IP Library Granted Patent US 12,521,953
Granted Patent B2
US 12,521,953 · App. 17/770,813 · Granted Jan 13, 2026

3D printed customized cupsoles

Inventors: Hugo Verbeke (Wilsele, BE); David Briers (Brussels, BE); Bram Vanroy (Haasrode, BE); Sandra Meynen (Tienen, BE)
B29D35/122A43B1/0009A43B13/186B33Y80/00B29K2075/00B33Y10/00
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Quick Facts
Patent No.
US 12,521,953
App. No.
17/770,813
Granted
Jan 13, 2026
Kind
B2
Abstract

A cupsole for footwear, said cupsole comprising at least a sidewall, a bottom surface and a central portion and wherein said sidewall circumscribes the central portion, said central portion having openings, preferably in the form of at least one honeycomb structure and wherein at least the sidewall and the bottom surface of the cupsole have a solid structure with no openings and wherein the complete cupsole is customized on the base of specific and measured data obtained directly from the user and printed in 1 single 3D printing step thereby using a thermoplastic polymer.

Claims (20)

1 . A method for forming a customized cupsole ( 1 ) for footwear using 3D printing techniques, said cupsole comprising at least a sidewall ( 2 ), a bottom surface ( 4 ) and a central portion ( 3 ) and wherein said sidewall ( 2 ) circumscribes the central portion ( 3 ), said central portion ( 3 ) having openings in the form of at least one honeycomb structure defined by vertical walls, and wherein at least the sidewall ( 2 ) and the bottom surface ( 4 ) of the cupsole have a solid structure with no openings and wherein the complete cupsole is customized on the base of specific and measured data obtained directly from a user and printed in one single 3D printing step using at least three different thermoplastic polymers, wherein the sidewall ( 2 ) comprises a first thermoplastic polymer, the central portion ( 3 ) comprises a second thermoplastic polymer having a shore hardness in a range from 85 Shore A up to 50 Shore D as measured according to DIN 53 505, and the bottom surface ( 4 ) comprises a third thermoplastic polymer.

2 . The method according to claim 1 , wherein the central portion of the cupsole comprises at least one honeycomb structure which extends along the entire length (longitudinal) and width (side-to-side) of the central portion in between the sidewalls.

3 . The method according to claim 1 , wherein the central portion of the cupsole comprises at least one honeycomb structure which extends to only part of the length (longitudinal area) and/or part of the width (side-to-side area) of the central portion in between the sidewalls, the remaining parts having a solid structure with no openings.

4 . The method according to claim 1 , comprising at least a sidewall ( 2 ), a bottom surface ( 4 ), a central portion ( 3 ) and an upper surface ( 5 ) wherein said sidewall ( 2 ) circumscribes the central portion ( 3 ) having openings, and the bottom surface ( 4 ) and the upper surface ( 5 ) of the cupsole have a solid structure with no openings and the central portion being captured between the upper and bottom surface.

5 . The method according to claim 1 , wherein the central portion ( 3 ) having openings comprises more than one honeycomb structure and wherein at least two or more of the honeycomb structures differ in density.

6 . The method according to claim 1 , wherein the thermoplastic polymers are selected from acrylonitrile butadiene styrene (ABS), thermoplastic polyurethane (TPU), polyamide (PA), and curable thermoplastic resins.

7 . The method according to claim 1 , wherein the 3D printing technique used to manufacture the cupsole is selected from selective laser sintering (SLS) and the thermoplastic polymer is polymers are selected from thermoplastic polymer powder having an average particle size below <250 μm.

8 . The method according to claim 1 , wherein the 3D printing technique used to manufacture the cupsole is selected from selective laser sintering (SLS) and the thermoplastic polymers are selected from thermoplastic polymer powder having an average particle size below <250 μm and the thermoplastic polymers are selected from thermoplastic polyurethane (TPU) comprising cross-linkable TPU compounds having radically polymerizable unsaturation(s).

9 . The method according to claim 1 , wherein the 3D printing technique used to manufacture the cupsole is selected from stereolithographic printing (SLA).

10 . The method according to claim 1 , wherein the 3D printing technique used to manufacture the cupsole is selected from stereolithographic printing (SLA) and the thermoplastic polymers are selected from a thermoplastic polyurethane resin.

11 . The method according to claim 1 , wherein the 3D printing technique used to manufacture the cupsole is selected from fused deposition modelling (FDM).

12 . The method according to claim 1 , wherein the 3D printing technique used to manufacture the cupsole is selected from fused deposition modelling (FDM) and the thermoplastic polymers are selected from thermoplastic polyurethane filaments.

13 . A method for making a shoe comprising the cupsole according to claim 1 , said method comprising at least following steps

providing a shoe upper, and

providing the cupsole, and

contacting the shoe upper to the cupsole, and

performing an adhesion step to permanently attach the shoe upper to the cupsole.

14 . The method according to claim 13 , wherein the step of attaching the shoe upper to the cupsole is performed by a thermal treatment of at least the sidewalls of the cupsole above the melting temperature T m of the thermoplastic material such that the upper of the shoe is melted onto the cupsole.

15 . The method for making a shoe comprising the cupsole according to claim 13 , characterized in that the cupsole and shoe upper are printed using 3D printing techniques.

16 . The method according to claim 15 , wherein the thermoplastic polymers used to print the cupsole and shoe upper are selected from the same thermoplastic polymer or alternatively the thermoplastic polymers used to print the cupsole and shoe upper are selected from at least 2 different thermoplastic polymers which are compatible with each other thereby using multi-material 3D printing.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 10, 2024
From: VERBEKE, HUGO; BRIERS, DAVID; VANROY, BRAM; MEYNEN, SANDRA
To: HUNTSMAN INTERNATIONAL LLC
Reel/Frame 068860/0354 →