The principle of Saint-Venant postulates that the stress distribution within a structural member does not rely on the precise method of load application except in the vicinity of the load application points. Consider a scenario where loads are centrally applied on two plates. In this case, the plates move toward each other without any rotation. This movement causes the member to contract in length and expand in width and thickness. Uniform deformation across all elements and maintaining straight members and plane sections facilitate a consistent distribution of strains and stresses.
However, when loads are concentrated, the elements close to the application points endure large stresses, while those positioned further away stay largely unaffected. Yet, deformations tend to equalize in the case of elements distant from the ends, leading to a more even distribution of strain and stress. Interestingly, beyond a distance equivalent to the member's width, the stress distribution becomes detached from the mode of load application, a key aspect of Saint-Venant's principle. While applying this principle, it is important to remember that the actual loading and the loading used to calculate the stresses must be statically equivalent. Furthermore, this principle does not apply to computing stresses near the load application points.
章から 18:
Now Playing
Stress and Strain - Axial Loading
546 閲覧数
Stress and Strain - Axial Loading
439 閲覧数
Stress and Strain - Axial Loading
571 閲覧数
Stress and Strain - Axial Loading
608 閲覧数
Stress and Strain - Axial Loading
2.1K 閲覧数
Stress and Strain - Axial Loading
269 閲覧数
Stress and Strain - Axial Loading
344 閲覧数
Stress and Strain - Axial Loading
186 閲覧数
Stress and Strain - Axial Loading
172 閲覧数
Stress and Strain - Axial Loading
153 閲覧数
Stress and Strain - Axial Loading
359 閲覧数
Stress and Strain - Axial Loading
610 閲覧数
Stress and Strain - Axial Loading
138 閲覧数
Stress and Strain - Axial Loading
375 閲覧数
Stress and Strain - Axial Loading
803 閲覧数
See More
Copyright © 2023 MyJoVE Corporation. All rights reserved