Hydraulic pump performance deterioration detection system

US12313102B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12313102-B2
Application numberUS-202318381500-A
CountryUS
Kind codeB2
Filing dateOct 18, 2023
Priority dateOct 31, 2022
Publication dateMay 27, 2025
Grant dateMay 27, 2025

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A hydraulic pump performance deterioration detection system according to one embodiment includes: a variable displacement hydraulic pump; a switching valve that is connected to the hydraulic pump by a pump line and to a hydraulic actuator by a supply/discharge line; and a regulator that changes a displacement of the hydraulic pump in accordance with a command current and that limits the displacement of the hydraulic pump to a limiting value when a delivery pressure of the hydraulic pump has become higher than a setting value. The performance deterioration detection system further includes: control circuitry that feeds the command current to the regulator; and a pressure sensor that measures the delivery pressure of the hydraulic pump. When the hydraulic actuator is not moving, the control circuitry determines whether or not performance of the hydraulic pump has deteriorated based on a current value of the command current and the delivery pressure of the hydraulic pump measured by the pressure sensor.

First claim

Opening claim text (preview).

What is claimed is: 1. A hydraulic pump performance deterioration detection system comprising: a variable displacement hydraulic pump; a switching valve that is connected to the hydraulic pump by a pump line, connected to a tank by a tank line, and connected to a hydraulic actuator by a pair of supply/discharge lines, wherein placing the switching valve in a neutral position in which the switching valve blocks the pump line causes the hydraulic actuator to not move, and the switching valve is switched from the neutral position to a first acting position in which the switching valve causes the hydraulic actuator to move in a first direction, or to a second acting position in which the switching valve causes the hydraulic actuator to move in a second direction; a regulator that changes a displacement of the hydraulic pump in accordance with a command current and that limits the displacement of the hydraulic pump to a limiting value when a delivery pressure of the hydraulic pump has become higher than a setting value; control circuitry that feeds the command current to the regulator, the control circuitry including a hardware processor; and a pressure sensor that measures the delivery pressure of the hydraulic pump, wherein with the hydraulic actuator not moving the control circuitry: feeds the command current to the regulator such that the displacement of the hydraulic pump is minimized, and performs a performance check to determine whether or not performance of the hydraulic pump has deteriorated based on a current value of the command current and the delivery pressure of the hydraulic pump measured by the pressure sensor. 2. A hydraulic pump performance deterioration detection system comprising: a variable displacement hydraulic pump; a switching valve that is connected to the hydraulic pump by a pump line and to a hydraulic actuator by a supply/discharge line and that blocks the pump line causing the hydraulic actuator to not move; a regulator that changes a displacement of the hydraulic pump in accordance with a command current and that limits the displacement of the hydraulic pump to a limiting value when a delivery pressure of the hydraulic pump has become higher than a setting value; control circuitry that feeds the command current to the regulator, the control circuitry including a hardware processor; and a pressure sensor that measures the delivery pressure of the hydraulic pump, wherein with the hydraulic actuator not moving the control circuitry: feeds the command current to the regulator such that the displacement of the hydraulic pump is minimized, performs a performance check to determine whether or not performance of the hydraulic pump has deteriorated based on a current value of the command current and the delivery pressure of the hydraulic pump measured by the pressure sensor, and wherein the control circuitry further: changes the command current stores, as a determination-use current value, the current value of the command current when the delivery pressure of the hydraulic pump measured by the pressure sensor has become a threshold value; compares the stored determination-use current value with a prestored reference current value; and determines that the performance of the hydraulic pump has deteriorated in a case where the determination-use current value is greater than the reference current value by at least a setting value. 3. The hydraulic pump performance deterioration detection system according to claim 2 , wherein the regulator increases the displacement of the hydraulic pump in accordance with the change in the command current, and the control circuitry stores, as the determination-use current value, the current value of the command current when the delivery pressure of the hydraulic pump measured by the pressure sensor has become the threshold value, after increasing the command current from a predetermined value. 4. The hydraulic pump performance deterioration detection system according to claim 3 , wherein the regulator includes: a solenoid proportional valve that outputs a secondary pressure corresponding to the command current; a flow control piston that changes the displacement of the hydraulic pump in accordance with the secondary pressure of the solenoid proportional valve; and a cutoff piston that takes priority over the flow control piston and limits the displacement of the hydraulic pump to the limiting value when the delivery pressure of the hydraulic pump has become higher than the setting value, and when not performing the performance check on the hydraulic pump, the control circuitry feeds, to the regulator, a command current such that the displacement of the hydraulic pump is maximized. 5. A hydraulic pump performance deterioration detection system comprising: a hydraulic cylinder that extends to press a workpiece; a hydraulic pump that is connected to the hydraulic cylinder by a pair of supply/discharge lines in a manner to form a closed circuit; an electric motor that drives the hydraulic pump; control circuitry that controls the electric motor, the control circuitry including a hardware processor; and a pressure sensor that measures a delivery pressure of the hydraulic pump when the hydraulic cylinder extends, wherein the control circuitry: while the hydraulic cylinder is pressing the workpiece, adjusts a rotation speed of the electric motor such that the delivery pressure of the hydraulic pump, which is measured by the pressure sensor, is a setting value; stores the adjusted rotation speed as a determination-use rotation speed; and compares the determination-use rotation speed that has been newly stored with a previously stored determination-use rotation speed to determine whether or not performance of the hydraulic pump has deteriorated.

Assignees

Inventors

Classifications

  • Pressure source supply failure · CPC title

  • the pressure being a pressure source supply pressure · CPC title

  • Detection of failures · CPC title

  • representing a state of the prime mover, e.g. torque or rotational speed · CPC title

  • Control of the pressure source, e.g. control of the swash plate angle · CPC title

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What does patent US12313102B2 cover?
A hydraulic pump performance deterioration detection system according to one embodiment includes: a variable displacement hydraulic pump; a switching valve that is connected to the hydraulic pump by a pump line and to a hydraulic actuator by a supply/discharge line; and a regulator that changes a displacement of the hydraulic pump in accordance with a command current and that limits the displac…
Who is the assignee on this patent?
Kawasaki Heavy Ind Ltd
What technology area does this patent fall under?
Primary CPC classification F15B21/08. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue May 27 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).