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    • 2. 发明申请
    • NONAQUEOUS ELECTROLYTE BATTERY
    • 非电解电解质电池
    • US20130216920A1
    • 2013-08-22
    • US13820823
    • 2011-09-05
    • Tomonobu TsujikawaMasayasu ArakawaMasayuki TeradaKoji Hayashi
    • Tomonobu TsujikawaMasayasu ArakawaMasayuki TeradaKoji Hayashi
    • H01M10/056H01M10/052
    • H01M10/056H01M4/485H01M4/505H01M4/587H01M4/661H01M10/052H01M10/0525H01M10/0568H01M10/0569H01M10/4235Y02T10/7011
    • A non-aqueous electrolyte battery capable of flattening of a voltage property and securing safety at a time of battery abnormality is provided. A lithium-ion secondary battery 20 has an electrode group 6 in which a positive and a negative electrode plates are wound. A non-aqueous electrolyte is formed by adding LiBF4 to a mixed solvent of EC and DMC. In the positive electrode plate, a positive electrode mixture layer W2 including a positive electrode active material is formed at both surfaces of an aluminum foil W1. A lithium manganese magnesium complex oxide having a spinel crystal structure is used as the positive electrode active material. A flame retardant layer W6 including a phosphazene compound is formed at a surface of the positive electrode mixture layer W2. In the negative electrode plate, a negative electrode mixture layer W4 including a negative electrode active material is formed at both surfaces of a rolled copper foil W3. A carbon material that a surface of graphite is coated by pyrolytic carbon is used as the negative electrode active material. The phosphazene compound demonstrates non-flammability, and a voltage property is flattened by the graphite material.
    • 提供能够使电压特性变平且在电池异常时确保安全性的非水电解质电池。 锂离子二次电池20具有缠绕有正极板和负极板的电极组6。 通过将LiBF 4加入到EC和DMC的混合溶剂中形成非水电解质。 在正极板中,在铝箔W1的两面形成有包含正极活性物质的正极合剂层W2。 使用具有尖晶石晶体结构的锂锰镁复合氧化物作为正极活性物质。 在正极合剂层W2的表面形成有包含磷腈化合物的阻燃层W6。 在负极板中,在轧制的铜箔W3的两面形成有负极活性物质的负极合剂层W4。 作为负极活性物质,使用石墨的表面被热解碳覆盖的碳材料。 磷腈化合物显示出不可燃性,并且电压特性被石墨材料压平。
    • 5. 发明申请
    • NONAQUEOUS ELECTROLYTE SECONDARY BATTERY
    • 非电解电解质二次电池
    • US20140212752A1
    • 2014-07-31
    • US14241933
    • 2012-09-03
    • Masayasu ArakawaTomonobu TsujikawaYoshiki MiyamotoKoji Hayashi
    • Masayasu ArakawaTomonobu TsujikawaYoshiki MiyamotoKoji Hayashi
    • H01M4/62
    • H01M4/628H01M4/131H01M4/505H01M4/62H01M4/625H01M10/0525H01M10/0585H01M10/4235Y02T10/7011
    • A non-aqueous electrolyte secondary battery capable of improving a high rate discharge property while securing safety is provided. A laminated electrode group 10 is sealed in a laminate film of an outer casing in a lithium-ion secondary battery. A positive electrode plate 14 and a negative electrode plate 15 are stacked alternatively in the laminated electrode group 10. In the positive electrode plate 14, a positive electrode mixture layer W2 containing a lithium manganese complex oxide of a positive electrode active material is formed at both surfaces of an aluminum foil W1. In the positive electrode mixture layer W2, other than the positive electrode active material, a carbon material of a conductor and a phosphazene compound of a flame retardant are dispersed and mixed uniformly. A ratio of a mass of the conductor to that of the flame retardant is set to 1.3 or more. In the negative electrode plate 15, a negative electrode mixture layer containing a negative electrode active material is formed at both surfaces of a rolled copper foil. Electron conductivity in the positive electrode plate 14 is secured by the conductor.
    • 提供了能够在确保安全性的同时提高高放电特性的非水电解质二次电池。 将层叠电极组10密封在锂离子二次电池的外壳的层叠膜上。 正极板14和负极板15交替堆叠在层叠电极组10中。在正极板14中,在两面形成含有正极活性物质的锂锰复合氧化物的正极合剂层W2 铝箔W1的表面。 在正极活性物质以外的正极合剂层W2中,将导体的碳材料和阻燃剂的磷腈化合物均匀地分散混合。 将导体的质量与阻燃剂的质量比设定为1.3以上。 在负极板15中,在轧制铜箔的两面形成含有负极活性物质的负极合剂层。 正极板14中的导电性由导体固定。
    • 6. 发明申请
    • NONAQUEOUS ELECTROLYTE BATTERY
    • 非电解电解质电池
    • US20130216908A1
    • 2013-08-22
    • US13820813
    • 2011-09-05
    • Tomonobu TsujikawaMasayasu ArakawaHirokazu DenmaKoji Hayashi
    • Tomonobu TsujikawaMasayasu ArakawaHirokazu DenmaKoji Hayashi
    • H01M4/583
    • H01M4/583H01M4/13H01M4/625H01M10/0587H01M10/4235
    • A non-aqueous electrolyte battery capable of securing safety at a time of battery abnormality and restricting a drop in a charge/discharge property at a time of battery use is provided. In a lithium-ion secondary battery 20, an electrode group 6 is accommodated in a battery container 7. The electrode group 6 is formed by winding a positive electrode plate and a negative electrode plate via a separator W5. The positive electrode plate has an aluminum foil W1 as a positive electrode collector. A positive electrode mixture layer W2 including a positive electrode active material is formed at both surfaces of the aluminum foil W1. A flame retardant layer W6 containing a flame retardant is formed at both surfaces of the positive electrode mixture layer W2. A carbon material which has electron conductivity and of which mass ratio to the flame retardant is 25% or less is contained in the flame retardant layer W6. The negative electrode plate has a rolled copper foil W3 as a negative electrode collector. A negative electrode mixture layer W4 including a negative electrode active material is formed at both surfaces of the rolled copper foil W3. Electron conductivity is secured at a battery use time, and the flame retardant decomposes at a battery abnormality time.
    • 提供一种能够在电池异常时确保安全性并限制电池使用时的充放电特性的下降的非水电解质电池。 在锂离子二次电池20中,电极组6容纳在电池容器7中。电极组6通过隔膜W5卷绕正极板和负极板而形成。 正极板具有铝箔W1作为正极集电体。 在铝箔W1的两面形成有包含正极活性物质的正极合剂层W2。 在正极合剂层W2的两面形成含有阻燃剂的阻燃层W6。 在阻燃层W6中含有具有电子传导性且阻燃剂的质量比为25%以下的碳材料。 负极板具有作为负极集电体的卷绕铜箔W3。 在轧制铜箔W3的两面形成有负极活性物质的负极合剂层W4。 在电池使用时间确保电子传导性,并且阻燃剂在电池异常时分解。
    • 8. 发明授权
    • Multistage furnace system
    • 多级炉系统
    • US09127886B2
    • 2015-09-08
    • US13826688
    • 2013-03-14
    • Koji HayashiTaichi Shimizu
    • Koji HayashiTaichi Shimizu
    • F27D3/06F27B1/02F27B9/02F27D9/00F27B1/20F27B9/24F27B9/38F27B9/39F27B9/40
    • F27B1/02F27B1/20F27B9/021F27B9/028F27B9/2469F27B9/38F27B9/39F27B9/40F27D9/00
    • The invention provides a multistage heating system including a compact multistage furnace of which the installation area in a factory is decreased and a work carrier machine. A multistage furnace is configured by piling up a plurality of furnace units in the vertical direction. Each of the furnace units includes an upper heater and a lower heater, support pipes disposed on the upper heater and extending in the horizontal direction, and a plurality of work support bars mounted over the support pipes. A work carrier machine includes work carrier bars extending in the horizontal direction, a horizontal motion mechanism connecting the ends of the work carrier bars and move the work carrier bars on horizontal rails, and a vertical motion mechanism moving the body of the work carrier machine including the horizontal rails on vertical rails.
    • 本发明提供了一种多级加热系统,其包括紧凑型多级炉,其中工厂的安装面积减小,工作承载机。 多级炉通过在垂直方向上堆叠多个炉单元构成。 每个炉单元包括上加热器和下加热器,设置在上加热器上并在水平方向上延伸的支撑管,以及安装在支撑管上的多个工作支撑杆。 工作载体机器包括沿水平方向延伸的工作承载杆,连接工作承载杆的端部并将工作承载杆移动到水平轨道上的水平运动机构,以及使工作承载机的主体移动的垂直运动机构,包括 垂直导轨上的水平导轨。
    • 10. 发明授权
    • Multistage furnace
    • 多级炉
    • US08989565B2
    • 2015-03-24
    • US13800950
    • 2013-03-13
    • Koji HayashiTaichi Shimizu
    • Koji HayashiTaichi Shimizu
    • F26B19/00F27D11/12F27D99/00F27D9/00F27B9/02F27B9/06F27B9/24F27B9/38F27B9/39F27B9/40
    • F27D11/12F27B9/021F27B9/063F27B9/2469F27B9/38F27B9/39F27B9/40F27D9/00F27D99/00
    • The invention provides a compact multistage furnace of which the installation area in a factory is decreased. A multistage furnace is configured by piling up a plurality of furnace units in the vertical direction. Each of the furnace units includes an upper heater and a lower heater layered in the vertical direction and holding a heat insulator therebetween, a support pipe disposed on one end of the upper heater and extending in the horizontal direction, a support pipe disposed on other end of the upper heater and extending in the horizontal direction, and a plurality of work support bars mounted over the support pipes. The back surface of a work supported by the work support bars is opposed to the upper heater and the front surface of the work is opposed to the lower heater of the adjacent furnace unit disposed above.
    • 本发明提供一种紧凑型多级炉,其中工厂中的安装面积减小。 多级炉通过在垂直方向上堆叠多个炉单元构成。 每个炉单元包括沿垂直方向分层并在其间保持隔热件的上加热器和下加热器,支撑管设置在上加热器的一端并沿水平方向延伸,支撑管设置在另一端 的上部加热器并沿水平方向延伸,并且多个工作支撑杆安装在支撑管上。 由工作支撑杆支撑的工件的后表面与上加热器相对,并且工件的前表面与设置在上方的相邻炉单元的下加热器相对。