Method and apparatus for making disposable absorbent article with absorbent particulate polymer material and article made therewith

US9849040B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9849040-B2
Application numberUS-201414549573-A
CountryUS
Kind codeB2
Filing dateNov 21, 2014
Priority dateAug 26, 2008
Publication dateDec 26, 2017
Grant dateDec 26, 2017

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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 method for making a disposable absorbent core comprises depositing absorbent particulate polymer material from a plurality of reservoirs in a printing roll onto a substrate disposed on a grid of a support which includes a plurality of cross bars extending substantially parallel to and spaced from one another so as to form channels extending between the plurality of cross bars. The plurality of reservoirs in the first peripheral surface are arranged in an array comprising rows extending substantially parallel to and spaced from one another. A disposable absorbent article and apparatus for making an absorbent article are also disclosed.

First claim

Opening claim text (preview).

What is claimed is: 1. A method of making a disposable absorbent article comprising: providing a first support comprising a first grid including a first plurality of cross bars extending substantially parallel to and spaced from one another so as to form channels extending between the first plurality of cross bars, wherein the first plurality of cross bars each have a substantially straight outwardly facing edge extending across substantially the entire first grid; providing a first printing roll having a first peripheral surface and a first plurality of reservoirs in the first peripheral surface arranged in an array comprising rows extending substantially parallel to and spaced from one another; wherein the first plurality of reservoirs have a diameter of about 3 to about 8 mm, a spacing in a cross-direction of about 5.5 to about 10 mm from reservoir center to reservoir center and a spacing in a machine direction of about 8 to about 10 mm from reservoir center to reservoir center; depositing absorbent particulate polymer material from the first plurality of reservoirs onto a first substrate disposed on the first grid, while the first support and first printing roll are arranged such that the first plurality of cross bars are substantially parallel to the rows of the first plurality of reservoirs, the absorbent particulate polymer material being deposited on the first substrate in a first pattern such that the absorbent particulate polymer material collects in rows on the first substrate formed between the first plurality of cross bars; and depositing a thermoplastic adhesive material on the absorbent particulate polymer material and the first substrate to cover the absorbent particulate polymer material on the first substrate and form a first absorbent layer; providing a second support comprising a second grid including a second plurality of cross bars extending substantially parallel to and spaced from one another so as to form channels extending between the second plurality of cross bars; providing a second printing roll having a second peripheral surface and a second plurality of reservoirs in the second peripheral surface arranged in an array comprising rows extending substantially parallel to and spaced from one another; depositing absorbent particulate polymer material from the second plurality of reservoirs onto a second substrate disposed on the second grid, while the second support and second printing roll are arranged such that the second plurality of cross bars are substantially parallel to the rows of the second plurality of reservoirs, the absorbent particulate polymer material being deposited on the second substrate in a second pattern such that the absorbent particulate polymer material collects in rows on the second substrate formed between the second plurality of cross bars of the second support; depositing a thermoplastic adhesive material on the absorbent particulate polymer material and the second substrate to cover the absorbent particulate polymer material on the second substrate and form a second absorbent layer; combining said first and second absorbent layers together in juxtaposed relation in a nip between said first and second supports. 2. The method of claim 1 wherein: the first grid of the first support extends in a machine direction and the cross direction substantially perpendicular to the machine direction and the first plurality of cross bars extend in the cross direction of the first grid and spaced from one another so that the channels extend between the first plurality of cross bars in the cross direction of the first grid; the peripheral surface of the first printing roll extends in a machine direction and a cross direction substantially perpendicular to the machine direction, the rows of first plurality of reservoirs extend in the cross direction of the first peripheral surface and are spaced from one another in the machine direction of the first peripheral surface; and the step of depositing comprises depositing the absorbent particulate polymer material from the first plurality of reservoirs onto the first substrate disposed on the first grid while the first support and first printing roll are arranged such that the machine direction of the first grid is substantially parallel to the machine direction of the first peripheral surface and the cross direction of the first grid is substantially parallel to the cross direction of the first peripheral surface. 3. The method of claim 2 wherein: the second grid of the second support extends in a machine direction and a cross direction substantially perpendicular to the machine direction and the second plurality of cross bars extend in the cross direction of the second grid and spaced from one another so that the channels extend between the second plurality of cross bars in the cross direction of the second grid; the peripheral surface of the second printing roll extends in a machine direction and a cross direction substantially perpendicular to the machine direction, the rows of second plurality of reservoirs extend in the cross direction of the second peripheral surface and are spaced from one another in the machine direction of the second peripheral surface; and the step of depositing the absorbent particulate polymer material from the second plurality of reservoirs comprises depositing the absorbent particulate polymer material from the second plurality of reservoirs onto the second substrate disposed on the second grid while the second support and second printing roll are arranged such that the machine direction of the second grid is substantially parallel to the machine direction of the second peripheral surface and the cross direction of the second grid is substantially parallel to the cross direction of the second peripheral surface. 4. The method of claim 1 , wherein the rows of absorbent particulate polymer material on the first substrate are separated by junction areas between the rows of absorbent particulate polymer material. 5. The method of claim 1 , wherein the rows of absorbent particulate polymer material on the first and second substrates are separated by junction areas between the rows of absorbent particulate polymer material and the step of combining comprises combining said first and second absorbent layers together so that the rows of absorbent particulate polymer material on the first substrate are disposed between and substantially parallel to rows of absorbent particulate polymer material on the second substrate. 6. The method of claim 1 , wherein the step of combining the first and second absorbent layers comprises combining the first and second absorbent layers together such that the first and second patterns of absorbent particulate polymer material are offset from one another in the machine direction. 7. The method of claim 1 , wherein: the first support is a first support roll and the step of depositing the absorbent particulate polymer material on the first substrate further comprises depositing the absorbent particulate polymer material on the first substrate by rotating the first printing roll and rotating the first support roll; and the second support is a second support roll and the step of depositing the absorbent particulate polymer material on the second substrate further comprises depositing the absorbent particulate polymer material on the second substrate by rotating the second printing roll and rotating the second support roll. 8. The method of claim 7 , wherein: the first support roll is a first vacuum support roll and the step of depositing the absorbent particulate polymer material on the first substrate further comprises holding the first substrate to the first vacuum support roll with a vacuum; and the second support

Assignees

Inventors

Classifications

  • Running or continuous length work · CPC title

  • Forming webs by bringing together several webs, e.g. by laminating or folding several webs, with or without additional treatment of the webs · CPC title

  • Forming continuous, e.g. composite, fibrous webs, e.g. involving the application of pulverulent material on parts thereof · CPC title

  • with separate adhesive layer · CPC title

  • Apparatus specially adapted for applying particulate materials to surfaces · CPC title

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What does patent US9849040B2 cover?
A method for making a disposable absorbent core comprises depositing absorbent particulate polymer material from a plurality of reservoirs in a printing roll onto a substrate disposed on a grid of a support which includes a plurality of cross bars extending substantially parallel to and spaced from one another so as to form channels extending between the plurality of cross bars. The plurality o…
Who is the assignee on this patent?
Procter & Gamble
What technology area does this patent fall under?
Primary CPC classification A61F13/5323. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Tue Dec 26 2017 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 3 related publications on this page (citations in our corpus or others sharing the same primary CPC).