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    • 1. 发明申请
    • Hand Grip Member With Electric Heater
    • 电加热器手握部件
    • US20090194518A1
    • 2009-08-06
    • US12088543
    • 2006-09-29
    • Satoru FujiwaraKouzou SasakiYuichi Fukuda
    • Satoru FujiwaraKouzou SasakiYuichi Fukuda
    • B60L1/02
    • B62J33/00B62K21/26H05B3/46Y10T74/20828
    • A handle grip member with electric heater can be produced in high yield through simple processing not using any core of synthetic resin and avoiding molding operation. Depressed groove (4) is spirally provided on an external surface of inner part (1) of rubber, and multiple ribs (5) are provided on an internal surface thereof along the direction of length. Electric heater (7) of tape-shaped metal conductor is implanted in the depressed groove (4), and fixed. Electric wires (8a,8b) are connected to two ends of the electric heater (7) and drawn out. The inner part (1) is inserted in outer part (9) of rubber tube, and the outer part (9) is fixed to the inner part (1) with the use of an adhesive, etc.
    • 具有电加热器的把手部件可以通过简单的加工而不用任何合成树脂芯并且避免成型操作而以高产率生产。 凹槽(4)螺旋地设置在橡胶的内部部分(1)的外表面上,并且沿其长度方向在其内表面上设置多个肋(5)。 将带状金属导体的电加热器(7)注入凹槽(4)中并固定。 电线(8a,8b)连接到电加热器(7)的两端并拉出。 内部部分(1)插入橡胶管的外部部分(9)中,外部部分(9)通过使用粘合剂等固定到内部部分(1)上。
    • 2. 发明授权
    • Hand grip member with electric heater
    • 带电加热器的手柄部件
    • US08481889B2
    • 2013-07-09
    • US12088543
    • 2006-09-29
    • Satoru FujiwaraKouzou SasakiYuichi Fukuda
    • Satoru FujiwaraKouzou SasakiYuichi Fukuda
    • H05B3/06H05B3/40B62K21/26B62J33/00
    • B62J33/00B62K21/26H05B3/46Y10T74/20828
    • A handle grip member with electric heater can be produced in high yield through simple processing not using any core of synthetic resin and avoiding molding operation. Depressed groove (4) is spirally provided on an external surface of inner part (1) of rubber, and multiple ribs (5) are provided on an internal surface thereof along the direction of length. Electric heater (7) of tape-shaped metal conductor is implanted in the depressed groove (4), and fixed. Electric wires (8a,8b) are connected to two ends of the electric heater (7) and drawn out. The inner part (1) is inserted in outer part (9) of rubber tube, and the outer part (9) is fixed to the inner part (1) with the use of an adhesive, etc.
    • 具有电加热器的把手部件可以通过简单的加工而不用任何合成树脂芯并且避免成型操作而以高产率生产。 凹槽(4)螺旋地设置在橡胶的内部部分(1)的外表面上,并且沿其长度方向在其内表面上设置多个肋(5)。 将带状金属导体的电加热器(7)注入凹槽(4)中并固定。 电线(8a,8b)连接到电加热器(7)的两端并拉出。 内部部分(1)插入橡胶管的外部部分(9)中,外部部分(9)通过使用粘合剂等固定到内部部分(1)上。
    • 9. 发明授权
    • Alloy for negative electrode of lithium secondary battery and lithium
secondary battery
    • 锂二次电池和锂二次电池负极合金
    • US5498495A
    • 1996-03-12
    • US392217
    • 1995-02-22
    • Yoshinori TakadaMitsuhiro MarumotoKouzou Sasaki
    • Yoshinori TakadaMitsuhiro MarumotoKouzou Sasaki
    • C22C24/00H01M4/13H01M4/40
    • H01M4/13C22C24/00H01M4/40
    • An alloy for a negative electrode of a lithium secondary battery, comprising an Li-Ag-Te type alloy having an atomic ratio of Li:Ag:Te=15-120:1-20:0.001-2, an alloy for a negative electrode of a lithium secondary battery, comprising an Li-Ag-Te-(M1-M2) type alloy having an atomic ratio of Li:Ag:Te:M1:M2=15-120:1-20:0.001-2:1-50:1-30 wherein M1 is a 3A-5A group metal and M2 is a transition metal other than Ag, and a lithium secondary battery comprising a negative electrode composed of the above-mentioned alloy. According to the present invention, a negative electrode, wherein the growth of dendrite is suppressed, charge-discharge capacity is high, energy density is high and degradation due to repetitive charge-discharge is less, can be obtained. By the use of the negative electrode obtained in the present invention, moreover, a lithium secondary battery superior in charge-discharge cycle life, which has high energy density permitting long-term use, high electromotive force and high charge-discharge capacity, can be produced.
    • 一种锂二次电池的负极合金,其包含Li-Ag-Te型合金,其原子比为Li:Ag:Te = 15-120:1-20:0.001-2,负极合金 的锂二次电池,其包含原子比为Li:Ag:Te:M1:M2 = 15-120:120:0.1-2-2:1的Li-Ag-Te-(M1-M2)型合金 50:1-30其中M1是3A-5A族金属,M2是除Ag以外的过渡金属,以及包含由上述合金构成的负极的锂二次电池。 根据本发明,可以获得抑制枝晶生长的负极,充放电容量高,能量密度高,并且由于重复充放电而导致的劣化较小。 此外,通过使用本发明得到的负极,可以使具有能够长期使用的高能量密度,高电动势和高充放电能力的充放电循环寿命优异的锂二次电池 生产。