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    • 1. 发明授权
    • Method for load-dependent air quality control in a pneumatic spring system
    • 气动弹簧系统中与负载相关的空气质量控制方法
    • US07731203B2
    • 2010-06-08
    • US11631684
    • 2005-05-24
    • Heike IliasUwe Folchert
    • Heike IliasUwe Folchert
    • B60G17/00
    • B60G17/0155B60G17/018B60G17/052B60G2202/152B60G2400/252B60G2400/51222B60G2400/60B60G2500/201B60G2500/2014B60G2500/30B60G2600/02B60G2600/85Y10T137/0379
    • According to a method for controlling the air volume in a closed pneumatic spring system of a vehicle, an air-powered pump supplies at least two pneumatic springs and/or a compressed air reservoir with a specific air volume as needed such that the air pressure prevailing in the respective pneumatic spring and/or the compressed air reservoir is at a level which causes a vehicle body resting on the pneumatic spring to be positioned at a desired distance from the roadway or the vehicle axle. In order to obtain largely constant control velocities at different load conditions of the vehicle while using a smaller compressed air reservoir than in previously known systems, the pneumatic spring pressure (P) is measured in at least two of the pneumatic springs, the distance (HN, NN, TN) of the vehicle body to the roadway or the vehicle axle is determined, the axle load (AL) of at least one vehicle axle is determined from the pneumatic spring pressure (P) and the distance (HN, NN, TN) of the vehicle body to the roadway or the vehicle axle, a target system air volume (PV_SOLL) is determined in accordance with the respective axle load (AL), and the actual system air volume is adjusted to said target system air volume by actuating the air-powered pump or a relief valve.
    • 根据用于控制车辆的闭合气动弹簧系统中的空气体积的方法,空气动力泵根据需要提供具有特定空气体积的至少两个气动弹簧和/或压缩空气储存器,使得空气压力占优势 在相应的气动弹簧和/或压缩空气储存器中处于使得搁置在气动弹簧上的车身定位在距离道路或车辆车辆所需距离处的水平。 为了在使用比以前已知的系统更小的压缩空气存储器的同时在车辆的不同负载条件下获得大体上恒定的控制速度,气动弹簧压力(P)在至少两个气动弹簧中测量,距离(HN ,NN,TN),确定至少一个车轴的轴负载(AL),并根据气动弹簧压力(P)和距离(HN,NN,TN )到车道或车辆车道的目标系统空气量(PV_SOLL)根据相应的轴载荷(AL)确定,并且通过致动将实际的系统空气量调节到所述目标系统的空气体积 空气动力泵或安全阀。
    • 2. 发明授权
    • Air supply system for a motor vehicle
    • 汽车供气系统
    • US07097166B2
    • 2006-08-29
    • US10848110
    • 2004-05-19
    • Uwe Folchert
    • Uwe Folchert
    • F16F5/00
    • B60G17/0523B60G2202/412B60G2206/0116B60G2400/51222B60G2500/02B60G2500/2014B60G2500/203B60G2500/205
    • In addition to the consumers of a closed loop, known air supply systems also can supply an external consumer with fresh pressurized air. These systems are very complex with respect to apparatus and furthermore have the disadvantage that already improved pressurized air can escape from the pressurized air store during the supply of the external consumer. A switchable 3/2-directional valve (31) is arranged in the first consumer pressure line (19) of the drive unit (1) and a switchable 3/2-directional valve (32) is mounted in the store pressure line (11) of the drive unit (1) and a switchable check valve is mounted in the bypass line (16) of the store pressure line (11). This check valve disables the throttle function of the bypass throttle (17).
    • 除了闭环的消费者之外,已知的供气系统还可以向外部消费者提供新鲜的加压空气。 这些系统在装置方面非常复杂,并且还具有以下缺点:在外部消费者的供应期间,已经改进的加压空气可以从加压空气储存器逸出。 可驱动的三通阀(31)布置在驱动单元(1)的第一消耗压力管线(19)中,并且可切换的3/2方向阀(32)安装在储存压力管线(11 )和可切换止回阀安装在商店压力管线(11)的旁通管线(16)中。 该止回阀禁止旁路节流阀(17)的节气门功能。
    • 10. 发明申请
    • Method for Load-Dependent Air Quality Control in a Pneumatic Spring System
    • 气动弹簧系统负载依赖空气质量控制方法
    • US20070251575A1
    • 2007-11-01
    • US11631684
    • 2005-05-24
    • Heike IliasUwe Folchert
    • Heike IliasUwe Folchert
    • F17D3/01
    • B60G17/0155B60G17/018B60G17/052B60G2202/152B60G2400/252B60G2400/51222B60G2400/60B60G2500/201B60G2500/2014B60G2500/30B60G2600/02B60G2600/85Y10T137/0379
    • According to a method for controlling the air volume in a closed pneumatic spring system of a vehicle, an air-powered pump supplies at least two pneumatic springs and/or a compressed air reservoir with a specific air volume as needed such that the air pressure prevailing in the respective pneumatic spring and/or the compressed air reservoir is at a level which causes a vehicle body resting on the pneumatic spring to be positioned at a desired distance from the roadway or the vehicle axle. In order to obtain largely constant control velocities at different load conditions of the vehicle while using a smaller compressed air reservoir than in previously known systems, the pneumatic spring pressure (P) is measured in at least two of the pneumatic springs, the distance (HN, NN, TN) of the vehicle body to the roadway or the vehicle axle is determined, the axle load (AL) of at least one vehicle axle is determined from the pneumatic spring pressure (P) and the distance (HN, NN, TN) of the vehicle body to the roadway or the vehicle axle, a target system air volume (PV_SOLL) is determined in accordance with the respective axle load (AL), and the actual system air volume is adjusted to said target system air volume by actuating the air-powered pump or a relief valve.
    • 根据用于控制车辆的闭合气动弹簧系统中的空气体积的方法,空气动力泵根据需要提供具有特定空气体积的至少两个气动弹簧和/或压缩空气储存器,使得空气压力占优势 在相应的气动弹簧和/或压缩空气储存器中处于使得搁置在气动弹簧上的车身定位在距离道路或车辆车辆所需距离处的水平。 为了在使用比以前已知的系统更小的压缩空气存储器的同时在车辆的不同负载条件下获得大体上恒定的控制速度,气动弹簧压力(P)在至少两个气动弹簧中测量,距离(HN ,NN,TN),确定至少一个车轴的轴负载(AL),并根据气动弹簧压力(P)和距离(HN,NN,TN )到车辆道路或车辆车道的目标系统空气量(PV_SOLL)根据相应的轴载荷(AL)确定,并且通过致动将实际的系统空气量调节到所述目标系统的空气体积 空气动力泵或安全阀。