Published 2019 | Version v1
Book

Comparison of different models of calculation to evaluate the resistance to compression of the concrete confined with carbon fiber tissues

Description

The resistance of concrete to compression can be increased very importantly by its confinement. The confinement of the concrete by means of the external gluing of high resistance fiber fabrics is a technique that has been known for decades and is increasingly used in reinforcement works of structural elements subjected to compression. Carbon fiber fabrics are commonly used, due to their high strength and high modulus of elasticity. The break of the elements occurs when the tensile fiber fails. There are different models to predict the compressive strength of concrete confined with this type of fabric. In America, the model proposed by the ACI [1] is usually used, while in Europe, the one proposed by the FIB is used [2]. In both models, the strength of the confined concrete is obtained from the geometry and strength of the unconfined concrete and the geometric and mechanical characteristics of the fabric that confines the concrete. However, the expressions used are conceptually different. Table 1 shows the expressions contributed by both associations for circular section elements...

Part of:
IV International Conference on Technological Innovation in Building. Abstracts Book

Additional details

Publishing Information

Publisher
Editorial Universidad Politecnica de Madrid
Imprint Place
Madrid (Spain)
Imprint Title
IV International Conference on Technological Innovation in Building. Abstracts Book
Imprint Pagination
305 p.
Journal Page Range
2 p.

Conference

Title
4. International Conference on Technological Innovation in Building
Acronym
CITE 2019
Dates
6-8 Mar 2019
Place
Madrid (Spain)

INIS

Country of Publication
Spain
Country of Input or Organization
Spain
INIS RN
52025389
Subject category
S54: ENVIRONMENTAL SCIENCES;
Resource subtype / Literary indicator
Conference
Descriptors DEI
BUILDINGS; CONCRETES; CONSTRUCTION; ENGINEERING; MATERIALS
Descriptors DEC
BUILDING MATERIALS; MATERIALS

Optional Information