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Numerical study of Ti/Al/Mg three-layer plates on the interface behavior in explosive welding

机译:Ti / Al / Mg三层板爆炸焊接界面行为的数值研究

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In this study, a finite element model of the explosive welding process of three-layer plates composed of Ti/Al/Mg was established, and the interfacial behaviors of three-layer plates were researched. We investigated the influences that affect the quality of explosive bonding and explored the influence factors of variable physical parameters in the simulation. The finite difference engineering package AUTODYN with the smoothed particle hydrodynamics method has been used to model the collision in this work. The von Mises strength model was used to describe the behavior of Ti/Al/Mg composite plates. Wave morphology on the Al/Mg interface and straight morphology on the Ti/Al interface were produced in this study; meanwhile, jet phenomenon occurred obviously in the simulation process. The contours of velocity, pressure, shear stress, and effective plastic strain of Ti/Al/Mg were also discussed. The result of X -direction velocity showed a delay in time and location of collision point between the Ti/Al and the Al/Mg interface. The detonation point was the minimum pressure, and the collision point was the maximum pressure compared with other sections. The value of effective plastic strain must exceed a threshold to obtain a good bonding, and the shear stress was of opposite sign in the simulation.
机译:本研究建立了由Ti / Al / Mg组成的三层板爆炸焊接过程的有限元模型,并研究了三层板的界面行为。我们研究了影响爆炸结合质量的因素,并在模拟中探索了可变物理参数的影响因素。在这项工作中,采用了带有差分粒子流体动力学方法的有限差分工程软件包AUTODYN来对碰撞进行建模。 von Mises强度模型用于描述Ti / Al / Mg复合板的行为。在这项研究中,产生了Al / Mg界面上的波形貌和Ti / Al界面上的直形形貌。同时,在模拟过程中喷射现象明显发生。还讨论了Ti / Al / Mg的速度,压力,剪切应力和有效塑性应变等值线。 X方向速度的结果表明Ti / Al和Al / Mg界面之间的时间和碰撞点的位置有所延迟。与其他部分相比,爆炸点是最小压力,碰撞点是最大压力。有效塑性应变的值必须超过阈值才能获得良好的粘结,并且在模拟中剪切应力具有相反的符号。

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