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    • 3. 发明授权
    • Prismatic high rate cell
    • 棱镜高速率电池
    • US06569558B1
    • 2003-05-27
    • US09690314
    • 2000-10-17
    • Esther S. TakeuchiRalph T. Mead
    • Esther S. TakeuchiRalph T. Mead
    • H01M610
    • H01M10/0431H01M2/0217H01M6/10H01M6/16
    • A solid cathode liquid organic electrolyte alkali metal high rate cell wherein a combination of an elongated alkali metal anode and elongated solid cathode with separator therebetween is wound to form an anode-cathode subassembly having a jellyroll type configuration and wherein the combination is shaped so that the resulting sub-assembly has a substantially rectangular cross-section. The anode-cathode sub-assembly is placed in a conductive cell casing of prismatic shape having opposed flat faces, a lead of either the anode or cathode is attached to the cell casing depending upon whether case positive or case negative electrical configuration is desired and a lead of the other of the anode or cathode is connected to an electrical connector means extending through the casing in an insulated manner. The anode and cathode and separator are in face-to-face contact throughout the entire cross-section of the subassembly.
    • 一种固体阴极液体有机电解质碱金属高比率电池,其中将细长的碱金属阳极和其间具有隔板的细长的固体阴极的组合缠绕以形成具有果冻型配置的阳极 - 阴极子组件,并且其中组合被成形为使得 所得到的子组件具有基本上矩形的横截面。 将阳极 - 阴极子组件放置在具有相对平面的棱柱形状的导电电池壳体中,阳极或阴极的引线根据情况正电荷或情况负电构造是否需要而连接到电池壳体,并且 阳极或阴极中的另一个的引线连接到以绝缘方式延伸穿过壳体的电连接器装置。 阳极和阴极和隔板在子组件的整个横截面处面对面接触。
    • 4. 发明授权
    • Prismatic high rate cell
    • 棱镜高速率电池
    • US6136466A
    • 2000-10-24
    • US854525
    • 1997-05-12
    • Esther S. TakeuchiRalph T. Mead
    • Esther S. TakeuchiRalph T. Mead
    • H01M2/02H01M6/10H01M6/16H01M10/04
    • H01M10/0431H01M6/10H01M2/0217H01M6/16
    • A solid cathode liquid organic electrolyte alkali metal high rate cell wherein a combination of an elongated alkali metal anode and elongated solid cathode with separator therebetween is wound to form an anode-cathode subassembly having a jellyroll type configuration and wherein the combination is shaped so that the resulting sub-assembly has a substantially rectangular cross-section, the shaping of the combination being done either simultaneously with or subsequent to the winding thereof. The anode-cathode sub-assembly is placed in a conductive cell casing of prismatic shape having opposed flat faces, a lead of either the anode or cathode is attached to the cell casing depending upon whether case positive or case negative electrical configuration is desired and a lead of the other of the anode or cathode is connected to an electrical connector means extending through the casing in an insulated manner. Liquid electrolyte is introduced to the anode-cathode sub-assembly in the casing whereupon the casing then is sealed closed. The foregoing provides a new and improved prismatic high rate battery which significantly reduces the time required to manufacture the cell stack assembly while maintaining the requisite performance, safety and reliability standards in operation.
    • 一种固体阴极液体有机电解质碱金属高比率电池,其中将细长的碱金属阳极和其间具有隔板的细长的固体阴极的组合缠绕以形成具有果冻型配置的阳极 - 阴极子组件,并且其中组合被成形为使得 所得到的子组件具有基本上矩形的横截面,所述组合的成形在其卷绕或同时进行。 将阳极 - 阴极子组件放置在具有相对平面的棱柱形状的导电电池壳体中,阳极或阴极的引线根据情况正电荷或情况负电构造是否需要而连接到电池壳体,并且 阳极或阴极中的另一个的引线连接到以绝缘方式延伸穿过壳体的电连接器装置。 将液体电解质引入到壳体中的阳极 - 阴极子组件中,然后将壳体密封封闭。 上述提供了一种新的和改进的棱柱形高速电池,其显着地减少了制造电池堆组件所需的时间,同时保持了操作中所需的性能,安全性和可靠性标准。
    • 5. 发明授权
    • Method of making prismatic cell
    • 制造棱柱形细胞的方法
    • US5549717A
    • 1996-08-27
    • US205874
    • 1994-03-03
    • Esther S. TakeuchiRalph T. Mead
    • Esther S. TakeuchiRalph T. Mead
    • H01M6/16H01M2/02H01M2/18H01M6/10H01M6/00
    • H01M6/10H01M2/0217H01M6/16Y10T29/4911
    • A solid cathode liquid organic electrolyte alkali metal high rate cell wherein a combination of an elongated alkali metal anode and elongated solid cathode with separator therebetween is wound to form an anode-cathode subassembly having a jellyroll type configuration and wherein the combination is shaped so that the resulting sub-assembly has a substantially rectangular cross-section, the shaping of the combination being done either simultaneously with or subsequent to the winding thereof. The anode-cathode sub-assembly is placed in a conductive cell casing of prismatic shape having opposed flat faces, a lead of either the anode or cathode is attached to the cell casing depending upon whether case positive or case negative electrical configuration is desired and a lead of the other of the anode or cathode is connected to an electrical connector means extending through the casing in an insulated manner. Liquid electrolyte is introduced to the anode-cathode sub-assembly in the casing whereupon the casing then is sealed closed. The foregoing provides a new and improved prismatic high rate battery which significantly reduces the time required to manufacture the cell stack assembly while maintaining the requisite performance, safety and reliability standards in operation,
    • 一种固体阴极液体有机电解质碱金属高比率电池,其中将细长的碱金属阳极和其间具有隔板的细长的固体阴极的组合缠绕以形成具有果冻型配置的阳极 - 阴极子组件,并且其中组合被成形为使得 所得到的子组件具有基本上矩形的横截面,所述组合的成形在其卷绕或同时进行。 将阳极 - 阴极子组件放置在具有相对平面的棱柱形状的导电电池壳体中,阳极或阴极的引线根据情况正电荷或情况负电构造是否需要而连接到电池壳体,并且 阳极或阴极中的另一个的引线连接到以绝缘方式延伸穿过壳体的电连接器装置。 将液体电解质引入到壳体中的阳极 - 阴极子组件中,然后将壳体密封封闭。 上述提供了一种新的和改进的棱柱形高速电池,其显着减少制造电池堆组件所需的时间,同时保持必要的性能,操作中的安全性和可靠性标准,
    • 7. 发明授权
    • Lithium-iodine cell
    • 锂碘电池
    • US4128703A
    • 1978-12-05
    • US812641
    • 1977-07-05
    • Ralph T. MeadWilson GreatbatchFrank W. RudolphNorbert W. Frenz, Jr.
    • Ralph T. MeadWilson GreatbatchFrank W. RudolphNorbert W. Frenz, Jr.
    • H01M2/02H01M6/18
    • H01M6/182
    • A lithium-iodine cell comprising a casing of electrically conducting material, an anode including a lithium element within the casing, an electrical conductor operatively connected to the lithium element and extending out from the casing, and a cathode comprising iodine-containing material in operative contact with both the casing and the lithium element. The anode electrical conductor is completely sealed from the rest of the cell, and the casing serves as the cathode current collector. The anode operative surface is provided with a coating of an organic electron donor material. The anode is enclosed within an insulator element within the casing and a ferrule having one end within the insulator and the other end extending from the casing.
    • 一种锂 - 碘电池,包括导电材料的壳体,在壳体内包含锂元素的阳极,可操作地连接到锂元素并从壳体延伸出来的电导体,以及包含操作接触的含碘材料的阴极 与壳体和锂元素。 阳极电导体与电池的其余部分完全密封,并且壳体用作阴极集电器。 阳极工作表面设置有有机电子给体材料的涂层。 阳极被封装在壳体内的绝缘体元件内,并且套管具有在绝缘体内的一端,另一端从壳体延伸。
    • 8. 发明授权
    • Lithium-iodine battery having coated anode
    • 具有涂覆阳极的锂 - 碘电池
    • US4071662A
    • 1978-01-31
    • US647002
    • 1976-01-07
    • Ralph T. MeadWilson GreatbatchFrank W. Rudolph
    • Ralph T. MeadWilson GreatbatchFrank W. Rudolph
    • H01M4/06H01M6/18H01M2/02
    • H01M4/06H01M6/182
    • A lithium-iodine cell comprising a cathode including a charge transfer complex of an organic donor component and iodine, an anode including a lithium element having a surface operatively contacting the charge transfer complex material, and a coating on the lithium surface of an organic electron donor material, preferably but not necessarily the organic donor component of the charge transfer complex. The organic electron donor material preferably comprises polyvinyl pyridine polymer and in particular two-vinyl pyridine polymer. A solution of two-vinyl pyridine polymer in benzene is brushed onto the anode lithium surface and then exposed to a desiccant. A number of coatings preferably are applied successively to provide a resulting or finished coating of increased thickness.
    • 一种锂碘电池,其包含阴极,其包括有机供体组分和碘的电荷转移络合物,包含具有可操作地接触电荷转移络合物材料的表面的锂元素的阳极和有机电子给体的锂表面上的涂层 材料,优选但不一定是电荷转移络合物的有机供体组分。 有机电子给体材料优选包含聚乙烯基吡啶聚合物,特别是二乙烯基吡啶聚合物。 将二乙烯基吡啶聚合物在苯中的溶液刷在阳极锂表面上,然后暴露于干燥剂中。 优选连续施加多个涂层以提供增加厚度的所得或成品涂层。
    • 9. 发明授权
    • Method of making a lithium-iodine cell
    • 锂碘电池的制造方法
    • US4385439A
    • 1983-05-31
    • US161058
    • 1980-06-19
    • Ralph T. MeadFrank W. RudolphNorbert W. Frenz, Jr.Wilson Greatbatch
    • Ralph T. MeadFrank W. RudolphNorbert W. Frenz, Jr.Wilson Greatbatch
    • H01M2/06H01M6/18H01M2/36
    • H01M2/065H01M6/182Y10T29/49108Y10T29/4911
    • A lithium-iodine cell comprising a casing of electrically conducting material, an anode including a lithium element within the casing, an electrical conductor operatively connected to the lithium element and extending out from the casing, and a cathode comprising iodine-containing material in operative contact with both the casing and the lithium element. The anode electrical conductor is completely sealed from the rest of the cell, and the casing serves as the cathode current collector. The anode operative surface is provided with a coating of an organic electron donor material. The anode conductor is enclosed within the combination of an insulator element within the casing, an isolator element between the insulator and the conductor, and a ferrule having one end within the insulator and the other end extending from the casing. During assembly, the cathode material is introduced in heated form and a filling element is employed which serves to keep the edge of the casing open end clean to facilitate subsequent welding of a lid to the casing.
    • 一种锂 - 碘电池,包括导电材料的壳体,在壳体内包含锂元素的阳极,可操作地连接到锂元素并从壳体延伸出来的电导体,以及包含操作接触的含碘材料的阴极 与壳体和锂元素。 阳极电导体与电池的其余部分完全密封,并且壳体用作阴极集电器。 阳极工作表面设置有有机电子给体材料的涂层。 阳极导体封装在壳体内的绝缘体元件,绝缘体和导体之间的绝缘元件以及绝缘体内的一端和从壳体延伸的另一端的套圈之间。 在组装期间,阴极材料以加热形式引入,并且使用填充元件,其用于保持壳体的边缘开口端清洁以便于将盖子随后焊接到壳体。
    • 10. 发明授权
    • Lithium-bromine cell
    • 溴化锂电池
    • US4105833A
    • 1978-08-08
    • US722653
    • 1976-09-16
    • Wilson GreatbatchRalph T. MeadRobert L. McLeanFrank W. RudolphNorbert W. Frenz
    • Wilson GreatbatchRalph T. MeadRobert L. McLeanFrank W. RudolphNorbert W. Frenz
    • H01M2/06H01M4/60H01M6/18H01M4/36
    • H01M6/182H01M2/065H01M4/60H01M6/18
    • A lithium-bromine cell comprising a casing which can be of electrically conducting material and containing a lithium anode element from which a sealed conductor extends through the casing. A filling element which can be of electrically conducting material and which has a passage therethrough is fixed to the sealed casing with one end of the passage in communication with the interior of the casing and the other end externally exposed. Bromine is introduced through the passage to the interior of the casing into operative relationship with the lithium anode whereupon the passage is closed to complete the cell. The electrically conducting casing serves as a cathode current collector in operative contact with the bromine cathode, and after closing of the passage the electrically conducting filling element serves as an electrical terminal for the cell. An electrical potential difference exists between the terminal and the anode conductor during operation of the cell.
    • 一种锂 - 溴电池,其包括可以是导电材料并且包含锂阳极元件的壳体,密封导体从该锂阳极元件穿过壳体。 可以是导电材料并且具有穿过其的通道的填充元件被固定到密封壳体,通道的一端与壳体的内部连通,另一端从外部暴露。 通过通向壳体内部的通道将溴引入与锂阳极的操作关系,由此通道封闭以完成电池。 导电壳体用作与溴阴极有效接触的阴极集电器,并且在通路关闭之后,导电填充元件用作电池的电端子。 在电池工作期间,端子和阳极导体之间​​存在电位差。