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    • 1. 发明申请
    • CHARGING APPARATUS AND QUALITY JUDGING APPARATUS FOR PACKED BATTERY
    • 充电装置和包装电池的质量判断装置
    • US20100327809A1
    • 2010-12-30
    • US12918735
    • 2008-02-29
    • Hiromi TakaokaShinzo KitamuraToshio Atsuta
    • Hiromi TakaokaShinzo KitamuraToshio Atsuta
    • H02J7/04
    • H02J7/0022G01R31/392H01M10/441H01M10/482
    • A charging apparatus and a quality judging apparatus for a packed battery should be configured to prevent reduction of charging/discharging performance at the time of charging the packed battery, to improve reliability of the packed battery, and to secure safety of the packed battery.A charging controller is provided with a maximum value specifying means specifying a maximum value vmaxon of a cell voltage value based on a dispersion degree σ of a secondary cell, a third judging means judging whether or not the maximum value vmaxon of the cell voltage value, which is specified by the maximum value specifying means, reaches a permissible cell voltage value vc or not, and a charging voltage value change means changing a charging voltage applied by a voltage supply means based on a voltage difference between the maximum value vmaxon of the cell voltage value and the permissible cell voltage value vc when the third judging means judges that the maximum value vmaxon of the cell voltage value is larger than the permissible cell voltage value vc.
    • 为了防止对充电电池进行充电时的充放电性能的降低,为了提高包装电池的可靠性,确保了包装电池的安全性,应该配置充电装置和充电电池的质量判断装置。 充电控制器设置有最大值指定装置,该最大值指定装置基于色散度&sgr来指定单元电压值的最大值vmaxon; 判断由最大值指定单元指定的单元电压值的最大值vmaxon是否达到容许单元电压值vc的第三判定单元,以及充电电压值变更单元 当第三判断装置判定电池电压值的最大值vmaxon较大时,基于电池电压值的最大值vmaxon与容许电池电压值vc之间的电压差来改变由电压供给装置施加的充电电压 比允许的电池电压值vc。
    • 8. 发明授权
    • Method of bonding dissimilar materials
    • 粘合不同材料的方法
    • US4699309A
    • 1987-10-13
    • US868103
    • 1986-05-29
    • Toshio AtsutaTakeshi Yamada
    • Toshio AtsutaTakeshi Yamada
    • B23K20/22B23K20/227B23K20/24B23K20/02
    • B23K20/22B23K20/2275B23K20/24
    • A pair of soft-metal blocks are placed side by side constrainingly on a stationary platen with a space therebetween such that the opposing flank surfaces of the blocks confront each other. Into the space is pressed downward by a movable platen a hard-metal block which has opposing flank surfaces having sharp edges at the lower ends thereof, respectively, the opposing flank surfaces also tapering correspondingly. As the hard-metal block is moved forcibly into the space, the edges operate to pare or peel respective surface layers of the opposing flank surfaces of the soft-metal blocks thereby to create respective fresh surfaces of the soft-metal blocks. The opposing flank surfaces of the hard-metal block are therefore pressed strongly against the fresh surfaces, respectively, as the hard-metal block advances, and strong diffusion welded joints are produced. The method is carried out at elevated temperature.
    • 一对软金属块被约束地并排放置在固定的压板上,其间具有空间,使得块的相对的侧面相对。 通过可移动的压板将空间向下压入具有分别在其下端具有尖锐边缘的相对侧面的硬金属块,相对的侧面也相应地逐渐变细。 当硬金属块被强制地移动到空间中时,边缘用于去除或剥离软金属块的相对侧面的相​​应表面层,从而形成软金属块的相应的新表面。 因此,当硬金属块前进时,硬金属块的相对的侧面分别被强力地压靠在新鲜表面上,并且产生强扩散焊接接头。 该方法在升高的温度下进行。