Initiation, propagation and arrest of an interface crack subjected to controlled stress wave loading

被引:0
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作者
Raman P. Singh
Mahesh Kavaturu
Arun Shukla
机构
[1] California Institute of Technology,Graduate Aeronautical Laboratories
[2] Mechanics University of Rhode Island,Dynamic Photomechanics Laboratory, Department of Mechanical Engineering and Applied
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关键词
interface crack; dynamic fracture; stress wave loading; initiation toughness; arrest toughness; dynamic photoelasticity.;
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摘要
An experimental study has been conducted to investigate the initiation, propagation, and arrest of bimaterial interface cracks subjected to controlled stress wave loading in the form of a tensile dilatational stress wave pulse. The tensile pulse is generated by detonating lead azide explosive in a specially designed specimen. Dynamic loading of the bimaterial interface results in crack initiation, propagation, and arrest, all in the same experiment. This failure event is observed using photoelasticity in conjunction with high speed photography. Full field data from the experimentally obtained isochromatic fringe patterns is analyzed to determine time histories of various fracture parameters such as the crack tip speed, the dynamic complex stress intensity factor, the energy release rate, and the mixity. The experimental data is also used to quantify the values of the dynamic initiation and arrest toughness and to evaluate a recently proposed dynamic interface fracture criterion.
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页码:291 / 304
页数:13
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