The Impact of Plasticizers on the Nature of the Alkali-Silicate Corrosion in Cement Composites

IF 3.1 3区 工程技术 Q2 CONSTRUCTION & BUILDING TECHNOLOGY Buildings Pub Date : 2024-01-10 DOI:10.3390/buildings14010172
Andrey P. Pustovgar, Yury R. Krivoborodov, A. Adamtsevich, A. Elenova, Kseniya A. Butenko, Dmitrii V. Kramerov, Anton M. Bugaev
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Abstract

This research work attempts to reveal the mechanism of alkali corrosion in cement composites in the presence of plasticizers based on polycarboxylates (PCE), naphtha-lene-formaldehydes (SPNF), and lignosulfonates by maintaining a high pH of the liquid phase and additionally containing monovalent alkali earth metals in cement stone, as well as stopping this process by introducing an active mineral additive. ASR is studied by changing the relative strain with time according to ASTM C-1260. Deformation changes were confirmed by SEM and RFA studies of hydration products and ASR in the microstructure. Separate use of PCE plasticizers in the cement composition increases deformation by 50% to the 56th day; the use of SPNF increases deformation by 10% compared with the additive-free composition. The use of PLS reduces the relative deformation by 25%. The introduction of silica fume into cementitious composites containing plasticizers actually stops ASR only for a short time. A reduction in deformation during MC use together with plasticizer based on naphthalene sulfonate and polycarboxylate occurs only when the dosage of MS is increased to 20–30%; at a lower dosage, the effect is negative, which also affects the phase composition of the composites. The introduction of MC increases the value of the relative deformation compared with plasticizer compositions based only on PLS. SEM studies have detected microcracks and dense fine-crystalline silicate gel, which cause deformation changes in cement composite samples. Research has shown that concrete modified with SPNF and PCE at the maximum dosage of MC (30%) has minimal deformation rates and can be used to select optimal concrete compositions. The results of this study could help to minimize risks, prevent unacceptable expansion, and ensure the high quality of concrete and concrete products during their use as part of various nature-modifying additives.
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增塑剂对水泥复合材料中碱硅酸盐腐蚀性质的影响
这项研究工作试图揭示水泥复合材料在聚羧酸盐(PCE)、石脑油-烯-甲醛(SPNF)和木质素磺酸盐等增塑剂存在的情况下发生碱腐蚀的机理,具体方法是在水泥石中保持较高的液相 pH 值并额外添加单价碱土金属,以及通过引入活性矿物添加剂来阻止这一过程。根据 ASTM C-1260 标准,通过随时间变化的相对应变来研究 ASR。通过对微观结构中的水化产物和 ASR 进行 SEM 和 RFA 研究,证实了变形的变化。在水泥成分中单独使用 PCE 增塑剂会使第 56 天的变形量增加 50%;与不含添加剂的成分相比,使用 SPNF 会使变形量增加 10%。使用 PLS 可使相对变形量减少 25%。在含有增塑剂的水泥基复合材料中引入硅灰实际上只能在短时间内阻止 ASR。在 MC 与基于萘磺酸盐和聚羧酸盐的增塑剂一起使用时,只有当 MS 的用量增加到 20-30% 时才会减少变形;用量较低时,效果为负,这也会影响复合材料的相组成。与仅基于 PLS 的增塑剂成分相比,MC 的引入增加了相对变形值。扫描电子显微镜研究发现,微裂缝和致密的细晶硅酸盐凝胶会导致水泥复合材料样品发生变形变化。研究表明,在最大 MC 用量(30%)下使用 SPNF 和 PCE 改性的混凝土变形率最小,可用于选择最佳混凝土成分。这项研究的结果有助于最大限度地降低风险,防止不可接受的膨胀,并确保混凝土和混凝土产品在作为各种改性添加剂的一部分使用时的高质量。
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来源期刊
Buildings
Buildings Multiple-
CiteScore
3.40
自引率
26.30%
发文量
1883
审稿时长
11 weeks
期刊介绍: BUILDINGS content is primarily staff-written and submitted information is evaluated by the editors for its value to the audience. Such information may be used in articles with appropriate attribution to the source. The editorial staff considers information on the following topics: -Issues directed at building owners and facility managers in North America -Issues relevant to existing buildings, including retrofits, maintenance and modernization -Solution-based content, such as tips and tricks -New construction but only with an eye to issues involving maintenance and operation We generally do not review the following topics because these are not relevant to our readers: -Information on the residential market with the exception of multifamily buildings -International news unrelated to the North American market -Real estate market updates or construction updates
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