MLchartDataset catalogue

Patent · US10826105B2 · B2 · US

Apparatus for the manufacture of battery components

(11) Publication number
US10826105B2
(21) Application number
16/060,258
(22) Filing date
2016-12-07
(30) Priority date
2015-12-07
(43) Publication date
2020-11-03
(45) Date of grant
2020-11-03
(51) IPC
B65G 59/00; B65H 31/30; B65H 31/34; H01M 10/04; H01M 10/14; H01M 4/06; H01M 4/68
(52) CPC
  • H01M Processes or means, e.g. batteries, for the direct conversion of chemical energy into electrical energy: 10/0404, 10/14, 4/06, 4/68
  • B65G Transport or storage devices, e.g. conveyors for loading or tipping, shop conveyor systems or pneumatic tube conveyors: 59/00, 59/08
  • B65H Handling thin or filamentary material, e.g. sheets, webs, cables: 2301/4224, 2301/42242, 2301/42244, 31/3036, 31/34
  • Y10S Technical subjects covered by former uspc cross-reference art collections [xracs] and digests: 414/12
(73) Assignee
TBS Engineering Ltd
(72) Inventors
Chris Barge
(54) Title
Apparatus for the manufacture of battery components
(57) Abstract

An apparatus for separating battery plates comprising a work surface for receiving a stack of battery plates, and an alignment mechanism for aligning the battery plates on the work surface. The work surface is movable between a first position in which it is angled with respect to a horizontal plane and a second position in which it is substantially aligned with the horizontal plane. When the work surface moves between the first and second position adjacent battery plates of the stack are displaced relative to each other.

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Claims (20)

  1. A battery plate separator apparatus comprising: a work surface for receiving a stack of battery plates, the work surface being moveable between a first position which is angled with respect to a horizontal plane; and a second position which is substantially aligned with the horizontal plane such that in use, the stack of battery plates are dropped so that lower edges of the plates impact the work surface in the first position, and moving the work surface between the first and second position causes adjacent battery plates of the stack to be vertically displaced relative to each other; and an alignment mechanism for aligning the battery plates on the work surface, wherein the work surface is provided with a displacement mechanism for laterally displacing the plates of the stack relative to each other, the displacement mechanism comprising two opposing blocks provided on, or above, the work surface, the blocks being moveable between a retracted position and an operational position, such that in use in the operational position the blocks contact opposing side edges of the battery plates adjacent to the lower edges.
  2. An apparatus according to claim 1, wherein the apparatus further comprises a loading mechanism.
  3. An apparatus according to claim 2, wherein the loading mechanism comprises an arm coupled to the work surface, and which is pivotable around an axis between a substantially horizontal and a substantially vertical position.
  4. An apparatus according to claim 3, wherein in the substantially vertical position, two opposing blocks move from a retracted position to an operational position to clamp the stack of battery plates.
  5. An apparatus according to claim 1, wherein the apparatus is provided with two work surfaces, each work surface being provided with a respective alignment mechanism.
  6. An apparatus according to claim 1, wherein the blocks are provided at opposite sides of the work surface, such that in use, the blocks are facing the opposing side edges of the battery plates.
  7. An apparatus according to claim 1, wherein opposing surfaces of the blocks have corresponding profiles, the profiles being non-perpendicular to the block movement direction, such that as the blocks move to their operational position the opposing surfaces cause each battery plate to move substantially horizontally by a different amount to its adjacent plate(s).
  8. An apparatus according to claim 1, wherein the alignment mechanism is provided on or above the work surface, the alignment mechanism being moveable between an open position and a closed position, in which in use, the alignment mechanism contacts the opposing side edges of the battery plates and moves the battery plates into an aligned stack.
  9. An apparatus according to claim 8, wherein the alignment mechanism includes a pair of blocks having opposing flat surfaces, which in use face the opposing side edges of the battery plates.
  10. An apparatus according to claim 1, wherein the work surface is provided with an agitator for vibrating a stack of plates on the work surface.
  11. An apparatus according to claim 1, wherein the work surface is provided with a second displacement mechanism for displacing the plates of the stack relative to each other in a direction opposite to the displacement caused by the first displacement mechanism.
  12. An apparatus according to claim 11, wherein the work surface is provided with a splitting mechanism for laterally breaking the separated stack of battery plates into a plurality of stacks.
  13. An apparatus according to claim 12, wherein the splitting mechanism comprises a vertical rod moveable between a stored position below a top surface of the work surface, and a splitting position where the rod breaks the stack of plates into two.
  14. A method of separating battery plates comprising: (a) moving a stack of battery plates with an automated feed mechanism from a supply station to a battery plate separator apparatus, the apparatus comprising: a work surface for receiving a stack of battery plates, the work surface being moveable between: a first position which is angled with respect to a horizontal plane, and a second position which is substantially aligned with the horizontal plane, such that in use, the stack of battery plates are dropped so that lower edges of the plates impact the work surface in the first position, and moving the work surface between the first and the second position causes adjacent battery plates of the stack to be vertically displaced relative to each other; and, an alignment mechanism for aligning the battery plates on the work surface, wherein the work surface is provided with a displacement mechanism for laterally displacing the plates of the stack relative to each other, the displacement mechanism comprising two opposing blocks provided on or above the work surface, the blocks being moveable between a retracted position and an operational position, such that in use in the operational position the blocks contact opposing side edges of the battery plates adjacent to the lower edges; and (b) operating the battery plate separator apparatus to displace the plates of the stack of battery plates relative to each other, thereby separating adjacent battery plates; (c) aligning the stack of battery plates; (d) moving the stack of battery plates with an automated transfer mechanism from the battery plate separator apparatus to an end station for further processing.
  15. A method according to claim 14, wherein step (a) includes pivoting an arm from a substantially vertical position to the substantially horizontal position.
  16. A method according to claim 14, wherein the stack of battery plates is received on the work surface in the first position, and step (b) includes operating the battery plate separator apparatus to move the work surface to the second position, thereby displacing the battery plates vertically relative to each other.
  17. A method according to claim 14, wherein step (b) includes displacing the battery plates in a substantially horizontal direction.
  18. A method according to claim 14, wherein the method further includes step (c1) splitting the stack of battery plates into a plurality of stacks if the dimensions of the stack are found to exceed set specified values.
  19. A method according to claim 14, wherein step (d) includes pivoting an arm from the substantially horizontal position to the substantially vertical position to remove the stack from the battery plate separator apparatus for further processing.
  20. A method of separating battery plates comprising: (a) dropping a stack of battery plates onto an inclined work surface, the work surface being moveable between: a first position which is angled with respect to a horizontal plane, and a second position which is substantially aligned with the horizontal plane, such that in use, the stack of battery plates are dropped so that lower edges of the plates impact the work surface in the first position, and moving the work surface between the first and second position causes adjacent battery plates of the stack to be vertically displaced relative to each other; (b) moving the work surface to a substantially horizontal orientation to vertically displace the battery plates of the stack relative to each other; (c) operating a displacement mechanism to laterally displace the battery plates of the stack relative to each other, the displacement mechanism comprising two opposing blocks provided on or above the work surface, the blocks being moveable between a retracted position and an operational position, such that in use in the operational position the blocks contact opposing side edges of the battery plates adjacent to the lower edges; and, (d) operating an alignment mechanism to align the plates of the stack.

Description

The present invention relates to an apparatus for manufacturing battery components and a method of manufacture for battery components.

The term “battery” is used herein to include accumulators. In a conventional lead-acid battery it is customary to connect together the plates of each stack by means of a lead strap or post which is fixed to aligned lugs or tabs on the plates.

In the manufacture of batteries, particularly for example lead acid batteries, battery plates are manufactured by known methods, formed into stacks or groups and then dried or cured. As a result of the drying or curing process, adjacent plates in the stacks (groups) may become stuck or bonded together.

Following plate production and curing, each individual plate is encased in an envelope or wrapper before the plates are placed in the battery casing. Alternatively, a separator layer may be placed between adjacent plates. In the case of enveloping, this is generally an automated process, carried out in an enveloping machine which takes individual plates one at time from a stack and places each one in an envelope or wrapper. If adjacent plates are stuck or bonded together it can be difficult or impossible for the enveloping machine to pick up a single plate.

To overcome this problem, an operator has to manually separate the plates prior to loading the plate stack in the post processing apparatus, for example prior to loading onto a conveyor for onward transport to the enveloping machine.

Citations (10)

  • US3052968A
  • US3799321A
  • US4004699A
  • US4664581A
  • US4802808A
  • JPH04206462A
  • US5431530A
  • EP1018909A1
  • US20120099956A1
  • JP2014238922A
Record as JSON
{
  "publication_number": "US10826105B2",
  "country": "US",
  "kind": "B2",
  "title": "Apparatus for the manufacture of battery components",
  "abstract": "An apparatus for separating battery plates comprising a work surface for receiving a stack of battery plates, and an alignment mechanism for aligning the battery plates on the work surface. The work surface is movable between a first position in which it is angled with respect to a horizontal plane and a second position in which it is substantially aligned with the horizontal plane. When the work surface moves between the first and second position adjacent battery plates of the stack are displaced relative to each other.",
  "claims": [
    "1. A battery plate separator apparatus comprising: a work surface for receiving a stack of battery plates, the work surface being moveable between a first position which is angled with respect to a horizontal plane; and a second position which is substantially aligned with the horizontal plane such that in use, the stack of battery plates are dropped so that lower edges of the plates impact the work surface in the first position, and moving the work surface between the first and second position causes adjacent battery plates of the stack to be vertically displaced relative to each other; and an alignment mechanism for aligning the battery plates on the work surface, wherein the work surface is provided with a displacement mechanism for laterally displacing the plates of the stack relative to each other, the displacement mechanism comprising two opposing blocks provided on, or above, the work surface, the blocks being moveable between a retracted position and an operational position, such that in use in the operational position the blocks contact opposing side edges of the battery plates adjacent to the lower edges.",
    "2. An apparatus according to claim 1, wherein the apparatus further comprises a loading mechanism.",
    "3. An apparatus according to claim 2, wherein the loading mechanism comprises an arm coupled to the work surface, and which is pivotable around an axis between a substantially horizontal and a substantially vertical position.",
    "4. An apparatus according to claim 3, wherein in the substantially vertical position, two opposing blocks move from a retracted position to an operational position to clamp the stack of battery plates.",
    "5. An apparatus according to claim 1, wherein the apparatus is provided with two work surfaces, each work surface being provided with a respective alignment mechanism.",
    "6. An apparatus according to claim 1, wherein the blocks are provided at opposite sides of the work surface, such that in use, the blocks are facing the opposing side edges of the battery plates.",
    "7. An apparatus according to claim 1, wherein opposing surfaces of the blocks have corresponding profiles, the profiles being non-perpendicular to the block movement direction, such that as the blocks move to their operational position the opposing surfaces cause each battery plate to move substantially horizontally by a different amount to its adjacent plate(s).",
    "8. An apparatus according to claim 1, wherein the alignment mechanism is provided on or above the work surface, the alignment mechanism being moveable between an open position and a closed position, in which in use, the alignment mechanism contacts the opposing side edges of the battery plates and moves the battery plates into an aligned stack.",
    "9. An apparatus according to claim 8, wherein the alignment mechanism includes a pair of blocks having opposing flat surfaces, which in use face the opposing side edges of the battery plates.",
    "10. An apparatus according to claim 1, wherein the work surface is provided with an agitator for vibrating a stack of plates on the work surface.",
    "11. An apparatus according to claim 1, wherein the work surface is provided with a second displacement mechanism for displacing the plates of the stack relative to each other in a direction opposite to the displacement caused by the first displacement mechanism.",
    "12. An apparatus according to claim 11, wherein the work surface is provided with a splitting mechanism for laterally breaking the separated stack of battery plates into a plurality of stacks.",
    "13. An apparatus according to claim 12, wherein the splitting mechanism comprises a vertical rod moveable between a stored position below a top surface of the work surface, and a splitting position where the rod breaks the stack of plates into two.",
    "14. A method of separating battery plates comprising: (a) moving a stack of battery plates with an automated feed mechanism from a supply station to a battery plate separator apparatus, the apparatus comprising: a work surface for receiving a stack of battery plates, the work surface being moveable between: a first position which is angled with respect to a horizontal plane, and a second position which is substantially aligned with the horizontal plane, such that in use, the stack of battery plates are dropped so that lower edges of the plates impact the work surface in the first position, and moving the work surface between the first and the second position causes adjacent battery plates of the stack to be vertically displaced relative to each other; and, an alignment mechanism for aligning the battery plates on the work surface, wherein the work surface is provided with a displacement mechanism for laterally displacing the plates of the stack relative to each other, the displacement mechanism comprising two opposing blocks provided on or above the work surface, the blocks being moveable between a retracted position and an operational position, such that in use in the operational position the blocks contact opposing side edges of the battery plates adjacent to the lower edges; and (b) operating the battery plate separator apparatus to displace the plates of the stack of battery plates relative to each other, thereby separating adjacent battery plates; (c) aligning the stack of battery plates; (d) moving the stack of battery plates with an automated transfer mechanism from the battery plate separator apparatus to an end station for further processing.",
    "15. A method according to claim 14, wherein step (a) includes pivoting an arm from a substantially vertical position to the substantially horizontal position.",
    "16. A method according to claim 14, wherein the stack of battery plates is received on the work surface in the first position, and step (b) includes operating the battery plate separator apparatus to move the work surface to the second position, thereby displacing the battery plates vertically relative to each other.",
    "17. A method according to claim 14, wherein step (b) includes displacing the battery plates in a substantially horizontal direction.",
    "18. A method according to claim 14, wherein the method further includes step (c1) splitting the stack of battery plates into a plurality of stacks if the dimensions of the stack are found to exceed set specified values.",
    "19. A method according to claim 14, wherein step (d) includes pivoting an arm from the substantially horizontal position to the substantially vertical position to remove the stack from the battery plate separator apparatus for further processing.",
    "20. A method of separating battery plates comprising: (a) dropping a stack of battery plates onto an inclined work surface, the work surface being moveable between: a first position which is angled with respect to a horizontal plane, and a second position which is substantially aligned with the horizontal plane, such that in use, the stack of battery plates are dropped so that lower edges of the plates impact the work surface in the first position, and moving the work surface between the first and second position causes adjacent battery plates of the stack to be vertically displaced relative to each other; (b) moving the work surface to a substantially horizontal orientation to vertically displace the battery plates of the stack relative to each other; (c) operating a displacement mechanism to laterally displace the battery plates of the stack relative to each other, the displacement mechanism comprising two opposing blocks provided on or above the work surface, the blocks being moveable between a retracted position and an operational position, such that in use in the operational position the blocks contact opposing side edges of the battery plates adjacent to the lower edges; and, (d) operating an alignment mechanism to align the plates of the stack."
  ],
  "description_excerpt": "The present invention relates to an apparatus for manufacturing battery components and a method of manufacture for battery components.\n\nThe term “battery” is used herein to include accumulators. In a conventional lead-acid battery it is customary to connect together the plates of each stack by means of a lead strap or post which is fixed to aligned lugs or tabs on the plates.\n\nIn the manufacture of batteries, particularly for example lead acid batteries, battery plates are manufactured by known methods, formed into stacks or groups and then dried or cured. As a result of the drying or curing process, adjacent plates in the stacks (groups) may become stuck or bonded together.\n\nFollowing plate production and curing, each individual plate is encased in an envelope or wrapper before the plates are placed in the battery casing. Alternatively, a separator layer may be placed between adjacent plates. In the case of enveloping, this is generally an automated process, carried out in an enveloping machine which takes individual plates one at time from a stack and places each one in an envelope or wrapper. If adjacent plates are stuck or bonded together it can be difficult or impossible for the enveloping machine to pick up a single plate.\n\nTo overcome this problem, an operator has to manually separate the plates prior to loading the plate stack in the post processing apparatus, for example prior to loading onto a conveyor for onward transport to the enveloping machine.",
  "cpc": [
    "H01M 10/0404",
    "B65G 59/00",
    "B65G 59/08",
    "B65H 2301/4224",
    "B65H 2301/42242",
    "B65H 2301/42244",
    "B65H 31/3036",
    "B65H 31/34",
    "H01M 10/14",
    "H01M 4/06",
    "H01M 4/68",
    "Y10S 414/12"
  ],
  "ipc": [
    "B65G 59/00",
    "B65H 31/30",
    "B65H 31/34",
    "H01M 10/04",
    "H01M 10/14",
    "H01M 4/06",
    "H01M 4/68"
  ],
  "assignees": [
    "TBS Engineering Ltd"
  ],
  "inventors": [
    "Chris Barge"
  ],
  "filing_date": "2016-12-07",
  "publication_date": "2020-11-03",
  "grant_date": "2020-11-03",
  "priority_date": "2015-12-07",
  "application_number": "US-201616060258-A",
  "family_id": "55234513",
  "cited_by_count": 1,
  "citations": [
    "US3052968A",
    "US3799321A",
    "US4004699A",
    "US4664581A",
    "US4802808A",
    "JPH04206462A",
    "US5431530A",
    "EP1018909A1",
    "US20120099956A1",
    "JP2014238922A"
  ]
}

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