IP Library Granted Patent US 9,387,592
Granted Patent B2
US 9,387,592 · App. 14/047,202 · Granted Jul 12, 2016

Gas-pressure type gravity compensation elevator

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Quick Facts
Patent No.
US 9,387,592
App. No.
14/047,202
Granted
Jul 12, 2016
Kind
B2
Abstract

There is provided a gas-pressure type gravity compensation elevator for ascending/descending a load object, which includes a control part. The control part is adapted to selectively connect a constant-pressure gas cylinder maintained at a constant pressure according to the grasping state, to a gas cylinder for exerting a driving force in the direction of ascent on an elevating mechanism. Further, the control part is adapted to control a sum of a volumes in the gas cylinder and the constant-pressure gas cylinder such that it equals to a sum of their average volumes, every time the grasping state is changed.

Claims (42)

1. A gas-pressure type gravity compensation elevator comprising:

an elevating mechanism adapted to grasp and ascend/descend a load object;

a grasping-state detection portion adapted to detect a load-object grasping state of the elevating mechanism;

a gas cylinder adapted to exert a driving force in a direction of ascent, on the elevating mechanism;

a first constant-pressure gas cylinder which is pressed by a first constant-load generating portion and is capable of exhibiting a volume change equal to or more than a volume change in the gas cylinder, such that the gas cylinder maintains a pressure which generates a driving force balanced with a weight of the elevating mechanism and a weight of the load object being grasped by the elevating mechanism;

a first connection valve adapted to open and close a connection pipe which connects the first constant-pressure gas cylinder and the gas cylinder to each other;

a first volume estimation part adapted to estimate, as an estimated value, a sum of a volume in the gas cylinder and a volume in the first constant-pressure gas cylinder;

a second constant-pressure gas cylinder which is pressed by a second constant-load generating portion and is capable of exhibiting a volume change equal to or more than the volume change in the gas cylinder, such that the gas cylinder maintains a pressure which generates a driving force balanced with the weight of the elevating mechanism;

a second connection valve adapted to open and close a connection pipe which connects the second constant-pressure gas cylinder and the gas cylinder to each other;

a second volume estimation part adapted to estimate, as an estimated value, a sum of the volume in the gas cylinder and a volume in the second constant-pressure gas cylinder;

a gas supply portion adapted to supply a gas at a pressure exceeding a pressure in the first constant-pressure gas cylinder;

a gas exhaust portion adapted to exhaust a gas within the second constant-pressure gas cylinder;

a changeover valve portion adapted to perform a changeover among a state where the gas cylinder is connected to the gas supply portion, a state where the gas cylinder is connected to the gas exhaust portion, and a state where the gas cylinder is interrupted from both the gas supply portion and the gas exhaust portion; and

an amount-of-gas control part which is adapted to operate the first connection valve, the second connection valve, and the changeover valve portion for controlling the estimated value from the first volume estimation part such that the estimated value from the first volume estimation part equals to a sum of an average volume of the gas cylinder and an average volume of the first constant-pressure gas cylinder or for controlling the estimated value from the second volume estimation part such that the estimated value from the second volume estimation part equals to a sum of the average volume of the gas cylinder and an average volume of the second constant-pressure gas cylinder, every time the load-object grasping state from the grasping-state detection portion is changed.

2. The gas-pressure type gravity compensation elevator according to claim 1 , wherein

the amount-of-gas control part is adapted to connect only one of the gas supply portion and the gas exhaust portion, to the gas cylinder, in operating the changeover valve portion, every time the load-object grasping state from the grasping-state detection portion is changed.

3. The gas-pressure type gravity compensation elevator according to claim 1 , wherein

the second volume estimation part is adapted to estimate a volume sum, as the estimated value, using a displacement of the gas cylinder and a displacement of the second constant-pressure gas cylinder.

4. The gas-pressure type gravity compensation elevator according to claim 1 , wherein

the first volume estimation part is adapted to estimate a volume sum, as the estimated value, using a displacement of the gas cylinder and a displacement of the first constant-pressure gas cylinder.

5. The gas-pressure type gravity compensation elevator according to claim 1 , comprising:

a plurality of combinations of the first constant-load generating portion, the first constant-pressure gas cylinder, the first connection valve, and the first volume estimation part, correspondingly to the respective weights of different load objects, and

a load-object identification portion adapted to distinguish plural load objects from each other, the load-object identification portion being provided in the grasping-state detection portion,

wherein

the amount-of-gas control part is adapted to select a to-be-used combination of the first constant-load generating portion, the first constant-pressure gas cylinder, the first connection valve, and the first volume estimation part, according to the grasped load object which is decided by the grasping-state detection portion and the load-object identification portion.

6. The gas-pressure type gravity compensation elevator according to claim 5 , comprising

gas supply portions corresponding to respective pressures in the first constant-pressure gas cylinders, for the respective combinations of the first constant-load generating portion, the first constant-pressure gas cylinder, the first connection valve, and the first volume estimation part, and

the changeover valve portion is adapted to select a gas supply portion to be used, according to the grasped load object which is decided by the grasping-state detection portion and the load-object identification portion.

7. A gas-pressure type gravity compensation elevator comprising:

an elevating mechanism adapted to grasp and ascend/descend a load object;

a grasping-state detection portion adapted to detect a load-object grasping state of the elevating mechanism;

a gas cylinder adapted to exert a driving force in a direction of ascent, on the elevating mechanism;

a self-weighting compensation portion adapted to compensate for a weight of the elevating mechanism;

a first constant-pressure gas cylinder which is pressed by a first constant-load generating portion and is capable of exhibiting a volume change equal to or more than a volume change in the gas cylinder, such that the gas cylinder maintains a pressure which generates a driving force balanced with a weight of the load object being grasped by the elevating mechanism;

a first connection valve adapted to open and close a connection pipe which connects the first constant-pressure gas cylinder and the gas cylinder to each other;

a first volume estimation part adapted to estimate, as an estimated value, a sum of a volume in the gas cylinder and a volume in the first constant-pressure gas cylinder;

a second connection valve adapted to open and close a connection pipe which connects the gas cylinder and an ambient atmosphere to each other;

a gas supply portion adapted to supply a gas at a pressure exceeding a pressure in the first constant-pressure gas cylinder;

a changeover valve portion adapted to perform a changeover among a state where the gas cylinder is connected to the gas supply portion, a state where the gas cylinder is connected to the ambient atmosphere, and a state where the gas cylinder is interrupted from both the gas supply portion and the ambient atmosphere; and

an amount-of-gas control part which is adapted to operate the first connection valve, the second connection valve, and the changeover valve portion for controlling the estimated value from the first volume estimation part such that the estimated value from the first volume estimation part equals to a sum of an average volume of the gas cylinder and an average volume of the first constant-pressure gas cylinder or for connecting the gas cylinder to the ambient atmosphere, every time the load-object grasping state from the grasping-state detection portion is changed.

8. The gas-pressure type gravity compensation elevator according to claim 7 , wherein

the amount-of-gas control part is adapted to connect only one of the gas supply portion and the ambient atmosphere, to the gas cylinder, in operating the changeover valve portion, every time the load-object grasping state from the grasping-state detection portion is changed.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE ERRONEOUSLY FILED APPLICATION NUMBERS 13/384239, 13/498734, 14/116681 AND 14/301144 PREVIOUSLY RECORDED ON REEL 034194 FRAME 0143. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Dec 24, 2020
From: PANASONIC CORPORATION
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 056788/0362 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2014
From: PANASONIC CORPORATION
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 034194/0143 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 17, 2014
From: ASAI, KATSUHIKO
To: PANASONIC CORPORATION
Reel/Frame 032231/0273 →