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    • 3. 发明授权
    • Evacuated tube transport system with interchange capability
    • 具有交换功能的真空管输送系统
    • US09228298B2
    • 2016-01-05
    • US13831497
    • 2013-03-14
    • Daryl Oster
    • Daryl Oster
    • E01B25/34B61B13/10B61B13/08E01B25/30
    • E01B25/34B60L13/04B61B13/08B61B13/10E01B25/30Y02T30/30
    • A High Temperature Superconductor Maglev (HTSM) for Evacuated Tube Transport (ETT) with a magnetic levitation structure for ETT capsule vehicles traveling in an evacuated tube. At least one ETT capsule travels within an evacuated tube, an upper and a lower cryostat respectively mount at the top and bottom of said ETT capsule along the length thereof, at least a plurality of superconductor levitation force elements divided between said upper and lower cryostats. The levitation force being spread over the length of capsule, however substantially concentrated in a compact cross-sectional area. At least a pair of permanent magnetic elements mounted at the top and bottom of the evacuated tube to levitate the capsule. At least a pair of capsule based switchable diverge force elements cooperate with at least a pair of tube based diverge force elements to steer the capsule while in an interchange.
    • 用于真空管运输(ETT)的高温超导磁浮(HTSM),具有用于在真空管中行进的ETT胶囊车辆的磁悬浮结构。 至少一个ETT胶囊在真空管内行进,上下低温恒温器分别安装在所述ETT胶囊的顶部和底部沿其长度,至少多个超导体悬浮力元件分成所述上低温恒温器和下低温恒温器。 悬浮力分布在胶囊的长度上,然而基本上集中在紧凑的横截面区域中。 至少一对永磁元件安装在真空管的顶部和底部以使胶囊悬浮。 至少一对基于胶囊的可切换发散力元件与至少一对基于管的发散力元件协作以在交换中转向胶囊。
    • 4. 发明申请
    • EVACUATED TUBE TRANSPORT SYSTEM WITH INTERCHANGE CAPABILITY
    • 具有交互能力的废气管道运输系统
    • US20140261054A1
    • 2014-09-18
    • US13831497
    • 2013-03-14
    • Daryl Oster
    • Daryl Oster
    • E01B25/34B61B13/08B61B13/10
    • E01B25/34B60L13/04B61B13/08B61B13/10E01B25/30Y02T30/30
    • A High Temperature Superconductor Maglev (HTSM) for Evacuated Tube Transport (ETT) with a magnetic levitation structure for ETT capsule vehicles traveling in an evacuated tube. At least one ETT capsule travels within an evacuated tube, an upper and a lower cryostat respectively mount at the top and bottom of said ETT capsule along the length thereof, at least a plurality of superconductor levitation force elements divided between said upper and lower cryostats. The levitation force being spread over the length of capsule, however substantially concentrated in a compact cross-sectional area. At least a pair of permanent magnetic elements mounted at the top and bottom of the evacuated tube to levitate the capsule. At least a pair of capsule based switchable diverge force elements cooperate with at least a pair of tube based diverge force elements to steer the capsule while in an interchange.
    • 用于真空管运输(ETT)的高温超导磁浮(HTSM),具有用于在真空管中行进的ETT胶囊车辆的磁悬浮结构。 至少一个ETT胶囊在真空管内行进,上下低温恒温器分别安装在所述ETT胶囊的顶部和底部沿其长度,至少多个超导体悬浮力元件分成所述上低温恒温器和下低温恒温器。 悬浮力分布在胶囊的长度上,然而基本上集中在紧凑的横截面区域中。 至少一对永磁元件安装在真空管的顶部和底部以使胶囊悬浮。 至少一对基于胶囊的可切换发散力元件与至少一对基于管的发散力元件协作以在交换中转向胶囊。
    • 6. 发明授权
    • Railway switch
    • 铁路开关
    • US5499583A
    • 1996-03-19
    • US358164
    • 1994-12-16
    • Gottfried Blumel
    • Gottfried Blumel
    • E01B25/00E01B25/34E01B26/00E01B25/12
    • E01B25/34
    • A railway switch has a rightward switch position for coupling a track with a right track and a leftward switch position for coupling the track with a left track. Each track has a right rail and a left rail. The switch has a first or right rail of the rightward switch position, a second or left rail of the rightward switch position, a third or right rail of the leftward switch position and a fourth or left rail of the leftward switch position. The switch includes a turning segment whose carrier member supports the second and third rails and is rotatable through 90.degree.. The first and fourth rails are shiftably supported by respective switch tongues. The turning segment and the switch tongues are each movable into first and second positions. In the first position the first and second rails are in an operative state and the third and fourth rails are in a withdrawn, inoperative state, whereas in the second position the third and fourth rails are in an operative state and the first and second rails are in a withdrawn, inoperative state.
    • 铁路开关具有用于将轨道与右轨道和用于将轨道与左轨道联接的向左开关位置的向右开关位置。 每个轨道都有一个右轨道和一个左侧轨道。 开关具有向右开关位置的第一或右轨道,向右开关位置的第二或左侧轨道,左侧开关位置的第三或右侧轨道以及左侧开关位置的第四或左侧轨道。 该开关包括转动部分,其承载部件支撑第二和第三轨道并且可旋转90度。 第一和第四导轨由相应的开关舌片可移动地支撑。 转动部分和开关舌片各自可移动到第一和第二位置。 在第一位置中,第一和第二轨道处于操作状态,第三和第四轨道处于撤回的非操作状态,而在第二位置,第三和第四轨道处于操作状态,第一和第二轨道是 在撤回,不工作的状态。
    • 8. 发明授权
    • Suspended railway having a magnetic suspended guide of its vehicles
    • 悬挂铁路的悬挂导轨
    • US3847086A
    • 1974-11-12
    • US31990872
    • 1972-12-29
    • MESSERSCHMITT BOELKOW BLOHM
    • STEENBECK U
    • E01B25/00B61B13/08E01B25/34H02K41/03E01B25/06
    • B61B13/08
    • A suspended railway system utilizing a magnetic guide for vehicles and at least a support beam which is partly enclosed by the vehicle as a support member along the path of travel. The suspended railway system has, in the area of a switch, at least three support beams which are tapered on one side toward the central portion of the switch and terminate at the central portion. A first support beam extends from the switch entrance into the central portion of the switch and is arranged between the remaining two support beams. The remaining two support beams extend from the central portion of the switch to the switch exit. The switching function from one path of travel to another path of travel is accomplished by electromagnetic principles.
    • 一种悬挂的铁路系统,其利用用于车辆的磁引导件和至少一个支撑梁,所述支撑梁部分地被所述车辆包围,作为沿行进路径的支撑构件。 悬挂的铁路系统在开关区域中具有至少三个支撑梁,其在一侧朝向开关的中心部分呈锥形并且终止于中心部分。 第一支撑梁从开关入口延伸到开关的中心部分,并且布置在剩余的两个支撑梁之间。 剩余的两个支撑梁从开关的中心部分延伸到开关出口。 从一个行进路径到另一个行驶路径的切换功能是由电磁原理完成的。