Strength Of Masonry Walls Under Compressive And Transverse Loads PDF Download

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Strength of Masonry Walls Under Compressive and Transverse Loads

Strength of Masonry Walls Under Compressive and Transverse Loads
Author: Felix Y. Yokel
Publisher:
Total Pages: 94
Release: 1971
Genre: Concrete walls
ISBN:

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Ninety walls of 10 different types of masonry construction were tested under various combinations of vertical and transverse load. It is shown that the effect of vertical load and wall slenderness on transverse strength can be predicted by rational analysis. The analysis is based on established theory which has been extended to account for the properties of masonry. Similar methods of rational analysis have been adopted for the design of steel structures and are presently being considered for reinforced concrete structures.


Building Science Series

Building Science Series
Author:
Publisher:
Total Pages: 92
Release: 1971-03
Genre: Building
ISBN:

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Structural Masonry

Structural Masonry
Author: Arnold W. Hendry
Publisher: Bloomsbury Publishing
Total Pages: 309
Release: 1998-11-11
Genre: Technology & Engineering
ISBN: 134914827X

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The second edition of this book offers the most comprehensive treatment of structural masonry currently available. The contents include consideration of the basic concepts of stability and safety of masonry structures, the strength of masonry materials in compression, shear and flexure, followed by chapters on composite action, accidental damage, reinforced and prestressed masonry, arches and the testing of materials.


Behavior of Unbounded Post- tensioned Masonry Walls

Behavior of Unbounded Post- tensioned Masonry Walls
Author: Reza Hassanli
Publisher: Springer
Total Pages: 277
Release: 2018-08-07
Genre: Technology & Engineering
ISBN: 331993788X

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This book reports on a comprehensive analytical, experimental and numerical study on the flexural response of post-tensioned masonry walls under in-plane loads. It explores an important mechanism in this new generation of structural walls, called “Self-centering”. This mechanism can reduce residual drifts and structural damage during earthquake ground motion, and is particularly favorable for structures which are designed for immediate occupancy performance levels. The book reports on the development and verification of a finite element model of post-tensioned masonry walls. It describes a detailed parametric study to predict the strength of post-tensioned masonry walls. New design methodologies and expressions are developed to predict the flexural strength and force-displacement response of post-tensioned masonry. Experimental study is carried out to better understand the behavior of post-tensioned masonry walls and also to evaluate the accuracy of the proposed design procedure and expressions. The book also includes an introduction to current research on unbounded post-tensioned masonry walls, together with an extensive analysis of previously published test results.