The effective thermal conductivity of sintered porous pastes of silver is modeled through two theoretical methods and measured by means of three experimental techniques. The first model is based on the differential effective medium theory and provides a simple analytical description considering the air\u3cbr/\u3epores like ellipsoidal voids of different sizes, while the second one arises from the analysis of the scanning-electron-microscope images of the paste cross-sections through the finite element method. The predictions of both approaches are consistent with each other and show that the reduction of the\u3cbr/\u3ethermal conductivity of porous pastes can be minimized with spherical pores and maximized with pancake-shaped ones, which ar...
International audienceSilver paste sintering is a very promising technology for chip bonding in futu...
International audiencePorous materials are widely used in the electronics industry and biomedical fi...
International audiencePorous materials are widely used in the electronics industry and biomedical fi...
The effective thermal conductivity of sintered porous pastes of silver is modeled through two theore...
The effective thermal conductivity of sintered porous pastes of silver is modeled through two theore...
The effective thermal conductivity of sintered porous pastes of silver is modeled through two theore...
The effective thermal conductivity of sintered porous pastes of silver is modeled through two theore...
The effective thermal conductivity of sintered porous pastes of silver is modeled through two theore...
The thermal conductivity of sintered porous pastes of metals is modelled, based on an analytical and...
The thermal conductivity of sintered porous pastes of metals is modelled, based on an analytical and...
The thermal conductivity of sintered porous pastes of metals is modelled, based on an analytical and...
The thermal conductivity of sintered porous pastes of metals is modelled, based on an analytical and...
The thermal conductivity of sintered porous pastes of metals is modelled, based on an analytical and...
International audienceSilver paste sintering is a very promising technology for chip bonding in futu...
International audienceSilver paste sintering is a very promising technology for chip bonding in futu...
International audienceSilver paste sintering is a very promising technology for chip bonding in futu...
International audiencePorous materials are widely used in the electronics industry and biomedical fi...
International audiencePorous materials are widely used in the electronics industry and biomedical fi...
The effective thermal conductivity of sintered porous pastes of silver is modeled through two theore...
The effective thermal conductivity of sintered porous pastes of silver is modeled through two theore...
The effective thermal conductivity of sintered porous pastes of silver is modeled through two theore...
The effective thermal conductivity of sintered porous pastes of silver is modeled through two theore...
The effective thermal conductivity of sintered porous pastes of silver is modeled through two theore...
The thermal conductivity of sintered porous pastes of metals is modelled, based on an analytical and...
The thermal conductivity of sintered porous pastes of metals is modelled, based on an analytical and...
The thermal conductivity of sintered porous pastes of metals is modelled, based on an analytical and...
The thermal conductivity of sintered porous pastes of metals is modelled, based on an analytical and...
The thermal conductivity of sintered porous pastes of metals is modelled, based on an analytical and...
International audienceSilver paste sintering is a very promising technology for chip bonding in futu...
International audienceSilver paste sintering is a very promising technology for chip bonding in futu...
International audienceSilver paste sintering is a very promising technology for chip bonding in futu...
International audiencePorous materials are widely used in the electronics industry and biomedical fi...
International audiencePorous materials are widely used in the electronics industry and biomedical fi...