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    • 3. 发明授权
    • Integral air compression system
    • 一体式空气压缩系统
    • US5347968A
    • 1994-09-20
    • US65729
    • 1993-05-24
    • John L. Johnson, Jr.
    • John L. Johnson, Jr.
    • F01L9/02F02B3/06F02B65/00F04B41/04F02D13/04
    • F04B41/04F02B3/06
    • Air compression systems for internal combustion engines are utilizing an integral part of the engine to produce the compressed air necessary for operating the brakes of a vehicle. The ability to produce compressed air from an integral part of the engine is important in order to reduce the cost and weight associated with the engine and to increase performance capability and reliability. The integral air compression system includes a valve means associated with one of a plurality of combustion chambers. A housing is connected to a cylinder head and has first and second bore. A master piston is disposed within the first bore to define a first oil chamber. A slave piston is disposed within the second bore to define a second oil chamber. A means fluidly connects the first and second oil chambers. The master piston is forced toward the first oil chamber when another one of the combustion chambers is in the exhaust stroke. The second oil chamber becomes pressurized and forces the slave piston to open the valve means during the compression stroke of the one combustion chamber allowing compressed air to flow through a passage in the head and into a storing means. A means for monitoring the pressure in the storing means is utilized to control the integral air compression system.
    • 用于内燃机的空气压缩系统利用发动机的一部分来产生用于操作车辆制动器所需的压缩空气。 从发动机的整体部分生产压缩空气的能力是重要的,以便降低与发动机相关联的成本和重量并提高性能和可靠性。 整体空气压缩系统包括与多个燃烧室中的一个相关联的阀装置。 壳体连接到气缸盖并具有第一和第二孔。 主活塞设置在第一孔内以限定第一油室。 从动活塞设置在第二孔内以限定第二油室。 A装置使流体连接第一和第二油室。 当另一个燃烧室处于排气冲程时,主活塞被迫朝向第一油室。 第二油室变得加压,并且迫使从动活塞在一个燃烧室的压缩行程期间打开阀装置,允许压缩空气流过头部中的通道并进入存储装置。 用于监测存储装置中的压力的​​装置用于控制整体空气压缩系统。