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    • 3. 发明授权
    • Electromagnetically actuated valve
    • 电磁致动阀
    • US09309986B2
    • 2016-04-12
    • US14118465
    • 2012-04-10
    • Klaus HeyerFrank KaestnerNorbert AlazeDietmar Kratzer
    • Klaus HeyerFrank KaestnerNorbert AlazeDietmar Kratzer
    • F16K31/06H02K33/04B60T8/36
    • F16K31/0675B60T8/363B60T15/00F16K31/0658F16K31/0665
    • An electromagnetically actuated valve includes at least one sleeve and a magnet armature. A magnetic core is arranged in a stationary manner in the at least one sleeve. The magnet armature is configured to actuate a valve element and is axially movable. An elastically deformable spring element is clamped and retained between a core end face of the magnetic core facing the magnet armature and an armature end face of the magnet armature facing the magnetic core. The spring element forms at least one contact point in conjunction with the armature end face and the core end face. The contour of the spring element, the armature end face and/or the core end face are formed in the radial extent such that a radial position of the at least one contact point changes as a function of a distance of the armature end face from the core end face.
    • 电磁致动阀包括至少一个套筒和磁体衔铁。 磁芯以固定的方式布置在至少一个套筒中。 磁体衔铁构造成致动阀元件并且可轴向移动。 可弹性变形的弹簧元件被夹持并保持在面向磁体衔铁的磁芯的芯端面与面向磁芯的磁体衔铁的电枢端面之间。 弹簧元件与电枢端面和芯端面结合形成至少一个接触点。 弹簧元件,电枢端面和/或芯端面的轮廓形成在径向范围内,使得至少一个接触点的径向位置随电枢端面距离的距离而变化 核心端面。
    • 4. 发明申请
    • ELECTROMAGNETICALLY ACTUATED VALVE
    • 电磁致动阀
    • US20140084196A1
    • 2014-03-27
    • US14118465
    • 2012-04-10
    • Klaus HeyerFrank KaestnerNorbert AlazeDietmar Kratzer
    • Klaus HeyerFrank KaestnerNorbert AlazeDietmar Kratzer
    • F16K31/06
    • F16K31/0675B60T8/363B60T15/00F16K31/0658F16K31/0665
    • An electromagnetically actuated valve includes at least one sleeve and a magnet armature. A magnetic core is arranged in a stationary manner in the at least one sleeve. The magnet armature is configured to actuate a valve element and is axially movable. An elastically deformable spring element is clamped and retained between a core end face of the magnetic core facing the magnet armature and an armature end face of the magnet armature facing the magnetic core. The spring element forms at least one contact point in conjunction with the armature end face and the core end face. The contour of the spring element, the armature end face and/or the core end face are formed in the radial extent such that a radial position of the at least one contact point changes as a function of a distance of the armature end face from the core end face.
    • 电磁致动阀包括至少一个套筒和磁体衔铁。 磁芯以固定的方式布置在至少一个套筒中。 磁体衔铁构造成致动阀元件并且可轴向移动。 可弹性变形的弹簧元件被夹持并保持在面向磁体衔铁的磁芯的芯端面与面向磁芯的磁体衔铁的电枢端面之间。 弹簧元件与电枢端面和芯端面结合形成至少一个接触点。 弹簧元件,电枢端面和/或芯端面的轮廓形成在径向范围内,使得至少一个接触点的径向位置随电枢端面距离的距离而变化 核心端面。
    • 6. 发明授权
    • Solenoid valve
    • 电磁阀
    • US08596609B2
    • 2013-12-03
    • US12668595
    • 2008-07-02
    • Klaus HeyerMassimiliano AmbrosiMichael EisenlauerMichael RietscheMichael TischerStephan SteingassMichael Hilden
    • Klaus HeyerMassimiliano AmbrosiMichael EisenlauerMichael RietscheMichael TischerStephan SteingassMichael Hilden
    • B60T8/36F16K31/02
    • F16K31/0665B60T8/363F16K31/0655
    • The invention relates to a solenoid valve with a magnet assembly and a valve cartridge having a pole core, a valve insert connected to the pole core, an armature which is guided within the valve insert in an axially movable manner between a closed position and an open position and is coupled to a closing element, and a valve body which is connected to the valve insert and has a main valve seat which is arranged between at least one first flow opening and a second flow opening. The axially movable armature, when the magnet assembly is energized, is moved by a generated magnetic force within the valve insert in the direction of the pole core counter to a spring force of a resetting spring and counter to a fluid force in order to lift the closing element out of the main valve seat; and to permit a flow of fluid between the at least one first flow opening and the second flow opening. The axially movable armature is moved away from the pole core by the spring force of the restoring spring and by the fluid force within the valve insert in order to press the closing element into the main valve seat in a sealing manner and to interrupt the fluid flow between the at least one first flow opening and the second flow opening.
    • 本发明涉及一种具有磁体组件的电磁阀和具有磁极芯的阀芯,连接到磁极芯的阀插件,在阀插入件内以可轴向移动的方式在封闭位置和开口之间引导的电枢 并且联接到关闭元件,以及阀体,其连接到所述阀插入件并且具有布置在至少一个第一流动开口和第二流动开口之间的主阀座。 当磁体组件被激励时,轴向移动的电枢通过在阀芯内的产生的磁力沿着磁极芯的方向移动,抵靠复位弹簧的弹簧力并抵抗流体力,以提升 关闭元件离开主阀座; 并且允许在所述至少一个第一流动开口和所述第二流动开口之间流动流体。 轴向可移动的电枢通过复位弹簧的弹簧力和阀插入件内的流体力而移动离开磁极芯,以便以密封方式将闭合元件压入主阀座并中断流体流动 在所述至少一个第一流动开口和所述第二流动开口之间。
    • 8. 发明申请
    • SOLENOID VALVE
    • 电磁阀
    • US20100301246A1
    • 2010-12-02
    • US12668595
    • 2008-07-02
    • Klaus HeyerMassimiliano AmbrosiMichael EisenlauerMichael RietscheMichael TischerStephan SteingassMichael Hilden
    • Klaus HeyerMassimiliano AmbrosiMichael EisenlauerMichael RietscheMichael TischerStephan SteingassMichael Hilden
    • F16K31/06
    • F16K31/0665B60T8/363F16K31/0655
    • The invention relates to a solenoid valve with a magnet assembly and a valve cartridge having a pole core, a valve insert connected to the pole core, an armature which is guided within the valve insert in an axially movable manner between a closed position and an open position and is coupled to a closing element, and a valve body which is connected to the valve insert and has a main valve seat which is arranged between at least one first flow opening and a second flow opening. The axially movable armature, when the magnet assembly is energized, is moved by a generated magnetic force within the valve insert in the direction of the pole core counter to a spring force of a resetting spring and counter to a fluid force in order to lift the closing element out of the main valve seat; and to permit a flow of fluid between the at least one first flow opening and the second flow opening. The axially movable armature is moved away from the pole core by the spring force of the restoring spring and by the fluid force within the valve insert in order to press the closing element into the main valve seat in a sealing manner and to interrupt the fluid flow between the at least one first flow opening and the second flow opening.
    • 本发明涉及一种具有磁体组件的电磁阀和具有磁极芯的阀芯,连接到磁极芯的阀插件,在阀插入件内以可轴向移动的方式在封闭位置和开口之间引导的电枢 并且联接到关闭元件,以及阀体,其连接到所述阀插入件并且具有布置在至少一个第一流动开口和第二流动开口之间的主阀座。 当磁体组件被激励时,轴向移动的电枢通过在阀芯内的产生的磁力沿着磁极芯的方向移动,抵靠复位弹簧的弹簧力并抵抗流体力,以提升 关闭元件离开主阀座; 并且允许在所述至少一个第一流动开口和所述第二流动开口之间流动流体。 轴向可移动的电枢通过复位弹簧的弹簧力和阀插入件内的流体力而移动离开磁极芯,以便以密封方式将封闭元件压入主阀座并中断流体流动 在所述至少一个第一流动开口和所述第二流动开口之间。