会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明申请
    • MOLTEN-SALT ELECTROLYTE BATTERY DEVICE
    • 盐酸电解电池装置
    • US20140038011A1
    • 2014-02-06
    • US14112907
    • 2012-04-06
    • Atsushi FukunagaShinji InazawaKoji NittaShoichiro Sakai
    • Atsushi FukunagaShinji InazawaKoji NittaShoichiro Sakai
    • H01M10/50H01M10/39
    • H01M10/613H01M2/1094H01M10/399H01M10/486H01M10/615H01M2300/0048
    • Safe molten-salt electrolyte battery device that can quickly decrease the temperature of a molten-salt electrolyte battery when abnormal heat generation occurs in the battery is provided. A molten-salt electrolyte battery device according to the present invention is provided with a molten-salt electrolyte battery which uses a molten-salt electrolyte and includes a temperature detection means which detects the temperature of the molten-salt electrolyte battery, a cooling means which cools the molten-salt electrolyte battery with a cooling medium, and a control means into which a signal from the temperature detection means is inputted and which outputs an operation instruction to the cooling means. When the molten-salt electrolyte battery device is used, in the case where abnormal heat generation occurs in the molten-salt electrolyte battery, the molten-salt electrolyte battery is cooled by the cooling medium, and therefore, the temperature of the battery can be quickly decreased to a safe temperature.
    • 提供了当电池发生异常发热时可以快速降低熔盐电解质电池的温度的安全的熔盐电解质电池装置。 根据本发明的熔盐电解质电池装置设置有使用熔盐电解质的熔盐电解质电池,并且包括检测熔盐电解质电池的温度的温度检测装置,冷却装置, 用冷却介质冷却熔融盐电解质电池,以及控制装置,输入来自温度检测装置的信号,并向冷却装置输出操作指令。 当使用熔盐电解质电池装置时,在熔盐电解质电池发生异常发热的情况下,熔融盐电解质电池被冷却介质冷却,因此电池的温度可以为 迅速降至安全温度。
    • 4. 发明申请
    • MOLTEN-SALT BATTERY AND MOLTEN-SALT BATTERY CONNECTED BODY
    • 盐酸电池和盐酸电池连接体
    • US20130224566A1
    • 2013-08-29
    • US13879560
    • 2011-10-17
    • Shoichiro SakaiAtsushi FukunagaKoji NittaMasatoshi MajimaShinji Inazawa
    • Shoichiro SakaiAtsushi FukunagaKoji NittaMasatoshi MajimaShinji Inazawa
    • H01M2/04
    • H01M2/04H01M2/0247H01M2/0252H01M2/0439H01M2/0447H01M2/0473H01M2/24H01M10/399
    • This molten-salt battery is provided with a battery container for housing a power generation element that contains molten salt. The battery container is provided with a container body (1) and a lid (7). An opening (1E) is provided in the upper surface of the container body (1). The lid (7) is fitted in the opening (1E) of the container body (1) and is welded to the container body (1). A step (1G) is formed to the opening (1E) of the container body (1) along the inner edge of the container body (1). By means of the step (1G), the rim (7A) of the lid (7) is supported with respect to the upper corner of side walls (1A, 1B). Laser light is radiated from above to the rim (7A) of the lid (7) and the upper surface of the side walls (1A, 1B) adjacent thereto. In this way, the rim (7A) of the lid (7) is welded to the container body (1). The molten-salt battery connected body is configured from a plurality of molten-salt batteries. The molten-salt batteries are connected aligned in the horizontal direction in the state of the outer peripheral surfaces of the container bodies (1) of adjacent molten-salt batteries being caused to face each other.
    • 该熔盐电池设置有容纳含有熔融盐的发电元件的电池容器。 电池容器设置有容器主体(1)和盖(7)。 在容器主体(1)的上表面设有开口(1E)。 盖(7)装配在容器主体(1)的开口(1E)中并焊接到容器主体(1)上。 沿着容器主体(1)的内边缘向容器主体(1)的开口(1E)形成台阶(1G)。 通过步骤(1G),盖(7)的边缘(7A)相对于侧壁(1A,1B)的上角被支撑。 激光从上方辐射到盖(7)的边缘(7A)和与其相邻的侧壁(1A,1B)的上表面。 以这种方式,盖(7)的边缘(7A)被焊接到容器主体(1)上。 熔盐电池连接体由多个熔盐电池构成。 在相邻的熔盐电池的容器主体(1)的外周表面的状态下,使熔盐电池在水平方向上连接成对准。
    • 9. 发明授权
    • Method for producing fine metal powder
    • 金属粉末生产方法
    • US07470306B2
    • 2008-12-30
    • US10517821
    • 2003-06-11
    • Shinji InazawaMasatoshi MajimaKeiji KoyamaYoshie Tani
    • Shinji InazawaMasatoshi MajimaKeiji KoyamaYoshie Tani
    • B22F9/24
    • B22F9/24B22F2998/00B22F2998/10C25C5/02B22F1/0018
    • An object of the present invention is to provide a new method for producing a fine metal powder, in which high purity fine metal powders which are more minute than ever before, are uniform in particle diameter, and contain no impurities can be produced at lower cost, in larger amounts, and in safety, characterized by subjecting a solution containing tetravalent titanium ions and having a pH of not more than 7 to cathode electrolytic treatment to reduce parts of the tetravalent titanium ions to trivalent titanium ions, to prepare a reducing agent solution containing both the trivalent titanium ions and the tetravalent titanium ions, and adding a water-soluble compound of at least one type of metal element forming the fine metal powder to the reducing agent solution, followed by mixing, to reduce and deposit ions of the metal element by the reducing action at the time of oxidation of the trivalent titanium ions to the tetravalent titanium ions, to produce the fine metal powder.
    • 本发明的目的在于提供一种新型的金属粉末的制造方法,其中比以往更细的粒径均匀且不含杂质的高纯度细金属粉末可以以较低的成本制造 以更大量的安全性,其特征在于使含有四价钛离子并且pH不大于7的溶液经阴极电解处理以将四价钛离子的一部分还原为三价钛离子,从而制备还原剂溶液 含有三价钛离子和四价钛离子,并将形成细金属粉末的至少一种金属元素的水溶性化合物加入到还原剂溶液中,然后混合,以还原和沉积金属离子 元素,通过在三价钛离子氧化成四价钛离子时的还原作用,生成细金属粉末。