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Shear Strength of Copper Joints Prepared by Low Temperature Sintering of Silver Nanoparticles

机译:纳米银低温烧结制备铜接头的剪切强度

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摘要

In this work, mechanical properties of Cu-to-Cu joint samples prepared by low temperature sintering of Ag nanoparticle paste have been investigated. The silver nanopaste was prepared by a controlled thermal decomposition of an organometallic precursor. The as-synthesized Ag particles were spherical, with an average diameter of 8.5 nm. The Cu-to-Cu joint samples were made by placing a small amount of Ag nanopaste between two polished Cu plates and sintering at 150C, 200C, 220C and 350C in air. A normal load was applied to aid sintering. Mechanical properties were measured by imposing a uniform stress across the sample bond area and measuring the corresponding strain. The application of external load was found to have a positive effect on the material’s mechanical properties. Furthermore, interestingly high values of shear strength were observed.
机译:在这项工作中,研究了通过低温烧结银纳米粒子糊料制备的铜对铜接头样品的机械性能。通过有机金属前体的受控热分解来制备银纳米糊。合成后的Ag颗粒呈球形,平均直径为8.5 nm。通过在两块抛光的铜板之间放置少量Ag纳米膏并在150°C,200°C,220°C和350°C的空气中烧结,制成Cu-Cu-Cu接头样品。施加正常负载以帮助烧结。通过在样品粘结区域上施加均匀的应力并测量相应的应变来测量机械性能。研究发现,施加外力会对材料的机械性能产生积极影响。此外,观察到有趣的高剪切强度值。

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