Hydraulic energy recovery apparatus for working machine

US11149753B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11149753-B2
Application numberUS-201816492368-A
CountryUS
Kind codeB2
Filing dateMay 18, 2018
Priority dateSep 11, 2017
Publication dateOct 19, 2021
Grant dateOct 19, 2021

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  1. Title

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  2. Abstract

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  5. First independent claim

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Abstract

Official abstract text for this publication.

A controller ( 45 ) is provided with an elapse time measuring section ( 47 A) that measures an elapse time (tx) elapsed since an initial use of an accumulator ( 29 ) based upon a reset signal from a reset switch ( 44 ), a number-of-operations measuring section ( 47 B) that measures a number of operations of the accumulator ( 29 ), that is, a number (N) of boom lowering operations after a reset, based upon a detection signal from an accumulator side pressure sensor ( 39 ), a gas permeation amount estimating section ( 47 C) that estimates an estimation gas permeation amount (Qloss) of the accumulator ( 29 ), a sealed gas pressure estimating section ( 47 D) that finds an estimation sealed gas pressure (Pgs) of a gas chamber ( 29 B) of the accumulator ( 29 ), and an accumulator degradation determining section ( 47 E) that determines a degradation condition of the accumulator ( 29 ) and outputs the determination result.

First claim

Opening claim text (preview).

The invention claimed is: 1. A hydraulic energy recovery apparatus for a working machine comprising: a main pump that is driven by a prime mover mounted on a working machine and delivers a hydraulic fluid as pressurized oil; a hydraulic actuator that is driven by the pressurized oil delivered from the main pump; and an accumulator that recovers a part or all of returned oil from the hydraulic actuator, wherein the hydraulic energy recovery apparatus for the working machine includes: a pressure sensor that detects a pressure of the accumulator; a temperature sensor that detects a temperature of the hydraulic fluid; a reset device that is reset at a time of a replacement of the accumulator; and a controller to which signals from an operation lever device configured to operate the hydraulic actuator, the pressure sensor, the temperature sensor, and the reset device are input, and wherein the controller includes: an elapse time measuring section that measures a time elapsed since an initial use of the accumulator based upon a signal from the reset device; a number-of-operations measuring section that measures a number of operations of the accumulator based upon a signal from the pressure sensor; a gas permeation amount estimating section that estimates a gas permeation amount of the accumulator based upon outputs from the elapse time measuring section, the pressure sensor, and the temperature sensor; a sealed gas pressure estimating section that estimates a sealed gas pressure of the accumulator from a rising state of an accumulator pressure in a case of starting accumulation from a state where the accumulator pressure is equal to a tank pressure, based upon the signal from the pressure sensor; and an accumulator degradation determining section that determines a degradation condition of the accumulator based upon at least one output of outputs from the elapse time measuring section, the number-of-operations measuring section, the gas permeation amount estimating section, and the sealed gas pressure estimating section, and outputs the determination result. 2. The hydraulic energy recovery apparatus for the working machine according to claim 1 , further comprising: a notification device for issuing a warning, wherein the controller causes the notification device to operate when the accumulator degradation determining section determines degradation of the accumulator. 3. A hydraulic energy recovery apparatus for a working machine comprising: a main pump that is driven by a prime mover mounted on a working machine and delivers a hydraulic fluid as pressurized oil; a hydraulic actuator that is driven by the pressurized oil delivered from the main pump; and an accumulator that recovers returned oil from the hydraulic actuator, wherein the hydraulic energy recovery apparatus for the working machine includes: a pressure sensor that detects a pressure of the accumulator; a temperature sensor that detects a temperature of the hydraulic fluid; a reset device that is reset at the time of the replacement of the accumulator; and a controller to which signals from the pressure sensor, the temperature sensor, and the reset device are input, and wherein the controller includes: an elapse time measuring section that measures a time elapsed since an initial use of the accumulator based upon the signal from the reset device; a gas permeation amount estimating section that estimates a gas permeation amount of the accumulator based upon outputs from the elapse time measuring section, the pressure sensor, and the temperature sensor; and an accumulator degradation determining section that determines a degradation condition of the accumulator based upon the output from the gas permeation amount estimating section, and outputs the determination result. 4. The hydraulic energy recovery apparatus for the working machine according to claim 3 , further comprising: a notification device for issuing a warning, wherein the controller causes the notification device to operate when the accumulator degradation determining section determines degradation of the accumulator.

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What does patent US11149753B2 cover?
A controller ( 45 ) is provided with an elapse time measuring section ( 47 A) that measures an elapse time (tx) elapsed since an initial use of an accumulator ( 29 ) based upon a reset signal from a reset switch ( 44 ), a number-of-operations measuring section ( 47 B) that measures a number of operations of the accumulator ( 29 ), that is, a number (N) of boom lowering operations after a reset,…
Who is the assignee on this patent?
Hitachi Construction Mach Co
What technology area does this patent fall under?
Primary CPC classification F15B19/005. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Oct 19 2021 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 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).