IP Library Patent Application 16444354
Patent Application
App. No. 16/444,354

Open-cell Mycelium Foam and Method of Making Same

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Quick Facts
Patent No.
US None
App. No.
16/444,354
Abstract

The mycelial foam contains macroscopic void spaces that are formed by filler elements, such as agar beads, that are incorporated in the mycelial matrix during growth of the matrix and are removed from the matrix after growth in a non-destructive manner, such as by heating. The foam may be made of pure mycelium or may be a composite biomaterial.

Claims (43)

1 . A mycelium foam comprising

a body of pure mycelium, and

at least one macroscopic void space within said body.

2 . A mycelium foam as set forth in claim 1 comprising a plurality of macroscopic void spaces within said body.

3 . A mycelium foam as set forth in claim 2 wherein said void spaces constitute at least 10% of said body.

4 . A mycelium foam as set forth in claim 2 wherein said void spaces are sized from 0.04 inch to 3 inch.

5 . A mycelium foam as set forth in claim 2 wherein said void spaces are discrete within said body.

6 . A mycelium foam as set forth in claim 2 further comprising an additive in at least some of said void spaces.

7 . A mycelium foam as set forth in claim 6 wherein said additive is a mineral solid.

8 . A self-assembled fungal cellular matrix comprising

a composite matrix of non-nutrient discrete particles and mycelium, and

a plurality of macroscopic void spaces within said matrix.

9 . A method of making a mycelium foam comprising the steps of

providing a tool defining a cavity therein;

packing said cavity of the tool with a plurality of spaced apart filler elements;

adding a fungus to said filler elements; and

allowing said fungus to grow mycelium within said cavity to form a pure mycelial matrix and to allow the mycelium to individually encapsulate said filler elements with said matrix.

10 . A method as set forth in claim 9 further comprising the step of removing said filler elements from said matrix to produce a fungal cellular matrix having a plurality of macroscopic void spaces therein.

11 . A method as set forth in claim 9 wherein said filler elements are agar beads.

12 . A method as set forth in claim 9 wherein said filler elements are sodium polyacrylate beads.

13 . A method as set forth in claim 9 wherein said filler elements are beeswax pellets.

14 . A method of making a mycelium foam comprising the steps of

providing a tool defining a cavity therein;

packing said cavity of the tool with a substrate comprised of non-nutrient discrete particles and nutrient particles;

adding a fungus to said substrate;

allowing said fungus to grow mycelium within said substrate;

thereafter adding a plurality of spaced apart filler elements to said substrate;

allowing said fungus to grow mycelium within said cavity to form a composite matrix of said non-nutrient discrete particles and mycelium and to allow said mycelium to individually encapsulate said filler elements with said composite matrix.

15 . A method as set forth in claim 14 further comprising the step of removing said filler elements from said composite matrix to produce a composite matrix having a plurality of macroscopic void spaces therein.

16 . A method as set forth in claim 15 wherein said filler elements are agar beads.

17 . A method as set forth in claim 15 wherein said filler elements are sodium polyacrylate beads.

18 . A method as set forth in claim 15 wherein said filler elements are beeswax pellets.

19 . A method of making a mycelium foam comprising the steps of

providing an organic substrate with a mycelial matrix binder;

adding a plurality of spaced apart filler elements to said substrate; and

allowing said fungus to grow mycelium within said substrate to form a composite matrix of said substrate and mycelium and to allow said mycelium to individually encapsulate said filler elements with said composite matrix.

20 . A method as set forth in claim 19 further comprising the step of removing said filler elements from said composite matrix to produce a composite matrix having a plurality of macroscopic void spaces therein.

21 . A method as set forth in claim 19 wherein said organic substrate is composed of aspen chips approximately 1×1×1 mm in size and said filler elements are agar beads approximately 2.5 mm in diameter.

22 . A method as set forth in claim 21 wherein said aspen chips are in a ratio to said agar beads of 70 dry grams of aspen chips to 60 grams of agar beads.

23 . A method as set forth in claim 19 wherein said organic substrate is composed of aspen chips approximately 1×1×1 mm in size and said filler elements are hydrated sodium polyacrylate beads.

24 . A method as set forth in claim 23 wherein said aspen chips are in a ratio to said agar beads of 70 dry grams of aspen chips to 250 grams of sodium polyacrylate beads.

25 . A method as set forth in claim 13 wherein said organic substrate is composed of aspen chips approximately 1×1×1 mm in size and said filler elements are beeswax pellets approximately 1.0 mm in diameter.

26 . A method as set forth in claim 19 wherein said filler elements are gas or fluid-filled devices or containment sacks.

Assignments (3)
CHANGE OF NAME Recorded Aug 13, 2024
From: ECOVATIVE DESIGN LLC
To: ECOVATIVE LLC
Reel/Frame 068568/0133 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE FROM ECOVATIVE DESIGN TO ECO9VATIVE DESIGN LLC PREVIOUSLY RECORDED AT REEL: 049503 FRAME: 0821. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Oct 14, 2020
From: BAYER, EBEN; WINISKI, JACOB MICHAEL; LUCHT, MATTHEW JAMES; MUELLER, PETER JAMES; MCINTYRE, GAVIN R.; O'BRIEN, MEGHAN A.
To: ECOVATIVE DESIGN LLC
Reel/Frame 054082/0743 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 18, 2019
From: BAYER, EBEN; WINISKI, JACOB MICHAEL; LUCHT, MATTHEW JAMES; MUELLER, PETER JAMES; MCINTYRE, GAVIN R.; O'BRIEN, MEGHAN A.
To: ECOVATIVE DESIGN LLC
Reel/Frame 049503/0821 →