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    • 2. 发明授权
    • Heat-resistant ultrasonic sensor and installation method thereof
    • 耐热超声波传感器及其安装方法
    • US09304113B2
    • 2016-04-05
    • US13474065
    • 2012-05-17
    • Atsushi BabaYoshinori MushaMasahiro Koike
    • Atsushi BabaYoshinori MushaMasahiro Koike
    • G01H11/08H01L41/22G01N29/22G01N29/24
    • G01N29/228G01N29/245G01N2291/0289Y10T29/42
    • A heat-resistant ultrasonic sensor forms a piezo-electric ceramics film with a thickness of 0.5 mm or smaller and a Curie point of 200° C. or higher on a flexible metal plate. A thin metal film that is an electrode is attached to a top surface of the piezo-electric ceramics film and a metal wire mesh covers the thin metal film and is attached to a top surface of the thin metal film. A core of a heat-resistant coaxial cable is connected to the metal wire mesh at a connection point. The heat-resistant coaxial cable is fixed to the thin metal plate with a metal fixing member that is a ground portion. An electric insulating cover is attached to the thin metal plate and covers the piezo-electric ceramics film, the thin metal film, the metal wire mesh, the connection point, the fixing member, and the core of the coaxial cable.
    • 耐热超声波传感器在柔性金属板上形成厚度为0.5mm以下,居里点为200℃以上的压电陶瓷膜。 作为电极的薄金属膜附着在压电陶瓷膜的上表面,金属丝网覆盖薄金属膜,并附着在金属薄膜的上表面。 耐热同轴电缆的芯线在连接点处连接到金属丝网。 耐热同轴电缆用作为接地部的金属固定部件固定在薄金属板上。 电绝缘盖安装在薄金属板上,覆盖压电陶瓷膜,薄金属膜,金属丝网,连接点,固定件和同轴电缆芯。
    • 3. 发明授权
    • Ultrasonic inspection device and ultrasonic inspection method
    • 超声波检测装置和超声波检测方法
    • US08833168B2
    • 2014-09-16
    • US12974004
    • 2010-12-21
    • So KitazawaNaoyuki KonoAtsushi Baba
    • So KitazawaNaoyuki KonoAtsushi Baba
    • G01N29/06G01N29/44G06T7/00G01N29/26G06T19/00G01S7/52G01S15/89
    • G01N29/069G01N29/262G01N2291/106G01S7/52074G01S15/8993G06T7/001G06T19/00G06T2200/24G06T2207/10136G06T2207/30164
    • An ultrasonic inspection device allows position adjustment of three-dimensional inspection data and shape data to be easily performed on a display screen and allows a defect echo and a shape echo to be quickly identified. A calculator generates the three-dimensional inspection data from waveforms stored in a data storage unit. A three-dimensional display unit displays the three-dimensional inspection data generated by the calculator and the three-dimensional shape data on an object to be inspected. The calculator corrects the relative displayed positions of the three-dimensional inspection data and the three-dimensional shape data on the basis of a coordinate system defined by points and a surface that constitute a part of the three-dimensional shape data displayed by the three-dimensional display unit, and causes the three-dimensional display unit to display the three-dimensional inspection data and the three-dimensional shape data while the three-dimensional inspection data and the three-dimensional shape data overlap each other.
    • 超声波检查装置允许在显示屏幕上容易地执行三维检查数据和形状数据的位置调整,并允许快速识别缺陷回波和形状回波。 计算器从存储在数据存储单元中的波形生成三维检查数据。 三维显示单元将由计算器生成的三维检查数据和关于待检查对象的三维形状数据显示。 基于由构成由三维形状数据显示的三维形状数据的一部分的点和面构成的坐标系,计算器校正三维检查数据和三维形状数据的相对显示位置。 并且在三维检查数据和三维形状数据彼此重叠的同时使三维显示单元显示三维检查数据和三维形状数据。
    • 4. 发明申请
    • BATTERY SOC ESTIMATION DEVICE
    • 电池SOC估计装置
    • US20130297243A1
    • 2013-11-07
    • US13978240
    • 2011-12-01
    • Atsushi BabaShuichi Adachi
    • Atsushi BabaShuichi Adachi
    • G01R31/36
    • G01R31/361B60L11/1861G01R31/3624G01R31/3651H01M10/48H02J7/044Y02T10/7005Y02T10/7044Y02T10/705
    • A battery SoC estimation device includes a discharge-and charge current detection means 1, a terminal-voltage detection means 2, a current-integration SoC estimation means 3, an open-circuit-voltage SoC estimation means 4, an error estimation means 6, and an SoC calculating means 7. The estimation means 3 estimates a current-integration-method SoC (SoCi), calculating variance of current-integration-method SoC based on information on detection accuracy of the detection means 1. The estimation means 4 estimates an open-circuit-voltage-method SoC (SoCv) corresponding to an open circuit voltage value estimated based on a discharge-and-charge current value and a terminal voltage value, using a battery equivalent circuit model. The estimation means 6 estimates an estimate error ni of the current-integration-method SoC based on a difference between the SoCv and the SoCi, variance of the SoCi, and variance of the SoCv. The calculating means 7 calculates SoC of a battery based on the SoCi and the ni.
    • 电池SoC估计装置包括放电和充电电流检测装置1,端子电压检测装置2,电流积分SoC估计装置3,开路电压SoC估计装置4,误差估计装置6, 和SoC计算装置7.估计装置3基于检测装置1的检测精度的信息来估计电流积分法SoC(SoCi),计算电流积分法SoC的方差。估计装置4估计 使用电池等效电路模型对应于基于放电和充电电流值和端子电压值估计的开路电压值的开路电压法SoC(SoCv)。 估计装置6基于SoCv和SoCi之间的差,SoCi的方差和SoCv的方差来估计当前积分方法SoC的估计误差ni。 计算装置7基于SoCi和ni计算电池的SoC。
    • 7. 发明授权
    • Heat exchange system
    • 热交换系统
    • US07021059B2
    • 2006-04-04
    • US10496125
    • 2002-11-01
    • Masashi ShinoharaTsuneo EndohAtsushi Baba
    • Masashi ShinoharaTsuneo EndohAtsushi Baba
    • F01K23/10F01N5/02F02G5/02F28D7/00
    • F01P3/12F01N3/043F01N3/046F01N5/02F01N2240/02F01P3/22F01P2060/16F02G5/02F22B1/1807F28D7/1638F28D21/001F28F1/32Y02E20/363Y02T10/16Y02T10/166Y02T10/20
    • A heat exchange system is provided in which low temperature water from a supply pump (15) is split and supplied to an auxiliary evaporator (17) provided so as to cover an exhaust port (16) extending from a combustion chamber of an internal combustion chamber (E) and to a main evaporator (11) provided downstream of the exhaust port (16). The direction of water flowing through the auxiliary evaporator (17) is parallel to the direction of flow of exhaust gas, and as a result an upstream section of the exhaust port (16), which has a high temperature, can be cooled effectively with low temperature water, and the escape of heat from the upstream section of the exhaust port (16) can be suppressed. The direction of water flowing through the main evaporator (11) is opposite to the direction of flow of exhaust gas, thus ensuring that there is a temperature difference between the water and the exhaust gas along the whole length of the water passage of the main evaporator (11) and enabling the heat exchange efficiency to be improved.
    • 提供了一种热交换系统,其中来自供应泵(15)的低温水被分离并供应到辅助蒸发器(17),所述辅助蒸发器(17)设置成覆盖从内燃机的燃烧室延伸的排气口(16) (E)和设置在排气口(16)下游的主蒸发器(11)。 流经辅助蒸发器(17)的水的方向平行于废气流动的方向,结果可以有效地冷却具有高温度的排气口(16)的上游部分 可以抑制高温水,并且可以抑制来自排气口(16)的上游部分的热量逸出。 流过主蒸发器(11)的水的方向与排气的流动方向相反,从而确保沿着主蒸发器的水通道的整个长度在水和废气之间存在温差 (11),能够提高热交换效率。
    • 8. 发明授权
    • Smectic liquid crystal composition for recording display medium,
recording display medium and use thereof
    • 用于记录显示介质的记录液晶组合物,记录显示介质及其用途
    • US5932137A
    • 1999-08-03
    • US647822
    • 1996-05-15
    • Atsushi BabaWataru SaitoIsa NishiyamaAtsushi Yoshizawa
    • Atsushi BabaWataru SaitoIsa NishiyamaAtsushi Yoshizawa
    • G02F1/1333C09K19/12C09K19/44C09K19/46C09K19/54G02F1/13C09K19/20
    • C09K19/12C09K19/46C09K19/544Y10T428/1036
    • A recording display medium is provided which can offer a high display contrast and is less likely to cause a lowering of contrast or disappearance of display even in low temperature and high temperature regions. A smectic liquid crystal composition, for use in the recording display medium, and use of the recording display medium are also provided. The liquid crystal composition comprises: at least one member selected from the group constituting of compounds represented by the following general formula (I): ##STR1## wherein R.sup.1 represents an alkyl or alkoxy group having 8 to 18 carbon atoms; and at least one member selected from the group consisting of compounds represented by the following general formulae (II) to (VII): ##STR2## wherein R.sup.2, R.sup.4, R.sup.5, and R.sup.6 represent an alkyl group having 2 to 18 carbon atoms, R.sup.3, R.sup.7, R.sup.8, R.sup.9, and R.sup.10 represent an alkyl or alkoxy group having 2 to 18 carbon atoms, and X represents a halogen atom or an alkyl or alkoxy group having 2 to 18 carbon atoms.
    • 提供了能够提供高显示对比度的记录显示介质,并且即使在低温和高温区域中也不太可能引起对比度降低或显示消失。 还提供了用于记录显示介质的近晶液晶组合物和记录显示介质的使用。 液晶组合物包含:选自由以下通式(I)表示的化合物组成的组中的至少一种:其中R1表示碳原子数为8〜18的烷基或烷氧基; 和选自由以下通式(II)至(VII)表示的化合物中的至少一种:其中R 2,R 4,R 5和R 6表示具有2至18个碳原子的烷基,R 3,R 7, R 8,R 9和R 10表示碳原子数2〜18的烷基或烷氧基,X表示卤素原子或碳原子数2〜18的烷基或烷氧基。