IP Library Patent Application 18785683
Patent Application
App. No. 18/785,683

METHOD FOR FORMING ROBUST HYDROPHOBIC SURFACES ON STEEL WORKPIECE

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Patent No.
US None
App. No.
18/785,683
Abstract

The present invention discloses a method for forming robust hydrophobic surfaces on a steel workpiece. First, a roughing process is performed on the steel workpiece by removing part of the steel from the surface, so as to form concaves. Second, a depositing process is performed to deposit hydrophobic layers into the concaves, thereby forming the steel workpiece with robust hydrophobic surfaces, exhibiting good abrasion resistance.

Claims (37)

1 . A method for forming robust hydrophobic surfaces on a steel workpiece, comprising:

roughing the steel workpiece by removing part of the steel from the surface, so as to form concaves; and

depositing hydrophobic layers into the concaves, thereby forming the steel workpiece with robust hydrophobic surfaces, exhibiting good abrasion resistance.

2 . The method of claim 1 , wherein the roughing process furthers comprises:

performing a sandblasting treatment to the steel workpiece, wherein the sandblasting treatment projects a stream of air mixed with inorganic particles, so as to form a micro-/nanoscale surface roughness;

performing an electropolishing treatment to the sandblasted steel workpiece, wherein the electropolishing treatment uses the sandblasted steel workpiece as an anode; and

performing an etching treatment to the electropolished steel workpiece, wherein the etching treatment uses an etching solution containing ferric chloride.

3 . The method of claim 2 , wherein the inorganic particles of the sandblasting treatment are with particle size ranging from 10 to 40 μm.

4 . The method of claim 2 , wherein the stream of air mixed with inorganic particles is blown at a pressure ranging from 2 to 5 bar.

5 . The method of claim 2 , wherein the surface roughness (Ra) of the sandblasted steel workpiece is more than 600 nm.

6 . The method of claim 2 , wherein an electrolyte of the electropolishing treatment comprising 50 to 70 wt % concentrated phosphoric acid, 20 to 40 wt % concentrated sulfuric acid, polyethylene glycol, hexamethylenetetramine, citric acid, thiourea, glycerin and water.

7 . The method of claim 2 , wherein the electropolishing treatment uses a constant voltage from 3 to 8 V.

8 . The method of claim 2 , wherein the etching solution of the etching treatment comprising (1) 1 to 2 M ferric chloride, (2) at least one acid selected from the group consisting of hydrochloric acid and phosphoric acid and mixtures thereof, (3) 1 to 2 M hydrogen peroxide, and (4) water.

9 . The method of claim 8 , wherein the concentration of the acid in the etching solution is 1 to 3 M.

10 . The method of claim 2 , wherein the etching treatment is cooled by water bath, the temperature of the water bath is between 40 to 60° C.

11 . The method of claim 2 , wherein the surface of the etched steel workpiece is similar to the surface of a lotus leaf.

12 . The method of claim 1 , after the roughing process, performing a clean treatment to remove chemical residues and byproducts of the roughed steel workpiece.

13 . The method of claim 1 , wherein the depositing process comprises physical vapor deposition (PVD).

14 . The method of claim 13 , wherein the depositing process uses a PVD apparatus having a vacuum processing chamber therein equipped with a DC magnetron sputtering cathode, the apparatus being configured to perform physical vapor deposition on the etched steel workpiece in the chamber with process gas maintained therein at a vacuum processing pressure level 1-5 Pa upon the application of power at a sputtering power level 50-100 W to the sputtering cathode.

15 . The method of claim 14 , wherein the temperature of the chamber ranges from 20 to 40° C.

16 . The method of claim 1 , wherein the hydrophobic layers comprise fluorine-containing polymer or inorganic fluorine-containing compounds.

17 . The method of claim 16 , wherein the hydrophobic layers comprise perfluoroalkoxy (PFA).

18 . The method of claim 13 , wherein the steel workpiece with robust hydrophobic surfaces comprises one or any combination or all of the following properties:

(1) The average water contact angle equal to or greater than 150 degrees;

(2) the water contact angle of at least 110 degrees after 1000 times abrasion test;

(3) the water contact angle loss of less than 10 degrees after ethanol and washing agent rinsing tests.

19 . The method of claim 1 , wherein the depositing process comprises sol-gel process.

20 . The method of claim 19 , wherein the sol-gel process comprises:

providing a sol-gel solution;

coating the sol-gel solution into the concaves of the steel workpiece; and

curing the sol-gel solution in the concaves to form the hydrophobic layers, containing silica/epoxy resin hybrid.

21 . The method of claim 20 , wherein the sol-gel solution contains 20 to 30 wt % epoxy resin (E-51), ethanol, 12 to 22 wt % tetraethyl orthosilicate (TEOS), and 35 to 45 wt % 3-aminopropyltriethoxysilane (APTES).

22 . The method of claim 20 , wherein the curing temperature ranges from 50° C. to 90° C.

23 . The method of claim 19 , wherein the steel workpiece with robust hydrophobic surfaces comprises one or any combination or all of the following properties:

(1) The average water contact angle equal to or greater than 150 degrees;

(2) the water contact angle of at least 110 degrees after 1000 times abrasion test;

(3) the water contact angle loss of less than 10 degrees after ethanol and washing agent rinsing tests.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 17, 2026
From: NANO AND ADVANCED MATERIALS INSTITUTE LIMITED
To: HONG KONG APPLIED SCIENCE AND TECHNOLOGY RESEARCH INSTITUTE COMPANY LIMITED
Reel/Frame 075402/0553 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2024
From: SONG, SONG; XU, CHEN; WENG, TIANYU
To: NANO AND ADVANCED MATERIALS INSTITUTE LIMITED
Reel/Frame 068176/0720 →