IP Library Granted Patent US 10,994,379
Granted Patent B2
US 10,994,379 · App. 16/719,048 · Granted May 4, 2021

Laser deposition process for a self sharpening knife cutting edge

Inventor: George H. Lambert (Stuart, FL)
B23P15/28B23K26/342B23K2101/20
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Quick Facts
Patent No.
US 10,994,379
App. No.
16/719,048
Granted
May 4, 2021
Kind
B2
Abstract

A method for treating a knife cutting edge with a laser deposition (sintering) process using a composition coating such as a diamond powder or a substance above 5 on the Mohs scale of mineral hardness. The coating providing an abrasion resistant cutting edge and creates a differential hardness on the total cutting edge. The differential hardness extends the cutting ability of the knife through a wear-resistant surface on a treated surface and a faster wear on an untreated surface causing the cutting edge to be self sharpening as the untreated surface wears away.

Claims (11)

1. A process for making a self sharpening knife cutting edge comprising the steps of:

shaping an alloy shank to include a blade section defining a cutting edge, said blade section having a first bevel extending from said cutting edge defining a first side of said blade section and a second bevel extending from said cutting edge defining a second side of said blade section,

said first bevel and said second bevel forming a V-shaped angle from 10 to 25 degrees from said cutting edge;

coating only said first bevel with a composition, said composition coating having a thickness from 0.02 microns to 30 microns;

laser deposition of said composition coating on said first bevel of said blade section;

wherein said non-coated second bevel wears before the composition coating on said first bevel whereby said blade section is self sharpening as said non-coated second bevel wears.

2. The process for making a self sharpening cutting edge according to claim 1 wherein said composition is a Diamond powder.

3. The process for making a self sharpening cutting edge according to claim 1 wherein said composition is above 5 on the Mohs scale of mineral hardness.

4. The process for making a self sharpening cutting edge according to claim 3 wherein said composition is selected from the group consisting of: 5-apatite (tooth enamel), zirconium, palladium, obsidian (volcanic glass) ; 5.5-beryllium, molybdenum, hafnium, glass, cobalt; 6-orthoclase, titanium, manganese, germanium, niobium, rhodium, uranium; 6-7-fused quartz, iron pyrite, silicon, ruthenium, iridium, tantalum, opal, peridot, tanzanite, jade; 7-osmium, quartz, rhenium, vanadium; 7.5-8-emerald, hardened steel, tungsten, spinel; 8-topaz, cubic zirconia; 8.S-chrysoberyl, chromium, silicon nitride, tantalum carbide; 9-corundum, tungsten carbide, titanium nitride, sapphire; 9-9.5-silicon carbide (carborundum), titanium carbide; 9.S-10-boron, boron nitride, rhenium diboride (a-axis), [16] stishovite, titanium diboride or 10-diamond, carbonado.

5. The process for making a self sharpening cutting edge according to claim 1 wherein said alloy shank is titanium or any other metal alloy.

6. The process for making a self sharpening cutting edge according to claim 1 wherein said alloy shank has a Rockwell C hardness of about 65 or less.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 22, 2025
From: LAMBERT, GEORGE H.
To: RELENTLESS KNIVES LLC
Reel/Frame 072091/0541 →
Continuity (2)
Provisional Application 62788170 · Jan 4, 2019
Related Publication 20200215646A1 · Jul 9, 2020