Isolation device in a heating and sealing system

US12059864B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12059864-B2
Application numberUS-201916276182-A
CountryUS
Kind codeB2
Filing dateFeb 14, 2019
Priority dateFeb 14, 2018
Publication dateAug 13, 2024
Grant dateAug 13, 2024

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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 protective packaging formation device is disclosed herein. The protective packaging formation device can include an inflation assembly having a fluid conduit that directs fluid between first and second overlapping plies of a web material and a sealing mechanism. The sealing mechanism can include a heating zone of the sealing mechanism operable to heat the plies to create a longitudinal heat seal that seals the first and second plies together as the web is driven over the heating zone in a downstream direction. The sealing mechanism can also include a pinch zone that overlaps longitudinally with the heating zone. The pinch zone defined by an isolation element that applies a first pressure to the web material along a first region. The pinch zone is also defined by a support structure and a compression element that applies a second pressure to the web material there-between along a second region transverse to the first region.

First claim

Opening claim text (preview).

What is claimed is: 1. A protective packaging formation device, comprising: an inflation assembly having a fluid conduit that directs fluid between first and second overlapping plies of a web material into chambers; a sealing mechanism that includes: an isolation element disposed having an isolation surface that supports the plies, a heating assembly defining a guide surface operable to heat the plies at a location that is transversely adjacent to the isolation surface to create a longitudinal heat seal that seals the first and second plies together to seal the fluid in the chambers as the web material is driven over the guide surface in a downstream direction, and a compression element held against the isolation surface that applies pressure to the web material against the isolation surface, wherein the isolation surface has a first radius and the guide surface has a second radius smaller than the first radius such that the isolation and guide surfaces have different curvatures and the curvatures of the isolation surface and the guide surface curve in a same direction, thereby forming a complex bend in the plies in a transition region disposed transversely between the guide and isolation surfaces, the complex bend including a longitudinal curve and a transverse curve; wherein the isolation element extends into the compression element and applies pressure to the compression element via the isolation surface such that the complex bend isolates the fluid in the chambers from the longitudinal heat seal during the creation of the longitudinal heat seal, the pressure applied by the isolation surface to the compression element being greater than that applied by the guide surface to the compression element; and a driving mechanism that drives the plies in the downstream direction over the guide surface, the isolation surface and through the transition region from an upstream location to a downstream location. 2. The protective packaging formation device of claim 1 , wherein the compression element extends transversely to the guide surface and is configured to apply pressure on the plies against the guide surface. 3. The protective packaging formation device of claim 2 , wherein: the heating assembly includes a cooling surface longitudinally downstream of the guide surface in which the longitudinal heat seal is allowed to cool; and the compression element extends transversely to the cooling surface and is configured to apply pressure on the plies against the cooling surface while the longitudinal heat seal cools. 4. The protective packaging formation device of claim 1 , wherein the guide surface is offset from the isolation surface perpendicularly with respect to a major surface of the web material. 5. The protective packaging formation device of claim 1 , wherein the isolation element includes a disc offset transversely from the sealing mechanism, which disc includes the isolation surface, such that the transition region spans the offset. 6. The protective packaging formation device of claim 5 , wherein the compression element includes a compression belt that drives the web material and opposes the disc, causing the disc to rotate. 7. The protective packaging formation device of claim 6 , wherein the guide surface is stationary, and the driving mechanism slides the plies over the guide surface having an arcuate surface that opposes the compression belt. 8. The protective packaging formation device of claim 1 , wherein the compression element includes an elastic compression belt that elastically deflects radially from the isolation surface to the guide surface to assume the complex bend. 9. The protective packaging formation device of claim 8 , wherein: the guide surface is arcuate; and the driving mechanism includes a low friction transport belt that wraps longitudinally around the guide surface, such that the compression belt presses the plies against the low friction transport belt. 10. The protective packaging formation device of claim 1 , wherein: the heating assembly and the isolation element are offset by an offset distance separating the heating assembly and the isolation element; and the compression element includes a belt with a thickness less than the offset distance. 11. A protective packaging formation device, comprising: an inflation assembly having a fluid conduit that directs fluid between first and second overlapping plies of a web material into chambers; a sealing mechanism that includes: an isolation element having an isolation surface that supports the plies, and a heating assembly defining a guide surface operable to heat the plies to create a longitudinal heat seal that seals the first and second plies together as the web material is driven over the guide surface in a downstream direction, and a driving mechanism that drives the plies in the downstream direction and includes a compression belt and a transport belt opposing one another, with the compression belt operable for advancing the plies over the guide surface and the transverse offset, wherein the compression belt is transversely wider than the transport belt, such that the transport belt does not extend over the isolation surface; wherein the isolation surface has a first radius and the guide surface has a second radius smaller than the first radius such that the isolation and guide surfaces have different curvatures and the curvatures of the isolation surface and the guide surface curve in a same direction, thereby forming a complex bend in the compression belt and plies in a transition region between the isolation and guide surfaces, wherein the complex bend includes a longitudinal curve and a transverse curve; wherein the isolation element extends into the compression element and applies pressure to the compression element via the isolation surface; wherein the complex bend isolates the fluid in the chambers from the longitudinal heat seal during the creation of the longitudinal heat seal; and wherein the pressure applied by the isolation surface to the compression element is greater than that applied by the guide surface to the compression element. 12. The protective packaging formation device of claim 11 , wherein: the guide surface is arcuate; and the transport belt is located between the compression belt and the guide surface. 13. The protective packaging formation device of claim 12 , wherein the isolation element also opposes the compression belt, with the compression belt wrapping around at least a portion of the isolation surface of the isolation element. 14. The protective packaging formation device of claim 13 , wherein the isolation element is a disc that is mounted in the transverse direction relative to the guide surface. 15. The protective packaging formation device of claim 14 , wherein the disc and the guide surface are approximately aligned in the longitudinal direction. 16. The protective packaging formation device of claim 15 , wherein the compression belt is approximately the same width as the disc and the guide surface combined. 17. The protective packaging formation device of claim 15 , wherein the compression belt is wrapped around pulleys of the driving mechanism such that the compression belt is biased against the disc and the guide surface. 18. The protective packaging formation device of claim 11 , wherein the compression belt is elastic and deflects elastically radially from the isolation surface to the guide surface across the transition region. 19. The protective packaging formation device of claim 18 ,

Assignees

Inventors

Classifications

  • characterised by the means for tensioning said heated wire, resistive ribbon, resistive band or resistive strip (means for compensating for the thermal expansion of welding jaws in general B29C66/8185) · CPC title

  • movable, e.g. mounted on reels · CPC title

  • of the welding jaws · CPC title

  • using cooperating conveyor belts or cooperating conveyor chains (B29C66/83423, B29C66/83523, B29C66/83533 take precedence) · CPC title

  • Joining sheets for making inflated articles without using a mould · CPC title

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What does patent US12059864B2 cover?
A protective packaging formation device is disclosed herein. The protective packaging formation device can include an inflation assembly having a fluid conduit that directs fluid between first and second overlapping plies of a web material and a sealing mechanism. The sealing mechanism can include a heating zone of the sealing mechanism operable to heat the plies to create a longitudinal heat s…
Who is the assignee on this patent?
Pregis Innovative Packaging Llc
What technology area does this patent fall under?
Primary CPC classification B29C65/224. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Aug 13 2024 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 5 related publications on this page (citations in our corpus or others sharing the same primary CPC).