首页> 外文OA文献 >Effects Of Hot-Spot Temperature, Microstructure And BaA12O4 Addition On Oxygen Sensing Properties Of REBa2CU3O7-δ(RE=Er, Dy) Ceramic Rods / Misbah Hassan
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Effects Of Hot-Spot Temperature, Microstructure And BaA12O4 Addition On Oxygen Sensing Properties Of REBa2CU3O7-δ(RE=Er, Dy) Ceramic Rods / Misbah Hassan

机译:热点温度,微观结构和BaA12O4添加对REBa2CU3O7-δ(RE = Er,Dy)陶瓷棒/ Misbah Hassan氧传感性能的影响

摘要

Oxygen sensing properties of REBa2Cu3O7-d-based (RE123, RE = Er and Dy) ceramics utilizing the hot spot phenomenon have been investigated. Although shorter rods of around 12 mm are more practical for industrial use compared to previously reported rods longer than 30 mm, their oxygen sensing properties have not been previously reported. Bulk 123 materials were synthesized using the conventional solid-state method and fabricated into short rods of around 12-mm length with cross sectional area of 0.65 mm ´ 0.65 mm. In the first part of this study, influence of hot-spot temperature in the range of 160 °C to 810 °C on oxygen sensing behavior of Er123 rods was studied. Simultaneous measurements of hot-spot temperature and output current response in different oxygen partial pressures between 1 % and 100 % with hot-spots operating at temperatures as low as 660 °C in 1 % oxygen partial pressure produced good sensor current stability as well as repeatability. Response time for oxygen sensing was observed to decrease with increasing hot-spot temperature, with minimum value of 0.50 s recorded at 695 °C in 1 % oxygen partial pressure.
机译:研究了利用热点现象的REBa2Cu3O7-d基(RE123,RE = Er和Dy)陶瓷的氧传感特性。尽管与先前报道的长于30mm的棒相比,约12mm的短棒更适合工业应用,但先前尚未报道其氧感测特性。使用常规的固态方法合成了123块大块材料,并将其制成长度约12 mm的短棒,其横截面积为0.65 mm×0.65 mm。在本研究的第一部分中,研究了热点温度在160°C至810°C范围内对Er123棒的氧传感行为的影响。在1%到100%的低氧温度下,同时在1%和100%之间的不同氧气分压下同时测量热点温度和输出电流响应,可产生良好的传感器电流稳定性和可重复性。观察到氧气感应的响应时间随热点温度的升高而减少,在695°C和1%的氧气分压下记录的最小值为0.50 s。

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    Hassan Misbah;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en
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