ENERGY-BASED FAILURE CRITERION FOR WOOD

被引:5
|
作者
PHILPOT, TA
FRIDLEY, KJ
ROSOWSKY, DV
机构
[1] WASHINGTON STATE UNIV,DEPT CIVIL & ENVIRONM ENGN,PULLMAN,WA 99164
[2] CLEMSON UNIV,DEPT CIVIL ENGN,CLEMSON,SC 29634
关键词
D O I
10.1061/(ASCE)0899-1561(1994)6:4(578)
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Recent research into the strength of dimension lumber has led to the development of an alternative failure criterion based on the notion of a critical energy density for the material. The strength of wood is known to be related to the duration of an applied load; however, duration-of-load effects cannot be explained within the context of a theoretical failure criterion based solely on stress. Conversely, a theoretical relationship between ultimate stress and load duration can be demonstrated when an energy-based failure criterion is combined with a viscoelastic stress-strain model. In the present paper, the theoretical equations expressing the relationship between ultimate stress and load duration are derived for constant intensity loads. Two related energy-based failure models are proposed and investigated. Using available experimental data as a reference, a numerical experiment is conducted to compare the two energy models with a widely used. damage accumulation model.
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页码:578 / 594
页数:17
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