Behavior of High-Strength Concrete Under Biaxial Loading

Behavior of High-Strength Concrete Under Biaxial Loading
Author: David W. Fowler
Publisher:
Total Pages: 11
Release: 1986
Genre:
ISBN:

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Research at The University of Texas has been conducted to determine the properties and behavior of plain, high-strength concrete subjected to biaxial-cyclic compression. Static and dynamic tests were performed on a total of 95 specimens which consisted of 5-in. square x 1/2-in. thick plates of concrete. Tests were performed in a biaxial test machine developed at The University of Texas. The primary variables studies were the maximum stress level, expressed as a percent of the uniaxial-static compressive strength, and the biaxial stress ration, expressed as the ratio of the vertical to horizontal stress. Other variables included the stress range and the effect of the moisture content in the material.


Behavior of High-Strength Concrete Under Biaxial Loading
Language: en
Pages: 11
Authors: David W. Fowler
Categories:
Type: BOOK - Published: 1986 - Publisher:

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Research at The University of Texas has been conducted to determine the properties and behavior of plain, high-strength concrete subjected to biaxial-cyclic com
Behaviour of High-strength Concrete Under Biaxial Loading Conditions
Language: en
Pages: 490
Authors: Amgad Ahmed Hussein
Categories: High strength concrete
Type: BOOK - Published: 1998 - Publisher:

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Behaviour of High-strength Concrete Under Biaxial Loading Conditions
Language: en
Pages:
Authors:
Categories:
Type: BOOK - Published: 1998 - Publisher:

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Behavior of high-strength concrete in biaxial compression
Language: en
Pages: 596
Authors: Robert Louie Chen
Categories: Concrete
Type: BOOK - Published: 1984 - Publisher:

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Behavior of a high-strength concrete model subjected to biaxial compression
Language: en
Pages: 164
Authors: Jon Charles Herrin
Categories: Concrete
Type: BOOK - Published: 1982 - Publisher:

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The main purpose of the research project reported herein was to determine the stress-strain behavior, ultimate strength, and failure mechanism of high-strength