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The effects of Nano SiO2 and Silica Fume on the properties of concrete

Tran Faculty of Architecture, Thu Dau Mot University, Binh Duong, Viet Nam|
Vu To-Anh (56396345400) | Huu-Bang (57226857251); Phan Faculty of Civil Engineering, Ton Duc Thang University, Ho Chi Minh, Viet Nam|

Archives of Civil Engineering Số 2, năm 2022 (Tập 68, trang 391-407)

ISSN: 12302945

ISSN: 12302945

DOI:

Tài liệu thuộc danh mục:

Article

English

Từ khóa: Abrasion; Adhesives; Bending strength; Chlorine compounds; Compressive strength; Concretes; Durability; Erosion; Ions; Portland cement; Silica fume; Silicon; Wear resistance; Cement concrete; Cement replacement; Chloride ion penetration; Effectiveness evaluation; Fume concentrations; Mechanical durability; Nano-SiO 2; Portland cement concretes; Properties of concretes; Water-binder ratios; Elastic moduli
Tóm tắt tiếng anh
This study investigates the effects of Nano SiO2 (NS) and Silica fume (SF) on the mechanical properties and durability of Portland cement concrete. On specimens with varying NS and SF concentrations, compressive strength, flexural strength, abrasion resistance, elastic modulus, and chloride ion penetration were all tested. All specimens were subjected to the proposed method/technique cured at the ages of 3, 7, 28, and 60 days. NS particles were added to cement concrete at various replacements of 0, 0.5, 1.0, 1.5, and 2.0% by the mass of the binder. The water/binder ratio has remained at 0.37 for all mixes. Then, for cement-concrete were prepared 45 MPa (C45) with NS and SF. The specimens confirm the new method effectiveness evaluation were prepared under two different categories: (1) Portland cement replacement with NS of 0%, 0.5%, 1.0%, 1.5%, and 2.0%, by weight for adhesives; (2) Portland cement replacement with NS of 0.5%, 1.0% and each NS content in combination with SF of 5%, 10%, and 15%, respectively, by weight for adhesives. The results indicated that the abrasion resistance and Chloride ion penetration of concrete containing NS and SF are improved. Finally, an analytical model for forecasting the Elastic modulus, flexural strength, and compressive strength of cement concrete was established from obtained data. � 2022. Huu-Bang Tran, Vu To-Anh Phan.

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