Elastic-plastic deformation of a half-layer with a notch at rigid loading https://doi.org/10.33108/visnyk_tntu2019.04.005
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Abstract
The stress-strain state of an ideally elastic-plastic half-band of finite width with a central section-crack was analyzed. The state of anti-plane deformation is caused by tangential displacements of the strip faces. The elastic-plastic problem was solved and a continual zone of plastic deformations was found. The problem of the development of plastic deformations along the incision in its plane was solved. It is shown that at low loads, the continual plastic zone is shaped like a circle centered on the extension of the section, distant at a distance equal to the radius of the circle from the top of the section. The shape of the plastic zone and the length of the plastic strip are determined on the basis of a linear model of the plastic zone, according to which its characteristics are definite by the stress intensity factor. Load limits for which the linear model of the plastic zone provides sufficient investigation accuracy are established.
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