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Pisma v Zhurnal Tekhnicheskoi Fiziki, 2015 Volume 41, Issue 12, Pages 74–80 (Mi pjtf7753)

This article is cited in 2 papers

Analysis of a two-dimensional symmetric problem on extension of an Al–polyimide–Cu layered structure with a model crack

A. S. Isaeva, B. G. Konoplev, E. A. Ryndin

Southern Federal University, Rostov-on-Don

Abstract: To increase the efficiency of designing systems intended for monitoring surface cracks in aluminum structures during their working life, we have analyzed a two-dimensional symmetric problem on uniaxial extension of an Al–polyimide–Cu layered structure with ideal adhesion between layers and a model crack in the aluminum base. The problem has been first solved for a sample with the crack modeled by a zero-thickness notch using the ANSYS engineering simulation program package. It is shown that this setting of the problem can lead to inadequate results as manifested, in particular, by significantly overstated mechanical stresses in aluminum in the region of crack emergence on the surface. In order to eliminate this difficulty, we propose to use the structure with a model defect in the form of a notch of nonzero thickness in the initial unstressed state of the structure. Recommendations for selecting the thickness of a notch used in the model structure are given.

Received: 20.01.2015


 English version:
Technical Physics Letters, 2015, 41:6, 599–601

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