MLchartDataset catalogue

Patent · US11878829B2 · B2 · US

Packaging machine with independently controllable movers

(11) Publication number
US11878829B2
(21) Application number
18/063,980
(22) Filing date
2022-12-09
(30) Priority date
2015-09-25
(43) Publication date
2024-01-23
(45) Date of grant
2024-01-23
(51) IPC
B65B 3/02; B65B 31/00; B65B 39/14; B65B 41/12; B65B 43/52; B65B 47/02; B65B 51/00; B65B 61/06; B65B 9/04; B65D 65/46; C11D 17/04
(52) CPC
  • B65B Machines, apparatus or devices for, or methods of, packaging articles or materials; unpacking: 9/042, 2230/02, 3/022, 31/00, 39/14, 41/12, 43/52, 47/02, 51/00, 61/06
  • B65D Containers for storage or transport of articles or materials, e.g. bags, barrels, bottles, boxes, cans, cartons, crates, drums, jars, tanks, hoppers, forwarding containers; accessories, closures, or fittings therefor; packaging elements; packages: 65/46
  • C11D Detergent compositions; use of single substances as detergents; soap or soap-making; resin soaps; recovery of glycerol: 17/042, 17/045
(73) Assignee
New Sps Pod LLC
(72) Inventors
Thomas M. McLenithan; Andrzej Kepinski; John Paselsky; Jeff Williams; Richard McKenzie; Richard Bishop
(54) Title
Packaging machine with independently controllable movers
(57) Abstract

A packaging machine is provided for producing single and multiple compartment film wrapped pouches. Multiple linear motors allow aspects of the forming, filling, cutting and discharging to run at different speeds. The pouches are formed, filled and discharged from platens that are secured to movers that proceed through the packaging process by following magnetic fields created by independently controlled linear motors. Overall, cycle time is decreased as a result of speeding up parts of the process, including the platen return process, possible because there is no mechanical connection and not a single conveyor moving the platens while the other parts of the process may be simultaneously slowed down or even temporarily stopped. Changeover of platens, to accommodate different products, such as single compartment pouch to multiple compartment pouches, is also simplified because platens are simply connected to the movers and are thus easily removed and replaced.

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Claims (32)

  1. A packaging machine for making film wrapped pouches, comprising: multiple stages for making film wrapped pouches on platens; a track through the multiple stages; movers carrying the platens through the multiple stages around the track; and, the movers move independently about the track through each of the multiple stages in an upward facing orientation in a first portion of the track and in a downward facing orientation in a second portion of the track; and a vacuum system, wherein the vacuum system comprises a vacuum manifold with vacuum nozzles positioned over the platens and the vacuum system is positioned between a powder fill head and a liquid fill head, wherein the platen moves under the powder fill head, then under the vacuum nozzle, and then under the liquid fill head.
  2. The packaging machine as set forth in claim 1, wherein the movers are processed in a first stage with a first speed and acceleration characteristic and in a second stage at a second speed and acceleration characteristic, the first and second speed and acceleration characteristics being independently controlled.
  3. The packaging machine as set forth in claim 2, wherein the movers are driven through the multiple stages by multiple mechanically independent linear motors.
  4. The packaging machine as set forth in claim 3, wherein the movers are provided with magnets affixed thereto and propelled through the multiple stages by magnetic fields provided by the linear motors.
  5. The packaging machine as set forth in claim 4, wherein there is no mechanical contact between the magnets and the linear motors.
  6. The packaging machine as set forth in claim 5, wherein the movers are accelerated and decelerated through the multiple stages independently in each of the multiple stages.
  7. The packaging machine as set forth in claim 6, wherein the movers are simultaneously propelled at a first speed in a first relatively slow stage of processing and propelled at a second speed in a relatively fast stage of processing.
  8. The packaging machine as set forth in claim 1, further comprising a vacuum plenum, and a vacuum belt comprising a plurality of vacuum port holes that align with an opening of each platen to put the platens in communication with the vacuum plenum to provide a vacuum force to molds in the platens, wherein the vacuum belt does not drive the platens or the movers.
  9. The packaging machine as set forth in claim 1, wherein the multiple stages comprise a fill stage and wherein a first platen is propelled slowly through the fill stage while other platens are being moved at higher speeds in other of the multiple stages.
  10. The packaging machine as set forth in claim 1, wherein the movers arc mechanically independent.
  11. The packaging machine as set forth in claim 10, wherein the movers are propelled by following magnetic fields created by a series of linear motors, the movers having magnets that follow the magnetic fields.
  12. The packaging machine as set forth in claim 9, wherein the platens have molds therein for pouch formation.
  13. The packaging machine as set forth in claim 12, wherein the platens are removably secured to the movers and the platens are replaceable with other platens.
  14. The packaging machine as set forth in claim 9, comprising at least one fill station for transferring a product into a mold.
  15. The packaging machine as set forth in claim 14, wherein another fill station can be added or removed without modifying other stations.
  16. The packaging machine as set forth in claim 9, further comprising a moving filling system, wherein the moving filling system comprises a filling housing that moves generally horizontally and perpendicularly to a movement of the platens while filling molds of the platens with a chemical.
  17. The packaging machine as set forth in claim 16, wherein the filling housing includes an array of filling spouts that deposits the chemical into the molds.
  18. The packaging machine as set forth in claim 17, wherein the filling spouts are spaced along a cross member, the cross member positioned above the platens, and the cross member having a length to pass over a width of the platens.
  19. The packaging machine as set forth in claim 16, wherein the moving filling system further comprises a drive shaft that rotates forward and reverse in order to drive the filling housing.
  20. The packaging machine as set forth in claim 16, wherein the filling housing is positioned below a powder spout of the packaging machine, wherein the powder spout remains stationary.
  21. The packaging machine as set forth in claim 16, wherein the chemical is a powder detergent.
  22. The packaging machine as set forth in claim 1, further comprising a moving filling system, wherein the moving filling system comprises a cross-member that crosses over a top of the platens and positions an array of filling nozzles over the platens to deposit a chemical into molds of the platens.
  23. The packaging machine as set forth in claim 22, wherein the moving filling system moves the filling nozzles in a same direction as the molds while filling.
  24. The packaging machine as set forth in claim 22, wherein the moving filling system moves the filling nozzles in a same direction as the molds while depositing the chemical into the molds.
  25. The packaging machine as set forth in claim 22, wherein the moving filling system comprises a first support member fixedly engaged with a first end of the cross-member and movingly engaged to a support track parallel to the moving direction of the platens, a second support member fixedly engaged with a second end of the cross member movingly engaged with a drive shaft, wherein rotation of the drive shaft moves the cross-member in a direction parallel to the moving direction of the platens.
  26. The packaging machine as set forth in claim 22, wherein the moving filling system moves the array of filling nozzles in same direction as the platens and at a faster rate than the platens while filling the molds with the chemical.
  27. The packaging machine as set forth in claim 22, wherein the chemical is a liquid detergent.
  28. The packaging machine as set forth in claim 1, wherein the vacuum manifold crosses over a top of the platens, and the vacuum nozzles descend vertically from the vacuum manifold.
  29. The packaging machine as set forth in claim 28, wherein the vacuum nozzles are positioned to clean only one depression or multiple depressions in a mold of the platen.
  30. A packaging machine for film wrapped pouches, comprising: a track passing through a base film application stage, a filling stage, a lid film application stage; independent movers engaged to the track, the independent movers carrying platens to the base film application stage, the filling stage, and the lid film application stage; the independent movers provided with magnets affixed thereto wherein the independent movers are driven through the base film application stage, the filling stage, and the lid film application stage in an upward facing orientation at a slow speed and through a discharge stage and a return stage in a downward facing orientation at faster speeds by magnetic fields of linear motors; and, the platens comprising molds for forming film wrapped pouches; and a vacuum system, wherein the vacuum system comprises a vacuum manifold with vacuum nozzles positioned over the platens and the vacuum system is positioned between a powder fill head and a liquid fill head, wherein the platen moves under the powder fill head, then under the vacuum nozzle, and then under the liquid fill head.
  31. The packaging machine as set forth in claim 30, wherein each independent mover carries a single platen.
  32. The packaging machine as set forth in claim 30, wherein the linear motors drive the independent movers at varying velocities around the track.

Description

The present invention relates to a packaging machine wherein a pouch is processed through multiple stages along a closed loop system using independently controllable movers.

A vast array of chemical products are manufactured, packaged and distributed as pouches wrapped in film that can be broken down when desired to release the contents therein. The pouches are commonly referred to as sachets, packets, water soluble pouches, etc. In general, the film wraps an accurate quantity of the product and prevents it from reacting with chemicals found in the environment until the film is broken down. In this way, greater control is achieved over when a reaction occurs in addition to improving the accuracy of dosing realized because there is no measurement of the chemical required by the user. The quantity of the accurately metered pouch contents is all that is used for the desired reaction.

The most common film used to wrap such pouches is water-soluble film which dissolves upon application of water. Other films are contemplated, however, including those that may be broken down by a different gas or liquid, or by increased or decreased pressure or temperature, or combinations thereof, which results in dissolution of the film and release of the contents therein. Among water-soluble film wrapped pouches, a common use is detergent pouches used for laundry, dishwashers and other uses, comprising detergent chemicals wrapped in water-soluble film.

Citations (33)

  • US3218776A
  • US5255720A
  • US5408804A
  • US5682733A
  • US5965963A
  • US6876896B1
  • US20030109060A1
  • US6876107B2
  • US6874300B2
  • US7123854B1
  • US7597187B2
  • US20140345064A1
  • US8397896B2
  • US8662880B2
  • US8896241B2
  • US9809336B2
  • US20130219827A1
  • US10259602B2
  • US20130292884A1
  • US9008831B1
  • US20150336692A1
  • US20160114914A1
  • US20160159578A1
  • US20160159585A1
  • US20160176556A1
  • US20160257089A1
  • US20160340068A1
  • US20160362200A1
  • US20180290774A1
  • US20230106482A1
  • US10689202B2
  • US10696488B2
  • US10717606B2
Record as JSON
{
  "publication_number": "US11878829B2",
  "country": "US",
  "kind": "B2",
  "title": "Packaging machine with independently controllable movers",
  "abstract": "A packaging machine is provided for producing single and multiple compartment film wrapped pouches. Multiple linear motors allow aspects of the forming, filling, cutting and discharging to run at different speeds. The pouches are formed, filled and discharged from platens that are secured to movers that proceed through the packaging process by following magnetic fields created by independently controlled linear motors. Overall, cycle time is decreased as a result of speeding up parts of the process, including the platen return process, possible because there is no mechanical connection and not a single conveyor moving the platens while the other parts of the process may be simultaneously slowed down or even temporarily stopped. Changeover of platens, to accommodate different products, such as single compartment pouch to multiple compartment pouches, is also simplified because platens are simply connected to the movers and are thus easily removed and replaced.",
  "claims": [
    "1. A packaging machine for making film wrapped pouches, comprising: multiple stages for making film wrapped pouches on platens; a track through the multiple stages; movers carrying the platens through the multiple stages around the track; and, the movers move independently about the track through each of the multiple stages in an upward facing orientation in a first portion of the track and in a downward facing orientation in a second portion of the track; and a vacuum system, wherein the vacuum system comprises a vacuum manifold with vacuum nozzles positioned over the platens and the vacuum system is positioned between a powder fill head and a liquid fill head, wherein the platen moves under the powder fill head, then under the vacuum nozzle, and then under the liquid fill head.",
    "2. The packaging machine as set forth in claim 1, wherein the movers are processed in a first stage with a first speed and acceleration characteristic and in a second stage at a second speed and acceleration characteristic, the first and second speed and acceleration characteristics being independently controlled.",
    "3. The packaging machine as set forth in claim 2, wherein the movers are driven through the multiple stages by multiple mechanically independent linear motors.",
    "4. The packaging machine as set forth in claim 3, wherein the movers are provided with magnets affixed thereto and propelled through the multiple stages by magnetic fields provided by the linear motors.",
    "5. The packaging machine as set forth in claim 4, wherein there is no mechanical contact between the magnets and the linear motors.",
    "6. The packaging machine as set forth in claim 5, wherein the movers are accelerated and decelerated through the multiple stages independently in each of the multiple stages.",
    "7. The packaging machine as set forth in claim 6, wherein the movers are simultaneously propelled at a first speed in a first relatively slow stage of processing and propelled at a second speed in a relatively fast stage of processing.",
    "8. The packaging machine as set forth in claim 1, further comprising a vacuum plenum, and a vacuum belt comprising a plurality of vacuum port holes that align with an opening of each platen to put the platens in communication with the vacuum plenum to provide a vacuum force to molds in the platens, wherein the vacuum belt does not drive the platens or the movers.",
    "9. The packaging machine as set forth in claim 1, wherein the multiple stages comprise a fill stage and wherein a first platen is propelled slowly through the fill stage while other platens are being moved at higher speeds in other of the multiple stages.",
    "10. The packaging machine as set forth in claim 1, wherein the movers arc mechanically independent.",
    "11. The packaging machine as set forth in claim 10, wherein the movers are propelled by following magnetic fields created by a series of linear motors, the movers having magnets that follow the magnetic fields.",
    "12. The packaging machine as set forth in claim 9, wherein the platens have molds therein for pouch formation.",
    "13. The packaging machine as set forth in claim 12, wherein the platens are removably secured to the movers and the platens are replaceable with other platens.",
    "14. The packaging machine as set forth in claim 9, comprising at least one fill station for transferring a product into a mold.",
    "15. The packaging machine as set forth in claim 14, wherein another fill station can be added or removed without modifying other stations.",
    "16. The packaging machine as set forth in claim 9, further comprising a moving filling system, wherein the moving filling system comprises a filling housing that moves generally horizontally and perpendicularly to a movement of the platens while filling molds of the platens with a chemical.",
    "17. The packaging machine as set forth in claim 16, wherein the filling housing includes an array of filling spouts that deposits the chemical into the molds.",
    "18. The packaging machine as set forth in claim 17, wherein the filling spouts are spaced along a cross member, the cross member positioned above the platens, and the cross member having a length to pass over a width of the platens.",
    "19. The packaging machine as set forth in claim 16, wherein the moving filling system further comprises a drive shaft that rotates forward and reverse in order to drive the filling housing.",
    "20. The packaging machine as set forth in claim 16, wherein the filling housing is positioned below a powder spout of the packaging machine, wherein the powder spout remains stationary.",
    "21. The packaging machine as set forth in claim 16, wherein the chemical is a powder detergent.",
    "22. The packaging machine as set forth in claim 1, further comprising a moving filling system, wherein the moving filling system comprises a cross-member that crosses over a top of the platens and positions an array of filling nozzles over the platens to deposit a chemical into molds of the platens.",
    "23. The packaging machine as set forth in claim 22, wherein the moving filling system moves the filling nozzles in a same direction as the molds while filling.",
    "24. The packaging machine as set forth in claim 22, wherein the moving filling system moves the filling nozzles in a same direction as the molds while depositing the chemical into the molds.",
    "25. The packaging machine as set forth in claim 22, wherein the moving filling system comprises a first support member fixedly engaged with a first end of the cross-member and movingly engaged to a support track parallel to the moving direction of the platens, a second support member fixedly engaged with a second end of the cross member movingly engaged with a drive shaft, wherein rotation of the drive shaft moves the cross-member in a direction parallel to the moving direction of the platens.",
    "26. The packaging machine as set forth in claim 22, wherein the moving filling system moves the array of filling nozzles in same direction as the platens and at a faster rate than the platens while filling the molds with the chemical.",
    "27. The packaging machine as set forth in claim 22, wherein the chemical is a liquid detergent.",
    "28. The packaging machine as set forth in claim 1, wherein the vacuum manifold crosses over a top of the platens, and the vacuum nozzles descend vertically from the vacuum manifold.",
    "29. The packaging machine as set forth in claim 28, wherein the vacuum nozzles are positioned to clean only one depression or multiple depressions in a mold of the platen.",
    "30. A packaging machine for film wrapped pouches, comprising: a track passing through a base film application stage, a filling stage, a lid film application stage; independent movers engaged to the track, the independent movers carrying platens to the base film application stage, the filling stage, and the lid film application stage; the independent movers provided with magnets affixed thereto wherein the independent movers are driven through the base film application stage, the filling stage, and the lid film application stage in an upward facing orientation at a slow speed and through a discharge stage and a return stage in a downward facing orientation at faster speeds by magnetic fields of linear motors; and, the platens comprising molds for forming film wrapped pouches; and a vacuum system, wherein the vacuum system comprises a vacuum manifold with vacuum nozzles positioned over the platens and the vacuum system is positioned between a powder fill head and a liquid fill head, wherein the platen moves under the powder fill head, then under the vacuum nozzle, and then under the liquid fill head.",
    "31. The packaging machine as set forth in claim 30, wherein each independent mover carries a single platen.",
    "32. The packaging machine as set forth in claim 30, wherein the linear motors drive the independent movers at varying velocities around the track."
  ],
  "description_excerpt": "The present invention relates to a packaging machine wherein a pouch is processed through multiple stages along a closed loop system using independently controllable movers.\n\nA vast array of chemical products are manufactured, packaged and distributed as pouches wrapped in film that can be broken down when desired to release the contents therein. The pouches are commonly referred to as sachets, packets, water soluble pouches, etc. In general, the film wraps an accurate quantity of the product and prevents it from reacting with chemicals found in the environment until the film is broken down. In this way, greater control is achieved over when a reaction occurs in addition to improving the accuracy of dosing realized because there is no measurement of the chemical required by the user. The quantity of the accurately metered pouch contents is all that is used for the desired reaction.\n\nThe most common film used to wrap such pouches is water-soluble film which dissolves upon application of water. Other films are contemplated, however, including those that may be broken down by a different gas or liquid, or by increased or decreased pressure or temperature, or combinations thereof, which results in dissolution of the film and release of the contents therein. Among water-soluble film wrapped pouches, a common use is detergent pouches used for laundry, dishwashers and other uses, comprising detergent chemicals wrapped in water-soluble film.",
  "cpc": [
    "B65B 9/042",
    "B65B 2230/02",
    "B65B 3/022",
    "B65B 31/00",
    "B65B 39/14",
    "B65B 41/12",
    "B65B 43/52",
    "B65B 47/02",
    "B65B 51/00",
    "B65B 61/06",
    "B65D 65/46",
    "C11D 17/042",
    "C11D 17/045"
  ],
  "ipc": [
    "B65B 3/02",
    "B65B 31/00",
    "B65B 39/14",
    "B65B 41/12",
    "B65B 43/52",
    "B65B 47/02",
    "B65B 51/00",
    "B65B 61/06",
    "B65B 9/04",
    "B65D 65/46",
    "C11D 17/04"
  ],
  "assignees": [
    "New Sps Pod LLC"
  ],
  "inventors": [
    "Thomas M. McLenithan",
    "Andrzej Kepinski",
    "John Paselsky",
    "Jeff Williams",
    "Richard McKenzie",
    "Richard Bishop"
  ],
  "filing_date": "2022-12-09",
  "publication_date": "2024-01-23",
  "grant_date": "2024-01-23",
  "priority_date": "2015-09-25",
  "application_number": "US-202218063980-A",
  "family_id": "58408463",
  "cited_by_count": 6,
  "citations": [
    "US3218776A",
    "US5255720A",
    "US5408804A",
    "US5682733A",
    "US5965963A",
    "US6876896B1",
    "US20030109060A1",
    "US6876107B2",
    "US6874300B2",
    "US7123854B1",
    "US7597187B2",
    "US20140345064A1",
    "US8397896B2",
    "US8662880B2",
    "US8896241B2",
    "US9809336B2",
    "US20130219827A1",
    "US10259602B2",
    "US20130292884A1",
    "US9008831B1",
    "US20150336692A1",
    "US20160114914A1",
    "US20160159578A1",
    "US20160159585A1",
    "US20160176556A1",
    "US20160257089A1",
    "US20160340068A1",
    "US20160362200A1",
    "US20180290774A1",
    "US20230106482A1",
    "US10689202B2",
    "US10696488B2",
    "US10717606B2"
  ]
}

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