Floating shaver head easy to clean and shaver
By adopting the elastic mounting structure of the floating mesh seat and the blade seat in the shaver head, combined with the drive structure and water flow design, the problems of the cleaning complexity and service life of existing shavers are solved, and convenient cleaning and efficient shaving effects are achieved.
Patent Information
- Application Number
- CN202422939715.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-11-01
- Filing Date
- 2024-11-29
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-11-29
AI Technical Summary
Existing razors require frequent opening and closing of the blade cover or removal of the blade head when cleaning, which causes wear of components, affects the service life and shaving effect, and is complicated to operate.
An easy-to-clean floating razor head is designed. The mesh seat and blade seat can move up and down through an elastic mounting structure. The driving structure drives the blade to move left and right. Water can directly enter the inner cavity for comprehensive flushing, avoiding the need to open and close the blade cover.
It enables convenient cleaning without opening or removing the cutter head, ensuring shaving effect and service life, and improving shaving comfort and ease of operation.
Smart Images

Figure CN223407019U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of shavers, in particular to an easy-to-clean floating shaver head and a shaver. Background Art
[0002] A razor is a self-service tool used for shaving, primarily by adult men. It helps men maintain a neat facial appearance, removing unwanted beard and hair, sharpening facial features, and enhancing their overall appearance and demeanor. A neatly groomed face often creates a positive first impression and contributes to better performance in both the workplace and social settings.
[0003] After using the razor, the beard inside needs to be cleaned to ensure hygiene and extend the service life. Generally speaking, with the help of water flushing, the beard remaining inside the razor head can be removed more thoroughly to achieve an ideal cleaning effect. Existing razors usually need to open the blade cover or remove the blade head for flushing when cleaning; the current problem is that frequent opening and closing of the blade cover to install and remove the blade head can easily cause wear between components, affecting the tightness of the blade head connection. In the long run, it may cause the blade head to loosen, causing shaking and abnormal noise during shaving, affecting the shaving effect, reducing the overall durability of the razor, and shortening its expected service life; in addition, for some users, the process of disassembling and assembling the razor head may be difficult, which increases the complexity of use.
[0004] Therefore, how to design an easy-to-clean floating razor head and a razor that are easy to clean, easy to operate, and will not affect the service life of the razor is a technical solution that has not yet been solved in the prior art. Utility Model Content
[0005] Therefore, the technical problem to be solved by the present invention is to overcome the technical defects of the prior art razor that the blade cover needs to be opened and closed to install and remove the blade head when flushing, which can easily cause the blade head to loosen after long-term use, affecting the shaving effect and durability, thereby providing an easy-to-clean floating razor head and razor that are easy to clean, easy to operate, and do not affect the service life of the razor.
[0006] The utility model also provides a shaver.
[0007] To this end, the utility model provides an easy-to-clean floating razor head and a razor, comprising:
[0008] A main body frame having an inner cavity, the left and right ends of the inner cavity are open, the top has a top installation opening communicating with the inner cavity, and the bottom has a bottom installation opening communicating with the inner cavity;
[0009] At least two mesh seats are arranged in parallel and are respectively mounted in the inner cavity so as to be movable up and down via a first elastic mounting structure;
[0010] A mesh is wrapped and mounted on the mesh seat, forming a blade mounting space between the mesh seat and the mesh seat;
[0011] In the initial state, under the elastic force of the first elastic mounting structure, the top of the mesh seat on which the mesh is mounted can extend outward from the top mounting opening to a certain height; when pressed downward by an external force, the mesh seat on which the mesh is mounted can overcome the elastic force of the first elastic mounting structure and move downward, and can return to the initial state after the external force disappears;
[0012] a blade seat, provided in one-to-one correspondence with the mesh seat, and mounted on the mesh seat movably up and down via a second elastic mounting structure;
[0013] a blade, mounted on the blade seat;
[0014] Under the elastic force of the second elastic mounting structure, the blade is in contact with the inner side surface of the mesh;
[0015] a drive structure, mounted inside the inner cavity and fixedly connected to the blade holder, with a bottom end extending outward from the bottom mounting opening and adapted to be connected to a drive motor; after being driven by the drive motor, the drive structure can drive the blade holder to move left and right, thereby driving the blade to move left and right relative to the mesh;
[0016] The bottom shell is clamped below the main frame and has a bottom shell opening for allowing the bottom end of the driving structure to extend downward.
[0017] As a preferred solution, the main frame includes:
[0018] The main body bottom plate is rectangular, with the bottom installation opening opened in the middle;
[0019] There are two main body side panels, which are integrally connected to the two long sides of the main body bottom plate;
[0020] The main body top plate has two sides fixedly connected to the tops of the two main body side plates;
[0021] Preferably, the middle portion of the main body top plate protrudes upward in an arc shape, and the top installation opening is opened on the arc-shaped protruding portion of the main body top plate.
[0022] As a preferred solution, the first elastic mounting structure includes:
[0023] A first mounting through hole is provided at the end of the mesh seat, wherein the inner diameter of the lower half is larger than the inner diameter of the upper half;
[0024] a first guide shaft, passing through the first mounting through hole and having a bottom end fixedly connected to the main frame; an outer diameter of the first guide shaft being substantially the same as an inner diameter of an upper half of the first mounting through hole;
[0025] The first elastic member is sleeved on the first guide shaft, and the upper section is installed inside the lower half of the first installation through hole.
[0026] As a preferred solution, it further includes a first limiting boss formed on the blade seat; in an initial state, it is located below the top mounting opening.
[0027] As a preferred solution, a number of clamping columns are fixedly provided on both sides of the mesh seat in the length direction. The mesh is in an inverted U shape, and a number of clamping through holes that can match and clamp with the clamping columns are formed on both side walls of the mesh.
[0028] As a preferred solution, the second elastic mounting structure includes:
[0029] a first positioning shaft formed on the bottom surface of the blade seat;
[0030] a second positioning shaft, vertically opposite to the first positioning shaft, formed on the mesh seat;
[0031] One end of the second elastic member is sleeved on the first positioning shaft, and the other end is sleeved on the second positioning shaft, so as to realize the elastic installation of the blade seat and the mesh seat.
[0032] As a preferred solution, the bottom of the blade seat is provided with a U-shaped mounting groove with an opening facing downwards;
[0033] Opposite to the U-shaped mounting groove, the mesh seat is provided with a mounting channel that passes through from top to bottom;
[0034] The connecting rod is fixedly arranged on the driving structure, passes through the installation channel upwards, and is inserted and fixed in the U-shaped installation groove.
[0035] As a preferred solution, the installation channels on two adjacent mesh seats are arranged at the same position;
[0036] The connecting rods are arranged opposite to each other on the driving structure and are respectively inserted into the mounting channels on the two adjacent mesh seats, and then fixedly engaged with the U-shaped mounting grooves provided at the bottom of the blade seat;
[0037] Preferably, the clamping posts on two adjacent mesh seats are arranged opposite to each other and can be slidably abutted up and down;
[0038] Preferably, the inner side surface of the connecting support rod is connected in sliding contact with the corresponding side surface of the installation channel of the mesh seat.
[0039] As a preferred solution, the blade is mounted on the blade holder via a sliding clamping structure; the sliding clamping structure comprises:
[0040] There are at least two first guide blocks, each formed on the two outer side walls of the blade seat;
[0041] a first guide groove, opposite to the first guide block, and formed on a side wall of the blade;
[0042] There are at least two engaging posts, formed on the two outer side walls of the blade seat respectively;
[0043] The engaging hole is opposite to the engaging column and is formed on the side wall of the blade. The width of the engaging hole at the opening position is smaller than the diameter of the engaging column.
[0044] As a preferred solution, the driving structure includes:
[0045] A main rod, the axial direction of which is parallel to the axial direction of the blade seat;
[0046] At least one pair of connecting rods are integrally formed on the main rod and form a cross structure with the main rod;
[0047] There are two downward extending connecting hooks, which are integrally formed below the main rod and located on both sides of the connecting rod;
[0048] A card connector, comprising a cross-engaging block for engaging with the cross-intersection structure, two connecting plates integrally connected to the bottoms of both sides of the cross-engaging block, extension plates respectively formed below the two connecting plates and forming an inverted U-shaped vibration motor mounting groove with the bottom of the cross-engaging block, upper extending card hooks respectively formed on the two connecting plates for engaging with the lower extending card hooks, and a card hook through hole provided between the upper extending card hook and the cross-engaging block for allowing the lower extending card hook to extend downward;
[0049] The second guide blocks are a pair, the bottoms of which are engaged with both sides of the bottom mounting opening, and are provided with second guide grooves for guiding the movement of the main rod.
[0050] As a preferred solution, it further includes a bottom shell, which is clamped below the bottom plate of the main body and has a bottom shell opening for allowing the two extension plates to extend downward.
[0051] As a preferred solution, a long strip opening is formed in the middle of the top of the main body side panel, and both ends of the main body side panel are fixedly connected to the main body top panel;
[0052] A row of static teeth is formed on the top plate of the main body opposite to the long strip opening;
[0053] The movable tooth piece is arranged below the top plate of the main body, the middle part of which is hollowed out for the mesh seat to pass through, and movable teeth capable of cooperating with the static teeth are formed on both sides;
[0054] An elastic support member, comprising a support plate supported on the bottom plate of the main body, and side support plates integrally formed on both sides of the support plate and elastically supported upwardly below the movable gear plate;
[0055] The power rod has a bottom end fixedly arranged on the driving structure and a top fixedly connected to the bottom of the movable gear plate, and is used to drive the movable gear plate to move relative to the main body top plate, and then drive the movable teeth to move relative to the static teeth to achieve cutting action.
[0056] The utility model also provides a shaver, comprising a shaver main body and a shaver head mounted on the shaver main body, characterized in that the shaver head is any one of the shaver heads described above.
[0057] As a preferred solution, the shaver head is mounted on the shaver main body via a head mounting structure; the head mounting structure includes:
[0058] There are two cutter head connecting rods, which are fixedly arranged on both sides of the shaver main body and have a first connecting through hole;
[0059] The cutter head connecting plate is fixedly arranged on the main body frame and is provided with a second connecting through hole;
[0060] A cutter head connecting shaft, passing through the first connecting through hole and the second connecting through hole to rotatably mount the cutter head connecting rod and the cutter head connecting plate;
[0061] A torsion spring is sleeved on the cutter head connecting shaft at a position between the cutter head connecting rod and the cutter head connecting plate, with one end clamped in the first limiting groove of the cutter head connecting rod and the other end clamped in the second limiting groove of the bottom shell fixedly mounted on the main frame.
[0062] The technical solution provided by the utility model has the following advantages:
[0063] The utility model discloses an easy-to-clean floating razor head, comprising a main body frame, a mesh seat, a mesh, a blade seat, a blade, a driving structure and a bottom shell; wherein the main body frame has an inner cavity, the left and right ends of the inner cavity are open, the top has a top mounting opening connected to the inner cavity, and the bottom has a bottom mounting opening connected to the inner cavity; there are at least two mesh seats, which are arranged in parallel and can be installed in the inner cavity up and down by a first elastic mounting structure; the mesh is wrapped and installed on the mesh seat, and a blade mounting space is formed between the mesh seat and the blade mounting space; in the initial state, under the elastic force of the first elastic mounting structure, the top of the mesh seat with the mesh installed can extend outward to a certain height from the top mounting opening; when pressed down by an external force, the mesh seat with the mesh installed It can overcome the elastic force of the first elastic mounting structure and move downward, and can return to its initial state after the external force disappears; the blade seat and the mesh seat are arranged in a one-to-one correspondence, and can be installed on the mesh seat so as to move up and down through the second elastic mounting structure; the blade is installed on the blade seat; under the elastic force of the second elastic mounting structure, the blade is in contact with the inner side of the mesh; the driving structure is installed inside the inner cavity, fixedly connected to the blade seat, and the bottom end extends outward from the bottom mounting port and is suitable for connection with the driving motor; after the driving structure is driven by the driving motor, it can drive the blade seat to move left and right, and then drive the blade to move left and right relative to the mesh; the bottom shell is clamped under the main frame, and has a bottom shell opening for the bottom end of the driving structure to extend downward.
[0064] During shaving using the razor head of the present invention, the mesh seat with the mesh installed and the blade seat with the blade installed can be adaptively adjusted according to the user's facial contour or the undulations of the skin surface under the elastic action of the first elastic mounting structure and the second elastic mounting structure respectively. During shaving, they can float and fit the skin to ensure uniform pressure on the skin, thereby improving the comfortable experience during shaving and ensuring the shaving effect.
[0065] The utility model discloses an easy-to-clean floating razor head. Both sides of the main frame are open. When rinsing the razor head, water flows inward from the open opening on one side of the main frame, and flows out from the open opening on the other side after passing through the inner cavity. This design of the main frame enables the water flow to reach every corner of the inner cavity without any hindrance, thereby achieving a comprehensive rinsing effect. The utility model discloses an easy-to-clean floating razor head. Both sides of the main frame are open. When rinsing the razor head, water flows inward from the open opening on one side of the main frame, and flows through the inner cavity through the open opening on the other side. This design of the main frame enables the water flow to reach every corner of the inner cavity without any hindrance, thereby achieving a comprehensive rinsing effect. The utility model discloses an easy-to-clean floating razor head. The razor head can be cleaned without opening or removing the razor head, which is very convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0066] In order to more clearly illustrate the technical solutions in the prior art or the specific embodiments of the present invention, the following briefly introduces the drawings used in the description of the prior art or the specific embodiments.
[0067] Figure 1 It is a schematic diagram of the overall structure of the easy-to-clean floating shaver head of the utility model.
[0068] Figure 2 yes Figure 1 Another stereoscopic view of .
[0069] Figure 3 yes Figure 1 Schematic diagram of the structure of the main frame.
[0070] Figure 4 yes Figure 1 Schematic diagram of the structure after the mesh seat with the mesh installed and the blade seat with the blade installed are assembled.
[0071] Figure 5 yes Figure 4 Schematic diagram of the explosion structure of the middle mesh and mesh seat.
[0072] Figure 6 yes Figure 4 Another stereoscopic view of .
[0073] Figure 7 yes Figure 4 sectional view of .
[0074] Figure 8 yes Figure 4 Schematic diagram of the explosion structure.
[0075] Figure 9 yes Figure 1 Schematic diagram of the drive structure.
[0076] Figure 10 yes Figure 9 Schematic diagram of the explosion structure.
[0077] Figure 11 yes Figure 1 Another stereoscopic view of .
[0078] Figure 12 yes Figure 11 Schematic diagram of the enlarged structure of part A.
[0079] Figure 13 It is a structural diagram of a shaver head assembled on a shaver host.
[0080] Figure 14 yes Figure 13 Schematic diagram of the enlarged structure of part B.
[0081] Reference numerals: 1, main frame; 11, inner cavity; 12, top mounting opening; 13, bottom mounting opening; 14, main body bottom plate; 15, main body side plate; 16, main body top plate; 17, long strip opening;
[0082] 2. Mesh seat; 21. First mounting through hole; 22. First guide shaft; 23. First elastic member; 24. Clamping column; 25. Mounting channel; 26. First limiting boss;
[0083] 3. Blade seat; 31. First positioning axis; 32. Second positioning axis; 33. Second elastic member; 34. U-shaped mounting groove;
[0084] 4. Blade; 41. First guide block; 42. First guide groove; 43. Engaging column; 44. Engaging hole;
[0085] 5. Mesh; 51. Blade installation space; 52. Card connection hole;
[0086] 6. Main rod; 61. Connecting rod; 62. Lower connecting hook; 63. Second guide block; 64. Second guide groove; 65. Bottom shell; 66. Bottom shell opening; 67. Power rod;
[0087] 7. Card connector; 71. Cross card block; 72. Connecting plate; 73. Motor mounting slot; 74. Extension plate; 75. Upper extending card hook; 76. Card hook through hole;
[0088] 8. Stationary teeth; 81. Moving teeth; 82. Moving teeth; 83. Elastic support member; 84. Support plate; 85. Side support plate;
[0089] 9. Shaver main unit; 91. Cutting head connecting rod; 92. First connecting through hole; 93. Cutting head connecting plate; 94. Second connecting through hole; 95. Cutting head connecting shaft; 96. Torsion spring; 97. First limiting groove; 98. Second limiting groove. DETAILED DESCRIPTION
[0090] In order to enable those skilled in the art to better understand this solution, the following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without making creative efforts should fall within the scope of protection of this application.
[0091] It should be noted that the terms "first," "second," and the like in the claims and description of this application are used to distinguish similar objects, and are not used to describe a particular order or precedence. In addition, the terms "including," "having," and any variations thereof are intended to cover non-exclusive inclusions. For example, a process, method, system, product, or apparatus that includes a series of steps or units is not limited to those steps or units explicitly listed, but may also include other steps or units not explicitly listed or inherent to such process, method, product, or apparatus.
[0092] In the present application, the terms "upper", "lower", "left", "right", "front", "back", "top", "bottom", "inside", "outside", "middle", "vertical", "horizontal", "lateral", "longitudinal" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings. These terms are mainly intended to better describe the present application and its embodiments, and are not intended to limit the indicated devices, elements or components to having a specific orientation, or to be constructed and operated in a specific orientation. Moreover, in addition to being used to indicate orientations or positional relationships, some of the above terms may also be used to indicate other meanings. For example, the term "upper" may also be used to indicate a certain dependency or connection relationship in certain cases. For those skilled in the art, the specific meanings of these terms in the present application can be understood according to the specific circumstances. In addition, the term "multiple" should mean two or more. It should be noted that the embodiments in the present application and the features in the embodiments may be combined with each other unless there is a conflict.
[0093] The present application will be described in detail below with reference to the accompanying drawings and in combination with embodiments. Example 1
[0094] This embodiment provides an easy-to-clean floating razor head. Figure 1 、 2, 4, 5 and 9, comprising: a main frame 1, a mesh seat 2, a mesh 5, a blade seat 3, a blade 4, a driving structure and a bottom shell 65; wherein the main frame 1 has an inner cavity 11, the left and right ends of the inner cavity 11 are open, the top has a top mounting port 12 connected to the inner cavity 11, and the bottom has a bottom mounting port 13 connected to the inner cavity 11; there are at least two mesh seats 2, which are arranged in parallel and can be installed in the inner cavity 11 movably up and down through a first elastic mounting structure; the mesh 5 is wrapped and installed on the mesh seat 2, and a blade mounting space 51 is formed between the mesh seat 2; in the initial state, under the elastic force of the first elastic mounting structure, the top of the mesh seat 2 on which the mesh 5 is installed can extend outward to a certain height from the top mounting port 12; when pressed down by an external force, the mesh seat 2 on which the mesh 5 is installed It can overcome the elastic force of the first elastic mounting structure and move downward, and can return to its initial state after the external force disappears; the blade seat 3 is arranged in a one-to-one correspondence with the mesh seat 2, and can be mounted on the mesh seat 2 so as to move up and down through the second elastic mounting structure; the blade 4 is mounted on the blade seat 3; under the elastic force of the second elastic mounting structure, the blade 4 is in contact with the inner side surface of the mesh 5; the driving structure is installed inside the inner cavity 11, fixedly connected to the blade seat 3, and the bottom end extends outward from the bottom mounting port 13 and is suitable for connection to the driving motor; after the driving structure is driven by the driving motor, it can drive the blade seat 3 to move left and right, and then drive the blade 4 to move left and right relative to the mesh 5, and the bottom shell 65 is clamped under the main frame 1, and has a bottom shell opening 66 for the bottom end of the driving structure to extend downward.
[0095] During shaving using the razor head of this embodiment, the mesh seat 2 equipped with the mesh 5 and the blade seat 3 equipped with the blade 4 can be adaptively adjusted according to the user's facial contour or slight undulations on the skin surface under the elastic action of the first elastic mounting structure and the second elastic mounting structure respectively. During shaving, they can float and fit the skin to ensure uniform pressure on the skin, thereby improving the comfortable experience during shaving and ensuring the shaving effect.
[0096] like Figure 3As shown, the main frame 1 comprises a main body bottom plate 14, main body side plates 15, and a main body top plate 16. The main body bottom plate 14 is rectangular, with the bottom mounting opening 13 defined in the middle. There are two main body side plates 15, each integrally connected to the two long sides of the main body bottom plate 14. The main body top plate 16 is fixedly connected to the tops of the two main body side plates 15 on both sides. Preferably, the middle portion of the main body top plate 16 protrudes upward in an arc, and the top mounting opening 12 is defined on the arc-shaped portion of the main body top plate 16. When rinsing the shaver head, water flows inward from the open opening on one side of the main frame 1, flows through the inner cavity 11, and then flows out from the open opening on the other side. This design of the main frame 1 allows the water to reach every corner of the inner cavity 11 without hindrance, achieving a comprehensive rinsing effect. The floating shaver head of this embodiment can be cleaned without opening or removing the shaver head, which is very convenient.
[0097] like Figure 6 and 7 As shown, the first elastic mounting structure includes: a first mounting hole 21, a first guide shaft 22, and a first elastic member 23; wherein the first mounting hole 21 is opened at the end of the mesh seat 2, and the inner diameter of the lower half is larger than the inner diameter of the upper half; the first guide shaft 22 is set through the first mounting hole 21, and the bottom end is fixedly connected to the main frame 1; the outer diameter of the first guide shaft 22 is substantially the same as the inner diameter of the upper half of the first mounting hole 21; the first elastic member 23 is sleeved on the first guide shaft 22, and the upper section is mounted inside the lower half of the first mounting hole 21. The first elastic mounting structure enables the mesh seat 2 to adaptively adjust according to the facial contour or slight undulations of the skin surface, thereby ensuring that the mesh 5 can float and fit the skin during shaving, improving the comfort experience during shaving and ensuring the shaving effect. The bottom end of the first guide shaft 22 is welded to the main frame 1.
[0098] The first limiting boss 26 is formed on the mesh seat 2 and is initially positioned below the top mounting opening 12. The first limiting boss 26 is used to limit the mesh seat 2 in the inner cavity 11 of the main frame 1.
[0099] like Figure 8 As shown, a plurality of clamping posts 24 are fixedly provided on both sides of the length direction of the mesh seat 2, the mesh 5 is an inverted U-shape, and a plurality of clamping through holes 52 that can match and clamp with the clamping posts 24 are formed on the two side walls of the mesh 5.
[0100] like Figure 7As shown, the second elastic mounting structure includes: a first positioning shaft 31, a second positioning shaft 32, and a second elastic member 33; wherein the first positioning shaft 31 is formed on the bottom surface of the blade holder 3; the second positioning shaft 32 is formed on the mesh holder 2, facing the first positioning shaft 31 in the vertical direction; the second elastic member 33 is sleeved on the first positioning shaft 31 at one end and on the second positioning shaft 32 at the other end, realizing elastic mounting of the blade holder 3 and the mesh holder 2. The second elastic mounting structure enables the blade holder 3 to adjust adaptively with the mesh holder 2, thereby ensuring that the blade 4 always maintains a close fit with the mesh 5 during shaving, thereby improving the shaving effect.
[0101] The blade holder 3 has a downwardly opening U-shaped mounting slot 34 at its bottom. Opposite the U-shaped mounting slot 34, the mesh holder 2 has a vertically extending mounting channel 25. A connecting rod 61 is fixedly mounted on the drive structure, extending upward through the mounting channel 25 and then engaging with the U-shaped mounting slot 34. When the drive structure drives the connecting rod 61, the connecting rod 61 moves the blade holder 3 left and right, allowing the blade 4 to shave with the mesh 5.
[0102] The mounting channels 25 on two adjacent mesh seats 2 are arranged at the same position; the connecting rods 61 are arranged relative to each other on the driving structure and are respectively inserted into the mounting channels 25 on the two adjacent mesh seats 2, and are then fixed to the U-shaped mounting grooves 34 provided at the bottom of the blade seat 3; preferably, the clamping posts 24 on the two adjacent mesh seats 2 are arranged relative to each other and are slidably abutted up and down; preferably, the inner side surface of the connecting rod 61 is in sliding contact with the corresponding side surface of the mounting channels 25 of the mesh seat 2. During the shaving process, the clamping posts 24 act as a limiter to prevent the mesh seat 2 from shaking, thereby ensuring a stable and accurate shaving process; when the mesh seat 2 and the blade seat 3 move up and down under the action of elasticity, the connecting rod 61 can move up and down in the mounting channel 25 without hindering or restricting the movement of the mesh seat 2 and the blade seat 3.
[0103] like Figure 8 As shown, the blade 4 is mounted on the blade seat 3 through a sliding snap-fit structure; the sliding snap-fit structure includes: a first guide block 41, a first guide groove 42, a snap-fit column 43 and a snap-fit hole 44; wherein the first guide blocks 41 are at least two, respectively formed on the two outer side walls of the blade seat 3; the first guide groove 42 is opposite to the first guide block 41, and is opened on the side wall of the blade 4; there are at least two snap-fit columns 43, respectively formed on the two outer side walls of the blade seat 3; the snap-fit hole 44 is opposite to the snap-fit column 43, and is opened on the side wall of the blade 4, and the width of the opening position of the snap-fit hole 44 is smaller than the diameter of the snap-fit column 43.
[0104] like Figure 9-10 As shown, the driving structure includes: a main rod 6, a connecting rod 61, a downward-extending connecting hook 62, a connecting joint 7, a second guide block 63 and a bottom shell 65; wherein the main rod 6 is axially parallel to the axial direction of the blade seat 3; there is at least a pair of connecting rods 61, which are integrally formed on the main rod 6 and form a cross-cross structure with the main rod 6; there are two downward-extending connecting hooks 62, which are integrally formed below the main rod 6 and are located on both sides of the connecting rod 61; the connecting joint 7 includes a cross-engaging block 71 for engaging with the cross-cross structure, and two connecting rods integrally connected to the bottom of both sides of the cross-engaging block 71. The plates 72 are formed below the two connecting plates 72 and form an inverted U-shaped vibration motor mounting groove 73 with the bottom of the cross-engaging block 71. There are also formed on the two connecting plates 72 an upper hook 75 for mating with the lower hook 62, and a hook through hole 76 for allowing the lower hook 62 to extend downward, which is provided between the upper hook 75 and the cross-engaging block 71. The second guide blocks 63 are a pair, the bottom of which is engaged on both sides of the bottom mounting opening 13 and has a second guide groove 64 for guiding the movement of the main rod 6. When the driving motor drives the main rod 6 to move, the second guide block 63 can limit and guide the main rod 6, so that the main rod 6 moves along the second guide groove 64, preventing the main rod 6 from deflecting or shifting during movement.
[0105] The razor blade further comprises a bottom shell 65, which is clamped below the main body bottom plate 14 and has a bottom shell opening 66 for allowing the two extension plates 74 to extend downward. The bottom shell 65 can protect the razor head.
[0106] like Figure 11 and 12 As shown, a long opening 17 is formed in the middle of the top of the main body side panel 15, and the two ends of the main body side panel 15 are fixedly connected to the main body top panel 16; a row of static teeth 8 is formed on the main body top panel 16 opposite to the long opening 17; a dynamic tooth piece 81 is arranged below the main body top panel 16, and the middle part is hollowed out for the mesh seat 2 to pass through, and dynamic teeth 82 that can cooperate with the static teeth 8 are formed on both sides; the elastic support member 83 includes a support plate 84 supported on the main body bottom panel 14, and a side support plate 85 integrally formed on both sides of the support plate 84 and elastically supported upward below the dynamic tooth piece 81; the bottom end of the power rod 67 is fixedly provided on the driving structure, and the top is fixedly connected to the bottom of the dynamic tooth piece 81, used to drive the dynamic tooth piece 81 to move relative to the main body top panel 16, and then drive the dynamic tooth 82 to move relative to the static tooth 8 to realize the cutting action. Driven by the movable tooth piece 81 , the movable teeth 82 can interlock and cooperate with the stationary teeth 8 to perform shaving. Example 2
[0107] This embodiment provides a shaver, such as Figure 13 As shown, it includes: a shaver head and a shaver main body 9; the shaver head is the shaver head described in Example 1.
[0108] When in use, the razor of this embodiment can adaptively adjust to the facial contours or slight undulations on the skin surface. It floats and conforms to the skin during shaving, ensuring evenly distributed pressure on the skin, improving shaving comfort and ensuring a good shaving effect. When rinsing the razor head, water flows inward through an opening on one side of the razor head, flows through the interior of the razor head, and then flows out through an opening on the other side. This design allows the water to fully and efficiently rinse the razor head, making it very convenient to clean the razor head without opening or removing it.
[0109] like Figure 14 As shown, the razor head is installed on the razor host 9 through a blade mounting structure; the blade mounting structure includes: a blade connecting rod 91, a blade connecting plate 93, a blade connecting shaft 95 and a torsion spring 96; wherein there are two blade connecting rods 91, which are fixedly arranged on both sides of the razor host 9 and are provided with a first connecting through hole 92; the blade connecting plate 93 is fixedly arranged on the main frame 1 and is provided with a second connecting through hole 94; the blade connecting shaft 95 passes through the first connecting through hole 92 and the second connecting through hole 94 to rotatably install the blade connecting rod 91 and the blade connecting plate 93; the torsion spring 96 is sleeved on the blade connecting shaft 95 at a position between the blade connecting rod 91 and the blade connecting plate 93, one end of which is clamped in the first limiting groove 97 of the blade connecting rod 91, and the other end of which is clamped in the second limiting groove 98 of the bottom shell 65 fixedly mounted on the main frame 1. One end of the torsion spring 96 is stuck in the first limiting groove 97, and the other end is stuck in the second limiting groove 98, which can limit the rotation angle of the shaver head and avoid deviation from the reasonable shaving trajectory due to excessive rotation during use.
[0110] Obviously, the above embodiments are merely examples for clarity of explanation and are not intended to limit the implementation methods. Those skilled in the art will readily appreciate that other variations or modifications based on the above descriptions are possible. It is not necessary and impossible to enumerate all implementation methods here. Obvious variations or modifications arising therefrom remain within the scope of protection of this innovative technical solution.
Claims
1. An easy-to-clean floating razor head, characterized in that: include: A main frame (1) has an inner cavity (11), the left and right ends of the inner cavity (11) are open, the top has a top mounting opening (12) communicating with the inner cavity (11), and the bottom has a bottom mounting opening (13) communicating with the inner cavity (11); At least two mesh seats (2) are arranged in parallel and are respectively mounted in the inner cavity (11) so as to be movable up and down via first elastic mounting structures; A mesh (5) is wrapped and mounted on the mesh seat (2), forming a blade mounting space (51) between the mesh seat (2) and the mesh seat; In the initial state, under the elastic force of the first elastic mounting structure, the top of the mesh seat (2) on which the mesh (5) is mounted can extend outwards to a certain height from the top mounting opening (12); When pressed downward by an external force, the mesh seat (2) on which the mesh (5) is mounted can overcome the elastic force of the first elastic mounting structure and move downward, and can return to its initial state after the external force disappears; A blade seat (3) is provided in one-to-one correspondence with the mesh seat (2) and is mounted on the mesh seat (2) in an upward and downwardly movable manner via a second elastic mounting structure; A blade (4) mounted on the blade seat (3); Under the elastic force of the second elastic mounting structure, the blade (4) is in contact with the inner side surface of the mesh (5); A driving structure is installed inside the inner cavity (11), fixedly connected to the blade seat (3), with a bottom end extending outward from the bottom mounting opening (13) and suitable for connection to a driving motor; after being driven by the driving motor, the driving structure can drive the blade seat (3) to move left and right, thereby driving the blade (4) to move left and right relative to the mesh (5); The bottom shell (65) is clamped below the main frame (1) and has a bottom shell opening (66) for allowing the bottom end of the driving structure to extend downward.
2. The easy-to-clean floating razor head according to claim 1, characterized in that: The main frame (1) includes: The main body bottom plate (14) is rectangular and has the bottom mounting opening (13) opened in the middle; There are two main body side panels (15), which are integrally connected to the two long sides of the main body bottom panel (14); The main body top plate (16) has two sides fixedly connected to the tops of the two main body side plates (15).
3. The easy-to-clean floating razor head according to claim 2, characterized in that: The middle portion of the main body top plate (16) protrudes upward in an arc shape, and the top installation opening (12) is opened on the portion of the main body top plate (16) that protrudes in the arc shape.
4. The easy-to-clean floating razor head according to claim 1 or 2, characterized in that: The first elastic mounting structure comprises: A first mounting through hole (21) is provided at the end of the mesh seat (2), and the inner diameter of the lower half is larger than the inner diameter of the upper half; A first guide shaft (22) is provided through the first mounting through hole (21), and the bottom end is fixedly connected to the main frame (1); the outer diameter of the first guide shaft (22) is substantially the same as the inner diameter of the upper half of the first mounting through hole (21); A first elastic member (23) is sleeved on the first guide shaft (22), and an upper section is mounted inside a lower half of the first mounting through hole (21); And / or, the second elastic mounting structure includes: A first positioning shaft (31) formed on the bottom surface of the blade seat (3); A second positioning shaft (32), vertically opposite to the first positioning shaft (31), formed on the mesh seat (2); One end of the second elastic member (33) is sleeved on the first positioning shaft (31), and the other end is sleeved on the second positioning shaft (32), thereby realizing elastic installation of the blade seat (3) and the mesh seat (2).
5. The easy-to-clean floating razor head according to claim 1 or 2, characterized in that: It also includes a first limiting boss (26) formed on the mesh seat (2); in an initial state, it abuts below the position of the top mounting opening (12).
6. The easy-to-clean floating razor head according to claim 1 or 2, characterized in that: A plurality of clamping posts (24) are fixedly provided on both sides of the mesh seat (2) in the longitudinal direction. The mesh (5) is in an inverted U shape, and a plurality of clamping through holes (52) capable of matching and clamping with the clamping posts (24) are formed on both side walls of the mesh (5). And / or, the blade (4) is mounted on the blade seat (3) via a sliding clamping structure; the sliding clamping structure comprises: At least two first guide blocks (41) are formed on two outer side walls of the blade seat (3); A first guide groove (42), opposite to the first guide block (41), is formed on a side wall of the blade (4); At least two engaging columns (43) are respectively formed on two outer side walls of the blade seat (3); The engaging hole (44) is opposite to the engaging column (43) and is opened on the side wall of the blade (4), and the width of the opening position of the engaging hole (44) is smaller than the diameter of the engaging column (43).
7. The easy-to-clean floating razor head according to claim 6, characterized in that: The bottom of the blade seat (3) is provided with a U-shaped mounting groove (34) with an opening facing downwards; Opposite to the U-shaped mounting groove (34), a mounting channel (25) extending vertically is provided on the mesh seat (2); The connecting rod (61) is fixedly arranged on the driving structure, passes through the mounting channel (25) upwards, and is inserted and fixed into the U-shaped mounting groove (34).
8. The easy-to-clean floating razor head according to claim 7, characterized in that: The installation channels (25) on two adjacent mesh seats (2) are arranged at the same position; The connecting rods (61) are arranged relative to each other on the driving structure and are respectively inserted into the mounting channels (25) on the two adjacent mesh seats (2), and are then inserted and fixed to the U-shaped mounting grooves (34) provided at the bottom of the blade seat (3).
9. The easy-to-clean floating razor head according to claim 8, characterized in that: The clamping posts (24) on two adjacent mesh seats (2) are arranged relative to each other and can abut against each other in a sliding manner up and down.
10. The easy-to-clean floating razor head according to claim 9, characterized in that: The inner side surface of the connecting support rod (61) is connected in sliding contact with the corresponding side surface of the mounting channel (25) of the mesh seat (2).
11. The easy-to-clean floating razor head according to claim 10, characterized in that: The driving structure includes: A main rod (6) having an axial direction parallel to the axial direction of the blade seat (3); At least one pair of connecting rods (61) are integrally formed on the main rod (6) and form a cross structure with the main rod (6); Two downward extending connecting hooks (62) are integrally formed below the main rod (6) and are located on both sides of the connecting rod (61); A card connector (7), comprising a cross-engaging block (71) for engaging with the cross structure, two connecting plates (72) integrally connected to the bottoms of both sides of the cross-engaging block (71), extension plates (74) respectively formed below the two connecting plates (72) and forming an inverted U-shaped vibration motor mounting groove (73) with the bottom of the cross-engaging block (71), upper extending card hooks (75) respectively formed on the two connecting plates (72) for engaging with the lower extending card hook (62), and a card hook through hole (76) provided between the upper extending card hook (75) and the cross-engaging block (71) for allowing the lower extending card hook (62) to extend downward; The second guide blocks (63) are a pair, the bottoms of which are engaged with both sides of the bottom mounting opening (13), and have second guide grooves (64) for guiding the movement of the main rod (6).
12. The easy-to-clean floating razor head according to claim 2, characterized in that: A long opening (17) is formed in the middle of the top of the main body side plate (15), and both ends of the main body side plate (15) are fixedly connected to the main body top plate (16); A row of stationary teeth (8) is formed on the main body top plate (16) opposite to the long strip opening (17); A movable tooth piece (81) is arranged below the main body top plate (16), with a hollowed-out middle portion for the mesh seat (2) to pass through, and movable teeth (82) capable of cooperating with the stationary teeth (8) formed on both sides; An elastic support member (83) comprising a support plate (84) supported on the main body bottom plate (14), and side support plates (85) integrally formed on both sides of the support plate (84) and elastically supported upwardly below the movable gear plate (81); The power rod (67) has a bottom end fixedly arranged on the driving structure and a top end fixedly connected to the bottom of the movable tooth piece (81), and is used to drive the movable tooth piece (81) to move relative to the main body top plate (16), thereby driving the movable tooth (82) to move relative to the static tooth (8) to achieve a cutting action.
13. A shaver comprising a shaver main unit (9) and a shaver head mounted on the shaver main unit (9), characterized in that: The shaving head is the shaving head according to any one of claims 1 to 8.
14. The shaver according to claim 13, characterized in that: The razor head is mounted on the razor main unit (9) via a razor head mounting structure; the razor head mounting structure comprises: There are two cutter head connecting rods (91), which are fixedly arranged on both sides of the shaver main body (9) and are provided with a first connecting through hole (92); A cutter head connecting plate (93) is fixedly mounted on the main body frame (1) and is provided with a second connecting through hole (94); A cutter head connecting shaft (95) passes through the first connecting through hole (92) and the second connecting through hole (94) to rotatably mount the cutter head connecting rod (91) and the cutter head connecting plate (93); A torsion spring (96) is sleeved on the cutter head connecting shaft (95) between the cutter head connecting rod (91) and the cutter head connecting plate (93), with one end being clamped in a first limiting groove (97) of the cutter head connecting rod (91) and the other end being clamped in a second limiting groove (98) of the bottom shell (65) fixedly mounted to the main frame (1).