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Thermal shock behavior of pressureless liquid phase sintered SiC ceramics

机译:无压液相烧结SiC陶瓷的热冲击行为

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摘要

The thermal shock behavior of pressureless liquid phase sintered (PLPS) SiC ceramics with Al2O3 and Y2O3 as sintering additives was investigated by using water quenching method with the temperature difference from 200 degrees C to 1400 degrees C. It was found the residual flexural strength of PLPS SiC dropped quickly to about 100 MPa when the temperature difference reached 600 degrees C due to the cracks induced by thermal stress. The residual flexural strength of the PLPS SiC increased when the temperature difference reached 1300 degrees C and 1400 degrees C due to the formation of SiO2 oxide layers, which acted as thermal barriers to reduce the thermal stress on the surface of the SiC ceramics. However, comparing the microstructure of specimens quenched at Delta T=1300 degrees C and 1400 degrees C, the slight decrease of residual flexural strength at Delta T= 1400 degrees C was due to the formation of large amount of through pores in the oxide layer, which was speculated to be the strength-limiting flaw above 1300 degrees C. (C) 2016 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:采用水淬法研究了以Al2O3和Y2O3为烧结助剂的无压液相烧结SiC陶瓷的热冲击行为,发现温度差在200℃至1400℃之间。发现PLPS的残余抗弯强度当温度差达到600摄氏度时,由于热应力引起的裂纹,SiC迅速降至约100 MPa。当温度差达到1300摄氏度和1400摄氏度时,由于SiO2氧化物层的形成,PLPS SiC的残余挠曲强度增加了,SiO2氧化物层充当了降低SiC陶瓷表面热应力的热障。然而,比较在Delta T = 1300摄氏度和1400摄氏度淬火的试样的微观结构,在Delta T = 1400摄氏度淬火的残余抗弯强度略有下降是由于在氧化物层中形成了大量的通孔,据推测是1300摄氏度以上的强度限制缺陷。(C)2016 Elsevier Ltd和Techna Group Srl版权所有。

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