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首页> 外文期刊>ACI Materials Journal >Influence of Nanosilica on Physical Salt Attack Resistance of Portland Cement Mortar
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Influence of Nanosilica on Physical Salt Attack Resistance of Portland Cement Mortar

机译:纳米单对波特兰水泥砂浆物理盐攻击性的影响

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The objective of this study was to evaluate the effectiveness of colloidal nanosilica (nS) as a nanomaterial and pozzolanic admixture to mitigate the deteriorative effects of sodium sulfate-based physical salt attack (PSA) on portland cement mortars. Mortar mixtures of an ASTM C150 Type Ⅱ (<8% C_3A) or a Type Ⅴ (<5% C_3A) portland cement were prepared with 0, 3, and 6% cement replacements with either nS or microsilica (mS). Test samples were subjected to 3 years of exposure under a constant or cyclic PSA-conducive environment. The PSA results were supported with additional water absorption, rapid sulfate ion permeability (RSPT), and porosimetry testing. The Type Ⅴ cement mortars containing nS exhibited the most observable scaling and flaking under both conditions of PSA exposure. The addition and increase in cement replacement with nS had a clear detrimental effect to PSA resistance for both cement types and both types of PSA exposure. Results indicated nS reduces permeability and diffusion in mixtures of either cement type which, for PSA, the denser and more refined pore network proved conducive to higher damaging tensile stresses and distress. The larger the measured volume of permeable pore space through absorption, the less susceptible the mortars were to PSA, which is counterproductive to conventional good practice of designing high-durability concrete via reducing permeability and sorption, and increasing a mixture's watertightness.
机译:本研究的目的是评估胶体纳米碱(NS)作为纳米材料和火山灰混合物的有效性,以减轻硫酸钠的物理盐发作(PSA)对波特兰水泥迫击炮的劣化影响。 ASTM C150Ⅱ型(<8%C_3A)的砂浆混合物或ⅴ(<5%C_3A)波特兰水泥用0,3和6%的水泥置换,用NS或MicroLICA(MS)。在恒定或环状PSA - 有利环境下对测试样品进行3年暴露。 PSA结果得到了额外吸水,快速硫酸盐离子渗透率(RSPT)和孔隙率测定试验。含有NS的ⅴ水泥砂浆在PSA暴露的条件下表现出最明显的缩放和剥落。用NS的水泥替代品的添加和增加对水泥类型和两种类型的PSA暴露的抗性对PSA抗性进行了明显的不利影响。结果表明NS降低了多种水泥型混合物中的渗透性和扩散,其对于PSA,密集和更精细的孔网络有利于较高的损害抗拉应力和窘迫。通过吸收的可渗透孔隙空间的测量体积越大,迫击迫使迫击炮越较小,对PSA进行了适得其反,通过降低渗透性和吸附来设计高耐久性混凝土的常规良好做法,并增加混合物的水密性。

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