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Hydrogen bond assisted adhesion in Portland cement-based materials

机译:氢键辅助硅酸盐水泥基材料的粘合

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摘要

Adhesion is a physical-chemical parameter able to render innovations to Portland cement-based materials. However, this concept still lacks experimental evidence to underlie further developments in this subject. This work has demonstrated how distinct substances can impart different adhesion forces after evaluating the hydration degree and the mechanical strength of non-reactive cementitious materials. The substances capable of making tridimensional hydrogen bonds, such as water, for instance, were the most effective in providing cementitious samples with improved bending strength. It implies that water is not only important because of its role in cement hydration, but also because it develops adhesion between hydrated cementitious surfaces. More than speculating the fundamental understanding on adhesion in Portland cement-based materials, the present paper intends to stimulate thinking on how to take the benefits of the water confined between the hydrated cementitious surfaces as an in-built nanoadhesive, so far little explored, but at the same time so prone to yield high performance materials.
机译:附着力是一种物理化学参数,能够对波特兰水泥基材料进行创新。但是,该概念仍然缺乏实验证据来支持该主题的进一步发展。这项工作证明了在评估非反应性胶结材料的水合度和机械强度后,不同的物质如何赋予不同的附着力。例如,能够形成三维氢键的物质(例如水)在提供具有改善的弯曲强度的水泥样品中最有效。这意味着水之所以重要,不仅是因为其在水泥水合作用中的作用,而且还因为它在水合水泥质表面之间形成了附着力。除了推测对波特兰水泥基材料的粘合性的基本理解之外,本文还打算激发人们思考如何利用水合水泥质表面之间的水分作为内置纳米粘合剂的好处,到目前为止尚未进行探索,但是同时容易产生高性能材料。

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