1. Field of the Invention
The present invention relates to a personal grooming apparatus. More particularly, the present invention relates to a hair clipper and blade assembly. The blade assembly includes a first blade set and a releasably mounted second blade set. The second blade set may be detached depending on the intended use of the apparatus.
2. Description of the Related Art
Hair clipper apparatii are known in the art with examples of such devices being disclosed in commonly assigned U.S. Pat. Nos. 6,536,116 and 6,742,262, U.S. Design Pat. Nos. D464,466, D458,411, D456,950, and D653,812 and U.S. Patent Publication No.: 20020162226, the entire contents of each of these disclosures being hereby incorporated by reference herein. These devices or tools have proven to be quite effective for their intended uses.
Accordingly, the present disclosure relates to a personal grooming apparatus including a handle defining a central longitudinal axis, first and second blade sets mountable relative to the handle with each blade set including a stationary blade member and a movable blade member, and a drive mechanism disposed within the handle and operatively coupled to the movable blade members of the first and second blade sets. The drive mechanism is operable to cause corresponding reciprocating movement of the movable blade members relative to the stationary blade members of each of the first and second blade sets. The second blade set may be releasably mountable to the first blade set to improve cutting functions and/or improve versatility of the apparatus. The first and second blade set each may include a housing for at least partially accommodating respective stationary and movable blade members.
The drive mechanism may include a rotating eccentric cam shaft operatively coupled to the movable blade members of the first and second blade sets such that rotational movement of the eccentric cam shaft causes corresponding reciprocating movement of the movable blade members. The movable blade member of the first blade set may be coupled to the eccentric cam shaft and the movable blade member of the second blade set may be coupled to the movable blade member of the first blade set.
The second blade set may include a drive element which is operatively coupled to the movable blade member thereof and to the movable blade member of the first blade set whereby reciprocating movement of the movable blade member of the first blade set causes corresponding reciprocating movement of the drive element to effect reciprocating movement of the movable blade member of the second blade set. The drive element may include a drive post depending outwardly relative to the movable blade member of the second drive set. The drive post may extend within the housing of the first blade set and is operatively couplable to the movable blade member of the first blade set. The first blade set may include a reciprocating member coupled to the movable blade member and to the cam shaft of the drive mechanism.
In accordance with another aspect of the present disclosure, the first and second blade sets are movable relative to each other between an operative condition and a release position where said first and second blade sets may be released. The first and second blade sets may be normally biased toward the operative condition thereof. One of the first and second blade sets includes a main locking latch. The main locking latch is adapted for movement between a lock position corresponding to the operative condition of the first and second blades sets and an unlock position corresponding to the release position of the first and second blades sets. The main locking latch may be normally biased toward the lock position. The other of the first and second blade sets may define a latch shelf where the locking latch is engagable with the latch shelf during movement between the lock and unlock positions thereof. At least one supplemental latch depends outwardly from the housing of the one of the first and second blade sets. The at least one supplemental latch is received within a correspondingly dimensioned supplemental latch opening in the housing of the other of the first and second blade sets whereby movement of the first and second blade sets to the release position permits removal of the at least one supplemental latch from the correspondingly dimensioned supplemental latch opening to permit removal of the second blade set from the first blade set. At least two of said supplemental latches may depend outwardly from the housing of the one of the first and second blade sets and received within correspondingly dimensioned supplemental latch openings in the housing of the other of the first and second blade sets. The first blade set may be releasably mountable to the handle.
In accordance with another aspect of the present disclosure, a blade assembly for use with a hair clipper includes a first blade set for mounting to the hair clipper and a second blade set for mounting to the first blade set. The first blade set includes a first housing, a first movable blade member and a first stationary blade member. The first moveable member is adapted for reciprocal movement relative to the stationary blade member. The second blade set includes a second housing, a second movable blade member and a second stationary blade member. The second housing is movable between an operative condition mounted to the first housing of the first blade set with the second movable blade member operatively coupled to the first movable blade member, and a release condition permitting release from the first housing. The second blade set includes a drive element operatively coupled to the second movable blade member and to the first movable member when in the operative condition thereof whereby movement of the first movable blade member causes corresponding reciprocating movement of the second movable blade member.
The housing of the second blade set may include a main locking latch. The main locking latch is adapted for movement between a lock position corresponding to the operative condition of the first and second blades sets and an unlock position corresponding to the release position of the first and second blades sets. The main locking latch may be normally biased toward the lock position. At least one supplemental latch may depend outwardly from the housing of the second blade set. The at least one supplemental latch is received within a correspondingly dimensioned supplemental latch opening in the housing of the first blade set whereby movement of the first and second blade sets to the release position permits removal of the at least one supplemental latch from the correspondingly dimensioned supplemental latch opening to permit removal of the second blade set from the first blade set.
Various embodiments of the present disclosure are described hereinbelow with references to the drawings, wherein:
Referring to the drawings and, in particular, to
Grooming apparatus 10 includes handle 12 dimensioned for engagement by the subject. Handle 12 may be elongated and incorporate surface contours 14 to facilitate manipulation by the subject. Disposed within the handle 12 is a motor, shown schematically as 16, and associated circuitry, to control operation of the motor. As best depicted in
With reference now to
The first blade set 102 further includes a reciprocating member 114 defining an opening or recess 116. The recess 116 receives the eccentric drive or cam post 20 connected to the drive shaft 18 which is coupled to the motor 16 and circuitry. Upon actuation of the motor 16, the eccentric cam post 20 rotates with the drive shaft 18 and within the recess 116 of the reciprocating member 114 to cause reciprocating movement of the reciprocating member 114 in the direction of directional arrows “k”. (See
The reciprocating member 114 includes a pair of opposed mounting posts 118 at each end. The mounting posts 118 are received within corresponding openings 120 within the first movable blade 110 to connect the reciprocating member 114 to the first movable blade 110. Accordingly, reciprocating translating movement of the reciprocating member 114 is directly imparted to the first movable blade 110 during operation of the motor 16. The first stationary blade 108 is secured within the first blade housing 106 through conventional means. The first stationary blade 108 is also fixed relative to the first movable blade 110, thus cooperating with the first movable blade 110 to trim or cut hair. Any known means for securing the first stationary blade 108 are envisioned. The first blade housing 106 further includes a generally rectangular shaped opening 122 which is adjacent the second blade set 104 when the blade assembly 100 is in the assembled condition—the significance of which will be detailed hereinbelow.
With reference now to
The second blade housing 120a further includes a second reciprocating or drive member 132 having a generally cylindrically shaped second drive post 134 depending outwardly therefrom. The lower segment 134a of the drive post 134 may be received within post aperture 135 of the second movable blade 126 to fix the drive member 132 to the second movable blade 126. Other means for securing the drive member 132 to the second movable blade 126 are also envisioned including the use of adhesives or with the use of a plurality of mounting posts (not shown) depending from the drive member 132 which are received within apertures 137 of the second movable blade 126.
A securing element 136 is mountable to the second housing 122 to retain the second reciprocating or drive member 132 against the second housing 122 while permitting reciprocating movement of the drive member 132 and the second movable blade 126. In one embodiment, the securing member 136 includes a cross beam 138 and two opposed longitudinal beams 140 extending from the cross beam 130. The longitudinal beams 140 define an angled or offset region which is positioned over the second movable blade 126. A pair of fasteners or screws 142 extends through openings in the cross beam 138 to be received (e.g., threadably) within mounting posts 146 of the second blade housing 122. With this arrangement, the second reciprocating member 132 and the second movable blade 126 are each mounted relative to the second blade housing 120a. The second reciprocating member 132 and the second movable blade 126 are capable of reciprocal movement in the direction of directional arrow “k”. Other means for securing the second reciprocating member 132 relative to the second housing 120 while permitting reciprocal movement are also envisioned including torsional spring arrangements or the like.
With reference to
With continued reference to
With reference now to
Although the illustrative embodiments of the present disclosure have been described herein with reference to the accompanying drawings, the above description, disclosure, and figures should not be construed as limiting, but merely as exemplifications of particular embodiments. It is to be understood, therefore, that the disclosure is not limited to those precise embodiments, and that various other changes and modifications may be effected therein by one skilled in the art without departing from the scope or spirit of the disclosure.
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Number | Date | Country |
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WO 2009062045 | May 2009 | WO |
Number | Date | Country | |
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20140053412 A1 | Feb 2014 | US |