Power regeneration device for operating machine

US9284718B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9284718-B2
Application numberUS-201214117961-A
CountryUS
Kind codeB2
Filing dateJun 13, 2012
Priority dateJun 15, 2011
Publication dateMar 15, 2016
Grant dateMar 15, 2016

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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 power regeneration device for an operating machine has a hydraulic cylinder and a return line through which fluid returning to a tank flows when the hydraulic cylinder contracts. The return line branches into a plurality of hydraulic lines through a branching part and includes a regeneration line that which leads returning fluid to the tank via a hydraulic motor to which a generator is connected. A control valve line is connected to the branching part and leads the returning fluid to the tank via a control valve. An electricity storage device stores electric power generated by the generator, and an electric amount detector detects the electric amount of the electricity storage device. A flow rate calculator calculates the flow rate of the returning fluid flowing through the regeneration line and the flow rate of the returning fluid flowing through the control valve line depending on an electric amount signal.

First claim

Opening claim text (preview).

The invention claimed is: 1. A power regeneration device for an operating machine equipped with an engine ( 50 ), a hydraulic pump ( 6 ) driven by the engine ( 50 ), a control valve ( 2 ) for switching the flow of hydraulic fluid from the hydraulic pump ( 6 ) and supplying the hydraulic fluid to a hydraulic cylinder ( 3 a ), and an operating device ( 4 ) for controlling the control valve ( 2 ), comprising: a hydraulic line ( 31 ) which is connected to a bottom-side hydraulic chamber of the hydraulic cylinder ( 3 a ) and through which returning fluid returning to a tank ( 6 A) flows when the hydraulic cylinder ( 3 a ) contracts; a branching part ( 32 ) which is provided in the hydraulic line ( 31 ) to separate the hydraulic line ( 31 ) into a plurality of hydraulic lines; a regeneration line ( 33 ) which is connected to the branching part ( 32 ) and leads the returning fluid to the tank ( 6 A) via a hydraulic motor ( 11 ) that is connected with a generator ( 12 ) controlled by an inverter ( 13 ); a control valve line ( 34 ) which is connected to the branching part ( 32 ) and leads the returning fluid to the tank ( 6 A) via the control valve ( 2 ); operation amount detection means ( 16 ) which detects the operation amount of the operating device ( 4 ); an electricity storage device ( 15 ) which stores electric power generated by the generator ( 12 ); electric amount detection means ( 17 ) which detects the electric amount of the electricity storage device ( 15 ); flow rate calculation means ( 9 ) which calculates the flow rate of the returning fluid flowing through the regeneration line ( 33 ) and the flow rate of the returning fluid flowing through the control valve line ( 34 ) depending on an electric amount signal from the electric amount detection means ( 17 ); first flow rate control means ( 8 ) which controls the flow rate through the control valve line ( 34 ) based on the result of the calculation by the flow rate calculation means ( 9 ); and second flow rate control means ( 13 ) which controls the flow rate through the regeneration line ( 33 ) based on the result of the calculation by the flow rate calculation means ( 9 ). 2. The power regeneration device for an operating machine according to claim 1 , wherein the flow rate calculation means ( 9 ) includes: characteristic selection means ( 100 ) which stores a plurality of characteristics of a meter-out flow rate of the hydraulic cylinder ( 3 a ) with respect to the operation amount of the operating device ( 4 ) when the hydraulic cylinder ( 3 a ) is contracted, receives the electric amount signal from the electric amount detection means ( 17 ), and outputs one of the stored characteristics of the meter-out flow rate depending on the electric amount signal; first flow rate calculation means ( 102 ) which calculates the flow rate of the returning fluid flowing through the control valve line ( 34 ) based on the operation amount detected by the operation amount detection means ( 16 ) and the relationship between the operation amount and the meter-out flow rate outputted by the characteristic selection means ( 100 ) and outputs a command signal to the first flow rate control means ( 8 ); and second flow rate calculation means ( 101 ) which calculates the flow rate of the returning fluid flowing through the regeneration line ( 33 ) based on the operation amount detected by the operation amount detection means ( 16 ) and the relationship between the operation amount and the meter-out flow rate outputted by the characteristic selection means ( 100 ) and outputs a command signal to the second flow rate control means ( 13 ). 3. The power regeneration device for an operating machine according to claim 2 , further comprising abnormality detection means for detecting abnormalities occurring to the generator ( 12 ) and the inverter ( 13 ), wherein when an abnormality of the generator ( 12 ) or the inverter ( 13 ) is detected by the abnormality detection means, the characteristic selection means ( 100 ) outputs a characteristic of the meter-out flow rate for setting the flow rate of the returning fluid flowing through the regeneration line ( 33 ) at 0 to the second flow rate calculation means ( 101 ) while outputting a characteristic of the meter-out flow rate for increasing the flow rate of the returning fluid flowing through the control valve line ( 34 ) by the decrease in the flow rate of the returning fluid through the regeneration line ( 33 ) to the first flow rate calculation means ( 102 ). 4. The power regeneration device for an operating machine according to claim 1 , wherein the flow rate calculation means ( 9 ) fixes a distribution characteristic between the flow rate of the returning fluid flowing through the regeneration line ( 33 ) and the flow rate of the returning fluid flowing through the control valve line ( 34 ) while a lowering operation signal of the operating device ( 4 ) is detected. 5. The power regeneration device for an operating machine according to claim 1 , wherein the flow rate calculation means ( 9 ) includes: first flow rate calculation means ( 112 ) which stores a characteristic of a meter-out flow rate of the hydraulic cylinder ( 3 a ) with respect to the operation amount of the operating device ( 4 ) when the hydraulic cylinder ( 3 a ) is contracted, receives an operation amount signal from the operation amount detection means ( 16 ), and calculates the flow rate of the returning fluid flowing through the control valve line ( 34 ) based on the operation amount signal and the stored characteristic of the meter-out flow rate; second flow rate calculation means ( 111 ) which stores a characteristic of the meter-out flow rate of the hydraulic cylinder ( 3 a ) with respect to the operation amount of the operating device ( 4 ) when the hydraulic cylinder ( 3 a ) is contracted, receives the operation amount signal from the operation amount detection means ( 16 ), and calculates the flow rate of the returning fluid flowing through the regeneration line ( 33 ) based on the operation amount signal and the stored characteristic of the meter-out flow rate; and correction signal calculation means ( 120 ) which receives the electric amount signal from the electric amount detection means ( 17 ) and calculates a correction characteristic depending on the electric amount signal, wherein an output signal from the first flow rate calculation means ( 112 ) and an output signal from the second flow rate calculation means ( 111 ) are corrected according to a correction signal from the correction signal calculation means ( 120 ). 6. The power regeneration device for an operating machine according to claim 5 , further comprising abnormality detection means for detecting abnormalities occurring to the generator ( 12 ) and the inverter ( 13 ), wherein when an abnormality of the generator ( 12 ) or the inverter ( 13 ) is detected by the abnormality detection means, the correction signal calculation means ( 120 ) corrects the flow rate of the returning fluid flowing through the regeneration line ( 33 ), which is controlled by the second flow rate control means ( 13 ) according to the operation amount, to 0, while correcting the flow rate of the returning fluid flowing through the control valve line ( 34 ), which is controlled by the first flow rate control means ( 8 ) according to the operation amount, so as to increase the flow rate by the decrease in the flow rate at the second flow rate control means ( 13 ). 7. The power regeneration device for an operating machine according to claim 1 , wherein a solenoid proportional valve ( 8 ) for controlling pilot pressure on the control valve ( 2 ) is provided in order to control the flow rate of the returning fluid flowing through the control valve line ( 34 ).

Assignees

Inventors

Classifications

  • Pilot-operated systems · CPC title

  • Control of energy storage means for electrical energy, e.g. battery or capacitors (energy recovery arrangements in hydraulic or pneumatic drives E02F9/2217) · CPC title

  • with failure correction follow-up actions · CPC title

  • Energy-recuperation means · CPC title

  • E02F9/2217Primary

    with energy recovery arrangements, e.g. using accumulators, flywheels · CPC title

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Frequently asked questions

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What does patent US9284718B2 cover?
A power regeneration device for an operating machine has a hydraulic cylinder and a return line through which fluid returning to a tank flows when the hydraulic cylinder contracts. The return line branches into a plurality of hydraulic lines through a branching part and includes a regeneration line that which leads returning fluid to the tank via a hydraulic motor to which a generator is connec…
Who is the assignee on this patent?
Hijikata Seiji, Fujishima Kazuo, Hitachi Construction Machinery
What technology area does this patent fall under?
Primary CPC classification E02F9/2217. Mapped technology areas include Fixed Constructions.
When was this patent published?
Publication date Tue Mar 15 2016 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 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).