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首页> 外文期刊>Journal of power sources >Effects of thermal cycling and thermal aging on the hermeticity and strength of silver-copper oxide air-brazed seals
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Effects of thermal cycling and thermal aging on the hermeticity and strength of silver-copper oxide air-brazed seals

机译:热循环和热老化对银铜氧化物气钎焊密封性和强度的影响

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摘要

Thermal cycle and exposure tests were conducted on ceramic-to-metal joints prepared by a new sealing technique. Known as reactive air brazing, this joining method is currently being considered for use in sealing various high-temperature solid-state electrochemical devices, including planar solid oxide fuel cells (pSOFC). In order to simulate a typical pSOFC application, test specimens were prepared by joining ceramic anode/electrolyte bilayers to metal washers, of the same composition as the common frame materials employed in pSOFC stacks, using a filler metal composed of 4 mol% CuO in silver. The brazed samples were exposure tested at 750 ℃ for 200, 400, and 800 h in both simulated fuel and air environments and thermally cycled at rapid rate (75℃ min~(-1)) between room temperature and 750℃ for as many as 50 cycles. Subsequent joint strength testing and microstructural analysis indicated that the samples exposure tested in air displayed little degradation with respect to strength, hermeticity, or microstructure out to 800 h of exposure. Those tested in fuel showed no change in rupture strength or loss in hermeticity after 800 h of high-temperature exposure, but did undergo microstructural change due to the dissolution of hydrogen into the silver-based braze material. Air-brazed specimens subjected to rapid thermal cycling exhibited no loss in joint strength or hermeticity, but displayed initial signs of seal delamination along the braze-electrolyte interface after 50 cycles.
机译:对通过新密封技术制备的陶瓷-金属接头进行了热循环和暴露测试。这种接合方法目前被认为是反应空气钎焊,用于密封各种高温固态电化学装置,包括平面固体氧化物燃料电池(pSOFC)。为了模拟典型的pSOFC应用,通过使用由4 mol%CuO的银构成的填充金属,将陶瓷阳极/电解质双层与金属垫圈连接起来制备试样,金属垫圈的组成与pSOFC堆叠中使用的普通框架材料相同。钎焊样品在模拟燃料和空气环境中分别于750℃进行200、400和800 h的暴露测试,并在室温至750℃之间以快速速率(75℃min〜(-1))热循环多达50个循环。随后的联合强度测试和微观结构分析表明,暴露于空气中的样品在暴露800小时后,强度,密封性或微观结构几乎没有降解。在高温下暴露800小时后,在燃料中测试的那些材料没有显示出断裂强度的变化或密封性的损失,但是由于氢溶解在银基钎焊材料中而发生了微观结构的变化。经过快速热循环的气钎焊试样在接头强度或气密性上没有损失,但在50个循环后沿钎焊-电解质界面显示出密封分层的初始迹象。

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