IP Library Patent Application 18293452
Patent Application
App. No. 18/293,452

ARTICLES INCLUDING A MICROSTRUCTURED CURVED SURFACE AND METHODS OF MAKING SAME

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
18/293,452
Abstract

The present disclosure provides a microstructured article ( 830, 930 ) including a thermoplastic polymer shaped to have a curve. At least a portion of the curve includes a microstructured surface ( 1010 B, 10, 1110 A, 200, 300, 400, 500, 600, 810, 840, 910, 940 ) of utilitarian discontinuities and the microstructured surface ( 101 B, 10, 1110 A, 200, 300, 400, 500, 600, 810, 840, 910, 940 ) includes peak structures and adjacent valleys ( 810, 910 ). The peak structures and the curve are formed of a single piece of the thermoplastic polymer. A method of making the microstructured articles is also provided including a) obtaining a tool ( 820, 920 ) shaped to include at least one of a protrusion or a concavity; b) disposing a microstructured film ( 800 A, 800 C, 900 ) on at least a portion of the tool ( 820, 920 ) including the protrusion and/or the concavity; and c) thermoforming a single piece of thermoplastic polymer onto the tool ( 820, 920 ) to form a microstructured article ( 830, 930 ) shaped to include a curve. The curve is an inverse of the protrusion or the concavity of the tool ( 820, 920 ).

Claims (30)

1 . A microstructured article comprising a thermoplastic polymer shaped to comprise a curve comprising a curvature radius of up to 20 mm, wherein at least a portion of the curve comprises a microstructured surface of utilitarian discontinuities, wherein the microstructured surface comprises peak structures and adjacent valleys, wherein the valleys have a maximum width ranging from 1 micron to 250 microns and the peak structures have a side wall angle of greater than 10 degrees, and wherein the peak structures and the curve are formed of a single piece of the thermoplastic polymer.

2 . The microstructured article of claim 1 , wherein the microstructured surface is integral to the curve of the thermoplastic polymer.

3 . The microstructured article of claim 1 , wherein the thermoplastic polymer comprises a material that exhibits a draw down ratio of greater than 1.1.

4 . The microstructured article of claim 1 , wherein the thermoplastic polymer comprises a material that exhibits an elongation at break of 50% or greater or 100% or greater.

5 . The microstructured article of claim 1 , wherein the thermoplastic polymer comprises a polypropylene, a polyester, a co-polyester, a polycarbonate, a thermoplastic polyurethane, a polyethylene, a polypropylene and polyethylene copolymer, an acrylic, a cyclic block copolymer, a polyetheretherketone, a polyamide, a polyethylene terephthalate, a polybutylene terephthalate, a polyetherimide, a polyethersulfone, a polytrimethylene terephthalate, silicone urethane copolymer, fluoropolymer, a thermoplastic elastomer, or any combination thereof.

6 . The microstructured article of claim 1 , wherein the thermoplastic polymer is shaped to comprise a second curve that lacks the microstructured surface.

7 . The microstructured article of claim 1 , wherein the thermoplastic polymer is shaped to comprise a second curve that comprises a microstructured surface.

8 . The microstructured article of claim 1 , wherein the peak structures each have a height of 10 microns to 250 microns.

9 . The microstructured article of claim 1 , wherein the article is a medical article, a dental article, an orthodontic article, a vehicular article, an electronic article, a personal care article, a cleaning article, an athletic article, a food preparation article, a child care article, or an architectural article.

10 . The microstructured article of claim 1 , wherein the article is an orthodontic aligner, an orthodontic retainer, or a night guard.

11 . The microstructured article of claim 10 , wherein the microstructured surface of the orthodontic aligner provides a first coefficient of friction that is different than a second coefficient of friction of a curve of the orthodontic aligner that lacks the microstructured surface.

12 . A method of making a microstructured article, the method comprising:

a) obtaining a tool shaped to comprise at least one of a protrusion or a concavity;

b) disposing a microstructured film on at least a portion of the tool including the protrusion and/or the concavity; and

c) thermoforming a single piece of thermoplastic polymer onto the tool to form a microstructured article shaped to comprise a curve comprising a curvature radius of up to 20 mm, the curve being an inverse of the protrusion or the concavity of the tool, wherein at least a portion of the curve comprises a microstructured surface of utilitarian discontinuities being an inverse of a surface of the microstructured film, wherein the microstructured surface comprises peak structures and adjacent valleys, wherein the valleys have a maximum width ranging from 1 micron to 250 microns and wherein the peak structures have a side wall angle of greater than 10 degrees.

13 . The method of claim 12 , when the microstructured film is attached to the thermoplastic polymer and steps b) and c) are performed at least partially simultaneously.

14 . The method of claim 13 , wherein the microstructured film is thermoformed onto the tool simultaneously with step c).

15 . The method of claim 12 , wherein the microstructured film is disposed on only a portion of a thermoforming surface of the tool.

16 . The method of claim 12 , wherein the microstructured film is disposed on 90% or greater of a thermoforming surface of the tool.

17 . The method of claim 16 , wherein a portion of the microstructured film is removed from the thermoforming surface of the tool prior to step c).

18 . The method of claim 15 , wherein a geometry of the tool is configured to be smaller in a location where the microstructured film is disposed than in a location where the microstructured film is not disposed.

19 . The method of claim 18 , wherein step a) comprises making the tool using an additive manufacturing process.

20 . The method of claim 12 , wherein the microstructured film has an average thickness of 25 microns to 380 microns.

21 . The method of claim 12 , wherein the microstructured film has a land thickness of less than 1 micron, less than 0.5 microns, or less than 0.3 microns.

22 . A tooling article comprising:

a) a tool shaped to comprise at least one of a protrusion or a concavity; and

b) a microstructured film disposed on at least a portion of the tool including the protrusion and/or the concavity, wherein the microstructured film comprises peak structures and adjacent valleys, wherein the valleys have a maximum width ranging from 1 micron to 250 microns and the peak structures have a side wall angle of greater than 10 degrees.

23 . The tooling article of claim 22 , wherein the microstructured film is disposed on only a portion of a thermoforming surface of the tool.

24 . The tooling article of claim 22 , wherein the microstructured film is disposed on 90% or greater of a thermoforming surface of the tool.

25 . The tooling article of claim 22 , wherein the tool has a shape of a dental arch.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2024
From: 3M INNOVATIVE PROPERTIES COMPANY
To: SOLVENTUM INTELLECTUAL PROPERTIES COMPANY
Reel/Frame 066781/0787 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 30, 2024
From: YU, TA-HUA; BENSON, OLESTER, JR.; HEBRINK, TIMOTHY J.; CONNELL, JODI L.; BROYLES, BRUCE R.; LAI, MING-LAI; JOHNSTON, RAYMOND P.
To: 3M INNOVATIVE PROPERTIES COMPANY
Reel/Frame 066292/0680 →