A Three Dimensional Photoelastic Analysis Of A Ring Reinforced Cylinder Under Internal Pressure PDF Download

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Photoelastic Stress Analysis of Thick-walled Closed-end Cylinders

Photoelastic Stress Analysis of Thick-walled Closed-end Cylinders
Author: Thomas F. MacLaughlin
Publisher:
Total Pages: 23
Release: 1965
Genre:
ISBN:

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A three-dimensional photoelastic stress analysik was conducted on six thick-walled closed-end cylinders subjected to internal pressure loading. The cylinders were approximately similar in design to the breech chamber of a large caliber tank weapon. Maximum octahedral shear stresses were determined in the side wall-end wal juncture of essentially flat-ended cylinders (similar to the actual weapon component) and in hemisphericallyended cylinders. The purpose of the study was to learn more about the stresses in the closed end of the cylinder so that future components of this type may be designed more efficiently with regard to stress and weight. (Author).


A Special Investigation to Develop a General Method for Thee-dimensional Photoelastic Stress Analysis

A Special Investigation to Develop a General Method for Thee-dimensional Photoelastic Stress Analysis
Author: Max Mark Frocht
Publisher:
Total Pages: 70
Release: 1952
Genre: Loads (Mechanics)
ISBN:

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The method of strain measurement after annealing is reviewed and found to be unsatisfactory for the materials available in this country. A new, general method is described for the photoelastic determination of the principal stresses at any point of a general body subjected to arbitrary loads. The method has been applied to a sphere subjected to diametral compressive loads. The results show possibilities of high accuracy.


Nuclear Science Abstracts

Nuclear Science Abstracts
Author:
Publisher:
Total Pages: 1092
Release: 1966
Genre: Nuclear energy
ISBN:

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Photoelasticity

Photoelasticity
Author: M. M. Leven
Publisher: Elsevier
Total Pages: 494
Release: 2013-10-22
Genre: Technology & Engineering
ISBN: 1483158543

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Photoelasticity presents the development of photoelasticity. This book discusses the principle of optical equivalence of stressed isotropic bodies. Organized into 29 chapters, this book begins with an overview of the progress in three-dimensional photoelasticity. This text then summarizes the approximate theoretical analysis by the strain-energy technique and derives the basic equations for the evaluation of P and Q by graphical integration. Other chapters consider the importance of stress concentrations in the domain of strength of materials, particularly where fatigue is present. This book discusses a well the various instructive fractures and indicates that the strength of bakelite is determined by the maximum tensile stresses as computed by advanced methods of stress analysis. The final chapter deals with the two fundamental problems in three-dimensional photoplasticity and explains the general stress-optic law under plastic flow without unloading. This book is a valuable resource for designers as well as mechanical and civil engineers.