Properties of Bulk Sintered Silver As a Function of Porosity | |
Wereszczak, Andrew A1  Vuono, Daniel J1  Wang, Hsin1  Ferber, Mattison K1  Liang, Zhenxian1  | |
[1] ORNL | |
关键词: ELECTRIC CONDUCTIVITY; ELECTRIC MOTORS; ELECTRICAL PROPERTIES; MECHANICAL PROPERTIES; MICROSTRUCTURE; PACKAGING; PERFORMANCE; POROSITY; RELIABILITY; SILVER; SINTERING; TESTING; THERMAL CONDUCTIVITY; THERMAL EXPANSION; THERMODYNAMIC PROPERTIES; | |
DOI : 10.2172/1041433 RP-ID : ORNL/TM-2012/130 PID : OSTI ID: 1041433 Others : Other: 650103000 Others : VT1202000 Others : CEVT022 Others : TRN: US201212%%922 |
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学科分类:材料科学(综合) | |
美国|英语 | |
来源: SciTech Connect | |
【 摘 要 】
This report summarizes a study where various properties of bulk-sintered silver were investigated over a range of porosity. This work was conducted within the National Transportation Research Center's Power Device Packaging project that is part of the DOE Vehicle Technologies Advanced Power Electronics and Electric Motors Program. Sintered silver, as an interconnect material in power electronics, inherently has porosity in its produced structure because of the way it is made. Therefore, interest existed in this study to examine if that porosity affected electrical properties, thermal properties, and mechanical properties because any dependencies could affect the intended function (e.g., thermal transfer, mechanical stress relief, etc.) or reliability of that interconnect layer and alter how its performance is modeled. Disks of bulk-sintered silver were fabricated using different starting silver pastes and different sintering conditions to promote different amounts of porosity. Test coupons were harvested out of the disks to measure electrical resistivity and electrical conductivity, thermal conductivity, coefficient of thermal expansion, elastic modulus, Poisson's ratio, and yield stress. The authors fully recognize that the microstructure of processed bulk silver coupons may indeed not be identical to the microstructure produced in thin (20-50 microns) layers of sintered silver. However, measuring these same properties with such a thin actual structure is very difficult, requires very specialized specimen preparation and unique testing instrumentation, is expensive, and has experimental shortfalls of its own, so the authors concluded that the herein measured responses using processed bulk sintered silver coupons would be sufficient to determine acceptable values of those properties. Almost all the investigated properties of bulk sintered silver changed with porosity content within a range of 3-38% porosity. Electrical resistivity, electrical conductivity, thermal conductivity, elastic modulus, Poisson's ratio, and yield stress all depended on the porosity content in bulk-sintered silver. The only investigated property that was independent of porosity in that range was coefficient of thermal expansion.
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RO201704190002858LZ | 12100KB | download |