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Calculation of the Distribution Rule of Equivalent Strain Rate near Explosive Welding Interface

Calculation of the Distribution Rule of Equivalent Strain Rate near Explosive Welding Interface
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摘要 The objectives of this study were to analyze the distribution of equivalent strain rate near the stagnation point and probe into the effects of colliding angle on strain rate. An ideal fluid model of symmetrically colliding was used to research them. Calculations showed the equivalent strain rate and the colliding half angle are closely related to each other with the material geometrical size and explosive velocity selected, the equivalent strain has large gradient within several jet thicknesses near the stagnation point, the maximal strain points are lined up along a beeline, but a curve near the stagnation point. With different colliding angles, they can be fitted by using exponential curve. That is, the exponential curve can be regarded as the token curve in explosive welding.. The objectives of this study were to analyze the distribution of equivalent strain rate near the stagnation point and probe into the effects of colliding angle on strain rate. An ideal fluid model of symmetrically colliding was used to research them. Calculations showed the equivalent strain rate and the colliding half angle are closely related to each other with the material geometrical size and explosive velocity selected, the equivalent strain has large gradient within several jet thicknesses near the stagnation point, the maximal strain points are lined up along a beeline, but a curve near the stagnation point. With different colliding angles, they can be fitted by using exponential curve. That is, the exponential curve can be regarded as the token curve in explosive welding..
出处 《Journal of Beijing Institute of Technology》 EI CAS 2004年第3期328-330,共3页 北京理工大学学报(英文版)
基金 SponsoredbytheNationalNaturalScienceFoundation ( 19972 0 15 )
关键词 explosive welding explosive welding interface equivalent strain rate explosive welding explosive welding interface equivalent strain rate
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