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    • 3. 发明申请
    • Piston-cylinder unit
    • 活塞缸单元
    • US20090020005A1
    • 2009-01-22
    • US12218643
    • 2008-07-17
    • Marian BochenRainer MassmannMihai Augustin Vidrean
    • Marian BochenRainer MassmannMihai Augustin Vidrean
    • F15B15/26
    • F16F9/56
    • The invention pertains to a piston-cylinder unit for a hinged lid, especially a motor vehicle hinged lid, with a closed first end, a cylinder, a piston installed in the cylinder with freedom to slide back and forth, the piston dividing the cylinder into a working chamber remote from the first end and a second working near the first end; and a piston rod, which is attached to one side of the piston, projects through the first working chamber, and passes out of the cylinder concentrically to the central longitudinal axis of the cylinder through a guide and sealing device at the second end opposite the first end, where a first locking element is provided on the piston rod, and a second locking element is provided on the cylinder to establish a mechanical interlock, and where one of the locking elements comprises a sleeve, which cooperates with the other locking element to establish an interlock.
    • 本发明涉及一种用于铰接盖的活塞气缸单元,特别是机动车铰链盖,具有闭合的第一端,气缸,安装在气缸中的活塞,可自由地前后滑动,活塞将气缸分成 远离第一端的工作室和在第一端附近的第二工作; 并且附接到活塞的一侧的活塞杆穿过第一工作室突出,并且通过与第一工作室相对的第二端处的引导和密封装置同心地流出缸体的中心纵向轴线 其中第一锁定元件设置在活塞杆上,并且第二锁定元件设置在气缸上以建立机械互锁,并且其中一个锁定元件包括套筒,该套筒与另一个锁定元件配合以建立 一个互锁。
    • 4. 发明申请
    • Gas spring
    • 气泉水
    • US20080315470A1
    • 2008-12-25
    • US12198401
    • 2008-08-26
    • Holger ANSELMeik BroederStefan BonnekesselStephan EndersAlexander KoehlRainer MassmannRolf MintgenMarc NadlerWilli NieratschkerRainer Sauer
    • Holger ANSELMeik BroederStefan BonnekesselStephan EndersAlexander KoehlRainer MassmannRolf MintgenMarc NadlerWilli NieratschkerRainer Sauer
    • F16F9/52
    • F16F9/52F16F9/0209F16F9/3257
    • The invention relates to a gas spring which uses a compensating medium acting on a compensating piston in order to compensate the dependence on temperature of its characteristic. According to a first aspect of the invention, a compensating medium (16M) is selected whereof the critical temperature (TK) is between the lower limit temperature (Tlower) and a temperature exceeding the upper limit temperature (Tupper) Of the range of operating temperatures of the gas spring (50) by up to 100° C., and the gas spring (50) is designed such that, at an operating temperature (TB) of the gas spring (50) not exceeding the critical temperature (TK) of the compensating medium (16M), the point indicating the state of the compensating medium (16M) lies on or above the vapor pressure curve. According to a second aspect, in order to simplify the structure of the gas spring (50), a single compensating piston (10) which takes the shape of a cup is used and separates the working chamber (Ia), the compensating chamber (16) and the restoring chamber (15) of the gas spring (50) from one another.
    • 本发明涉及一种气弹簧,其使用作用在补偿活塞上的补偿介质来补偿其特性对温度的依赖性。 根据本发明的第一方面,选择补偿介质(16M),其临界温度(TK)在下限温度(TOWER)和超过上限温度(Tupper)的温度之间在工作温度范围内 气体弹簧(50)的工作温度(TB)不超过临界温度(TK),其中气弹簧(50)的工作温度(TB)不超过临界温度 补偿介质(16M),表示补偿介质(16M)的状态的点位于蒸气压力曲线上或上方。 根据第二方面,为了简化气弹簧(50)的结构,使用采用杯形的单个补偿活塞(10),并分离工作室(1a),补偿室(16) )和气弹簧(50)的恢复室(15)之间。
    • 5. 发明授权
    • Gas spring
    • 气泉水
    • US07431134B2
    • 2008-10-07
    • US11453845
    • 2006-06-16
    • Holger AnselMeik BroederStefan BonnekesselStephan EndersAlexander KoehlRainer MassmannRolf MintgenMarc NadlerWilli NieratschkerRainer Sauer
    • Holger AnselMeik BroederStefan BonnekesselStephan EndersAlexander KoehlRainer MassmannRolf MintgenMarc NadlerWilli NieratschkerRainer Sauer
    • F16F9/06
    • F16F9/52F16F9/0209F16F9/3257
    • The invention relates to a gas spring which uses a compensating medium acting on a compensating piston in order to compensate the dependence on temperature of its characteristic. According to a first aspect of the invention, a compensating medium (16M) is selected whereof the critical temperature (TK) is between the lower limit temperature (Tlower) and a temperature exceeding the upper limit temperature (Tupper) of the range of operating temperatures of the gas spring (50) by up to 100° C., and the gas spring (50) is designed such that, at an operating temperature (TB) of the gas spring (50) not exceeding the critical temperature (TK) of the compensating medium (16M), the point indicating the state of the compensating medium (16M) lies on or above the vapor pressure curve. According to a second aspect, in order to simplify the structure of the gas spring (50), a single compensating piston (10) which takes the shape of a cup is used and separates the working chamber (1a), the compensating chamber (16) and the restoring chamber (15) of the gas spring (50) from one another.
    • 本发明涉及一种气弹簧,其使用作用在补偿活塞上的补偿介质来补偿其特性对温度的依赖性。 根据本发明的第一方面,选择补偿介质(16M),其中临界温度(T SUB)在下限温度(T < 并且将气体弹簧(50)的工作温度范围的上限温度(T )上升到100℃以上,气弹簧(50)被设计为 在气体弹簧(50)的不超过补偿介质(16M)的临界温度(T N K))的操作温度(T B B)下, 指示补偿介质(16M)的状态位于蒸汽压力曲线上或上方。 根据第二方面,为了简化气弹簧(50)的结构,使用采用杯形状的单个补偿活塞(10),并将工作室(1a),补偿室( 16)和气弹簧(50)的恢复室(15)之间。
    • 6. 发明申请
    • Gas spring
    • 气泉水
    • US20070045916A1
    • 2007-03-01
    • US11453845
    • 2006-06-16
    • Holger AnselMeik BroederStefan BonnekesselStephan EndersAlexander KoehlRainer MassmannRolf MintgenMarc NadlerWilli NieratschkerRainer Sauer
    • Holger AnselMeik BroederStefan BonnekesselStephan EndersAlexander KoehlRainer MassmannRolf MintgenMarc NadlerWilli NieratschkerRainer Sauer
    • F16F5/00
    • F16F9/52F16F9/0209F16F9/3257
    • The invention relates to a gas spring which uses a compensating medium acting on a compensating piston in order to compensate the dependence on temperature of its characteristic. According to a first aspect of the invention, a compensating medium (16M) is selected whereof the critical temperature (TK) is between the lower limit temperature (Tlower) and a temperature exceeding the upper limit temperature (Tupper) of the range of operating temperatures of the gas spring (50) by up to 100° C., and the gas spring (50) is designed such that, at an operating temperature (TB) of the gas spring (50) not exceeding the critical temperature (TK) of the compensating medium (16M), the point indicating the state of the compensating medium (16M) lies on or above the vapor pressure curve. According to a second aspect, in order to simplify the structure of the gas spring (50), a single compensating piston (10) which takes the shape of a cup is used and separates the working chamber (1a), the compensating chamber (16) and the restoring chamber (15) of the gas spring (50) from one another.
    • 本发明涉及一种气弹簧,其使用作用在补偿活塞上的补偿介质来补偿其特性对温度的依赖性。 根据本发明的第一方面,选择补偿介质(16M),其中临界温度(T SUB)在下限温度(T < 并且将气体弹簧(50)的工作温度范围的上限温度(T )上升到100℃以上,气弹簧(50)被设计为 在气体弹簧(50)的不超过补偿介质(16M)的临界温度(T N K))的操作温度(T B B)下, 指示补偿介质(16M)的状态位于蒸汽压力曲线上或上方。 根据第二方面,为了简化气弹簧(50)的结构,使用采用杯形状的单个补偿活塞(10),并将工作室(1a),补偿室( 16)和气弹簧(50)的恢复室(15)之间。
    • 7. 发明授权
    • Piston/cylinder unit with solenoid valve in piston
    • 活塞/活塞缸内装有电磁阀
    • US07806244B2
    • 2010-10-05
    • US12011147
    • 2008-01-24
    • Marian BochenThomas EhreRainer MassmannRolf Mintgen
    • Marian BochenThomas EhreRainer MassmannRolf Mintgen
    • F16F9/12
    • A47C3/30F16F9/0245F16F9/34
    • A piston/cylinder unit includes a closed cylinder filled with a fluid under pressure, a piston dividing the cylinder into a first working chamber and a second working chamber, and a piston rod extending through the second working chamber. A passage through the piston connects the first working chamber to the second working chamber, and a valve closing member is movable between an open position and a closed position wherein the member closes the passage. A solenoid includes a coil, a coil core, and an armature in the piston, the armature driving the valve closing member between the closed position and the open position in response to a magnetic field produced by a current applied to the coil, the cylinder forming a magnetic field guide tube. The coil is supplied with current by a power line in the piston rod, and may be grounded to the piston rod or the cylinder.
    • 活塞/缸单元包括填充有压力流体的封闭气缸,将气缸分成第一工作室和第二工作室的活塞以及延伸穿过第二工作室的活塞杆。 通过活塞的通道将第一工作室连接到第二工作室,并且阀关闭构件可在打开位置和关闭位置之间移动,其中构件关闭通道。 螺线管包括线圈,线圈芯和活塞中的电枢,电枢响应于由施加到线圈的电流产生的磁场而在关闭位置和打开位置之间驱动阀关闭构件,气缸成型 磁场导管。 线圈由活塞杆中的动力线供给电流,并且可以接地到活塞杆或气缸。
    • 9. 发明申请
    • Piston/cylinder unit with solenoid valve in piston
    • 活塞/活塞缸内装有电磁阀
    • US20080245631A1
    • 2008-10-09
    • US12011147
    • 2008-01-24
    • Marian BochenThomas EhreRainer MassmannRolf Mintgen
    • Marian BochenThomas EhreRainer MassmannRolf Mintgen
    • F16F9/19
    • A47C3/30F16F9/0245F16F9/34
    • A piston/cylinder unit includes a closed cylinder filled with a fluid under pressure, a piston dividing the cylinder into a first working chamber and a second working chamber, and a piston rod extending through the second working chamber. A passage through the piston connects the first working chamber to the second working chamber, and a valve closing member is movable between an open position and a closed position wherein the member closes the passage. A solenoid includes a coil, a coil core, and an armature in the piston, the armature driving the valve closing member between the closed position and the open position in response to a magnetic field produced by a current applied to the coil, the cylinder forming a magnetic field guide tube. The coil is supplied with current by a power line in the piston rod, and may be grounded to the piston rod or the cylinder.
    • 活塞/气缸单元包括填充有压力流体的封闭气缸,将气缸分成第一工作室和第二工作室的活塞以及延伸穿过第二工作室的活塞杆。 通过活塞的通道将第一工作室连接到第二工作室,并且阀关闭构件可在打开位置和关闭位置之间移动,其中构件关闭通道。 螺线管包括线圈,线圈芯和活塞中的电枢,电枢响应于由施加到线圈的电流产生的磁场而在关闭位置和打开位置之间驱动阀关闭构件,气缸成型 磁场导管。 线圈由活塞杆中的动力线供给电流,并且可以接地到活塞杆或气缸。