A damage accumulating modeling of failure waves in glass under high velocity impact
O347.3%O346.5; The failure wave phenomenon was interpreted in glass media under the high velocity impact with the stress levels below the Hugoniot elastic limit. In view of the plate impact experimental observations a damage-accumulating model predominated by the deviatoric stress impulse was propos...
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Veröffentlicht in: | Applied mathematics and mechanics 2001-09, Vol.22 (9), p.1090-1095 |
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creator | Zhan-fang, Liu Guo-wen, Yao Xian-yi, Zhan |
description | O347.3%O346.5; The failure wave phenomenon was interpreted in glass media under the high velocity impact with the stress levels below the Hugoniot elastic limit. In view of the plate impact experimental observations a damage-accumulating model predominated by the deviatoric stress impulse was proposed while Heaviside function was adopted in the damageaccumulating model to describe the failure delay in the interior of materials. Features of the failure layer and propagation mechanism as well as their dynamic characteristics were further presented. The reduction in failure wave propagation speed is pointed out as the reflected rarefaction waves reflect again from the failure layer boundary. |
doi_str_mv | 10.1007/BF02438328 |
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In view of the plate impact experimental observations a damage-accumulating model predominated by the deviatoric stress impulse was proposed while Heaviside function was adopted in the damageaccumulating model to describe the failure delay in the interior of materials. Features of the failure layer and propagation mechanism as well as their dynamic characteristics were further presented. The reduction in failure wave propagation speed is pointed out as the reflected rarefaction waves reflect again from the failure layer boundary.</abstract><pub>Department of Engineering Mechanics, Chongqing University, Chongqing 400044, P R China</pub><doi>10.1007/BF02438328</doi><tpages>6</tpages></addata></record> |
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title | A damage accumulating modeling of failure waves in glass under high velocity impact |
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