Stress distribution in elastic disks with a hole under uniaxial compression

Fuente: arXiv
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Autori principali: Okamura, Ken, Sato, Yosuke, Takada, Satoshi
Natura: Preprint
Pubblicazione: 2025
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author Okamura, Ken
Sato, Yosuke
Takada, Satoshi
author_facet Okamura, Ken
Sato, Yosuke
Takada, Satoshi
contents This paper investigates the stress and displacement distribution in a two-dimensional elastic hollow disk subjected to distributed diametric loading, extending our previous analysis of concentrated loading [Okamura et al. Strength Mater. 57, 102-114 (2025)]. The study provides deeper insights into the mechanical behavior of materials such as concrete and rock by examining the effects of load distribution on stress localization and displacement patterns. Using elastodynamic theory, we derive the static stress distributions and identify key differences from the concentrated loading case, particularly in the locations and magnitudes of stress extrema. This work contributes to a more comprehensive understanding of stress behavior in elastic disks under realistic loading conditions.
format Preprint
id arxiv_https___arxiv_org_abs_2505_21984
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Stress distribution in elastic disks with a hole under uniaxial compression
Okamura, Ken
Sato, Yosuke
Takada, Satoshi
Soft Condensed Matter
Classical Physics
This paper investigates the stress and displacement distribution in a two-dimensional elastic hollow disk subjected to distributed diametric loading, extending our previous analysis of concentrated loading [Okamura et al. Strength Mater. 57, 102-114 (2025)]. The study provides deeper insights into the mechanical behavior of materials such as concrete and rock by examining the effects of load distribution on stress localization and displacement patterns. Using elastodynamic theory, we derive the static stress distributions and identify key differences from the concentrated loading case, particularly in the locations and magnitudes of stress extrema. This work contributes to a more comprehensive understanding of stress behavior in elastic disks under realistic loading conditions.
title Stress distribution in elastic disks with a hole under uniaxial compression
topic Soft Condensed Matter
Classical Physics
url https://arxiv.org/abs/2505.21984