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    • 1. 发明申请
    • DEVICE FOR TRANSPORTING PLANAR SOFC STACK
    • 用于运输平面SOFC堆栈的设备
    • US20100096607A1
    • 2010-04-22
    • US12465850
    • 2009-05-14
    • Hung-Hsiang LinRuey-Yi LeeYung-Neng Cheng
    • Hung-Hsiang LinRuey-Yi LeeYung-Neng Cheng
    • B66C23/00
    • B66C1/62B66C1/32B66C23/48
    • A device, adapted for transporting a planar solid oxide fuel cell stack while the SOFC stack is sandwiched between a top plate and a bottom plate, which comprises: a plurality of load units, a lifting unit and a mobile seat. Each of the plural load devices is adapted for exerting a pressure on the SOFC stack. The lifting unit is composed of a joint portion and a plurality of cantilevers. In an exemplary, there is a fixing part arranged at the end of each cantilever while being enabled to connect to the SOFC stack by the bottom thereof. With the aforesaid device, the SOFC stack can be moved out of a high temperature furnace and then into a fuel cell control system smoothly while keeping one's balance without worrying the SOFC stack being damaged or tipping over by collision or losing balance.
    • 一种适于在SOFC堆叠夹在顶板和底板之间传送平面固体氧化物燃料电池堆的装置,其包括:多个负载单元,提升单元和移动座。 多个负载装置中的每一个适于施加在SOFC堆上的压力。 提升单元由接合部和多个悬臂构成。 在示例性的实施例中,存在一个固定部分,其布置在每个悬臂的端部,同时能够通过其底部连接到SOFC堆叠。 利用上述装置,SOFC堆叠可以平稳地移出高温炉,然后进入燃料电池控制系统,同时保持平衡,而不用担心SOFC堆由于碰撞或失去平衡而损坏或翻倒。
    • 3. 发明申请
    • In line height measurement system for planar fuel cell
    • 平面燃料电池线路高度测量系统
    • US20100136375A1
    • 2010-06-03
    • US12326874
    • 2008-12-02
    • YUNG-NENG CHENGRuey-Yi LeeHung-Hsiang Lin
    • YUNG-NENG CHENGRuey-Yi LeeHung-Hsiang Lin
    • H01M8/04
    • H01M8/04313H01M8/12H01M8/243H01M8/2432H01M2008/1293
    • An in-line planar fuel cell height measurement system is mainly composed of a main stand, at least a top platform above a high temperature furnace, a displacement detection unit on the top platform with a central axis connecting to an extension rod that goes downward into the high temperature furnace and contacts the top surface of the cell stack inside the high temperature furnace, a displacement display unit connecting to the displacement detection unit through signal transmission cables, and a data processing unit connecting to the displacement display unit through signal transmission cables, so the displacement detection unit can sense the height change for the cell stack in the high temperature furnace during temperature rise and operation and send out a signal, which can be directly displayed by the displacement display unit and received by a data processing unit for further analysis and storage.
    • 直列式燃料电池高度测量系统主要由主支架,至少在高温炉上方的顶部平台,顶部平台上的位移检测单元组成,中心轴线连接到延伸杆,向下延伸 高温炉与高温炉内的电池堆的顶面接触,通过信号传输电缆连接到位移检测单元的位移显示单元,以及通过信号传输电缆连接到位移显示单元的数据处理单元, 因此位移检测单元可以在温升和运行期间感测高温炉中的电池堆的高度变化,并发出可由位移显示单元直接显示并由数据处理单元接收进一步分析的信号 和存储。
    • 4. 发明授权
    • Device for transporting planar SOFC stack
    • 用于传输平面SOFC堆栈的装置
    • US08146890B2
    • 2012-04-03
    • US12465850
    • 2009-05-14
    • Hung-Hsiang LinRuey-Yi LeeYung-Neng Cheng
    • Hung-Hsiang LinRuey-Yi LeeYung-Neng Cheng
    • B62B3/06
    • B66C1/62B66C1/32B66C23/48
    • A device, adapted for transporting a planar solid oxide fuel cell stack while the SOFC stack is sandwiched between a top plate and a bottom plate, which comprises: a plurality of load units, a lifting unit and a mobile seat. Each of the plural load devices is adapted for exerting a pressure on the SOFC stack. The lifting unit is composed of a joint portion and a plurality of cantilevers. In an exemplary, there is a fixing part arranged at the end of each cantilever while being enabled to connect to the SOFC stack by the bottom thereof. With the aforesaid device, the SOFC stack can be moved out of a high temperature furnace and then into a fuel cell control system smoothly while keeping one's balance without worrying the SOFC stack being damaged or tipping over by collision or losing balance.
    • 一种适于在SOFC堆叠夹在顶板和底板之间传送平面固体氧化物燃料电池堆的装置,其包括:多个负载单元,提升单元和移动座。 多个负载装置中的每一个适于施加在SOFC堆上的压力。 提升单元由接合部和多个悬臂构成。 在示例性的实施例中,存在一个固定部分,其布置在每个悬臂的端部,同时能够通过其底部连接到SOFC堆叠。 利用上述装置,SOFC堆叠可以平稳地移出高温炉,然后进入燃料电池控制系统,同时保持平衡,而不用担心SOFC堆由于碰撞或失去平衡而损坏或翻倒。
    • 5. 发明授权
    • In-line height measurement system for planar fuel cell
    • 平面燃料电池的在线高度测量系统
    • US08486576B2
    • 2013-07-16
    • US12326874
    • 2008-12-02
    • Yung-Neng ChengRuey-Yi LeeHung-Hsiang Lin
    • Yung-Neng ChengRuey-Yi LeeHung-Hsiang Lin
    • H01M8/04G01B7/28
    • H01M8/04313H01M8/12H01M8/243H01M8/2432H01M2008/1293
    • An in-line planar fuel cell height measurement system is mainly composed of a main stand, at least a top platform above a high temperature furnace, a displacement detection unit on the top platform with a central axis connecting to an extension rod that goes downward into the high temperature furnace and contacts the top surface of the cell stack inside the high temperature furnace, a displacement display unit connecting to the displacement detection unit through signal transmission cables, and a data processing unit connecting to the displacement display unit through signal transmission cables, so the displacement detection unit can sense the height change for the cell stack in the high temperature furnace during temperature rise and operation and send out a signal, which can be directly displayed by the displacement display unit and received by a data processing unit for further analysis and storage.
    • 直列式燃料电池高度测量系统主要由主支架,至少在高温炉上方的顶部平台,顶部平台上的位移检测单元组成,中心轴线连接到延伸杆,向下延伸 高温炉与高温炉内的电池堆的顶面接触,通过信号传输电缆连接到位移检测单元的位移显示单元,以及通过信号传输电缆连接到位移显示单元的数据处理单元, 因此位移检测单元可以在温升和运行期间感测高温炉中的电池堆的高度变化,并发出可由位移显示单元直接显示并由数据处理单元接收进一步分析的信号 和存储。
    • 6. 发明授权
    • Load device for SOFC stack and a high-temperature furnace using the same
    • 用于SOFC堆的负载装置和使用其的高温炉
    • US08250929B2
    • 2012-08-28
    • US12465936
    • 2009-05-14
    • Hung-Hsiang LinRuey-Yi LeeYung-Neng Cheng
    • Hung-Hsiang LinRuey-Yi LeeYung-Neng Cheng
    • G01N3/08
    • H01M10/4285H01M8/04305H01M2008/1293
    • A load device for planar solid oxide fuel cell stack comprises: a balance plate, a high-temperature compressed column, a load cell, an elastic member, an equalizing ring, and an actuator. The balance plate is disposed abutted against the fuel cell stack, and the high-temperature compressed column is disposed on the balance plate, and the load cell and the elastic member are arranged at a top portion of the high-temperature compressed column. The actuator, being placed on the equalizing ring, is used for providing a load to the equalizing ring, the load cell, the elastic member and the high-temperature compressed column Thereby, the load exerted by the actuator can be detected from the measurement of the load cell while the relationship between the load variation and performance of the SOFC stack can be read directly or transmitted to an external device for display.
    • 用于平面固体氧化物燃料电池堆的负载装置包括:平衡板,高温压缩柱,称重传感器,弹性构件,均衡环和致动器。 平衡板与燃料电池堆叠配置,高温压缩柱配置在平衡板上,称重传感器和弹性部件配置在高温压缩塔的顶部。 放置在均衡环上的致动器用于向均衡环,称重传感器,弹性构件和高温压缩柱提供负载。由此,可以从测量中检测由致动器施加的负载 负载传感器之间的负载变化和性能之间的关系可以直接读取或传输到外部设备进行显示。
    • 9. 发明申请
    • IN-SITU MONITORING AND CONTROLLING SYSTEM FOR CHEMICAL VESSELS OR TANKS
    • 化学船舶或油罐的现场监测和控制系统
    • US20060011475A1
    • 2006-01-19
    • US10710271
    • 2004-06-30
    • Hung-Hsiang LinKun-Yang LinShun-Li HongYuh-Lang LeeYu-Zen Shen
    • Hung-Hsiang LinKun-Yang LinShun-Li HongYuh-Lang LeeYu-Zen Shen
    • G01N27/26
    • G01N27/205G01N17/00
    • An in-situ and real-time monitoring and controlling system for chemical vessels, tanks, reactors or the like is disclosed. The chemical vessels, tanks, or reactors are employed to contain high-purity corrosive chemicals such as acids, alkaline liquids or the like. The monitoring and controlling system encompasses a vessel including a conductive shell and insulating interior lining coated therein. A robust detection electrode is dipped into the chemical liquid contained by the vessel. The detection electrode is electrically connected to a measurement means such as an ohmmeter that is mounted outside the vessel. The measurement means is further electrically connected to the conductive shell. When the interior lining is pitted due to the chemical attack by the chemical liquid and the chemical liquid contacts the conductive shell, the measurement means promptly receives a corresponding signal. According to one preferred embodiment, the measurement means is further connected to a controller unit that can control a semi-conductor-processing unit.
    • 公开了一种用于化学容器,罐,反应器等的原位和实时监测和控制系统。 使用化学容器,罐或反应器来容纳高纯度的腐蚀性化学物质,如酸,碱性液体等。 监测和控制系统包括一个容器,它包括一个导电壳体和一个涂覆在其中的绝缘内部衬里。 将坚固的检测电极浸入容器所含的化学液体中。 检测电极电连接到诸如安装在容器外部的欧姆计的测量装置。 测量装置进一步电连接到导电外壳。 当内衬由于化学液体的化学侵蚀而引起内部化学液体接触导电外壳时,测量装置会迅速接收相应的信号。 根据一个优选实施例,测量装置进一步连接到可控制半导体处理单元的控制器单元。
    • 10. 发明申请
    • IN-SITU CORROSION CONTROLLING SYSTEM FOR CHEMICAL VESSELS OR TANKS
    • 化工船舶或油罐的现场腐蚀控制系统
    • US20060000711A1
    • 2006-01-05
    • US10907917
    • 2005-04-20
    • Hung-Hsiang LinKun-Yang LinShun-Li HongYuh-Lang LeeYu-Zen Shen
    • Hung-Hsiang LinKun-Yang LinShun-Li HongYuh-Lang LeeYu-Zen Shen
    • G01N27/26
    • G01N27/205G01N17/00
    • An in-situ and real-time corrosion controlling system for chemical vessels, tanks or reactors is disclosed. The chemical vessels, tanks or reactors are employed to contain high-purity corrosive chemicals such as acids, alkaline liquids or the like. The controlling system encompasses a vessel including a conductive shell and insulating interior lining coated therein. A robust detection electrode is dipped into the chemical liquid contained by the vessel. The detection electrode is electrically connected to a measurement means such as an ohmmeter that is mounted outside the vessel. The measurement means is further electrically connected to the conductive shell. When the interior lining is pitted due to the chemical attack by the chemical liquid and the chemical liquid contacts the conductive shell, the measurement means promptly receives a corresponding signal. According to one preferred embodiment, the measurement means is further connected to a controller unit that can control a semiconductor-processing unit.
    • 公开了用于化学容器,罐或反应器的原位和实时腐蚀控制系统。 使用化学容器,罐或反应器来容纳高纯度的腐蚀性化学物质,例如酸,碱性液体等。 该控制系统包括一个容器,该容器包括导电壳体和涂覆在其中的绝缘内衬。 将坚固的检测电极浸入容器所含的化学液体中。 检测电极电连接到诸如安装在容器外部的欧姆计的测量装置。 测量装置进一步电连接到导电外壳。 当内衬由于化学液体的化学侵蚀而引起内部化学液体接触导电外壳时,测量装置会迅速接收相应的信号。 根据一个优选实施例,测量装置还连接到可控制半导体处理单元的控制器单元。