Based on the basic theory of steady-state creep under multi-dimensional stress state
a steady-state creep stress calculation formula of thick-walled cylinder with fixed outer boundary was derived by the stress-function method under non-uniform internal pressure. The creep stress and stress distribution of several kinds of thick-walled cylinder were analyzed
which showed that the maximal creep stress occurred in the area with the largest stress on the inner boundary of the thick-walled cylinders
increased first and then decreased with the wall thickness
and the largest creep stress was produced when the ratio of outer diameter to internal diameter is 1.58. According to the formula
the steady-state creep stress of oil-film bearing bushing subject to a non-uniform oil-film pressure was analyzed
and the creep process was simulated by using the finite element software in ANSYS
where the creep parameters were obtained based on creep tensile test. Calculation results of the above two methods were analyzed
and the results obtained by the proposed method were coincident well with those by finite element method. This research may provide a theoretical guidance for the structural design of thick-walled cylinders and the analytical calculation of multi-dimensional creep stress.
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references
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