n</sub> 對地質聚合物砂漿的初、終凝時間進行表征,并用貫入阻力法的結果進行驗證。結果表明:地質聚合物砂漿的凝結速度會隨著礦粉比的減小而變慢;透射法可以實現(xiàn)對砂漿的全程監(jiān)測,其判定初凝時間的平均誤差為 7.9% ,判定終凝時間的平均誤差為 6.6% ;反射法判定砂漿初凝時間準確度高,其平均誤差為 2.8% ;導波法可以全程監(jiān)測凝結過程,其判定初凝時間的平均誤差為 3.3% ,判定終凝時間的平均誤差為 2.5% 。3種方法中,導波法更適用于監(jiān)測地質聚合物砂漿的凝結過程。-龍源期刊網(wǎng)" />

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地質聚合物砂漿凝結過程的超聲波監(jiān)測

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中圖分類號:TU525.9 文獻標志碼:A 文章編號:2096-6717(2025)03-0210-08

Ultrasonic monitoring coagulation process geopolymer mortar

LONG Shiguo CHEN Jinjie LI Rijin ZHOU Jinyi XU Jitong

Abstract: Geopolymer is a kind green and low-carbon cementing material,and the study the cementation process geopolymer is essential for engineering application.In order to investigate the mechanism geopolymer cementation,five groups geopolymer mortars with different mixture proportions (slag:fly ash) were placed in a special device and monitored them in real time by three ultrasonic inspection methods.The initial and final seting times the geopolymer mortars were characterized by energy reception ratios and verifiedwith the results the penetration resistance method.The results demonstrated that the setting rate the geopolymer mortar slows down with the decrease mixture proportion. The ultrasonic transmission method could realized the whole monitoring mortar.The mean error initial seting time and final setting time ultrasonic transmission method was 7.9% and 6.6% respectively. The reflection method has high accuracy in determining the initial setting time the mortar,and its mean error was 2.8% . The ultrasonic guided wave method could realise the whole monitoring the mortar.The mean eror the initial setting timeand final setting time ultrasonic transmission method was 3.3% and 2.5% respectively. Among the three methods, ultrasonic guided wave method is more suitable for monitoring the coagulation process geopolymer mortar.

Keywords: geopolymer;setting time;ultrasonic transmission method; ultrasonic reflection method; ultrasonic guided wave method;energy receiving ratio

地質聚合物是以含有硅鋁酸鹽活性組分的工業(yè)固體廢棄物為前驅體,在堿激發(fā)劑的作用下制備而成的一種無機膠凝材料[]。(剩余12463字)

monitor