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Original Articles

Effect of nanosilica particles on the rheological and mechanical properties of cement pastes using polyhydroxyl and polycarboxylate-based superplasticizers

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Pages 2230-2254 | Received 04 Feb 2018, Accepted 09 Jul 2018, Published online: 04 Nov 2018

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Read on this site (2)

Julian D. Puerto Suárez, Juan Lizarazo-Marriaga, Jhon Cárdenas-Pulido, Sandra Liliana Uribe C.Camilo Higuera. (2023) Prediction of the rheological properties of nanosilica blended self-compacting concrete under the influence of a dispersing agent. European Journal of Environmental and Civil Engineering 27:4, pages 1644-1672.
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Quanyue Wen, Fumiya Tanahashi & Masayoshi Fuji. (2022) Evaluating surface smoothness of composite film of well-dispersed silica particles. Surface Engineering 38:7-9, pages 786-796.
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Articles from other publishers (5)

Pengpeng Wen, Zhongjun Feng & Baicun Zheng. (2023) Influence of cationic polymer on the floccule size of cement pastes containing polycarboxylate superplasticizer and Na-bentonite. Korea-Australia Rheology Journal 35:2, pages 105-116.
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Jhon Cardenas-Pulido, Mariana Mosquera, Lina Vanegas & Camilo Higuera. (2022) Advances and current trends on the use of nanosilica in Portland cement-based composites: An overview. Advances and current trends on the use of nanosilica in Portland cement-based composites: An overview.
Lei Qiu, Chunfeng Mao, Jiaqi Zhang, Yanyun Wang, Sujuan Ge, Rundong Wang, Yuzhong Huang & Yuming Zhou. (2022) Preparation and properties of allyl ether-based polycarboxylate superplasticizer with short-branched chains modified by nano-silica. Journal of Chemical Research 46:2, pages 174751982210919.
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Khrystyna Moskalova, Tatiana Lyashenko & Aleksej Aniskin. (2022) Modelling the Relations of Rheological Characteristics with Composition of Plaster Mortar. Materials 15:1, pages 371.
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M. Arsalan Khan, M. Khalid Imam, Kashif Irshad, Hafiz Muhammad Ali, Mohd Abul Hasan & Saiful Islam. (2021) Comparative Overview of the Performance of Cementitious and Non-Cementitious Nanomaterials in Mortar at Normal and Elevated Temperatures. Nanomaterials 11:4, pages 911.
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