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    • 2. 发明授权
    • Pressure retaining valve
    • US10519988B2
    • 2019-12-31
    • US14912947
    • 2014-08-14
    • HYDAC FLUIDTECHNIK GMBH
    • Gerd SchneiderMarkus Bill
    • F15B13/04F16K37/00
    • A pressure retaining valve (1) has a main control piston (39) guided longitudinally displaceably in a single-piece or multiple-piece valve housing (29) and a non-return piston (43). In a pressure retaining position, a fluid-conducting connection between connection points (37a, 37b, 21) is shut off by the two pistons (39, 43). Connection point (37a) serves to feed media. Connection point (37b) discharges media. Connection point (21) leads to a hydraulic consumer. In a load-raising position, the two pistons (43) move relative to one another into a release position, in which the connection between the medium feed (37a) and the consumer is established. In a load-reducing position, the two pistons (39, 43) assume a spacing from one another such that the connection between the medium discharge (37b) and the consumer is established. A monitoring device (75) determines the individual switching positions of the pistons (39, 43) to ensure reliable functioning of the pressure retaining valve (1).
    • 7. 发明申请
    • DIRECTIONAL POPPET VALVE
    • 方向阀阀
    • US20140352826A1
    • 2014-12-04
    • US13261910
    • 2012-11-21
    • Hydac Fluidtechnik GmbH
    • Frank SchulzMarkus Bill
    • F16K11/07
    • F16K11/07F15B13/0405F16K11/207Y10T137/86686Y10T137/86694Y10T137/86831Y10T137/87241
    • The invention relates to a directional poppet valve (10), comprising valve pistons (16-22) arranged in a valve housing (12) for controlling a plurality of fluid connections (A, B, P, T), wherein the positions of each of the valve pistons (16-22) in the valve housing (12) can be changed by means of at least one actuating device, and wherein the fluid connections (A, B, P, T) are connected to one another or separated from one another alternately depending on the position of the valve pistons (16-22). The invention is characterised in that the valve pistons (16-22) are arranged inline along at least one axis (R), consecutively and/or at least such as to partially interengage, in the valve housing (12).
    • 本发明涉及一种方向提升阀(10),其包括布置在阀壳体(12)中的阀活塞(16-22),用于控制多个流体连接(A,B,P,T),其中每个 可以通过至少一个致动装置来改变阀壳体(12)中的阀活塞(16-22),并且其中流体连接件(A,B,P,T)彼此连接或分离 另一个取决于阀活塞(16-22)的位置。 本发明的特征在于,阀活塞(16-22)沿着至少一个轴线(R)在阀壳体(12)中连续地和/或至少等于部分地互相排列。
    • 8. 发明公开
    • Vavle
    • US20240271642A1
    • 2024-08-15
    • US18568969
    • 2022-06-07
    • HYDAC Fluidtechnik GmbH
    • Peter BruckBenjamin RöderMarkus Bill
    • F15B13/044F15B13/043
    • F15B13/044F15B13/0433
    • The invention relates to a valve, in particular a proportional pressure regulating valve, comprising a valve housing (10) and a valve piston (12) which is arranged in the valve housing in a longitudinal a movable manner and which can be actuated by means of an actuation magnet (14) so as to produce either a fluidic connection between a pressure supply connection (P) and a load connection (A) or between the load connection (A) and a return connection (T) in the valve housing (10), wherein the valve piston (12) is permanently fluidically connected to the return connection (T) at the opposing end faces (44, 46) of the valve piston. The invention is characterized in that the valve piston (12) has a pressure-active measuring surface (50) in the region of the load connection (A), said pressure-active measuring surface providing the respective fluid pressure at the load connection (A) as a counterforce to the actuation force of the actuation magnet (14) when the actuation magnet (14) is energized in order to produce a fluidic connection between the pressure supply connection (P) and the load connection (A).
    • 9. 发明授权
    • Device and valve for flow force compensation
    • US11307599B2
    • 2022-04-19
    • US16954292
    • 2018-12-17
    • HYDAC FLUIDTECHNIK GMBH
    • Markus BillFrank Schulz
    • G05D16/10F16K11/07
    • A device includes a regulating piston (12) guided longitudinally movably in a housing (10) and interacting with a control edge (56), at a pressure supply port (P) that supplies a utility port (A) in regulating positions of the regulating piston (12) with fluid. The pressure can be preset via a fluid connection, pulling the regulating piston towards a closed position blocking this fluid connection due to occurring flow forces. The regulating piston (12) has a change of shape (60) from its general outer basic shape in the area of the control edge (56) of the housing (10) for a flow force compensation. A flow contact surface for fluid is provided causing a compensating force acting against the flow force to be introduced into the regulating piston (12), which flow force pulls the regulating piston (12) into an open position opposite from the blocked position. The change of shape (60) also follows a step function, the function graph of which has at least one step more than the number of steps required to form the control edge (56).