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High temperature strength of YSZ joints brazed with palladium silver copper oxide filler metals

机译:YSZ接头用钯银铜氧化物钎料钎焊的高温强度

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The Ag-CuO_x system is being investigated as potential filler metals for use in air brazing high temperature electrochemical devices such as solid oxide fuel cells and gas concentrators. The current study examines the effects of palladium addition on the high temperature joint strength of specimens prepared from yttria stabilized zirconia (YSZ) bars brazed with the binary Ag-CuO_x, and 15Pd-Ag-CuO. It was found that while the binary Ag-CuO_x system exhibits stronger room temperature strength than the 15Pd system the strength is reduced to values equivalent of the 15Pd system at 800 ℃. The 15Pd system exhibits a lower ambient temperature strength that is retained at 800 ℃. In both systems the failure mechanism at high temperature appears to be peeling of the noble metal component from the oxide phases and tearing through the noble metal phase whereas sufficient adhesion is retained at lower temperatures to cause fracture of the YSZ substrate.
机译:目前正在研究将Ag-CuO_x系统用作潜在的填充金属,以用于空气钎焊​​高温电化学装置,例如固体氧化物燃料电池和气体浓缩器。当前的研究检查了钯添加对由二元Ag-CuO_x和15Pd-Ag-CuO钎焊的氧化钇稳定氧化锆(YSZ)棒制备的样品的高温接头强度的影响。研究发现,虽然二元Ag-CuO_x体系比15Pd体系表现出更强的室温强度,但在800℃时其强度降低到与15Pd体系相当的值。 15Pd系统表现出较低的环境温度强度,可保持在800℃。在这两个系统中,高温下的失效机理似乎是贵金属组分从氧化物相剥离并撕裂通过贵金属相,而在较低温度下仍保持足够的粘附力,从而导致YSZ基板断裂。

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