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Numerical Simulation of Heat Evolution of Eco-friendly Blended Portland Cements Using A Multi-Component Hydration Model

机译:基于多组分水化模型的生态友好型硅酸盐水泥热演化过程的数值模拟

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With the development of concrete industry, the necessity for utilizing waste materials and decreasing overall energy consumption is becoming increasingly obvious. Fly ash and granulated blast-furnace slag, which are used as blends of Portland cement, are waste materials produced in electric and energy industry, and concretes made with them can have properties similar to ones made with pure Portland cement at lower cost per unit volume. By using blended Portland cement, both ecology benefit and economic benefit can be achieved.Due to the pozzolanic reaction between calcium hydroxide and blended components, compared with ordinary Portland cement, hydration process of blended Portland cement is more complex. In this paper, based on a multi-component hydration model, a numerical model which can simulate heat evolution process of blended Portland cements is built. The influence of water to cement ratio, curing temperature, particle size distribution of cement paste and blended Portland material, and cement mineral components on heat evolution process is considered. The prediction result agrees well with experiment result.
机译:随着混凝土工业的发展,利用废料和降低总能耗的必要性变得越来越明显。粉煤灰和粒状高炉矿渣用作硅酸盐水泥的掺合物,是电力和能源工业中产生的废料,用它们制成的混凝土可以具有与纯硅酸盐水泥制得的混凝土相似的性能,但单位体积成本较低。通过使用掺合波特兰水泥,既可以实现生态效益,也可以实现经济效益。 由于氢氧化钙与掺合组分之间的火山灰反应,与普通硅酸盐水泥相比,掺合硅酸盐水泥的水化过程更为复杂。在多组分水化模型的基础上,建立了可模拟硅酸盐水泥共混物传热过程的数值模型。考虑了水灰比,固化温度,水泥浆和硅酸盐混合料的粒度分布以及水泥矿物成分对放热过程的影响。预测结果与实验结果吻合良好。

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