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    • 13. 发明授权
    • Method of forming a terminal pip protrusion on the casing of an alkaline
cell
    • 在碱性电池壳体上形成端子突起的方法
    • US06126704A
    • 2000-10-03
    • US141095
    • 1998-08-27
    • William H. Gardner
    • William H. Gardner
    • H01M2/02H01M2/30H01M6/00H01M6/08H01M10/28
    • H01M6/005H01M10/283H01M2/30H01M6/085H01M2/022Y10T29/49108
    • The invention is directed to a method of forming a pip protrusion at the closed end of a cylindrical casing of an electrochemical cell. The cell is preferably an alkaline cell having an anode comprising zinc, a cathode comprising manganese dioxide, and an alkaline electrolyte. The method of the invention is directed to forming the pip protrusion at the closed end of the casing so that the pip protrusion becomes an integral part of the casing. In an alkaline cell the pip protrusion becomes the cell's positive terminal. The method of the invention involves inserting cathode material into the casing through the open end thereof and then forcing an elongated plunger having a diameter less than the inside diameter of casing into the cathode material while providing means for preventing the cathode material form rising more than a predetermined level with the casing. The force of the plunger causes the cathode material to become compacted while simultaneously causing a pip protrusion to form at the closed end of the casing.
    • 本发明涉及一种在电化学电池的圆柱形壳体的封闭端处形成点状突起的方法。 电池优选是具有包含锌的阳极,包含二氧化锰的阴极和碱性电解质的碱性电池。 本发明的方法涉及在壳体的封闭端部处形成管口突起,使得突出部分成为壳体的整体部分。 在碱性电池中,电极突起成为电池的正极。 本发明的方法包括将阴极材料通过其开口端插入壳体中,然后将具有小于壳体内径的直径的细长柱塞推入阴极材料中,同时提供用于防止阴极材料形式上升的装置 预定水平与套管。 柱塞的力使得阴极材料变得致密化,同时使得在壳体的封闭端处形成点突起。
    • 14. 发明授权
    • Apparatus for processing battery case can, a battery, and a
manufacturing method of battery
    • 用于处理电池壳体的装置,电池和电池的制造方法
    • US6125677A
    • 2000-10-03
    • US815298
    • 1997-03-11
    • Ichiro YasuokaMamoru IidaKikuo SenooTakabumi Fujii
    • Ichiro YasuokaMamoru IidaKikuo SenooTakabumi Fujii
    • H01M2/02H01M6/00H01M10/04H01M10/28B21D17/04
    • H01M6/005H01M10/04H01M10/287H01M2/0202H01M2/0217Y02P70/54
    • To present a processing apparatus capable of forming an annular support portion for mounting a sealing plate on an elliptical battery case can at high precision and high productivity, and a structure of an elliptical battery using an elliptical battery case can.An elliptical battery case can 10 is rotatably held by a case can support mechanism 13. The battery case can 10 is rotated about its tubular center by a case can rotary mechanism 18. Two groove forming rollers 23, 24 are mounted on an oscillatable roller support lever 28. The roller support lever 28 traces the shape of the outer circumference of the battery case can 10, and oscillates within a plane orthogonal to the tubular center of the battery case can 10, and receives a pressing force from a pressurizing device 29 to press the both groove forming rollers 23, 24 against the outer circumference of the battery case can 10. As a result, an annular groove 50 is formed in the outer circumference of the elliptical battery case can 10, and an annular support portion 40 is formed in the inner circumference.
    • 为了呈现能够以高精度和高生产率形成用于将密封板安装在椭圆形电池壳体罐上的环形支撑部分的处理设备,以及使用椭圆形电池壳体的椭圆形电池的结构。 一个椭圆形的电池盒10由壳体支撑机构13可旋转地保持。电池盒10可以通过壳体旋转机构18围绕其管状中心旋转。两个槽形成辊23,24安装在可振动的辊支撑件 滚轮支撑杆28跟踪电池壳体10的外周的形状,并且在与电池壳体罐10的管状中心正交的平面内摆动,并且接收来自加压装置29的按压力 将两个凹槽形成辊23,24压靠在电池盒10的外周上。结果,在椭圆形电池盒10的外周形成环形槽50,形成环形支撑部40 在内圆。
    • 15. 发明授权
    • Method for making an electrical energy storage device
    • 制造电能储存装置的方法
    • US5370711A
    • 1994-12-06
    • US104221
    • 1993-08-11
    • Thomas E. AuditJon K. West
    • Thomas E. AuditJon K. West
    • B60K1/04H01M2/10H01M6/00H01M6/10H01M6/42H01M6/02
    • H01M6/005B60K1/04H01M6/10H01M2/105H01M2/1055H01M6/42Y10T29/49108Y10T29/53135
    • An electric energy storage device comprises a casing and a coiled winding disposed within the casing. The winding includes a cathode plate, an anode plate, and a separator located between the cathode and anode plates. The cathode and anode plates are wound in an offset relationship. Two current collectors are secured to the casing, one current collector being pressed against the first side of the winding to contact the cathode plate, and the other current collector being pressed against the second side of the winding to contact the anode plate. A pressure vessel is provided to hold at least one of the casings having at least one of the windings therein. An electric vehicle is provided including a plurality of the energy storage devices. An apparatus for manufacturing the winding is provided including a frame, an arbor rotatably mounted on the frame, an arbor rotation mechanism for rotating the arbor to wind the anode plate, the cathode plate and the separator about the arbor to thereby form the winding, the diameter of the winding increasing from an initial diameter to a completed diameter during the winding. A series of rollers are arranged on the frame about the arbor and are movable away from the arbor, only a portion of the series of rollers contacting the winding when the winding is of the initial diameter, and additional rollers contacting the winding when the winding reaches a first intermediate diameter between the initial and completed diameters.
    • 电能存储装置包括壳体和设置在壳体内的盘绕绕组。 绕组包括阴极板,阳极板和位于阴极板和阳极板之间的隔板。 阴极和阳极板以偏移关系缠绕。 两个集电器被固定到壳体上,一个集电器被压靠在绕组的第一侧上以接触阴极板,另一个集电器被压靠在绕组的第二侧上以接触阳极板。 提供压力容器以保持其中具有至少一个绕组的壳体中的至少一个。 提供了包括多个能量存储装置的电动车辆。 提供了一种用于制造绕组的装置,包括框架,可旋转地安装在框架上的心轴,用于旋转心轴以将阳极板,阴极板和分隔件围绕心轴缠绕从而形成绕组的心轴旋转机构, 在绕组期间,绕组的直径从初始直径增加到完成的直径。 一系列辊子围绕心轴布置在框架上并且可移动离开心轴,当绕组处于初始直径时,只有一部分辊子与绕组接触,并且当绕组到达时附加的辊与绕组接触 在初始和完成的直径之间的第一中间直径。
    • 20. 发明授权
    • Conveyor apparatus
    • 输送装置
    • US09387993B2
    • 2016-07-12
    • US14439554
    • 2013-10-02
    • NISSAN MOTOR CO., LTD.
    • Masafumi KinoshitaToshiaki Ohrui
    • B65G49/00B65G57/04H05F3/00H01M10/04H01M6/00H01M2/16H01M2/18
    • B65G49/00B65G57/04H01M2/1673H01M2/18H01M6/005H01M10/0404H05F3/00
    • To provide a conveyor apparatus that is capable of performing an operation of a bagged electrode with the bagged electrode being in a non-expanding state.A conveyor apparatus 1 conveys a bagged electrode 100 that is formed by sandwiching an electrode 110 by a pair of separators 120, 130 and by partly welding an outer circumference of the pair of separators 120, 130. The conveyor apparatus 1 has a conveyor unit 10, an operating unit and an air-blowing unit 20. The conveyor unit 10 conveys the bagged electrode 100 while holding the bagged electrode 100. The operating unit performs an operation of the exposed bagged electrode 100 at a part of a conveyor line of the conveyor unit 10. The air-blowing unit 20 blows toward a surface that is an opposite side to a held surface of the bagged electrode 100.
    • 提供一种能够在袋状电极处于非膨胀状态下执行袋装电极的操作的输送装置。 输送装置1输送通过一对隔板120,130夹住电极110而形成的袋装电极100,并且部分地焊接一对隔板120,130的外周。输送装置1具有输送单元10 ,操作单元和送风单元20.传送单元10在保持袋装电极100的同时传送袋装电极100.操作单元在输送机的输送线的一部分处执行暴露的袋装电极100的操作 吹气单元20朝着与袋装电极100的保持表面相反的一侧的表面吹动。