascended with the increase of due to the healing effect of oxidation, but it descended thereafter with a further increase of , as the effect pre-stress that became prominent.
机译:利用自行开发的材料测试系统,研究了20vol%-ZrB –15vol%-SiC-石墨复合材料的抗热震性能的热-化学-机械耦合。在每个测试中,在规定的恒定拉伸预应力(= 0、10、20和30 MPa)下对样品进行60次热冲击。在每个循环中,将样品在空气气氛或Ar气氛中于5 s内从室温加热到2000°C。测试了每个样品的残余挠曲强度,并通过扫描电子显微镜(SEM)表征了断裂形态。在空气中测试的样品的断裂表面中存在三个不同的区域,而在Ar中测试的样品的断裂表面中没有观察到这种差异。在Ar中测试的复合材料的残余挠曲强度通常随着γ的增加而降低。但是,在0≤≤10 MPa的范围内,由于氧化的修复作用,在空气中测试的复合材料的残余挠曲强度随的增加而增加,但随后随着的进一步增加而下降,因为效果预应力变得突出。

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