Hair sticking device
By designing the linkage structure and limit design of the wool storage cylinder, wool adhesive cylinder and sports roller, the problems of complex process and poor wool adhesive effect of the existing wool adhesive are solved, and the stable rolling and sealing wool storage of the wool adhesive are achieved, improving the cleaning effect.
Patent Information
- Application Number
- CN202422558735.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-10-21
AI Technical Summary
The existing hair sticker has complex process and poor hair sticking effect, and the silicone bumps cause some areas to be unable to be covered.
The wool storage cylinder, adhesive wool and sports roller are designed to ensure the stable rolling and sealing wool storage of the adhesive wool through the linkage structure and limit structure. The whiting area is equipped with a whill tube and a shaving piece. The shaving area includes multiple wool storage grooves, and the elastic parts and limit structure are used to improve the wool effect.
It improves the working efficiency of the hair sticker, ensures that the hair does not leak out, and enhances the cleaning effect of the hair sticker.
Smart Images

Figure CN223287145U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of hair sticking structures, in particular to a hair sticking device. Background Art
[0002] Lint removers typically include a lint roller covered with a sticky substance that is used to pick up and remove dust and hair from clothing, sheets, or other items. The user rolls the lint remover over the surface to be cleaned, and the sticky surface picks up debris.
[0003] However, existing lint removers have some limitations. For example, using silicone protrusions on the roller to achieve roller rolling and positioning is a complex process that requires re-molding or gluing the silicone protrusions on the roller surface. Furthermore, the silicone protrusions can easily leave some areas uncovered by the roller, resulting in poor lint removal performance. Utility Model Content
[0004] The technical problem to be solved by the utility model is to provide a hair remover in view of the above-mentioned defects of the prior art, so as to solve the problems of the prior art hair remover having complex process and poor hair removing effect.
[0005] The utility model solves the technical problem by adopting the following technical solutions: providing a hair sticking device, which comprises a hair storage cylinder, a hair sticking cylinder and a moving roller;
[0006] The hair storage cylinder comprises a first hair storage cavity and a bottom opening communicated with the first hair storage cavity, and the hair storage cylinder is provided with a scraping piece at the front inner edge and the rear inner edge of the bottom opening;
[0007] The cross section of the hair sticking cylinder is an arcuate shape, and the hair sticking cylinder is rotatably arranged in the first hair storage cavity of the hair storage cylinder, and the arc surface of the hair sticking cylinder is convexly provided with a bottom opening, which fits the shaving areas of the two shaving members;
[0008] A linkage structure is provided between the moving roller and the wool sticking cylinder, and the moving roller drives the wool sticking cylinder to rotate during the rotation process through the linkage structure;
[0009] Wherein, a limiting structure is provided between the hair sticking cylinder and the hair storage cylinder to limit the two side edges of the hair sticking cylinder from being separated from the scraping member and exposed at the bottom opening during the rotation process.
[0010] Among them, a preferred solution is: the moving drum includes a rotatable rotating cylinder, and gear members arranged at both ends of the rotating cylinder, the gear members are coaxially arranged with the rotating cylinder, and the teeth of the gear members protrude from the outer surface of the rotating cylinder;
[0011] The linkage structure includes a first annular groove provided on the end surface of the rotating cylinder and coaxially arranged with the rotating cylinder, a second annular groove provided on the end surface of the wool sticking cylinder and coaxially arranged with the wool sticking cylinder, and an annular belt provided between the first annular groove and the second annular groove;
[0012] Alternatively, the linkage structure includes a first linkage tooth arranged on the end face of the rotating cylinder and coaxially arranged with the rotating cylinder, a second linkage tooth arranged on the end face of the wool sticking cylinder and coaxially arranged with the wool sticking cylinder, and a chain arranged between the first linkage tooth and the second linkage tooth.
[0013] Among them, a preferred solution is that the hair storage cylinder includes an extension frame, and the moving roller is rotatably arranged on the extension frame.
[0014] Among them, a preferred solution is: the hair storage cylinder includes a hair storage cylinder body forming a first hair storage cavity, the extension frame extends backward from both side end surfaces of the hair storage cylinder body, and the first hair storage cavity is provided with an avoidance opening at one of the extension frames.
[0015] Among them, the preferred solution is that: the two scraping members are rotatably arranged in the hair storage cylinder, and an elastic member is provided between the scraping member and the hair storage cylinder to drive the scraping area of the scraping member to be close to the arc surface of the hair sticking cylinder.
[0016] Among them, the preferred solution is: the hair storage cylinder is spaced between the front inner side and the rear inner side of the bottom opening and the curved surface of the hair sticking cylinder, and an elastic structure is provided between the scraping piece and the hair storage cylinder, and the scraping piece is elastically pressed to the curved surface of the hair sticking cylinder through the elastic structure.
[0017] Among them, the preferred solution is: the limiting structure includes a raised portion arranged near the end surface of the hair storage cylinder, the raised portion is arranged from the top of the hair storage cylinder to the lower edge, and both side edges of the hair sticking cylinder will touch the raised portion to limit the position during rotation.
[0018] Among them, a preferred solution is that the shaving area includes a plurality of hair storage grooves.
[0019] Among them, a preferred solution is that: the hair storage cylinder is further provided with a material taking opening communicated with the first hair storage cavity, and the hair sticking device includes a cover plate that closes the material taking opening and is detachably mounted on the hair storage cylinder.
[0020] Among them, a preferred solution is: the hair remover also has a handle, an assembly structure is provided between the handle and the hair storage tube, and the handle is assembled and connected to the hair storage tube through the assembly structure.
[0021] The beneficial effect of the present invention is that, compared with the prior art, the present invention ensures the stable rolling of the hair sticking cylinder through the linkage structure between the moving roller and the hair sticking cylinder, thereby improving the working efficiency of the hair sticking device. The limiting structure limits the two side edges of the hair sticking cylinder from separating from the scraping part during the rotation process, thereby ensuring the relative sealing of the hair storage cylinder and preventing hair from leaking out. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments, in which:
[0023] Figure 1 This is a schematic diagram of the back structure of the utility model hair remover;
[0024] Figure 2 This is a front structural diagram of the utility model hair remover;
[0025] Figure 3 This is a partial enlarged structural diagram of the utility model hair sticking device;
[0026] Figure 4 This is a schematic diagram of the first cross-section of the partial structure of the hair remover of the utility model;
[0027] Figure 5 This is a schematic diagram of the second cross-section of the partial structure of the hair remover of the utility model;
[0028] Figure 6 This is a front structural diagram of the utility model hair storage cylinder;
[0029] Figure 7 This is a schematic diagram of the back structure of the wool storage cylinder of the utility model;
[0030] Figure 8 This is a side structural diagram of the utility model of the wool sticking cylinder;
[0031] Figure 9 This is another side structural diagram of the utility model's wool sticking tube;
[0032] Figure 10 This is a schematic structural diagram of the scraping member of the utility model;
[0033] Figure 11 This is a structural diagram of the utility model installation protrusion structure;
[0034] Figure 12 This is a schematic diagram of the back structure of the mounting protrusion structure with a press switch of the utility model;
[0035] Figure 13 This is a front structural diagram of the mounting protrusion structure with a press switch of the utility model;
[0036] Figure 14This is a schematic structural diagram of the cover body of the utility model from a first angle;
[0037] Figure 15 This is a schematic structural diagram of the cover body of the utility model from a second angle;
[0038] Figure 16 It is a structural diagram of the handle of the utility model. DETAILED DESCRIPTION
[0039] Now, in conjunction with the accompanying drawings, the preferred embodiments of the present utility model will be described in detail.
[0040] like Figures 1 to 10 As shown, the utility model provides a preferred embodiment of the hair remover.
[0041] A hair sticking device, comprising a hair storage cylinder 100, a hair sticking cylinder 200 and a moving roller 300; the hair storage cylinder 100 comprises a first hair storage cavity 110 and a bottom opening 111 communicating with the first hair storage cavity 110, the hair storage cylinder 100 is provided with a scraping piece 400 at the front inner edge and the rear inner edge of the bottom opening 111; the cross section of the hair sticking cylinder 200 is arched, the hair sticking cylinder 200 is rotatably arranged in the first hair storage cavity 110 of the hair storage cylinder 100, and ... The curved surface 201 of the hair sticking cylinder 200 protrudes with a bottom opening 111, and fits into the shaving areas 410 of the two scraping pieces 400; a linkage structure is provided between the moving roller 300 and the hair sticking cylinder 200, and the moving roller 300 drives the hair sticking cylinder 200 to rotate through the linkage structure during the rotation process; wherein, a limiting structure is provided between the hair sticking cylinder 200 and the hair storage cylinder 100 to limit the two side edges of the hair sticking cylinder 200 from detaching from the scraping pieces 400 and being exposed at the bottom opening 111 during the rotation process.
[0042] The hair storage cylinder 100 is the main component of the hair sticking device, which stores the hair collected by the hair sticking cylinder 200. The inner edges of the front and rear ends of the bottom opening 111 of the hair storage cylinder 100 are provided with scrapers 400. The function of the scrapers 400 is to scrape off the hair when the hair sticking cylinder 200 rotates so that the hair falls smoothly into the hair storage cylinder 100.
[0043] The cross section of the hair sticking tube 200 is designed to be arched. Arched refers to a curved shape similar to the outline of a bow. Figure 8 and Figure 9The cross section of the arched hair sticking cylinder 200 includes a curved surface 201 and a cross section, and the edge between the cross section and the curved surface 201 is defined as a side edge 202. The curved surface 201 is provided with a bottom opening 111 to facilitate the rolling of the hair sticking cylinder 200, and can better fit the surface of the cloth, thereby improving the cleaning effect. Moreover, when the hair sticking cylinder 200 rolls on the cloth surface (rolling forward or backward), the curved surface 201 of the hair sticking cylinder 200 is covered with hair fragments, and the rotation angle is maintained by the limiting structure and no longer rotated. At this time, the hair sticking cylinder 200 is rolled in the opposite direction, and the curved surface 201 covered with hair fragments passes over the scraping member 400 and returns to the first hair storage chamber 110. In the process of the curved surface 201 passing over the scraping member 400, the scraping area 410 of the scraping member 400 scrapes off the hair fragments on the curved surface 201, and due to the subsequent hair fragment extrusion, the hair fragments are squeezed into the first hair storage chamber 110.
[0044] Furthermore, the limiting structure also limits the two side edges 202 of the hair sticking cylinder 200 from being separated from the scraping member 400 and exposed at the bottom opening 111 during the rotation process, thereby ensuring the relative sealing of the first hair storage chamber 110 .
[0045] In order to ensure the stable rolling of the hair sticking cylinder 200, on the one hand, the curved surface 201 has a sufficient area to contact the external fabric, and on the other hand, sufficient driving force can be generated when the hair sticking cylinder 200 passes over the scraper 400. Therefore, a moving roller 300 that can roll stably is provided, and a linkage structure is provided between the moving roller 300 and the hair sticking cylinder 200, thereby stably driving the hair sticking cylinder 200 to roll.
[0046] In this embodiment, reference Figure 10 The shaving area 410 includes a plurality of hair storage grooves 411, which are arranged side by side. On the one hand, the stability of the groove structure is improved, and on the other hand, the shaved hair fragments are stored during the shaving process, and after the hair fragments fill the individual hair storage grooves 411, they fall into the first hair storage cavity 110.
[0047] like Figures 1 to 5 As shown, the present invention provides a preferred embodiment of a moving roller 300 .
[0048] The moving drum 300 includes a rotatable rotating cylinder 310 and gears 320 disposed at both ends of the rotating cylinder 310 . The gears 320 are coaxially disposed with the rotating cylinder 310 , and teeth 321 of the gears 320 protrude from the outer surface of the rotating cylinder 310 .
[0049] Specifically, the teeth 321 of the gear member 320 dig into the surface of the fabric during movement, providing sufficient friction to enable the moving roller 300 to roll stably on the fabric surface. The gear member 320 of the moving roller 300 is coaxially arranged with the rotating cylinder 310, so that the gear members 320 at both ends can move synchronously, ensuring that the moving roller 300 can effectively drive the lint remover 200 to rotate, thereby ensuring the working efficiency and cleaning effect of the lint remover.
[0050] Regarding the linkage structure, two possible implementation plans are provided.
[0051] Solution 1: Reference Figure 4 The linkage structure includes a first annular groove 330 arranged on the end surface of the rotating cylinder 310 and coaxially arranged with the rotating cylinder 310, a second annular groove 210 arranged on the end surface of the wool sticking cylinder 200 and coaxially arranged with the wool sticking cylinder 200, and an annular belt 340 arranged between the first annular groove 330 and the second annular groove 210.
[0052] The annular belt 340 is preferably an elastic belt that is tightly fitted between the first annular groove 330 and the second annular groove 210. As the first annular groove 330 rotates, the annular belt 340 drives the second annular groove 210 to rotate, thereby achieving stable movement of the hair sticking cylinder 200. In addition, the first annular groove 330 and the second annular groove 210 are on the same horizontal plane, which facilitates stable power transmission.
[0053] A second possible implementation scheme, not shown in the figure, is that the linkage structure includes a first linkage tooth arranged on the end face of the rotating cylinder 310 and coaxially arranged with the rotating cylinder 310, a second linkage tooth arranged on the end face of the sticky hair cylinder 200 and coaxially arranged with the sticky hair cylinder 200, and a chain arranged between the first linkage tooth and the second linkage tooth.
[0054] Compared with the first feasible solution, the second feasible solution adopts a transmission method of teeth and chains in order to improve the transmission performance and avoid the possibility of slipping of the annular belt 340. The chain is provided with tooth holes for the first linkage tooth and the second linkage tooth to be inserted, thereby realizing the linkage between the two.
[0055] In this embodiment, the annular belt 340 of Option 1 is used as the connecting component. This structure is relatively simple, making it easy to manufacture and maintain. Furthermore, the annular belt 340 has a certain degree of elasticity, which reduces vibration and maintains stable transmission. Option 2 utilizes a tooth and chain transmission method, which offers higher transmission efficiency and reduces energy loss. Furthermore, the chain transmission is relatively stable and less prone to slippage, ensuring stable operation of the lint remover. Furthermore, the chain is more durable and has a longer service life than the annular belt 340.
[0056] In this embodiment, the hair storage cylinder 100 includes an extension frame 120 , and the moving roller 300 is rotatably disposed on the extension frame 120 .
[0057] The extension frame 120 ensures that the rolling surfaces of the hair sticking cylinder 200 and the moving roller 300 are close to or on the same plane during movement. The moving roller 300 can actively rotate along with the teeth 321 of the gear member 320 against the fabric surface, thereby driving the hair sticking cylinder 200 to rotate in conjunction. Furthermore, the extension frame 120 is provided independently of the first hair storage chamber 110, allowing the first hair storage chamber 110 to be relatively independently designed.
[0058] Preferably, the hair storage cylinder 100 includes a hair storage cylinder 100 body forming a first hair storage cavity 110, and the extension frame 120 is extended backward from the two side end surfaces of the hair storage cylinder 100 body, and the first hair storage cavity 110 is provided with an avoidance opening at one of the extension frames 120. The design of the avoidance opening ensures that the first hair storage cavity 110 of the hair storage cylinder 100 body is relatively sealed so that the hair fragments will not leak out. On the other hand, since the hair sticking cylinder 200 requires a sufficient hair sticking area (i.e., the arc-shaped surface 201), a hair sticking cylinder 200 with a larger diameter needs to be formed, and the moving roller 300 can adopt a cylindrical structure with a smaller diameter for overall volume considerations. Therefore, in the actual movement process of the two (assuming movement in a horizontal plane), the plane formed by the rotating shafts of the two is not horizontally arranged, resulting in the annular belt 340 or the chain being triangular in shape with arc angles, and the annular belt 340 or the chain needs to be avoided through the avoidance opening.
[0059] like Figures 1 to 10 As shown, the present invention provides a preferred embodiment of a scraping member 400 .
[0060] The two shaving members 400 are both rotatably arranged in the hair storage cylinder 100, and an elastic member (not shown in the figure) is arranged between the shaving members 400 and the hair storage cylinder 100 to drive the shaving area 410 of the shaving member 400 to be close to the arc surface 201 of the hair sticking cylinder 200.
[0061] Specifically, the hair storage cylinder 100 is spaced between the front inner side and the rear inner side of the bottom opening 111 and the curved surface 201 of the hair sticking cylinder 200, and an elastic structure is provided between the scraping piece 400 and the hair storage cylinder 100, and the scraping piece 400 is elastically pressed to the curved surface 201 of the hair sticking cylinder 200 through the elastic structure.
[0062] During actual use, the scraper 400 is pressed against the curved surface 201 of the hair sticking tube 200 by the elastic structure, thereby scraping off the hair fragments on the curved surface 201. However, the elastic force of the elastic structure has a certain limit. When the amount of hair fragments is too large or the volume is too large, the scraper 400 will have a certain retraction space to prevent the hair sticking tube 200 from getting stuck in rotation.
[0063] Specifically, the elastic structure has two sets of solutions:
[0064] Option 1: The elastic structure is a spring member arranged between the shaving member 400 and the hair storage cylinder 100. When the shaving member 400 rotates close to the inner side of the hair storage cylinder 100, the spring member is compressed and presses the shaving member 400 toward the hair sticking cylinder 200.
[0065] In the second option, the elastic structure is a torsion spring structure arranged at the rotating shaft of the scraper 400. The principle of the torsion spring structure is similar to the spring member of the first option. When the scraper 400 rotates close to the inner side of the hair storage cylinder 100, the spring member is compressed and presses the scraper 400 toward the hair sticking cylinder 200. Only the specific structure is different.
[0066] like Figures 5 to 10 As shown, the present invention provides a preferred embodiment of the limiting structure.
[0067] The limiting structure includes a raised portion 130 provided near the end surface of the hair storage cylinder 100. The raised portion 130 is provided from the upper side of the hair storage cylinder 100 to the lower side. Both side edges 202 of the hair sticking cylinder 200 will contact the raised portion 130 to limit the position during the rotation process.
[0068] First, the hair sticking cylinder 200 is rotatably arranged on the two side end faces of the hair storage cylinder 100. Preferably, a rotating shaft groove 113 is provided on the two side end faces of the hair storage cylinder 100, and the rotating shaft protrusion 230 of the hair sticking cylinder 200 is inserted into the rotating shaft groove 113; secondly, the protrusion 130 is arranged close to the end face of the hair storage cylinder 100 and is separated from the end face of the hair storage cylinder 100 by a certain distance. The separation is certain distance so that the protrusion 130 can touch and limit the two side edges 202 of the hair sticking cylinder 200.
[0069] In addition, the raised portion 130 is a plate structure, and the raised portion 130 also includes a shielding edge 132 extending along the inner side surface of the hair storage tube 100 with the raised portion 130 as the center, with the raised edge 131 in the middle, and the shielding edge 132 is also a plate structure. The shielding edge 132 and the raised portion 130 are arranged on the same plane, and the shielding edge 132 is mainly used to achieve a relatively sealed setting of the side of the first hair storage cavity 110 of the hair storage tube 100.
[0070] Of course, a hole 133 is also provided on the edge of the shielding edge 132, which serves as a shaft hole for the scraper to rotate and achieve a compact design. The shaft 420 of the scraper is inserted into the hole 133 to achieve rotational installation.
[0071] like Figure 8 and Figure 9 As shown, the present invention provides a preferred embodiment of the second hair storage chamber 240.
[0072] The hair sticking cylinder 200 is provided with a second hair storage cavity 240, and a hair sticking pad is provided on the curved surface 201 of the hair sticking cylinder 200. The second hair storage cavity 240 is spatially connected to the first hair storage cavity 110 to increase the internal volume of the hair storage cavity. The curved surface 201 of the hair sticking cylinder 200 is provided with a groove 220 for covering the hair sticking pad.
[0073] Furthermore, due to the provision of the second hair storage cavity 240, during the rotation of the hair sticking cylinder 200, the arcuate surface 201 cannot separate from the scraping member 400 to expose the first hair storage cavity 110, thereby preventing hair from falling off and breaking.
[0074] like Figures 1 to 16 As shown, the present invention provides a preferred embodiment of the material taking opening 112 .
[0075] The hair storage cylinder 100 further defines a material removal opening 112 communicating with the first hair storage chamber 110. The hair trapping device includes a cover plate 500 that seals the material removal opening 112 and is detachably mounted on the hair storage cylinder 100. The material removal opening 112 is used to remove hair scraps from the first hair storage chamber 110, and the cover plate 500 is used to open or close the material removal opening 112.
[0076] There are at least three options for the connection structure between the cover plate 500 and the hair storage cylinder 100:
[0077] In solution one, the cover plate 500 and the hair storage cylinder 100 are mounted in a snap-fit manner, which includes an elastic block provided on one and a block hole provided on the other, and positioning is achieved by snapping the elastic block into the block hole.
[0078] Solution 2: The cover plate 500 and the hair storage cylinder 100 are installed in a magnetic attraction manner, that is, a magnet is provided between the two, or a magnet and a metal matching structure with magnetic force are provided to achieve magnetic matching.
[0079] Solution three: the cover plate 500 and the hair storage cylinder 100 are rotatably arranged, that is, a rotating shaft is set at one end between the cover plate 500 and the hair storage cylinder 100, and other detachable fixing structures are set at the other end, such as a snap structure or a magnetic structure.
[0080] Preferably, the hair storage barrel 100 includes a rotating shaft structure 140, and the cover plate 500 includes a rotating rod 520 that cooperates with the rotating shaft structure 140, thereby achieving rotational cooperation on one side. In addition, a mounting protrusion structure 150 is provided on the other side of the hair storage barrel 100, and a mounting cavity 151 is provided within the mounting protrusion structure 150. A press switch 155 is rotatably provided in the mounting cavity 151. The press switch 155 is rotatably provided on the rotating shaft hole 153 of the mounting protrusion structure 150 and can be rotated around the rotating shaft hole 153. Secondly, the cover 500 also includes a fixed edge 510, and a raised buckle 511 is provided at the end of the fixed edge 510. The mounting protrusion structure 150 is provided with a boss 154, and the boss 154 is provided in the mounting cavity 151. When the fixed edge 510 of the cover 500 is inserted into the mounting cavity 151, and the raised buckle 511 is inserted under the boss 154, the cover 500 is fixed. Since the fixed edge 510 has an elastic force extending outward in a certain direction, the raised buckle 511 of the fixed edge 510 will firmly press against the bottom of the boss 154.
[0081] Among them, the press switch 155 is provided with a top edge 1551 near the fixed edge 510, and the width of the top edge 1551 is smaller than the distance between the two bosses 154, and can pass through the two bosses 154 to contact the raised buckle 511 of the fixed edge 510, so that when pressed, the press switch 155 rotates around the shaft hole 153, and makes the top edge 1551 press against the raised buckle 511 of the fixed edge 510 toward the direction of the hair storage tube 100, so that the raised buckle 511 is separated from the boss 154, so that the fixed edge 510 can be pulled out of the mounting cavity 151, thereby opening the cover 500.
[0082] like Figures 11 to 16 As shown, the present invention provides a preferred embodiment of a handle 600 .
[0083] The hair remover further includes a handle 600 , and an assembly structure is provided between the handle 600 and the hair storage tube 100 , and the handle 600 is assembled and connected to the hair storage tube 100 through the assembly structure.
[0084] The assembly structure specifically includes grooves 153 provided on both sides of the mounting protrusion structure 150, an insertion groove 610 provided on the handle 600, and protrusions 630 provided on both inner sides of the insertion groove 610. The insertion groove 610 is inserted into the mounting protrusion structure 150, and the protrusions 630 are inserted into the insertion groove 610 to achieve positioning. The groove 153 has an inclined front surface and a vertical rear surface, while the protrusion 630 has an inclined front surface and a vertical rear surface. This facilitates the insertion groove 610 of the handle 600 to be fully inserted, making it difficult to remove it in the opposite direction.
[0085] In this embodiment, the handle 600 is tilted and disposed at the rear end of the hair storage barrel 100, so as to facilitate the user to grip and apply force.
[0086] In this embodiment, the upper end surface of the insertion slot 610 is provided with an opening that communicates with the push switch 155, allowing the user to press the push switch 155. Furthermore, the front end surface of the insertion slot 610 is provided with an avoidance slot 620. The avoidance slot 620 cooperates with the top edge 1551 of the push switch 155 to avoid the top edge 1551. At the same time, the bottom of the avoidance slot 620 presses against the top edge 1551, thereby limiting the rotation of the top edge 1551.
[0087] The above description is only the best embodiment of the present invention and is not intended to limit the scope of the present invention. All equivalent changes or modifications made within the scope of the patent application of the present invention are covered by the present invention.
Claims
1. A hair remover, characterized in that: The hair sticking device comprises a hair storage cylinder, a hair sticking cylinder and a moving roller; The hair storage cylinder comprises a first hair storage cavity and a bottom opening communicated with the first hair storage cavity, and the hair storage cylinder is provided with a scraping piece at the front inner edge and the rear inner edge of the bottom opening; The cross section of the hair sticking cylinder is an arcuate shape, and the hair sticking cylinder is rotatably arranged in the first hair storage cavity of the hair storage cylinder, and the arc surface of the hair sticking cylinder is convexly provided with a bottom opening, which is in contact with the shaving areas of the two shaving members; A linkage structure is provided between the moving roller and the wool sticking cylinder, and the moving roller drives the wool sticking cylinder to rotate during the rotation process through the linkage structure; Wherein, a limiting structure is provided between the hair sticking cylinder and the hair storage cylinder to limit the two side edges of the hair sticking cylinder from being separated from the scraping member and exposed at the bottom opening during the rotation process.
2. The hair remover according to claim 1, characterized in that: The moving drum includes a rotatable rotating cylinder and gear members arranged at both ends of the rotating cylinder, the gear members are coaxially arranged with the rotating cylinder, and the teeth of the gear members protrude from the outer surface of the rotating cylinder; The linkage structure includes a first annular groove provided on the end surface of the rotating cylinder and coaxially arranged with the rotating cylinder, a second annular groove provided on the end surface of the wool sticking cylinder and coaxially arranged with the wool sticking cylinder, and an annular belt provided between the first annular groove and the second annular groove; Alternatively, the linkage structure includes a first linkage tooth arranged on the end face of the rotating cylinder and coaxially arranged with the rotating cylinder, a second linkage tooth arranged on the end face of the wool sticking cylinder and coaxially arranged with the wool sticking cylinder, and a chain arranged between the first linkage tooth and the second linkage tooth.
3. The hair remover according to claim 2, characterized in that: The hair storage cylinder comprises an extension frame, and the moving roller is rotatably arranged on the extension frame.
4. The hair remover according to claim 3, characterized in that: The hair storage cylinder comprises a hair storage cylinder body forming a first hair storage cavity, the extension frame is extended backward from both side end surfaces of the hair storage cylinder body, and the first hair storage cavity is provided with an escape opening at one of the extension frames.
5. The hair remover according to claim 1, characterized in that: The two scraping pieces are both rotatably arranged in the hair storage cylinder, and an elastic piece is arranged between the scraping piece and the hair storage cylinder to drive the scraping area of the scraping piece to be closely attached to the arc surface of the hair sticking cylinder.
6. The hair remover according to claim 4, characterized in that: The hair storage cylinder is spaced apart between the front inner side and the rear inner side of the bottom opening and the arc surface of the hair sticking cylinder. An elastic structure is provided between the scraping piece and the hair storage cylinder, and the scraping piece is elastically pressed to the arc surface of the hair sticking cylinder through the elastic structure.
7. The hair remover according to claim 1, characterized in that: The limiting structure includes a raised portion arranged near the end surface of the hair storage cylinder, and the raised portion is arranged from the upper part of the hair storage cylinder to the lower edge. Both sides of the hair sticking cylinder will touch the raised portion to limit the position during the rotation process.
8. The hair remover according to claim 1, characterized in that: The shaving area includes a plurality of hair storage grooves.
9. The hair remover according to claim 1, characterized in that: The hair storage cylinder is further provided with a material taking opening communicated with the first hair storage cavity, and the hair sticking device comprises a cover plate which closes the material taking opening and is detachably mounted on the hair storage cylinder.
10. The hair remover according to claim 1, characterized in that: The hair sticking device further comprises a handle, an assembly structure is provided between the handle and the hair storage cylinder, and the handle is assembled and connected with the hair storage cylinder through the assembly structure.