Characteristic Behavior of In-plane Buckling of Circular Arch Ribs Subjected to Partial Distributed Loading
Sung‐Hoon Kim, Jiho Moon, Ki-Yong Yoon, Hak-Eun Lee
Abstract
Sung‐Hoon Kim, Jiho Moon, Ki-Yong Yoon, Hak-Eun Lee
Abstract
When arch ribs are subjected unsymmetrical load, buckling strength Is lower than strength of arch ribs subjected symmetrical load. However, A few study about the buckling strength of arch ribs subjected unsymmetrical load is performed compare with study about arch ribs subjected symmetrical load. Several researchers(Deutch : 1940, Chang : 1973, Harrison : 1982) studied about arch ribs subjected unsymmetrical load and they found that unsymmetrical loading reduces the critical buckling load. But, their results are limited parabolic arch ribs. This paper focuses on circular arch ribs subjected to unsymmetrical loading. The result shows that the ratio of live and dead load length to cause smallest critical buckling load of arch ribs is under geometric nonlinear condition and under both material and geometrical nonlinear conditions.
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When arch ribs are subjected unsymmetrical load, buckling strength Is lower than strength of arch ribs subjected symmetrical load. However, A few study about the buckling strength of arch ribs subjected unsymmetrical load is performed compare with study about arch ribs subjected symmetrical load. Several researchers(Deutch : 1940, Chang : 1973, Harrison : 1982) studied about arch ribs subjected unsymmetrical load and they found that unsymmetrical loading reduces the critical buckling load. But, their results are limited parabolic arch ribs. This paper focuses on circular arch ribs subjected to unsymmetrical loading. The result shows that the ratio of live and dead load length to cause smallest critical buckling load of arch ribs is under geometric nonlinear condition and under both material and geometrical nonlinear conditions.
Key concepts: Arch, Buckling, Rib cage, Structural engineering, Critical load, Nonlinear system, Materials science, Engineering