首页> 外文会议>International Conference on Diffusion in Solids: Past, Present and Future; 20050523-27; Moscow(RU) >Effect of Mechanoactivation on Interfacial Interaction in Metal/Oxide Systems
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Effect of Mechanoactivation on Interfacial Interaction in Metal/Oxide Systems

机译:机械活化对金属/氧化物体系中界面相互作用的影响

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摘要

Properties of interfaces in solid state metal/oxide joints (Al/SiO_2, Al/MgO, Al/glass, Mg/MgO, Mg/SiO_2, In/glass etc.) are reported. The interfaces were formed by plastic deformation of metal on the oxide surface at room temperature. Their structure, chemical composition, and micromechanical properties were studied by the AFM, XRD, SIMS, optical microscopy, and precision microindentation techniques. A noticeable adhesion was observed for metals with high affinity for oxygen and only in the regions of the maximum shear stress. Formation of an interfacial reaction zone with an oxygen concentration gradient is detected. In this zone metals are nanostructured and noticeably hardened. The effect of mechanoactivation is considered as a result of physical and chemical interaction and formation of nanostructures in deformed metal/oxide systems.
机译:报告了固态金属/氧化物接头(Al / SiO_2,Al / MgO,Al /玻璃,Mg / MgO,Mg / SiO_2,In /玻璃等)中界面的性质。通过在室温下金属在氧化物表面上的塑性变形来形成界面。通过AFM,XRD,SIMS,光学显微镜和精密微压痕技术研究了它们的结构,化学成分和微机械性能。对于对氧具有高亲和力且仅在最大剪切应力区域内的金属,观察到明显的粘附力。检测到具有氧浓度梯度的界面反应区的形成。在该区域中,金属被纳米结构化并明显硬化。机械活化的作用被认为是物理和化学相互作用以及在变形的金属/氧化物系统中形成纳米结构的结果。

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