Mohr's circle is a graphical method for identifying the state of stress at a point in a material, making it easier to analyze stress transformations under plane stress conditions. This two-dimensional technique visualizes both normal and shearing stresses on an element.

Consider a set of Cartesian coordinates. The horizontal and vertical axes correspond to normal stress (σ) and shearing stress (τ), respectively. Two points, points A and B, are defined by the normal and shear stresses on the element. The coordinates of point A are located on the plane based on shear and normal stresses on the element. The coordinates of point A are (σx, -τxy), and the coordinates of point B are (σx, τxy). Mohr's circle is created by drawing a line between A and B. Point O, which crosses the horizontal axis, is the center of Mohr's circle. O is exactly halfway between points A and B.

Points X and Y, where the circle intersects the horizontal (normal stress) axis, indicate the maximum and minimum principal stresses. The orientation of these principal planes, denoted by θp, is half the angle between a line from O to point X (the maximum principal stress) and the line connecting points A and B. θp is the angle between the principal plane and the original coordinate system. The radius from O to the highest point of the circle represents the maximum shearing stress.

Mohr's circle offers vital insights into the behavior of materials, highlighting the magnitudes and orientations of principal and shearing stresses, which are essential for structural design and analyzing material failure.

Tags
Mohr s CirclePlane StressStress TransformationNormal StressShearing StressPrincipal StressesGraphical MethodCartesian CoordinatesMaximum Shearing StressMaterial Failure AnalysisStructural Design

From Chapter 23:

article

Now Playing

23.4 : Mohr's Circle for Plane Stress

Transformations of Stress and Strain

144 Views

article

23.1 : Transformation of Plane Stress

Transformations of Stress and Strain

115 Views

article

23.2 : Principal Stresses

Transformations of Stress and Strain

127 Views

article

23.3 : Principal Stresses: Problem Solving

Transformations of Stress and Strain

111 Views

article

23.5 : General State of Stress

Transformations of Stress and Strain

124 Views

article

23.6 : Yield Criteria for Ductile Materials under Plane Stress

Transformations of Stress and Strain

87 Views

article

23.7 : Transformation of Plane Strain

Transformations of Stress and Strain

83 Views

article

23.8 : Mohr's Circle for Plane Strain

Transformations of Stress and Strain

276 Views

article

23.9 : Three-Dimensional Analysis of Strain

Transformations of Stress and Strain

113 Views

article

23.10 : Measurements of Strain

Transformations of Stress and Strain

86 Views

JoVE Logo

Privacy

Terms of Use

Policies

Research

Education

ABOUT JoVE

Copyright © 2025 MyJoVE Corporation. All rights reserved