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首页> 外文期刊>Journal of Materials Science >Effects of curing time and temperature on strength development of inorganic polymeric binder based on natural pozzolan
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Effects of curing time and temperature on strength development of inorganic polymeric binder based on natural pozzolan

机译:固化时间和温度对基于天然火山灰的无机聚合物粘结剂强度发展的影响

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摘要

This paper reports the results of a study on the influence of curing conditions on compressive strength development in inorganic polymeric binder prepared from natural pozzolan. Three mixes with different chemical formulations were prepared and cured hydrothermally at different temperatures and times. In particular, the effect of a precuring at an atmosphere of more than 95% relative humidity at room temperature on compressive strength development before the application of heat was studied. Different curing regimes including hydrothermal treatment in steam-saturated atmosphere at different temperatures of 45, 65, 85 °C and for different time periods of 5, 10, 15, and 20 h after 1 and 7 days of precuring were applied. The mix exhibiting the maximum compressive strength after hydrothermal treatment was selected and cured in autoclave at temperatures of 125, 150, 180, and 210 °C for different time periods of 20, 30, 40, and 50 h for investigating the effects of higher times and temperatures of curing on strength development and also to determine the maximum achievable compressive strength. Results show that relatively long precuring in humid atmosphere is very beneficial for compressive strength development. The highest compressive strength achieved for three different regimes of curing including 28 days at an atmosphere of more than 95% relative humidity at 25 °C, 20 h hydrothermal treatment at 85 °C after 1 day precuring, and 20 h hydrothermal treatment at 85 °C after 7 days precuring were 37.5, 37.5, and 57.5 MPa, respectively. The maximum achievable compressive strength under autoclave curing at 210 °C for 30 h after 7 days of precuring was 108.7 MPa.
机译:本文报道了固化条件对天然火山灰制备的无机聚合物粘合剂抗压强度发展影响的研究结果。制备了三种具有不同化学配方的混合物,并在不同的温度和时间水热固化。特别地,研究了在施加热量之前在室温下相对湿度超过95%的气氛中预固化对抗压强度发展的影响。在预固化1天和7天后,采用了不同的固化方式,包括在45、65、85°C的不同温度下,在蒸汽饱和的气氛中进行水热处理以及在5、10、15和20 h的不同时间段内。选择在水热处理后表现出最大抗压强度的混合物,并在高压釜中于125、150、180和210°C的温度下固化20、30、40和50 h的不同时间段,以研究更高时间的影响强度发展过程中的固化温度和温度,以及确定可达到的最大抗压强度。结果表明,在潮湿的环境中进行较长时间的预固化对于提高抗压强度非常有利。在三种不同的固化方式下获得的最高抗压强度,包括在25°C的相对湿度超过95%的气氛中28天,预固化1天后在85°C的温度下进行20 h的水热处理以及在85°C的条件下进行20 h的水热处理预固化7天后的C分别为37.5、37.5和57.5 MPa。预固化7天后,在210°C的高压釜中固化30 h可获得的最大抗压强度为108.7 MPa。

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