Elastic stability and post-buckling behavior of structures
E1373604
UNEXPLORED
"Elastic stability and post-buckling behavior of structures" is a foundational work in structural mechanics that rigorously analyzes how structures lose stability and deform after buckling.
All labels observed (1)
| Label | Occurrences |
|---|---|
| Elastic stability and post-buckling behavior of structures canonical | 1 |
How this entity was disambiguated
This entity first appeared as the object of triple T19393106 — resolving that mention is where its identity was fixed. The disambiguator weighed these candidate entities and picked the highlighted one (or “None”, minting a new entity). This is how homonymy is resolved: the same surface form can point to different entities.
NED1
Entity disambiguation (via context triple)
gpt-5-mini-2025-08-07
Target entity: Elastic stability and post-buckling behavior of structures Context triple: [Warner T. Koiter, notableWork, Elastic stability and post-buckling behavior of structures]
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A.
Computational Methods in Nonlinear Mechanics
Computational Methods in Nonlinear Mechanics is a foundational scholarly work that develops numerical and theoretical techniques for analyzing complex nonlinear mechanical systems, particularly within the framework of computational mechanics and finite element methods.
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B.
“Influence of rotatory inertia and shear on flexural motions of isotropic elastic plates”
“Influence of rotatory inertia and shear on flexural motions of isotropic elastic plates” is a seminal paper by Raymond D. Mindlin that introduced a refined plate theory accounting for shear deformation and rotary inertia effects in elastic plate vibrations.
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C.
Drucker stability postulate in plasticity
The Drucker stability postulate in plasticity is a fundamental criterion in continuum mechanics that asserts stable inelastic material behavior requires non-negative plastic work during any admissible loading path, ensuring physically realistic and stable responses in plasticity models.
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D.
Mindlin plate theory
Mindlin plate theory is a refined mathematical model in structural mechanics that accounts for shear deformation and rotary inertia to more accurately describe the bending behavior of moderately thick plates.
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E.
Timoshenko beam theory
Timoshenko beam theory is a refined structural model that accounts for both shear deformation and rotational inertia in beams, providing more accurate predictions of their behavior than classical Euler–Bernoulli beam theory, especially for short or deep beams.
- F. None of above. chosen
- G. Unsure - the case is ambiguous/there is not enough information to decide.
NED2
Entity disambiguation (via description)
gpt-5-mini-2025-08-07
Target entity: Elastic stability and post-buckling behavior of structures Target entity description: "Elastic stability and post-buckling behavior of structures" is a foundational work in structural mechanics that rigorously analyzes how structures lose stability and deform after buckling.
-
A.
Computational Methods in Nonlinear Mechanics
Computational Methods in Nonlinear Mechanics is a foundational scholarly work that develops numerical and theoretical techniques for analyzing complex nonlinear mechanical systems, particularly within the framework of computational mechanics and finite element methods.
-
B.
“Influence of rotatory inertia and shear on flexural motions of isotropic elastic plates”
“Influence of rotatory inertia and shear on flexural motions of isotropic elastic plates” is a seminal paper by Raymond D. Mindlin that introduced a refined plate theory accounting for shear deformation and rotary inertia effects in elastic plate vibrations.
-
C.
Drucker stability postulate in plasticity
The Drucker stability postulate in plasticity is a fundamental criterion in continuum mechanics that asserts stable inelastic material behavior requires non-negative plastic work during any admissible loading path, ensuring physically realistic and stable responses in plasticity models.
-
D.
Mindlin plate theory
Mindlin plate theory is a refined mathematical model in structural mechanics that accounts for shear deformation and rotary inertia to more accurately describe the bending behavior of moderately thick plates.
-
E.
Timoshenko beam theory
Timoshenko beam theory is a refined structural model that accounts for both shear deformation and rotational inertia in beams, providing more accurate predictions of their behavior than classical Euler–Bernoulli beam theory, especially for short or deep beams.
- F. None of above. chosen
Referenced by (1)
Full triples — surface form annotated when it differs from this entity's canonical label.