MLchartDataset catalogue

Patent · US10875070B2 · B2 · US

Device for applying coiling-tension to a slit band sheet

(11) Publication number
US10875070B2
(21) Application number
15/561,954
(22) Filing date
2016-09-15
(30) Priority date
2016-09-15
(43) Publication date
2020-12-29
(45) Date of grant
2020-12-29
(51) IPC
B21C 47/00; B21C 47/26; B21C 47/34; B65H 23/10; B65H 23/30
(52) CPC
  • B21C Manufacture of metal sheets, wire, rods, tubes, profiles or like semi-manufactured products otherwise than by rolling; auxiliary operations used in connection with metal-working without essentially removing material: 47/003, 47/00, 47/006, 47/26, 47/3458
  • B65G Transport or storage devices, e.g. conveyors for loading or tipping, shop conveyor systems or pneumatic tube conveyors: 15/12, 15/14, 37/005
  • B65H Handling thin or filamentary material, e.g. sheets, webs, cables: 20/06, 20/08, 23/10, 23/105, 23/30, 2301/5305, 2403/25, 2701/173
(73) Assignee
JDC Inc Japan
(72) Inventors
Naoto Hashikawa
(54) Title
Device for applying coiling-tension to a slit band sheet
(57) Abstract

A device for applying coiling-tension to a slit band sheet includes: an upper structure that is disposed on the upper side of a band sheet which has been passed through a slitter line and slitted; and a lower structure that is disposed on the lower side of the band sheet and faces the upper structure vertically. In addition, an upper belt is stretched on an outer peripheral surface of the upper structure. A lower belt is stretched on an outer peripheral surface of the lower structure. The upper structure has a first reversing portion, an upper pressing portion, and a second reversing portion. The first reversing portion and the upper pressing portion are integrated with each other. A tension adjusting mechanism is installed on side surfaces of the first reversing portion and the upper pressing portion and a side surface of the second reversing portion.

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Claims (9)

  1. A device for applying coiling-tension to a slit band sheet, comprising: a first stretched portion having a first belt reversing portion, which has an arc-shaped outer peripheral surface formed on a side of the first stretched portion, and a second belt reversing portion, which has an arc-shaped outer peripheral surface formed on opposite side of the first stretched portion, and wherein there is a predetermined gap between the first belt reversing portion and the second belt reversing portion; one or more first belts, each of the one or more first belts being made of materials having different coefficients of friction, wherein the one or more first belts have a side having a smaller coefficient of friction than that of the opposite side thereof, and the side of the one or more first belts are in contact with the arc-shaped outer peripheral surfaces of the first belt reversing portion and the second belt reversing portion, and wherein the one or more first belts are stretched in a ring shape to be freely rotated around the first stretched portion; a first pressing portion disposed between the first belt reversing portion and the second belt reversing portion and adjacent to the first belt reversing portion, and wherein the first pressing portion is in contact with the side of the one or more first belts having the smaller coefficient of friction in a predetermined length; a first tension adjusting portion constructed to adjust a distance and a size of the predetermined gap between the first belt reversing portion and the second belt reversing portion such that a distance between the second belt reversing portion and the first pressing portion is changed and the size of the predetermined gap is changed; a second stretched portion having a third belt reversing portion positioned to face the first belt reversing portion, which has an arc-shaped outer peripheral surface formed on a side of the second stretched portion, and a fourth belt reversing portion, which has an arc-shaped outer peripheral surface formed on opposite side of the second stretched portion, and wherein there is a predetermined gap between the third belt reversing portion and the fourth belt reversing portion and wherein the fourth belt reversing portion is positioned to face the second belt reversing portion; one or more second belts, each of the one or more second belts being made of materials having different coefficients of friction, wherein the one or more second belts have a side having a smaller coefficient of friction than that of the opposite side thereof, and the side of the one or more second belts are in contact with the arc-shaped outer peripheral surfaces of the third belt reversing portion and the fourth belt reversing portion, and wherein the one or more second belts are stretched in a ring shape to be freely rotated around the second stretched portion; a second pressing portion disposed between the third belt reversing portion and the fourth belt reversing portion and adjacent to the third belt reversing portion, and wherein the second pressing portion is in contact with the side of the one or more second belts having the smaller coefficient of friction in a predetermined length; a second tension adjusting portion constructed to adjust a distance and a size of the predetermined gap between the third belt reversing portion and the fourth belt reversing portion such that a distance between the fourth belt reversing portion and the second pressing portion is changed and the size of the predetermined gap is changed, wherein the first tension adjusting portion changes a degree of tension of the one or more first belts from adjustment of the distance and size of the predetermined gap between the first belt reversing portion and the second belt reversing portion, wherein the second tension adjusting portion is configured to change a degree of tension of the one or more second belts from adjustment of the distance and the size of the predetermined gap between the third belt reversing portion and the fourth belt reversing portion, wherein surfaces of the first belt reversing portion and the second belt reversing portion that form the predetermined gap are substantially planar, and wherein surfaces of the third belt reversing portion and the fourth belt reversing portion that form the predetermined gap are substantially planar.
  2. The device as claimed in claim 1, wherein the first belt reversing portion and the third belt reversing portion are disposed on an entry side of the slit band sheet that flows through a metal slitter line.
  3. The device as claimed in claim 1, wherein an inside of each of the first belt reversing portion, the second belt reversing portion, the third belt reversing portion and the fourth belt reversing portion are constructed to have a means for being cooled.
  4. The device as claimed in claim 3, wherein each of the first belt reversing portion, the second belt reversing portion, the third belt reversing portion and the fourth belt reversing portion comprises an inner cylinder portion and an outer cylinder portion substantially surrounding the inner cylinder portion, and is constructed to allow cooling water to be circulated between the inner cylinder portion and the outer cylinder portion.
  5. The device as claimed in claim 1, wherein the one or more first belts are disposed in the first stretched portion side by side with each other having same intervals between adjacent first belts, and the one or more second belts are disposed in the second stretched portion side by side with each other having same intervals between adjacent second belts.
  6. The device as claimed in claim 1, wherein each of the first belt reversing portion and the third belt reversing portion has a semi-cylindrical cross section in a longitudinal direction, the arc-shaped outer peripheral surface of the second belt reversing portion is formed to be smaller than the arc-shaped outer peripheral surface of the first belt reversing portion, and the arc-shaped outer peripheral surface of the fourth belt reversing portion is formed to be smaller than the arc-shaped outer peripheral surface of the third belt reversing portion.
  7. The device as claimed in claim 6, wherein the arc-shaped outer peripheral surfaces of the first belt reversing portion, the second belt reversing portion, the third belt reversing portion and the fourth belt reversing portion are respectively formed to be less than a circumference of a semicircle.
  8. The device as claimed in claim 1, wherein an inside of each of the first belt reversing portion, the third belt reversing portion, the first pressing portion and the second pressing portion are constructed to have a means for being cooled.
  9. The device as claimed in claim 1, wherein the first tension adjusting portion comprises: a pressing portion support mounted on a lateral side surface of the first belt reversing portion; a reversing portion support mounted on a lateral side surface of the second reversing portion; a reversing portion receiver including an end fixed to the pressing portion support wherein the reversing portion receiver guides movement of the reversing portion support and the second reversing portion in substantially lateral directions; a position adjusting screw that is threaded; and a position adjusting rod including: an end fixed to the reversing portion support; and a spiral groove formed on an outer peripheral surface thereof, wherein the position adjusting rod extends substantially parallel to the reversing portion receiver and wherein the position adjusting screw is fitted to the spiral groove of the position adjusting rod, wherein the rotation of the position adjusting screw adjusts the position of the reversing portion support.

Description

The present invention relates to a device for applying coiling-tension to a slit band sheet and, more particularly, to a device for applying coiling-tension to a slit band sheet which is excellent in durability and improved in convenience in a slitter line of a metal band sheet.

In a so-called metal coil material processing line including a slitter line for a coiled long metal material, as a tension device before winding after slitting, for example, a roll bridle, a belt-type tension device, or the like is disposed.

This tension device imparts a coiling tension before a winder to slit band sheets so that the band sheets are tightly and securely wound around a winding coil.

In addition to the tension device, there is a coiling tension applying device of a multi-belt type tension system (refer to Patent Documents 1, 2, 3, and 4) in which a metal band sheet is clamped from above and below the metal band sheet by a plurality of divided endless belts to impart a coiling tension by a frictional force of the backside of the belt.

In the device of this multi-belt type tension system, since the inside and outside of the belt have different coefficients of friction, uniform tension can be imparted to each band sheet. In addition, since the belt surface and the band sheet are rotated without sliding, scratches are not easily generated on the surface of the band sheet.

For example, Patent Document 1 discloses a coiling tension applying device 100 shown in FIG. 11A. In the device 100, a belt 102 is stretched by a pair of pulleys 101, and the belt 102 is pressed by a pushing plate 104 interlocked with a cylinder 103.

Citations (21)

  • US3368728A
  • US3481523A
  • US3735937A
  • JPS5682755A
  • GB2072152A
  • US4527723A
  • US4792075A
  • JPS6311112U
  • US5265817A
  • US5454502A
  • US5919333A
  • JP2003214509A
  • US20040004148A1
  • JP2004035174A
  • US20100084502A1
  • JP2010144914A
  • US20120085853A1
  • JP2012081477A
  • US20140260481A1
  • US20180099321A1
  • US10618092B2
Record as JSON
{
  "publication_number": "US10875070B2",
  "country": "US",
  "kind": "B2",
  "title": "Device for applying coiling-tension to a slit band sheet",
  "abstract": "A device for applying coiling-tension to a slit band sheet includes: an upper structure that is disposed on the upper side of a band sheet which has been passed through a slitter line and slitted; and a lower structure that is disposed on the lower side of the band sheet and faces the upper structure vertically. In addition, an upper belt is stretched on an outer peripheral surface of the upper structure. A lower belt is stretched on an outer peripheral surface of the lower structure. The upper structure has a first reversing portion, an upper pressing portion, and a second reversing portion. The first reversing portion and the upper pressing portion are integrated with each other. A tension adjusting mechanism is installed on side surfaces of the first reversing portion and the upper pressing portion and a side surface of the second reversing portion.",
  "claims": [
    "1. A device for applying coiling-tension to a slit band sheet, comprising: a first stretched portion having a first belt reversing portion, which has an arc-shaped outer peripheral surface formed on a side of the first stretched portion, and a second belt reversing portion, which has an arc-shaped outer peripheral surface formed on opposite side of the first stretched portion, and wherein there is a predetermined gap between the first belt reversing portion and the second belt reversing portion; one or more first belts, each of the one or more first belts being made of materials having different coefficients of friction, wherein the one or more first belts have a side having a smaller coefficient of friction than that of the opposite side thereof, and the side of the one or more first belts are in contact with the arc-shaped outer peripheral surfaces of the first belt reversing portion and the second belt reversing portion, and wherein the one or more first belts are stretched in a ring shape to be freely rotated around the first stretched portion; a first pressing portion disposed between the first belt reversing portion and the second belt reversing portion and adjacent to the first belt reversing portion, and wherein the first pressing portion is in contact with the side of the one or more first belts having the smaller coefficient of friction in a predetermined length; a first tension adjusting portion constructed to adjust a distance and a size of the predetermined gap between the first belt reversing portion and the second belt reversing portion such that a distance between the second belt reversing portion and the first pressing portion is changed and the size of the predetermined gap is changed; a second stretched portion having a third belt reversing portion positioned to face the first belt reversing portion, which has an arc-shaped outer peripheral surface formed on a side of the second stretched portion, and a fourth belt reversing portion, which has an arc-shaped outer peripheral surface formed on opposite side of the second stretched portion, and wherein there is a predetermined gap between the third belt reversing portion and the fourth belt reversing portion and wherein the fourth belt reversing portion is positioned to face the second belt reversing portion; one or more second belts, each of the one or more second belts being made of materials having different coefficients of friction, wherein the one or more second belts have a side having a smaller coefficient of friction than that of the opposite side thereof, and the side of the one or more second belts are in contact with the arc-shaped outer peripheral surfaces of the third belt reversing portion and the fourth belt reversing portion, and wherein the one or more second belts are stretched in a ring shape to be freely rotated around the second stretched portion; a second pressing portion disposed between the third belt reversing portion and the fourth belt reversing portion and adjacent to the third belt reversing portion, and wherein the second pressing portion is in contact with the side of the one or more second belts having the smaller coefficient of friction in a predetermined length; a second tension adjusting portion constructed to adjust a distance and a size of the predetermined gap between the third belt reversing portion and the fourth belt reversing portion such that a distance between the fourth belt reversing portion and the second pressing portion is changed and the size of the predetermined gap is changed, wherein the first tension adjusting portion changes a degree of tension of the one or more first belts from adjustment of the distance and size of the predetermined gap between the first belt reversing portion and the second belt reversing portion, wherein the second tension adjusting portion is configured to change a degree of tension of the one or more second belts from adjustment of the distance and the size of the predetermined gap between the third belt reversing portion and the fourth belt reversing portion, wherein surfaces of the first belt reversing portion and the second belt reversing portion that form the predetermined gap are substantially planar, and wherein surfaces of the third belt reversing portion and the fourth belt reversing portion that form the predetermined gap are substantially planar.",
    "2. The device as claimed in claim 1, wherein the first belt reversing portion and the third belt reversing portion are disposed on an entry side of the slit band sheet that flows through a metal slitter line.",
    "3. The device as claimed in claim 1, wherein an inside of each of the first belt reversing portion, the second belt reversing portion, the third belt reversing portion and the fourth belt reversing portion are constructed to have a means for being cooled.",
    "4. The device as claimed in claim 3, wherein each of the first belt reversing portion, the second belt reversing portion, the third belt reversing portion and the fourth belt reversing portion comprises an inner cylinder portion and an outer cylinder portion substantially surrounding the inner cylinder portion, and is constructed to allow cooling water to be circulated between the inner cylinder portion and the outer cylinder portion.",
    "5. The device as claimed in claim 1, wherein the one or more first belts are disposed in the first stretched portion side by side with each other having same intervals between adjacent first belts, and the one or more second belts are disposed in the second stretched portion side by side with each other having same intervals between adjacent second belts.",
    "6. The device as claimed in claim 1, wherein each of the first belt reversing portion and the third belt reversing portion has a semi-cylindrical cross section in a longitudinal direction, the arc-shaped outer peripheral surface of the second belt reversing portion is formed to be smaller than the arc-shaped outer peripheral surface of the first belt reversing portion, and the arc-shaped outer peripheral surface of the fourth belt reversing portion is formed to be smaller than the arc-shaped outer peripheral surface of the third belt reversing portion.",
    "7. The device as claimed in claim 6, wherein the arc-shaped outer peripheral surfaces of the first belt reversing portion, the second belt reversing portion, the third belt reversing portion and the fourth belt reversing portion are respectively formed to be less than a circumference of a semicircle.",
    "8. The device as claimed in claim 1, wherein an inside of each of the first belt reversing portion, the third belt reversing portion, the first pressing portion and the second pressing portion are constructed to have a means for being cooled.",
    "9. The device as claimed in claim 1, wherein the first tension adjusting portion comprises: a pressing portion support mounted on a lateral side surface of the first belt reversing portion; a reversing portion support mounted on a lateral side surface of the second reversing portion; a reversing portion receiver including an end fixed to the pressing portion support wherein the reversing portion receiver guides movement of the reversing portion support and the second reversing portion in substantially lateral directions; a position adjusting screw that is threaded; and a position adjusting rod including: an end fixed to the reversing portion support; and a spiral groove formed on an outer peripheral surface thereof, wherein the position adjusting rod extends substantially parallel to the reversing portion receiver and wherein the position adjusting screw is fitted to the spiral groove of the position adjusting rod, wherein the rotation of the position adjusting screw adjusts the position of the reversing portion support."
  ],
  "description_excerpt": "The present invention relates to a device for applying coiling-tension to a slit band sheet and, more particularly, to a device for applying coiling-tension to a slit band sheet which is excellent in durability and improved in convenience in a slitter line of a metal band sheet.\n\nIn a so-called metal coil material processing line including a slitter line for a coiled long metal material, as a tension device before winding after slitting, for example, a roll bridle, a belt-type tension device, or the like is disposed.\n\nThis tension device imparts a coiling tension before a winder to slit band sheets so that the band sheets are tightly and securely wound around a winding coil.\n\nIn addition to the tension device, there is a coiling tension applying device of a multi-belt type tension system (refer to Patent Documents 1, 2, 3, and 4) in which a metal band sheet is clamped from above and below the metal band sheet by a plurality of divided endless belts to impart a coiling tension by a frictional force of the backside of the belt.\n\nIn the device of this multi-belt type tension system, since the inside and outside of the belt have different coefficients of friction, uniform tension can be imparted to each band sheet. In addition, since the belt surface and the band sheet are rotated without sliding, scratches are not easily generated on the surface of the band sheet.\n\nFor example, Patent Document 1 discloses a coiling tension applying device 100 shown in FIG. 11A. In the device 100, a belt 102 is stretched by a pair of pulleys 101, and the belt 102 is pressed by a pushing plate 104 interlocked with a cylinder 103.",
  "cpc": [
    "B21C 47/003",
    "B21C 47/00",
    "B21C 47/006",
    "B21C 47/26",
    "B21C 47/3458",
    "B65G 15/12",
    "B65G 15/14",
    "B65G 37/005",
    "B65H 20/06",
    "B65H 20/08",
    "B65H 23/10",
    "B65H 23/105",
    "B65H 23/30",
    "B65H 2301/5305",
    "B65H 2403/25",
    "B65H 2701/173"
  ],
  "ipc": [
    "B21C 47/00",
    "B21C 47/26",
    "B21C 47/34",
    "B65H 23/10",
    "B65H 23/30"
  ],
  "assignees": [
    "JDC Inc Japan"
  ],
  "inventors": [
    "Naoto Hashikawa"
  ],
  "filing_date": "2016-09-15",
  "publication_date": "2020-12-29",
  "grant_date": "2020-12-29",
  "priority_date": "2016-09-15",
  "application_number": "US-201615561954-A",
  "family_id": "59081982",
  "cited_by_count": 0,
  "citations": [
    "US3368728A",
    "US3481523A",
    "US3735937A",
    "JPS5682755A",
    "GB2072152A",
    "US4527723A",
    "US4792075A",
    "JPS6311112U",
    "US5265817A",
    "US5454502A",
    "US5919333A",
    "JP2003214509A",
    "US20040004148A1",
    "JP2004035174A",
    "US20100084502A1",
    "JP2010144914A",
    "US20120085853A1",
    "JP2012081477A",
    "US20140260481A1",
    "US20180099321A1",
    "US10618092B2"
  ]
}

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