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A COMPACT TRANSMISSION, INCLUDING A MAIN TRANSMISSION AND A SUBTRANSMISSION

机译:紧凑的变速箱,包括主要变速箱和变速箱变速箱

摘要

A transmission for an automotive vehicle, including a manually controlled main transmission and an automatically controlled subtransmission. The main transmission includes a main casing within which are rotatably supported a tubular intermediate shaft and a power output shaft, in parallel. Several gear wheels on each of these shafts cooperate, and by their selective engagement various different speed driving ratios may be obtained between the shafts. One end of the intermediate shaft and one end of the power output shaft project from one end of the main casing. A power input shaft passes coaxially through the tubular intermediate shaft and is rotatably supported therein. The ends of the power input shaft project from the ends of the tubular intermediate shaft. The subtransmission includes a subcasing attached to the aforesaid one end of the main casing, and within the subcasing a planetary gear mechanism is arranged between the power input shaft and the tubular intermediate shaft so as, under the control of a fluid pressure actuator, either to couple these two shafts together directly, or to provide an increase of rotational speed from the input shaft to the intermediate shaft. A fluid pressure control device selectively supplies actuating fluid pressure to the actuator, and is located within the subcasing in a position axially opposing the end of the power output shaft. The end of the power input shaft remote from the subcasing is driven. The fluid pressure control device is automatically controlled according to operational parameters of the vehicle to selectively supply fluid pressure to the actuator.
机译:用于机动车辆的变速器,包括手动控制的主变速器和自动控制的副变速器。主变速器包括主壳体,在该主壳体中可旋转地支撑有管状的中间轴和动力输出轴。这些轴中的每一个上的多个齿轮配合,并且通过它们的选择性接合,可以在轴之间获得各种不同的速度传动比。中间轴的一端和动力输出轴的一端从主壳体的一端伸出。动力输入轴同轴地穿过管状中间轴并且被可旋转地支撑在其中。动力输入轴的端部从管状中间轴的端部突出。子变速器包括附接到主壳体的上述一端的子壳体,并且在该子壳体内,在动力输入轴和管状中间轴之间布置有行星齿轮机构,从而在流体压力致动器的控制下,或者将这两个轴直接耦合在一起,或者增加从输入轴到中间轴的转速。流体压力控制装置选择性地将致动流体压力供应至致动器,并且位于壳体内的轴向上与动力输出轴的端部相对的位置。动力输入轴远离外壳的一端被驱动。根据车辆的操作参数自动控制流体压力控制装置,以选择性地将流体压力供应给致动器。

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