Hydraulic valves
A hydraulic valve includes a cage defining a first port, a second port, and a third port that is disposed between the first port and the second port along a longitudinal axis. A first biased poppet is movable along the longitudinal axis relative to the first port. A second biased poppet is movable along the longitudinal axis relative to the second port. The hydraulic valve also includes an actuator and a connecting rod. The connecting rod coupled to the actuator and both of the poppets. The actuator is configured to move the connecting rod along the longitudinal axis such that in a first position, the first poppet opens the first port so the first port is in fluid communication with the third port, and in a second position, the second poppet opens the second port so the second port is in fluid communication with the third port.
1 . A hydraulic valve comprising:
a cage having a first end and an opposite second end defining a longitudinal axis, the cage defining a first port configured to be coupled in fluid communication with a pump, a second port configured to be coupled to a tank, and a third port configured to be coupled to a hydraulic actuator, wherein the third port is disposed between the first port and the second port along the longitudinal axis;
a first poppet biased relative to the first end of the cage, the first poppet movable along the longitudinal axis relative to the first port;
a second poppet biased relative to the second end of the cage, the second poppet movable along the longitudinal axis relative to the second port;
an actuator; and
a connecting rod extending along the longitudinal axis, the connecting rod coupled to the actuator and both of the first poppet and the second poppet, wherein the actuator is configured to move the connecting rod along the longitudinal axis such that in a first position, the first poppet at least partially opens the first port so the first port is in fluid communication with the third port, and in a second position, the second poppet at least partially opens the second port so the second port is in fluid communication with the third port,
wherein one or more of the first and second poppets include a poppet body having a central opening configured to at least partially receive the connecting rod, the poppet body also having a notch defined in a valve face and coaxially aligned with the central opening, wherein the connecting rod includes a collar configured to engage with the valve face and selectively move the poppet body, the collar aligned along the longitudinal axis with the notch and the central opening, and wherein the collar, the notch, and the central opening are configured to allow fluid flow between fluid volumes defined on either axial side of the poppet body.
2 . The hydraulic valve of claim 1 , wherein a first valve seat is defined in an inner surface of the cage between the first port and the third port, the first valve seat having a first oblique surface configured to engage with the first poppet, and wherein the first poppet has a first square shoulder configured to engage with the first oblique surface to close the first port, wherein a second valve seat is defined in the inner surface of the cage between the second port and the third port, the second valve seat having a second oblique surface configured to engage with the second poppet, and wherein the second poppet has a second square shoulder configured to engage with the second oblique surface to close the second port.
3 . The hydraulic valve of claim 1 , wherein one or more of the first and second poppets include a poppet body having an outer surface that faces the cage and an opposite inner surface, the poppet body having one or more flow channels extending between the outer surface and the inner surface, wherein the one or more flow channels at the outer surface are positioned proximate a valve seat of the cage when the poppet body is in a closed configuration.
4 . The hydraulic valve of claim 1 , wherein the collar is a first collar and the connecting rod includes the first collar configured to engage the first poppet and a second collar configured to engage the second poppet, the first collar and the second collar spaced apart along the longitudinal axis and disposed between the first poppet and the second poppet within the cage.
5 . The hydraulic valve of claim 1 , wherein the connecting rod has a first end coupled to the actuator and an opposite second end coupled to the second poppet, the hydraulic valve further comprising a pilot poppet attached to the second end of the connecting rod.
6 . The hydraulic valve of claim 5 , wherein a plug is secured to the second end of the cage, the plug defining a pilot seat.
7 . The hydraulic valve of claim 6 , wherein the plug defines a fourth port in fluid communication with the pilot seat, wherein when the connecting rod is in the first position, the pilot poppet at least partially opens the fourth port.
8 . The hydraulic valve of claim 5 , wherein the pilot poppet is biased relative to the connecting rod.
9 . The hydraulic valve of claim 1 , further comprising an actuator housing including an exterior threaded portion for securing the hydraulic valve within a valve manifold.
10 . A hydraulic valve comprising:
a cage extending along a longitudinal axis and defining an inlet port configured to be connected to a pump, a working port configured to be connected to a hydraulic actuator, and a tank port configured to be connected to a tank;
an inlet poppet movable along the longitudinal axis and configured to selectively seal the inlet port;
a tank poppet movable along the longitudinal axis and configured to selectively seal the tank port;
a linear actuator;
a connecting rod coupled to the linear actuator and extending between the inlet poppet and the tank poppet, wherein the linear actuator is configured to drive the connecting rod along the longitudinal axis between at least an inlet configuration whereby the inlet poppet is engaged and a first flow path is defined between the inlet port and the working port, a closed configuration whereby both of the inlet poppet and the tank poppet are disengaged and the inlet port and the tank port are closed, and a tank configuration whereby the tank poppet is engaged and a second flow path is defined between the tank port and the working port;
a pilot valve disposed proximate the tank port, the pilot valve including:
a pilot poppet coupled to the connecting rod, wherein the pilot poppet is biased relative to the connecting rod; and
a valve seat formed at a distal end of the cage, wherein when the connecting rod is in the tank configuration, the pilot valve is closed and seated with the valve seat.
11 . The hydraulic valve of claim 10 , wherein the inlet poppet is biased relative to the cage and the tank poppet is biased relative to the cage, the inlet poppet and the tank poppet biased in opposite directions along the longitudinal axis.
12 . The hydraulic valve of claim 10 , wherein one or both of the inlet poppet and the tank poppet include a poppet body having a first axial surface area and an opposite second axial surface area, the first axial surface area being equal to the second axial surface area.
13 . The hydraulic valve of claim 10 , wherein one or both of the inlet poppet and the tank poppet include a poppet body having an outer surface facing the cage and an opposite inner surface, and wherein at least one flow channel is defined within the poppet body and extends between the outer surface and the inner surface.
14 . The hydraulic valve of claim 10 , wherein one or both of the inlet poppet and the tank poppet include a poppet body having an outer surface facing the cage, and wherein a sealing member is disposed between the outer surface and the cage.
15 . A hydraulic valve comprising:
a cage having a first end and an opposite second end defining a longitudinal axis, the cage defining a first port configured to be coupled in fluid communication with a pump, a second port configured to be coupled to a tank, and a third port configured to be coupled to a hydraulic actuator, wherein the third port is disposed between the first port and the second port along the longitudinal axis;
a first poppet biased relative to the first end of the cage, the first poppet movable along the longitudinal axis relative to the first port;
a second poppet biased relative to the second end of the cage, the second poppet movable along the longitudinal axis relative to the second port;
an actuator; and
a connecting rod extending along the longitudinal axis, the connecting rod coupled to the actuator and both of the first poppet and the second poppet, wherein the actuator is configured to move the connecting rod along the longitudinal axis such that in a first position, the first poppet at least partially opens the first port so the first port is in fluid communication with the third port, and in a second position, the second poppet at least partially opens the second port so the second port is in fluid communication with the third port, and wherein the connecting rod has a first end coupled to the actuator and an opposite second end coupled to the second poppet, the hydraulic valve further comprising a pilot poppet attached to the second end of the connecting rod.
16 . The hydraulic valve of claim 15 , wherein a plug is secured to the second end of the cage, the plug defining a pilot seat.
17 . The hydraulic valve of claim 16 , wherein the plug defines a fourth port in fluid communication with the pilot seat, wherein when the connecting rod is in the first position, the pilot poppet at least partially opens the fourth port.
18 . The hydraulic valve of claim 15 , wherein the pilot poppet is biased relative to the connecting rod.