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Thermal shock resistance of a ZrB_2-SiC-graphite composite in low oxygen partial pressure environment

机译:低氧分压环境下ZrB_2-SiC-石墨复合材料的抗热震性

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摘要

The heating rate and size effect on thermal shock resistance of a ZrB_2-SiC-graphite (ZSG) composite was studied by measuring the retention of the flexural strength after rapid resistance heating in a low oxygen partial pressure environment. The residual strength values for the specimen heated in a low oxygen partial pressure of 200 Pa decreased gradually as the temperature increased under high heating rate of 200 °C/s, 300 °C/s and 500 °C/s, and then increased suddenly when the temperature reached 1800 °C. The residual strength values for the specimen with heating rate of 200 °C/s were obviously greater than others and approximate that of the original specimen. At a temperature above 1800 °C, the residual strength decreased again with increasing temperature under different heating rate. Furthermore, the size effect on thermal shock at different temperature was investigated. The experimental results revealed that thermal shock resistance of the ZSG composite was sensitive to the heating rate and size effect. The microstructure of the ZSG composite in different conditions were also presented and analyzed.
机译:通过测量低氧分压环境下快速电阻加热后的挠曲强度保持率,研究了ZrB_2-SiC-石墨(ZSG)复合材料的升温速率和尺寸对耐热冲击性的影响。在200 Pa的低氧分压下加热的样品的残余强度值随着温度在200°C / s,300°C / s和500°C / s的高加热速率下的升高而逐渐降低,然后突然升高温度达到1800°C时。加热速度为200°C / s的试样的残余强度值明显大于其他试样,接近于原始试样。在高于1800°C的温度下,在不同加热速率下,残余强度会随着温度的升高而再次降低。此外,研究了尺寸在不同温度下对热冲击的影响。实验结果表明,ZSG复合材料的耐热冲击性对加热速率和尺寸效应敏感。还介绍并分析了ZSG复合材料在不同条件下的微观结构。

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