IP Library › Granted Patent US 10,766,220
Granted Patent B2
US 10,766,220 · App. 15/618,983 · Granted Sep 8, 2020

Method and device for producing a cushioning product and cushioning product

Inventors: Paul Deis (Preuschdorf, FR); Jean-Marc Slovencik (Uhrwiller, FR)
Assignee: Storopack Hans Reichenecker GmbH
B31D5/04B31D5/0052B65D81/127B31D2205/0023B31D2205/0047B31D2205/0058B31D2205/0064B31D2205/0082B65D2581/053Y10T428/24463
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Quick Facts
Patent No.
US 10,766,220
App. No.
15/618,983
Granted
Sep 8, 2020
Kind
B2
Abstract

The invention relates to a method for producing a cushioning product ( 88 ), comprising the following steps: providing a flat, longitudinal, two- or multilayered paper strip ( 10 ), wherein the individual layers ( 12, 14 ) of the paper strip ( 10 ) are connected to one another in at least some sections in a middle area ( 18 ) extending in the longitudinal direction, and wherein the individual layers ( 12, 14 ) of the paper strip ( 10 ) comprise marginal areas ( 20, 21, 22, 23 ) which are not connected to one another, opening adjacent marginal areas ( 20, 21, 22, 23 ) to form a paper strip ( 10 ) having a star-shaped cross section, and crumpling the paper strip ( 10 ) along the middle area ( 18 ).

Claims (27)

1. A device for producing a cushioning product comprising:

an inlet area for receiving a longitudinal, two-layered paper strip, wherein individual layers of the paper strip are closely adjacent to one other, wherein the individual layers of the paper strip are connected to one another in at least some sections in a middle area of the paper strip extending in a longitudinal direction, and wherein the individual layers of the paper strip comprise marginal areas which, while closely adjacent to one another, are not connected to one other,

at least one opening core configured to spread the individual layers apart away from one another along the marginal areas while permitting the individual layers to remain connected to one another in the middle area so that the paper strip has a star-shaped cross-section, the star-shaped cross-section defined as having protruding rays extending from the middle area of the paper strip, wherein the number of rays is based on the number of layers in the paper strip,

an advance mechanism configured to advance the paper strip and to move the marginal areas over the at least one opening core, and

a crumpling mechanism configured to crumple the paper strip along the middle area,

wherein the at least one opening core comprises at least two mutually facing opening cores, which are spaced apart from each other in a transverse direction, so that the middle area of the paper strip can be moved in the longitudinal direction between the two mutually facing opening cores,

wherein the two mutually facing opening cores comprise wedge sections, each wedge section, in a cross-section along the longitudinal direction, having a thinner end and a thicker end, the thinner ends of the wedge sections being directed toward the inlet area.

2. The device according to claim 1 , wherein each wedge section, in a cross-section transverse to the longitudinal direction, having a thinner end and a thicker end, the thinner ends of the wedge sections being directed toward each other.

3. The device according to claim 1 , wherein, in the inlet area, a guide roller is arranged so that it extends transversely to the longitudinal direction, over which the paper strip is guided.

4. The device according to claim 1 , wherein the advance mechanism is formed by a first set of driving rollers.

5. The device according to claim 4 , wherein the first set of driving rollers comprises two rollers arranged one above the other, which seize the paper strip respectively above and below the middle area of the paper strip upstream of the at least one opening core.

6. The device according to claim 5 , wherein the crumpling mechanism is formed by the first set of driving rollers and a second set of driving rollers downstream from the first set of driving rollers, the second set of driving rollers working together with the first set of driving rollers in such a manner that the second set of driving rollers can be rotated at an angular speed which is lower than the angular speed at which the first set of driving rollers can be rotated.

7. The device according to claim 6 , wherein the second set of driving rollers comprises two rollers arranged one above the other, which seize the paper strip respectively above and below the middle area of the paper strip in an area adjacent the at least one opening core.

8. The device according to claim 6 , wherein the first set of driving rollers and the second set of driving rollers can be driven in such a manner that, to separate the cushioning product into two sections, the first set of driving rollers can be slowed or stopped, and the second set of driving rollers can continue to be driven.

9. A device for producing a cushioning product comprising:

an inlet area for receiving a longitudinal, two-layered paper strip, wherein individual layers of the paper strip are closely adjacent to one other, wherein the individual layers of the paper strip are connected to one another in at least some sections in a middle area of the paper strip extending in a longitudinal direction, and wherein the individual layers of the paper strip comprise marginal areas which, while closely adjacent to one another, are not connected to one other,

at least one opening core configured to spread the individual layers apart away from one another along the marginal areas while permitting the individual layers to remain connected to one another in the middle area so that the paper strip has a star-shaped cross-section, the star-shaped cross-section defined as having protruding rays extending from the middle area of the paper strip, wherein the number of rays is based on the number of layers in the paper strip,

an advance mechanism configured to advance the paper strip and to move the marginal areas over the at least one opening core, and

a crumpling mechanism configured to crumple the paper strip along the middle area,

wherein the at least one opening core comprises at least two mutually facing opening cores, which are spaced apart from each other in a transverse direction, so that the middle area of the paper strip can be moved in the longitudinal direction between the two mutually facing opening cores,

further comprising separating elements, which engage between the individual layers in the marginal areas, arranged upstream of the two mutually facing opening cores.

10. A device for producing a cushioning product comprising:

a longitudinal, two-layered paper strip, wherein individual layers of the paper strip are closely adjacent to one other, wherein the individual layers of the paper strip are connected to one another in at least some sections in a middle area of the paper strip extending in a longitudinal direction, and wherein the individual layers of the paper strip comprise marginal areas which, while closely adjacent to one another, are not connected to one other,

an inlet area for receiving the paper strip,

means for spreading the individual layers of the paper strip apart away from one another along the marginal areas while permitting the individual layers to remain connected to one another in the middle area so that the paper strip has a star-shaped cross: section, the star-shaped cross-section defined as having protruding rays extending from the middle area of the paper strip, wherein the number of rays is based on the number of layers in the paper strip,

means for advancing the paper strip and for moving the marginal areas over the means for separating the individual layers, and

means for crumpling the paper strip along the middle area.

Priority Claims (1)
DE 10 2012 222 805 · Dec 11, 2012 · national
Continuity (2)
Division 14100972 · Dec 9, 2013
Related Publication 20170274614A1 · Sep 28, 2017
Cited By (4)
US 12,246,526 US 12,384,614 US 12,391,452 US 12,636,850