During the sintering process, a three-dimensional network-like porous structure forms as the consequences of atom diffusion and neck formation among silver particles. In this paper, two representative types of pressureless sintered silver particles, in, silver nanoparticles (AgNP) and silver microparticles (AgMP), are investigated to reveal the intrinsic correlation between microstructure and constitutive behaviour. The heterogeneous microstructure is found to result in distinguishing differences in terms of morphology and thermal stability. The difference of sintering mechanisms between these two types of silver pastes are observed by a scanning electron microscope and discussed. Regarding thermal stability, the effect of particle size and...
International audienceA silver-based nanoporous material was produced by dealloying (selective chemi...
International audienceProcessing parameters of Spark Plasma Sintering (SPS) technique were constrain...
© 2014 Copyright © Taylor & Francis Group, LLC. The samples of sintered Ag joints for power die at...
During the sintering process, a three-dimensional network-like porous structure forms as the consequ...
SiC microparticles with various weight ratios (0.0, 0.5, 1.0 and 1.5 wt%) are incorporated into sint...
Finite element (FE) simulation is adopted as a fundamental tool to evaluate the mechanical reliabili...
Sintering of Ag nanoparticles (NPs) is increasingly being used as a driving mechanism for joining in...
Silver nanoparticle pastes are promising materials for high temperature interconnection particularly...
Sintering of Ag nanoparticles (NPs) is increasingly being used as a driving mechanism for joining in...
In this paper, the microstructure of Ag nano paste joint was investigated in pressure-less sintering...
For decades soldering has been the technology of choice in die bonding. However, due to worldwide he...
Abstract: We investigated the sintering and consolidation phenomena of silver nanoparticles under va...
International audienceAlong with the need to drastically limit the emission of greenhouse gases, the...
Sintering of Ag nanoparticles (NPs) is increasingly being used as a driving mechanism for joining in...
Nanoindentation experiments were performed at room temperature on pressure-less sintered silver nano...
International audienceA silver-based nanoporous material was produced by dealloying (selective chemi...
International audienceProcessing parameters of Spark Plasma Sintering (SPS) technique were constrain...
© 2014 Copyright © Taylor & Francis Group, LLC. The samples of sintered Ag joints for power die at...
During the sintering process, a three-dimensional network-like porous structure forms as the consequ...
SiC microparticles with various weight ratios (0.0, 0.5, 1.0 and 1.5 wt%) are incorporated into sint...
Finite element (FE) simulation is adopted as a fundamental tool to evaluate the mechanical reliabili...
Sintering of Ag nanoparticles (NPs) is increasingly being used as a driving mechanism for joining in...
Silver nanoparticle pastes are promising materials for high temperature interconnection particularly...
Sintering of Ag nanoparticles (NPs) is increasingly being used as a driving mechanism for joining in...
In this paper, the microstructure of Ag nano paste joint was investigated in pressure-less sintering...
For decades soldering has been the technology of choice in die bonding. However, due to worldwide he...
Abstract: We investigated the sintering and consolidation phenomena of silver nanoparticles under va...
International audienceAlong with the need to drastically limit the emission of greenhouse gases, the...
Sintering of Ag nanoparticles (NPs) is increasingly being used as a driving mechanism for joining in...
Nanoindentation experiments were performed at room temperature on pressure-less sintered silver nano...
International audienceA silver-based nanoporous material was produced by dealloying (selective chemi...
International audienceProcessing parameters of Spark Plasma Sintering (SPS) technique were constrain...
© 2014 Copyright © Taylor & Francis Group, LLC. The samples of sintered Ag joints for power die at...