RAZOR BLADES WITH ALUMINUM MAGNESIUM BORIDE (AlMgB14)-BASED COATINGS
This invention relates to a novel application of hard, low friction aluminum magnesium boride (AlMgB 14 , also known as BAM) based ceramic coatings to surfaces of razor components and in particular to blade edges of razor blades. On razor blade edges, these coatings may elevate blade performance, while also simplifying the manufacturing process.
1 . A razor blade apparatus comprising:
a sharpened substrate having at least one layer of BAM material disposed thereon.
2 . The razor blade apparatus of claim 1 wherein said at least one layer of BAM material is directly disposed on the sharpened substrate.
3 . The razor blade apparatus of claim 1 wherein one or more interlayers are disposed between the BAM layer and the sharpened substrate or wherein one or more overcoat layers are disposed on top of the BAM layer.
4 . The razor blade apparatus of claim 3 wherein said one or more interlayers and said one or more overcoat layer comprise an adhesion layer.
5 . The razor blade apparatus of claim 5 wherein said adhesion layer is comprised of niobium, chromium, platinum, titanium, or any combination or alloys thereof.
6 . The razor blade apparatus of claim 1 or 5 wherein at least one polymeric material is disposed on top of the at least one BAM layer, on top of said one or more interlayers, or on top of said one or more overcoat layer, or any combination thereof.
7 . The razor blade apparatus of claim 6 wherein said at least one polymeric material comprises PTFE.
8 . The razor blade apparatus of claim 6 wherein said at least one polymeric material comprises a material with a coefficient of friction greater or lesser than that of PTFE.
9 . The razor blade apparatus of claim 3 wherein said overcoat layer is comprised of a composite of BAM and a second component.
10 . The razor blade apparatus of claim 9 wherein said second component is a polymeric material.
11 . The razor blade apparatus of claim 9 wherein said one or more overcoat layers comprises an increasing concentration of said second component in a direction towards an outer surface of the substrate or a decreasing concentration of said second component in a direction towards an outer surface of the substrate.
12 . The razor blade apparatus of claim 1 wherein the at least one BAM layer is disposed on the sharpened substrate via physical vapor deposition, chemical vapor deposition, magnetron sputtering, or any combination thereof.
13 . The razor blade apparatus of claim 1 wherein the sharpened substrate is comprised of stainless steel, metal, ceramic, composite, plastic, glass, or any combination thereof.
14 . The razor blade apparatus of claim 1 wherein the sharpened substrate is on a blade edge of the razor blade wherein said blade edge is linear, non-linear, or any combination thereof.
15 . The razor blade apparatus of claim 1 wherein said BAM layer provides antimicrobial properties.
16 . A shaver apparatus comprising
a component having at least one layer of BAM material disposed thereon.
17 . The shaver apparatus of claim 16 wherein said component is a non-cutting element wherein said non-cutting element is a cartridge or handle component, a clip disposed in a wet shaver or an outer or inner surface of a foil disposed in an electric dry shaver.
18 . The shaver apparatus of claim 16 wherein said component is a cutting element wherein said cutting element is a cutter element in an electric dry shaver or a razor blade edge in a wet shaver.
19 . A method of making a razor blade comprising:
providing a sharpened substrate; and
depositing at least one layer of BAM material on an outer surface of said substrate.