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首页> 外文期刊>Applied Nanoscience >Examining microstructural composition of hardened cement paste cured under high temperature and pressure using nanoindentation and 29Si MAS NMR
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Examining microstructural composition of hardened cement paste cured under high temperature and pressure using nanoindentation and 29Si MAS NMR

机译:使用纳米压痕和29Si MAS NMR检查在高温和高压下固化的硬化水泥浆的微观结构组成

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摘要

Microstructural composition of the hardened cement pastes are analyzed using nanoindentation and 29Si MAS NMR after curing time periods of 7 and 28?days. Two curing conditions, room condition (20°C with 0.1?MPa pressure) and an elevated condition (80°C with 10?MPa pressure) are prepared to hydrate cement pastes [water to cement ( w / c ) ratio of 0.45]. The degree of hydration of the cement paste quantified using nanoindentation was compared with that from 29Si MAS NMR. From nanoindentation of the hardened cement pastes, microstructural hydration products are characterized with respect to the corresponding modulus of elasticity. A hydration product, which has a relatively high modulus of elasticity over other known hydration products, was found in the hardened cement paste cured in elevated temperature and pressure. The effect of high pressure on the composition of the hydration product is discussed and it is hypothesized that the packing density of calcium-silicate-hydrate (C-S-H) might increase when a cement paste is hydrated under high temperature and pressure.
机译:固化时间为7天和28天后,使用纳米压痕和 29 Si MAS NMR分析硬化水泥浆的微观结构组成。准备了两种固化条件,即室温条件(20°C,0.1?MPa压力)和高温条件(80°C,10?MPa压力)使水泥浆水合[水与水泥的重量比(w / c)为0.45]。将纳米压痕法定量的水泥浆的水合度与 29 Si MAS NMR的水合度进行了比较。从硬化水泥浆的纳米压痕,就相应的弹性模量表征了微结构水合产物。在高温和高压下固化的硬化水泥浆中发现了一种水合产品,其弹性模量高于其他已知的水合产品。讨论了高压对水合产物组成的影响,并假设当水泥浆在高温和高压下水合时,硅酸钙水合物(C-S-H)的堆积密度可能会增加。

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