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Repeated thermal shock behavior of ZrB2-SiC-graphite composite under prestress

机译:ZrB2-SiC-石墨复合材料在预应力下的反复热冲击行为

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摘要

The thermal shock resistance of ZrB2-SiC-graphite composite under nominal prestress of 0, 20, 30, 40 or 50 MPa after subjected to 10 and 30 cycles of thermal shock was evaluated by measuring the residual flexural strength of the tested specimen. In each test the applied prestress kept constant and in each cycle the specimen center was heated to 2000 degrees C within 5 s through electrical resistance heating method and cooled down naturally to room temperature. A lot of broken SiO2 bubbles in the tested specimens were observed with a SEM. For the specimen subjected to 10 cycles of thermal shock, the residual flexural strength does not show big change under different levels of prestress, although the thickness of oxide layer increases at larger prestress, which is presumably attributed to the effect of the oxide layer that heals the cracks and the pores and enhances the strength. For the specimen subjected to 30 cycles of thermal shock, the residual strength decreases, in general, with the increase of prestress level. The thermal shock fatigue under different levels of prestress was also tested, and it was found that the increase of prestress may speed the failure of the specimen, indicating that the level of prestress may fatally affect the failure of the material. (C) 2016 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:通过测量测试样品的残余挠曲强度,评估了ZrB2-SiC-石墨复合材料在经受10和30次热冲击后,在标称预应力为0、20、30、40或50 MPa时的抗热冲击性能。在每个测试中,施加的预应力保持恒定,并且在每个循环中,通过电阻加热方法在5 s内将样品中心加热至2000摄氏度,然后自然冷却至室温。用SEM观察到在测试样品中有许多破裂的SiO 2气泡。对于经历了10次热冲击的试样,尽管在更大的预应力下氧化物层的厚度会增加,但残余弯曲强度在不同的预应力水平下不会显示出较大的变化,这可能归因于氧化物层的修复作用裂缝和毛孔,增强强度。对于经受30次热冲击的试样,其残余强度通常会随着预应力水平的提高而降低。还测试了不同水平的预应力下的热冲击疲劳,发现预应力的增加可能会加速试样的破坏,表明预应力的水平可能致命地影响材料的破坏。 (C)2016 Elsevier Ltd和Techna Group S.r.l.版权所有。

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