Pivoting razors
09844887 Ā· 2017-12-19
Assignee
Inventors
- John W. GRIFFIN (Moultonborough, NH, US)
- Craig A. Provost (Boston, MA, US)
- William E. Tucker (Attleboro, MA, US)
Cpc classification
B26B21/225
PERFORMING OPERATIONS; TRANSPORTING
B26B21/521
PERFORMING OPERATIONS; TRANSPORTING
Y10T83/04
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B26B21/52
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Replaceable shaving assemblies are disclosed that include a blade unit, an interface element configured to removably connect the blade unit to a handle, on which the blade unit is pivotably mounted, and an elastomeric element disposed between the blade unit and interface element. Shaving systems including such shaving assemblies are also disclosed, as are methods of using such shaving systems.
Claims
1. A shaving assembly comprising: a blade unit including an elastomeric guard; a handle interface element configured to connect the blade unit to a handle, the blade unit being pivotably mounted on the handle interface element; and an elastomeric element disposed between the blade unit and the handle interface element; wherein the handle interface element includes a pair of fingers extending in opposite directions, and the elastomeric element comprises a pair of loops that are formed integrally with the guard and are configured to receive the fingers.
2. The shaving assembly of claim 1 wherein the fingers extend in opposite directions.
3. The shaving assembly of claim 1 wherein the guard includes a pair of openings defining elongated elastomeric portions that, when stretched during assembly, form the loops.
4. The shaving assembly of claim 3 wherein the elongated elastomeric portions are generally planar until stretched.
5. The shaving assembly of claim 1, wherein the elastomeric element is configured to bias the blade unit towards a rest position with respect to a pivot axis that is generally parallel to a long axis of the blade unit.
6. The shaving assembly of claim 1, wherein the elastomeric element comprises a thermoplastic elastomer.
7. The shaving assembly of claim 1, wherein the loops extend from the blade unit.
8. The shaving assembly of claim 1 further comprising a blade unit interface element interposed between the handle interface unit and the blade unit.
9. The shaving assembly of claim 8 wherein the elastomeric element is carried by the blade interface unit.
10. The shaving assembly of claim 8 wherein the blade interface element snaps onto the blade unit.
11. A shaving system comprising: a handle having a distal end and a proximal end; and a shaving assembly that includes a blade unit including an elastomeric guard, a handle interface element, the blade unit being pivotably mounted on the handle interface element, and an elastomeric element disposed between the blade unit and the handle interface element; wherein the handle interface element includes a pair of fingers extending in opposite directions, and the elastomeric element comprises a pair of loops that are formed integrally with the guard and are configured to receive the fingers.
12. The shaving system of claim 11 wherein the fingers extend in opposite directions.
13. The shaving system of claim 11 wherein the guard includes a pair of openings defining elongated elastomeric portions that, when stretched during assembly, form the loops.
14. The shaving system of claim 13 wherein the elongated elastomeric portions are generally planar until stretched.
15. The shaving system of claim 11, wherein the elastomeric element is configured to bias the blade unit towards a rest position with respect to a pivot axis that is generally parallel to a long axis of the blade unit.
16. The shaving system of claim 11, wherein the elastomeric element comprises a thermoplastic elastomer.
17. The shaving system of claim 11, wherein the loops extend from the blade unit.
18. The shaving system of claim 11 further comprising a blade unit interface element interposed between the handle interface unit and the blade unit.
19. The shaving system of claim 18 wherein the elastomeric element is carried by the blade interface unit.
20. The shaving system of claim 18 wherein the blade interface element snaps onto the blade unit.
21. A method of shaving comprising contacting the skin with the blade unit of a shaving system comprising a handle having a distal end and a proximal end, and a shaving assembly that includes: a blade unit including an elastomeric guard; an interface element configured to connect the blade unit to a handle, the blade unit being pivotably mounted on the handle interface element; and an elastomeric element disposed between the blade unit and the handle interface element; wherein the handle interface element includes a pair of fingers extending in opposite directions, and the elastomeric element comprises a pair of loops that are formed integrally with the guard and are configured to receive the fingers.
Description
DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(20) The present disclosure relates generally to consumer products and, in particular, to shaving systems with interchangeable blade units. In one embodiment, the present disclosure features a reusable consumer product system having an interchangeable pivoting blade unit, which includes an elastomeric return element.
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(22) A pair of elastomeric loops 22, extending from a guard portion 21 of the blade unit 16, are positioned around the arms 24 from which fingers 18 extend. The elastomeric material of these loops is put under tension as the blade unit pivots during shaving. This tension provides resistance during shaving, limiting the free pivoting of the blade unit about the pivot axis described above, and providing a return force that biases the blade unit towards its rest position. Thus, the elastomeric loops provide the resistance and return that are typically provided by a pusher/follower assembly. The loops may be integrally molded with the guard, as shown in the figures (see, e.g.,
(23) The elastomeric loops can be formed, for example, from synthetic or natural rubber materials. Preferably, the elastomeric loops are formed from the same material as the guard. Suitable guard materials are well known in the shaving system art, and include, for example, polyether-based thermoplastic elastomers (TPEs) available from Kraiburg HTP, polyether-based thermoplastic vulcanizate elastomer (TPVs) available from GLS PolyOne Corporation under the tradename Santopreneā¢. The elastomeric material is selected to provide a desired degree of restoring force and durability.
(24) Preferably, the loops are positioned relatively close to the pivot point of the blade unit, so as to minimize strain on the elastomer and thus extend the shelf life and use life of the shaving assembly.
(25) An exploded view of the shaving system is shown in
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(28) The loops 122 can be formed, for example, by providing a guard 121 (
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(30) The handle interface element 14 is configured to snap onto the blade unit interface element 228 during replacement of the shaving assembly. Referring to
(31) In this alternate embodiment, the elastomeric material 222 can be co-molded with or attached to the blade unit interface element 228. The elastomeric material 222 extends over the handle interface protrusions 224 so that some tension is generated within the elastomeric material. This tension provides for proper resistive force necessary for shaving in the same manner discussed above with regard to the embodiments shown in
(32) In all of the embodiments discussed above, the elastomeric element is designed such that its geometry provides an applied load as assembled that is sufficient to overcome the friction of the system at rest (pretensioned load), typically at least 5 grams, e.g., 5 to 40 grams, and a load during shaving of from about 30 to 110 grams.
(33) Also, while removable shaving assemblies have been discussed above, in some implementations the shaving system is designed to be disposable as a whole. In these cases, the shaving assembly is affixed to the handle in a manner that is not intended for the consumer to remove, e.g., by fixedly mounting the interface element on the distal end of the handle. This may be accomplished, for example, by engagement of corresponding mechanical locking features on the handle and interface element, by welding (e.g., ultrasonic welding), by molding the interface element integrally with the handle, or by any other desired mounting technique. An example of a disposable shaving system 400 is shown in
(34) A number of embodiments have been described. Nevertheless, it will be understood that various modifications may be made without departing from the spirit and scope of the disclosure.
(35) For example, the blade unit interface element could clip or snap onto the blade unit in any desired manner.
(36) Moreover, the openings in loops 22 may have any desired shape that will receive corresponding features on the handle interface element.
(37) In addition, while only one embodiment was shown configured to be disposable, any of the previously mentioned embodiments could also be configured to be disposable as well.
(38) Accordingly, other embodiments are within the scope of the following claims.