US1058287A - Mechanism for feeding a single line of cans in two opposite directions. - Google Patents
Mechanism for feeding a single line of cans in two opposite directions. Download PDFInfo
- Publication number
- US1058287A US1058287A US73608212A US1912736082A US1058287A US 1058287 A US1058287 A US 1058287A US 73608212 A US73608212 A US 73608212A US 1912736082 A US1912736082 A US 1912736082A US 1058287 A US1058287 A US 1058287A
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- United States
- Prior art keywords
- cans
- single line
- opposite directions
- feeding
- runway
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- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65G—TRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
- B65G47/00—Article or material-handling devices associated with conveyors; Methods employing such devices
- B65G47/52—Devices for transferring articles or materials between conveyors i.e. discharging or feeding devices
- B65G47/68—Devices for transferring articles or materials between conveyors i.e. discharging or feeding devices adapted to receive articles arriving in one layer from one conveyor lane and to transfer them in individual layers to more than one conveyor lane or to one broader conveyor lane, or vice versa, e.g. combining the flows of articles conveyed by more than one conveyor
- B65G47/71—Devices for transferring articles or materials between conveyors i.e. discharging or feeding devices adapted to receive articles arriving in one layer from one conveyor lane and to transfer them in individual layers to more than one conveyor lane or to one broader conveyor lane, or vice versa, e.g. combining the flows of articles conveyed by more than one conveyor the articles being discharged or distributed to several distinct separate conveyors or to a broader conveyor lane
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T428/00—Stock material or miscellaneous articles
- Y10T428/24—Structurally defined web or sheet [e.g., overall dimension, etc.]
- Y10T428/24628—Nonplanar uniform thickness material
- Y10T428/24669—Aligned or parallel nonplanarities
- Y10T428/24694—Parallel corrugations
- Y10T428/24702—Parallel corrugations with locally deformed crests or intersecting series of corrugations
Definitions
- My invention relates to mechanism for feeding a single line of cans in two opposite directions.
- canning factories it is customary to store the empty cans in the. upper part of the factory and to feed them to the filling machines through vertically disposed spouts.
- the cans are first placed on their sides in. an inclined runway leading from the can room and they are allowed to roll in a continuous line along this runway. From the runway the cans drop into a vertically disposed hopper where they are.righted so as to stand in an upright position and from the hopper they pass into a vertical spout which terminates on the table of the filling machine.
- the cans are fed to the filling machine by intermittently removing the bottom can from the lower end of the vertical spout causing the column to drop the depth of one can.
- a single runway carrying a single line of rolling cans is suificient to carry from the can room all the cans necessary for two filling machines and the object of the present invention is to divide the single line of rolling cans into two parts and to direct them into two runwa s leading in opposite directions to two filling machines.
- a further object of the invention is to cause the cans to feed equally toward each machine or to feed them unequally according to the requirements of each machine. Thus if each machine is running at the same rate of speed the feed will be equally toward each, but if one machine stops the cans will all be fed toward the machine which is running.
- my invention 1 secure an automatic distribution of the single line of cans between the two .machines according to the requirements of In the drawing, Figure 1 is a side elevation, and Fig. 2 is a plan view.
- a indicates the inclined track orrunway leading from the can room and on which the cans b are first placed.
- a frame 0 At the lower end of the runway at is a frame 0 somewhat larger than the can, through which the cans drop as they reach the "end.
- the frame 0 constitutes the upper end of what is essentially a vertical spout in the lower end of which the separating mecha-- nism is placed.
- the can fillers are located at the sides of the upper runway a so that it is necessary to change the direction in which the cans roll to a direction at right angles to the runway a.
- This vertical spout is thus formed to twist or change position of the can 90 degrees.
- the vertical s'pout is made in open or skeleton form by means of curved rods d which constitute guides for guiding the cansv as they pass downward.
- the upper ends of the rods are secured to the frame 0 and the lower ends to a casing e which is openat the top to receive the cans in their new position.
- the casing c has beside the opening at the top an opening at each end and from end to end it forms a runway which slopes from the center to the ends, and is thus adapted to receive the cans at the top and discharge them at the two ends in opposite directions.
- Each end of the casing c connects with a runway f and g.
- the cans are made to roll first in one direction and then in the opposite direction from the casing by means of a movable bottom or floor which reciprocates in opposite directions in line with the runways f and g.
- This reciprocation takes place with comparative rapidity and through a small limit of motion so that it will start the lower can of the column in one direction or the other according to the resistance which "it meets.
- This reciprocating movable bottom I prefer to form by means of a pivoted drum h which is made to reciprocate on its pivotal center.
- the upper surface of the drum is directly beneath the upper opening in the casing 6 so that the lower can in the column rests on the drum as it falls down.
- the drum is secured toa shaft h'- journaled to the lower ends of the hangers h and to the shaft is secured the crank 71, to
- the connectingrod 2' is connected to a crank disk j on the end of a shaft journaled on the side of the frame 0.
- a driving pulley k is secured to the shaft and this is connected with a suitable source of power.
- the rotation of the pulley and the crank disk j act to reciprocate the drum h, turning it a limited distance first in one direction and then in another.
- the movement is relatively fast so that the can 5' which rests on the drum is nioed first one way and then the other a limited distance. If the can on each side is stationary and practically in contact with this bottom can b then the latter will remain in its place supporting the column above in the vertical spout,
- est can is not in contact with the can b then the latter will be moved in the direction zowhere there is no resistance and when it is once started in either direction the column of cans above will push it out horizontally, causin it to move down one runway until the to lowing can drops into the drum. If both lines move away from the can b at the same time this can will be started one way or the otheras chance may direct but having started down one runway the following can will start down the other asthere will be no adjacent can in that direction. If one line stops feeding and the other continues all the cans will move down the line which they are nee ed.
- each of the runways f and 9 there is a vertically disposed hopper m connecting with a vertical spout terminating at the filling machine and dressed? from the bottom of the vertical spout and a other chan es may be made without departing from t as spirit of the invention.
- I claim 1 In a machine for feeding a single line of cans in two dlrections, the combination of an inclined upper runway for carrying a single line of cans in rollable position, a vertical spout into which said runway dis charges, two lower runways leading in 'opposite directions from the bottom of said vertical spout, a movable bottom to said spout and means for reciprocating said movable bottom in line with the two lower runways.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
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Description
I J". P. BAXTER; JR. MECHANISM FOR FEEDING A SINGLE LINE OF CANLS IN TWO OPPOSITE DIRECTIONS,
APPLICATION FILED D3011. 1912.
1,053,287, Pa'nnted Apr. 3,1913.
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Witnesses:
UNITED STATES PATENT @EFIQE...
JAMES P. BAXTER, JR, OF PORTLAND, 'MAINE.
MECHANISM FOR FEEDING A SINGLE LINE OF CANS IN TWO OPPOSITE DIRECTIONS.
Specification of Letters Patent.
Patented Apr. 8, 1913.
Application filed December 11, 1912. Serial No. 736,082.
To all whom it may concern:
Be it known that I, J AMES P. BAXTER, J r., of Portland, in the county of Cumberland and State of Maine, have invented certain new' and useful Improvements in Mechanism for Feeding a Single Line of Cans in Two Opposite Directions, of which the following is a specification.
My invention relates to mechanism for feeding a single line of cans in two opposite directions.
In canning factories it is customary to store the empty cans in the. upper part of the factory and to feed them to the filling machines through vertically disposed spouts. The cans are first placed on their sides in. an inclined runway leading from the can room and they are allowed to roll in a continuous line along this runway. From the runway the cans drop into a vertically disposed hopper where they are.righted so as to stand in an upright position and from the hopper they pass into a vertical spout which terminates on the table of the filling machine. The cans are fed to the filling machine by intermittently removing the bottom can from the lower end of the vertical spout causing the column to drop the depth of one can.
By experience it is found that a single runway carrying a single line of rolling cans is suificient to carry from the can room all the cans necessary for two filling machines and the object of the present invention is to divide the single line of rolling cans into two parts and to direct them into two runwa s leading in opposite directions to two filling machines.
A further object of the invention is to cause the cans to feed equally toward each machine or to feed them unequally according to the requirements of each machine. Thus if each machine is running at the same rate of speed the feed will be equally toward each, but if one machine stops the cans will all be fed toward the machine which is running. In other words by the use of my invention 1 secure an automatic distribution of the single line of cans between the two .machines according to the requirements of In the drawing, Figure 1 is a side elevation, and Fig. 2 is a plan view.
' In the drawing, a indicates the inclined track orrunway leading from the can room and on which the cans b are first placed. At the lower end of the runway at is a frame 0 somewhat larger than the can, through which the cans drop as they reach the "end. The frame 0 constitutes the upper end of what is essentially a vertical spout in the lower end of which the separating mecha-- nism is placed. In the present instance the can fillers are located at the sides of the upper runway a so that it is necessary to change the direction in which the cans roll to a direction at right angles to the runway a. This vertical spout is thus formed to twist or change position of the can 90 degrees. As here shown, the vertical s'pout is made in open or skeleton form by means of curved rods d which constitute guides for guiding the cansv as they pass downward.
The upper ends of the rods are secured to the frame 0 and the lower ends to a casing e which is openat the top to receive the cans in their new position. The casing c has beside the opening at the top an opening at each end and from end to end it forms a runway which slopes from the center to the ends, and is thus adapted to receive the cans at the top and discharge them at the two ends in opposite directions. Each end of the casing c connects with a runway f and g. The cans are made to roll first in one direction and then in the opposite direction from the casing by means of a movable bottom or floor which reciprocates in opposite directions in line with the runways f and g. This reciprocation takes place with comparative rapidity and through a small limit of motion so that it will start the lower can of the column in one direction or the other according to the resistance which "it meets. This reciprocating movable bottom I prefer to form by means of a pivoted drum h which is made to reciprocate on its pivotal center. The upper surface of the drum is directly beneath the upper opening in the casing 6 so that the lower can in the column rests on the drum as it falls down.
The drum is secured toa shaft h'- journaled to the lower ends of the hangers h and to the shaft is secured the crank 71, to
which is pivoted a connecting rod 6. The upper end of the connectingrod 2' is connected to a crank disk j on the end of a shaft journaled on the side of the frame 0. A driving pulley k is secured to the shaft and this is connected with a suitable source of power. The rotation of the pulley and the crank disk j act to reciprocate the drum h, turning it a limited distance first in one direction and then in another. The movement is relatively fast so that the can 5' which rests on the drum is nioed first one way and then the other a limited distance. If the can on each side is stationary and practically in contact with this bottom can b then the latter will remain in its place supporting the column above in the vertical spout,
If the horizontal line of cans in either the v runway f org moves along so that the near:
est can is not in contact with the can b then the latter will be moved in the direction zowhere there is no resistance and when it is once started in either direction the column of cans above will push it out horizontally, causin it to move down one runway until the to lowing can drops into the drum. If both lines move away from the can b at the same time this can will be started one way or the otheras chance may direct but having started down one runway the following can will start down the other asthere will be no adjacent can in that direction. If one line stops feeding and the other continues all the cans will move down the line which they are nee ed. At the end of each of the runways f and 9 there is a vertically disposed hopper m connecting with a vertical spout terminating at the filling machine and insane? from the bottom of the vertical spout and a other chan es may be made without departing from t as spirit of the invention.
I claim 1. In a machine for feeding a single line of cans in two dlrections, the combination of an inclined upper runway for carrying a single line of cans in rollable position, a vertical spout into which said runway dis charges, two lower runways leading in 'opposite directions from the bottom of said vertical spout, a movable bottom to said spout and means for reciprocating said movable bottom in line with the two lower runways.
2. In a machine for feeding a single line of cans in two directions, the combination of an inclined upper runway for carrying a single line of cans in. rollahle position, a vertical spout into which said runway dis charges, two lower runways leading in o posite directions from the bottom of said vertical spout, a rotatable drum inthe bottom of said vertical spout on which the column of cans rests and means for reciprocating said drum to start the bottom can in the direction of least resistance.
In testimony whereof I have afiixed my' signature, in presence of two witnesses.
' JAMES P. BAXTER, dn.
'Witnesses:
S. W. BATES, C. B. GnnIonToN.-
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US73608212A US1058287A (en) | 1912-12-11 | 1912-12-11 | Mechanism for feeding a single line of cans in two opposite directions. |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US73608212A US1058287A (en) | 1912-12-11 | 1912-12-11 | Mechanism for feeding a single line of cans in two opposite directions. |
Publications (1)
Publication Number | Publication Date |
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US1058287A true US1058287A (en) | 1913-04-08 |
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ID=3126540
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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US73608212A Expired - Lifetime US1058287A (en) | 1912-12-11 | 1912-12-11 | Mechanism for feeding a single line of cans in two opposite directions. |
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US (1) | US1058287A (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2577546A (en) * | 1946-09-21 | 1951-12-04 | Fmc Corp | Can-feeding mechanism |
US2662631A (en) * | 1949-01-31 | 1953-12-15 | Edwin C Kraus | Can conveying machine |
-
1912
- 1912-12-11 US US73608212A patent/US1058287A/en not_active Expired - Lifetime
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2577546A (en) * | 1946-09-21 | 1951-12-04 | Fmc Corp | Can-feeding mechanism |
US2662631A (en) * | 1949-01-31 | 1953-12-15 | Edwin C Kraus | Can conveying machine |
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