Pressure compensated switching solenoid valve
US-2018306346-A1 · Oct 25, 2018 · US
US10900388B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10900388-B2 |
| Application number | US-201816106370-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 21, 2018 |
| Priority date | Aug 21, 2017 |
| Publication date | Jan 26, 2021 |
| Grant date | Jan 26, 2021 |
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An electrohydraulic valve including an electromagnetic actuator assembly; and a hydraulic assembly, wherein the electromagnetic actuator assembly and the hydraulic assembly are arranged in axial alignment along a longitudinal axis, wherein the hydraulic assembly includes a valve housing in which a valve piston is arranged axially movable along the longitudinal axis, wherein the electromagnetic actuator assembly includes an actuator housing, a coil configured to generate a magnetic field and an armature that is arranged axially movable along the longitudinal axis to position the valve piston, wherein a connection is formed between the electromagnetic actuator assembly and the hydraulic assembly, wherein the actuator housing is formed by an encasement of at least the coil with a synthetic material through injection molding, wherein a circumferential annular groove is formed in which a seal element is positioned that seals the electromagnetic actuator assembly between the hydraulic assembly and the electromagnetic actuator assembly.
Opening claim text (preview).
What is claimed is: 1. An electrohydraulic valve, comprising: an electromagnetic actuator assembly; and a hydraulic assembly, wherein the electromagnetic actuator assembly and the hydraulic assembly are arranged in axial alignment along a longitudinal axis, wherein the hydraulic assembly includes a valve housing in which a valve piston is arranged axially movable along the longitudinal axis, wherein the electromagnetic actuator assembly includes an actuator housing, a coil configured to generate a magnetic field and an armature that is arranged axially movable along the longitudinal axis to position the valve piston, wherein a connection is formed between the electromagnetic actuator assembly and the hydraulic assembly, wherein the actuator housing is formed by an encasement of at least the coil with a synthetic material through injection molding, wherein a circumferential annular groove is formed in which a seal element is positioned that seals the electromagnetic actuator assembly between the hydraulic assembly and the electromagnetic actuator assembly, and wherein the encasement with the synthetic material through the injection molding defines the circumferential annular groove in the radial direction and forms a circumferential sealing surface for the seal element, wherein the connection is formed between the hydraulic assembly and a connection element of the electromagnetic actuator assembly, and wherein the connection element is integrated in the synthetic material encasement, wherein the connection is formed through form locking between the connection element and the valve housing or a bushing of the hydraulic assembly, wherein the connection element includes at least an axial section and at least one bar that engages the synthetic material encasement, and wherein the bar is oriented at an angle relative to the axial section. 2. The electro hydraulic valve according to claim 1 , wherein the connection element is configured as a crush ring. 3. The electro hydraulic valve according to claim 2 , wherein the connection of the hydraulic assembly with the crush ring is formed by a crimp. 4. The electro hydraulic valve according to claim 1 , wherein the connection element is integrally encased together with the coil by the synthetic material through the injection molding. 5. The electro hydraulic valve according to claim 1 , wherein the connection element includes at least an axial section and at least one bar that engages the synthetic material encasement, and wherein a transition to the at least one bar is rounded or formed by a bevel. 6. The electro hydraulic valve according to claim 1 , wherein the connection element includes at least one axial section and plural bars that engage the synthetic material encasement, wherein the plural bars are oriented at an angle to the axial section, and wherein the plural bars are arranged with uniform angle spacing over a circumference of the connection element. 7. The electro hydraulic valve according to claim 1 , wherein the electromagnetic actuator assembly includes a tube which engages the coil at least partially indirectly or directly, and wherein the tube is integrated into the synthetic material encasement. 8. The electro hydraulic valve according to claim 1 , wherein the synthetic material encasement is made from a thermoplastic material and envelops the actuator assembly completely or partially. 9. The electro hydraulic valve according to claim 1 , wherein the connection element is made from a metal material, and wherein the metal material is corrosion resistant or provided with corrosion protection. 10. The electro hydraulic valve according to claim 1 , wherein the valve housing or the bushing of the hydraulic assembly is made from a metal material. 11. The electro hydraulic valve according to claim 1 , wherein the connection element reaches over at least one undercut or flat spot of the hydraulic assembly in a form locking manner. 12. A method for producing the electro hydraulic valve according to claim 1 , the electro hydraulic valve including an electromagnetic actuator assembly, and a hydraulic assembly, wherein the hydraulic assembly includes at least a valve housing, and wherein the actuator assembly includes an actuator housing and at least a coil, the method comprising the steps: forming the actuator housing of the actuator assembly by encasing at least the coil with a synthetic material through injection molding; encasing a connection element through the injection molding; forming a connection between the connection element and the hydraulic assembly in a form locking manner between the connection element and the valve housing or a bushing of the hydraulic assembly. 13. A method for producing an electro hydraulic valve including an electromagnetic actuator assembly, and a hydraulic assembly, wherein the electromagnetic actuator assembly and the hydraulic assembly are arranged in axial alignment along a longitudinal axis, wherein the hydraulic assembly includes a valve housing in which a valve piston is arranged axially movable along the longitudinal axis, wherein the electromagnetic actuator assembly includes an actuator housing, a coil configured to generate a magnetic field and an armature that is arranged axially movable along the longitudinal axis to position the valve piston, wherein a connection is formed between the electromagnetic actuator assembly and the hydraulic assembly, wherein the actuator housing is formed by an encasement of at least the coil with a synthetic material through injection molding, wherein a circumferential annular groove is formed in which a seal element is positioned that seals the electromagnetic actuator assembly between the hydraulic assembly and the electromagnetic actuator assembly, and wherein the encasement with the synthetic material through the injection molding defines the circumferential annular groove in the radial direction and forms a circumferential sealing surface for the seal element, the method comprising: forming the actuator housing of the actuator assembly by encasing at least the coil with a synthetic material through injection molding; encasing a connection element through the injection molding; forming a connection between the connection element and the hydraulic assembly in a form locking manner between the connection element and the valve housing or a bushing of the hydraulic assembly, wherein the connection of the hydraulic assembly with the connection element is provided by crimping or ultrasonic welding.
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