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首页> 外文期刊>Journal of Materials Research >Characterization of ballistic-ally deformed tungsten [100]-, [111]-, and [110]-oriented single crystal penetrators by optical metallography, x-ray diffraction and transmission electron microscopy
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Characterization of ballistic-ally deformed tungsten [100]-, [111]-, and [110]-oriented single crystal penetrators by optical metallography, x-ray diffraction and transmission electron microscopy

机译:弹道变形钨[100]-,[111]-和[110]取向的单晶穿透物的表征,包括金相,x射线衍射和透射电子显微镜

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摘要

Single-crystal penetrators of tungsten having orientations of [100], [111], and [110] were ballistically deformed into targets of standard armor material and characterized by optical metallography, x-ray diffraction, and transmission electron microscopy (TEM) methods, which showed significant differences in their deformation mechanisms and microstructures corresponding to their deformation performance as measured by the penetration of the target. The [100] single-crystal penetrator, which produced the most energy efficient deformation, provided a new, alternative mechanism for ballistic deformation by forming small single-crystal blocks, defined by {100} oriented cracks, which rotated during extrusion from the interior to the side of the penetrator while maintaining their single crystal integrity. The [111] single-crystal penetrator transferred mass along allowed, high-angle deformation planes to the penetrator's side where a buildup of mass mushroomed the tip until the built-up mass let go along the sides of the penetrator, creating a wavy cavity. The [110] penetrator, which produced the least energy-efficient deformation, has only two allowed deformation planes, cracked and rotated to invoke other deformation planes.
机译:将具有[100],[111]和[110]取向的钨单晶穿透剂弹道变形为标准装甲材料的靶,并通过光学金相,X射线衍射和透射电子显微镜(TEM)对其进行表征,结果表明,在变形机理和微观结构上存在着显着差异,这与通过目标穿透所测得的变形性能相对应。产生最高能效变形的[100]单晶穿透器,通过形成由{100}定向裂纹定义的小型单晶块,提供了一种新的替代弹道变形机制,该单晶块在从内部挤出到内部的过程中旋转在保持其单晶完整性的同时穿透器侧面。 [111]单晶渗透器沿允许的大角度变形平面将质量传递到渗透器的一侧,在此质量的聚集使尖端逐渐蓬松,直到聚集的质量沿渗透器的侧面放开,从而形成波浪形空腔。 [110]穿透器产生的能量效率最低,仅具有两个允许的变形平面,可以裂开并旋转以调用其他变形平面。

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