Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Multifunctional engineered cementitious composites modified with nanomaterials and their applications: An overview

View through CrossRef
Abstract Due to their advantages such as high tensile strength, low cost of production, easy manufacturing methods, and ease of use, cementitious materials are extensively utilized in the construction industry. The applications of nanomaterials in cementitious materials have been found to enhance their properties. It allows molecular changes to improve the material behaviour and the performance of civil infrastructure structures, including buildings and highways. Owing to the high ductility of polyvinyl alcohol-engineered cementitious composites (ECCs), it was suggested to be used in steel-reinforced structural elements to enhance the strength and ductility of the components. The presence of hybrid fibres provided increased shattering resistance with decreased scabbing, spalling, destruction, and damage zone and better absorption of energy through distributed microcracking. The presence of nanomaterials in ECCs modifies its atomic macroscopic scales, enhancing its mechanical and microstructural properties. The versatile properties of nanomaterials offer immense potential to cementitious composite for structural applications.
Title: Multifunctional engineered cementitious composites modified with nanomaterials and their applications: An overview
Description:
Abstract Due to their advantages such as high tensile strength, low cost of production, easy manufacturing methods, and ease of use, cementitious materials are extensively utilized in the construction industry.
The applications of nanomaterials in cementitious materials have been found to enhance their properties.
It allows molecular changes to improve the material behaviour and the performance of civil infrastructure structures, including buildings and highways.
Owing to the high ductility of polyvinyl alcohol-engineered cementitious composites (ECCs), it was suggested to be used in steel-reinforced structural elements to enhance the strength and ductility of the components.
The presence of hybrid fibres provided increased shattering resistance with decreased scabbing, spalling, destruction, and damage zone and better absorption of energy through distributed microcracking.
The presence of nanomaterials in ECCs modifies its atomic macroscopic scales, enhancing its mechanical and microstructural properties.
The versatile properties of nanomaterials offer immense potential to cementitious composite for structural applications.

Related Results

Multi-physics Design Optimization of Multifunctional Composites
Multi-physics Design Optimization of Multifunctional Composites
The design of multifunctional composites is an arduous task due to the presence of conflicting physical property demands from integrated functions. The realization of successful mu...
Strength Development Characteristics of SBR-Modified Cementitious Mixtures for 3-Demensional Concrete Printing
Strength Development Characteristics of SBR-Modified Cementitious Mixtures for 3-Demensional Concrete Printing
The properties of normal cementitious mixtures currently employed to the construction projects cannot be used to the three-dimensional concrete printing technology. This study expe...
Engineering of composite materials made of epoxy resins modified with recycled fine aggregate
Engineering of composite materials made of epoxy resins modified with recycled fine aggregate
Abstract The paper presents studies performed on polymer-cementitious composite made of epoxy resin coating modified with aggregate and cementitious substrate. Epoxy...
Physico-Mechanical Behaviors of Chemically Treated Natural Fibers Reinforced Hybrid Polypropylene Composites
Physico-Mechanical Behaviors of Chemically Treated Natural Fibers Reinforced Hybrid Polypropylene Composites
The goal of current research is to replace synthetic materials with natural, biodegradable, and renewable ones. Natural fiber composites are extensively studied due to their unique...
Feasibility Study of SBR-Modified Cementitious Mixtures for Use as 3D Additive Construction Materials
Feasibility Study of SBR-Modified Cementitious Mixtures for Use as 3D Additive Construction Materials
The primary purpose of this study was to investigate the feasibility of applying polymeric cementitious materials to three-dimensional additive construction (3DAC). Specifically, s...
Mechanical Properties of GF/CF Hybrid ABS Composite by DFFIM
Mechanical Properties of GF/CF Hybrid ABS Composite by DFFIM
GF reinforced polymer composites to improve the mechanical properties by increasing fiber content, but there is a limit. On the contrary, CF reinforced polymer composites are super...
Compressive properties of self-healing microcapsule-based cementitious composites subjected to freeze-thaw cycles using acoustic emission
Compressive properties of self-healing microcapsule-based cementitious composites subjected to freeze-thaw cycles using acoustic emission
Microcapsule self-healing technology is an effective scheme to improve the durability of cementitious composites. In this paper, the compressive properties of microcapsule-based se...
Advances of hafnium based nanomaterials for cancer theranostics
Advances of hafnium based nanomaterials for cancer theranostics
Hafnium-based nanomaterials (Hf-NMs) have attracted the interest of numerous biomedical researchers by their unique properties. Recent years have witnessed significant advancements...

Back to Top