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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Solid solubility in isolated nanometer-sized alloy particles in the Sn-Pb system
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Solid solubility in isolated nanometer-sized alloy particles in the Sn-Pb system

机译:在Sn-Pb系统中在孤立的纳米级合金颗粒中的固溶度

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The finite size effect on both the solid solubility and the thermal expansion coefficient in nanometer-sized lead particles was examined by in-situ transmission electron microscopy. The solid solubility of tin in approximately 12-nm-sized particles of lead at room temperature was evaluated be higher than 30 atomic percent, which is almost ten times higher than that in the corresponding bulk lead. The thermal expansion coefficient of lead increased from 29 x 10(-6) K-1 for bulk to 38 x 10(-6) K-1 when the size of particles decreased from infinity ( bulk) to 16 nanometers. The increment of the thermal expansion coefficient with decreasing size of particles suggests the reduction of the cohesive energy and therefore the reduction of the elastic modulus with decreasing size of particles. It is then considered that the suppression of the strain energy in the solid solution may be responsible for the enhanced solid solubility in nanometer-sized alloy particles.
机译:通过原位透射电子显微镜检查了对纳米级铅颗粒中固溶度和热膨胀系数的大小影响。室温下,锡在大约12纳米大小的铅颗粒中的固溶度被评估为高于30原子百分比,几乎是相应的散装铅中铅的固溶度的十倍。当颗粒尺寸从无穷大(体积)减小到16纳米时,铅的热膨胀系数从29 x 10(-6)K-1(体积)增加到38 x 10(-6)K-1。随着颗粒尺寸的减小,热膨胀系数的增加表明内聚能的减小,因此,随着颗粒尺寸的减小,弹性模量的减小。然后认为,固溶体中应变能的抑制可能是纳米尺寸合金颗粒中固溶度提高的原因。

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