Influence of substrate compliance on stresses generating stability loss of a delaminated coating

Authors

  • Robert Veniaminovich Goldstein Ishlinsky Institute for Problems in Mechanics RAS
  • Konstantin Borisovich Ustinov Ishlinsky Institute for Problems in Mechanics RAS
  • Aleksandr Viktorovich Chentsov Ishlinsky Institute for Problems in Mechanics RAS

DOI:

https://doi.org/10.7242/1999-6691/2011.4.3.26

Keywords:

coating, delamination, buckling, critical stress, plate, elastic clamping, elastic foundation

Abstract

The problem of stability loss of a coating delaminated from the substrate due to the presence of intrinsic compressive deformations caused, for example, by heating is considered. Analytical and numerical (finite-element) solutions are obtained. The analytical solution is found within the framework of a classical thin plate theory. The two-dimensional problem of stability loss of a plate compressed in its own plane, which simulates a covering, is studied. The plate is bonded to an elastic substrate treated as an infinite elastic body almost everywhere except over a certain delaminated zone. An expression for the critical compressive stress is derived. It is shown that the difference between the obtained critical stress and the critical stress of a rigidly clamped plate can be defined by a single nondimensional parameter, which is a combination of the elastic constants of the coating and substrate, and the ratio of delamination length to coating thickness. Alternative boundary conditions and coating-substrate contact conditions are considered. These results correlate well with the results obtained using the FEM model.

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References

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Published

2011-12-01

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Articles

How to Cite

Goldstein, R. V., Ustinov, K. B., & Chentsov, A. V. (2011). Influence of substrate compliance on stresses generating stability loss of a delaminated coating. Computational Continuum Mechanics, 4(3), 48-57. https://doi.org/10.7242/1999-6691/2011.4.3.26