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二氧化硅纳米颗粒对轻集料混凝土的改性——综述

Modification of Lightweight Aggregate Concretes with Silica Nanoparticles-A Review.

作者信息

Federowicz Karol, Techman Mateusz, Sanytsky Myroslav, Sikora Pawel

机构信息

Faculty of Civil and Environmental Engineering, West Pomeranian University of Technology in Szczecin, al. Piastów 50a, 70-311 Szczecin, Poland.

Department of Building Production, Lviv Polytechnic National University, S. Bandera Str. 12, 79013 Lviv, Ukraine.

出版信息

Materials (Basel). 2021 Jul 29;14(15):4242. doi: 10.3390/ma14154242.

Abstract

The use of lightweight concrete (LWC) for structural and non-structural applications has attracted great interest in recent years. The main benefits include reduced deadload of structural elements and generally lower production and transportation costs. However, a decrease in concrete density often leads to a decrease in strength and durability. Typically, concretes are mostly modified with mineral additives such as silica fume or fly ash. Because of the recent developments in nanotechnology, research attention has turned to the possibility of improving concrete properties with nanomaterials, i.e., nano-SiO. However, there are still certain issues with the dosage and efficiency of nanomaterials. Therefore, in order to establish the current state of knowledge in this field, this review gathers most recent results about the performance of LWC modified with nanomaterials. The review is divided into sections about the influence of nanoparticles on the fresh properties of concrete and their influence on the mechanical and durability characteristics. The paper studies in depth the most common approach to nanomaterials in concrete technology and proposes areas for further development.

摘要

近年来,轻质混凝土(LWC)在结构和非结构应用中的使用引起了极大的关注。其主要优点包括降低结构构件的自重以及通常较低的生产和运输成本。然而,混凝土密度的降低往往会导致强度和耐久性的下降。通常,混凝土大多用硅灰或粉煤灰等矿物添加剂进行改性。由于纳米技术的最新发展,研究重点已转向用纳米材料(即纳米SiO)改善混凝土性能的可能性。然而,纳米材料的用量和效率仍存在某些问题。因此,为了了解该领域的当前知识状况,本综述收集了有关用纳米材料改性的轻质混凝土性能的最新研究结果。该综述分为关于纳米颗粒对混凝土新拌性能的影响及其对力学和耐久性特性的影响的章节。本文深入研究了混凝土技术中使用纳米材料最常见的方法,并提出了进一步发展的领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afbe/8347867/5ca4230d4201/materials-14-04242-g001.jpg

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