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    • 12. 发明授权
    • Mixing faucet
    • 混水龙头
    • US08757505B2
    • 2014-06-24
    • US12863026
    • 2008-11-19
    • Isao NegishiEiji SekiShigeru IwaiTakeshi Hagiwara
    • Isao NegishiEiji SekiShigeru IwaiTakeshi Hagiwara
    • G05D23/13
    • G05D23/1346G05D23/1326Y10T137/87676Y10T137/9464
    • A mixing faucet (1) includes a casing (2) having a hot water inlet opening (24), a cold water inlet opening (23), and an outlet opening (28); a control valve element (3) slidably mounted in the casing (2); a temperature adjusting screw (7) rotatably disposed in the casing (2); a slider (6) sliding in the casing (2) through rotation of the temperature adjusting screw (7); a bias spring (5) disposed in the casing (2), between the control valve element (3) and the slider (6), and biasing the control valve element (3) toward the cold water inlet opening (23); a temperature sensing spring (4) which biases the control valve element (3) toward the hot water inlet opening (24); and a pull-up spring (10) for biasing the control valve element (3) toward the hot water inlet opening (24).
    • 混合龙头(1)包括具有热水入口(24)的壳体(2),冷水入口开口(23)和出口开口(28); 可滑动地安装在壳体(2)中的控制阀元件(3) 可旋转地设置在壳体(2)中的温度调节螺钉(7); 通过温度调节螺钉(7)的旋转在壳体(2)中滑动的滑块(6); 设置在壳体(2)中的偏置弹簧(5)之间,控制阀元件(3)和滑块(6)之间,并且使控制阀元件(3)朝向冷水入口(23)施力; 温度感测弹簧(4),其将控制阀元件(3)朝向热水入口开口(24)偏置; 以及用于将控制阀元件(3)朝向热水入口(24)偏压的上拉弹簧(10)。
    • 13. 发明授权
    • Charging/discharging control unit for lithium secondary battery
    • 锂二次电池充放电控制单元
    • US08421418B2
    • 2013-04-16
    • US12541612
    • 2009-08-14
    • Yoshiaki KumashiroYoshimi YanaiEiji Seki
    • Yoshiaki KumashiroYoshimi YanaiEiji Seki
    • H02J7/00
    • H02J7/0086
    • In a charging/discharging unit provided with: a lithium secondary battery, a voltage detecting sensor for detecting a voltage and a current detecting sensor; the charging/discharging control unit is further provided with a controller, and a discharging element for performing a constant voltage discharging operation of 3 V. A voltage, V0, of the battery when a discharging operation is terminated (t=0) is measured by the voltage detecting sensor. If V0≦3.6 V, within a rest time during which the battery is not charged/discharged until a next charging operation, a voltage, V1, of the battery when a time, t1, has elapsed is measured by the voltage detecting sensor. If this voltage charge is in a range of V1-V0≧0.2 V, then the constant voltage discharging operation of 3 V is carried out for a time duration longer than or equal to 1 hour.
    • 在具有锂二次电池,用于检测电压的电压检测传感器和电流检测传感器的充电/放电单元中, 充放电控制单元还设置有控制器和用于执行3V的恒定电压放电操作的放电元件。当放电操作终止时,电池的电压V0(t = 0)通过 电压检测传感器。 如果V0≦̸ 3.6V,则在电池在下一次充电操作之前未被充电/放电的休息时间内,当经过时间t1时,电池的电压V1由电压检测传感器测量。 如果该电压在V1-V0≥0.2V的范围内,则3V的恒定电压放电动作持续时间大于等于1小时。
    • 14. 发明授权
    • Hot water-water mixing faucet
    • 热水水混合龙头
    • US07832650B2
    • 2010-11-16
    • US11630260
    • 2006-01-23
    • Isao NegishiYoshinori NishinoEiji Seki
    • Isao NegishiYoshinori NishinoEiji Seki
    • G05D23/185G05D23/13
    • G05D23/1353Y10T137/2499
    • A hot water-water mixing faucet holds a control valve body in a balanced position between a bias spring and a temperature-sensitive coil spring. An adjusting screw 6a supports the bias spring in an axial direction to change setting of the supporting position of the bias spring, and a rear end side of the bias spring is supported by a supporting member which is formed separately from the adjusting screw. The supporting member is slidably inserted in the axial direction into a through-hole provided on the adjusting screw and is connected detachably to the adjusting screw by an abutting section provided in an area protruding from the through-hole toward the bias spring side. A lifting spring biases the supporting member to pull the supporting member back toward the side opposite to the bias spring to the adjusting screw 6a.
    • 热水 - 水混合龙头将控制阀体保持在偏置弹簧和温度敏感螺旋弹簧之间的平衡位置。 调节螺钉6a沿轴向支撑偏置弹簧,以改变偏置弹簧的支撑位置的设定,偏置弹簧的后端侧由与调节螺钉分开形成的支撑构件支撑。 支撑构件沿轴向滑动地插入设置在调节螺钉上的通孔中,并且通过设置在从通孔向偏置弹簧侧突出的区域中的抵接部分可拆卸地连接到调节螺钉。 提升弹簧偏压支撑构件,以使支撑构件朝向与偏压弹簧相对的一侧向调整螺钉6a拉动。
    • 15. 发明申请
    • LITHIUM SECONDARY BATTERY AND PRODUCTION METHOD OF THE SAME
    • 锂二次电池及其生产方法
    • US20090263721A1
    • 2009-10-22
    • US12388580
    • 2009-02-19
    • Hiroshi HarunaKazushige KohnoEiji SekiYoshiaki Kumashiro
    • Hiroshi HarunaKazushige KohnoEiji SekiYoshiaki Kumashiro
    • H01M4/58
    • H01M10/0525H01M10/0569H01M10/446H01M2300/004Y10T29/4911
    • To provide a lithium secondary battery which suppresses a decrease in the charge and discharge efficiency during a battery storage test and which is excellent in maintaining the battery capacity after the storage test. There are disclosed a nonaqueous lithium battery, comprising: a positive electrode active material comprising a lithium-containing oxide capable of inserting and detaching lithium ions; a negative electrode active material comprising a carbon material capable of inserting and detaching lithium ions; and an electrolytic solution containing a lithium ion, wherein the surface of the negative electrode active material after initializing charging is coated with a compound derived from vinylene carbonate, and wherein a weight power density of the lithium battery is no less than 100 Wh/kg, and a method of producing a nonaqueous lithium battery comprising a step of sealing a positive electrode active material, a negative electrode active material, and a nonaqueous electrolytic solution using a sealed container, wherein a predetermined amount of vinylene carbonate is added into the nonaqueous electrolytic solution, and the initializing charging is carried out to form a coating on the surface of the negative electrode active material, the coating being derived from the vinylene carbonate.
    • 提供一种锂二次电池,其抑制电池存储试验期间的充放电效率的降低,并且在保存试验后保持电池容量优异。 公开了一种非水锂电池,其包括:正极活性物质,其包含能够插入和分离锂离子的含锂氧化物; 包含能够插入和分离锂离子的碳材料的负极活性材料; 以及含有锂离子的电解液,其中,初始化充电后的负极活性物质的表面涂布有碳酸亚乙烯酯衍生的化合物,其中锂电池的重量功率密度为100Wh / kg以上, 以及一种制造非水锂电池的方法,包括使用密封容器密封正极活性物质,负极活性物质和非水电解液的步骤,其中将预定量的碳酸亚乙烯酯加入到非水电解液 ,并进行初始化充电以在负极活性材料的表面上形成涂层,该涂层源自碳酸亚乙烯酯。
    • 18. 发明申请
    • MIXING FAUCET
    • 混合龙头
    • US20110017328A1
    • 2011-01-27
    • US12863026
    • 2008-11-19
    • Isao NegishiEiji SekiShigeru IwaiTakeshi Hagiwara
    • Isao NegishiEiji SekiShigeru IwaiTakeshi Hagiwara
    • F16K11/07
    • G05D23/1346G05D23/1326Y10T137/87676Y10T137/9464
    • The present invention provides a mixing faucet that can use a low-cost temperature sensing spring. A mixing faucet (1) includes a casing (2) having a hot water inlet opening (24), a cold water inlet opening (23), and an outlet opening (28); a control valve element (3) slidably mounted in the casing (2) and capable of switching between any one of a cold water discharge state, a mixed water discharge state, and a hot water discharge state; a temperature adjusting screw (7) rotatably disposed at one end in the casing (2); a slider (6) sliding in the casing (2) through rotation of the temperature adjusting screw (7); a bias spring (5) disposed in the casing (2), between the control valve element (3) and the slider (6), and biasing the control valve element (3) toward the cold water inlet opening (23); a temperature sensing spring (4) which biases, in the casing (2), the control valve element (3) toward the hot water inlet opening (24), and the elastic force of which changes in accordance with changes in the temperature of hot water flowing in the casing (2); and a pull-up spring (10) for biasing the control valve element (3) toward the hot water inlet opening (24) in the cold water discharge state and in the mixed water discharge state.
    • 本发明提供一种能够使用低成本温度感测弹簧的混合龙头。 混合龙头(1)包括具有热水入口(24)的壳体(2),冷水入口开口(23)和出口开口(28); 控制阀元件(3),可滑动地安装在所述壳体(2)中并且能够在冷水排出状态,混合排水状态和热水排放状态中的任何一个之间切换; 可旋转地设置在壳体(2)中的温度调节螺钉(7); 通过温度调节螺钉(7)的旋转在壳体(2)中滑动的滑块(6); 设置在壳体(2)中的偏置弹簧(5)之间,控制阀元件(3)和滑块(6)之间,并且使控制阀元件(3)朝向冷水入口(23)施力; 温度检测弹簧(4),其在所述壳体(2)中将所述控制阀元件(3)偏向所述热水入口(24),并且其弹力随着热的温度变化而变化 在壳体(2)中流动的水; 以及用于在冷水排出状态和混合排水状态下将控制阀元件(3)朝向热水入口(24)偏压的上拉弹簧(10)。
    • 20. 发明申请
    • HOT AND COLD WATER MIXING VALVE
    • 热和冷水混合阀
    • US20100314457A1
    • 2010-12-16
    • US12517938
    • 2007-12-05
    • Kensaku TodakaHideyuki MatsuiEiji SekiIsao Negishi
    • Kensaku TodakaHideyuki MatsuiEiji SekiIsao Negishi
    • G05D23/13
    • F16K31/003F16K11/07F16K19/006G05D23/1353Y10T137/7737Y10T137/87652
    • A hot and cold water mixing valve including a temperature adjusting dial D, and a cylindrical casing 1 having formed therein a hot water inlet a and a cold water inlet b is provided with a control valve member 2 in which one end is subjected to a load from a biasing member 4 and the other end is subjected to a load from an actuator 5, and an opening/closing ratio between the hot water inlet a and the cold water inlet b is changed by balancing between the loads applied by the biasing member 4 and the actuator 5, to adjust a mixture ratio between the hot water which flows in through the hot water inlet a and the cold water which flows in through the cold water inlet b, and a temperature adjusting means (8, 900) whose one side is fixed to the temperature adjusting dial D and whose other side adjusts a position of the control valve member 2 through the biasing member 4. A tapered skirt portion 94 which spreads in a radial direction is formed at an end on the control valve member 2 side of the temperature adjusting means (8, 900).
    • 包括温度调节拨盘D的冷热水混合阀和在其中形成有热水入口a和冷水入口b的圆筒形壳体1设置有控制阀构件2,其中一端承受负载 来自偏置构件4的另一端受到来自致动器5的负载的影响,并且热水入口a与冷水入口b之间的打开/关闭比例通过由施力构件4施加的载荷之间的平衡来改变 和致动器5,以调节通过热水入口a流入的热水与通过冷水入口b流入的冷水之间的混合比率;以及温度调节装置(8,900),其一侧 固定在温度调节盘D上,另一侧通过偏置构件4调整控制阀构件2的位置。在控制阀构件2侧的端部形成有径向扩展的锥形裙部94 的 温度调节装置(8,900)。