WO2006085076A1 - Transport system - Google Patents

Transport system Download PDF

Info

Publication number
WO2006085076A1
WO2006085076A1 PCT/GB2006/000449 GB2006000449W WO2006085076A1 WO 2006085076 A1 WO2006085076 A1 WO 2006085076A1 GB 2006000449 W GB2006000449 W GB 2006000449W WO 2006085076 A1 WO2006085076 A1 WO 2006085076A1
Authority
WO
WIPO (PCT)
Prior art keywords
weighing
support
pusher members
transport
weighing member
Prior art date
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.)
Ceased
Application number
PCT/GB2006/000449
Other languages
French (fr)
Inventor
Ian Hodgson
David Morgan
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ishida Europe Ltd
Original Assignee
Ishida Europe Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Ishida Europe Ltd filed Critical Ishida Europe Ltd
Priority to ES06709687.5T priority Critical patent/ES2469591T3/en
Priority to US11/884,127 priority patent/US7956296B2/en
Priority to DE06709687T priority patent/DE06709687T1/en
Priority to EP06709687.5A priority patent/EP1846736B1/en
Publication of WO2006085076A1 publication Critical patent/WO2006085076A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01GWEIGHING
    • G01G19/00Weighing apparatus or methods adapted for special purposes not provided for in the preceding groups
    • G01G19/02Weighing apparatus or methods adapted for special purposes not provided for in the preceding groups for weighing wheeled or rolling bodies, e.g. vehicles
    • G01G19/03Weighing apparatus or methods adapted for special purposes not provided for in the preceding groups for weighing wheeled or rolling bodies, e.g. vehicles for weighing during motion
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01GWEIGHING
    • G01G15/00Arrangements for check-weighing of materials dispensed into removable containers

Definitions

  • the invention relates to a transport system for transporting articles, for example trays which contain foodstuffs such as snack products, along a transport path.
  • the lshida Qualitech tray sealer transports open topped trays from a tray filling system in which a food product is loaded into the tray to a tray sealing system in which a plastic cover is heat sealed to the tray.
  • the tray sealer includes a transport system formed by a sequence of upright pins coupled via an endless chain which push respective trays along a pair of laterally spaced support bars.
  • the system can be operated continuously or intermittently as required.
  • a transport system for transporting articles along a transport path comprising a plurality of pusher members coupled to a control mechanism for moving the pusher members along the transport path; a support extending along the transport path for supporting articles as they are pushed by the pusher members; and a weighing system including a weighing member supported on a weight detection device, wherein the weighing member is adapted to transfer an article from the support to the weighing member and out of contact with the pusher members.
  • the article such as a tray, is effectively lifted off the support by the weighing member and thus the support does not interfere with the article when it is being weighed.
  • the act of lifting the article off the support would also increase the distance between adjacent pusher members and the article.
  • the support is fixed and the weighing member is movable relative to the support between a rest position below the support and a weighing position in which it protrudes above the support so as to lift an article off the support.
  • the weighing system includes a weighing member moving system for moving the weighing member with both vertical and forward direction components, with respect to the direction of movement of the pusher members, as it is moved from the rest position to the weighing position.
  • the article is lifted up and forward relative to the pusher member.
  • the pusher members are operated intermittently but could also be utilized where the pusher members are operated continuously.
  • the weighing process can be made relatively short (as explained below) and thus the pusher members, such as upright pins or plates, will not have moved significantly while the article is out of contact with the support.
  • the pusher member control could be slowed down slightly during the weighing process.
  • the combination of vertical and forward movement could be achieved in a variety of ways using X, Y mounting mechanisms or the like.
  • the weighing member moving mechanism comprises one or more arms pivotally mounting the weighing member to a base member. This provides a very simple way of achieving the desired movement with a minimum of mechanical components.
  • the amount of relative movement between the weighing member and the support can be made very small, typically not more than 15mm and preferably in the range 10-15mm. This is enough to prevent interference between the support or guide system and the article. It has the advantage that the weighing system only needs a short time in the order of 200-300 milliseconds to stabilize.
  • a further advantage of this embodiment of the invention is that when the weighing member is in its retracted position, it is possible to calibrate the weighing system for zero load.
  • the weight detection device comprises a load cell although other conventional detection devices could also be used.
  • a strain gauge is normally fitted to the load cell to provide an electrical signal indicative of the load on the weight detection device.
  • the relative movement between the weighing member and the support is pneumatically controlled although other known control systems such as servomotors or hydraulic control could also be used.
  • control mechanism is adapted to move the pusher members continuously at a first speed
  • the weighing member includes a conveyor adapted to convey an article in the direction of transport at a second speed, which is faster than the first speed
  • the conveyor may comprise an endless belt entrained around a pair of rollers, and the support may then extend along the transport path adjacent the endless belt.
  • the conveyor may comprise at least two laterally spaced endless belts entrained around a pair of rollers.
  • the support can extend along the transport path through the one or more lateral spaces between the endless belts.
  • the conveyor conveys an article at a height above the support.
  • the support preferably comprises two or more laterally spaced bars.
  • the control mechanism comprises a continuous chain to which the pusher members are connected.
  • the pusher members may comprise upright pins or plates or crossbars.
  • a tray filling and sealing system comprises a transport system according to the first aspect of the invention adapted to transport trays; a tray filling system upstream of the weighing system and a tray sealing system downstream of the weighing system, the transport system being operable to transport trays from the tray filling system via the weighing system to the tray sealing system.
  • Figure 1 is a side elevation of a first example of the transport system
  • Figure 2 is a plan of the first example of the weighing system of the transport system shown in Figure 1 ;
  • Figure 3 is a side elevation of the first example of weighing system shown in Figure 2;
  • Figure 4 is a side elevation of part of a second example of the transport system having a different weighing system to the first example.
  • the transport system shown in Figure 1 is based on the lshida Tray Sealer and comprises a pair of laterally spaced, elongate chains (not shown) on which are mounted pusher members in the form of pins.
  • the chains are mounted on a frame 10 which extends from a tray loading area 12 in which open topped trays 14 are manually loaded onto the chains.
  • an automatic tray loader could also be provided.
  • the chains then pass horizontally along the frame 10 so as to carry trays 14 through a weighing station 16 and a reject point 18 where trays which fail the weight test are ejected from the chains.
  • the trays 12 then pass to a collation area 20 where they are collated together in groups which are then transferred into a sealing station 22 for sealing plastics covers onto the previously open trays.
  • the sealed trays then pass out of the sealing station to an out feed location 24.
  • the trays 14 are moved along the transport path by the pusher members, they are supported by at least two laterally spaced support bars (not shown).
  • the weighing station 16 is shown in more detail in Figures 2 and 3. As can be seen in Figure 2, the frame 10 has a pair of opposed side walls 10A, 10B between which the chains extend.
  • the weighing station 16 has a pair of weighing units 30,32 of. identical construction and so the construction of the weighing unit 30 only will be described here.
  • the weighing unit 30 has a platform 34 including four elongate platform members 36A-36D laterally spaced across the width of the conveying path. Each member 36A-36D has a first, depending leg 38 fixed to a shaft 40 which is journalled between apertures 42 in opposed triangular plates 44.
  • a second aperture 46 of one of the plates 44 is pivotally mounted to an L- shaped arm 48 and coupled for rotary drive to a pneumatically operated cylinder 50.
  • Each member 36A-36D has a second, depending leg 52 fixed to a shaft 54 which is journalled between openings 56 in second triangular plates 58.
  • a second, lower aperture 60 in each plate 58 is pivotally mounted to the arm 48.
  • the endmost pairs of plates 44,58 have upper apertures 45,59 which are connected by a link 61 so that the plate 58 is rotated upon rotation of the plate 44.
  • Each platform 34 is movable between a retracted position (as shown for the weighing unit 32) in which the platform 34 is beneath the upper run of the chains and the support bars and an extended or weighing position (as shown for the weighing unit
  • This movement is achieved by suitably rotating the cylinders 50 in a clockwise direction
  • the horizontal movement enables the tray carried on the platform to be moved away from the adjacent pusher members so as to minimize the risk of interference between the pusher members and the tray although the pusher members still protrude above the level of the platform when in its weighing position.
  • Each arm 48 is supported on a respective load cell 70, the load cells being mounted on a fixed framework 72.
  • the load cells 70 measure the weight of a tray on the platforms 34 when in the weighing position.
  • Each platform 34 is designed to accommodate a single tray so that when it is moved-to its-weighing position, the-tray weight-can be-detected by the corresponding load cell.
  • Figure 4 shows part of a second example of the transport system, which has a different weighing system to that of the first example shown in Figures 1 to 3.
  • the systems of the two examples are otherwise identical.
  • Figure 4 is adapted for use with a continuous motion transport system.
  • Figure 4 shows one of a pair of transport chains 80 to which are attached a plurality of pusher members 81.
  • the pusher members 81 are in the form of upright pins, although they could be plates or crossbars.
  • Each pusher member 81 is capable of pushing a tray along the transport path.
  • the trays are supported as they proceed along the transport path by at least two support bars (not shown), which extend along the transport path parallel to the transport chains 80.
  • the weighing system of the transport system of Figure 4 comprises a fixed conveyor 82 supported by a load cell 83.
  • any load borne by the fixed conveyor 82 is transferred to the load cell 83, which can thereby detect the weight of the load on the fixed conveyor 82.
  • the fixed conveyor 82 comprises at least two endless belts 84 entrained around respective rollers 85 and 86.
  • the endless belts 84 and respective rollers 85 and 86 are laterally spaced such that the transport chains 80 can pass through the lateral spaces between them. Similarly, the support bars also extend through these lateral spaces.
  • Each of the rollers 85 is mounted on the same shaft 85a, and each of the rollers 86 is mounted on the same shaft 86a. This arrangement allows the surface of the endless belts 84 to rise above the transport chains 80 and support bars without impeding the passage of the transport chains 80 and support bars along the transport path.
  • the shaft 86a is coupled via a drive belt 87 to a drive shaft 88, which is in turn coupled to a drive motor (not shown).
  • the drive motor operates continuously and drives the endless belts 84 via drive belts 87, shaft 86a and rollers 86 continuously in the direction of transport.
  • the speed at which the endless belts run is adapted to be slightly faster than the speed at which the transport chains advance in the direction of transport. The combination of this slightly increased speed and the slightly higher

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Special Conveying (AREA)
  • Structure Of Belt Conveyors (AREA)
  • Control Of Conveyors (AREA)
  • Sorting Of Articles (AREA)

Abstract

A transport system for transporting articles along a transport path comprises a plurality of pusher members coupled to a control mechanism for moving the pusher members along the transport path. A support for supporting articles as they are pushed by the pusher members extends along the transport path, and a weighing system includes a weighing member supported on a weight detection device. The weighing member is adapted to transfer an article from the support to the weighing member and out of contact with the pusher members.

Description

TRANSPORT SYSTEM
The invention relates to a transport system for transporting articles, for example trays which contain foodstuffs such as snack products, along a transport path. The lshida Qualitech tray sealer transports open topped trays from a tray filling system in which a food product is loaded into the tray to a tray sealing system in which a plastic cover is heat sealed to the tray.
The tray sealer includes a transport system formed by a sequence of upright pins coupled via an endless chain which push respective trays along a pair of laterally spaced support bars. The system can be operated continuously or intermittently as required.
Recently, there has been a need to confirm that the tray has been correctly filled with product before it is sealed. We therefore incorporated a check weigher into the transport system. Our solution was to make a small section of the support bars independent of the remainder of the support bars and to attach the small section to a load cell so that as a tray was placed onto the small section, it could be weighed. One problem with this is that the transport system requires a pair of laterally spaced guide bars to stop trays sliding off the support bars and the tray remains in contact with those guides as it is being weighed and thus an error weight might result. In addition, the tray may remain in contact with the pusher member which again will lead to an error in the measured weight.
In accordance with a first aspect of the present invention, we provide a transport system for transporting articles along a transport path, the system comprising a plurality of pusher members coupled to a control mechanism for moving the pusher members along the transport path; a support extending along the transport path for supporting articles as they are pushed by the pusher members; and a weighing system including a weighing member supported on a weight detection device, wherein the weighing member is adapted to transfer an article from the support to the weighing member and out of contact with the pusher members. In this invention, the article, such as a tray, is effectively lifted off the support by the weighing member and thus the support does not interfere with the article when it is being weighed. Furthermore, since typical articles such as trays have a tapered side wall, the act of lifting the article off the support would also increase the distance between adjacent pusher members and the article. In one embodiment, the support is fixed and the weighing member is movable relative to the support between a rest position below the support and a weighing position in which it protrudes above the support so as to lift an article off the support.
In order to minimize the risk of contact between the article and the pusher member, preferably the weighing system includes a weighing member moving system for moving the weighing member with both vertical and forward direction components, with respect to the direction of movement of the pusher members, as it is moved from the rest position to the weighing position.
With this arrangement, the article is lifted up and forward relative to the pusher member. This is particularly convenient if the pusher members are operated intermittently but could also be utilized where the pusher members are operated continuously. For example, the weighing process can be made relatively short (as explained below) and thus the pusher members, such as upright pins or plates, will not have moved significantly while the article is out of contact with the support. Alternatively, the pusher member control could be slowed down slightly during the weighing process.
The combination of vertical and forward movement could be achieved in a variety of ways using X, Y mounting mechanisms or the like. Preferably, however, the weighing member moving mechanism comprises one or more arms pivotally mounting the weighing member to a base member. This provides a very simple way of achieving the desired movement with a minimum of mechanical components.
We have further discovered that the amount of relative movement between the weighing member and the support can be made very small, typically not more than 15mm and preferably in the range 10-15mm. This is enough to prevent interference between the support or guide system and the article. It has the advantage that the weighing system only needs a short time in the order of 200-300 milliseconds to stabilize.
A further advantage of this embodiment of the invention is that when the weighing member is in its retracted position, it is possible to calibrate the weighing system for zero load.
Typically, the weight detection device comprises a load cell although other conventional detection devices could also be used. A strain gauge is normally fitted to the load cell to provide an electrical signal indicative of the load on the weight detection device. Conveniently, the relative movement between the weighing member and the support is pneumatically controlled although other known control systems such as servomotors or hydraulic control could also be used.
In another embodiment, the control mechanism is adapted to move the pusher members continuously at a first speed, and the weighing member includes a conveyor adapted to convey an article in the direction of transport at a second speed, which is faster than the first speed.
The conveyor may comprise an endless belt entrained around a pair of rollers, and the support may then extend along the transport path adjacent the endless belt. Alternatively, the conveyor may comprise at least two laterally spaced endless belts entrained around a pair of rollers.
In this case, the support can extend along the transport path through the one or more lateral spaces between the endless belts.
Typically, the conveyor conveys an article at a height above the support. In either embodiment, the support preferably comprises two or more laterally spaced bars. ln~either-embodiment,-the control mechanism comprises a continuous chain to which the pusher members are connected.
In either embodiment, the pusher members may comprise upright pins or plates or crossbars.
In accordance with another aspect of the invention, a tray filling and sealing system comprises a transport system according to the first aspect of the invention adapted to transport trays; a tray filling system upstream of the weighing system and a tray sealing system downstream of the weighing system, the transport system being operable to transport trays from the tray filling system via the weighing system to the tray sealing system.
Two examples of transport system according to the invention will now be described with reference to the accompanying drawings, in which:-
Figure 1 is a side elevation of a first example of the transport system; Figure 2 is a plan of the first example of the weighing system of the transport system shown in Figure 1 ;
Figure 3 is a side elevation of the first example of weighing system shown in Figure 2; and,
Figure 4 is a side elevation of part of a second example of the transport system having a different weighing system to the first example. The transport system shown in Figure 1 is based on the lshida Tray Sealer and comprises a pair of laterally spaced, elongate chains (not shown) on which are mounted pusher members in the form of pins. The chains are mounted on a frame 10 which extends from a tray loading area 12 in which open topped trays 14 are manually loaded onto the chains. Of course, an automatic tray loader could also be provided. The chains then pass horizontally along the frame 10 so as to carry trays 14 through a weighing station 16 and a reject point 18 where trays which fail the weight test are ejected from the chains. The trays 12 then pass to a collation area 20 where they are collated together in groups which are then transferred into a sealing station 22 for sealing plastics covers onto the previously open trays. The sealed trays then pass out of the sealing station to an out feed location 24. As the trays 14 are moved along the transport path by the pusher members, they are supported by at least two laterally spaced support bars (not shown).
The weighing station 16 is shown in more detail in Figures 2 and 3. As can be seen in Figure 2, the frame 10 has a pair of opposed side walls 10A, 10B between which the chains extend. The weighing station 16 has a pair of weighing units 30,32 of. identical construction and so the construction of the weighing unit 30 only will be described here. The weighing unit 30 has a platform 34 including four elongate platform members 36A-36D laterally spaced across the width of the conveying path. Each member 36A-36D has a first, depending leg 38 fixed to a shaft 40 which is journalled between apertures 42 in opposed triangular plates 44.
A second aperture 46 of one of the plates 44 is pivotally mounted to an L- shaped arm 48 and coupled for rotary drive to a pneumatically operated cylinder 50.
Each member 36A-36D has a second, depending leg 52 fixed to a shaft 54 which is journalled between openings 56 in second triangular plates 58. A second, lower aperture 60 in each plate 58 is pivotally mounted to the arm 48.
The endmost pairs of plates 44,58 have upper apertures 45,59 which are connected by a link 61 so that the plate 58 is rotated upon rotation of the plate 44.
Each platform 34 is movable between a retracted position (as shown for the weighing unit 32) in which the platform 34 is beneath the upper run of the chains and the support bars and an extended or weighing position (as shown for the weighing unit
30) in which the platform 34 is above the upper run of the chains and the support bars.
This movement is achieved by suitably rotating the cylinders 50 in a clockwise direction
(to move to the weighing position) and an anti-clockwise direction (to move to the retracted position). It will further be noted that this movement includes not only a vertical component but also a horizontal component. Thus, as the platform 34 is moved from its retracted position to its weighing position, it will move a small distance horizontally in the direction of tray travel. It has been found that a vertical movement of no more than 10-15mm is sufficient accompanied by a horizontal movement of 7- 12mm. Lift operation takes around 100ms. Operation is started before the chain comes to a stop, to allow for inherent delays in pneumatic operation, thus optimising the weighing cycle. This enables the dwell time of the conveyor to be as small as possible.
The horizontal movement enables the tray carried on the platform to be moved away from the adjacent pusher members so as to minimize the risk of interference between the pusher members and the tray although the pusher members still protrude above the level of the platform when in its weighing position.
Each arm 48 is supported on a respective load cell 70, the load cells being mounted on a fixed framework 72. The load cells 70 measure the weight of a tray on the platforms 34 when in the weighing position.
Each platform 34 is designed to accommodate a single tray so that when it is moved-to its-weighing position, the-tray weight-can be-detected by the corresponding load cell. By having two weighing units 30,32, it is possible to weigh two trays at the same time, As in conventional systems, once a tray has been weighed, if its weight falls within an acceptable limit it then passes to the collation area 20 but otherwise will be rejected through the rejection point 18.
Figure 4 shows part of a second example of the transport system, which has a different weighing system to that of the first example shown in Figures 1 to 3. The systems of the two examples are otherwise identical. The weighing system shown in
Figure 4 is adapted for use with a continuous motion transport system.
Figure 4 shows one of a pair of transport chains 80 to which are attached a plurality of pusher members 81. In this case, the pusher members 81 are in the form of upright pins, although they could be plates or crossbars. Each pusher member 81 is capable of pushing a tray along the transport path. As in the example of Figures 1 to 3, the trays are supported as they proceed along the transport path by at least two support bars (not shown), which extend along the transport path parallel to the transport chains 80.
The weighing system of the transport system of Figure 4 comprises a fixed conveyor 82 supported by a load cell 83. Thus, any load borne by the fixed conveyor 82 is transferred to the load cell 83, which can thereby detect the weight of the load on the fixed conveyor 82.
The fixed conveyor 82 comprises at least two endless belts 84 entrained around respective rollers 85 and 86. The endless belts 84 and respective rollers 85 and 86 are laterally spaced such that the transport chains 80 can pass through the lateral spaces between them. Similarly, the support bars also extend through these lateral spaces. Each of the rollers 85 is mounted on the same shaft 85a, and each of the rollers 86 is mounted on the same shaft 86a. This arrangement allows the surface of the endless belts 84 to rise above the transport chains 80 and support bars without impeding the passage of the transport chains 80 and support bars along the transport path.
The shaft 86a is coupled via a drive belt 87 to a drive shaft 88, which is in turn coupled to a drive motor (not shown). The drive motor operates continuously and drives the endless belts 84 via drive belts 87, shaft 86a and rollers 86 continuously in the direction of transport. The speed at which the endless belts run is adapted to be slightly faster than the speed at which the transport chains advance in the direction of transport. The combination of this slightly increased speed and the slightly higher
- elevation of the surface otendless belts 84 with respect to the transport chains 80 and support bars means that as a pusher member pushes a tray onto the endless belt 84, the endless belt 84 pulls the tray away from the pusher member 81 and above the level of the transport chains 80 and support bar. Therefore, the tray is supported entirely by the fixed conveyor 82 and its weight can be reliably detected by load cell 83. When the tray reaches the other end of endless belt 84 it will simply wait for the pusher member to catch up before proceeding further along the transport path.
By operating the fixed conveyor 82 continuously as described, it is possible to perform weighing of articles whilst conveying them in the direction of transport. Since there is no dwell time during weighing such as would be required in an intermittently operated system, a more efficient process is achieved.

Claims

1. A transport system for transporting articles along a transport path, the system comprising a plurality of pusher members coupled to a control mechanism for moving the pusher members along the transport path; a support extending along the transport path for supporting articles as they are pushed by the pusher members; and a weighing system including a weighing member supported on a weight detection device, wherein the weighing member is adapted to transfer an article from the support to the weighing member and out of contact with the pusher members. 2. A system according to claim 1 , wherein the support is fixed and the weighing member is movable relative to the support between a rest position below the support and a weighing position in which it protrudes above the support so as to lift an article off the support.
3. A system according to claim 2, further comprising a weighing member moving system for moving the weighing member with both vertical and forward direction components, with respect to the direction of movement of the pusher members, as it is-moved-from the rest position to the weighing position. -
4. A system according to claim 3, wherein the weighing member moving mechanism comprises one or more arms pivotally mounting the weighing member to a base member.
5. A system according to any of the preceding claims, wherein the weighing member comprises a platform.
6. A system according to any of claims 2 to 5, wherein the amount of relative movement between the weighing member and the support is not more than 15mm and preferably lies in the range 10-15mm.
7. A system according to any of the preceding claims, wherein the control mechanism is adapted to move the pusher members intermittently.
8. A system according to any of the preceding claims, wherein the control mechanism is adapted to move the pusher members continuously. 9. A system according to claim 1 , wherein the control mechanism is adapted to move the pusher members continuously at a first speed, and wherein the weighing member includes a conveyor adapted to convey an article in the direction of transport at a second speed, which is faster than the first speed. 10. A system according to claim 9, wherein the conveyor comprises an endless belt entrained around a pair of rollers, and wherein the support extends along the transport path adjacent the endless belt.
11. A system according to claim 9, wherein the conveyor comprises at least two laterally spaced endless belts entrained around a pair of rollers.
12. A system according to claim 11, wherein the support extends along the transport path through the one or more lateral spaces between the endless belts.
13. A system according to any of claims 9 to 12, wherein the conveyor conveys an article at a height above the support. 14. A system according to any of the preceding claims, wherein the support comprises two or more laterally spaced bars.
15. A system according to any of the preceding claims, wherein the control mechanism comprises a continuous chain to which the pusher members are connected. 16. A system according to claim 9, wherein the pusher members comprise upright pins or plates or crossbars.
1-7. A system according_to-..any. of the preceding claims,, wherein the weight detection device comprises a load call and a strain gauge.
18. A tray filling and sealing system comprising a transport system according to any of the preceding claims adapted to transport trays; a tray filling system upstream of the weighing system and a tray sealing system downstream of the weighing system, the transport system being operable to transport trays from the tray filling system via the weighing system to the tray sealing system.
PCT/GB2006/000449 2005-02-10 2006-02-09 Transport system Ceased WO2006085076A1 (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
ES06709687.5T ES2469591T3 (en) 2005-02-10 2006-02-09 Transport system
US11/884,127 US7956296B2 (en) 2005-02-10 2006-02-09 Transport system
DE06709687T DE06709687T1 (en) 2005-02-10 2006-02-09 TRANSPORT SYSTEM
EP06709687.5A EP1846736B1 (en) 2005-02-10 2006-02-09 Transport system

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
GB0502777.6 2005-02-10
GBGB0502777.6A GB0502777D0 (en) 2005-02-10 2005-02-10 Transport system

Publications (1)

Publication Number Publication Date
WO2006085076A1 true WO2006085076A1 (en) 2006-08-17

Family

ID=34356101

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/GB2006/000449 Ceased WO2006085076A1 (en) 2005-02-10 2006-02-09 Transport system

Country Status (6)

Country Link
US (1) US7956296B2 (en)
EP (1) EP1846736B1 (en)
DE (1) DE06709687T1 (en)
ES (1) ES2469591T3 (en)
GB (1) GB0502777D0 (en)
WO (1) WO2006085076A1 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2010104465A1 (en) * 2009-03-10 2010-09-16 Norden Machinery Ab Method for weighing products and a checkweigher
DE102013102815C5 (en) * 2013-03-18 2019-10-17 Jörn Strauß Weighing device for sorting machines for food and measuring method for a weighing device

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
IT1396149B1 (en) * 2009-11-10 2012-11-16 Neri S P A DEVICE FOR WEIGHING CONTINUOUS ITEMS FROM A TRANSPORTATION ORGAN
FR2970328B1 (en) * 2011-01-12 2013-08-23 Areva Nc ASSEMBLY FOR ASSAYING AT LEAST ONE POWDER MATERIAL
US9132932B2 (en) 2013-05-03 2015-09-15 Warum Studios Llc Portable combination dishware set
EP3300613A1 (en) * 2016-09-28 2018-04-04 International Tobacco Machinery Poland Sp. z o.o. Station for trays filled with rod-like articles, apparatus and method for emptying of four-wall or five-wall tray filled with rod-like articles of the tobacco industry
GB2555837A (en) * 2016-11-11 2018-05-16 Addo Food Group Ltd Weighing apparatus
US20220234078A1 (en) * 2018-11-14 2022-07-28 Michael Anthony Bartrom Automated Feeding, Sorting, and Packaging System for a Farm with Robots Working on Plants

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1180030A (en) * 1966-07-14 1970-02-04 Rose Forgrove Ltd Improvements in the Continuous Conveyance of Articles over a Weighing Platform.
US4238027A (en) * 1977-11-23 1980-12-09 Optima-Maschinenfabrik, Dr. Beuhler GmbH & Co. Weighing apparatus for weighing conveyed products
DE10010543C1 (en) * 2000-03-03 2001-09-20 Alcan Gmbh Conveying and weighing arrangement for full containers, has first conveyor parallel to second conveyor with weighing device
US6396002B1 (en) * 1999-08-20 2002-05-28 Topack Verpackungstechnik Gmbh Method of and apparatus for monitoring the contents of containers

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2597069A (en) * 1949-02-18 1952-05-20 American Viscose Corp Automatic weighing mechanism
US3545588A (en) * 1968-01-15 1970-12-08 Helen Emily Corley Scale to labeller feed
US3878909A (en) * 1970-10-19 1975-04-22 Hobart Corp Packaging apparatus
JPS62133321A (en) * 1985-12-05 1987-06-16 Yamato Scale Co Ltd Correcting device for dynamic metered value of metering conveyor
SE469992B (en) * 1989-02-13 1993-10-18 Abo Metall Ab Device for transporting and weighing goods at checkout counters
NL9101821A (en) * 1991-10-30 1993-05-17 Tas Adrianus Wilhelmus METHOD AND APPARATUS FOR SORTING BY WEIGHT OF MAIN ROUND PRODUCTS
US5256835A (en) * 1992-07-31 1993-10-26 Pitney Bowes Inc. Software control of a weigh and feed transport in a weighing module
DE10046205C2 (en) * 2000-09-13 2002-09-12 Francotyp Postalia Ag Process for controlling a fast dynamic balance
US6725890B1 (en) * 2003-04-09 2004-04-27 Specialty Equipment Fabrication Company Apparatus and method for automatically handling and filling drums

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1180030A (en) * 1966-07-14 1970-02-04 Rose Forgrove Ltd Improvements in the Continuous Conveyance of Articles over a Weighing Platform.
US4238027A (en) * 1977-11-23 1980-12-09 Optima-Maschinenfabrik, Dr. Beuhler GmbH & Co. Weighing apparatus for weighing conveyed products
US6396002B1 (en) * 1999-08-20 2002-05-28 Topack Verpackungstechnik Gmbh Method of and apparatus for monitoring the contents of containers
DE10010543C1 (en) * 2000-03-03 2001-09-20 Alcan Gmbh Conveying and weighing arrangement for full containers, has first conveyor parallel to second conveyor with weighing device

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2010104465A1 (en) * 2009-03-10 2010-09-16 Norden Machinery Ab Method for weighing products and a checkweigher
CN102348964A (en) * 2009-03-10 2012-02-08 诺登机械公司 Method for weighing products and a checkweigher
US8716608B2 (en) 2009-03-10 2014-05-06 Norden Machinery Ab Method for weighing products and a checkweigher with roller assemblies that dampen the movement of the produce prior to weighing
CN102348964B (en) * 2009-03-10 2016-09-21 诺登机械公司 Method and check weighing scale for product of weighing
DE102013102815C5 (en) * 2013-03-18 2019-10-17 Jörn Strauß Weighing device for sorting machines for food and measuring method for a weighing device

Also Published As

Publication number Publication date
US20080264698A1 (en) 2008-10-30
GB0502777D0 (en) 2005-03-16
US7956296B2 (en) 2011-06-07
ES2469591T3 (en) 2014-06-18
DE06709687T1 (en) 2008-04-24
EP1846736B1 (en) 2014-05-21
EP1846736A1 (en) 2007-10-24

Similar Documents

Publication Publication Date Title
US10167098B2 (en) Box filler for produce packaging
US10737810B2 (en) Device and method for filling nested containers
US9726534B2 (en) Weighing device for piece goods
KR101841425B1 (en) Packaging apparatus using automatic combination weighing
EP1846736B1 (en) Transport system
JP2002028577A (en) Sorting conveyor for sorted article take-out device
US4238027A (en) Weighing apparatus for weighing conveyed products
EP0081628B1 (en) An apparatus for accumulating and stacking a plurality of articles
EP2184593A1 (en) Perfected machine for combined weighing of fruits and vegetables
EP0634348A1 (en) Method and apparatus for loading layers of articles
GB1283418A (en) Apparatus for weight classifying articles
JP2013508242A (en) Equipment for forming product batches for loading into containers
JP5093708B2 (en) Sorting material take-out device for sorting conveyor
US4562917A (en) Fixed quantity feed apparatus for bean sprouts
NL2017181B1 (en) A weighing system
KR101668840B1 (en) auto packing apparatus
WO2009115988A1 (en) Conveyor and control unit for box containers
JP2003128009A (en) Accumulation apparatus for stick food package
JP2017138247A (en) Weight measuring device
US7361850B2 (en) Method and apparatus for counting items in a container
US8389877B2 (en) Conveyor for weighing suspended flexible packs with a support surface positioned to make contact with the pack while weighing to stabilize swinging movement
JP2561530B2 (en) Automatic collection device for packaged items
JP2005314006A (en) Boxing equipment
SU1312000A1 (en) Arrangement for loading articles to container with troughs
CN223673703U (en) A high-efficiency multi-layer conveying device

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application
WWE Wipo information: entry into national phase

Ref document number: 2006709687

Country of ref document: EP

NENP Non-entry into the national phase

Ref country code: DE

WWP Wipo information: published in national office

Ref document number: 2006709687

Country of ref document: EP

DPE1 Request for preliminary examination filed after expiration of 19th month from priority date (pct application filed from 20040101)
WWE Wipo information: entry into national phase

Ref document number: 11884127

Country of ref document: US