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首页> 外文期刊>Journal of the European Ceramic Society >Microstructural and mechanical consequences of thermal cycles on a high zirconia fuse-cast refractory
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Microstructural and mechanical consequences of thermal cycles on a high zirconia fuse-cast refractory

机译:高氧化锆熔铸耐火材料上热循环的微观结构和机械后果

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摘要

A qualitative and quantitative study of microstructural evolution and mechanical damage was carried out on a high zirconia fuse-cast refractory containing some intergranular glassy phase during high temperature thermal cycles. Microscopy, X-ray diffraction, resonance frequency and acoustic emission were investigated to relate the microstructural evolution to the damage as function of temperature. A detailed description of the mechanisms responsible for the evolution was achieved and three parameters were clearly identified as contributing to the overall behaviour. The glassy phase above T_g accommodates strains and stresses of the structure and heals some cavities or cracks. The zirconia phase transformation induces both cracking and healing, or closure. The thermal expansion mismatch between zirconia and glass, responsible for stress generation during cooling at low temperature, induces cracking and crack closure during heating. Another surprising observation was the delayed cracking after few days at room temperature resulting in stress relaxation, even on very small specimens. The overall behaviour is in the end not reversible, and this was clearly shown by in situ observation of cracking.
机译:在高温热循环过程中,对含有一些晶间玻璃态相的高氧化锆熔铸耐火材料进行了微观结构演变和机械损伤的定性和定量研究。研究了显微镜,X射线衍射,共振频率和声发射,以将微观结构演变与损伤随温度的变化联系起来。已完成了对负责进化的机制的详细描述,并明确确定了三个参数对总体行为有贡献。 T_g以上的玻璃态相适应了结构的应变和应力,并修复了一些空洞或裂缝。氧化锆相变既引起破裂又引起愈合或闭合。氧化锆和玻璃之间的热膨胀失配是造成低温冷却过程中应力产生的原因,在加热过程中会引起开裂和裂纹闭合。另一个令人惊讶的发现是,即使在非常小的样品上,室温下几天后的开裂也会导致应力松弛。最终的整体行为是不可逆的,这通过开裂的现场观察清楚地表明了。

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