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Perturbation method in the problem on a nearly circular hole in an elastic plane. / Bashkankova, E.A.; Vakaeva, A.B.; Grekov, M.A.
в: Mechanics of Solids, Том 50, № 2, 2015, стр. 198-207.Результаты исследований: Научные публикации в периодических изданиях › статья
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TY - JOUR
T1 - Perturbation method in the problem on a nearly circular hole in an elastic plane.
AU - Bashkankova, E.A.
AU - Vakaeva, A.B.
AU - Grekov, M.A.
PY - 2015
Y1 - 2015
N2 - The perturbationmethod is used to construct the solution of the plane elasticity problem for a plane with a curvilinear nearly circular hole. An algorithm for calculating any approximation represented as a Cauchy type integral depending on all preceding approximations is given. The complex potentials of the first approximation are obtained for an elliptic hole and a curvilinear hole whose boundary deviates from the unit circle in the radial direction according to the cosine law. An example of elliptic hole is used to analyze the error in the first approximation of the stress concentration factor by comparing it with the exact solution. The influence of the hole shape on the distribution of circular stresses on the boundary is studied.
AB - The perturbationmethod is used to construct the solution of the plane elasticity problem for a plane with a curvilinear nearly circular hole. An algorithm for calculating any approximation represented as a Cauchy type integral depending on all preceding approximations is given. The complex potentials of the first approximation are obtained for an elliptic hole and a curvilinear hole whose boundary deviates from the unit circle in the radial direction according to the cosine law. An example of elliptic hole is used to analyze the error in the first approximation of the stress concentration factor by comparing it with the exact solution. The influence of the hole shape on the distribution of circular stresses on the boundary is studied.
KW - perturbation method
KW - plane problem
KW - curvilinear hole
KW - stress concentration
U2 - 10.3103/S0025654415020090
DO - 10.3103/S0025654415020090
M3 - Article
VL - 50
SP - 198
EP - 207
JO - Mechanics of Solids
JF - Mechanics of Solids
SN - 0025-6544
IS - 2
ER -
ID: 3942492