Manual shaver
The adjustable dual-blade magazine mechanism and wetting block design solve the problem of manual razors scratching the skin on the complex contours of the face, achieving better fit and comfort, reducing the risk of scratches, and improving shaving results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2026-04-14
AI Technical Summary
Existing manual razors are prone to causing skin irritation during use, especially in areas with complex facial contours, and the blades do not conform well to the skin, making it difficult to adjust adaptively.
It adopts an adjustable double blade magazine mechanism with three different angle positions, combined with a wetting block and non-slip handle design. The adjustment and positioning components enable flexible adjustment of the blade magazine angle and continuous contact of the wetting block, adapting to different facial contours and keeping the skin moist.
It effectively avoids skin scratches caused by improper angles, improves the fit and comfort of shaving, reduces the risk of friction and scratches, and enhances the safety and efficiency of shaving.
Smart Images

Figure CN224116218U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of small household appliance technology, and specifically refers to a manual shaver. Background Technology
[0002] Manual razors are an essential tool for daily personal grooming, widely used for trimming and cleaning facial hair and other body hair on men. Their portability, ease of use, and lack of reliance on a power source make them a preferred shaving device for many consumers in both home and travel settings.
[0003] However, existing manual razors have some obvious drawbacks in practical use, with the problem of easily shaving the skin being particularly prominent. For example, some traditional manual razors use a multi-blade design, which can improve shaving efficiency, but the small spacing between the blades makes it difficult to control precisely during shaving, easily leading to skin pulling or scratches from the blades. Furthermore, some razor heads do not conform well to the skin, failing to adjust to complex facial contours, increasing the risk of shaving. Some razors have a fixed blade angle that cannot flexibly adapt to facial curves during shaving, requiring users to be extra careful when shaving areas such as the chin and corners of the mouth, otherwise, it is very easy to shave the skin, causing pain and inconvenience. Utility Model Content
[0004] This invention, through a double blade magazine with three different angle positions, and a wetting block that moves with the blade magazine, can adapt to different contours and keep the shaving area moist during shaving to prevent skin from being scratched, thereby alleviating the problems mentioned in the background art.
[0005] The purpose of this utility model is achieved as follows: a manual razor, comprising:
[0006] The anti-slip handle includes a hollow grip bar, multiple drainage holes penetrating the grip bar, and an anti-slip rib area on the grip bar, the anti-slip rib area being used to collect liquid remaining on the user's hands during shaving;
[0007] The adjustable double tool magazine mechanism includes a fixed plate connected to the top of the grip lever, two movable tool magazines hinged to the fixed plate, and an adjustment assembly for adjusting the angle between the movable tool magazines;
[0008] The wetting mechanism includes a support frame disposed on the top of each movable shaving magazine, a wetting block disposed within the support frame, and a positioning component for fixing and rotating the support frame, wherein the wetting block is used to keep the liquid in continuous contact with the shaving area during shaving.
[0009] The present invention is further configured such that the anti-slip rib area is formed by a plurality of anti-slip grooves disposed on the surface of the grip rod along an inclined direction, and the anti-slip rib area is distributed on the front and rear sides of the grip rod, respectively corresponding to the placement areas of the thumb and index finger during shaving.
[0010] The present invention is further configured such that the drainage hole extends through the left and right sides and the bottom of the grip rod in both the horizontal and vertical directions.
[0011] The present invention is further configured such that the adjustment component includes three pairs of fixing holes formed on the fixing plate, and a buckle structure provided on each movable tool magazine and detachably connected to the fixing holes. The fixing holes are used to fix the two movable tool magazines in three different angle positions.
[0012] The present invention is further configured such that the adjustable angle between the two movable blade magazines includes three preset angles of 120°, 180° and 270°, and the angle is locked by three pairs of fixing holes.
[0013] The present invention is further configured such that the wetting block is made of hydrophilic polyurethane foam.
[0014] The present invention is further configured such that the positioning component includes:
[0015] A rotating shaft is located at the bottom of the support frame, and the rotating shaft is rotatably connected to the top of the movable tool magazine.
[0016] Neodymium magnets are symmetrically arranged at the bottom of the support frame, and metal adsorption plates are provided at the top of the movable blade holder at positions corresponding to the neodymium magnets.
[0017] The present invention is further configured such that the outer surface of the rotating shaft is provided with a flexible protrusion arranged circumferentially, and the flexible protrusion is fixed to the top of the movable tool magazine.
[0018] By adopting the above technical solution, the beneficial effects that this utility model can achieve are:
[0019] 1. The anti-slip handle features anti-slip ribs on the grip bar that work in conjunction with multiple drainage holes. The anti-slip ribs collect residual liquid from the user's hands, while the drainage holes drain the liquid, keeping the handle dry, improving grip stability, and reducing the risk of skin nicks caused by slipping and losing control of the shaver.
[0020] 2. Through the adjustment components of the adjustable double blade magazine mechanism, the three pairs of fixing holes and the buckle structure are used to fix the two movable blade magazines at three preset angles of 120°, 180° and 270°, so that the blade magazines can adapt to different facial contours. By symmetrically setting, the lateral pressure of the blades is balanced, and excessive pressure on the skin due to improper angle is avoided, which may cause scratches.
[0021] 3. By setting a wetting block made of hydrophilic polyurethane foam in the support frame of the wetting mechanism, the support frame can be fixed and rotated by the rotation axis of the positioning component in conjunction with a neodymium magnet, so that the wetting block can continuously contact the shaving area during shaving, keep the skin moist, reduce friction and irritation between the blade and the skin, and reduce the risk of shaving. Attached Figure Description
[0022] Figure 1 This is a three-dimensional structural diagram of the present invention in the first direction;
[0023] Figure 2 This is a three-dimensional structural diagram of the second direction of this utility model;
[0024] Figure 3 This is a utility model Figure 1 A schematic diagram of a partial cross-sectional structure;
[0025] Figure 4 This is a schematic diagram of the first angular position of the two movable tool magazines of this utility model;
[0026] Figure 5 This is a schematic diagram of the second angular position of the two movable tool holders of this utility model;
[0027] Figure 6 This is a schematic diagram of the third angular position of the two movable tool magazines of this utility model.
[0028] The attached diagram is labeled as follows: 1. Anti-slip handle; 10. Grip bar; 11. Drain hole; 12. Anti-slip rib area; 120. Anti-slip groove; 2. Adjustable double blade magazine mechanism; 20. Fixing plate; 21. Movable blade magazine; 22. Adjustment component; 220. Fixing hole; 221. Snap-fit structure; 3. Wetting mechanism; 30. Support frame; 31. Wetting block; 32. Positioning component; 320. Rotating shaft; 321. Neodymium magnet; 322. Metal adsorption sheet; 4. Flexible protrusion. Detailed Implementation
[0029] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. See also: Figure 1-6 :
[0030] Example 1:
[0031] This embodiment provides a manual razor, including:
[0032] The anti-slip handle 1 includes a hollow grip bar 10, multiple drainage holes 11 penetrating the grip bar 10, and an anti-slip rib area 12 provided on the grip bar 10. The anti-slip rib area 12 is used to collect liquid remaining on the user's hands during shaving.
[0033] The adjustable double tool magazine mechanism 2 includes a fixed plate 20 connected to the top of the gripping rod 10, two movable tool magazines 21 hinged to the fixed plate 20, and an adjustment assembly 22 for adjusting the angle between the movable tool magazines 21.
[0034] The wetting mechanism 3 includes a support frame 30 disposed on the top of each movable blade magazine 21, a wetting block 31 disposed within the support frame 30, and a positioning component 32 for fixing and rotating the support frame 30. The wetting block 31 is used to keep the liquid in continuous contact with the shaving area during shaving.
[0035] The non-slip handle provides users with a stable grip, reducing the risk of the razor going out of control due to slippage during shaving and lowering the risk of skin nicks.
[0036] The grip lever 10 is used to reduce the weight of the handle, save materials, provide space for the drainage hole 11, and also plays a certain role in cushioning. The grip lever 10 has a hollow cylindrical structure with a hollow interior, and its shape is commonly cylindrical or slightly elliptical to fit the human hand.
[0037] The drain hole 11 is used to promptly drain liquid remaining on the handle during shaving, keeping the handle dry and preventing slippage due to liquid buildup. The drain hole 11 is a through-hole structure extending through both sides of the grip 10, and its shape is generally circular, elliptical, or elongated to facilitate liquid drainage. The drain hole 11 is integrally formed with the grip 10.
[0038] The anti-slip rib area 12 is used to collect liquid residue left on the user's hands during shaving, increasing the friction between the handle and the hand to prevent slippage.
[0039] The adjustable double-blade magazine mechanism 2 is used to adjust the angle between the magazines to adapt to different facial contours, improve the fit and comfort of shaving, reduce pressure and scratches on the skin caused by improper magazine angles, and enhance shaving performance.
[0040] The fixing plate 20 provides a mounting base for the movable tool magazine 21, fixes the adjustment component 22, and ensures the stability of the tool magazine mechanism. The fixing plate 20 is a flat plate structure, and its shape is commonly rectangular or approximately rectangular. The fixing plate 20 is located on the top of the anti-slip handle 1 and can be fixed to the top of the grip rod 10 by welding, screw connection, or snap-fit connection.
[0041] The movable razor magazine 21 is used to hold razor blades, allowing for better shaving results by adjusting the angle. The movable razor magazine 21 has a blade mounting position, a hinge structure connecting it to the fixed plate 20, and a structure that cooperates with the adjustment component 22. The movable razor magazine 21 is typically a long, narrow plate, which may have a slight curvature to conform to the face. The movable razor magazine 21 is connected to the fixed plate 20 via a hinge structure and can rotate around the hinge point; its angle is fixed by engaging with the adjustment component 22 via a snap-fit structure 221.
[0042] The adjustment component 22 is used to adjust the angle between the movable tool holders 21 and fix them in a suitable position.
[0043] The wetting mechanism 3 keeps the liquid in continuous contact with the shaving area during shaving, moisturizing the skin, reducing friction between the blade and the skin, thereby reducing the risk of shaving and improving shaving comfort.
[0044] The support frame 30 is used to fix and support the wetting block 31, providing a mounting base for the positioning component 32 and ensuring stable operation of the wetting block 31 during shaving. The support frame 30 is a frame-like structure with an internal space to accommodate the wetting block 31, and a structure at the bottom for connection with the positioning component 32. The support frame 30 is commonly a rectangular frame or an irregularly shaped frame adapted to the top of the movable blade magazine 21. The support frame 30 is rotatably connected to the top of the movable blade magazine 21 via the positioning component 32.
[0045] The wetting block 31 stores and releases liquid, ensuring continuous contact between the liquid and the shaving area. This lubricates and moisturizes the skin, reducing friction between the blade and skin, lowering the risk of cuts, and improving shaving comfort. The wetting block 31 has a block-like structure whose shape matches the interior of the support frame 30. Both ends extend beyond the support frame 30, and the wetting surface can be rotated to maximize its utilization. The wetting block 31 can be fixed to the support frame 30 by adhesive or embedding.
[0046] The positioning component 32 is used to fix and rotate the support frame 30 so that the wetting block 31 can function in the right position. At the same time, the angle of the wetting block 31 can be adjusted as needed to ensure good contact between the wetting block 31 and the shaving area and improve the adaptability of the wetting effect.
[0047] Example 2:
[0048] This embodiment provides a manual razor, which, in addition to the technical solutions of the above embodiments, also has the following technical features.
[0049] The anti-slip rib area 12 is formed by a plurality of anti-slip grooves 120 provided on the surface of the grip rod 10 along an inclined direction. The anti-slip rib area 12 is distributed on the front and rear sides of the grip rod 10, respectively corresponding to the placement areas of the thumb and index finger when shaving.
[0050] The anti-slip groove 120, as a basic component of the anti-slip rib area 12, increases friction and achieves anti-slip function by increasing the contact area with the hand and changing the characteristics of the contact surface. The anti-slip groove 120 is a groove-like structure formed on the surface of the grip bar 10, mostly elongated, extending along an inclined direction. Common cross-sectional shapes include semi-circular, which provides a softer feel and reduces pressure on the skin; V-shaped grooves offer stronger friction but may feel slightly harder on the skin; rectangular anti-slip grooves 120 are relatively simple to manufacture and also provide a certain degree of anti-slip effect. The anti-slip groove 120 is integrally molded with the grip bar 10.
[0051] When using a manual razor, the user's thumb and forefinger naturally rest on the anti-slip rib areas 12 on both sides of the handle 10. Since the anti-slip rib areas 12 consist of multiple anti-slip grooves 120 arranged in an inclined direction, the special shape and high friction of the anti-slip grooves 120 significantly increase the friction between the hand and the handle when the hand grips the handle firmly. Simultaneously, during shaving, the user's hands inevitably get covered in shaving foam, water, and other liquids. The anti-slip rib areas 12 collect these liquids, preventing them from flowing freely on the handle surface and causing slippage due to excessive slippage. Furthermore, the inclined anti-slip grooves 120 help guide liquid flow to the drain hole 11, further keeping the handle dry and maintaining good grip stability.
[0052] Example 3:
[0053] This embodiment provides a manual razor, which, in addition to the technical solutions of the above embodiments, also has the following technical features.
[0054] The drainage hole 11 extends through the left and right sides and the bottom of the grip rod 10 in both the horizontal and vertical directions.
[0055] The drainage holes 11 extend horizontally and vertically through the left and right sides and bottom of the handle 10, serving multiple purposes. During shaving, water, shaving foam, and other liquids from the user's hands easily get onto the handle. If not drained promptly, this not only makes the handle slippery and difficult to hold, increasing the risk of skin irritation, but can also seep into the handle's interior, corroding the internal structure and affecting the shaver's lifespan. The horizontal drainage holes 11 running through the left and right sides quickly drain liquids that flow onto the handle from the sides, such as water accidentally splashed onto the sides of the handle during shaving; the vertical drainage hole 11 running through the bottom effectively drains liquids that accumulate at the bottom of the handle, preventing liquid buildup. This design ensures the handle surface remains dry from all angles, greatly improving grip stability, reducing the likelihood of slipping and causing skin irritation, and also minimizing liquid corrosion of the handle's internal structure, thus extending the shaver's lifespan.
[0056] Example 4:
[0057] This embodiment provides a manual razor, which, in addition to the technical solutions of the above embodiments, also has the following technical features.
[0058] The adjustment assembly 22 includes three pairs of fixing holes 220 on the fixing plate 20, and a snap-fit structure 221 on each movable tool magazine 21 that is detachably connected to the fixing holes 220. The fixing holes 220 are used to fix the two movable tool magazines 21 in three different angle positions.
[0059] The fixing holes 220 provide a fixed position for the latching structure 221 of the movable razor magazine 21, limiting the angle of the movable razor magazine 21, thereby determining the relative position and shaving angle between the magazines. The fixing holes 220 are perforated structures penetrating the fixing plate 20, and their shape is commonly circular or square. Circular holes facilitate the insertion and rotation adjustment of the latching structure 221, while square holes provide better positioning and anti-rotation effects. The fixing holes 220 are symmetrically distributed on the fixing plate 20, with three pairs of fixing holes 220 corresponding to different preset angle positions of the movable razor magazine 21. The fixing holes 220 and the fixing plate 20 are an integral structure.
[0060] The snap-fit structure 221 engages with the fixing hole 220 to allow for angle adjustment and fixation of the movable tool magazine 21 on the fixing plate 20, ensuring that the tool magazine does not rotate arbitrarily during use. The snap-fit structure 221 generally consists of an elastic body and a head that mates with the fixing hole 220. The elastic body provides elastic deformation capability, and the head is designed to match the shape of the fixing hole 220. The snap-fit structure 221 and the movable tool magazine 21 can be tightly connected through injection molding, welding, riveting, or other methods.
[0061] When using a manual razor, if it is necessary to adjust the angle of the movable blade magazine 21 to suit the shaving needs of different parts of the face, the user manually applies force to the movable blade magazine 21. Because the locking structure 221 is elastic, during the application of force, the elastic body of the locking structure 221 deforms, causing its head to disengage from the current fixing hole 220. At this time, the movable blade magazine 21 rotates around the hinge point. When it rotates to the next preset angle position, the force applied to the movable blade magazine 21 is released. Under the action of the elastic restoring force, the head of the locking structure 221 aligns with and engages in the new fixing hole 220, thereby fixing the movable blade magazine 21 at the new angle.
[0062] Example 5:
[0063] This embodiment provides a manual razor, which, in addition to the technical solutions of the above embodiments, also has the following technical features.
[0064] The adjustable angle between the two movable blade magazines 21 includes three preset angles: 120°, 180°, and 270°, and the angle is locked through three pairs of fixing holes 220.
[0065] The two movable blade magazines 21 are adjustable to three preset angles: 120°, 180°, and 270°, and are locked via three pairs of fixing holes 220. This design aims to maximize the shaving adaptability and user experience of the manual razor. The 120° angle allows the magazine to better conform to relatively flat areas of the face, such as the cheeks, ensuring adequate contact between the blades and the skin, effectively removing hair while reducing pressure on the skin. At the 180° angle, the magazine is in a relatively straight position, suitable for areas requiring a straight shaving motion, such as the neck, helping to improve shaving smoothness and efficiency. The 270° angle can flexibly handle complex facial contours, such as the chin and around the corners of the mouth, allowing the magazine to more precisely conform to the curves of these areas, avoiding nicks and cuts. The three pairs of fixing holes 220, in conjunction with the latching structure 221 on the movable blade magazines 21, lock the angle, ensuring the stability of the magazine angle during shaving and preventing unpredictable angle changes from affecting the shaving effect. This design can meet the shaving habits and facial features of different users, effectively improving the comfort, safety and efficiency of shaving.
[0066] Example 6:
[0067] This embodiment provides a manual razor, which, in addition to the technical solutions of the above embodiments, also has the following technical features.
[0068] The wetting block 31 is made of hydrophilic polyurethane foam.
[0069] The wetting block 31 is made of hydrophilic polyurethane foam, primarily to optimize the shaving experience with manual razors and reduce the risk of cuts. Hydrophilic polyurethane foam has excellent water absorption and retention properties, quickly absorbing and storing large amounts of liquid, such as shaving foam and moisture. During shaving, this stored liquid is continuously and slowly released, keeping the shaving area consistently moist. This not only reduces friction between the blade and skin, lowering discomfort and the likelihood of cuts, but also softens the beard, making it easier for the blade to cut, improving shaving smoothness and efficiency. Simultaneously, the soft texture of the polyurethane foam will not cause additional irritation or damage to the skin, ensuring a comfortable experience even when used on sensitive areas of the face. Furthermore, its excellent durability ensures that the wetting block 31 can continue to function effectively during multiple shaving sessions, eliminating the need for frequent replacements and enhancing the product's practicality and economy.
[0070] Example 7:
[0071] This embodiment provides a manual razor, which, in addition to the technical solutions of the above embodiments, also has the following technical features.
[0072] The positioning component 32 includes:
[0073] A rotating shaft 320 is located at the bottom of the support frame 30, and the rotating shaft 320 is rotatably connected to the top of the movable tool magazine 21;
[0074] Neodymium magnets 321 are symmetrically arranged at the bottom of the support frame 30, and metal adsorption plates 322 are provided at the top of the movable blade box 21 at the position corresponding to the neodymium magnets 321.
[0075] The rotating shaft 320 provides a center of rotation for the support frame 30, allowing the support frame 30 to rotate around it, thereby changing the angle and position of the wetting block 31. The rotating shaft 320 has a slender cylindrical structure; its shape can be a standard cylinder, with chamfered ends or other designs to facilitate installation. The rotating shaft 320 is vertically mounted at the bottom of the support frame 30, located at the center or symmetrical position of the support frame 30, ensuring the balance of the support frame 30 during rotation. The rotating shaft 320 can be tightly connected to the bottom of the support frame 30 by welding or interference fit. It can be rotatably connected to the top of the movable tool holder 21 via bearing engagement or direct insertion into a hole in the top of the movable tool holder 21.
[0076] Neodymium magnets 321 utilize their own magnetism to attract the metal adsorption plates 322 on the top of the movable tool holder 21, fixing the angle of the support frame 30 and preventing it from rotating arbitrarily. When angle adjustment is needed, external force can overcome the magnetic force to allow the support frame 30 to rotate. Neodymium magnets 321 are commonly in sheet or block form, generally rectangular sheets or square blocks, to facilitate symmetrical installation and provide uniform magnetic force. The neodymium magnets 321 are symmetrically arranged at the bottom of the support frame 30, precisely corresponding to the metal adsorption plates 322 on the top of the movable tool holder 21, ensuring the effectiveness of the magnetic force. The neodymium magnets 321 can be glued to pre-designed grooves at the bottom of the support frame 30 with strong adhesive, or embedded in corresponding positions at the bottom of the support frame 30, ensuring a secure fixation and preventing them from easily falling off.
[0077] During shaving, the positioning component 32 plays a crucial role. The support frame 30 is rotatably connected to the top of the movable blade magazine 21 via a rotating shaft 320 at its bottom, allowing the support frame 30 to rotate around the rotating shaft 320. Symmetrically arranged neodymium magnets 321 at the bottom of the support frame 30 attract each other to the metal adsorption plate 322 at the top of the movable blade magazine 21, generating a magnetic force that fixes the support frame 30 at a certain angle. This ensures that the wetting block 31 maintains a stable position during shaving, continuously providing moisture to the shaving area. When it is necessary to adjust the angle of the wetting block 31 to better suit the shaving needs of different parts of the face, the user applies a certain external force to overcome the magnetic force between the neodymium magnets 321 and the metal adsorption plate 322, causing the support frame 30 to rotate around the rotating shaft 320. After being rotated to the appropriate angle, the neodymium magnet 321 and the metal adsorption plate 322 attract each other again, fixing the support frame 30 at the new angle position, thereby adjusting the angle of the wetting block 31 so that it can better fit the shaving area, provide continuous moisture to the skin, and reduce friction between the blade and the skin.
[0078] Example 8:
[0079] This embodiment provides a manual razor, which, in addition to the technical solutions of the above embodiments, also has the following technical features.
[0080] The outer surface of the rotating shaft 320 is provided with a flexible protrusion 4 arranged circumferentially, and the flexible protrusion 4 is fixed to the top of the movable tool magazine 21.
[0081] The flexible protrusion 4 increases the friction between the rotating shaft 320 and the top of the movable tool holder 21, preventing the rotating shaft 320 from loosening, wobbling, or axially displacing within the mounting hole on the top of the movable tool holder 21, thus making the support frame 30 more stable during rotation. The flexible protrusion 4 is a raised structure located on the outer surface of the rotating shaft 320, commonly in regular shapes such as semi-circular, trapezoidal, or rectangular. The flexible protrusion 4 is evenly distributed along the circumference of the rotating shaft 320 on its outer surface, making close contact with the inner wall of the mounting hole on the top of the movable tool holder 21. The flexible protrusion 4 is often made of materials with good elasticity, wear resistance, and adhesion, such as rubber or silicone. The flexible protrusion 4 and the main body of the rotating shaft 320 can be integrally manufactured by injection molding.
[0082] The above embodiments are merely preferred embodiments of the present utility model and are not intended to limit the scope of protection of the present utility model. Therefore, all equivalent changes made to the structure, shape, and principle of the present utility model should be covered within the scope of protection of the present utility model.
Claims
1. A manual razor, characterized in that... ,include: The anti-slip handle (1) includes a hollow grip bar (10), multiple drainage holes (11) penetrating the grip bar (10), and an anti-slip rib area (12) provided on the grip bar (10), wherein the anti-slip rib area (12) is used to collect liquid remaining on the user's hands during shaving. The adjustable double tool magazine mechanism (2) includes a fixed plate (20) connected to the top of the gripping rod (10), two movable tool magazines (21) hinged to the fixed plate (20), and an adjustment assembly (22) for adjusting the angle between the movable tool magazines (21). The wetting mechanism (3) includes a support frame (30) disposed on the top of each movable blade holder (21), a wetting block (31) disposed in the support frame (30), and a positioning component (32) for fixing and rotating the support frame (30). The wetting block (31) is used to keep the liquid in continuous contact with the shaving area during shaving.
2. A manual razor according to claim 1, characterized in that, The anti-slip rib area (12) is formed by multiple anti-slip grooves (120) provided on the surface of the grip rod (10) along an inclined direction. The anti-slip rib area (12) is distributed on the front and rear sides of the grip rod (10), respectively corresponding to the placement areas of the thumb and index finger when shaving.
3. A manual razor according to claim 1, characterized in that, The drainage hole (11) passes through the left and right sides and the bottom of the grip rod (10) in the horizontal and vertical directions, respectively.
4. A manual razor according to claim 1, characterized in that, The adjustment assembly (22) includes three pairs of fixing holes (220) on the fixing plate (20) and a snap-fit structure (221) on each movable tool magazine (21) that is detachably connected to the fixing holes (220). The fixing holes (220) are used to fix the two movable tool magazines (21) in three different angle positions.
5. A manual razor according to claim 4, characterized in that, The adjustable angle between the two movable blade holders (21) includes three preset angles: 120°, 180°, and 270°, and the angle is locked through three pairs of fixing holes (220).
6. A manual razor according to claim 1, characterized in that, The wetting block (31) is made of hydrophilic polyurethane foam.
7. A manual razor according to claim 1, characterized in that, The positioning component (32) includes: A rotating shaft (320) is located at the bottom of the support frame (30), and the rotating shaft (320) is rotatably connected to the top of the movable tool holder (21); Neodymium magnets (321) are symmetrically arranged at the bottom of the support frame (30), and metal adsorption plates (322) are provided on the top of the movable knife box (21) at the position corresponding to the neodymium magnets (321).
8. A manual razor according to claim 7, characterized in that, The outer surface of the rotating shaft (320) is provided with a flexible protrusion (4) arranged circumferentially, and the flexible protrusion (4) is fixed to the top of the movable tool holder (21).