Contact Problems in the Classical Theory of Elasticity |
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adhesive Aleksandrov analysis appear applied approximate arbitrary assumed axisymmetric beam body boundary conditions Cauchy Principal Value circle circular complex considered constant contact problems contact region coordinates corresponding cylinder defined denotes derived discussed displacement distribution elastic elastic half-space elastic layer elliptic ends Example expressed Figure finite force foundation function given gives governing half-plane half-space holomorphic indenter infinite infinity integral equations isotropic Keer limiting load mathematical means Mechanics medium method normal Note numerical obtained operator origin particular plane plate polynomial Popov potentials pressed pressure punch radius relation respectively rigid Russian satisfy shear Show shown in Figure singularity Sneddon solution solved stiffener strain stress strip surface symmetric theory of elasticity transforms values wedge write written yields zero ху