Manual shaver with magnetic type tool apron
The magnetic connection and guide groove design enable quick assembly and disassembly of the manual razor blade holder, solving the problems of complex and misaligned replacement methods in traditional methods, and improving safety and convenience of use.
Patent Information
- Application Number
- CN202520443018.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-03-13
AI Technical Summary
The replacement method for the blade holder of existing manual razors is complicated and can easily lead to incorrect positioning, increasing the risk of damage.
It adopts a magnetic connection. Through the design of guide groove and guide component, the tool holder slides along the guide groove, and the magnetic attraction between the magnet and the magnetic part enables quick assembly and disassembly, ensuring correct fixation.
It improves the efficiency of tool holder replacement, avoids the problem of incorrect fixing position, and enhances the safety and convenience of use.
Smart Images

Figure CN223790517U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of personal care products, and in particular to a manual razor with a magnetic shaver holder. Background Technology
[0002] Manual razors have issues with blade wear and cleaning during use. In order to adapt to different shaving needs, razors are usually designed with replaceable blade holders.
[0003] Currently, razor head replacement methods include rotary, bayonet, and sliding types. These methods are widely used in most manual razor products as the primary means for users to maintain and replace razor heads daily. However, these traditional replacement methods often involve complex steps in practical application, such as rotating, disassembling, or pressing, usually requiring multiple steps to complete the replacement and not suitable for frequent razor head replacement. Furthermore, traditional razor head replacement methods are prone to inconsistencies in disassembly and assembly. When the razor head is disassembled and assembled inconsistently, incorrect positioning of the razor head can increase the risk of razor damage.
[0004] Therefore, it is necessary to provide a manual razor with a magnetic razor holder that can effectively improve the efficiency of razor holder replacement and avoid incorrect razor holder positioning. Utility Model Content
[0005] The purpose of this invention is to provide a manual shaver with a magnetic shaver holder that can effectively improve the efficiency of shaver holder replacement and avoid incorrect shaver holder positioning.
[0006] According to one aspect of this application, a manual razor with a magnetic shaving base is provided, the manual razor comprising:
[0007] The handle is integrally formed with a guide groove extending in a first direction;
[0008] The tool holder abuts against the tool shank and is integrally formed with a guide member that slides along the guide groove;
[0009] The handle is also fixedly connected to a first magnetic attraction part and a second magnetic attraction part arranged along a first direction, and the tool holder is also provided with a magnet, which is embedded and fixed in the tool holder;
[0010] When the tool holder is pushed or pulled along the first direction, the guide slides along the guide groove, and the magnet sequentially attracts the first magnetic attraction part and the second magnetic attraction part. When the magnet attracts the first magnetic attraction part, the guide is fixed in the guide groove, and the tool holder is fixedly connected to the tool handle.
[0011] More preferably, the handle is also integrally formed with a blade mesh, which is located on the side of the first magnetic attraction portion away from the second magnetic attraction portion. When the magnet is attracted to the first magnetic attraction portion, the blade holder abuts against the blade mesh.
[0012] More preferably, the tool holder further includes:
[0013] A rotating rod is fixedly connected to the tool holder, and the rotating rod extends along the second direction;
[0014] A pulley is rotatably connected to the rotating rod and rotates about the rotating rod.
[0015] More preferably, the surface of the tool holder is also integrally formed with a push-pull portion, which is located on the side of the tool holder away from the tool handle when viewed along the second direction.
[0016] More preferably, the handle is also integrally formed with a handle body, which is located on the side of the second magnetic attraction portion away from the first magnetic attraction portion. When the magnet is attracted to the second magnetic attraction portion, the knife holder abuts against the handle body.
[0017] More preferably, the two guide grooves are parallel to each other, and the end of the guide groove opposite to the handle body is integrally formed with a fixed end, and the end of the guide groove opposite to the blade net is also integrally formed with a sliding end.
[0018] More preferably, when the magnet is attracted to the first magnetic attraction part, the guide is inserted into the fixed end; when the magnet is attracted to the second magnetic attraction part, the guide slides out along the sliding end.
[0019] More preferably, a limiting portion is integrally formed on the surface of the tool holder, and the surface is located on the side of the tool holder away from the shank.
[0020] More preferably, the tool holder further includes:
[0021] The blade passes through the limiting part and abuts against the blade holder. When the magnet is attracted to the first magnetic attraction part, the blade is fixedly connected between the blade handle and the blade holder.
[0022] A magnetic suction element is embedded in the surface of the tool holder where the limiting part is integrally formed, and is fixedly connected to the tool holder;
[0023] The magnetic attractor attracts the blade that passes through the limiting part and abuts against the blade holder.
[0024] More preferably, in addition to the tool holder magnetically engaging the tool handle, the tool holder also includes at least a tool holder with a pulley, a rake-tooth tool holder, and a short-tooth tool holder, any one of which is fixedly connected to the tool handle.
[0025] This utility model has the following beneficial effects:
[0026] By pushing and pulling the tool holder along the first direction, the magnet sequentially attracts the first magnetic attraction part and the first magnetic attraction part, enabling the tool holder to be quickly installed and removed from the tool handle, thus improving the efficiency of tool holder replacement. Furthermore, by using the guide member to slide along the guide groove and be fixed to the guide groove, the tool holder can be fixed on the tool handle in the correct running direction, avoiding incorrect fixing position of the tool holder. Attached Figure Description
[0027] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0028] Figure 1 This is a three-dimensional structural diagram of the manual razor described in one embodiment of this application;
[0029] Figure 2 This is a schematic diagram of the planar structure of the manual razor described in one embodiment of this application;
[0030] Figure 3 This is a schematic cross-sectional view of the planar structure of the manual razor described in one embodiment of this application;
[0031] Figure 4 This is a three-dimensional structural diagram of the blade holder in a manual razor according to one embodiment of this application;
[0032] Figure 5 This is an exploded three-dimensional structural diagram of the blade holder in a manual razor according to one embodiment of this application;
[0033] Figure 6 This is a schematic diagram of the planar structure of the blade holder in a manual razor according to one embodiment of this application;
[0034] Figure 7 This is a three-dimensional structural diagram of the blade holder, the rake-tooth blade holder, and the short-tooth blade holder adapted to the manual razor described in one embodiment of this application.
[0035] Explanation of reference numerals: 100, Manual razor; 10, Handle; 11, Guide groove; 11A, Fixed end; 11B, Sliding end; 12, First magnetic attraction part; 13, Second magnetic attraction part; 14, Blade foil; 15, Handle body; 20, Blade holder; 21, Guide component; 22, Magnet; 23, Rotating rod; 24, Pulley; 25, Push-pull part; 26, Limiting part; 27, Blade; 28, Magnetic attraction component; 200, Rake-tooth type blade holder; 300, Short-tooth type blade holder; F1, First direction; F2, Second direction. Detailed Implementation
[0036] To facilitate understanding of this application, a more complete description will be provided below with reference to the accompanying drawings. Preferred embodiments of this application are shown in the drawings. However, this application can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the disclosure of this application.
[0037] It should be noted that when a component is said to be "fixed to" another component, it can be directly attached to the other component or there may be an intervening component. When a component is said to be "connected to" another component, it can be directly connected to the other component or there may be an intervening component. The terms "vertical," "horizontal," "left," "right," and similar expressions used in this document are for illustrative purposes only.
[0038] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein in the specification of this application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0039] Please refer to Figure 1 - Figure 7 One embodiment of this application provides a manual razor 100 with a magnetic razor holder 20, the manual razor 100 including: a handle 10 and a razor holder 20.
[0040] The handle 10 has an integrally formed guide groove 11 extending along a first direction F1. The tool holder 20 abuts against the handle 10 and has an integrally formed guide member 21 that slides along the guide groove 11. The handle 10 is also fixedly connected to a first magnetic attraction part 12 and a second magnetic attraction part 13 arranged along the first direction F1. The tool holder 20 is also provided with a magnet 22, which is embedded and fixed in the tool holder 20. When the tool holder 20 is pushed or pulled along the first direction F1, the guide member 21 slides along the guide groove 11, and the magnet 22 sequentially attracts the first magnetic attraction part 12 and the second magnetic attraction part 13. When the magnet 22 is attracted to the first magnetic attraction part 12, the guide member 21 is fixed in the guide groove 11, and the tool holder 20 is fixedly connected to the handle 10.
[0041] The handle 10 is the main body of the shaver, used for gripping and operation. The guide groove 11 is an integrally formed structure on the handle 10, extending along the first direction F1. The guide groove 11 provides a track for the sliding of the blade holder 20, ensuring that the blade holder 20 can move in the correct direction during assembly and disassembly. The blade holder 20 is the part of the shaver used to install the blades 27. The guide member 21 is an integrally formed structure on the blade holder 20, sliding along the guide groove 11 on the handle 10. The cooperation between the guide member 21 and the guide groove 11 ensures the stability and accuracy of the blade holder 20 during sliding. The first magnetic attraction part 12 and the second magnetic attraction part 13 are components fixedly connected to the handle 10, also arranged along the first direction F1. This arrangement allows the blade holder 20 to alternately engage with the first magnetic attraction part 12 and the second magnetic attraction part 13 along the first direction F1 when sliding on the handle 10 via the guide groove 11. The magnetic attraction part is used to attract the magnet 22 on the tool holder 20, enabling the tool holder 20 to open and close on the tool shank 10 (quick assembly and disassembly). The magnet 22 is embedded and fixed in the tool holder 20 and is the key component for the magnetic connection between the tool holder 20 and the tool shank 10. When the tool holder 20 slides along the guide groove 11, the magnet 22 will sequentially attract the first magnetic attraction part 12 and the second magnetic attraction part 13, thereby achieving the fixing and disassembly of the tool holder 20. When the tool holder 20 is pushed or pulled along the first direction F1, the guide member 21 slides along the guide groove 11. When the magnet 22 attracts the first magnetic attraction part 12, the guide member 21 is fixed in the guide groove 11, and the tool holder 20 is also firmly connected to the tool shank 10. This mechanism allows users to easily install and remove the tool holder 20. The magnetic connection makes the replacement of the tool holder 20 quick and simple, and users can complete the replacement without the use of tools or complicated operations. The cooperation between the guide groove 11 and the guide member 21 ensures the stability and accuracy of the blade holder 20 during the sliding process, avoiding problems such as wobbling or misalignment of the blade holder 20. Through a simple push-pull operation, users can quickly change different models of blade holder 20 or blades 27 as needed to adapt to different shaving needs.
[0042] More preferably, the handle 10 is also integrally formed with a blade mesh 14, which is located on the side of the first magnetic attraction part 12 away from the second magnetic attraction part 13. When the magnet 22 is attracted to the first magnetic attraction part 12, the blade holder 20 abuts against the blade mesh 14.
[0043] The foil 14 and the handle 10 are integrally molded, meaning they are formed simultaneously from the same material during manufacturing. This design enhances the overall integrity and durability of the structure. The foil 14 is located on one side between the first magnetic part 12 and the second magnetic part 13, and is closer to the first magnetic part 12. This positional relationship ensures that when the shaving holder 20 is in use (i.e., when the magnet 22 is attracted to the first magnetic part 12), the shaving holder 20 can fit tightly against the foil 14. The foil 14 is designed to work in conjunction with the blades 27 on the shaving holder 20 to form the cutting surface required for shaving. When the shaving holder 20 abuts against the foil 14, the blades 27 pass through the mesh of the foil 14 and come into contact with the user's skin, thus achieving the shaving function. The cooperation between the foil 14 and the blades 27 can more effectively capture and cut beard hairs, thereby improving shaving efficiency and effect. The design of the foil 14 can reduce the direct contact between the blades 27 and the skin to a certain extent, reducing the risk of skin damage. At the same time, the material and shape of the foil 14 can also provide a certain massage and soothing effect, improving the comfort of shaving.
[0044] More preferably, the tool holder 20 further includes a rotating rod 23 and a pulley 24.
[0045] The rotating rod 23 is fixedly connected to the tool holder 20, and the rotating rod 23 extends along the second direction F2. The pulley 24 is rotatably connected to the rotating rod 23 and rotates around the rotating rod 23.
[0046] The rotating rod 23 is a structure fixedly connected to the tool holder 20. The rotating rod 23 extends along a second direction F2, which is perpendicular to the first direction F1 (i.e., the sliding direction of the tool holder 20). This design allows the rotating rod 23 to provide a stable support track for the pulley 24. The pulley 24 is a component rotatably connected to the rotating rod 23 and can rotate around its axis.
[0047] The presence of the pulley 24 enhances the stability of the razor head 20 during shaving. Because the pulley 24 can roll freely and adapt to different shaving surfaces (facial contours), its design allows the razor to better adapt to different facial contours and shaving angles during use. As the contours and curves of the face change, the pulley 24 automatically adjusts its rolling direction, spreading shaving foam evenly across the face, improving shaving efficiency and making the shaving process more comfortable. In addition, the pulley 24 ensures that the blade 27 always maintains a safe distance from the skin, avoiding unnecessary scratches and accidental injuries. Simultaneously, the rolling motion of the pulley 24 significantly reduces direct friction between the blade 27 and the skin. This reduced friction helps lower the risk of skin irritation and damage. During shaving, the pulley 24 smoothly glides over the skin surface, further preventing problems such as redness, stinging, or scratches caused by friction.
[0048] More preferably, a push-pull portion 25 is integrally formed on the surface of the tool holder 20. When viewed along the second direction F2, the push-pull portion 25 is located on the side of the tool holder 20 away from the tool handle 10.
[0049] The push-pull part 25 is an integral structure formed on the surface of the blade holder 20, and its material is the same as that of the blade holder 20 as a whole, without any additional connection or assembly steps. This one-piece design not only enhances the integrity and durability of the structure, but also simplifies the manufacturing process and reduces costs. Viewed along the second direction F2 (i.e., the direction perpendicular to the sliding of the blade holder 20), the push-pull part 25 is located on the side of the blade holder 20 opposite to the handle 10. This positional relationship ensures that the user can easily move the blade holder 20 using the push-pull part 25 when operating the shaver without directly contacting the sharp part of the blade 27, thereby improving safety and convenience. The shape and size of the push-pull part 25 are designed as a semi-cylindrical shape, making it easy for the user's fingers to grip and push. This design allows the user to easily disassemble and assemble the blade holder 20 or blade 27 during replacement, while the semi-cylindrical design reduces friction and discomfort between the fingers and the blade holder 20 during pushing and pulling. The push-pull section 25 allows users to move the razor holder 20 more easily. This design not only improves the convenience of shaving but also reduces the safety risk caused by accidental contact with the blade 27. The shape and size of the push-pull section 25 are designed with ergonomic principles in mind, reducing finger fatigue and discomfort during shaving. This design helps improve the user's shaving experience and satisfaction. The push-pull section 25 is designed in a shape and color that coordinates with the overall style of the razor holder 20. This design not only enhances the product's aesthetics but also improves its overall quality and brand image.
[0050] More preferably, the handle 10 is also integrally formed with a handle body 15, which is located on the side of the second magnetic attraction part 13 away from the first magnetic attraction part 12. When the magnet 22 is attracted to the second magnetic attraction part 13, the knife holder 20 abuts against the handle body 15.
[0051] The handle 15 is an integral part of the handle 10, similar to the foil 14. It is formed simultaneously during manufacturing from the same material as the handle 10, without additional connection or assembly steps, enhancing the overall integrity and durability of the structure. The position of the handle 15 ensures that the user's hand can naturally grip it when changing the blade 27 or the razor head 20, while the thumb uses the push-pull part 25 to securely connect to or detach the razor head 20 from the handle 10. Furthermore, the handle 15 provides a stable grip point, allowing for better control of the razor's direction and pressure during shaving, reducing the risk of inaccurate shaving or skin injury due to hand wobbling. The shape and size of the handle 15 are also ergonomically designed to prevent hand fatigue or discomfort during prolonged shaving, improving the user's shaving experience and satisfaction.
[0052] When the magnet 22 on the tool holder 20 engages with the second magnetic attraction part 13 on the tool handle 10, the end of the tool holder 20 furthest from the blade 27 abuts against the handle 15. This contact not only enhances the connection stability between the tool holder 20 and the tool handle 10, but also ensures a tight connection between them. This stability helps reduce the risk of the tool holder 20 shaking or falling off during disassembly.
[0053] More preferably, the two guide grooves 11 are parallel to each other, and a fixed end 11A is integrally formed at the end of the guide groove 11 opposite to the handle body 15, and a sliding end 11B is integrally formed at the end of the guide groove 11 opposite to the blade net 14.
[0054] The shaver handle 10 or shaver holder 20 features two parallel guide grooves 11. These grooves guide and stabilize the shaver holder 20 during sliding or installation on the handle 10. The parallel guide grooves ensure the straightness and stability of the shaver holder 20 during movement, preventing inaccurate installation or malfunction due to offset or tilting. This design improves the overall performance and reliability of the shaver. A fixed end 11A is located at the end of the guide groove 11 furthest from the handle 15. This fixed end 11A is the end of the concave guide groove 11 and is narrower than the groove itself. The fixed end 11A provides a clear stopping position for the shaver holder 20, ensuring it is securely fixed to the handle 10 when installed. It also helps prevent the shaver holder 20 from accidentally sliding or falling off due to insufficient magnetism during use, improving the safety and stability of the shaver. A sliding end 11B is located at the other end of the guide groove 11 furthest from the foil 14. The sliding end 11B is the open end of the guide groove 11, which allows the tool holder 20 to slide out or be removed from the tool holder 10. The design of the sliding end 11B allows the user to easily slide the tool holder 20 out of the tool holder 10 when cleaning or replacing it. The streamlined shape of the sliding end 11B also ensures the smoothness and stability of the tool holder 20 during the sliding process.
[0055] More preferably, when the magnet 22 is attracted to the first magnetic attraction part 12, the guide member 21 is inserted into the fixed end 11A, and when the magnet 22 is attracted to the second magnetic attraction part 13, the guide member 21 slides out along the sliding end 11B.
[0056] When the magnet 22 on the tool holder 20 attracts and tightly engages with the first magnetic attraction part 12 on the tool handle 10, the protruding part of the guide 21 on the tool holder 20 inserts into the fixed end 11A on the tool handle 10, ensuring that the tool holder 20 is securely locked onto the tool handle 10 when installed. The insertion of the guide 21 into the fixed end 11A provides additional fixing force, preventing the tool holder 20 from accidentally sliding or falling off during use. When the tool holder 20 needs to be replaced or removed for cleaning, the magnet 22 on the tool holder 20 engages with the second magnetic attraction part 13 on the tool handle 10. At this time, the guide 21 on the tool holder 20 can slide along the sliding end 11B on the tool handle 10, allowing the tool holder 20 to easily slide off the tool handle 10. This design provides a convenient disassembly mechanism, allowing users to easily disassemble the tool holder 20 and avoiding damage or safety risks caused by forceful disassembly.
[0057] More preferably, a limiting portion 26 is integrally formed on the surface of the tool holder 20, and the surface is located on the side of the tool holder 20 opposite to the handle body 15.
[0058] The blade holder 20 features two limiting portions 26 on its surface. These limiting portions 26 are integrally formed with the main body of the blade holder 20, rather than being added separately or assembled. The limiting portions 26 are protruding and designed to pass through the blades 27 that pass through the limiting holes, allowing the blades 27 to be easily secured to the blade holder 20 and preventing them from easily slipping. This ensures that the blades 27 are effectively fixed when the blade holder 20 abuts against the foil 14. The limiting portions 26 also limit the range of movement of the blades 27, ensuring that they do not exceed a predetermined safe area during shaving. This helps reduce the risk of skin abrasions or irritation during shaving, improving shaving accuracy and safety.
[0059] More preferably, the tool holder 20 further includes a blade 27 and a magnetic attractor 28.
[0060] The blade 27 passes through the limiting part 26 and abuts against the blade holder 20. When the magnet 22 is attracted to the first magnetic attraction part 12, the blade 27 is fixedly connected between the blade handle 10 and the blade holder 20. The magnetic attraction member 28 is embedded in the surface of the blade holder 20 where the limiting part 26 is integrally formed, and is fixedly connected to the blade holder 20. The magnetic attraction member 28 attracts the blade 27 that passes through the limiting part 26 and abuts against the blade holder 20.
[0061] The blade 27 is the core component of the razor, used for cutting beard hair. Here, the blade 27 is designed to pass through the limiting part 26 on the razor holder 20 and to be in close contact or connected to the back of the foil 14. The limiting part 26 serves to position and support the blade 27, ensuring its stable operation during shaving. This design ensures precise positioning and fixation of the blade 27 on the razor holder 20, preventing it from shaking or shifting during shaving. When the magnet 22 on the razor holder 20 attracts and tightly engages with the first magnetic attraction part 12 on the handle 10, the blade 27 is firmly clamped between the blade face and the razor holder 20. This clamping action is achieved by the combined force of the magnet 22 and the limiting part 26. The attraction of the magnet 22 ensures the stability of the blade 27 during shaving, while the limiting part 26 further enhances this stability. Furthermore, this design makes the replacement and cleaning of the blade 27 more convenient. Users simply need to separate the magnet 22 from the first magnetic attraction part 12, and allow the magnet 22 to attract the second magnetic attraction part 13, with the razor holder 20 abutting against the handle 15, to expose the blade 27, making it easy to remove. The magnetic attraction part 28 is designed so that when the blade 27 is easily fixed to the razor holder 20 by the limiting part 26, it slightly attracts the blade 27, further preventing it from falling off due to vibration or other reasons, thus improving the safety of the manual razor 100 when changing the blade 27.
[0062] More preferably, in addition to the magnetic attraction of the blade holder 20 to the blade handle 10, the blade holder 20 also includes at least a blade holder 20 with a pulley 24, a rake-tooth blade holder 200 and a short-tooth blade holder 300, any one of the blade holders 20 being fixedly connected to the blade handle 10.
[0063] In addition to the razor handle 10 described in this application, which can magnetically mount the razor holder 20 equipped with pulley 24 and rotating rod 23, any type of razor holder 20 with the same magnetic mounting structure, such as guide member 21 and magnet 22, can also be arbitrarily mounted. These razor holders 20 can use different structural designs at pulley 24 and rotating rod 23 to enable the manual razor 100 to adapt to different application scenarios for smooth shaving. The rake-tooth razor holder 200 replaces pulley 24 and rotating rod 23 with a rake-tooth structure. The rake-tooth structure can pre-treat the skin before shaving, gently lifting and combing the hair, making it easier for the blade 27 to capture it. This pre-treat reduces the blade 27 directly dragging the hair on the skin, thereby reducing the risk of shaving. The dispersed arrangement of the rake teeth helps to distribute the pressure during shaving to a wider area of the skin, reducing skin irritation caused by excessive pressure at a single point. In addition, the rake-tooth structure can better conform to the contours of the skin, especially in hard-to-reach areas such as under the chin and neck, improving the thoroughness and evenness of the shave. The short-tooth shaving head 300 replaces the pulley 24 and the rotating rod 23 with a short-tooth structure. This short-tooth design allows the shaving head 20 to more precisely handle fine or short hairs, avoiding the scratching sensation that might occur when the blade 27 slides on the skin. Because the short teeth are shorter, their contact area with the skin is relatively smaller, reducing friction and discomfort caused by prolonged contact between the blade 27 and the skin. Simultaneously, the short-tooth structure acts as a buffer during shaving, reducing the risk of the blade 27 directly impacting the skin, thereby lowering the possibility of cuts and skin sensitivity. Besides the pulley-type shaving head 20 protected in this application, as well as the aforementioned rake-tooth shaving head 200 and short-tooth shaving head 300, several other types of magnetic shaving heads 20 can be magnetically attached to the handle 10 in this application, which will not be described here.
[0064] Therefore, by pushing and pulling the tool holder 20 along the first direction F1, the magnet 22 sequentially attracts the first magnetic attraction part 12 and the first magnetic attraction part 12, so that the tool holder 20 can be quickly installed and removed from the tool handle 10, improving the efficiency of replacing the tool holder 20. Furthermore, by using the guide member 21 to slide along the guide groove 11 and be fixed to the guide groove 11, the tool holder 20 can be fixed on the tool handle 10 in the correct running direction, avoiding incorrect fixing position of the tool holder 20.
[0065] The embodiments described above are merely examples of several implementation methods of this application, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of this patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these modifications and improvements all fall within the protection scope of this application.
Claims
1. A manual razor with a magnetic shaving block, characterized in that, The manual razor includes: The handle is integrally formed with a guide groove extending in a first direction; The tool holder abuts against the tool shank and is integrally formed with a guide member that slides along the guide groove; The handle is also fixedly connected to a first magnetic attraction part and a second magnetic attraction part arranged along a first direction, and the tool holder is also provided with a magnet, which is embedded and fixed in the tool holder; When the tool holder is pushed or pulled along the first direction, the guide slides along the guide groove, and the magnet sequentially attracts the first magnetic attraction part and the second magnetic attraction part. When the magnet attracts the first magnetic attraction part, the guide is fixed in the guide groove, and the tool holder is fixedly connected to the tool handle.
2. A manual razor with a magnetic shaving block according to claim 1, characterized in that, The handle is also integrally formed with a blade mesh, which is located on the side of the first magnetic attraction part away from the second magnetic attraction part. When the magnet is attracted to the first magnetic attraction part, the blade holder abuts against the blade mesh.
3. A manual razor with a magnetic blade holder according to claim 2, characterized in that, The tool holder also includes: A rotating rod is fixedly connected to the tool holder, and the rotating rod extends along the second direction; A pulley is rotatably connected to the rotating rod and rotates about the rotating rod.
4. A manual razor with a magnetic blade holder according to claim 3, characterized in that, The surface of the tool holder is also integrally formed with a push-pull portion, which is located on the side of the tool holder away from the tool handle when viewed along the second direction.
5. A manual razor with a magnetic blade holder according to claim 4, characterized in that, The handle is also integrally formed with a handle body, which is located on the side of the second magnetic attraction part away from the first magnetic attraction part. When the magnet is attracted to the second magnetic attraction part, the knife holder abuts against the handle body.
6. A manual razor with a magnetic shaving block according to claim 5, characterized in that, The two guide grooves are parallel to each other, and a fixed end is integrally formed at the end of the guide groove opposite to the handle body, and a sliding end is integrally formed at the end of the guide groove opposite to the blade net.
7. A manual razor with a magnetic blade holder according to claim 6, characterized in that, When the magnet is attracted to the first magnetic attraction part, the guide is inserted into the fixed end; when the magnet is attracted to the second magnetic attraction part, the guide slides out along the sliding end.
8. A manual razor with a magnetic shaving block according to claim 5, characterized in that, The surface of the tool holder is also integrally formed with a limiting part, and the surface is located on the side of the tool holder away from the handle body.
9. A manual razor with a magnetic blade holder according to claim 8, characterized in that, The tool holder also includes: The blade passes through the limiting part and abuts against the blade holder. When the magnet is attracted to the first magnetic attraction part, the blade is fixedly connected between the blade handle and the blade holder. A magnetic suction element is embedded in the surface of the tool holder where the limiting part is integrally formed, and is fixedly connected to the tool holder; The magnetic attractor attracts the blade that passes through the limiting part and abuts against the blade holder.
10. A manual razor with a magnetic shaving block according to claim 1, characterized in that, In addition to the magnetic attraction of the tool holder to the tool handle, the tool holder also includes at least a tool holder with a pulley, a rake-tooth tool holder, and a short-tooth tool holder, any one of which is fixedly connected to the tool handle.