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    • 1. 发明授权
    • Engine
    • 发动机
    • EP1242740B1
    • 2008-10-29
    • EP00967437.5
    • 2000-09-28
    • Barreiro Technologies Pty Ltd
    • BARREIRO, Manuel Vieira
    • F03G1/00F16H33/06
    • F03G1/00Y10T74/1526Y10T74/1529Y10T74/1531Y10T74/18088
    • An engine (10) which can deliver mechanical work for an extended duration in comparison to the duration of energy input into the engine. The engine (10) includes a drive shaft (11) through which it delivers mechanical work. The drive shaft (11) is drivingly connected to an electrodynamic machine (13) for generating electrical energy. The drive shaft (11) is driven by a drive system (15) which incorporates various drive mechanisms (16), power means (17) for operating the drive mechanisms (16) and gearing (18) for drivingly connecting the drive mechanisms (16) to the drive shaft (11). The various drive mechanisms (16) are operated in a pre-determined sequence by the power means (17). Each drive mechanism (16) is in the form of a rack and pinion mechanism. The power means (17) for operating the drive mechanisms (16) comprises spring structure associated with each rack of the rack and pinion mechanisms. The power means (17) also comprises a hydraulic ram for loading each of the spring structures.
    • 与输入发动机的能量持续时间相比,发动机(10)能够提供延长的持续时间的机械功。 发动机(10)包括驱动轴(11),通过它传递机械功。 驱动轴(11)驱动地连接到用于产生电能的电动机器(13)。 驱动轴(11)由驱动系统(15)驱动,该驱动系统包括各种驱动机构(16),用于操作驱动机构(16)的动力装置(17)和用于驱动地连接驱动机构(16)的传动装置 )到驱动轴(11)。 各种驱动机构(16)由动力装置(17)以预定顺序操作。 每个驱动机构(16)都是齿条和小齿轮机构的形式。 用于操作驱动机构(16)的动力装置(17)包括与齿条和小齿轮机构的每个齿条相关联的弹簧结构。 动力装置(17)还包括用于装载每个弹簧结构的液压油缸。
    • 2. 发明公开
    • DRIVE MECHANISM
    • 驱动机构
    • EP2215358A1
    • 2010-08-11
    • EP08772652.7
    • 2008-07-11
    • Barreiro Technologies Pty Ltd
    • BARREIRO, Manuel Vieira
    • F03G1/00F16H33/02
    • F16H33/02F03G1/00F05B2260/40311
    • A apparatus in the form of a torsional propulsion device functioning as an engine (10) for delivery of sustained mechanical power over an extended duration with only intermittent energy input. The engine (10) comprises an input shaft (11), an output shaft (13) and a drive mechanism (40) therebetween. The drive mechanism (40) comprises a drive gear (45), an input mechanism (71), and a spring mechanism (73) operably connected to the drive gear 45. The spring mechanism (73) is adapted to be loaded by the input mechanism (71) during the loading event. The loaded spring mechanism (73) is adapted to rotate the drive gear (45) in a driving direction during a driving event, the driving event being of a duration exceeding that of the loading event. The duration of the driving event is significantly greater than the duration of the loading event such that the drive mechanism (40) can deliver output energy for an extended duration as compared to the duration of energy input. Typically, the duration of the driving event is of at least an order of magnitude greater than the duration of the loading event.