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Hierarchical microstructure of explosive joints: Example of titanium to steel cladding

机译:爆炸接头的层级微观结构:钛到钢包层的示例

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摘要

The microstructure of explosive cladding joints formed among parallel Ti and steel plates was examined by electron microscopy. The bonding interface and the bulk materials around it form pronounced hierarchical microstructures. This hierarchy is characterized by the following features: at the mesoscopic scale of the hierarchy a wavy course of the interface characterizes the interface zone. This microstructure level is formed by heavy plastic shear waves (wavelength « 0.5 mm) which expand within the two metal plates during the explosion parallel to the bonding interface. At the micro-scale range, intermetallic inclusions (size ≈ 100-200 u,m) are formed just behind the wave crests on the steel side as a result of partial melting. Electron diffraction revealed FeTi and metastable Fe_(9.64)Ti(0.36). Most of the observed phases do not appear in the equilibrium Fe-Ti phase diagram. These intermetallic inclusions are often accompanied by micro-cracks of similar dimension. At the smallest hierarchy level we observe a reaction layer of about 100-300 nm thickness consisting of nano-sized grains formed along the entire bonding interface. Within that complex hierarchical micro- and nanostructure, the mesoscopic regime, more precisely the type and brittleness of the intermetallic zones, seems to play the dominant role for the mechanical behavior of the entire compound.
机译:用电子显微镜检查了在平行的钛和钢板之间形成的爆炸性熔覆接头的显微组织。键合界面和周围的块状材料形成明显的分层微观结构。该层次结构具有以下特征:在层次结构的介观尺度上,界面的波浪状路线表征了界面区域。这种微观结构水平是由重塑性剪切波(波长<0.5 mm)形成的,该剪切波在爆炸过程中在两个金属板上平行于粘结界面扩展。在微观范围内,由于部分熔化,在钢侧的波峰后面正形成金属间夹杂物(尺寸≈100-200 u,m)。电子衍射显示出FeTi和亚稳态的Fe_(9.64)Ti(0.36)。大多数观察到的相没有出现在平衡的Fe-Ti相图中。这些金属间夹杂物通常伴有相似尺寸的微裂纹。在最小的层次层次上,我们观察到一个约100-300 nm厚度的反应层,该反应层由沿着整个键合界面形成的纳米级晶粒组成。在这种复杂的分层微观和纳米结构中,介观状态,更确切地说是金属间区域的类型和脆性,似乎对整个化合物的机械性能起着主导作用。

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