ROTARY ELECTRIC SHAVER
20230132864 ยท 2023-05-04
Inventors
- Kotaro IWAKURA (Matsumoto-shi, JP)
- Koichi ODAGIRI (Matsumoto-shi, JP)
- Yuta SUGIURA (Matsumoto-shi, JP)
Cpc classification
B26B19/146
PERFORMING OPERATIONS; TRANSPORTING
B26B19/386
PERFORMING OPERATIONS; TRANSPORTING
B26B19/14
PERFORMING OPERATIONS; TRANSPORTING
B26B19/145
PERFORMING OPERATIONS; TRANSPORTING
International classification
B26B19/14
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A rotary electric shaver includes a head connected to a blade setting base of a main body. The blade setting base has a setting part in which a plurality of blade units are disposed, and a blade frame that holds the setting part. An inner blade part of the blade unit has an inner blade member, and a base part joined to the inner blade member. An outer blade part of the blade unit has an annular outer blade member having a sliding contact surface and a plurality of slits formed in the circumferential direction, a disk-shaped cover, a ball, and a support. A part of the ball surrounded by the cover and the support protrudes from the cover.
Claims
1. A rotary electric shaver, comprising: a main body having a grip part and a blade setting base; a motor built in the main body and connected to a first driven shaft; and a head connected to the blade setting base, wherein in the blade setting base, a plurality of second driven shafts are connected to the first driven shaft, the head has a setting part in which a plurality of blade units are disposed, and a blade frame that holds the setting part, each of the blade units has an outer blade part and an inner blade part, the inner blade part has an inner blade member in which a plurality of blade edges are formed in a circumferential direction, and a base part joined to the inner blade member, the second driven shaft is connected to the base part, and the inner blade member is configured to rotate around an axis passing through the second driven shaft, the outer blade part has an annular outer blade member having a sliding contact surface with which the blade edge comes into sliding contact and having a plurality of slits formed in the circumferential direction, a disk-shaped cover disposed inside the outer blade member, a ball, and a support that supports the ball, the cover has a window having a smaller diameter than the ball, and a part of the ball surrounded by the cover and the support protrudes from the window.
2. The rotary electric shaver according to claim 1, wherein two to six balls are disposed in each of the outer blade parts, and all of the balls are disposed at positions deviated from the axis passing through the second driven shaft.
3. The rotary electric shaver according to claim 1, wherein the support has a ball receiving hole corresponding to the ball on a one-to-one basis and a plurality of claw parts formed at an equal interval in the circumferential direction to protrude from an inner peripheral side of the ball receiving hole, and each of the claw parts is in contact with the ball.
4. The rotary electric shaver according to claim 2, wherein the support has a ball receiving hole corresponding to the ball on a one-to-one basis and a plurality of claw parts formed at an equal interval in the circumferential direction to protrude from an inner peripheral side of the ball receiving hole, and each of the claw parts is in contact with the ball.
5. The rotary electric shaver according to claim 3, wherein in the ball receiving hole, discharge parts are respectively formed on both sides of each of the claw parts.
6. The rotary electric shaver according to claim 4, wherein in the ball receiving hole, discharge parts are respectively formed on both sides of each of the claw parts.
7. The rotary electric shaver according to claim 1, wherein the ball is made of metal, both the cover and the support are made of a resin, the cover is formed so that a plurality of pins protrude, the support has a plurality of through holes into which the pins are inserted, respectively, and the cover is fitted and assembled to the support.
8. The rotary electric shaver according to claim 1, wherein a first projection part is formed in a center of the base part, and a first hollow part is formed inside the first projection part, a second projection part is formed in a center of the support, and a second hollow part is formed inside the second projection part, and the second driven shaft is fitted to the first hollow part, and the first projection part is fitted to the second hollow part.
9. The rotary electric shaver according to claim 1, wherein three blade units are disposed in the head, and in the setting part, each groove part having a depth which allows swing movement of the blade unit is formed at an intermediate position between the blade unit and the blade unit.
10. The rotary electric shaver according to claim 1, wherein the blade setting base is connected to the grip part via a connection part, and the head is connected to the blade setting base to be capable of tilting with respect to the main body.
11. The rotary electric shaver according to claim 2, wherein the ball is made of metal, both the cover and the support are made of a resin, the cover is formed so that a plurality of pins protrude, the support has a plurality of through holes into which the pins are inserted, respectively, and the cover is fitted and assembled to the support.
12. The rotary electric shaver according to claim 2, wherein a first projection part is formed in a center of the base part, and a first hollow part is formed inside the first projection part, a second projection part is formed in a center of the support, and a second hollow part is formed inside the second projection part, and the second driven shaft is fitted to the first hollow part, and the first projection part is fitted to the second hollow part.
13. The rotary electric shaver according to claim 2, wherein three blade units are disposed in the head, and in the setting part, each groove part having a depth which allows swing movement of the blade unit is formed at an intermediate position between the blade unit and the blade unit.
14. The rotary electric shaver according to claim 2, wherein the blade setting base is connected to the grip part via a connection part, and the head is connected to the blade setting base to be capable of tilting with respect to the main body.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
DESCRIPTION OF EMBODIMENTS
[0024] Hereinafter, an embodiment according to the present invention will be described in detail with reference to the drawings. A rotary electric shaver 1 of the present embodiment has a head 4 having a plurality of blade units 5. As illustrated in
[0025] As illustrated in
[0026] The head 4 has a setting part 6 having a plurality of blade units 5, and a blade frame 7 that holds the setting part 6. As an example, three blade units 5 are disposed at a predetermined interval in the head 4. In the setting part 6, each groove part 6a having a depth which allows swing movement of the blade unit 5 is formed at an intermediate position between the blade unit 5 and the blade unit 5. In a configuration in which the three blade units 5 are disposed, three groove parts 6a are formed, and one end of each of the groove parts 6a is connected in a center of the setting part 6. The setting part 6 is configured as follows. The setting part 6 is pressed up due to a restoring force of a plate-shaped spring 41 disposed in the blade frame 7.
[0027]
[0028] Each of the blade units 5 has the outer blade part 8 and the inner blade part 9. The outer blade part 8 has an outer shaving surface 31a and an inner sliding contact surface 31b with which a blade edge 9a comes into sliding contact, and has the annular and metal-made outer blade member 31 in which a plurality of slits 31c having a size which enables hairs to enter are formed in the circumferential direction. In this invention, examples of the hairs include beards, mustache, whisker, and the like. The inner blade part 9 has a metal-made inner blade member 21 in which a plurality of the blade edges 9a are formed in the circumferential direction, and a resin-made base part 22 joined to the inner blade member 21. A first projection part 22d is formed in a center of the base part 22, and a first hollow part 22e is formed inside the first projection part 22d. A tip part of the second driven shaft 12 is fitted to the first hollow part 22e, the second driven shaft 12 is connected to the base part 22, and the inner blade member 21 is configured to rotate around an axis P1 of the second driven shaft 12. A technique in the related art can be applied to the outer blade part 8 and the inner blade part 9.
[0029] The disk-shaped and resin-made cover 32 is disposed inside the annular outer blade member 31. The cover 32 has a plurality of circular windows 32a having a smaller diameter than the ball 33, and has a plurality of pins 32b which are formed to protrude.
[0030] A plurality of the balls 33 are disposed in each of the outer blade members 31. As an example, three balls 33 are disposed at positions deviated from the axis P1 of the second driven shaft 12. As an example, the ball 33 is made of metal, and is made of stainless steel, aluminum, steel, titanium, a copper alloy, a nickel alloy, or other known metal or alloys. A surface of the ball 33 can be colored by means of plating or by using an anodic oxide film, for example. The ball 33 can be made of a resin or ceramics.
[0031] A second projection part 34d is formed in the center of the disk-shaped and resin-made support 34, and a plurality of through holes 34a into which the pins 32b are inserted are formed around the second projection part 34d. As an example, the through hole 34a is set to have a hole diameter which enables the pin 32b to be fitted in a state where the pin 32b is inserted into the through hole 34a. The support 34 has a ball receiving hole 34b corresponding to the ball 33 on a one-to-one basis. The support 34 has a plurality of claw parts 34c protruding from an inner peripheral side of the ball receiving hole 34b at an equal interval in the circumferential direction. Each of the claw parts 34c is in contact with the ball 33 to support the ball 33 from below. As an example, the number of the disposed claw parts 34c is three to five. The cover 32 is fitted and assembled to the support 34 in a state where each of the balls 33 is supported from below. A part of the ball 33 surrounded by the cover 32 and the support 34 is configured to protrude from the window 32a.
[0032] The ball receiving hole 34b has discharge parts 34f respectively formed on both sides of each of the claw parts 34c. In this manner, even when a shaving waste enters the inside through a gap formed around the ball 33 when the ball 33 is operated in an upward-downward direction, the entering shaving waste passes through the discharge part 34f, passes through the inner blade part 9, and is collected in a lower shaving waste discharge area. Accordingly, it is possible to prevent accumulation of the shaving waste which hinders an operation of the ball 33. In addition, each of the discharge parts 34f has a shape in which a position between the claw parts 34c and the claw parts 34c which are disposed adjacent to each other in the circumferential direction is enlarged. Accordingly, the claw part 34c can have a shape which is likely to follow an operation in the upward-downward direction of the ball 33.
[0033] The second projection part 34d is formed in the center of the disk-shaped and resin-made support 34, and a second hollow part 34e is formed inside the second projection part 34d. The first projection part 22d is fitted to the second hollow part 34e, and the cover 32 and the support 34 are configured to rotate around the axis P1 of the second driven shaft 12 in conjunction with rotation of the inner blade member 21.
[0034] According to the present embodiment, the present invention realizes the rotary electric shaver 1 having the following structure. In a configuration in which the plurality of blade units 5 are disposed in the head 4, a user feels a smooth sense of touch on the skin by disposing the ball 33 in the outer blade part 8, and the inner blade member 21 can safely rotate so that the ball 33 is likely to rotate. In addition, the cover 32 and the support 34 rotate while supporting the ball 33. In this manner, the ball 33 rolls. Accordingly, the ball 33 can be positively rotated. The rotary electric shaver 1 achieves excellent shaving performance even in a largely undulating area from a chin to a face.
[0035] The present invention is not limited to the embodiment described above, and various modifications can be made within the scope not departing from the present invention.