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Approximate weight function technique using single-layer potential for a cracked circular disc

✍ Scribed by Hyeong-Yeon Lee; Chang-Sun Hong


Publisher
Elsevier Science
Year
1994
Tongue
English
Weight
693 KB
Volume
14
Category
Article
ISSN
0955-7997

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✦ Synopsis


An efficient weight function technique using the indirect boundary integral method was presented for cracked circular discs. The crack opening displacement field was rcpresentvd by a single layer whose kernel was a modified form of the fundamental solution in elastostatics. The application of a single-layer potential to the weight function method leads to a unique closed-form SIF (stress intensity factor) solution. The solution can be applied to a cracked circular discs with or without an internal hole or opening. For these crack geometries over a wide range of crack ratios, the SIF solution can be applied without any modification.

The calculation procedure of SIFs for the various cracked circular discs using only one analytical sointion is very simple and straightforward. The information necessary in the analysis includes only two or thre~ reference load cases. In most cases the SIF solution using two reference SIFs gives reasonably accurate results while the SIF solution with three reference load cases may be used to improve the solution accuracy of the crack configurations, with an internal opening or hole, compared with the solutions of the available literature.


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On the normalization of wave functions f
✍ Per Olof FrΓΆman πŸ“‚ Article πŸ“… 1974 πŸ› Elsevier Science 🌐 English βš– 478 KB

Simple final formulae are obtained for the normalization factors of wavefunctions for bound states in a one-dimensional, single-well potential, when use is made of certain arbitrary-order phase-integral approximations, which may be modified in a convenient way.