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    • 1. 发明申请
    • FUEL REFORMING DEVICE
    • 燃油改造装置
    • US20100316532A1
    • 2010-12-16
    • US12867880
    • 2009-02-20
    • Go MotohashiHitoshi MikamiJun IwamotoShinya Ishimaru
    • Go MotohashiHitoshi MikamiJun IwamotoShinya Ishimaru
    • B01J19/00
    • C01B3/386B01D2257/404B01D2258/012C01B2203/0261C01B2203/1047C01B2203/1052C01B2203/1058C01B2203/1064C01B2203/107C01B2203/1609C01B2203/1619C01B2203/169F01N3/0842F01N3/0871F01N2240/30F01N2370/02F01N2610/04F01N2610/05
    • Provided is a fuel reforming device, which can produce and supply a reformed gas in quick response to a demand for the reformed gas and which is so inexpensive as can be suitably mounted on a vehicle. The fuel reforming device feeds a material to a reforming catalyst and produces the reformed gas under a pressure higher than the atmospheric pressure. The fuel reforming device comprises a material supply means for supplying the material to the reforming catalyst, a reforming means having the reforming catalyst, for reforming the material supplied from the material supply means, to produce the reformed gas, and a run control means for controlling the run of the fuel reforming device. The run control means includes a stop mode, in which the drive of the material supply means is stopped to stop the production of the reformed gas, a reform mode, in which the material supply means is driven to produce the reformed gas, and a standby mode, in which the material supply means is driven and in which the temperature of the reforming catalyst is held within a predetermined range while producing the reformed gas as little as possible, so that the standby mode can shift instantly to the reform mode.
    • 提供一种燃料重整装置,其能够快速响应于对重整气体的需求而生产和供应重整气体,并且其可以适当地安装在车辆上如此便宜。 燃料重整装置将材料供给重整催化剂,并在高于大气压的压力下产生重整气体。 燃料重整装置包括用于将材料供给到重整催化剂的材料供给装置,具有重整催化剂的重整装置,用于重整从材料供给装置供给的材料,以产生重整气体;以及运行控制装置,用于控制 燃料重整装置的运行。 运行控制装置包括停止模式,其中物料供给装置的驱动被停止以停止生产重整气体,其中驱动材料供给装置以产生重整气体的改进模式和备用 模式,其中材料供应装置被驱动,并且其中重整催化剂的温度保持在预定范围内,同时尽可能少地制备重整气体,使得待机模式可以立即转换到改型模式。
    • 4. 发明授权
    • Method of and apparatus for tribochemically finishing ceramic workpiece
    • 陶瓷工件的摩擦整理方法和设备
    • US5817245A
    • 1998-10-06
    • US628537
    • 1996-04-10
    • Jun IwamotoYasuhiko Jinbu
    • Jun IwamotoYasuhiko Jinbu
    • B24B1/00B24B7/22B24B37/00B24D5/00
    • B24B1/00B24B7/228
    • An abrasive wheel made of an abrasive which is chemically reactive with a ceramic workpiece and a binder mixed with the abrasive is held against the ceramic workpiece at a temperature ranging from 40.degree. C. to 300.degree. C. preferably 100.degree. C. to 180.degree. C., under at least an atmospheric pressure in a moistening atmosphere within a pressure vessel. The abrasive wheel is rotated in abrading contact with the ceramic workpiece. A surface layer of the ceramic workpiece which is held against the abrasive wheel is mechanically abraded and also subjected to a tribochemical reaction with the abrasive wheel, so that the surface layer of the ceramic workpiece can smoothly and neatly be removed from the ceramic workpiece. The ceramic workpiece thus ground is finished highly accurately and efficiently.
    • 由陶瓷工件和与研磨剂混合的粘合剂与化学反应的磨料制成的研磨轮在40℃至300℃,优选100℃至180℃的温度下保持在陶瓷工件上。 在压力容器内的润湿气氛中至少在大气压下进行。 砂轮与陶瓷工件磨蚀接触而转动。 陶瓷工件的被保持在砂轮上的表面层被机械地磨损,并且与砂轮进行摩擦化学反应,使得陶瓷工件的表面层能够平滑地和整齐地从陶瓷工件移除。 因此,这样研磨的陶瓷工件被精确高效地完成。
    • 6. 发明申请
    • OPTICAL TOUCH DEVICE AND METHOD THEREFOR
    • 光学触摸装置及其方法
    • US20120056853A1
    • 2012-03-08
    • US13219851
    • 2011-08-29
    • Jun Iwamoto
    • Jun Iwamoto
    • G06F3/042
    • G06F3/0421
    • In one embodiment, an optical touch device is disclosed. The device includes a housing having an opening through which a screen is exposed, light-emitting elements provided along a first side of the opening and configured to emit infrared light, and a drive unit configured to sequentially select and drive the light-emitting elements. The device further includes a detection control unit configured to output a timing signal synchronized with the timing of the driving operation of the drive unit and to detect a position of a blocking object on the screen. Further, the device includes light-receiving sensors, provided along a second side of the opening, opposite the first side of the opening, configured to be selected by the timing signal to output to the detection control unit a result of reception of the infrared light, the light-receiving sensors including different kinds of light-receiving sensors differing in a light-receiving characteristic.
    • 在一个实施例中,公开了一种光学触摸装置。 该装置包括具有屏幕露出的开口的壳体,沿着开口的第一侧设置的发光元件,并且被配置为发射红外光;驱动单元,被配置为顺序地选择和驱动发光元件。 该装置还包括检测控制单元,其被配置为输出与驱动单元的驱动操作的定时同步的定时信号,并且检测屏幕上的阻挡对象的位置。 此外,该装置包括沿着开口的第二侧与开口的第一侧相对设置的光接收传感器,其被配置为由定时信号选择,以将接收红外光的结果输出到检测控制单元 光接收传感器包括不同种类的受光特性不同的光接收传感器。
    • 9. 发明申请
    • CONTROL APPARATUS FOR FUEL REFORMER
    • 燃料改造器控制装置
    • US20100324749A1
    • 2010-12-23
    • US12867048
    • 2008-11-13
    • Jun IwamotoHitoshi MikamiGo MotohashiYuji Yasui
    • Jun IwamotoHitoshi MikamiGo MotohashiYuji Yasui
    • G05D23/00
    • C01B3/386C01B2203/0261C01B2203/1041C01B2203/1047C01B2203/1082C01B2203/1604C01B2203/1614C01B2203/1619C01B2203/1623F01N3/035F01N9/00F01N9/005F01N2240/30F01N2610/04F01N2900/1602F01N2900/1631F02D19/0628F02D19/0671F02D41/0027F02D2041/1433F02D2200/0802F02D2200/0804H01M8/0618Y02T10/36Y02T10/47
    • Disclosed is a control apparatus for a fuel reformer, which enables control with consideration of the nonlinearity of the thermal model of a reforming catalyst. An ECU (3) comprises a catalyst temperature sensor (21) for detecting the temperature of a reforming catalyst (11), a catalyst temperature estimation section (32) for estimating the catalyst temperature on the basis of a correlation model relating the catalyst temperature to the catalyst reaction thermal coefficient out of plural parameters by which the reforming reaction of the reforming catalyst (11) is characterized, a controller (30) for controlling the temperature of the reforming catalyst (11) according to the estimated temperature TCAT HAT of the catalyst temperature estimation section (32), and a model correction section (34) for defining plural correction weighting functions W0 to W4 with the catalyst temperature as the domain of definition, calculating plural local correction coefficients KCL0 to KCL4 by which the plural correction weighting functions are to be multiplied, respectively, from the detected temperature TCAT SNS of the catalyst temperature sensor (21) and the estimated temperature TCAT HAT of the catalyst temperature estimation section (32), and correcting the correlation model according to the plural correction weighting functions and local correction coefficients.
    • 公开了一种用于燃料重整器的控制装置,其能够考虑到重整催化剂的热模型的非线性来进行控制。 ECU(3)包括用于检测重整催化剂(11)的温度的催化剂温度传感器(21),催化剂温度推定部(32),用于基于将催化剂温度与 通过重整催化剂(11)的重整反应的多个参数中的催化剂反应热系数的特征在于根据催化剂的估计温度TCAT HAT控制重整催化剂(11)的温度的控制器(30) 温度推定部(32)和模型校正部(34),用于以催化剂温度为界定义多个校正加权函数W0〜W4,计算多个校正加权函数为多个校正系数KCL0〜KCL4 分别从催化剂温度传感器(21)的检测温度TCAT SNS和最小值乘以 催化剂温度估计部(32)的温度TCAT HAT,根据多个校正加权函数和局部校正系数校正相关模型。