MLchartDataset catalogue

Patent · US9902573B2 · B2 · US

Compact depalletizer including a skeleton and a subassembly

(11) Publication number
US9902573B2
(21) Application number
15/345,545
(22) Filing date
2016-11-08
(30) Priority date
2015-12-31
(43) Publication date
2018-02-27
(45) Date of grant
2018-02-27
(51) IPC
B65G 59/02
(52) CPC
  • B65G Transport or storage devices, e.g. conveyors for loading or tipping, shop conveyor systems or pneumatic tube conveyors: 59/02, 57/03
  • B65B Machines, apparatus or devices for, or methods of, packaging articles or materials; unpacking: 11/00, 35/04, 35/52, 5/08, 5/10
(73) Assignee
Roi Industries Group Inc
(72) Inventors
Kevin M. Saylor
(54) Title
Compact depalletizer including a skeleton and a subassembly
(57) Abstract

A compact depalletizer including a skeleton and a subassembly. Components of the skeleton are constructed of aluminum, which provides advantages over the prior art in terms of strength, rigidity, weight, and cost. The aluminum may be pretensioned or prestressed to provide these advantages. The subassembly is preferably mounted to the side of the skeleton. The compact depalletizer is readily portable, and robotic elements of the compact depalletizer do not need to be reprogrammed after transport, so installation time is substantially reduced compared with prior art depalletizers.

Full text
View on Google Patents

Claims (17)

  1. A compact depalletizer comprising: a skeleton including a base, a frame, and an x-axis structure; and an assembly including an x-axis subassembly, a z-axis subassembly, and a y-axis subassembly, wherein the frame includes a multiplicity of vertical posts and a multiplicity of horizontal bars; wherein the x-axis structure includes two horizontal support beams rigidly fixed between two vertical end plates; wherein the x-axis subassembly is affixed to the x-axis structure, and the x-axis subassembly provides an interface for mounting at least two z-axis mounts of the z-axis subassembly to the x-axis subassembly, wherein the at least two z-axis mounts provide for horizontal movement of the z-axis subassembly; wherein the z-axis subassembly includes a chassis subassembly and a spine, wherein the chassis subassembly is operable to move vertically along the spine and wherein the y-axis subassembly is attached to the z-axis subassembly via the chassis subassembly; wherein the y-axis subassembly includes an arm, wherein linear rails are mounted to the top of the arm; wherein the compact depalletizer further includes a plurality of panels affixed to the multiplicity of vertical posts and/or the multiplicity of horizontal bars, wherein the plurality of panels is comprised of polycarbonate and/or aluminum; and wherein during assembly of the compact depalletizer, the multiplicity of vertical posts are affixed to the base between about 1 degree and about 2 degrees from a plane vertically perpendicular to the base, such that when the multiplicity of horizontal bars are affixed to the multiplicity of vertical posts, the multiplicity of vertical posts become oriented vertically perpendicular to the base and the multiplicity of vertical posts and the multiplicity of horizontal bars are pretensioned or prestressed by the vertically perpendicular orientation of the vertical posts.
  2. The compact depalletizer of claim 1, wherein the multiplicity of vertical posts, the multiplicity of horizontal bars, the two horizontal support beams, and the two vertical end plates are constructed of extruded aluminum profile, and wherein the spine includes extruded aluminum profile components.
  3. The compact depalletizer of claim 1, wherein neither the y-axis subassembly, the z-axis subassembly, nor the x-axis subassembly are mounted from the top of the compact depalletizer or from the multiplicity of horizontal bars.
  4. The compact depalletizer of claim 1, further comprising a theta-axis subassembly, wherein the theta-axis subassembly is mounted on bearing blocks of the y-axis subassembly, and wherein the theta-axis subassembly includes an end of arm tooling (EOAT) subassembly.
  5. The compact depalletizer of claim 1, further comprising robotic elements, wherein the robotic elements are preprogrammed such that the compact depalletizer does not require reprogramming after transport or assembly.
  6. A compact depalletizer comprising: a skeleton including a base, a frame, and an x-axis structure; and an assembly including an x-axis subassembly, a z-axis subassembly, a y-axis subassembly, and a theta-axis subassembly; wherein the frame includes a multiplicity of vertical posts; wherein the x-axis structure includes two horizontal support beams rigidly fixed between two vertical end plates, and two plates for mounting rails, wherein the two plates are parallel to the two horizontal support beams; wherein the x-axis subassembly includes two sets of rails, wherein the two sets of rails are affixed to the two plates; wherein the two sets of rails are connected to roller mounts such that each set of the two sets of rails is connected to one roller mount, wherein the roller mounts provide for horizontal movement of the z-axis subassembly via the two sets of rails and the roller mounts; wherein the z-axis subassembly includes a spine, wherein the spine includes two structural components, wherein the z-axis subassembly further includes a chassis subassembly, wherein the chassis subassembly is operable to move vertically along the spine, wherein one end of the y-axis subassembly is attached to the z-axis subassembly via the chassis subassembly; wherein the y-axis subassembly includes an arm comprised of two spaced apart structural arm components, wherein two linear rails are mounted to the top of the two spaced apart structural arm components so that they are parallel to the two spaced apart structural arm components, wherein the y-axis subassembly further includes bearing blocks for mounting the theta-axis subassembly; and wherein the theta-axis subassembly includes an end of arm tooling (EOAT) subassembly.
  7. The compact depalletizer of claim 6, further comprising a plurality of panels comprised of polycarbonate and/or aluminum, wherein the plurality of panels is affixed to the multiplicity of vertical posts.
  8. The compact depalletizer of claim 6, further comprising robotic elements, wherein the robotic elements are preprogrammed such that the compact depalletizer does not require reprogramming after transport or assembly.
  9. The compact depalletizer of claim 6, wherein the frame, the x-axis structure, and the assembly do not include welded components.
  10. The compact depalletizer of claim 6, wherein the multiplicity of vertical posts and the two horizontal support beams are pretensioned or prestressed.
  11. The compact depalletizer of claim 6, wherein the frame further comprises a multiplicity of horizontal bars affixed to the multiplicity of vertical posts, and wherein during assembly of the compact depalletizer, the multiplicity of vertical posts are affixed to the base between about 1 degree and about 2 degrees from a plane vertically perpendicular to the base, such that when the multiplicity of horizontal bars are affixed to the multiplicity of vertical posts, the multiplicity of vertical posts become oriented vertically perpendicular to the base and the multiplicity of vertical posts and the multiplicity of horizontal bars are pretensioned or prestressed by the vertically perpendicular orientation of the vertical posts.
  12. The compact depalletizer of claim 11, wherein the two horizontal support beams are rigidly fixed between the two vertical end plates, wherein the two sets of rails are affixed to the two plates, and the multiplicity of horizontal bars are affixed to the multiplicity of vertical posts.
  13. The compact depalletizer of claim 6, wherein the end of the y-axis subassembly which is not attached to the chassis subassembly is operable to flex between about 0 millimeters and about 3.175 millimeters from a plane horizontally perpendicular to the x-axis subassembly.
  14. A compact depalletizer comprising: a skeleton including a base and a frame; and an assembly, wherein the frame includes a multiplicity of vertical posts and a multiplicity of horizontal bars; wherein the assembly includes an arm with an end of arm tooling (EOAT) subassembly for moving at least one object; and wherein during assembly of the compact depalletizer, the multiplicity of vertical posts are affixed to the base between about 1 degree and about 2 degrees from a plane vertically perpendicular to the base, such that when the multiplicity of horizontal bars are affixed to the multiplicity of vertical posts, the multiplicity of vertical posts become oriented vertically perpendicular to the base and the multiplicity of vertical posts and the multiplicity of horizontal bars are pretensioned or prestressed by the vertically perpendicular orientation of the vertical posts.
  15. The compact depalletizer of claim 14, further comprising robotic elements, wherein the robotic elements are preprogrammed such that the compact depalletizer does not require reprogramming after transport or assembly.
  16. The compact depalletizer of claim 14, wherein the frame and the assembly do not include welded components.
  17. The compact depalletizer of claim 14, further comprising a plurality of panels affixed to the multiplicity of vertical posts and/or the multiplicity of horizontal bars.

Description

1. Field of the Invention

The present invention relates to a compact depalletizer and the components thereof. The depalletizer includes a skeleton and a subassembly. The present invention utilizes materials and configurations which provide for advantages over the prior art in terms of cost, size, weight, portability, speed, and control.

2. Description of the Prior Art

Generally, palletizers are known in the prior art. Examples of relevant prior art documents include the following:

U.S. Pat. No. 6,718,229 for “Linear actuator palletizing system and method” by Takebayashi, filed Nov. 3, 2000, describes a method for programming a multi-axis actuator system to perform palletizing uses an intuitive user interface having a data entry screen for palletizing data, which requires only a simple setting of minimal parameters including the number of rows and columns in a pallet and the pitch spacing between pallet positions. Actuator positions necessary for palletizing movements are calculated in real time by an algorithm executed in a digital signal processor of the actuator controllers. Palletizing data entries are stored in a motion profile table in a range of consecutively paired indexes which is separated from the index range dedicated to regular single-step or torque moves.

U.S. Pat. No. 4,597,707 for “Automatic operating palletizer” by Cornacchia, filed Aug.

Citations (26)

  • US4082194A
  • US4242025A
  • JPS60189413A
  • US4597707A
  • US4610592A
  • US4746255A
  • US4836111A
  • US4850782A
  • US5100284A
  • US5768845A
  • US20020064447A1
  • US6718229B1
  • US6923085B2
  • US6987241B2
  • US20050265817A1
  • US8607528B2
  • US20100310349A1
  • US8371797B2
  • US20100023159A1
  • US7993095B2
  • US8539739B2
  • US20120282066A1
  • US20120213625A1
  • US20140053668A1
  • US20140294553A1
  • US9511957B1
Record as JSON
{
  "publication_number": "US9902573B2",
  "country": "US",
  "kind": "B2",
  "title": "Compact depalletizer including a skeleton and a subassembly",
  "abstract": "A compact depalletizer including a skeleton and a subassembly. Components of the skeleton are constructed of aluminum, which provides advantages over the prior art in terms of strength, rigidity, weight, and cost. The aluminum may be pretensioned or prestressed to provide these advantages. The subassembly is preferably mounted to the side of the skeleton. The compact depalletizer is readily portable, and robotic elements of the compact depalletizer do not need to be reprogrammed after transport, so installation time is substantially reduced compared with prior art depalletizers.",
  "claims": [
    "1. A compact depalletizer comprising: a skeleton including a base, a frame, and an x-axis structure; and an assembly including an x-axis subassembly, a z-axis subassembly, and a y-axis subassembly, wherein the frame includes a multiplicity of vertical posts and a multiplicity of horizontal bars; wherein the x-axis structure includes two horizontal support beams rigidly fixed between two vertical end plates; wherein the x-axis subassembly is affixed to the x-axis structure, and the x-axis subassembly provides an interface for mounting at least two z-axis mounts of the z-axis subassembly to the x-axis subassembly, wherein the at least two z-axis mounts provide for horizontal movement of the z-axis subassembly; wherein the z-axis subassembly includes a chassis subassembly and a spine, wherein the chassis subassembly is operable to move vertically along the spine and wherein the y-axis subassembly is attached to the z-axis subassembly via the chassis subassembly; wherein the y-axis subassembly includes an arm, wherein linear rails are mounted to the top of the arm; wherein the compact depalletizer further includes a plurality of panels affixed to the multiplicity of vertical posts and/or the multiplicity of horizontal bars, wherein the plurality of panels is comprised of polycarbonate and/or aluminum; and wherein during assembly of the compact depalletizer, the multiplicity of vertical posts are affixed to the base between about 1 degree and about 2 degrees from a plane vertically perpendicular to the base, such that when the multiplicity of horizontal bars are affixed to the multiplicity of vertical posts, the multiplicity of vertical posts become oriented vertically perpendicular to the base and the multiplicity of vertical posts and the multiplicity of horizontal bars are pretensioned or prestressed by the vertically perpendicular orientation of the vertical posts.",
    "2. The compact depalletizer of claim 1, wherein the multiplicity of vertical posts, the multiplicity of horizontal bars, the two horizontal support beams, and the two vertical end plates are constructed of extruded aluminum profile, and wherein the spine includes extruded aluminum profile components.",
    "3. The compact depalletizer of claim 1, wherein neither the y-axis subassembly, the z-axis subassembly, nor the x-axis subassembly are mounted from the top of the compact depalletizer or from the multiplicity of horizontal bars.",
    "4. The compact depalletizer of claim 1, further comprising a theta-axis subassembly, wherein the theta-axis subassembly is mounted on bearing blocks of the y-axis subassembly, and wherein the theta-axis subassembly includes an end of arm tooling (EOAT) subassembly.",
    "5. The compact depalletizer of claim 1, further comprising robotic elements, wherein the robotic elements are preprogrammed such that the compact depalletizer does not require reprogramming after transport or assembly.",
    "6. A compact depalletizer comprising: a skeleton including a base, a frame, and an x-axis structure; and an assembly including an x-axis subassembly, a z-axis subassembly, a y-axis subassembly, and a theta-axis subassembly; wherein the frame includes a multiplicity of vertical posts; wherein the x-axis structure includes two horizontal support beams rigidly fixed between two vertical end plates, and two plates for mounting rails, wherein the two plates are parallel to the two horizontal support beams; wherein the x-axis subassembly includes two sets of rails, wherein the two sets of rails are affixed to the two plates; wherein the two sets of rails are connected to roller mounts such that each set of the two sets of rails is connected to one roller mount, wherein the roller mounts provide for horizontal movement of the z-axis subassembly via the two sets of rails and the roller mounts; wherein the z-axis subassembly includes a spine, wherein the spine includes two structural components, wherein the z-axis subassembly further includes a chassis subassembly, wherein the chassis subassembly is operable to move vertically along the spine, wherein one end of the y-axis subassembly is attached to the z-axis subassembly via the chassis subassembly; wherein the y-axis subassembly includes an arm comprised of two spaced apart structural arm components, wherein two linear rails are mounted to the top of the two spaced apart structural arm components so that they are parallel to the two spaced apart structural arm components, wherein the y-axis subassembly further includes bearing blocks for mounting the theta-axis subassembly; and wherein the theta-axis subassembly includes an end of arm tooling (EOAT) subassembly.",
    "7. The compact depalletizer of claim 6, further comprising a plurality of panels comprised of polycarbonate and/or aluminum, wherein the plurality of panels is affixed to the multiplicity of vertical posts.",
    "8. The compact depalletizer of claim 6, further comprising robotic elements, wherein the robotic elements are preprogrammed such that the compact depalletizer does not require reprogramming after transport or assembly.",
    "9. The compact depalletizer of claim 6, wherein the frame, the x-axis structure, and the assembly do not include welded components.",
    "10. The compact depalletizer of claim 6, wherein the multiplicity of vertical posts and the two horizontal support beams are pretensioned or prestressed.",
    "11. The compact depalletizer of claim 6, wherein the frame further comprises a multiplicity of horizontal bars affixed to the multiplicity of vertical posts, and wherein during assembly of the compact depalletizer, the multiplicity of vertical posts are affixed to the base between about 1 degree and about 2 degrees from a plane vertically perpendicular to the base, such that when the multiplicity of horizontal bars are affixed to the multiplicity of vertical posts, the multiplicity of vertical posts become oriented vertically perpendicular to the base and the multiplicity of vertical posts and the multiplicity of horizontal bars are pretensioned or prestressed by the vertically perpendicular orientation of the vertical posts.",
    "12. The compact depalletizer of claim 11, wherein the two horizontal support beams are rigidly fixed between the two vertical end plates, wherein the two sets of rails are affixed to the two plates, and the multiplicity of horizontal bars are affixed to the multiplicity of vertical posts.",
    "13. The compact depalletizer of claim 6, wherein the end of the y-axis subassembly which is not attached to the chassis subassembly is operable to flex between about 0 millimeters and about 3.175 millimeters from a plane horizontally perpendicular to the x-axis subassembly.",
    "14. A compact depalletizer comprising: a skeleton including a base and a frame; and an assembly, wherein the frame includes a multiplicity of vertical posts and a multiplicity of horizontal bars; wherein the assembly includes an arm with an end of arm tooling (EOAT) subassembly for moving at least one object; and wherein during assembly of the compact depalletizer, the multiplicity of vertical posts are affixed to the base between about 1 degree and about 2 degrees from a plane vertically perpendicular to the base, such that when the multiplicity of horizontal bars are affixed to the multiplicity of vertical posts, the multiplicity of vertical posts become oriented vertically perpendicular to the base and the multiplicity of vertical posts and the multiplicity of horizontal bars are pretensioned or prestressed by the vertically perpendicular orientation of the vertical posts.",
    "15. The compact depalletizer of claim 14, further comprising robotic elements, wherein the robotic elements are preprogrammed such that the compact depalletizer does not require reprogramming after transport or assembly.",
    "16. The compact depalletizer of claim 14, wherein the frame and the assembly do not include welded components.",
    "17. The compact depalletizer of claim 14, further comprising a plurality of panels affixed to the multiplicity of vertical posts and/or the multiplicity of horizontal bars."
  ],
  "description_excerpt": "1. Field of the Invention\n\nThe present invention relates to a compact depalletizer and the components thereof. The depalletizer includes a skeleton and a subassembly. The present invention utilizes materials and configurations which provide for advantages over the prior art in terms of cost, size, weight, portability, speed, and control.\n\n2. Description of the Prior Art\n\nGenerally, palletizers are known in the prior art. Examples of relevant prior art documents include the following:\n\nU.S. Pat. No. 6,718,229 for “Linear actuator palletizing system and method” by Takebayashi, filed Nov. 3, 2000, describes a method for programming a multi-axis actuator system to perform palletizing uses an intuitive user interface having a data entry screen for palletizing data, which requires only a simple setting of minimal parameters including the number of rows and columns in a pallet and the pitch spacing between pallet positions. Actuator positions necessary for palletizing movements are calculated in real time by an algorithm executed in a digital signal processor of the actuator controllers. Palletizing data entries are stored in a motion profile table in a range of consecutively paired indexes which is separated from the index range dedicated to regular single-step or torque moves.\n\nU.S. Pat. No. 4,597,707 for “Automatic operating palletizer” by Cornacchia, filed Aug.",
  "cpc": [
    "B65G 59/02",
    "B65B 11/00",
    "B65B 35/04",
    "B65B 35/52",
    "B65B 5/08",
    "B65B 5/10",
    "B65G 57/03"
  ],
  "ipc": [
    "B65G 59/02"
  ],
  "assignees": [
    "Roi Industries Group Inc"
  ],
  "inventors": [
    "Kevin M. Saylor"
  ],
  "filing_date": "2016-11-08",
  "publication_date": "2018-02-27",
  "grant_date": "2018-02-27",
  "priority_date": "2015-12-31",
  "application_number": "US-201615345545-A",
  "family_id": "57399888",
  "cited_by_count": 3,
  "citations": [
    "US4082194A",
    "US4242025A",
    "JPS60189413A",
    "US4597707A",
    "US4610592A",
    "US4746255A",
    "US4836111A",
    "US4850782A",
    "US5100284A",
    "US5768845A",
    "US20020064447A1",
    "US6718229B1",
    "US6923085B2",
    "US6987241B2",
    "US20050265817A1",
    "US8607528B2",
    "US20100310349A1",
    "US8371797B2",
    "US20100023159A1",
    "US7993095B2",
    "US8539739B2",
    "US20120282066A1",
    "US20120213625A1",
    "US20140053668A1",
    "US20140294553A1",
    "US9511957B1"
  ]
}

Record 3,568 of 8,000 in Patents full text (MLC-0201). Request the full dataset.