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    • 4. 发明申请
    • END CAP SEAL FOR AN ELECTROCHEMICAL CELL
    • 电子电池端盖密封
    • US20110244279A1
    • 2011-10-06
    • US13159165
    • 2011-06-13
    • David L. AnglinRobert A. Yoppolo
    • David L. AnglinRobert A. Yoppolo
    • H01M2/08H01M2/12
    • H01M2/0235H01M2/0413H01M2/0421H01M2/08H01M2/1241H01M10/28
    • An end cap seal assembly for an electrochemical cell such as an alkaline cell is disclosed. The end cap assembly comprises a metal support disk and underlying insulating sealing disk and a metal end cap overlying the metal support disk. The edge of the end cap and metal support disk is captured by the crimped edge of the insulating sealing disk. The support disk has a downwardly extending wall with at least one aperture therethrough. The insulating disk is preferably composed of a polyetherurethane material and may have a slanted downwardly extending wall forming a rupturable membrane which underlies and abuts the inside surface of the downwardly extending wall of the support disk. A portion of the rupturable membrane underlies and abuts the aperture in the downwardly extending wall of the support disk. The rupturable membrane pushes through said aperture and ruptures when gas pressure within the cell exceeds a predetermined level.
    • 公开了用于诸如碱性电池的电化学电池的端盖密封组件。 端盖组件包括金属支撑盘和下面的绝缘密封盘和覆盖金属支撑盘的金属端盖。 端盖和金属支撑盘的边缘被绝缘密封盘的卷曲边缘捕获。 支撑盘具有向下延伸的壁,其中至少有一个孔穿过其中。 绝缘盘优选由聚醚聚氨酯材料组成,并且可以具有倾斜的向下延伸的壁,其形成可支撑膜的下部并邻接支撑盘的向下延伸的壁的内表面。 可破裂膜的一部分位于支撑盘的向下延伸的壁的下方并邻接。 可破裂膜推动通过所述孔并且当气囊内的气体压力超过预定水平时破裂。
    • 6. 发明授权
    • Electric storage battery construction and method of manufacture
    • 蓄电池构造及其制造方法
    • US07378181B2
    • 2008-05-27
    • US10666379
    • 2003-09-17
    • David M. Skinlo
    • David M. Skinlo
    • H01M6/00H01M2/26H01M2/06H01M2/10
    • H01M2/263H01M2/022H01M2/027H01M2/0275H01M2/0421H01M2/30H01M6/10H01M10/0431Y10T29/49108Y10T29/4911Y10T29/49112Y10T29/49115
    • An electric storage battery and method of manufacture thereof characterized by a feedthrough pin which is internally directly physically and electrically connected to an inner end of a positive electrode substrate. A C-shaped mandrel extends around the pin and substrate end enabling the pin/mandrel to be used during the manufacturing process as an arbor to facilitate winding layers of a spiral jellyroll electrode assembly. The pin additionally extends from the battery case and in the final product constitutes one of the battery terminals with the battery case comprising the other terminal. Active material is removed from both sides of the outer end of the negative electrode in the jellyroll to allow room for adhesive tape to secure the jellyroll. The electrolyte is injected through the open end of the case after the endcap is welded to the negative electrode but before sealing the endcap to the case. The electrolyte is preferably injected through the C-shaped mandrel to facilitate and speed filling.
    • 一种蓄电池及其制造方法,其特征在于,在内部直接物理地电连接到正极基板的内端的馈通引脚。 C形心轴围绕销和衬底端部延伸,使得在制造过程中可以使用销/心轴作为心轴来促进螺旋胶卷电极组件的缠绕层。 该引脚另外从电池壳体延伸,并且最终产品构成电池端子之一,其中电池壳体包括另一端子。 活性物质从胶卷中的负极外端的两侧除去,以便胶粘带的空间固定胶冻。 在端盖焊接到负极之后,但是将端盖密封到壳体之前,电解质通过壳体的开口端被注入。 电解质优选通过C形心轴注入以促进和加速填充。
    • 8. 发明申请
    • Alkaline dry cell
    • 碱性干细胞
    • US20040253511A1
    • 2004-12-16
    • US10836352
    • 2004-05-03
    • Hitachi Maxell, Ltd.
    • Makoto UradeShoichiro TateishiKoji KoideShinichi IwamotoMinajuro Ushijima
    • H01M002/08H01M002/02
    • H01M6/085H01M2/0421H01M2/1241
    • The present invention discloses an alkaline dry cell with a high capacity having a superior liquid leak resistant property. In this alkaline dry cell, the thickness of the trunk portion of an external can is made thinner than 0.18 mm, and the thickness of the sealing edge portion of the external can is set to not less than 1.4 times the thickness of trunk portion. An anode terminal plate is used as a supporting member for a sealing member. Over the entire outer circumferential portion of the anode terminal plate is placed a curved portion having an average curvature radius of not more than 1 mm, which shows a virtually C-letter shape or an arc shape in its cross-section obtained by cutting the anode terminal plate through its center in the thickness direction.
    • 本发明公开了一种具有优异的耐漏液性能的高容量的碱性干电池。 在这种碱性干电池中,外罐的主干部的厚度比0.18mm薄,外罐的密封边缘部的厚度设定为树干部的厚度的1.4倍以上。 阳极端子板用作密封构件的支撑构件。 在阳极端子板的整个外周部分上设置平均曲率半径不大于1mm的弯曲部分,其在通过切割阳极获得的横截面中显示出实际上C字形或弧形 端子板通过其厚度方向的中心。
    • 9. 发明申请
    • Alkaline dry cell background of the invention
    • 本发明的碱性干细胞背景
    • US20040202929A1
    • 2004-10-14
    • US10837486
    • 2004-05-03
    • Hitachi Maxell, Ltd.
    • Makoto UradeShoichiro TateishiKoji KoideShinichi IwamotoManajuro Ushijima
    • H01M002/08H01M002/04H01M002/30
    • H01M6/085H01M2/0421H01M2/1241
    • The present invention discloses an alkaline dry cell with a high capacity having a superior liquid leak resistant property. In this alkaline dry cell, the thickness of the trunk portion of an external can is made thinner than 0.18 mm, and the thickness of the sealing edge portion of the external can is set to not less than 1.4 times the thickness of trunk portion. An anode terminal plate is used as a supporting member for a sealing member. Over the entire outer circumferential portion of the anode terminal plate is placed a curved portion having an average curvature radius of not more than 1 mm, which shows a virtually C-letter shape or an arc shape in its cross-section obtained by cutting the anode terminal plate through its center in the thickness direction. By providing a structure for supporting the sealing member by this curved portion with the inner circumferential side, the sealing edge portion is allowed to have a sufficient strength, and it is possible to ensure a superior liquid leak resistant property and also to increase the batter inner volume. Moreover, the anode terminal plate has a structure including a terminal face formed in a protruding shape on the center and an outer circumferential flange face formed in a manner so as to surround the terminal face when viewed in a direction penetrating this terminal face vertically, and a flat portion that is not in parallel with the terminal face is placed on the inner circumferential side of the flange face. In the connecting portion of the sealing member, an anti-explosion thin portion is placed on the foot portion on the side of a boss section, and on the foot portion of the outer circumferential portion side, a stress absorbing section for absorbing one portion of a stress that is exerted on the connecting portion at the time of a lateral tightening sealing edge process.
    • 本发明公开了一种具有优异的耐漏液性能的高容量的碱性干电池。 在这种碱性干电池中,外罐的主干部的厚度比0.18mm薄,外罐的密封边缘部的厚度设定为树干部的厚度的1.4倍以上。 阳极端子板用作密封构件的支撑构件。 在阳极端子板的整个外周部分上设置平均曲率半径不大于1mm的弯曲部分,其在通过切割阳极获得的横截面中显示出实际上C字形或弧形 端子板通过其厚度方向的中心。 通过提供一种用于通过具有内周侧的弯曲部分来支撑密封构件的结构,使得密封边缘部分具有足够的强度,并且可以确保优异的防漏液性并且还可以增加面糊内 卷。 此外,阳极端子板具有包括在中心形成为突出形状的端子面的结构,以及在沿着垂直于该端子面的方向观察时以包围端子面的方式形成的外周凸缘面, 与端子面不平行的平坦部分被放置在凸缘面的内周侧。 在密封构件的连接部分中,在凸台部分的一侧的脚部上设置有防爆薄层部分,并且在外周部分侧的脚部上设置有用于吸收一部分 在横向紧固密封边缘处理时施加在连接部分上的应力。