Advanced Structured Materials, pages 311-330

Open Circular Hole in a Finite Plate Under Tension Treated by Airy Stress Function Method

Publication typeBook Chapter
Publication date2020-06-03
Quartile SCImago
Quartile WOS
Impact factor
ISSN18698433, 18698441
Abstract
Open circular holes are an essential design feature and are often placed in narrowplates for reasons of limited space raising high stress concentrations. To create lightweight optimal structures precise analysis tools are vital, which can be based on analytical means providing efficient computation. That is why focus of the present paper is the determination of the stress field for the isotropic finite-width open-hole problem under uniform tension using the Airy stress function. This is performed by taking the stress field of corresponding infinite domain problem and supplementing it with auxiliary functions enabling to continuously model traction-free edges. The results are eventually validated against Finite Element analyses.

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Nguyen Hoang M., Becker W. Open Circular Hole in a Finite Plate Under Tension Treated by Airy Stress Function Method // Advanced Structured Materials. 2020. pp. 311-330.
GOST all authors (up to 50) Copy
Nguyen Hoang M., Becker W. Open Circular Hole in a Finite Plate Under Tension Treated by Airy Stress Function Method // Advanced Structured Materials. 2020. pp. 311-330.
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RIS Copy
TY - GENERIC
DO - 10.1007/978-3-030-47491-1_16
UR - https://doi.org/10.1007/978-3-030-47491-1_16
TI - Open Circular Hole in a Finite Plate Under Tension Treated by Airy Stress Function Method
T2 - Advanced Structured Materials
AU - Nguyen Hoang, Minh
AU - Becker, Wilfried
PY - 2020
DA - 2020/06/03 00:00:00
PB - Springer Nature
SP - 311-330
SN - 1869-8433
SN - 1869-8441
ER -
BibTex
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BibTex Copy
@incollection{2020_Nguyen Hoang,
author = {Minh Nguyen Hoang and Wilfried Becker},
title = {Open Circular Hole in a Finite Plate Under Tension Treated by Airy Stress Function Method},
publisher = {Springer Nature},
year = {2020},
pages = {311--330},
month = {jun}
}
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