This invention relates to vibrator motors, and more particularly to vibrator motors for hair clippers, massagers, and the like which are more efficient than conventional vibrator motors.
Vibrator motors have been used in electric hair clippers for many years. Vibrator motors seen in U.S. Pat. No. 5,787,587, incorporated by reference in its entirety, improved on that technology. However, even those motors left room for further improvement.
Accordingly, one object of this invention is to provide new and improved vibrator motors.
Another object is to provide new and improved vibrator motors for hair clippers, massagers and the like.
Yet another object is to provide new and improved vibrator motors which are more efficient than conventional vibrator motors.
In keeping with one aspect of an embodiment of the invention, a vibrator motor in a hair clipper has a stationary piece and a moving piece. The stationary piece has a primary leg and at least one secondary leg. A coil has an opening that allows the coil to fit over the primary leg. A flange is then press fit onto the leg so that the coil is captured on the primary leg. The flange provides a magnetic pole face that is larger than the opening in the coil, which increases the efficiency of the motor.
In another aspect, the flange is press fit in a single operation by pressing a primary prong into a primary socket, and pressing two secondary prongs into secondary sockets. The secondary prongs are guided inwardly as they enter the secondary sockets, which secures the primary socket around the primary prong.
In still another aspect, a drive arm is secured to an arm of the moving piece. The drive arm moves a reciprocating blade in the hair clipper. The arm of the moving piece is angled in relation to the reciprocating blade to put even pressure on the moving blade.
The above mentioned and other features of this invention and the manner of obtaining them will become more apparent, and the invention itself will be best understood by reference to the following description of an embodiment of the invention taken in conjunction with the accompanying drawings, in which:
As seen in
A stationary magnetically permeable piece such as a stack of stationary laminations 118 (
As seen in
A coil 138 is secured to the stationary laminations 118 (
Referring again to
The moving laminations 122 (
The moving laminations 122 (
A second arm 166 is provided along the proximate side 150. The arm 166 also extends generally parallel to the direction of movement 126, and extends from the transverse back 164.
The transverse back 164 has a primary moving pole face 165. The arm 160 has a first secondary moving pole face 167, and the arm 166 has a second secondary moving pole face 169.
Referring to
The stationary laminations 118 have a primary leg 180 between a first secondary leg 182 and the second secondary leg 184. The primary leg 180 extends from a transverse spine 186 that extends along the remote side 176. The first secondary leg 182 extends along the far side 172 from an end of the transverse spine 186. The first secondary leg 182 is generally parallel to the first arm 160 of the moving laminations. The second secondary leg 184 extends along the near side 170 generally parallel to the second arm 166 of the moving laminations. The second secondary leg 184 extends from the transverse spine 186.
The primary leg 180 has a primary pole face 187. The first secondary leg 182 has a first secondary pole face 188, and the second secondary leg 184 has a second secondary pole face 189.
Referring now to
The coil 138 is placed over the mid-section 185 of the primary leg 180 before the flange 200 is secured to the leg 180, as seen in
The pole face 188 has a cross-sectional area of C4 as viewed in
The legs of the stationary laminations and the arms of the moving laminations form two paths 220, 222 for the flow of magnetic flux, as seen in
Each of the air gaps forms a magnetic flux zone between the complementary open faces of the legs and arms. Referring again to
The pole faces 187, 188 and 189 of the stationary laminations 118 are shown in
Referring again to
The drive arm 128 has a first side 312 located adjacent to the first secondary moving pole face 167 and intersecting the first arm 160 at a first intersection 313 of the side 312 and the edge 315.
The drive arm 128 has a second side 314 located away from the first secondary moving pole face 167 and intersecting the first arm 160 at a second intersection 316 of the side 314 and the edge 315. A first distance D1 between the cutting line 304 and the first intersection 313, measured parallel to the center line 306, is less than a second distance D2 between the cutting line 304 and the second intersection 316, also measured parallel to the center line 306.
The magnetic flux zone 224 has three major air gaps at faces 320a, 320b, 320c, and two minor air gaps at faces 322a, 322b, as seen in
While the principles of the invention have been described above in connection with specific apparatus and applications, it is to be understood that this description is made only by way of example and not as a limitation on the scope of the invention.
This application is a divisional of application Ser. No. 12/852,862, filed Aug. 9, 2010, now U.S. Pat. No. 8,276,279 B2.
Number | Name | Date | Kind |
---|---|---|---|
1558729 | Wahl | Oct 1925 | A |
1654840 | Shivers | Jan 1928 | A |
1798756 | Redfield | Mar 1931 | A |
1834737 | Redfield | Dec 1931 | A |
1838836 | Jeffrey et al. | Dec 1931 | A |
1891486 | Wahl | Dec 1932 | A |
2240890 | Kavle | May 1941 | A |
2283551 | Hanley | May 1942 | A |
2521653 | Ruud | Sep 1950 | A |
2565697 | Odstrcil | Aug 1951 | A |
2595718 | Snavely | May 1952 | A |
2699509 | Lee et al. | Jan 1955 | A |
2747113 | Wahl | May 1956 | A |
2759114 | Rolli et al. | Aug 1956 | A |
2814866 | Bagno | Dec 1957 | A |
2877364 | Wahl et al. | Mar 1959 | A |
2967253 | Wahl | Jan 1961 | A |
2986662 | Wahl | May 1961 | A |
3010036 | Wahl | Nov 1961 | A |
3026430 | Wahl | Mar 1962 | A |
3114851 | Santi | Dec 1963 | A |
3272998 | Spohr | Sep 1966 | A |
3296468 | Townshend | Jan 1967 | A |
3346828 | Buschman | Oct 1967 | A |
3357101 | Davis | Dec 1967 | A |
3443137 | McElroy | May 1969 | A |
3493793 | Niemela | Feb 1970 | A |
3570122 | Williams | Mar 1971 | A |
3679921 | Jank | Jul 1972 | A |
3735297 | Pfenning | May 1973 | A |
3793129 | Doggart et al. | Feb 1974 | A |
3840760 | Boer | Oct 1974 | A |
3898732 | Krainer | Aug 1975 | A |
3906263 | Chen et al. | Sep 1975 | A |
4240200 | Bukoschek | Dec 1980 | A |
4270509 | Tharman | Jun 1981 | A |
4392092 | Gassner | Jul 1983 | A |
4506182 | Rohdin | Mar 1985 | A |
4897916 | Blackburn | Feb 1990 | A |
5047745 | Marriott et al. | Sep 1991 | A |
2348556 | Matthias | May 1994 | A |
5671526 | Merlano | Sep 1997 | A |
5780951 | Stephens | Jul 1998 | A |
5787587 | Wahl et al. | Aug 1998 | A |
5860207 | Knight et al. | Jan 1999 | A |
6023119 | Asao | Feb 2000 | A |
6060978 | Marquardt | May 2000 | A |
6559563 | Shimizu et al. | May 2003 | B1 |
6658740 | Habben | Dec 2003 | B2 |
D497452 | Nielsen et al. | Oct 2004 | S |
6800983 | Iijima et al. | Oct 2004 | B1 |
6933630 | Kraus et al. | Aug 2005 | B2 |
7239053 | Brill | Jul 2007 | B2 |
7646281 | Diekmann et al. | Jan 2010 | B2 |
8276279 | Heckman et al. | Oct 2012 | B2 |
20020170180 | Brill et al. | Nov 2002 | A1 |
20100300480 | Pilcher et al. | Dec 2010 | A1 |
20100307009 | Schwer et al. | Dec 2010 | A1 |
Number | Date | Country |
---|---|---|
102008003135 | Jul 2009 | DE |
102008003136 | Jul 2009 | DE |
0 802 614 | Oct 1997 | EP |
1240984 | Sep 2002 | EP |
2 194 632 | Jun 2010 | EP |
885711 | Dec 1961 | GB |
10056767 | Feb 1998 | JP |
2002292161 | Oct 2002 | JP |
2012035084 | Feb 2012 | JP |
WO 0027599 | May 2000 | WO |
Entry |
---|
Partial EP Search Report issued in EP App. No. 11 17 6639, dated Nov. 16, 2011. |
Extended European Search Report dated Mar. 16, 2012 (in English), issued in EP App. No. 11 17 6639. |
Extended European Search Report dated Mar. 9, 2012 (in English), issued in EP App. No. 11 17 6639. |
Number | Date | Country | |
---|---|---|---|
20120311871 A1 | Dec 2012 | US |
Number | Date | Country | |
---|---|---|---|
Parent | 12852862 | Aug 2010 | US |
Child | 13593109 | US |