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Mechanical and Microstructural Evaluations of Lightweight Aggregate Geopolymer Concrete before and after Exposed to Elevated Temperatures

机译:轻骨料在高温下的力学和微观结构评估

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摘要

This paper presents the mechanical and microstructural characteristics of a lightweight aggregate geopolymer concrete (LWAGC) synthesized by the alkali-activation of a fly ash source (FA) before and after being exposed to elevated temperatures, ranging from 100 to 800 °C. The results show that the LWAGC unexposed to the elevated temperatures possesses a good strength-to-weight ratio compared with other LWAGCs available in the published literature. The unexposed LWAGC also shows an excellent strength development versus aging times, up to 365 days. For the exposed LWAGC to the elevated temperatures of 100 to 800 °C, the results illustrate that the concretes gain compressive strength after being exposed to elevated temperatures of 100, 200 and 300 °C. Afterward, the strength of the LWAGC started to deteriorate and decrease after being exposed to elevated temperatures of 400 °C, and up to 800 °C. Based on the mechanical strength results of the exposed LWAGCs to elevated temperatures of 100 °C to 800 °C, the relationship between the exposure temperature and the obtained residual compressive strength is statistically analyzed and achieved. In addition, the microstructure investigation of the unexposed LWAGC shows a good bonding between aggregate and mortar at the interface transition zone (ITZ). However, this bonding is subjected to deterioration as the LWAGC is exposed to elevated temperatures of 400, 600 and 800 °C by increasing the microcrack content and swelling of the unreacted silicates.
机译:本文介绍了在暴露于100至800°C的高温前后,通过粉煤灰源(FA)的碱活化而合成的轻质骨料地质聚合物混凝土(LWAGC)的力学和微观结构特征。结果表明,与公开文献中提供的其他LWAGC相比,未暴露于高温的LWAGC具有良好的强度重量比。未暴露的LWAGC相对于老化时间(长达365天)也显示出优异的强度发展。对于暴露的LWAGC暴露于100至800°C的高温,结果表明,混凝土暴露于100、200和300°C的高温后会获得抗压强度。之后,LWAGC的强度在暴露于400°C至800°C的高温后开始变差和降低。根据暴露的LWAGC在100°C至800°C的高温下的机械强度结果,可以统计分析并获得暴露温度与获得的残余抗压强度之间的关系。此外,未暴露的LWAGC的微观结构研究表明,在界面过渡区(ITZ),骨料和砂浆之间具有良好的粘结性。但是,由于LWAGC通过增加微裂纹含量和未反应硅酸盐的溶胀而暴露在400、600和800°C的高温下,因此粘合性会变差。

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