IP Library Granted Patent US 12,209,597
Granted Patent B2
US 12,209,597 · App. 18/476,168 · Granted Jan 28, 2025

Hydraulic circuit including a hydraulically actuatable motion control valve

Inventor: Manuel Bezzi (Reggio Emilia, IT)
Assignee: DANA MOTION SYSTEMS ITALIA S.R.L.
F15B13/025F15B1/265F15B13/026F15B13/027
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Quick Facts
Patent No.
US 12,209,597
App. No.
18/476,168
Granted
Jan 28, 2025
Kind
B2
Abstract

The present disclosure relates to a hydraulic circuit, comprising: a motion control valve including a valve spool and a hydraulic actuator for actuating the valve spool, and a hydraulic control device having an outlet fluidically connected to the hydraulic actuator, the hydraulic control device comprising a pressure-reducing valve or a pressure compensated flow control valve.

Claims (16)

1. A hydraulic circuit, comprising:

a motion control valve including a valve spool and a hydraulic actuator for actuating the valve spool,

a hydraulic control device having an outlet fluidically connected to the hydraulic actuator, the hydraulic control device comprising a pressure-reducing valve or a pressure compensated flow control valve, and

a discharge check valve allowing fluid to discharge from the hydraulic actuator to an inlet of the hydraulic control device through the discharge check valve.

2. The hydraulic circuit of claim 1 , wherein the pressure-reducing valve comprises an inlet, an outlet, a valve spool, and a biasing member, wherein the valve spool of the pressure-reducing valve is configured to continuously vary a variable cross section of a fluid connection between the inlet and the outlet of the pressure-reducing valve, wherein the biasing member of the pressure-reducing valve biases the valve spool of the pressure-reducing valve towards increasing or maximizing the variable cross section of the fluid connection between the inlet and the outlet of the pressure-reducing valve, and wherein a hydraulic pressure at the outlet of the pressure-reducing valve biases the valve spool of the pressure-reducing valve towards reducing or minimizing the variable cross section of the fluid connection between the inlet and the outlet of the pressure-reducing valve.

3. The hydraulic circuit of claim 1 , wherein the hydraulic control device comprises a pressure-reducing valve and the hydraulic circuit further comprises a charging orifice, and wherein an outlet of the pressure-reducing valve is fluidically connected to the hydraulic actuator of the motion control valve via the charging orifice.

4. The hydraulic circuit of claim 1 , wherein the motion control valve is a proportional valve.

5. The hydraulic circuit of claim 1 , wherein the motion control valve further includes a biasing member for biasing the valve spool of the motion control valve, the biasing member counteracting or configured to counteract the hydraulic actuator of the motion control valve.

6. The hydraulic circuit of claim 1 , further comprising a hydraulic load, wherein an inlet of the hydraulic control device is fluidically connected or fluidly connectable to a first fluid port of the hydraulic load, and wherein the hydraulic actuator of the motion control valve is configured to bias the valve spool of the motion control valve towards a discharge position in which the motion control valve fluidly connects a second fluid port of the hydraulic load to a discharge port of the motion control valve.

7. The hydraulic circuit of claim 6 , wherein a biasing member of the motion control valve biases the valve spool of the motion control valve towards a closed position in which the motion control valve fluidly isolates the second fluid port of the hydraulic load from the discharge port of the motion control valve.

8. The hydraulic circuit of claim 6 , further comprising a low pressure tank, wherein the discharge port of the motion control valve is fluidically connected or fluidly connectable to the low pressure tank.

9. The hydraulic circuit of claim 6 , further including a pressure source fluidically connected or fluidly connectable to the inlet of the hydraulic control device and to the first fluid port of the hydraulic load.

10. A hydraulic circuit, comprising:

a motion control valve including a valve spool and a hydraulic actuator for actuating the valve spool, and

a hydraulic control device having an outlet fluidically connected to the hydraulic actuator, the hydraulic control device comprising a pressure-reducing valve or a pressure compensated flow control valve,

wherein the pressure compensated flow control valve comprises an inlet, an outlet, an orifice, a valve spool, and a biasing member, wherein the inlet of the pressure compensated flow control valve is fluidly connectable to the outlet of the pressure compensated flow control valve via the orifice, wherein the valve spool of the pressure compensated flow control valve is configured to continuously vary a variable cross section of a fluid connection between the inlet and the outlet of the pressure compensated flow control valve, wherein a hydraulic pressure upstream of the orifice biases the valve spool of the pressure compensated flow control valve towards reducing or minimizing the variable cross section of the fluid connection between the inlet and the outlet of the pressure compensated flow control valve, and wherein the basing member of the pressure compensated flow control valve and a hydraulic pressure downstream of the orifice bias the valve spool of the pressure compensated flow control valve towards increasing or maximizing the variable cross section of the fluid connection between the inlet and the outlet of the pressure compensated flow control valve.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2026
From: DANA MOTION SYSTEMS ITALIA S.R.L.
To: DPC HYDRAULICS S.R.L.
Reel/Frame 073368/0093 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 27, 2023
From: BEZZI, MANUEL
To: DANA MOTION SYSTEMS ITALIA S.R.L.
Reel/Frame 065055/0049 →
Priority Claims (1)
DE 20 2022 105 444.4 · Sep 28, 2022 · national
Continuity (1)
Related Publication 20240102494A1 · Mar 28, 2024
References Cited (3)
US 20130269808A1 · Liukkunen · 2013 [cited by examiner]
US 20190063469A1 · Otth · 2019 [cited by examiner]
US 20190257328A1 · Erikksson · 2019 [cited by examiner]