Cutting unit

US10286568B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10286568-B2
Application numberUS-201313870090-A
CountryUS
Kind codeB2
Filing dateApr 25, 2013
Priority dateApr 27, 2012
Publication dateMay 14, 2019
Grant dateMay 14, 2019

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A cutting unit includes a stationary frame, a cutting drum, and an anvil drum. The cutting drum and the anvil drum are arranged one over the other for cutting web material fed therebetween. The upper drum is centerd on a rotatable arbour and rotatably supported in the stationary frame. The lower drum is rotatable and movable towards and away from the upper drum. A rotatable carrier, movable towards and away from the upper drum, includes at least two contact rollers. The lower drum is shaftless and rests on the contact rollers. At least one contact roller is situated on either side of a central vertical plane of the lower drum for providing support of the lower drum by the contact rollers only. A pressing device moves the carrier and the lower drum towards and against the upper drum for providing cutting pressure between the upper drum and the lower drum.

First claim

Opening claim text (preview).

The invention claimed is: 1. A cutting unit comprising: a stationary frame; a upper cutting drum having at least one cutting knife disposed on an outer cylindrical surface of the upper cutting drum and a centre axis of rotation, wherein the at least one cutting knife is arranged on the outer cylindrical surface of the cutting drum in a cutting zone having an axial extension on the cutting drum; a hollow lower anvil drum having an outer cylindrical surface and a centre axis of rotation, wherein the cutting drum and the anvil drum are arranged one over the other for receiving cutting web material fed between them, the centre axis of rotation of the cutting drum being parallel with the centre axis of rotation of the anvil drum, the cutting drum being centered on an arbour rotatably supported in the stationary frame, the arbour and the cutting drum being rotatable around the centre axis of rotation of the cutting drum, and wherein the anvil drum is rotatable around the centre axis of rotation of the lower anvil drum and movable towards and away from the cutting drum; a carrier movable towards and away from the cutting drum, wherein the carrier includes a first pair of contact rollers comprising a first left contact roller and a first right contact roller located at a near end of the carrier and a second pair of contact rollers comprising a second left contact roller and a second right contact roller located at a far end of the carrier, each contact roller of the first and second pairs of contact rollers having an outer cylindrical surface and being rotatable around a respective centre axis, each centre axis of each contact roller of the first and second pairs of contact rollers extending parallel with the centre axes of rotation of the cutting drum and the anvil drum, the anvil drum being arbourless and shaftless such that a near end and a far end of the anvil drum are not supported by the frame, the outer cylindrical surface of the anvil drum freely resting only on the outer cylindrical surfaces of the first and second pairs of contact rollers, wherein the first left contact roller and the second left contact roller are situated on a left side of a central vertical plane of the anvil drum and the first right contact roller and the second right contact roller are situated on a right side of the central vertical plane of the anvil drum for providing vertical and transversal support of the anvil drum by the pairs of contact rollers only, such that the anvil drum is supported for rotation by the carrier only, wherein, in a transverse plane relative to the centre axis of rotation of the anvil drum at a location passing through one of the pairs of contact rollers, a central angle is formed with the centre axis of rotation of the anvil drum being a vertex and sides passing through the centre axes of the contact rollers of the one of the pairs of contact rollers and a distance between the centre axes of the two contact rollers of the one of the pairs of contact rollers exceeds both of an inside diameter and an outside diameter of the hollow lower anvil drum; a safety device comprising a bar which extends through an entire length of the hollow lower anvil drum without contacting an interior wall of the hollow lower anvil drum, wherein the bar extends past each of the near and far ends of the hollow lower anvil drum and a first end of the bar is secured by a first clamp and a second end of the bar is secured by a second clamp, wherein the first and second clamps are attached onto the carrier; and a pressing device connected to the carrier and arranged to move and press the carrier and the anvil drum carried by the carrier towards and against the cutting drum for providing cutting pressure between the cutting drum and the anvil drum. 2. The cutting unit according to claim 1 , wherein the contact rollers in the first pair of contact rollers are symmetrical relative to the central vertical plane of the anvil drum, and wherein the contact rollers in the second pair of contact rollers are symmetrical relative to the central vertical plane of the anvil drum. 3. The cutting unit according to claim 2 , wherein the cutting zone includes a first cutting sub-zone and a second cutting sub-zone, and wherein each contact roller of the first and second pairs of contact rollers is associated with one of the first cutting sub-zone and the second cutting sub-zone and has an axial extension from at least a transverse plane through a first axial end of the associated first or second cutting sub-zone to a second axial end of the associated first or second cutting sub-zone. 4. The cutting unit according to claim 3 , wherein the cutting drum includes a bearer ring disposed at each of first and second axial ends of the cutting drum, each bearer ring being in rolling contact with the anvil drum during cutting, and wherein each bearer ring has a transverse plane in common with a transverse plane of one of the first and second pairs of contact rollers. 5. The cutting unit according to claim 3 , wherein the first cutting sub-zone and the second cutting sub-zone are axially separated relative to the centre axis of rotation of the upper cutting drum, wherein, the first cutting sub-zone is located at a first axial end of the cutting drum and the second cutting sub-zone located at a second axial end of the cutting drum, and wherein the axial extension of each contact roller of the first and second pairs of contact rollers has a surface positioned for rolling engagement with a bearer ring disposed at one of the first and second axial ends of the cutting drum. 6. The cutting unit according to claim 1 , further comprising axial bearings for providing axial support for the anvil drum. 7. The cutting unit according to claim 1 , wherein the safety device is arranged to confine the hollow lower anvil drum to a resting position on the first and second pairs of contact rollers. 8. The cutting unit according to claim 1 , wherein the stationary frame has an opening facing an axial end of the anvil drum in a lower position of the stationary frame and having a dimension larger than the largest cross section of the anvil drum for allowing axial removal of the anvil drum. 9. The cutting unit according to claim 1 , further comprising a linear guide for guiding the carrier during pressing of the anvil drum towards and against the cutting drum. 10. The cutting unit according to claim 9 , wherein the stationary frame includes four corner columns, wherein the linear guide includes at least one of the four corner columns and wherein the carrier is slidably arranged on the at least one corner column of the linear guide. 11. The cutting unit according to claim 1 , wherein the cutting drum has a pair of cutting sub-zones and the anvil drum includes a pair of anvil zones that cooperate with the cutting sub-zones, each of the contact rollers of the first and second pairs of contact rollers having an axial length less than an axial length of a respective anvil zone. 12. A cutting unit comprising: a stationary frame; an upper cutting drum having at least one cutting knife disposed on an outer cylindrical surface of the upper cutting drum and a centre axis of rotation, wherein the at least one cutting knife is arranged on the outer cylindrical surface of the cutting drum in a cutting zone having an axial extension on the cutting drum; a hollow lower anvil drum having an outer cylindrical surface and a centre axis of rotation, wherein the cutting drum and the anvil drum are arranged one over the other for receiving cutting web material fed between them, the centre axis of rotation of the cutting drum being parallel with the centre axis of rotation of the anvil drum

Assignees

Inventors

Classifications

  • B26D1/405Primary

    for thin material, e.g. for sheets, strips or the like · CPC title

  • Safety devices specially adapted for cutting machines (safety devices in general F16P) · CPC title

  • Journals, bearings or supports for positioning rollers or cylinders relatively to each other · CPC title

  • Cooperating tool axes adjustable relative to each other · CPC title

  • using rotating drums · CPC title

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Frequently asked questions

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What does patent US10286568B2 cover?
A cutting unit includes a stationary frame, a cutting drum, and an anvil drum. The cutting drum and the anvil drum are arranged one over the other for cutting web material fed therebetween. The upper drum is centerd on a rotatable arbour and rotatably supported in the stationary frame. The lower drum is rotatable and movable towards and away from the upper drum. A rotatable carrier, movable tow…
Who is the assignee on this patent?
Sandvik Intellectual Property, Hyperion Materials & Tech Sweden Ab
What technology area does this patent fall under?
Primary CPC classification B26D1/405. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue May 14 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).