IP Library › Granted Patent US 12,606,956
Granted Patent B2
US 12,606,956 · App. 19/104,886 · Granted Apr 21, 2026

Headbox for manufacturing a substrate

Inventors: Stephen A. Marrano (Oshkosh, WI); Kyle Krautkramer (Kaukauna, WI); Reza Ramazani Rend (San Jose, CA)
Assignee: Kimberly-Clark Worldwide, Inc.
D21F11/04D21F1/02D21F1/80D21F9/02
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Quick Facts
Patent No.
US 12,606,956
App. No.
19/104,886
Granted
Apr 21, 2026
Kind
B2
Abstract

Apparatuses and processes for producing a substrate are described. A headbox is also provided. The headbox can include at least one flow section. The at least one flow section can include a constriction zone; a slice zone; an expansion zone; and a formation zone. A process for producing a web is also provided. The process can include depositing a slurry of fibers into a constriction zone. The slurry of fibers can then be flowed from the constriction zone through a slice zone and into an expansion zone. The slurry of fibers can then be flowed from the expansion zone into a formation zone. The slurry can be conveyed on a moving forming surface. Fluids may be drained from the slurry of fibers through the forming surface within the formation zone to form an embryonic web. The embryonic web may be dried.

Claims (35)

1 . A headbox including a machine direction, a cross direction, and a height direction, the headbox comprising at least one flow section, the at least one flow section comprising:

a bottom surface spaced from a top surface; and

wherein the at least one flow section comprises in order in the machine direction:

i) a constriction zone;

ii) a slice zone;

iii) an expansion zone; and

iv) a formation zone,

wherein the constriction zone has an initial height (t i ) and the height constricts along the machine direction to a slice height (t s );

wherein in the slice zone is in fluid communication with a downstream end of the constriction zone and has a slice length (ls) in the machine direction and a height equal to the slice height (t s ) over the slice length (ls);

wherein the expansion zone is in fluid communication with a downstream end of the slice zone and has a beginning height equal to the slice height (t s ) and the height expands along the machine direction to an expansion height (t 1 ); and

wherein the formation zone is in fluid communication with a downstream end of the expansion zone and has a beginning height equal to the expansion height (t 1 ) and the height constricts along the machine direction to a formation height (t 2 ).

2 . The headbox of claim 1 , wherein the constriction zone gradually constricts along the machine direction.

3 . The headbox of claim 1 , wherein the expansion zone gradually increases in height downstream from the slice zone.

4 . The headbox of claim 1 , wherein the slice height (t s ) is less than about 70%, such as less than about 50%, such as less than about 30%, such as less than about 20%, such as less than about 10%, such as less than about 5%, and greater than about 1%, such as greater than about 10%, such as greater than about 20% of the expansion height (t 1 ).

5 . The headbox of claim 1 , wherein the bottom surface and the top surface are adjustable in relation to each other.

6 . The headbox of claim 1 , wherein at least a portion of the top surface is flexible.

7 . The headbox of claim 1 , wherein the top surface comprises a lamellae.

8 . The headbox of claim 1 , wherein one or more of the initial height (t i ), the slice height (t s ), the expansion height (t 1 ), and the formation height (t 2 ) are individually adjustable.

9 . The headbox of claim 1 , further comprising at least one top layer flow channel separated from and arranged above the at least one flow section in the height direction.

10 . The headbox of claim 1 , wherein the at least one flow section comprises a first flow section and a second flow section.

11 . The headbox of claim 10 , wherein the first flow section and the second flow section are spaced apart from one another in the cross direction.

12 . The headbox of claim 1 , wherein the bottom surface in the formation zone is a forming surface and the forming surface is inclined in relation to a horizontal.

13 . A process for producing a web comprising:

depositing a slurry of fibers and at least one other solid component into a constriction zone;

flowing the slurry of fibers and at least one other solid component from the constriction zone through a slice zone and into an expansion zone, the slurry of fibers having a fluid flow rate and the slice zone having a height (t s ) and length (ls) such that the slurry of fibers increases in velocity in the slice zone and undergoes turbulent flow within the expansion zone;

flowing the slurry of fibers and at least one other solid component from the expansion zone into a formation zone, the slurry being conveyed on a moving forming surface;

draining fluids from the slurry of fibers and at least one other solid component through the forming surface within the formation zone to form an embryonic web; and

drying the embryonic web.

14 . The process according to claim 13 , wherein the at least one other solid component comprises superabsorbent particles.

15 . The process of claim 14 , wherein a density of the superabsorbent particles contained in the formed web varies by no more than about 10% over a cross direction of the web.

16 . The process of claim 13 , wherein the slice height (t s ) is less than about 70%, such as less than about 50%, such as less than about 30%, such as less than about 20%, such as less than about 10%, such as less than about 5%, and greater than about 1%, such as greater than about 10%, such as greater than about 20% of the expansion height (t 1 ).

17 . The process of claim 13 , further comprising the step of depositing another layer of fibers on the embryonic web to form a multi-layer sheet.

18 . The process of claim 13 , wherein the slice zone comprises a slot that extends along a width of the slice zone.

19 . The process of claim 13 , wherein the slurry undergoes super-critical flow in the slice zone.

20 . The process of claim 13 , wherein the turbulent flow of the slurry within the expansion zone produces eddies that causes slurry mixing.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 19, 2025
From: MARRANO, STEPHEN; KRAUTKRAMER, KYLE; RAMAZANI REND, REZA
To: KIMBERLY-CLARK WORLDWIDE, INC.
Reel/Frame 070262/0526 →
Continuity (2)
Provisional Application 63401266 · Aug 26, 2022
Related Publication 20250263889A1 · Aug 21, 2025
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