BENT BLADE WITH IMPROVED RIGIDITY
20220088813 · 2022-03-24
Assignee
Inventors
Cpc classification
International classification
Abstract
The present disclosure relates to a method of forming a razor blade and a razor blade. The razor blade extends along a longitudinal axis and comprises a cutting edge portion positioned along a second plane, a base portion positioned along a first plane that is different from the second plane, the first plane intersects the second plane at an angle. The razor blade further comprises a bent portion intermediate to the cutting edge portion and base portion, and an extended portion extending from the base portion away from the second plane. The cutting edge portion, base portion, bent portion, and extended portion are monolithically formed.
Claims
1. A razor blade extending along a longitudinal axis L, the blade comprising: a cutting edge portion positioned along a second plane, a base portion positioned along a first plane that is different from the second plane, wherein the first plane intersects the second plane at an angle, the razor blade further comprising a bent portion intermediate to the cutting edge portion and base portion, and an extended portion extending from the base portion away from the second plane, wherein the cutting edge portion, base portion, bent portion, and extended portion are monolithically formed, wherein the extended portion extends away from the base portion a distance that is within a range of 0.5 mm to 7 mm.
2. The razor blade according to claim 1, wherein a thickness of the razor blade is between 0.1 mm and 0.05 mm.
3. The razor blade according to claim 1, wherein the extended portion has a length along the longitudinal axis that is between 0.035 and 0.9 of a length L of the razor blade along the longitudinal axis.
4. The razor blade according to claim 1, wherein the length of the extended portion along the longitudinal axis is between 0.05 and 0.2 the length L of the razor blade along the longitudinal axis.
5. (canceled)
6. The razor blade according to claim 1, wherein a total height of the base portion and the extended portion is within a range of 1.0 mm to 12 mm.
7. The razor blade according to claim 1, wherein the extended portion is centered along the length L of the razor blade along the longitudinal axis.
8. The razor blade according to claim 1, wherein the razor blade two extended portions.
9. The razor blade according to claim 8, wherein each of the extended portions is offset from the center of the length L of the razor blade along the longitudinal axis.
10. The razor blade according to claim 8, wherein at least one of the extended portions has an approximate length along the longitudinal axis of 1.4 mm.
11. The razor blade according to claim 1, wherein the extended portion is positioned along the first plane.
12. The razor blade according to claim 1, wherein the extended portion includes a shaped portion.
13. The razor blade according to claim 12, wherein the shaped portion is positioned along a third plane that is different from the first plane.
14. A method of manufacturing a razor blade comprising: providing a strip having a cutting edge portion, a base portion-, a bent portion intermediate to the cutting edge portion and base portion, an extended portion, and a removable portion, wherein perforations are provided along the length L of the strip positioned within the removable portion and adjacent to the extended portion and to the base portion; and separating the removable portion from the base portion and extended portion by cutting the strip at a point where the removable portion starts, wherein the extended portion extends away from the base portion a distance that is within a range of 0.5 mm to 7 mm.
15. The method of claim 14 further comprising: forming the extended portion to include a shaped portion.
16. The razor blade according to claim 1, wherein the extended portion extends away from the base portion a distance that is within a range of 1 mm and 7 mm.
17. The razor blade according to claim 1, wherein the extended portion extends away from the base portion a distance that is within a range of 1 mm and 3 mm.
18. The razor blade according to claim 1, wherein a total height of the base portion and the extended portion is within a range of 2 mm to 12 mm.
19. The method of claim 14, wherein the extended portion extends away from the base portion a distance that is within a range of 1 mm to 7 mm.
20. The method of claim 14, wherein the extended portion extends away from the base portion a distance that is within a range of 1 mm to 3 mm.
21. The method of claim 14, wherein the extended portion is positioned along the first plane.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0035]
[0037] When making a bent blade 10 from the blade strip 1, the bendable portion 3 of the blade strip 1 is bent such that the cutting edge portion 12 is positioned along a second plane that intersects the first plane and the base portion 14 is positioned along the first plane. Subsequently, the removable portion 16 is cut away from or broken off of the base portion 14 via the perforations 16a.
[0038]
[0039]
[0040] When making the bent blade 100 from the blade strip 1, the bendable portion 3 of the blade strip 1 is bent such that the cutting edge portion 12 is positioned along a second plane that intersects the first plane and base portion 14 is positioned along the first plane. Subsequently, the removable portion 60 is cut away from or broken off of the base portion 14 via the perforations 60a such that the extended portion 50 remains attached to the base portion 14.
[0041]
[0042] A total height H.sub.1, which is the distance measured in the y-direction between an exposed end of the extended portion 150 and the end of the base portion 14 that connects with the bent portion 13, may be in a range of 1.0 to 12 mm, specifically of 2 mm to 12 mm, more specifically of 2 mm to 5 mm and even more specifically about 3 mm. A height EH.sub.1, which is a distance measured in the y-direction between the exposed end of the extended portion 150 and the end of the extended portion 150 that connects with the base portion 14, may be in a range of 0.5 to 7 mm, specifically of 1 mm to 7 mm, more specifically of 1 mm to 3 mm, even more specifically of 1.2 mm to 3 mm and even more specifically about 1.6 mm. The length EL.sub.1 of the extended portion 150 is a distance measured in the z-direction between exposed side ends of the extended portion 150 and measured orthogonal to the height EH.sub.1 of the extended portion 150. The ratio EL.sub.1/L may be between 0.035 to 0,9, specifically 0.05 to 0,2, more specifically about 0,07, wherein L is a total length of the blade measured in the z-direction.
[0043] It is also envisioned that a bent blade 200 may have two extended portions 250, which is shown in
[0044] A total height H.sub.2, which is the distance measured in the y-direction between an exposed end of one of the extended portions 250 and the end of the base portion 14 that connects with the bent portion 13, may be in a range of 1.0 to 12 mm, specifically of 2 mm to 12 mm, more specifically of 2 mm to 5 mm and even more specifically about 3 mm. A height EH.sub.2, which is a distance measured in the y-direction between the exposed end of one of the extended portions 250 and the end of the extended portion 250 that connects with the base portion 14, may be in a range of 0.5 to 7 mm, specifically of 1 mm to 7 mm, more specifically of 1 mm to 3 mm, even more specifically of 1.2 mm to 3 mm and even more specifically about 1.6 mm. The length EL.sub.2 of one of the extended portions 250 is a distance measured in the z-direction between exposed side ends of one of the extended portions 250 and measured orthogonal to the height EH.sub.2 of the extended portion 250. The ratio EL.sub.2/L being between 0.035 to 0,9, specifically 0.05 to 0,2, more specifically about 0,07, wherein L is a total length of the blade measured in the z-direction.
[0045]
[0046] A total height H.sub.3, which is the distance measured in the y-direction between an exposed end of the extended portion 350 and the end of the base portion 14 that connects with the bent portion 13, may be in a range of 1.0 to 12 mm, specifically of 2 mm to 12 mm, more specifically of 2 mm to 5 mm and even more specifically about 3 mm. A height EH.sub.3, which is a distance measured in the y-direction between the exposed end of the shaped portion 352 and the end of the extended portion 350 that connects with the base portion 14, may be in a range of 0.5 to 7 mm, specifically of 1 mm to 7 mm, more specifically of 1 mm to 3 mm, even more specifically of 1.2 mm to 3 mm and even more specifically about 1.6 mm. The length EL.sub.3 of the extended portion 350 is a distance measured in the z-direction between exposed ends of the extended portion 350 and measured orthogonal to the height EH.sub.3 of the extended portion 350. The ratio EL.sub.3/L being between 0.035 to 0,9, specifically 0.05 to 0,2, more specifically about 0,07, wherein Lisa total length of the blade measured in the z-direction.
[0047]
[0048] The blade strip 40 further includes a removable portion 460. The removable portion 460 includes a plurality of perforations or weakening holes 460a. The blade strip 40 may be composed of stainless steel, which has previously been subjected to a metallurgical treatment. For instance, the blade strip 1 comprises mainly iron and, in weight: C: 0.48-0.72%; Si: 0.15-0.60%; Mn: 0.20-0.90%; Cr: 12.0-14.7%; and Mo:1.20-1.40%. It is foreseen that other stainless steels may be used without deviating from the scope of the present disclosure. For instance, other materials commonly used for razor blade substrate materials may be used. The cutting edge portion 412, bendable portion 43, base portion 414, and removable portion 460 may be monolithically formed. The blade strip 40 includes an extended portion 450 that is positioned along the first plane and extends from the center of the length of the base portion 414 and is not included in the removable portion 460. Thus, the extended portion 450 will not be removed during forming. The cutting edge portion 412, bendable portion 43, base portion 414, and extended portion 450 may be monolithically formed. The extended portion 450 may extend from the center of the length of the blade 400 to minimize deflection in the area that is most sensitive to deflection during a shaving operation.
[0049] When making the bent blade 400 from the blade strip 40, the bendable portion 43 of the blade strip 40 is bent such that the cutting edge portion 412 is positioned along a second plane adapted to intersect the first plane and the base portion 414 remain positioned along the first plane. Subsequently, the removable portion 460 is cut away from or broken off of the base portion 414 via the perforations 460a.
[0050]
[0051] In some examples, the increased rigidity may allow for the use of blade strips having a reduced thickness, thereby reducing the amount of material involved. Typical blade strip thickness may range from 0.15-0.1 mm. Blades with increased rigidity may allow for blade strip thickness to be below 0.1 mm. In examples, blade thickness may be between 0.08-0.05 mm. Particularly 0.074 mm.
[0052] In examples wherein the extended portion includes a shaped portion, the shaped portion may comprise an inclined surface, or a curved surface, which may be formed by bending or by stamping process. In some of these cases, a curved surface in the same plane as the extended portion may be provided. I some cases, an inclined surface along a plane that is different from that of the extended portion may be provided. Combinations of these shaped portions may be provided in some examples.
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