A Special Vortex Formation at the Ta/Fe Interface During Explosive Welding

Ming Yang, Junfeng Xu, Honghao Ma, Z. Shen, Bingyuan Zhang, J. Tian
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引用次数: 1

Abstract

The vortex at the Ta/Fe explosively welded interface is featured by intermediate zone being fully bounded by Ta matrix, which differs from the vortex structures observed in the most bimetallic interfaces. In this work, advanced characterizations and numerical simulations were integrated to establish a detailed evolution model of the special vortex, and the associated governing mechanisms were identified. It was also inferred that the mesoscale cavity and micro cracks within the vortex resulted from geometric hole and extrusion movement that generated during the vortex evolution, respectively. Furthermore, a diversity of metallurgical structure was revealed at the Ta/Fe interface, which did support the deformation path of the interface material observed in the simulations. The insights gathered here benefit to an in-depth comprehension of impact welding.
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爆炸焊接过程中Ta/Fe界面特殊涡的形成
Ta/Fe爆炸焊接界面处的涡结构不同于大多数双金属界面处的涡结构,其中间区域被Ta基体完全包围。本文将先进的表征和数值模拟相结合,建立了特殊涡的详细演化模型,并确定了相关的控制机制。涡内的中尺度空腔和微裂纹分别是涡演化过程中产生的几何空穴和挤压运动造成的。此外,在Ta/Fe界面处发现了多种金相组织,这支持了模拟中观察到的界面材料的变形路径。这里收集的见解有助于深入理解冲击焊接。
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