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    • 12. 发明申请
    • POLYANION ACTIVE MATERIALS AND METHOD OF FORMING THE SAME
    • POLYANION活性材料及其形成方法
    • US20130029227A1
    • 2013-01-31
    • US13191028
    • 2011-07-26
    • Wei SongMasaki MatsuiToshihiko Tani
    • Wei SongMasaki MatsuiToshihiko Tani
    • H01M4/02H01M4/04
    • C01B33/22H01M4/366H01M4/5825H01M10/0525H01M10/054
    • A method of forming a polyanion active material that includes providing a carbon source, providing a mobile ion source, providing an active metal material, providing a network material, providing a flux material, and mixing the various materials. In one aspect, the mixing step may include grinding or pulverizing materials to a uniform fine mixture. In one aspect, a ball mill may be utilized to mix the components. Following the mixing of the materials, the mixture is heated to a predetermined temperature in a non-oxidizing atmosphere to form a reaction product. In one aspect, the mixture is heated to a temperature above a melting temperature of the flux material. In this manner, the flux material provides a medium in which the various reactants may react to form the desired reaction product. Following the heating of the mixture the reaction product is washed, forming a carbon coated polyanion active material. Also disclosed is a polyanion active material that includes the in situ reaction product of a carbon source, mobile ion source, active metal material, network material, and a flux material wherein the polyanion active material includes a carbon coating formed thereon.
    • 一种形成聚阴离子活性材料的方法,其包括提供碳源,提供可移动离子源,提供活性金属材料,提供网状材料,提供助焊剂材料和混合各种材料。 在一个方面,混合步骤可以包括将材料研磨或粉碎成均匀的细混合物。 在一个方面,可以使用球磨机来混合组分。 在混合材料之后,将混合物在非氧化性气氛中加热至预定温度以形成反应产物。 在一个方面,将混合物加热至高于助熔剂材料的熔融温度的温度。 以这种方式,助焊剂材料提供了各种反应物可以反应形成所需反应产物的介质。 在混合物加热之后,将反应产物洗涤,形成碳涂覆的聚阴离子活性材料。 还公开了一种聚阴离子活性材料,其包括碳源,可移动离子源,活性金属材料,网络材料和助焊剂材料的原位反应产物,其中聚阴离子活性材料包括其上形成的碳涂层。
    • 16. 发明授权
    • Bookbinding apparatus
    • 装订装置
    • US07824143B2
    • 2010-11-02
    • US11709771
    • 2007-02-23
    • Masaki MatsuiMasato Hattori
    • Masaki MatsuiMasato Hattori
    • B42C9/00
    • B42C9/0006
    • A bookbinding apparatus includes: a replenishing device having a pellet storing section that stores pellets of adhesive and a replenishing member that takes out the pellets in a countable manner from the pellet storing section; an adhesive reservoir that melts the pellets replenished from the replenishing member and stores the molten adhesive liquid; a coating device having a coating member that coats the adhesive scooped up from the adhesive liquid; a replenishment sensor that detects the number of pellets replenished to the adhesive reservoir; and a controller that controls the replenishing member based on an output of the replenishment sensor.
    • 装订装置包括:补充装置,具有存储粘合剂颗粒的颗粒储存部分和从颗粒存储部分以可数方式取出颗粒的补充构件; 粘合剂储存器,熔化从补充构件补充的颗粒并储存熔融粘合剂液体; 涂覆装置,其具有涂覆从所述粘合剂液体舀出的粘合剂的涂层部件; 补充传感器,其检测补充到粘合剂储存器的颗粒的数量; 以及控制器,其基于补充传感器的输出来控制补充部件。
    • 18. 发明申请
    • Ion-conductive material and use thereof
    • 离子导电材料及其应用
    • US20090214939A1
    • 2009-08-27
    • US11991010
    • 2006-08-24
    • Hisashi YamamotoMasaki MatsuiHiroki AwanoMotoshi Isono
    • Hisashi YamamotoMasaki MatsuiHiroki AwanoMotoshi Isono
    • H01M4/36
    • H01M10/052H01B1/122H01M10/0568H01M10/0569H01M2300/0045
    • Disclosed is an ion-conductive material which comprises an ionic liquid and can realize a higher level of safety. Also disclosed is an electrochemical device using the ion-conductive material. Further disclosed is a method for manufacturing an electrochemical device. An ion-conductive material comprising an ionic liquid satisfying the following conditions: the ionic liquid comprises two or more types of anion, such that at least one type thereof is an anion having a structure in which one or more electron-withdrawing groups are bonded to a central atom having one more non-covalent electron pairs; and the ionic liquid has a maximum exothermic heat-flow peak height no greater than 2 W/g as measured by DSC (measurement temperature range: ordinary temperature to 500° C., rate of temperature rise: 2° C./minute). Preferably, the ion-conductive material comprises an ionic liquid having a gross calorific value of no greater than 1000 J/g as measured by the DSC.
    • 公开了一种离子导电材料,其包含离子液体并可实现更高的安全性。 还公开了使用离子传导材料的电化学装置。 还公开了一种电化学装置的制造方法。 一种离子导电材料,其包含满足以下条件的离子液体:离子液体包含两种或更多种类型的阴离子,使得其至少一种类型是具有其中一个或多个吸电子基团键合到 具有一个非共价电子对的中心原子; 并且离子液体通过DSC(测量温度范围:常温至500℃,升温速率:2℃/分钟)具有不大于2W / g的最大放热热流峰值高度。 优选地,离子传导材料包括通过DSC测量的总发热量不大于1000J / g的离子液体。
    • 20. 发明授权
    • Radio terminal, radio synchronization system having no base station, and recording medium
    • 无线终端,无基站的无线同步系统和记录介质
    • US07221661B2
    • 2007-05-22
    • US10209908
    • 2002-08-02
    • Masaki MatsuiEiji ShinshoMinoru OginoShigeo Sato
    • Masaki MatsuiEiji ShinshoMinoru OginoShigeo Sato
    • H04B7/212
    • H04B1/40H04W74/04
    • According to the present invention, all terminals can establish synchronization in a radio communications system formed only of a plurality of mobile terminals. This radio terminal communicates by the time division connection method, and comprises a control portion for synchronizing its transmission/reception timing to that of a group including a plurality of radio terminals. The control portion determines the overall cycle including basic cycles in a number corresponding to the number of radio terminals within said group, conducts control to transmit a signal in a basic cycle that is included in said overall cycle and that is set by a unique terminal number allotted in advance to each of said radio terminals, conducts control to receive signals from another radio terminal in another basic cycle, adjusts the transmission/reception timing based on the data received from said other radio terminal in said other basic cycle, and saves the reception timing until a process to adjust the transmission/reception timing is conducted.
    • 根据本发明,所有终端都可以在仅由多个移动终端形成的无线电通信系统中建立同步。 该无线终端通过时分连接方式通信,并且包括用于将其发送/接收定时与包括多个无线终端的组的发送/接收定时同步的控制部分。 控制部分确定整个周期,包括对应于所述组内的无线电终端数量的数量的基本周期,进行控制以发送包含在所述整个周期中的基本周期中的信号,并且由唯一终端号码 预先分配给每个所述无线电终端,进行控制以在另一个基本周期中从另一个无线电终端接收信号,基于在所述另一个基本周期中从所述另一个无线电终端接收的数据来调整发送/接收定时,并且保存接收 进行到调整发送/接收定时的处理的定时。