| The Development of Low-Cost Integrated Composite Seal for SOFC: Materials and Design Methodologies | |
| Huang, Xinyu ; Ridgeway, Kristoffer ; Narasimhan, Srivatsan ; Timin, Serg ; Huang, Wei ; Ozevin, Didem ; Reifsnider, Ken | |
| University of Connecticut | |
| 关键词: Aging; Permeability; 30 Direct Energy Conversion; Acoustics; Thermal Cycling; | |
| DOI : 10.2172/908305 RP-ID : None RP-ID : FC26-04NT42228 RP-ID : 908305 |
|
| 美国|英语 | |
| 来源: UNT Digital Library | |
PDF
|
|
【 摘 要 】
This report summarizes the work conducted by UConn SOFC seal development team during the Phase I program and no cost extension. The work included composite seal sample fabrication, materials characterizations, leak testing, mechanical strength testing, chemical stability study and acoustic-based diagnostic methods. Materials characterization work revealed a set of attractive material properties including low bulk permeability, high electrical resistivity, good mechanical robustness. Composite seal samples made of a number of glasses and metallic fillers were tested for sealing performance under steady state and thermal cycling conditions. Mechanical testing included static strength (pull out) and interfacial fracture toughness measurements. Chemically stability study evaluated composite seal material stability after aging at 800 C for 168 hrs. Acoustic based diagnostic test was conducted to help detect and understand the micro-cracking processes during thermal cycling test. The composite seal concept was successfully demonstrated and a set of material (coating composition & fillers) were identified to have excellent thermal cycling performance.
【 预 览 】
| Files | Size | Format | View |
|---|---|---|---|
| 908305.pdf | 3209KB |
PDF