WO2008026478A1 - Dispositif de transport - Google Patents
Dispositif de transport Download PDFInfo
- Publication number
- WO2008026478A1 WO2008026478A1 PCT/JP2007/066191 JP2007066191W WO2008026478A1 WO 2008026478 A1 WO2008026478 A1 WO 2008026478A1 JP 2007066191 W JP2007066191 W JP 2007066191W WO 2008026478 A1 WO2008026478 A1 WO 2008026478A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- pulley
- moving member
- driving
- drive
- pulleys
- Prior art date
Links
- 238000004519 manufacturing process Methods 0.000 abstract description 10
- 230000032258 transport Effects 0.000 description 36
- 238000010586 diagram Methods 0.000 description 4
- 238000011144 upstream manufacturing Methods 0.000 description 3
- 235000013361 beverage Nutrition 0.000 description 2
- 230000003247 decreasing effect Effects 0.000 description 2
- 238000013459 approach Methods 0.000 description 1
- 230000007423 decrease Effects 0.000 description 1
- 238000000926 separation method Methods 0.000 description 1
- 238000004904 shortening Methods 0.000 description 1
- 230000001360 synchronised effect Effects 0.000 description 1
Classifications
-
- 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
- B65G47/34—Devices for discharging articles or materials from conveyor
- B65G47/46—Devices for discharging articles or materials from conveyor and distributing, e.g. automatically, to desired points
- B65G47/51—Devices for discharging articles or materials from conveyor and distributing, e.g. automatically, to desired points according to unprogrammed signals, e.g. influenced by supply situation at destination
- B65G47/5104—Devices for discharging articles or materials from conveyor and distributing, e.g. automatically, to desired points according to unprogrammed signals, e.g. influenced by supply situation at destination for articles
- B65G47/5109—Devices for discharging articles or materials from conveyor and distributing, e.g. automatically, to desired points according to unprogrammed signals, e.g. influenced by supply situation at destination for articles first In - First Out systems: FIFO
- B65G47/5113—Devices for discharging articles or materials from conveyor and distributing, e.g. automatically, to desired points according to unprogrammed signals, e.g. influenced by supply situation at destination for articles first In - First Out systems: FIFO using endless conveyors
- B65G47/5118—Devices for discharging articles or materials from conveyor and distributing, e.g. automatically, to desired points according to unprogrammed signals, e.g. influenced by supply situation at destination for articles first In - First Out systems: FIFO using endless conveyors with variable accumulation capacity
- B65G47/5122—Devices for discharging articles or materials from conveyor and distributing, e.g. automatically, to desired points according to unprogrammed signals, e.g. influenced by supply situation at destination for articles first In - First Out systems: FIFO using endless conveyors with variable accumulation capacity by displacement of the conveyor-guiding means, e.g. of the loose pulley-type
Definitions
- the present invention relates to a transport apparatus that places and transports articles on an outward path.
- a conveyor that can change the conveying path length between the inlet force and the outlet is known as disclosed in Japanese Patent Application Laid-Open No. 5-286552.
- This conveyor is provided with a movable gantry that is movable with respect to a fixed gantry including an inlet pulley and an outlet pulley.
- a pair of pulleys are coaxially and rotatably supported on the movable base.
- An endless conveyance belt is stretched around each pulley!
- the conveyor belt has an entrance pulley force and an outbound path from one pulley of the movable frame to the exit pulley, and this outbound path is defined as the transport path.
- the conveyor belt is folded back from the outlet pulley over the movable frame by the folding pulley, and a return path is formed via one pulley of the movable frame and folded back by the folding pulley! /,
- the outlet pulley is rotationally driven by a drive motor, and the conveyor belt is rotated endlessly by the drive motor.
- the movable gantry is provided with a driving device, and is moved in the approaching direction or the separation direction with respect to the fixed gantry by the driving device.
- the movable gantry moves the diameter of the article every time one article is loaded. Is moved away from the fixed base by half. As a result, the conveyance path is extended and a large number of articles can be stored.
- the shutter on the exit side is opened, the movable base moves in the direction approaching the fixed base, and the article is sent out while shortening the transport path. In this way, the length of the conveyance path can be changed so that the articles are always fully loaded on the conveyance path to the entrance force outlet of the conveyor, so that the article can be changed according to the stoppage of the upstream or downstream device.
- the power S can be stored and sent out, and the power S prevents the production efficiency of the article from being lowered.
- the present invention has been made in view of force and inconvenience, and easily controls the length of the conveyance path according to the number of articles to be stored by simplifying the control without reducing the manufacturing efficiency of the articles to be conveyed.
- An object of the present invention is to provide a transport device that can be obtained and that can reduce the load applied to the transport belt, has a simple structure, and is compact.
- the present invention provides a rotatable first drive pulley, first drive means for rotationally driving the first drive pulley, and a predetermined interval in the first drive pulley. And a second drive pulley that is adjacent to the second drive pulley, a second drive means that rotationally drives the second drive pulley, and a second drive pulley that is horizontally movable in a direction that approaches and separates from both drive pulleys.
- the forward length of the transport belt is shortened.
- the article can be conveyed by the forward path.
- the driving of the first driving pulley by the first driving means is maintained, and the driving of the second driving pulley by the second driving means is stopped.
- tension is applied to the conveyance belt on the return path between the first drive pulley and the second drive pulley, via the second movable pulley.
- the second moving member is pulled and moved in the direction approaching both drive pulleys.
- the first moving member moves relative to the second moving member via the traction belt (that is, the direction away from the two driving pulleys), and the first driving pulley and the second driving via the first movable pulley.
- the transport belt on the forward path to the pulley extends. In this way, since the articles are sent to the forward path while the transport belt on the forward path is extended and the number of articles on the forward path can be increased, the force S for storing a large number of articles on the forward path is reduced.
- the second driving pulley is driven by the second driving means, and the first driving means is operated by the first driving means.
- Drive Stop driving the pulley.
- the second moving member moves away from both drive pulleys via the traction belt, and the forward belt on the forward path between the first drive pulley and the second drive pulley moves via the first movable pulley. Shortened. In this way, since the articles on the forward path are sent out while the transport belt on the forward path is shortened, a force S for smoothly sending a large number of articles stored on the forward path downstream.
- the path length can be expanded and contracted only by stopping one of the first drive pulley and the second drive pulley.
- the apparatus configuration with fewer bent portions of the conveyor belt can be made simple and compact, and the conveyor belt is suspended. Reduce the load by relatively small force S.
- the traction belt is formed in an endless shape and is stretched between the holding pulley and the other holding pulley provided on the first and second drive pulleys, and the first pulley
- the moving member is coupled to the forward path side of the traction belt
- the second moving member is coupled to the backward path side of the traction belt so that the first moving member and the second moving member move relative to each other. It is characterized by that. According to this, the first moving member and the second moving member can be reliably moved in the relative direction between the pair of holding pulleys via the endless traction belt.
- the other holding pulley (that is, the holding pulley provided on the first and second driving pulleys) is connected to the first driving means and the second driving means.
- a differential gear mechanism wherein the differential gear mechanism stops the holding pulley when the first driving means and the second driving means are driving the first driving pulley and the second driving pulley; When the first driving means stops, the holding pulley is driven in the same rotational direction as the second driving pulley, and when the second driving means stops, the holding pulley is driven in the same rotational direction as the first driving pulley.
- the differential gear is attached to the holding pulley provided on the first and second drive pulley sides. Since a mechanism is provided so that the driving force is transmitted from the first driving means and the second driving means, the holding boom is synchronized with the stop of one of the first driving pulley and the second driving pulley. It is possible to drive the rotation of the traction belt via the belt, and thereby it is possible to move both moving members accurately and reliably without complicating the control. In addition, the tension applied to the forward and return path conveyor belts when the first drive pulley and the second drive pulley stop can be reduced, further reducing the load on the conveyor belt. Move both moving members smoothly.
- the transport belt in the present invention is not limited as long as it is capable of placing articles and formed endlessly.
- a plurality of plate-like elements called top chains are connected.
- each drive pulley in the present invention can be selected to have a shape corresponding to the conveyor belt.
- the top chain is adopted as the conveyor belt
- each of the sprockets that mesh with the top chain is provided. Adopted as drive pulley.
- FIG. 1 is an explanatory plan view showing a conveying device of the present embodiment
- FIG. 2 is an explanatory perspective view showing the main part of the conveying device of the present embodiment
- FIG. 3 is an explanatory sectional view of a moving member
- FIG. 5 is an explanatory diagram schematically showing the configuration of the dynamic gear mechanism
- FIG. 5 is an explanatory diagram showing a part of the conveyor belt
- FIG. 6 is an operation explanatory diagram of the conveyor device of this embodiment.
- the conveying device 1 of the present embodiment is provided in a part of a production line that manufactures an article W such as a food container, and an inlet conveyor 2 that conveys the article W from the upstream side and a downstream side It is arranged between the outlet conveyor 3 that conveys the article W toward the side.
- the transport device 1 of the present embodiment includes a rotatable first drive pulley 4 provided on the inlet side, and a rotatable second drive pulley 5 provided on the outlet side. It has.
- the first drive pulley 4 is rotationally driven via a first drive belt 7 by a first drive motor 6 (first drive means).
- the second drive pulley 5 is rotationally driven via a second drive belt 9 by a second drive motor 8 (second drive means).
- the rotary shaft 10 of the first drive pulley 4 and the rotary shaft 11 of the second drive pulley 5 are positioned on the same axis, and can rotate in different directions. Yes.
- the rotary shafts 10, 11 and the drive motors 6, 8 are supported by a frame (not shown).
- An endless traction belt 12 is provided along the position between the drive pulleys 4 and 5.
- the traction belt 12 spans between a first holding pulley 13 disposed between the drive motors 6 and 8, and a second holding pulley 14 provided at a predetermined distance from the first holding pulley 13.
- the first holding pulley 13 includes a differential gear mechanism 15, and the differential gear mechanism 15 is connected to the first drive motor 6 and the second drive motor 8.
- the first moving member 16 is connected to the upper path (outward path) of the traction belt 12, and the second moving member 17 is connected to the lower path (return path) of the traction belt 12.
- a first transfer disk 18 (first movable pulley) is rotatably supported by the first moving member 16, and a second transfer disk 19 (second movable pulley) is rotatably supported by the second moving member 17. Is supported
- the first moving member 16 is slidably supported between a pair of first rail members 20 extending in parallel with each other along the traction belt 12.
- the second moving member 17 is slidably supported between a pair of second rail members 21 extending parallel to each other along the traction belt 12 at a position below the first rail members 20. Yes. Since the first moving member 16 and the second moving member 17 are connected to the traction belt 12, they move relative to each other as the traction belt 12 rotates.
- An endless conveying belt 22 is stretched around the first drive pulley 4, the second drive pulley 5, the first transfer disc 18, and the second transfer disc 19.
- the conveying belt 22 travels from the first drive pulley 4 via the first transfer disk 18 to the second drive pulley 5 and from the second drive pulley 5 via the second transfer disk 19 to the first transfer pulley 19.
- a return path to the drive pulley 4 is formed, and the article W is placed on the forward path side from the first drive pulley 4 via the first transfer disk 18 to the second drive pulley 5 and conveyed.
- the rotation of the conveyor belt 22 is driven by the rotation of the first drive pulley 4 by the first drive motor 6 and the rotation of the second drive pulley 5 by the second drive motor 8.
- the first drive motor 6 rotates the first drive pulley 4 in the direction to take the article W from the entrance conveyor 2
- the second drive motor 8 sends the second drive pulley 5 in the direction to send the article W to the exit conveyor 3.
- the rotated Make it. Therefore, the first drive pulley 4 and the second drive pulley 5 are driven to rotate in opposite directions.
- the differential gear mechanism 15 is connected to a first side gear 24 connected to the rotary shaft 23 of the first drive motor 6 and to a rotary shaft 25 of the second drive motor 8.
- a second side gear 26 that is opposed to the first side gear 24 with a gap, and a plurality of pinions 27 that mesh between the side gears 24, 26, and the pinion 27 is disposed on the inner periphery of the first holding pulley 13. It has a configuration supported by its own rotation. According to this, when the rotary shaft 23 of the first drive motor 6 and the rotary shaft 25 of the second drive motor 8 are rotating in the opposite directions at the same speed (that is, the conveyor belt 22 rotates over the entire circumference).
- the pinion 27 rotates in a fixed position between the first side gear 24 and the second side gear 26 and no rotational force is transmitted to the first holding pulley 13, and the traction belt 12 rotates. Since the first moving member 16 and the second moving member 17 are not moved, the stopped state of the first moving member 16 and the second moving member 17 is maintained. When the rotation shaft 23 of the first drive motor 6 is rotated and the rotation shaft 25 of the second drive motor 8 is stopped, the pinion 27 rotated by the first side gear 24 is transferred to the stopped second side gear 26. The first holding pulley 13 rotates in the same direction as the first drive pulley 4. As a result, the first moving member 16 is moved away from the first drive pulley 4 via the traction belt 12.
- the conveyor belt 22 is a so-called top chain formed in an endless belt shape by a plurality of plate-like elements 28 being slidably connected, as shown in FIG.
- Each of the drive pulleys 4 and 5 can be bent in the folding direction along the outer periphery thereof, and can be bent in the horizontal direction along the outer periphery of each of the transfer disks 18 and 19.
- a sprocket is employed as the drive pulleys 4 and 5 for driving the rotation of the conveyor belt 22 that is the top chain.
- the transport device 1 of the present embodiment travels from the first drive pulley 4 to the second drive pulley 5 via the first transfer disc 18 as the first transfer disc 18 moves.
- the distance of the side conveyance path can be changed. That is, as shown in Fig. 6 (a)
- the first moving member 16 close to the drive pulleys 4 and 5 the distance on the forward path side of the conveyor belt 22 is shortened.
- the first drive motor 6 uses the first The drive of the drive pulley 4 is maintained, and the drive of the second drive pulley 5 by the second drive motor 8 is stopped.
- the first holding pulley 13 is driven to rotate in the same direction as the first drive pulley 4 by the differential gear mechanism 15, and the traction belt 12 rotates.
- the first moving member 16 moves in a direction away from the drive pulleys 4 and 5 via the traction belt 12.
- the second moving member 17 moves in the direction of approaching both the drive pulleys 4 and 5 through the traction beret 12.
- the conveyor belt 22 is fed from the return path side to the outbound path side, and the distance on the outbound path side of the conveyor belt 22 is extended as shown in FIG. 6 (b).
- the second drive pulley 5 since the second drive pulley 5 is in a stopped state, the articles W are not sent to the outlet conveyor 3, and the conveyor belt 22 on the outward path and the rotation of the first drive pulley 4 cause the entrance conveyor to rotate. Article W from 2 is supplied. In this way, a large number of articles W are stored on the extended transport belt 22 on the forward path while maintaining the interval between the articles W.
- the second drive motor 8 starts driving the second drive pulley 5 in a state in which the forward path side conveyor belt 22 is extended, so that a large number of articles W are stored on the forward path side conveyor belt 22.
- the article W can be conveyed from the conveyor 2 to the outlet conveyor 3.
- the transport belt 22 is drawn from the forward path side to the return path side, and the distance on the forward path side of the transport belt 22 is shortened as shown in FIG. 6 (a). At this time, it is stored on the transport belt 22 on the forward path side. Since the article W is sent to the outlet conveyor 3, the article W can be sent to the outlet conveyor 3 without supplying the article W from the inlet conveyor 2.
- the differential gear mechanism 15 is provided so that the driving force from the first driving motor 6 and the second driving motor 8 is transmitted to the first holding pulley 13. Both moving members 16, 17 can be moved reliably and accurately in synchronization with the stop of either the first drive pulley 4 or the second drive pulley 5, and the control can be simplified. It is advantageous.
- the differential gear mechanism 15 need not be provided. That is, although not shown in the drawing, the first holding pulley 13 can have the same structure as the second holding pulley 14 to further simplify the structure. In this case, the first drive pulley 4 and the first drive pulley 4 can be stopped by simply maintaining the drive of the first drive pulley 4 by the first drive motor 6 and stopping the drive of the second drive pulley 5 by the second drive motor 8.
- Tension is applied to the return belt 22 between the drive pulley 5 and the second moving member 17 is pulled and moved in the direction approaching both drive pulleys 4 and 5 via the second transfer disk 19. . Since the first moving member 16 moves relative to the second moving member 17 via the traction belt 12, this increases the amount of stored articles W by extending the transport belt 22 on the forward path side. Can do.
- the first drive pulley 5 can be maintained simply by maintaining the drive of the second drive pulley 5 by the second drive motor 8 and stopping the drive of the first drive pulley 4 by the first drive motor 6.
- Tension is applied to the transport belt 22 on the forward path between 4 and the second drive pulley 5, and the first moving member 16 is pulled in the direction approaching both drive pulleys 4 and 5 via the first transfer disk 18. To move.
- the transport belt 22 on the forward path side can be shortened.
- the differential gear mechanism 15 when the differential gear mechanism 15 is not provided, only the second holding pulley 14 is provided without the first holding pulley 13, and the traction belt 12 is not endless and the first holding pulley 13 is provided at one end thereof.
- One moving member 16 may be connected, and the second moving member 17 may be connected to the other end.
- the first moving member 16 moves in the relative direction to the second moving member 17 via the traction belt 12, the amount of stored article W can be stored simply by extending or retracting the forward conveying belt 22. Can be increased or decreased.
- the present invention is a transport apparatus in which the transport path length can be easily changed.
- the transport apparatus is provided between devices that perform a plurality of manufacturing processes.
- the article can be smoothly conveyed and stored.
- FIG. 2 is an explanatory perspective view showing a main part of the transport apparatus according to the present embodiment.
- FIG. 3 is an explanatory sectional view of a moving member.
- FIG. 4 is an explanatory view schematically showing a configuration of a differential gear mechanism.
- FIG. 5 is an explanatory view showing a part of the conveyor belt.
- FIG. 6 is an explanatory diagram of the operation of the main part of the transport device of the present embodiment.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Intermediate Stations On Conveyors (AREA)
- Attitude Control For Articles On Conveyors (AREA)
- Structure Of Belt Conveyors (AREA)
Abstract
L'invention concerne un dispositif de transport ayant une commande simplifiée sans réduction du rendement de production d'articles devant être obtenus, capable d'avoir facilement une longueur d'itinéraire de transport conformément à la quantité d'articles devant être contenus dans l'itinéraire, ayant une charge réduite sur une courroie de transporteur, ayant une structure simple, et d'une dimension compacte. Un premier élément mobile (16) et un second élément mobile (17) sont disposés aux deux extrémités, respectivement, d'une courroie de traction (12) passée sur une poulie de maintien (14). Le premier élément mobile (16) est doté d'une première poulie mobile (18) et le second élément mobile (17) est doté d'une seconde poulie mobile (19). Une courroie transporteuse sans fin (22) est passée sur une première poulie d'entraînement (4), une seconde poulie d'entraînement (5), et les deux poulies mobiles (18, 19). Lorsque seule la première poulie d'entraînement (4) est arrêtée, le premier élément mobile (16) se déplace dans la direction de l'approche des deux poulies (4, 5) pour réduire la longueur de trajet vers l'extérieur de la courroie transporteuse (22). Lorsque seule la seconde poulie d'entraînement (5) est arrêtée, le second élément mobile (17) se déplace dans la direction de l'approche des deux poulies (4, 5) pour augmenter la longueur de trajet vers l'extérieur de la courroie transporteuse (22).
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2006-230813 | 2006-08-28 | ||
JP2006230813A JP4601590B2 (ja) | 2006-08-28 | 2006-08-28 | 搬送装置 |
Publications (1)
Publication Number | Publication Date |
---|---|
WO2008026478A1 true WO2008026478A1 (fr) | 2008-03-06 |
Family
ID=39135761
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/JP2007/066191 WO2008026478A1 (fr) | 2006-08-28 | 2007-08-21 | Dispositif de transport |
Country Status (2)
Country | Link |
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JP (1) | JP4601590B2 (fr) |
WO (1) | WO2008026478A1 (fr) |
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2011004213A1 (fr) * | 2009-07-06 | 2011-01-13 | Sidel Participations | Appareil de manipulation et daccumulation darticles dans une zone tampon |
FR2953502A1 (fr) * | 2009-12-03 | 2011-06-10 | Vsm Automation | Table d'accumulation |
EP2648999A1 (fr) | 2010-12-06 | 2013-10-16 | Fleetwoodgoldcowyard, Inc. | Accumulateur de convoyeur permettant de réguler le flux d'articles qui sont transportés |
EP2826735A1 (fr) * | 2013-07-17 | 2015-01-21 | Krones Aktiengesellschaft | Section ajustable de stockage tampon d'un dispositif de convoyage et procédé de stockage intermédiaire d'articles |
EP3112298A1 (fr) * | 2015-06-30 | 2017-01-04 | Gebo Packaging Solutions France | Dispositif et méthode d'alimentation d'accumulation |
US9896271B1 (en) | 2016-09-29 | 2018-02-20 | Barry-Wehmiller Container Systems, Inc. | Conveyor accumulator for controlling the flow of articles being conveyed |
WO2023170731A1 (fr) * | 2022-03-07 | 2023-09-14 | 株式会社Fuji | Transporteur de stockage |
Families Citing this family (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DK3508066T3 (da) * | 2018-01-03 | 2024-01-29 | Baader Food Systems Denmark As | Arrangement og fremgangsmåde til forarbejdning af fjerkræ |
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JPH05262423A (ja) * | 1992-03-19 | 1993-10-12 | Matsushita Electric Ind Co Ltd | バッファ機構付ワーク供給装置 |
JPH05286552A (ja) * | 1992-04-15 | 1993-11-02 | Matsushita Electric Ind Co Ltd | 丸ベルトコンベアおよびその使用方法 |
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JPH05262423A (ja) * | 1992-03-19 | 1993-10-12 | Matsushita Electric Ind Co Ltd | バッファ機構付ワーク供給装置 |
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Cited By (22)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US9145270B2 (en) | 2009-07-06 | 2015-09-29 | Gebo Packaging Solutions France | Apparatus for handling and accumulating articles in a buffer area |
WO2011004213A1 (fr) * | 2009-07-06 | 2011-01-13 | Sidel Participations | Appareil de manipulation et daccumulation darticles dans une zone tampon |
FR2953502A1 (fr) * | 2009-12-03 | 2011-06-10 | Vsm Automation | Table d'accumulation |
EP2648999A1 (fr) | 2010-12-06 | 2013-10-16 | Fleetwoodgoldcowyard, Inc. | Accumulateur de convoyeur permettant de réguler le flux d'articles qui sont transportés |
US9212008B2 (en) | 2010-12-06 | 2015-12-15 | Barry-Wehmiller Container Systems, Inc. | Conveyor accumulator for controlling the flow of articles being conveyed |
US9415947B2 (en) | 2010-12-06 | 2016-08-16 | Barry-Wehmiller Container Systems, Inc. | Conveyor accumulator for controlling the flow of articles being conveyed |
EP2648999A4 (fr) * | 2010-12-06 | 2017-12-06 | Fleetwoodgoldcowyard, Inc. | Accumulateur de convoyeur permettant de réguler le flux d'articles qui sont transportés |
CN109941717A (zh) * | 2013-07-17 | 2019-06-28 | 克朗斯股份公司 | 运送装置的储存部以及用于临时储存物品的方法 |
EP2826735A1 (fr) * | 2013-07-17 | 2015-01-21 | Krones Aktiengesellschaft | Section ajustable de stockage tampon d'un dispositif de convoyage et procédé de stockage intermédiaire d'articles |
CN104670873A (zh) * | 2013-07-17 | 2015-06-03 | 克罗内斯股份公司 | 运送装置的储存部以及用于临时储存物品的方法 |
US9290321B2 (en) | 2013-07-17 | 2016-03-22 | Krones Ag | Storage section of a conveyor device and method for temporarily storing articles |
CN109941717B (zh) * | 2013-07-17 | 2021-10-22 | 克朗斯股份公司 | 运送装置的储存部以及用于临时储存物品的方法 |
FR3038307A1 (fr) * | 2015-06-30 | 2017-01-06 | Gebo Packaging Solutions France | Dispositif et methode d’alimentation d’accumulation |
EP3112298B1 (fr) | 2015-06-30 | 2019-03-06 | Gebo Packaging Solutions France | Dispositif et méthode d'alimentation d'accumulation |
EP3498638A1 (fr) * | 2015-06-30 | 2019-06-19 | Gebo Packaging Solutions France | Dispositif et methode d'alimentation d'accumulation |
US9878855B2 (en) | 2015-06-30 | 2018-01-30 | Gebo Packaging Solutions France Sas | Device and method for feeding for accumulation |
EP3112298A1 (fr) * | 2015-06-30 | 2017-01-04 | Gebo Packaging Solutions France | Dispositif et méthode d'alimentation d'accumulation |
EP3498638B1 (fr) | 2015-06-30 | 2023-05-10 | Sidel Participations | Dispositif d'alimentation d'accumulation |
EP4219355A3 (fr) * | 2015-06-30 | 2023-11-01 | Sidel Participations | Dispositif et methode d'alimentation d'accumulation |
EP4410720A1 (fr) * | 2015-06-30 | 2024-08-07 | Sidel Participations | Dispositif et méthode d'alimentation d'accumulation |
US9896271B1 (en) | 2016-09-29 | 2018-02-20 | Barry-Wehmiller Container Systems, Inc. | Conveyor accumulator for controlling the flow of articles being conveyed |
WO2023170731A1 (fr) * | 2022-03-07 | 2023-09-14 | 株式会社Fuji | Transporteur de stockage |
Also Published As
Publication number | Publication date |
---|---|
JP4601590B2 (ja) | 2010-12-22 |
JP2008050155A (ja) | 2008-03-06 |
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