IP Library Granted Patent US 11,230,024
Granted Patent B2
US 11,230,024 · App. 15/535,984 · Granted Jan 25, 2022

Razor blade

Inventors: Ioannis Papatriantafyllou (Maroussi, GR); Taxiarchis Terlilis (Athenes, GR); Labros Kontokostas (N. Irakleio, GR)
Assignee: BIC-VIOLEX SA
B26B21/56B26B21/58
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Quick Facts
Patent No.
US 11,230,024
App. No.
15/535,984
Granted
Jan 25, 2022
Kind
B2
Abstract

A razor blade including a substrate with a cutting edge portion ending in a sharpened tip. The substrate having a thickness of between 1.55 and 1.97 micrometers measured at a distance of five micrometers from the tip, a thickness of between 4.6 and 6.34 micrometers measured at a distance of twenty micrometers from the tip, and a thickness of between 19.8 and 27.12 micrometers measured at a distance of one hundred micrometers from the tip.

Claims (26)

1. A razor blade comprising a substrate including a cutting edge having a symmetrical tapering geometry with two substrate sides and a planar portion ending in a sharpened tip, the tapering geometry having a thickness of between 1.55 and 1.97 micrometers measured at a distance of five micrometers from the tip, to a thickness of between 4.60 and 6.34 micrometers measured at a distance of twenty micrometers from the tip, to a thickness of between 19.8 and 27.12 micrometers measured at a distance of hundred micrometers from the tip, wherein the thickness of the substrate further includes a thickness of between 57.80 and 69.00 micrometers measured at a distance of three hundred micrometers from the tip,

wherein a blade thickness increase rate is defined by a slope from the sharpened tip to a transition point between the two substrate sides and the planar portion of the substrate, wherein the blade thickness increase rate in a region between a distance from 40 micrometers to 300 micrometers from the tip is less than the blade thickness increase rate from the tip of the blade to a distance of 40 micrometers from the tip.

2. The razor blade according to claim 1 , wherein the continuous thickness of the substrate further includes a thickness of between 6.50 and 8.94 micrometers measured at a distance of thirty micrometers from the tip.

3. The razor blade according to claim 1 wherein the continuous thickness of the substrate further includes a thickness of between 8.40 and 11.54 micrometers measured at a distance of forty micrometers from the tip.

4. The razor blade according to claim 1 , wherein the continuous thickness of the substrate further includes a thickness of between 10.30 and 14.13 micrometers measured at a distance of fifty micrometers from the tip.

5. The razor blade according to claim 1 , wherein the continuous thickness of the substrate further includes a thickness of between 29.30 and 40.11 micrometers measured at a distance of hundred fifty micrometers from the tip.

6. The razor blade according to claim 1 , wherein the continuous thickness of the substrate further includes a thickness of between 38.80 and 49.74 micrometers measured at a distance of two hundred micrometers from the tip.

7. The razor blade according to claim 1 , wherein the continuous thickness of the substrate further includes a thickness of between 48.30 and 59.37 micrometers measured at a distance of two hundred fifty micrometers from the tip.

8. The razor blade according to claim 1 , wherein the continuous thickness of the substrate further includes a thickness of between 67.30 and 78.62 micrometers measured at a distance of three hundred fifty micrometers from the tip.

9. The razor blade according to claim 8 , wherein the blade thickness increase rate in a region between a distance from 40 micrometers to 350 micrometers from the tip is less than the blade thickness increase rate from the tip of the blade to a distance of 40 micrometers from the tip.

10. The razor blade, according to claim 1 , wherein the thickness of the cutting edge of the substrate is described with the following mathematical formulas:

t=a ·( x b )  (A)

t =( c·x )+ d   (B)

wherein, a and c are constants from an interval (0, 1), b is a constant from an interval (0.5, 1), d is a constant from an interval (0.5, 20), x refers to a distance from the tip in micrometers and t refers to the thickness of the blade in micrometers, and wherein equation (A) is used to determine the thickness of the cutting edge from the tip to a transition point, and either equation (A) or equation (B) used to determine the thickness elsewhere along the cutting edge.

11. The razor blade, according to claim 1 , wherein the substrate is a stainless steel comprising, in weight:

0.62-0.75% of carbon,

12.7-13.7% of chromium,

0.45-0.75% of manganese,

0.20-0.50% of Silicon,

no more than traces of Molybdenum, and

balanced iron.

12. The razor blade, according to claim 1 , wherein the substrate is covered by a strengthening coating.

13. The razor blade according to claim 12 , wherein the strengthening coating comprises Titanium and Boron.

14. The razor blade, according to claim 13 , wherein the substrate is covered by an interlayer and the interlayer is covered by the strengthening layer.

15. The razor blade, according to claim 14 , wherein the strengthening layer is covered by a top layer.

16. The razor blade, according to claim 15 , wherein the top layer is covered by a polytetrafluoroethylene (PTFE) layer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 20, 2017
From: PAPATRIANTAFYLLOU, IOANNIS; TERLILIS, TAXIARCHIS; KONTOKOSTAS, LABROS
To: BIC-VIOLEX SA
Reel/Frame 042754/0794 →
Continuity (1)
Related Publication 20170348867A1 · Dec 7, 2017
Cited By (1)
US 12,397,458