BATTERY MODULE
    1.
    发明申请
    BATTERY MODULE 审中-公开
    电池模块

    公开(公告)号:US20110244296A1

    公开(公告)日:2011-10-06

    申请号:US13074662

    申请日:2011-03-29

    IPC分类号: H01M10/50

    摘要: A battery module (10) has heat absorbers (41) each disposed in an internal space of each of connection portions of the positive and negative electrode terminals (11, 12) so as to be in contact with the connection portion, and wherein at least one of the heat absorbers (41) located closer to a central portion of a multi-cell assembly with respect to the cell stacking direction has a greater volume than at least one of the heat absorbers (41) located closer to a periphery of the multi-cell assembly, and a radiation sheet (42) disposed on a side face of the multi-cell assembly (1P), wherein the radiation sheet (42) covers a current collector-side edge in a side face of the multi-cell assembly (1P) substantially entirely from one end to another end, and the radiation sheet (42) has a tapered shape such as to gradually converge from the current collector-side edge to the opposite side edge toward a central portion of the multi-cell assembly (1P) with respect to a cell stacking direction.

    摘要翻译: 电池模块(10)具有散热器(41),每个都设置在正极和负极端子(11,12)的每个连接部分的内部空间中,以便与连接部分接触,并且其中至少 相对于电池堆叠方向更靠近多电池组件的中心部分的吸热体(41)中的一个具有比位于多个电池组件的周边更靠近的多个吸热体(41)中的至少一个的体积 - 电池组件和设置在多电池组件(1P)的侧面上的辐射片(42),其中辐射片(42)覆盖多电池组件的侧面中的集电器侧边缘 (1P)基本上从一端到另一端,并且所述辐射片(42)具有渐缩形状,以便从所述集电器侧边缘朝向所述多电池组件的中心部分的相对侧边缘逐渐会聚 (1P)相对于电池堆叠方向。

    Single crystal scintillator material, method for producing same, radiation detector and PET system
    7.
    发明授权
    Single crystal scintillator material, method for producing same, radiation detector and PET system 有权
    单晶闪烁体材料,其制造方法,辐射探测器和PET系统

    公开(公告)号:US08455833B2

    公开(公告)日:2013-06-04

    申请号:US13120217

    申请日:2009-09-28

    IPC分类号: G01T1/164

    摘要: A method for producing a single crystal scintillator material according to the present invention includes the steps of: providing a solvent including: at least one element selected from the group consisting of Li, Na, K, Rb and Cs; W and/or Mo; B; and oxygen; melting a Ce compound and a Lu compound that have been mixed with the solvent by heating the mixture to a temperature of 800° C. to 1,350° C.; and growing a single crystal by cooling the compounds melted. The single crystal is represented by the compositional formula (CexLu1-x)BO3, in which the mole fraction x of Ce satisfies 0.0001≦x≦0.05.

    摘要翻译: 根据本发明的单晶闪烁体材料的制造方法包括以下工序:提供溶剂,包括:选自Li,Na,K,Rb和Cs中的至少一种元素; W和/或Mo; B; 和氧气; 通过将混合物加热至800℃至1350℃的温度,使已经与溶剂混合的Ce化合物和Lu化合物熔融; 并通过冷却融化的化合物生长单晶。 单晶由组成式(CexLu1-x)BO3表示,其中Ce的摩尔分数x满足0.0001 @x≤0.05。

    CONTROL APPARATUS FOR AUTOMATIC TRANSMISSION
    8.
    发明申请
    CONTROL APPARATUS FOR AUTOMATIC TRANSMISSION 有权
    自动变速器控制装置

    公开(公告)号:US20120232764A1

    公开(公告)日:2012-09-13

    申请号:US13510533

    申请日:2010-11-19

    IPC分类号: B60W10/06 B60W10/10 F16H59/36

    摘要: In a control apparatus for an automatic transmission, it is configured to calculate a change amount (ΔNC estimation value) of an output rotational speed of the transmission (S10); calculate an average (I phase initial average G) of the change amount of the output rotational speed over a predetermined period of an initial inertia (I) phase of shifting; calculate an average (after-shift average G) of a vehicle acceleration after the completion of the shifting, assuming that the change amount of the output rotational speed indicates the vehicle acceleration G; calculate a difference (I phase initial G) between the average of the change amount of the output rotational speed and the average of the vehicle acceleration; incrementally and decrementally correct the desired value of the transmission torque of the frictional engaging element such that the calculated difference falls within a predetermined range; and control supply of hydraulic pressure to the frictional engaging element such that it becomes the corrected desired value (S14 to S20). With this, since the vehicle acceleration at shifting is estimated and evaluated and based thereon, variation in the transmission torque of the frictional engaging element, etc., is learned, it becomes possible to fully exploit the potential of the frictional engaging element, thereby improving a feel given to the vehicle occupant(s) at shifting.

    摘要翻译: 在自动变速器的控制装置中,构成为计算变速器的输出转速的变化量(&Dgr; NC估计值)(S10)。 计算在初始惯性(I)相位移动的预定周期内的输出转速的变化量的平均值(I相初始平均值G) 假设输出转速的变化量表示车辆加速度G,计算完成变速后的车辆加速度的平均值(变速后平均值G) 计算输出转速的变化量的平均值与车辆加速度的平均值之间的差(I相初始G) 递增地和递减地校正摩擦接合元件的传递扭矩的期望值,使得所计算的差落在预定范围内; 并且控制向摩擦接合元件供应液压以使其成为校正的期望值(S14至S20)。 由此,由于估计和评估了换档时的车辆加速度,并且基于此,学习了摩擦接合元件等的传递扭矩的变化,所以可以充分利用摩擦接合元件的电位,从而改善 给予车辆乘员的转移感觉。