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Photoemission electron microscopy of oxide fracture at slip steps on metals

机译:金属滑动步骤上氧化物断裂的光电子显微镜

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The surface deformation of metals and the concomitant mechanical behavior of the surface oxide film may be observed simultaneously by photoemission microscopy. This is illustrated by photoemission micrographs of steel and aluminum plastically deformed in either tension or compression. During tensile deformation of both metals the ’’natural’’ thin surface oxide is ruptured by the emerging slip steps. This reveals the bare metal surface of the step itself, which appears on the micrographs as a line of enhanced photoemission (exoelectrons). On the other hand, compressive deformation of ?4% rarely enhances the photoemission, the majority of the slip lines exhibiting only topographical contrast. This difference is related to the geometry of the slip steps as well as to the behavior of the surface oxide. In compression the oxide on aluminum does not fracture at the slip steps, and no exoelectron emission is observed. The oxide on steel clearly does fracture, but few slip steps emit exoelectrons because they are difficult to illuminate.
机译:金属的表面变形和表面氧化膜的伴随的机械行为可以通过光发射显微镜同时观察。钢和铝在拉伸或压缩状态下发生塑性变形的光发射显微照片说明了这一点。在两种金属的拉伸变形过程中,“自然”的薄表面氧化物会因新出现的滑动台阶而破裂。这揭示了台阶本身的裸露金属表面,在显微照片上显示为增强的光发射线(外电子)。另一方面,α4%的压缩变形很少增强光发射,大多数滑移线仅表现出形貌对比。这种差异与滑动台阶的几何形状以及表面氧化物的行为有关。在压缩中,铝上的氧化物不会在打滑步骤中破裂,也没有观察到外电子发射。钢上的氧化物显然会断裂,但是很少有滑动步骤会释放出电子,因为它们很难被照亮。

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    《Journal of Applied Physics 》 |1975年第6期| P.2429-2432| 共4页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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