会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 12. 发明申请
    • Method and systems for aligning a stationary vehicle with an artificial horizon
    • 将固定车辆与人造地平线对准的方法和系统
    • US20070007734A1
    • 2007-01-11
    • US11494935
    • 2006-07-28
    • Graham BrookesDaniel NordmeyerBrian HoaglanGreg Holbrook
    • Graham BrookesDaniel NordmeyerBrian HoaglanGreg Holbrook
    • B60G17/00
    • B60G17/0155B60G17/017B60G17/01908B60G2400/051B60G2400/10B60G2400/204B60G2400/252B60G2500/201B60G2500/204B60G2500/30B60G2500/32B60G2600/04B60G2600/20B60G2800/019B60G2800/20B60G2800/912
    • A method of positioning a vehicle chassis of a stationary vehicle in approximate alignment with a predetermined datum is provided. The vehicle has an axle and a fluid suspension system. The fluid suspension system includes a control device, a pressurized fluid source and an exhaust passage. The pressurized fluid source and the exhaust passage are in fluid communication with the plurality of fluid suspension members through the control device. The vehicle also includes an electronic control unit operatively associated with the control device. The method including steps of providing an alignment sensor supported on the chassis for outputting a signal indicative of the orientation of the chassis to the electronic control unit and acquiring a signal output by the alignment sensor. Another step includes comparing the signal from the alignment sensor to alignment data stored in the electronic control unit. A further step includes selectively operating the control device to permit fluid communication between one or more of the fluid suspension members and one of the pressurized fluid source and the fluid exhaust until the signal from the alignment sensor approximately corresponds to the alignment data. A system for performing the method is also discussed.
    • 提供了一种将固定车辆的车辆底盘定位成与预定数据大致对准的方法。 车辆具有轴和流体悬架系统。 流体悬架系统包括控制装置,加压流体源和排气通道。 加压流体源和排气通道通过控制装置与多个流体悬架构件流体连通。 车辆还包括与控制装置可操作地相关联的电子控制单元。 该方法包括以下步骤:提供支撑在底盘上的对准传感器,用于将表示机箱的方向的信号输出到电子控制单元并获取由对准传感器输出的信号。 另一步骤包括将来自对准传感器的信号与存储在电子控制单元中的对准数据进行比较。 另一步骤包括选择性地操作控制装置以允许一个或多个流体悬架构件与加压流体源和流体排放中的一个之间的流体连通,直到来自对准传感器的信号大致对应于对准数据。 还讨论了用于执行该方法的系统。
    • 13. 发明授权
    • Pneumatic suspension system for a motor vehicle
    • 汽车气动悬挂系统
    • US06726224B2
    • 2004-04-27
    • US09958030
    • 2001-10-03
    • Reinhold JurrReimar Schoop
    • Reinhold JurrReimar Schoop
    • B60G17052
    • B60G17/0523B60G2500/2012B60G2500/203B60G2500/204B60G2500/2044B60G2500/30
    • A pneumatic spring system is provided for a motor vehicle with a compressor unit, a storage unit, as well as on-off valves, via which the individual pneumatic springs of the individual wheels are supplied with compressed air. In the area between the compressor unit and the on-off valves, there is provided a vent line that empties out into the atmosphere and that can be locked or cleared by a locking valve. Provision is also made for measures with whose help the air mass flow, emerging via the cleared vent line during a certain time interval, can be limited with respect to an unlimited state in order to prevent any undesirable noise generation during the venting of the system. One measure connects in parallel to a separately lockable main vent line, a separately lockable high-pressure vent line whose clear through flow cross section is smaller than that of the main vent line. Alternatively, a choke element can be provided in the vent line. The through flow cross section of the vent line can be limited with the help of that choke element.
    • 为具有压缩机单元,存储单元以及开关阀的机动车辆提供气动弹簧系统,各个车轮的各个气动弹簧经由该气动弹簧系统供应压缩空气。 在压缩机单元和开闭阀之间的区域中,设置有排出大气中的排气管线,并且可以通过锁定阀锁定或清除。 还规定了一些措施,其帮助是在一定时间间隔期间通过清除的排气管线出现的空气质量流量可以相对于无限状态来限制,以防止在系统排气期间产生不期望的噪声。 一个措施并联连接到一个单独可锁定的主排气管线,一个独立可锁定的高压排气管路,其透明流动横截面积小于主排气管路的截流面积。 或者,可以在排气管线中设置扼流圈元件。 通过该扼流圈元件的帮助可以限制排气管线的通流截面。
    • 17. 发明授权
    • Level control arrangement for vehicles having air springs
    • 具有空气弹簧的车辆的液位控制装置
    • US6116586A
    • 2000-09-12
    • US168970
    • 1998-10-09
    • Helge WesterkampUwe FolchertHeinz Job
    • Helge WesterkampUwe FolchertHeinz Job
    • B60G17/015B60G17/052F15B21/04F16F9/43B60G11/26
    • F15B21/045B60G17/0155B60G17/0523B60G2202/152B60G2400/712B60G2500/02B60G2500/20B60G2500/2012B60G2500/2021B60G2500/204B60G2500/2042B60G2500/2044B60G2500/30B60G2600/08
    • The invention relates to a level control arrangement for a vehicle having air springs (8) via which the chassis of the vehicle is suspended relative to at least one vehicle axle. A pneumatically-controllable directional-control valve (18) is arranged between the compressor (4) and the air dryer (6) and the directional-control valve (18) has two control inputs (20 and 22). In the base state of the level control arrangement, the compressor (4) is connected via the pneumatically-controllable directional-control valve (18) to the air dryer (6). When the control line (26) of the first control input (20) is connected via a controllable directional-control valve (30) to the atmosphere, the pneumatically-controllable directional-control valve 18 transfers into the other switching state and the air spring (8) can be vented via the air dryer (6). The pneumatically-controllable directional-control valve (18) permits large flow cross sections to be switched so that the air dryer (6) can be rapidly vented when venting the air spring (8) and a regeneration of the air dryer (6) is then possible in an especially advantageous manner.
    • 本发明涉及一种具有空气弹簧(8)的车辆的液位控制装置,通过该空气弹簧(8),车辆的底盘相对于至少一个车轴悬挂。 压缩机(4)和空气干燥器(6)之间设置有气动控制的方向控制阀(18),方向控制阀(18)具有两个控制输入(20和22)。 在液位控制装置的基础状态下,压缩机(4)通过气动控制的方向控制阀(18)连接到空气干燥器(6)。 当第一控制输入(20)的控制线(26)经由可控方向控制阀(30)连接到大气时,气动控制的方向控制阀18转移到另一个切换状态,空气弹簧 (8)可以通过空气干燥器(6)排出。 可气动控制的方向控制阀(18)允许切换大的流动横截面,使得当排空空气弹簧(8)时空气干燥器(6)可以快速排气,并且空气干燥器(6)的再生 然后可能以特别有利的方式。
    • 20. 发明授权
    • Pneumatic suspension system of a motor vehicle and method
    • 汽车气动悬架系统及方法
    • US09010785B2
    • 2015-04-21
    • US14364438
    • 2012-12-05
    • WABCO GmbH
    • Reinhard GoczMichael HaverkampJohann LucasAndreas RutschThomas Stellmacher
    • B60G17/052B60G17/056
    • B60G17/052B60G17/0523B60G17/0528B60G2202/152B60G2500/2012B60G2500/2021B60G2500/203B60G2500/204B60G2500/30
    • A suspension system includes spring bellows that are associated with pneumatic springs of vehicle axles, are connectable by lines having level control valves to a main pressure line, and can be shut off with respect thereto. The main line is connectable by valves alternately to a compressed air source and a sink, and can be shut of with respect thereto. To set different air mass flow rates when air is supplied to/removed from the bellows, the bellows of the springs at least on a vehicle axle or side can be connected to the main line in parallel with the connecting lines, at least by further connecting lines having further level control valves, and can be shut off with respect thereto. The further valves have nozzle cross-sectional surfaces the same size as the other level control valves. Chokes are downstream of the further valves in the ventilation direction, the cross-sectional surfaces thereof being smaller than the nozzle cross-sectional surfaces of the further valves.
    • 悬挂系统包括与车轴的气动弹簧相关联的弹簧波纹管,可通过具有液位控制阀的线路连接到主压力管线,并且可以相对于其而切断。 主管线可以通过阀交替连接到压缩空气源和水槽,并且可以相对于其关闭。 为了在空气从波纹管供应/移出空气时设定不同的空气质量流量,至少在车辆轴或侧面上的弹簧的波纹管可以与连接线并联连接到主线路,至少通过进一步的连接 线路具有进一步的液位控制阀,并且可以相对于其切断。 另外的阀具有与其它液位控制阀相同尺寸的喷嘴横截面。 扼流器在通风方向上的另外的阀的下游,其横截面小于其它阀的喷嘴横截面。