Honeycomb extrusion dies and forming methods

US12109727B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12109727-B2
Application numberUS-202017608765-A
CountryUS
Kind codeB2
Filing dateMay 13, 2020
Priority dateMay 17, 2019
Publication dateOct 8, 2024
Grant dateOct 8, 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 honeycomb extrusion die (120) includes a die body (342) including an inlet face (315) and an outlet face (341). A plurality of pins (330) extend from the die body (342), wherein the pins (330) are arranged to define primary (312P) and secondary slots (312S). Primary slots (312P) include primary slot inlets (320P) and primary slot outlets (3120) and the secondary slots (312S) include secondary slot inlets (312SI) and secondary slot outlets (312SO). Feedholes (317) extend within the die body (342), the feedholes (317) including feedhole outlets (319), wherein the feedhole outlets (319) intersect only with the primary slot inlets (320P). First surface indentation features (345) extend into side surfaces (332) of the plurality of pins (330) defining the primary slots (312P). The first surface indentation features (345) are spaced from the primary slot outlets (3120). The secondary slots (312S) are devoid of surface indentation features. Other die bodies, extruders, and methods are disclosed.

First claim

Opening claim text (preview).

What is claimed is: 1. A honeycomb extrusion die, comprising: a die body comprising an inlet face and an outlet face; a plurality of pins extending from the die body, wherein the pins are arranged to define primary slots and secondary slots, the primary slots comprising primary slot inlets and primary slot outlets, the secondary slots comprising secondary slot inlets and secondary slot outlets; a plurality of feedholes extending within the die body from the inlet face, the feedholes comprising feedhole outlets, wherein the feedhole outlets intersect the primary slot inlets; first surface indentation features extending into side surfaces of the plurality of pins defining the primary slots, the first surface indentation features spaced from the primary slot outlets; second surface indentation features extending into side surfaces of the plurality of pins defining the primary slots, the second surface indentation features extending from the primary slot inlets toward the outlet face; and wherein the secondary slots are devoid of surface indentation features. 2. The honeycomb extrusion die of claim 1 , wherein the secondary slot inlets do not intersect with the feedhole outlets such that only the primary slot inlets intersect with the feedhole outlets. 3. The honeycomb extrusion die of claim 1 , wherein the primary slots extend a first depth from the outlet face, wherein the secondary slots extend a second depth from the outlet face, and wherein the first depth is greater than the second depth. 4. The honeycomb extrusion die of claim 1 , wherein the second surface indentation features comprise first ends located proximate the primary slot inlets and second ends located opposite the first ends and wherein the secondary slots extend from the outlet face to a depth defined by the second ends. 5. The honeycomb extrusion die of claim 1 , wherein the second surface indentation features extend into side surfaces of the plurality of pins defining the primary slots to a depth in a range from 0.15 mm to 0.23 mm. 6. The honeycomb extrusion die of claim 1 , wherein the second surface indentation features extend along portions of the plurality of pins defining the primary slots at a length in a range from 0.9 mm to 2.3 mm. 7. The honeycomb extrusion die of claim 1 , wherein: some of the primary slots and some of the secondary slots extend in a first direction; some of the primary slots and some of the secondary slots extend in a second direction transverse with respect to the first direction; the secondary slots extending in the first direction intersect with the second surface indentation features of the primary slots extending in the second direction, and the secondary slots extending in the second direction intersect with the second surface indentation features of the primary slots extending in the first direction. 8. The honeycomb extrusion die of claim 1 , wherein the pins have a pin density in a range from 15.5 and 124.0 pins per cm 2 . 9. The honeycomb extrusion die of claim 1 , wherein the pins have a pin density in a range from 58.9 pins per cm 2 to 96.1 pins per cm 2 . 10. The honeycomb extrusion die claim 1 , wherein: some of the primary slots and some of the secondary slots extend in a first direction, some of the primary slots and some of the secondary slots extend in a second direction transverse with respect to the first direction, primary slots extending in the first direction intersect primary slots extending in the second direction at primary intersections, and the feedhole outlets are located at locations defined by at least some of the primary intersections. 11. The honeycomb extrusion die of claim 10 , wherein the first direction is orthogonal to the second direction. 12. The honeycomb extrusion die of claim 10 , wherein the feedhole outlets are located at all the primary intersections. 13. The honeycomb extrusion die of claim 10 , wherein the feedhole outlets are located at alternating ones of the primary intersections in the first direction and the second direction. 14. The honeycomb extrusion die of claim 10 , wherein secondary slots extending in the first direction intersect secondary slots extending in the second direction at secondary intersections, and wherein the secondary intersections are devoid of feedhole outlets. 15. The honeycomb extrusion die of claim 1 , wherein the primary slots and the secondary slots alternate. 16. The honeycomb extrusion die of claim 1 , wherein the primary slots and the secondary slots have widths in a range from 0.051 mm to 0.30 mm. 17. A system comprising an extruder and the honeycomb extrusion die of claim 1 , wherein the honeycomb extrusion die is coupled to the extruder. 18. A method of manufacturing a honeycomb structure, comprising: coupling an extrusion die to an extruder, the extrusion die comprising: an inlet face and an outlet face; a plurality of pins, wherein the pins are arranged to define primary slots and secondary slots, the primary slots comprising primary slot inlets and primary slot outlets, the secondary slots comprising secondary slot inlets and secondary slot outlets; a plurality of feedholes extending from the inlet face, the feedholes comprising feedhole outlets, wherein the feedhole outlets intersect with the primary slot inlets; first surface indentation features extending into side surfaces of the plurality of pins defining the primary slots, the first surface indentation features spaced from the primary slot outlets; and second surface indentation features extending into side surfaces of the plurality of pins defining the primary slots, the second surface indentation features extending from the primary slot inlets toward the outlet face, wherein the secondary slots are devoid of surface indentation features; and extruding a batch mixture through the extrusion die. 19. A method of manufacturing a honeycomb extrusion die, comprising: forming a plurality of pins in a die body comprising an inlet face and an outlet face, wherein the pins are arranged to define primary slots and secondary slots, the primary slots comprising primary slot inlets and primary slot outlets, the secondary slots comprising secondary slot inlets and secondary slot outlets; forming a plurality of feedholes extending within the die body from the inlet face, the feedholes comprising feedhole outlets, wherein the feedhole outlets intersected with the primary slot inlets; forming first surface indentation features extending into side surfaces of the plurality of pins defining the primary slots, the first surface indentation features spaced from the primary slot outlets; and forming second surface indentation features extending into side surfaces of the plurality of pins defining the primary slots, the second surface indentation features extending from the primary slot inlets toward the outlet face, wherein the secondary slots are devoid of surface indentation features.

Assignees

Inventors

Classifications

  • using two or more parallel screws {or at least two parallel non-intermeshing screws}, e.g. twin screw extruders · CPC title

  • Extrusion nozzles comprising two or more adjacently arranged ports, for simultaneously extruding multiple strands, e.g. for pelletising · CPC title

  • Extrusion nozzles or dies (extrusion characterised by the shape or cross-section of the extruded article B29C48/03) · CPC title

  • comprising two or more partially or fully enclosed cavities, e.g. honeycomb-shaped · CPC title

  • B28B3/269Primary

    For multi-channeled structures, e.g. honeycomb structures · CPC title

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What does patent US12109727B2 cover?
A honeycomb extrusion die (120) includes a die body (342) including an inlet face (315) and an outlet face (341). A plurality of pins (330) extend from the die body (342), wherein the pins (330) are arranged to define primary (312P) and secondary slots (312S). Primary slots (312P) include primary slot inlets (320P) and primary slot outlets (3120) and the secondary slots (312S) include secondary…
Who is the assignee on this patent?
Corning Inc
What technology area does this patent fall under?
Primary CPC classification B28B3/269. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Oct 08 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 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).