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    • 4. 发明授权
    • Energy conversion device with improved seal
    • 能量转换装置具有改进的密封
    • US4239838A
    • 1980-12-16
    • US91284
    • 1979-11-05
    • Gerald R. MillerAnil V. Virkar
    • Gerald R. MillerAnil V. Virkar
    • H01M2/00H01M2/08H01M10/39
    • H01M2/08H01M10/3909H01M2/00
    • An energy conversion device comprising an improved sealing member adapted to seal a cation-permeable casing to the remainder of the device. The sealing member comprises a metal substrate which (i) bears a nonconductive and corrosion resistant coating on the major surface to which said casing is sealed, and (ii) is corrugated so as to render it flexible, thereby allowing said member to move relative to said casing without cracking the seal therebetween. Corrugations may be circumferential, radial, or both radial and circumferential so as to form dimples. The corrugated member may be in form of a bellows or in a substantially flat form, such as a disc.
    • 一种能量转换装置,包括改进的密封构件,其适于将阳离子可渗透的壳体密封到所述装置的其余部分。 密封构件包括金属基底,其在(i)在所述壳体被密封的主表面上承载不导电和耐腐蚀的涂层,并且(ii)是波纹状的,以使其变得柔性,从而允许所述构件相对于 所述外壳不会破裂其间的密封。 波纹可以是周向的,径向的或径向的和周向的,以便形成凹坑。 波纹构件可以是波纹管的形式或者基本平坦的形式,例如盘。
    • 5. 发明授权
    • Electrically conductive and corrosion resistant current collector and/or
container
    • 导电和耐腐蚀集电器和/或容器
    • US4160069A
    • 1979-07-03
    • US769997
    • 1977-02-18
    • Owen W. JohnsonGerald R. MillerPaul S. Beutler
    • Owen W. JohnsonGerald R. MillerPaul S. Beutler
    • H01M2/02C04B35/46C04B35/71H01M4/66H01M10/39H01M6/20
    • C04B35/71C04B35/46H01M10/3909H01M4/661H01M4/664
    • An improved electrically conductive current collector suitable for use in high temperature applications in the presence of corrosive environments comprising: (A) a high strength, noncorrosive electronically conductive ceramic member which serves as the primary load bearing element for said current collector; and (b) a highly electronically conductive metal cladding intimately attached to a substantial portion of one surface of said ceramic member and adapted to direct current flow through said ceramic member and to shunt said current between said member and an external contact. The disclosed current collectors are ideally suited for use as current collectors and current collector/containers for electrical conversion devices such as the sodium/sulfur battery and the like. Also disclosed are two processes for preparing tantalum or niobium doped rutile titanium dioxide. The electronically conductive ceramics produced using these methods are ideally suited for use as the ceramic in the disclosed current collector.
    • 一种适用于在腐蚀环境存在的高温应用中的改进的导电集电器,包括:(A)高强度,非腐蚀性的电子导电陶瓷构件,其用作所述集电器的主要承载元件; 和(b)高度电子导电的金属包层,其紧密地附接到所述陶瓷构件的一个表面的大部分上,并且适于引导电流流过所述陶瓷构件并且在所述构件和外部接触之间分流所述电流。 所公开的电流收集器理想地适合用作用于诸如钠/硫电池等的电转换装置的集流器和集电器/容器。 还公开了制备钽或铌掺杂的金红石型二氧化钛的两种方法。 使用这些方法制造的电子导电陶瓷理想地适用于所公开的集电器中的陶瓷。
    • 8. 发明授权
    • Electrically conductive and corrosion resistant current collector and/or
container
    • 导电和耐腐蚀集电器和/或容器
    • US4483785A
    • 1984-11-20
    • US991
    • 1979-01-08
    • Owen W. JohnsonGerald R. MillerPaul S. Beutler
    • Owen W. JohnsonGerald R. MillerPaul S. Beutler
    • C04B35/46C04B35/71H01M4/66H01M10/39
    • H01M4/664C04B35/46C04B35/71H01M10/3909H01M4/661
    • An improved electrically conductive current collector suitable for use in high temperature applications in the presence of corrosive environments comprising: (A) a high strength, noncorrosive electronically conductive ceramic member which serves as the primary load bearing element for said current collector; and (b) a highly electronically conductive metal cladding intimately attached to a substantial portion of ore surface of said ceramic member and adapted to direct current flow through said ceramic member and to shunt said current between said member and an external contact. The disclosed current collectors are ideally suited for use as current collectors and current collector/containers for electrical conversion devices such as the sodium/sulfur battery and the like. Also disclosed are two processes for preparing tantalum or niobium doped rutile titanium dioxide. The electronically conductive ceramics produced using these methods are ideally suited for use as the ceramic in the disclosed current collector.
    • 一种适用于在腐蚀环境存在的高温应用中的改进的导电集电器,包括:(A)高强度,非腐蚀性的电子导电陶瓷构件,其用作所述集电器的主要承载元件; 和(b)高度电子导电的金属包层,其紧密地附着到所述陶瓷构件的矿石表面的大部分上,并且适于引导电流流过所述陶瓷构件并在所述构件和外部接触之间分流所述电流。 所公开的电流收集器理想地适合用作用于诸如钠/硫电池等的电转换装置的集流器和集电器/容器。 还公开了制备钽或铌掺杂的金红石型二氧化钛的两种方法。 使用这些方法制造的电子导电陶瓷理想地适用于所公开的集电器中的陶瓷。
    • 10. 发明授权
    • Active toe adjustment apparatus
    • 活动脚趾调节装置
    • US5143400A
    • 1992-09-01
    • US727400
    • 1991-07-05
    • Gerald R. MillerJean P. Couratier
    • Gerald R. MillerJean P. Couratier
    • B62D17/00
    • B62D17/00
    • The advantage of the theoretically correct Ackerman steering of land vehicles is well documented in the literature. Steering forces, vehicle handling, and tire wear are greatly improved by having correct toe angles of all steerable wheels. Adjustements in the suspension system and steering apparatus at the factory only provide first-order corrections to toe angles. A process for actively adjusting toe angles during operation of the vehicle is disclosed in this invention. Vehicle dynamics measuring devices to sense vehicle motion or position steering devices to measure toe angles are used in this process. Secondary toe angle corrections can be actively provided to account for inherent toe angle changes during maneuvers of the vehicle. An aftermarket apparatus for actively adjusting the toe angle is an embodiment of this invention. One such device includes a mechanical screw actuator apparatus, a microstepping motor with optical encoder, computer with control strategy chip and a toe angle sensing device or an onboard dynamics computer. This apparatus can be used on all land vehicles and is especially useful for modifying existing truck and bus steering systems.
    • 理论上正确的阿克曼驾驶陆上车辆的优势在文献中有很好的记载。 转向力,车辆处理和轮胎磨损通过使所有可转向轮具有正确的角度而大大提高。 在工厂的悬挂系统和转向装置中的调整只能提供一致的修正角度。 在本发明中公开了一种用于在车辆操作期间主动调节束角的过程。 在此过程中使用车辆动力学测量装置来感测车辆运动或定位转向装置以测量脚趾角度。 可以主动地提供次级角度校正以考虑车辆操纵期间的固有角度变化。 用于主动调节趾角的售后设备是本发明的实施例。 一种这样的装置包括机械螺杆致动器装置,具有光学编码器的微步进电动机,具有控制策略芯片的计算机和脚趾角度感测装置或车载动力学计算机。 该设备可用于所有陆上车辆,对修改现有的卡车和公共汽车转向系统尤其有用。