Production device and production method for composite stretchable member

US10786398B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10786398-B2
Application numberUS-201615736429-A
CountryUS
Kind codeB2
Filing dateJun 17, 2016
Priority dateJun 22, 2015
Publication dateSep 29, 2020
Grant dateSep 29, 2020

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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.

Using a conveyance roller having an outer peripheral surface which is capable of conveying two sheets with an elastic element sandwiched therebetween, in a longitudinal direction of the sheets, and formed with a convex section; and a clamping and pressing device, the sheets with the elastic element sandwiched therebetween are ultrasonic-welded together under pressing. The convex section is formed in a shape extending along a line intersecting a conveyance direction of the conveyance roller, and the convex section is provided with a plurality of grooves at positions spaced apart from each other in a longitudinal direction thereof, wherein each of the grooves extends in the conveyance direction of the conveyance roller to allow a portion of the sheets on which the elastic element is disposed, to be inserted therein.

First claim

Opening claim text (preview).

The invention claimed is: 1. A composite stretchable member production apparatus for producing a composite stretchable member comprising two sheets and a plurality of elastic elements sandwiched between the two sheets, by bonding the two sheets together and further bonding each of the elastic elements to the sheets, while conveying the two sheets along a longitudinal direction thereof, the composite stretchable member production apparatus comprising: a bonding device configured to bond each of the elastic elements to the sheets and further bond the sheets together, by welding, in a state in which the elastic elements are sandwiched between the two sheets being conveyed; and a guide device configured to guide, to the bonding device, the two sheets and the elastic elements so as to enable each of the elastic elements to be sandwiched between the two sheets while extending in the longitudinal direction of the sheets, wherein the bonding device comprises: a conveyance roller having an outer peripheral surface rotatable about an axis to convey the two sheets with the elastic elements sandwiched therebetween, in the longitudinal direction of the sheets; and a clamping and pressing device which is opposed to the outer peripheral surface of the conveyance roller, and configured to clamp and press the two sheets with the elastic elements sandwiched therebetween, in cooperation with the outer peripheral surface of the conveyance roller, the bonding device being configured to apply heat to the sheets between the conveyance roller and the clamping and pressing device, wherein the outer peripheral surface of the conveyance roller is formed with at least one convex section protruding toward the clamping and pressing device, the at least one convex section having a shape continuously extending along a line intersecting a conveyance direction of the conveyance roller, and having a plurality of grooves lying in spaced-apart relation to each other on the line intersecting the conveyance direction of the conveyance roller and each extending in the conveyance direction of the conveyance roller, wherein the guide device comprises a guide member having a distal edge opposed to the outer peripheral surface of the conveyance roller, and a base edge disposed farther away from the conveyance roller than the distal edge, the guide member being configured to guide each of the elastic elements to each of the grooves, in a state where the elastic elements are spaced apart from each other in a direction parallel to the axis of the conveyance roller, wherein the guide member is formed in a shape tapered toward the distal edge, and wherein the distal edge of the guide member is formed with a plurality of notches each for holding a respective one of the elastic elements, at positions spaced apart from each other at same intervals as the grooves in the direction parallel to the axis of the conveyance roller, and in opposed relation to each of the grooves. 2. The composite stretchable member production apparatus according to claim 1 , wherein a cross-sectional shape of each of the grooves taken along a plane orthogonal to the conveyance direction of the conveyance roller is set such that, when one of the elastic elements is disposed in one of the grooves in a state in which the one of the elastic elements has a natural length, a part of the one of the elastic elements disposed in the one of the grooves protrudes outwardly in a radial direction of the conveyance roller with respect to a linear imaginary line connecting opening edges of the one of the grooves. 3. The composite stretchable member production apparatus according to claim 1 , wherein a cross-sectional shape of each of the grooves taken along a plane orthogonal to the conveyance direction of the conveyance roller is set such that, when one of the elastic elements is disposed in one of the grooves in a state in which the one of the elastic elements is stretched three times a natural length thereof, a part of the one of the elastic elements disposed in the one of the grooves protrudes outwardly in a radial direction of the conveyance roller with respect to a linear imaginary line connecting opening edges of the one of the grooves. 4. The composite stretchable member production apparatus according to claim 1 , wherein each of the elastic elements comprises a plurality of fiber-shaped elastic bodies assembled as a bundle, and wherein peripheral surfaces of at least part of the plurality of fiber-shaped elastic bodies are covered, respectively, by covering layers, and the bonding device is operable to cause the covering layers to be melted and welded to the sheets. 5. The composite stretchable member production apparatus according to claim 1 , wherein each of the elastic elements comprises a plurality of fiber-shaped elastic bodies assembled as a bundle, and wherein each of the sheets is welded to at least one of the fiber-shaped elastic bodies located in a periphery of each of the elastic elements, whereby each of the elastic elements and each of the sheets are bonded together. 6. The composite stretchable member production apparatus according to claim 1 , wherein the at least one convex section comprises a plurality of unit-convex sections each extending in a direction orthogonal to the conveyance direction of the conveyance roller. 7. The composite stretchable member production apparatus according to claim 1 , wherein the at least one convex section comprises: a plurality of first convex sections extending parallel to each other along a first direction intersecting the conveyance direction of the conveyance roller; and a plurality of second convex sections extending parallel to each other along a second direction intersecting the conveyance direction of the conveyance roller and the first direction, and each intersecting at least one of the first convex sections. 8. The composite stretchable member production apparatus according to claim 7 , wherein each of the first direction and the second direction intersects a direction orthogonal to the conveyance direction of the conveyance roller. 9. The composite stretchable member production apparatus according to claim 8 , wherein each of the first direction and the second direction is inclined at an angle of less than 45 degrees, with respect to the direction orthogonal to the conveyance direction of the conveyance roller. 10. The composite stretchable member production apparatus according to claim 8 , wherein intersection points of the first convex sections with the second convex sections lie in a line extending in the conveyance direction of the conveyance roller, and lie in a straight line extending in the direction orthogonal to the conveyance direction of the conveyance roller. 11. The composite stretchable member production apparatus according to claim 7 , wherein the grooves are formed in regions of the first convex sections and the second convex sections other than intersection points of the first convex sections with the second convex sections. 12. The composite stretchable member production apparatus according to claim 7 , wherein first grooves formed on the first convex sections, and second grooves formed on the second convex sections, lie in a straight line extending in a direction orthogonal to the conveyance direction of the conveyance roller. 13. The composite stretchable member production apparatus according to claim 10 , wherein the grooves are formed in regions of the first convex sections and the second convex sections other than the intersection points of the first convex sections with the second convex sections, and provided at equal intervals in the conveyance direction of the co

Assignees

Inventors

Classifications

  • the contact angle between said rollers, cylinders or drums and said parts to be joined being a non-zero angle (B29C66/83433 takes precedence) · CPC title

  • Sealing, e.g. involving cutting · CPC title

  • said joint lines being in the form of tessellations · CPC title

  • Non woven mats, e.g. felt · CPC title

  • being toothed, i.e. comprising several teeth or pins (comprising a single tooth B29C66/81429), or being patterned · CPC title

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What does patent US10786398B2 cover?
Using a conveyance roller having an outer peripheral surface which is capable of conveying two sheets with an elastic element sandwiched therebetween, in a longitudinal direction of the sheets, and formed with a convex section; and a clamping and pressing device, the sheets with the elastic element sandwiched therebetween are ultrasonic-welded together under pressing. The convex section is form…
Who is the assignee on this patent?
Zuiko Corp
What technology area does this patent fall under?
Primary CPC classification B29C66/433. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Sep 29 2020 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).