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    • 1. 发明申请
    • Continuous adhesive roller
    • US20060254017A1
    • 2006-11-16
    • US11403306
    • 2006-04-13
    • Jeremy KnopowSteven ZachMichael MaloneyJonathan MickKevin AsklingThomas Sutrina
    • Jeremy KnopowSteven ZachMichael MaloneyJonathan MickKevin AsklingThomas Sutrina
    • B60S1/02
    • A47L25/005B08B7/0028
    • A device (20) for cleaning surfaces is provided utilizing a web (94) of a tackified sheet material movably secured between rollers (56, 58) on the device (20) that enable the web (94) to be moved over the surface in opposite directions. The device (20) includes a supply roller (56) and a take-up roller (58) secured to opposed ends of the web (94) of adhesive sheet material, with at least one roller (56, 58) including a biasing mechanism (82) disposed within the roller (56, 58). The web (94) can be engaged with the surface by passing over a number of idler rollers (98) positioned between the supply roller (56) and take-up roller (58). The biasing mechanism (82) is designed to bias the movement of the web (94) onto the take-up roller (58), such that the mechanism (82) can be selectively operated to advance the web (94) from the supply roller (56) to the take-up roller (58) to expose a clean section of the adhesive sheet material (94). A synchronization mechanism (41) is also connected between the rollers (56, 58) to enable the rollers (56, 58) to rotate in a synchronous manner, regardless of the amount of the web (94) that is positioned on the rollers (56, 58) to continually tension the web (94) a proper amount. The device (20) also is designed to enable the supply roller (56) and take-up roller (58) to be removed as a unit for replacement and disposal after the entire length of the web (94) of adhesive sheet material has been utilized to clean a surface or surfaces. The rollers (56, 58) can be disposed within a housing (50, 202) having a handle (22, 205) thereon to facilitate use of the device (20). The handle (22, 205) can extend from one side of the housing (50) or can be secured to top surface of the housing (202).
    • 5. 发明授权
    • Double differential, electrically compensated constant speed drive
    • 双差动,电动补偿恒速驱动
    • US4734626A
    • 1988-03-29
    • US945869
    • 1986-12-23
    • Thomas SutrinaBryan W. Dishner
    • Thomas SutrinaBryan W. Dishner
    • B60L15/20H02P9/06H02P1/16H02P15/00
    • B60L15/2054H02P9/06H02P2101/30Y02T10/645Y02T10/7275Y10T307/718Y10T307/735
    • An electrically compensated constant speed drive (ECCSD) according to the present invention includes a pair of power transmission paths between the prime mover and a load wherein each power transmission path includes a mechanical differential having a first input coupled to the output of the prime mover and an output coupled to the load. A second input of each of the differentials is coupled to a permanent magnet machine and a power converter interconnects the electrical power windings of the permanent magnet machines. In operation, one of the permanent magnet machines is always operated as a generator while the other permanent magnet is operated as a motor so that power flow through the power converter is unidirectional. The ECCSD of the present invention results in a substantial reduction in the maximum control power and hence efficiency is increased and complexity is reduced.
    • 根据本发明的电补偿恒速驱动器(ECCSD)包括在原动机和负载之间的一对动力传递路径,其中每个动力传递路径包括具有耦合到原动机的输出的第一输入的机械差速器,以及 耦合到负载的输出。 每个差分的第二输入端耦合到永磁体机器,并且功率转换器将永磁体机器的电功率绕组互连。 在操作中,其中一个永久磁铁机器始终作为发电机工作,而另一个永久磁铁作为电动机运行,使得通过功率转换器的功率流是单向的。 本发明的ECCSD导致最大控制功率的显着降低,因此效率提高并且复杂性降低。