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Mechanical properties and in situ fracture behavior of SiO_(2f)/phosphate geopolymer composites 被引量:1
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作者 Chang-Qing Yu You-Ran Yu +4 位作者 Ying-Min Zhao pei-gang he Chang-Shou Xu Shuai Fu Zhi-Hua Yang 《Rare Metals》 SCIE EI CAS CSCD 2020年第5期562-569,共8页
Geopolymers,such as phosphate-based geopolymer,are promising materials that have drawn extensive attentions as wave-transparent candidates with low dielectric loss factor.In this paper,multilayer SiO2fibers are introd... Geopolymers,such as phosphate-based geopolymer,are promising materials that have drawn extensive attentions as wave-transparent candidates with low dielectric loss factor.In this paper,multilayer SiO2fibers are introduced into phosphate-based geopolymer matrix to prepare composites.Crack generation and fracture behaviors during the three-point bending tests in as-prepared SiO2f/phosphate geopolymer composites are clarified by in situ observation Before high-temperature treatment,composite with 17 vol%fiber content exhibits the best mechanical properties.A decreasing mechanical strength is observed after being treated at higher temperature,which is attributed to the stronger interface binging between fibers and phosphatebased geopolymer matrix.Most importantly,the presence of SiO2fibers can strengthen mechanical properties of phosphate-based geopolymer matrix but shows negligible impact on its dielectric properties,achieving dielectric loss factor as low as 3.53910-3after being treated at 700°C. 展开更多
关键词 Phosphate-based geopolymer SiO2 fibber In situ observation Fracture behavior Dielectric properties
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