Hostname: page-component-7bb8b95d7b-495rp Total loading time: 0 Render date: 2024-09-06T14:54:48.153Z Has data issue: false hasContentIssue false

The stability of a strut under thrust, when buckling is resisted by a force proportional to the displacement

Published online by Cambridge University Press:  24 October 2008

S. Goldstein
Affiliation:
St John's College

Extract

For a strut under thrust when buckling is resisted by a force proportional to the displacement, it is shown that for both a clamped and a pinned strut there is stability for any length when the thrust is less than a certain critical value; and the relation is found between the length and the first value of the thrust above this that will give buckling. A notion of the wave-length and number of nodes after buckling is obtained.

The results are applied to the theory of the formation of mountains by horizontal compression, and it is shown that the crust of the earth would be able to transmit, without buckling, stresses right up to the breaking stress across regions of continental extent, unless the depth down to the level of no strain were less than 16 metres.

An attempt is made to employ the results also to consider the stability of solid surface films under compression, and it is seen that other factors, making for stability, must enter besides rigidity and gravity. This is supplied by surface tension, and it then appears that collapse due to a weakness in the film must precede buckling.

A rough calculation is given of the frequency of vibration of an atom in a solid film.

Type
Research Article
Copyright
Copyright © Cambridge Philosophical Society 1926

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

* Prescott, , Applied Elasticity, pp. 82et seq. (1924).Google Scholar

* E.g. Bowie, , J. Franklin Inst. vol. 198, p. 188 (08. 1924).CrossRefGoogle Scholar

* Jeffreys, , Phil. Mag. vol. 32, pp. 583 and 585 (12. 1916).CrossRefGoogle Scholar

* Proc. Roy. Soc. A, vol. 99, p. 336 (1921); vol. 101, p. 452 (1922), etc. References to the two papers mentioned will be given as Part I and Part II.CrossRefGoogle Scholar

Part I.Google Scholar

Part II. p. 458.Google Scholar

* Part II, p. 463.Google Scholar

Part I. p. 340.Google Scholar

Cary, and Rideal, , Proc. Roy. Soc. A, vol. 109. p. 320 (1925).Google Scholar

§ Part I. p. 340.Google Scholar

* Part II, p. 463.Google Scholar

Born, , Dynamik der Kristallgitter, p. 623 (1923).Google Scholar