IP Library Granted Patent US 11,807,983
Granted Patent B2
US 11,807,983 · App. 16/664,662 · Granted Nov 7, 2023

Penetration and adhesion of finishes for fungal materials through solubilization, emulsion, or dispersion in water-soluble materials and the use of surfactants

Inventors: Matt Scullin (San Francisco, CA); Nicholas Wenner (Sebastopol, CA); Jordan Chase (Oakland, CA); Quinn Miller (Berkeley, CA); Philip Ross (Sam Francisco, CA)
Assignee: MycoWorks, Inc.
D06N3/0002C08G63/08C09D167/04D06N3/0056D06N3/123D06N3/143D06N3/183
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Quick Facts
Patent No.
US 11,807,983
App. No.
16/664,662
Granted
Nov 7, 2023
Kind
B2
Abstract

An abrasion resistant finish for a fungal material, the finishing comprising an optimum quantity biodegradable polylactic acid plastic (PLA) dispersed in water to produce a PLA mixture. When the PLA mixture is applied to the fungal material, water carries the PLA deeply into the matrix of the fungal hyphae to a depth at least 2 N/10 mm or 1% of the thickness of the fungal material, whichever is greater. The finish fortifies the hyphal structure as the water evaporates and creates a PLA coating on the fungal material with improved abrasion resistance and water resistance.

Claims (10)

1. An abrasion resistant finish obtained by following steps: producing a polylactic acid plastic (PLA) mixture

by dispersing a biodegradable PLA in water, the PLA mixture carried by the water more deeply into the micro and macro structure of the fungal material, the PLA mixture penetrates into a matrix of a fungal hyphae of the fungal material and fortifies a hyphal structure as the water evaporates and creates a biodegradable PLA coating on the fungal material with improved abrasion resistance and water resistance, wherein the fungal material is mycelium; and

at least one surfactant added to the biodegradable PLA coating on the fungal material to improve the effectiveness of the PLA coating, the surfactant further including isopropyl alcohol and a polyurethane binder.

2. The abrasion resistant finish of claim 1 wherein a quantity of the biodegradable PLA dispersed in water, depends on a thickness of the mixture coating to be applied on the fungal material and a surface density of the fungal material.

3. The abrasion resistant finish of claim 2 wherein the at least one surfactant further includes 2-butoxyethanol.

4. An abrasion resistant finish obtained by following steps: producing a polylactic acid (PLA) mixture

by dispersing a biodegradable PLA in water, the water carries the PLA mixture more deeply into the micro and macro structure of the fungal material, the PLA mixture penetrates into a matrix of a fungal hyphae of the fungal material, wherein the fungal material is mycelium, and fortifies a hyphal structure as the water evaporates and creates a biodegradable PLA coating adhered on top of the fungal material with improved abrasion resistance and water resistance thereby providing strong adhesion between the PLA coating and the fungal material; and

a surfactant added to the biodegradable PLA coating on the fungal material, the surfactant further including isopropyl alcohol and a polyurethane binder.

5. The abrasion resistant finish of claim 4 wherein a quantity of the biodegradable PLA is dispersed in water, which depends on a thickness of the mixture coating to be applied on the fungal material and a surface density of the fungal material.

6. The abrasion resistant finish of claim 4 wherein the at least one surfactant further includes 2 butoxyethanol.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2026
From: MYCOWORKS, INC.
To: MYCOWORKS LIQUIDATION, LLC
Reel/Frame 075530/0821 →
SECURITY INTEREST Recorded Dec 24, 2024
From: MYCOWORKS, INC.
To: CUSTOMERS BANK
Reel/Frame 069676/0976 →
Continuity (2)
Provisional Application 62750358 · Oct 25, 2018
Related Publication 20200131694A1 · Apr 30, 2020
Cited By (1)
US 12,258,704