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We have fabricated high strength and conductivity Cu-Nb micro-composites by bundling and drawing process. We study the thermal stability of Cu-18vol. %Nb composites for high pulsed magnet use. The evolution of the Nb filaments in the composites during heat treatments is observed by scanning electron microscopy. The mechanism of edge spheroidization and cylinderization phenomenon for Nb filaments is...
We report an effective approach to inhibit the consumption of Cu during multiple reflows of SnAg2.3 solder on Cu. By depositing a very thin layer of the solder on Cu and followed by a 10-min reflow, the scallop-type morphology of the interfacial Cu6Sn5 intermetallic compounds (IMCs) became flat and the channels between them closed up. When additional solder was deposited on the sample and reflowed...
Nowadays, with electronic products tending to become shorter, smaller, lighter, and thinner, solder balls used to join chips and substrates are also downsizing. This may have an adverse effect on the reliability of electronic products. The focus of this study is on the effect of solder volume on the interfacial reactions between Sn-3.5Ag, Sn-3.0Ag-0.5Cu lead-free solder balls and electroless nickel...
This study, mainly emphasis on effects of solder volume on interfacial diffusion kinetics and mechanical properties of Sn/Cu microbump solder joints. Different thicknesses i.e. 12 μm Sn (electrodeposited) and 100 and 200μm Sn is screen printed over 14 μm thickness Cu under bump metallization (UBM). The diameter of Cu UBM used in this study is 50, 110 and 240μm respectively. Solder joints are subjected...
Effect of solidification cooling rate on Ag3Sn formation and its morphological appearance in Sn-Ag based lead-free solder was investigated. Depends on cooling rate, three types of Ag3Sn compound with different morphologies may form by solidification. They are particle-like, needle-like, and platelike respectively. Small particle-like Ag3Sn in large amount was occurred by rapid cooling, where plate...
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