MLchartDataset catalogue

Patent · US10479620B2 · B2 · US

Destacking device and method for destacking metal sheets

(11) Publication number
US10479620B2
(21) Application number
14/652,691
(22) Filing date
2013-11-29
(30) Priority date
2012-12-17
(43) Publication date
2019-11-19
(45) Date of grant
2019-11-19
(51) IPC
B65G 57/03; B65G 59/06
(52) CPC
  • B21D Working or processing of sheet metal or metal tubes, rods or profiles without essentially removing material; punching metal: 43/22, 43/24, 51/26
  • B23K Soldering or unsoldering; welding; cladding or plating by soldering or welding; cutting by applying heat locally, e.g. flame cutting; working by laser beam: 11/087
  • B65G Transport or storage devices, e.g. conveyors for loading or tipping, shop conveyor systems or pneumatic tube conveyors: 2201/022, 2814/0305, 2814/0308, 57/03, 59/062
  • B65H Handling thin or filamentary material, e.g. sheets, webs, cables: 1/06, 1/30, 2403/532, 2701/173, 3/085, 3/0883, 3/34, 3/48
(73) Assignee
Soudronic AG
(72) Inventors
Peter Taiana
(54) Title
Destacking device and method for destacking metal sheets
(57) Abstract

In a destacking device comprising a stacking magazine (2), the respective lowest sheet of a stack (1) of metal sheets is destacked by way of a suction element (5, 15). This element can be moved upward and downward by way of a drive (6). At the end of the upward movement, the respective lowest metal sheet (4) of the stack (1) is gripped by suction power and pulled from the stack. A second suction element (5′, 15′) is provided, which can be moved upward and downward by way of a drive (6 ′) and by way of which the lowest sheet (4) of the stack (1) can be gripped at the end of the upward movement. The second suction element is driven so as to be leading with respect to the first suction element, so that the respective lowest sheet (4) of the stack (1) can first be pulled from the stack by the second suction element (5 ′), and subsequently by the first suction element (5). In this way, it becomes possible to destack thin sheets having a thickness of only 0.12 mm and a square shape without disruption. The stack is held magnetically in the stacking magazine, which facilitates destacking.

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Claims (14)

  1. A destacking device, comprising a stacking magazine that is open on the bottom side and has holding means for a stack of metal sheets, and a pull-off device that is disposed beneath the stacking magazine and has a first suction element, which is driven in upward and downward movement, and in a reversal position thereof from the upward movement to the downward movement is positioned within the lower opening of the stacking magazine for gripping the respective lowest sheet of a stack of sheets by way of negative pressure and pulling the gripped sheet from the stack, characterized in that the pull-off device comprises an additional suction element which is driven in upward and downward movement so as to be leading in movement with respect to the first suction element, the lower opening of the stacking magazine is unobstructed by physical supports, and the holding means is implemented exclusively with magnets so that the stack can be held in the stacking magazine strictly magnetically, and the magnets are disposed on at least two opposing sides of the stacking magazine.
  2. A destacking device, comprising a stacking magazine that is open on the bottom side and has holding means for a stack of metal sheets, and a pull-off device that is disposed beneath the stacking magazine and has a first suction element which is driven in upward and downward movement, and in a reversal position thereof from the upward movement to the downward movement is positioned within the lower opening of the stacking magazine for gripping the respective lowest sheet of a stack of sheets by way of negative pressure and pulling the gripped sheet from the stack, characterized in that the pull-off device comprises an additional suction element, which is driven in upward and downward movement so as to be leading in movement with respect to the first suction element, and the holding means is implemented exclusively by magnets disposed on at least two opposing sides of the stacking magazine, so that the stack can be held in the stacking magazine strictly magnetically.
  3. The destacking device according to claim 2, characterized in that the additional suction element is disposed such that it is positioned in the edge region of the lower opening of the stacking magazine when being in the reversal position of the element.
  4. The destacking device according to claim 2, characterized in that the additional suction element comprises at least one suction cup, which is positioned in one corner of the edge region, or that the additional suction element comprises two suction cups, which are each positioned in a corner of the edge region.
  5. The destacking device according to claim 2 characterized in that the additional suction element leads with a phase angle of approximately 90 degrees out-of-phase with a phase angle of the suction element.
  6. The destacking device according to claim 2 characterized in that the holding means comprise magnets which are disposed on four sides of the stacking magazine.
  7. A destacking device according to claim 2 characterized in that the holding means is formed by rod-shaped permanent magnets, the longitudinal axis of which is disposed vertically.
  8. A system, comprising a destacking device according to claim 2, a rounding device, and a welding machine for producing can bodies.
  9. A method for destacking individual metal sheets from the bottom side of a sheet stack by gripping the respective lowest sheet by way of a first negative pressure suction element, which pulls the gripped metal sheet from the stack and deposits the same on a placement area, the stack being held in a stacking magazine that has an opening on the bottom side and has holding means, characterized in that the respective lowest sheet is partially detached from the stack by an additional suction element before being pulled off by the first suction element, the opening at the bottom of the stacking magazine is unobstructed, and the stack is held in the stacking magazine exclusively by magnetic holding means in the form of magnets.
  10. A method for destacking individual metal sheets from the bottom side of a sheet stack by gripping the respective lowest sheet by way of a first negative pressure suction element, which pulls the gripped metal sheet from the stack and deposits the same on a placement area, the stack being held in a stacking magazine that is open on the bottom side and has holding means, characterized in that the respective lowest sheet is partially detached from the stack by an additional suction element before being pulled off by the first suction element, and the stack is held in the stacking magazine exclusively by magnetic holding means in the form of magnets.
  11. The method according to claim 10, characterized in that the second suction element grips the lowest metal sheet in an edge region of the lowest sheet, or that the second suction element grips the lowest sheet in at least one corner of the sheet or in two corners of the sheet.
  12. The method according to claim 10, characterized in that the additional suction element is driven with a phase angle of approximately 90 degrees out-of-phase with a phase angle of the suction element.
  13. The method according to claim 10 characterized in that the magnetic holding means acts on the stack from four sides of the stack.
  14. A method for producing can bodies, in which metal sheets are destacked according to methods according to claim 10, fed to a rounding device, and subsequently are welded together at the longitudinal seam in a roll seam welding machine.

Description

The invention relates to a destacking device, comprising a stacking magazine that is open on the bottom side and a pull-off device that is disposed beneath the stacking magazine and has a drivably upward and downward movable suction element, which, in the reversal position thereof from the upward movement to the downward movement, is positioned within the lower opening of the stacking magazine, for gripping the respective lowest sheet by way of negative pressure and pulling the gripped sheet from the stack. The invention further relates to a refilling device for a stacking magazine. Moreover, the invention relates to a system comprising a destacking device, a rounding device and a welding machine, and to a method for producing can bodies.

The invention is in the field of manufacturing container bodies, and in particular can bodies made of sheet steel. During the production thereof, individual sheets are destacked from a stack and fed to a rounding device, and subsequently to a welding machine for welding the longitudinal seam of the container or of the can. This is known to the person skilled in the art. The stack composed of individual sheets located on top of one another, which comprises approximately 200 to 1000 sheets, for example, is located in a stacking magazine and is seated there on laterally provided support rails and support detents, so that the weight of the stack acts on the lowest sheet.

Citations (19)

  • US2695125A
  • US3353822A
  • US4255073A
  • DE3150045A1
  • US4623057A
  • US4815916A
  • EP0574745A1
  • US5841094A
  • US6468025B1
  • EP1238929A2
  • DE10154235A1
  • DE102005008418A1
  • EP1914169A1
  • US20080226438A1
  • US7726166B2
  • EP1995195A2
  • US20100228388A1
  • US20100272542A1
  • WO2012119915A1
Record as JSON
{
  "publication_number": "US10479620B2",
  "country": "US",
  "kind": "B2",
  "title": "Destacking device and method for destacking metal sheets",
  "abstract": "In a destacking device comprising a stacking magazine (2), the respective lowest sheet of a stack (1) of metal sheets is destacked by way of a suction element (5, 15). This element can be moved upward and downward by way of a drive (6). At the end of the upward movement, the respective lowest metal sheet (4) of the stack (1) is gripped by suction power and pulled from the stack. A second suction element (5′, 15′) is provided, which can be moved upward and downward by way of a drive (6 ′) and by way of which the lowest sheet (4) of the stack (1) can be gripped at the end of the upward movement. The second suction element is driven so as to be leading with respect to the first suction element, so that the respective lowest sheet (4) of the stack (1) can first be pulled from the stack by the second suction element (5 ′), and subsequently by the first suction element (5). In this way, it becomes possible to destack thin sheets having a thickness of only 0.12 mm and a square shape without disruption. The stack is held magnetically in the stacking magazine, which facilitates destacking.",
  "claims": [
    "1. A destacking device, comprising a stacking magazine that is open on the bottom side and has holding means for a stack of metal sheets, and a pull-off device that is disposed beneath the stacking magazine and has a first suction element, which is driven in upward and downward movement, and in a reversal position thereof from the upward movement to the downward movement is positioned within the lower opening of the stacking magazine for gripping the respective lowest sheet of a stack of sheets by way of negative pressure and pulling the gripped sheet from the stack, characterized in that the pull-off device comprises an additional suction element which is driven in upward and downward movement so as to be leading in movement with respect to the first suction element, the lower opening of the stacking magazine is unobstructed by physical supports, and the holding means is implemented exclusively with magnets so that the stack can be held in the stacking magazine strictly magnetically, and the magnets are disposed on at least two opposing sides of the stacking magazine.",
    "2. A destacking device, comprising a stacking magazine that is open on the bottom side and has holding means for a stack of metal sheets, and a pull-off device that is disposed beneath the stacking magazine and has a first suction element which is driven in upward and downward movement, and in a reversal position thereof from the upward movement to the downward movement is positioned within the lower opening of the stacking magazine for gripping the respective lowest sheet of a stack of sheets by way of negative pressure and pulling the gripped sheet from the stack, characterized in that the pull-off device comprises an additional suction element, which is driven in upward and downward movement so as to be leading in movement with respect to the first suction element, and the holding means is implemented exclusively by magnets disposed on at least two opposing sides of the stacking magazine, so that the stack can be held in the stacking magazine strictly magnetically.",
    "3. The destacking device according to claim 2, characterized in that the additional suction element is disposed such that it is positioned in the edge region of the lower opening of the stacking magazine when being in the reversal position of the element.",
    "4. The destacking device according to claim 2, characterized in that the additional suction element comprises at least one suction cup, which is positioned in one corner of the edge region, or that the additional suction element comprises two suction cups, which are each positioned in a corner of the edge region.",
    "5. The destacking device according to claim 2 characterized in that the additional suction element leads with a phase angle of approximately 90 degrees out-of-phase with a phase angle of the suction element.",
    "6. The destacking device according to claim 2 characterized in that the holding means comprise magnets which are disposed on four sides of the stacking magazine.",
    "7. A destacking device according to claim 2 characterized in that the holding means is formed by rod-shaped permanent magnets, the longitudinal axis of which is disposed vertically.",
    "8. A system, comprising a destacking device according to claim 2, a rounding device, and a welding machine for producing can bodies.",
    "9. A method for destacking individual metal sheets from the bottom side of a sheet stack by gripping the respective lowest sheet by way of a first negative pressure suction element, which pulls the gripped metal sheet from the stack and deposits the same on a placement area, the stack being held in a stacking magazine that has an opening on the bottom side and has holding means, characterized in that the respective lowest sheet is partially detached from the stack by an additional suction element before being pulled off by the first suction element, the opening at the bottom of the stacking magazine is unobstructed, and the stack is held in the stacking magazine exclusively by magnetic holding means in the form of magnets.",
    "10. A method for destacking individual metal sheets from the bottom side of a sheet stack by gripping the respective lowest sheet by way of a first negative pressure suction element, which pulls the gripped metal sheet from the stack and deposits the same on a placement area, the stack being held in a stacking magazine that is open on the bottom side and has holding means, characterized in that the respective lowest sheet is partially detached from the stack by an additional suction element before being pulled off by the first suction element, and the stack is held in the stacking magazine exclusively by magnetic holding means in the form of magnets.",
    "11. The method according to claim 10, characterized in that the second suction element grips the lowest metal sheet in an edge region of the lowest sheet, or that the second suction element grips the lowest sheet in at least one corner of the sheet or in two corners of the sheet.",
    "12. The method according to claim 10, characterized in that the additional suction element is driven with a phase angle of approximately 90 degrees out-of-phase with a phase angle of the suction element.",
    "13. The method according to claim 10 characterized in that the magnetic holding means acts on the stack from four sides of the stack.",
    "14. A method for producing can bodies, in which metal sheets are destacked according to methods according to claim 10, fed to a rounding device, and subsequently are welded together at the longitudinal seam in a roll seam welding machine."
  ],
  "description_excerpt": "The invention relates to a destacking device, comprising a stacking magazine that is open on the bottom side and a pull-off device that is disposed beneath the stacking magazine and has a drivably upward and downward movable suction element, which, in the reversal position thereof from the upward movement to the downward movement, is positioned within the lower opening of the stacking magazine, for gripping the respective lowest sheet by way of negative pressure and pulling the gripped sheet from the stack. The invention further relates to a refilling device for a stacking magazine. Moreover, the invention relates to a system comprising a destacking device, a rounding device and a welding machine, and to a method for producing can bodies.\n\nThe invention is in the field of manufacturing container bodies, and in particular can bodies made of sheet steel. During the production thereof, individual sheets are destacked from a stack and fed to a rounding device, and subsequently to a welding machine for welding the longitudinal seam of the container or of the can. This is known to the person skilled in the art. The stack composed of individual sheets located on top of one another, which comprises approximately 200 to 1000 sheets, for example, is located in a stacking magazine and is seated there on laterally provided support rails and support detents, so that the weight of the stack acts on the lowest sheet.",
  "cpc": [
    "B21D 43/22",
    "B21D 43/24",
    "B21D 51/26",
    "B23K 11/087",
    "B65G 2201/022",
    "B65G 2814/0305",
    "B65G 2814/0308",
    "B65G 57/03",
    "B65G 59/062",
    "B65H 1/06",
    "B65H 1/30",
    "B65H 2403/532",
    "B65H 2701/173",
    "B65H 3/085",
    "B65H 3/0883",
    "B65H 3/34",
    "B65H 3/48"
  ],
  "ipc": [
    "B65G 57/03",
    "B65G 59/06"
  ],
  "assignees": [
    "Soudronic AG"
  ],
  "inventors": [
    "Peter Taiana"
  ],
  "filing_date": "2013-11-29",
  "publication_date": "2019-11-19",
  "grant_date": "2019-11-19",
  "priority_date": "2012-12-17",
  "application_number": "US-201314652691-A",
  "family_id": "49765734",
  "cited_by_count": 2,
  "citations": [
    "US2695125A",
    "US3353822A",
    "US4255073A",
    "DE3150045A1",
    "US4623057A",
    "US4815916A",
    "EP0574745A1",
    "US5841094A",
    "US6468025B1",
    "EP1238929A2",
    "DE10154235A1",
    "DE102005008418A1",
    "EP1914169A1",
    "US20080226438A1",
    "US7726166B2",
    "EP1995195A2",
    "US20100228388A1",
    "US20100272542A1",
    "WO2012119915A1"
  ]
}

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