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Thermal Resistance Variations of Fly Ash Geopolymers: Foaming Responses

机译:粉煤灰地质聚合物的热阻变化:发泡响应

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This paper presents a comparative study of the characteristic of unfoamed and foamed geopolymers after exposure to elevated temperatures (200–800?°C). Unfoamed geopolymers were produced with Class F fly ash and sodium hydroxide and liquid sodium silicate. Porous geopolymers were prepared by foaming with hydrogen peroxide. Unfoamed geopolymers possessed excellent strength of 44.2?MPa and degraded 34% to 15?MPa in foamed geopolymers. The strength of unfoamed geopolymers decreased to 5?MPa with increasing temperature up to 800?°C. Foamed geopolymers behaved differently whereby they deteriorated to 3?MPa at 400?°C and increased up to 11?MPa at 800?°C. Even so, the geopolymers could withstand high temperature without any disintegration and spalling up to 800?°C. The formation of crystalline phases at higher temperature was observed deteriorating the strength of unfoamed geopolymers but enhance the strength of foamed geopolymers. In comparison, foamed geopolymer had better thermal resistance than unfoamed geopolymers as pores provide rooms to counteract the internal damage.
机译:本文介绍了暴露于升高温度(200-800Ω℃)后未发泡和泡沫聚合物特性的对比研究。用F型粉煤灰和氢氧化钠和液体硅酸钠生产不起作用的地质聚合物。通过用过氧化氢发泡来制备多孔的地质聚合物。不起作用的地质聚合物具有优异的44.2μm≤MPa,并在发泡地质聚合物中降解34%至15℃。未发泡地质聚合物的强度降低至5μmHa的温度升高至800Ω·℃。发泡地质聚合物的表现不同,它们在400℃下劣化3?MPa,并在800℃下增加至11μl≤2μm。即便如此,地质聚合物也可以承受高温而没有任何崩解并剥落高达800Ω·℃。观察到在较高温度下形成结晶相的阶段劣化的未发泡地质聚合物的强度,但增强了泡沫地质聚合物的强度。相比之下,由于毛孔提供房间以抵消内部损坏,发泡地质聚合物具有比未发泡的地质聚合物更好的热阻。

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