An electric clipper with a convenient hair cleaning device
By designing an elastic element and a pressing block in the electric hair clipper to drive the moving blade to separate from the fixed blade, combined with a transmission groove and a transmission block, the problem of inconvenient hair removal caused by the narrow gap between the fixed blade and the moving blade is solved, achieving the effect of rapid cleaning and improved cleaning efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2026-03-31
AI Technical Summary
The narrow gap between the fixed and moving blades in existing electric hair clippers makes hair removal inconvenient and reduces cleaning efficiency.
An electric clipper was designed. A first elastic element drives the toothed end of the moving blade to fit against the toothed end of the fixed blade. A pressing block and a connecting assembly move the toothed end of the moving blade away from the toothed end of the fixed blade, increasing the gap for easier cleaning. The moving blade and the fixed blade are separated by a transmission groove and a transmission block. A second elastic element and a comb cover improve the ease of cleaning.
It enables rapid cleaning of hair between the moving and fixed blades, improving cleaning efficiency and ease of use, avoiding the risk of contact between the moving blade and the skin, and enhancing safety.
Smart Images

Figure CN119077801B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of hair styling tools, and in particular to an electric hair clipper that facilitates the cleaning of hair from the clippers. Background Technology
[0002] Electric hair clippers are a common hair-cutting tool used to trim hair. Currently, commonly used electric hair clippers consist of a fixed blade and a moving blade that fit together. Both the fixed and moving blades have a row of teeth along their front edges. A drive mechanism causes the moving blade to move back and forth, cutting off hair that gets between adjacent teeth on the fixed blade. In existing technology, hair often remains between the teeth of the fixed and moving blades, and the gap between them is very narrow, making it difficult for cleaners to easily remove hair from between the fixed and moving blades. This reduces the ease of cleaning electric hair clippers and consequently, reduces their efficiency. Summary of the Invention
[0003] This invention aims to at least solve one of the technical problems existing in the prior art. To this end, this invention proposes an electric hair clipper that facilitates the cleaning of hair from blades, thereby improving the efficiency of cleaning electric hair clippers.
[0004] An electric hair clipper according to an embodiment of the present invention for conveniently cleaning hair from blades includes:
[0005] Knife holder;
[0006] A fixed blade, which is connected to the tool holder;
[0007] Use a knife;
[0008] A first elastic element is used to drive the cutting tooth end of the moving blade to engage with the cutting tooth end of the fixed blade.
[0009] The pressing block has a connecting end and a pressing end, the area between the connecting end and the pressing end is hinged to the tool holder, the connecting end and the moving blade are connected by a connecting assembly, and the pressing end can be pressed and brought close to the fixed blade so that the connecting end can drive the cutting tooth end of the moving blade away from the cutting tooth end of the fixed blade through the connecting assembly.
[0010] It has at least the following beneficial effects:
[0011] The elastic force generated by the first elastic element drives the moving blade's toothed end to engage with the fixed blade's toothed end, ensuring that the moving and fixed blades remain in contact throughout the haircutting process, thus guaranteeing the haircutting effect of the electric clippers. When cleaning debris between the fixed and moving blades is required, the cleaner can press the pressing end of the pressing block, bringing it closer to the fixed blade. Since the hinge between the pressing block and the fixed blade is located between the connecting end and the pressing end of the pressing block, pressing the pressing end lifts the connecting end of the pressing block away from the fixed blade. Because the connecting end of the pressing block is connected to the moving blade via a connecting assembly, it can lift the fixed blade, causing the moving blade's toothed end to move away from the fixed blade's toothed end and increasing the gap between them. At this point, the cleaner can remove debris and hair from between the fixed and moving blades. The moving blade and the fixed blade in this electric hair clipper can be positioned far apart, allowing cleaning personnel to more quickly and easily remove residual hair between the fixed and moving blades, thereby improving the cleaning efficiency of the electric hair clipper.
[0012] According to an embodiment of the present invention, an electric hair clipper for convenient cleaning of blade hair includes a connecting assembly comprising a first transmission groove disposed on the connecting end and a transmission block disposed on the moving blade. The length direction of the first transmission groove is parallel to the length direction of the blade teeth of the moving blade. The transmission block extends into the first transmission groove. The first transmission groove is close to the inner sidewall of the moving blade and can abut against the transmission block, so that the connecting end can pull the blade teeth of the moving blade away from the blade teeth of the fixed blade. The transmission block can reciprocate within the first transmission groove along the length direction of the first transmission groove.
[0013] The electric hair clipper according to an embodiment of the present invention for convenient cleaning of blade hair further includes a second elastic member, the two ends of which are respectively connected to or abut against the blade holder and the pressing end, and the second elastic member is used to drive the pressing end away from the fixed blade.
[0014] According to an embodiment of the present invention, an electric hair clipper for convenient cleaning of blade hair further includes a comb cover, the comb cover being connected to the connecting end and / or the pressing end, the comb teeth of the comb cover being aligned and closed with the blade teeth of the fixed blade, and the moving blade being disposed between the comb cover and the fixed blade.
[0015] According to an embodiment of the present invention, the electric hair clipper that facilitates cleaning hair from blades has an arc-shaped curved surface formed by the comb teeth end of the aligned and closed comb cover and the blade teeth end of the fixed blade.
[0016] According to an embodiment of the present invention, an electric hair clipper for convenient cleaning of blade hair includes a first elastic element comprising two torsion springs. One end of each torsion spring is connected to or abuts against the blade holder, and the other end of each torsion spring is connected to or abuts against both ends of the moving blade. Both torsion springs are used to drive the toothed end of the moving blade to engage with the toothed end of the fixed blade.
[0017] The electric hair clipper according to an embodiment of the present invention for convenient cleaning of hair from the blade also includes two mounting posts, both of which are detachably mounted on the blade holder, and two torsion springs respectively sleeved on the two mounting posts.
[0018] The electric hair clipper according to an embodiment of the present invention for convenient cleaning of hair from the blade also includes a hinge shaft, the hinge shaft being disposed on the blade holder, and the pressing block being rotatably connected to the blade holder via the hinge shaft.
[0019] According to an embodiment of the present invention, an electric hair clipper for convenient cleaning of hair from blades further includes a housing and a reciprocating drive mechanism. The fixed blade is connected to the housing, and the reciprocating drive mechanism is disposed inside the housing. The output end of the reciprocating drive mechanism is connected to the movable blade. The reciprocating drive mechanism is used to drive the movable blade to reciprocate to cut the hair.
[0020] According to an embodiment of the present invention, an electric hair clipper for convenient cleaning of hair from blades has a second transmission groove formed on the moving blade. The reciprocating drive mechanism includes a rotary drive member and an eccentric rod. The eccentric rod passes through the second transmission groove. The rotary drive member is used to drive the eccentric rod to abut against the inner wall of the second transmission groove back and forth, so as to make the moving blade reciprocate.
[0021] Additional aspects and advantages of the invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments, wherein:
[0023] Figure 1 This is a schematic diagram of the structure of an electric hair clipper for convenient cleaning of blade hair according to an embodiment of the present invention;
[0024] Figure 2 for Figure 1 A magnified view of a section at point A in the middle;
[0025] Figure 3 This is a schematic diagram of the structure of the fixed blade, moving blade, pressing block, and comb cover in an electric hair clipper for easy cleaning of hair from the blades, according to an embodiment of the present invention.
[0026] Figure 4This is a side view of the fixed blade, moving blade, pressing block, and comb cover in an electric hair clipper for easy cleaning of hair from the blades, as described in an embodiment of the present invention.
[0027] Figure 5 This is a schematic diagram of the pressing block and the comb cover in an electric hair clipper for easy cleaning of hair from the blades, as described in an embodiment of the present invention.
[0028] Figure 6 This is a schematic diagram of another state of the fixed blade, moving blade, pressing block, and comb cover in an electric hair clipper for easy cleaning of blade hair according to an embodiment of the present invention.
[0029] Figure 7 This is a side view schematic diagram of another state of the fixed blade, moving blade, pressing block and comb cover in an electric hair clipper for easy cleaning of blade hair according to an embodiment of the present invention.
[0030] Figure 8 This is a schematic diagram of the structure of the fixed blade, moving blade, and reciprocating drive mechanism in an electric hair clipper for convenient cleaning of hair from the blade, according to an embodiment of the present invention.
[0031] Figure label:
[0032] Fixed tool 100; First arc surface 110;
[0033] Moving blade 200; transmission block 210; second transmission groove 220; first elastic element 230; mounting groove 240;
[0034] The comb cap is 300mm; the second arc surface is 310mm.
[0035] Pressing block 400; First transmission groove 410; Second elastic element 420;
[0036] Tool holder 500; mounting post 510; hinge pin 520;
[0037] Reciprocating drive mechanism 600; eccentric rod 610; rotary drive component 620;
[0038] Casing 700. Detailed Implementation
[0039] Embodiments of the present invention are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.
[0040] In the description of this invention, it should be understood that the orientation descriptions, such as up, down, front, back, left, right, etc., are based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting this invention.
[0041] In the description of this invention, "multiple" refers to two or more. The use of "first" and "second" is for distinguishing technical features only and should not be construed as indicating or implying relative importance, or implicitly indicating the number of indicated technical features or their sequential relationship.
[0042] In the description of this invention, unless otherwise explicitly defined, terms such as "set up," "install," and "connect" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this invention in conjunction with the specific content of the technical solution.
[0043] refer to Figures 1 to 4 , Figure 6 and Figure 7 According to an embodiment of the present invention, an electric hair clipper for convenient cleaning of razor hair includes:
[0044] Knife holder 500;
[0045] Fixed tool 100 is connected to tool holder 500;
[0046] Cutting tool 200;
[0047] The first elastic element 230 is used to drive the cutting tooth end of the moving blade 200 to fit against the cutting tooth end of the fixed blade 100.
[0048] Pressing block 400 has a connecting end and a pressing end. The area between the connecting end and the pressing end is hinged to the tool holder 500. The connecting end and the moving blade 200 are connected by a connecting assembly. The pressing end can be pressed and brought close to the fixed blade 100 so that the connecting end can drive the cutting tooth end of the moving blade 200 away from the cutting tooth end of the fixed blade 100 through the connecting assembly.
[0049] Understandably, the elastic force generated by the first elastic element 230 can drive the toothed end of the moving blade 200 to adhere to the toothed end of the fixed blade 100, ensuring that the toothed ends of the moving blade 200 and the fixed blade 100 remain in contact during the haircutting process, thereby ensuring the haircutting effect of the electric clippers. When it is necessary to clean up debris between the fixed blade 100 and the moving blade 200, the cleaner can press down the pressing end of the pressing block 400, bringing the pressing end of the pressing block 400 closer to the fixed blade 100. Since the hinge point between the pressing block 400 and the fixed blade 100 is located between the connecting end and the pressing end of the pressing block 400, when the pressing end of the pressing block 400 is pressed down, the connecting end of the pressing block 400 will lift up and move away from the fixed blade 100. Furthermore, because the connecting end of the pressing block 400 is connected to the moving blade 200 via the connecting assembly, the connecting end of the pressing block 400 can lift the fixed blade 100 through the connecting assembly. This causes the blade teeth of the moving blade 200 to move away from the blade teeth of the fixed blade 100, increasing the gap between the blade teeth of the moving blade 200 and the fixed blade 100. At this point, cleaning personnel can remove debris and hair between the fixed blade 100 and the moving blade 200. The ability of the blade teeth of the moving blade 200 and the fixed blade 100 to move away from each other in this electric hair clipper allows cleaning personnel to more quickly and conveniently remove residual hair between the fixed blade 100 and the moving blade 200, thereby improving the cleaning efficiency of the electric hair clipper.
[0050] After cleaning the hair remaining between the fixed blade 100 and the moving blade 200, the cleaning personnel can release the pressing block 400. Under the elastic force of the first elastic element 230, the moving blade 200 can quickly approach the fixed blade 100 and the blade teeth of the moving blade 200 can quickly fit into the blade teeth of the fixed blade 100, which improves the recovery speed of the moving blade 200 and thus improves the convenience of using the electric clippers.
[0051] refer to Figures 3 to 7 The connecting assembly includes a first transmission groove 410 disposed on the connecting end and a transmission block 210 disposed on the moving blade 200. The length direction of the first transmission groove 410 is parallel to the length direction of the cutting tooth end of the moving blade 200. The transmission block 210 extends into the first transmission groove 410. The first transmission groove 410 is close to the inner side wall of the moving blade 200 and can abut against the transmission block 210 so that the connecting end can pull the cutting tooth end of the moving blade 200 away from the cutting tooth end of the fixed blade 100. The transmission block 210 can reciprocate within the first transmission groove 410 along the length direction of the first transmission groove 410.
[0052] For ease of explanation, the length direction of the cutting edge of the movable blade 200 is defined as the left-right direction. It can be understood that the transmission block 210 on the movable blade 200 extends into the first transmission groove 410 on the connecting end of the pressing block 400. When cleaning residual hair between the fixed blade 100 and the movable blade 200, the cleaning personnel can press the pressing end of the pressing block 400. The connecting end of the pressing block 400 will lift and move away from the fixed blade 100. After the connecting end of the pressing block 400 is lifted, the first transmission groove 410 near the inner wall of the fixed blade 100 will abut against the transmission block 210 and lift the transmission block 210 upwards. The transmission block 210 can then lift the fixed blade 100, thereby causing the cutting edge of the movable blade 200 to move away from the cutting edge of the fixed blade 100.
[0053] On the other hand, the length direction of the first transmission groove 410 is parallel to the left-right direction, and the transmission block 210 can move within the first transmission groove 410 along its length direction. That is, the length of the first transmission groove 410 in the left-right direction is greater than the length of the transmission block 210 in the left-right direction, effectively preventing interference from the inner wall of the transmission groove on the reciprocating movement of the moving blade 200. It should be explained that a gap is left between the transmission block 210 and the inner wall of the first transmission groove 410. That is, when the cutting edge of the moving blade 200 is against the cutting edge of the fixed blade 100, the transmission block 210 does not abut against the inner wall of the first transmission groove 410, effectively preventing friction between the transmission block 210 and the inner wall of the first transmission groove 410 during the reciprocating movement of the moving blade 200. Only after the pressing end of the pressing block 400 is pressed will the transmission block 210 abut against the inner wall of the first transmission groove 410 near the fixed blade 100.
[0054] refer to Figure 3 and Figure 4 The electric hair clipper for easy cleaning of blade hair also includes a second elastic element 420. The two ends of the second elastic element 420 are connected to or abut against the blade holder 500 and the pressing end, respectively. The second elastic element 420 is used to drive the pressing end away from the fixed blade 100. Understandably, when the pressing end of the pressing block 400 is pressed down, the second elastic element 420 is compressed. After the cleaning personnel release the pressing block 400, the second elastic element 420 extends, driving the pressing end of the pressing block 400 away from the fixed blade 100, allowing the pressing block 400 to quickly return to its original position. The second elastic element 420 can be a spring.
[0055] refer to Figure 3 and Figure 4The electric hair clipper, designed for easy cleaning of hair from the blades, also includes a comb cover 300. The comb cover 300 is connected to a connecting end and / or a pressing end. The comb teeth of the comb cover 300 are aligned and closed with the blade teeth of the fixed blade 100. The moving blade 200 is positioned between the comb cover 300 and the fixed blade 100. It is understood that the moving blade 200's placement between the comb cover 300 and the fixed blade 100 effectively prevents contact between the moving blade 200 and the customer's skin, avoiding any potential scratches during haircuts and improving the safety of the electric hair clipper during use. On the other hand, since the comb cover 300 is connected to the pressing block 400, the second elastic member 420 drives the comb tooth end of the comb cover 300 to approach the blade tooth end of the fixed blade 100 through the pressing block 400, so that the comb tooth end of the comb cover 300 and the blade tooth end of the fixed blade 100 cooperate with each other.
[0056] It should be explained that the comb tooth end of the comb cover 300 is the end of the comb cover 300 with comb teeth. The comb teeth of the comb cover 300 are similar to the blade teeth of the fixed blade 100, and hair can also enter the comb teeth of the comb cover 300. The alignment and closure of the comb tooth end of the comb cover 300 with the blade tooth end of the fixed blade 100 means that the comb teeth of the comb cover 300 and the blade teeth of the fixed blade 100 are aligned one-to-one. Specifically, the comb tooth end of the comb cover 300 is located in front of the hinge point between the pressing block 400 and the fixed blade 100. During normal use of the electric hair clipper, the comb tooth end of the comb cover 300 is close to the blade tooth end of the fixed blade 100, so that the comb teeth of the comb cover 300 and the blade teeth of the fixed blade 100 are aligned and closed. When it is necessary to clean the hair remaining between the fixed blade 100 and the moving blade 200, the cleaning personnel can press the pressing end of the pressing block 400, so that the pressing end of the pressing block 400 is close to the fixed blade 100. Since the comb cover 300 is connected to the pressing block 400, and since the comb teeth of the comb cover 300 are located in front of the hinge between the pressing block 400 and the fixed blade 100, the comb teeth of the comb cover 300 will be lifted and moved away from the blade teeth of the fixed blade 100, so that the cleaning personnel can clean the hair remaining on the comb cover 300. After the cleaning personnel release the pressing block 400, under the elastic force of the first elastic element 230 and the second elastic element 420, the blade teeth of the moving blade 200, the connecting end of the pressing block 400, and the comb teeth of the comb cover 300 swing downward and approach the fixed blade 100, so that the blade teeth of the moving blade 200 and the comb teeth of the comb cover 300 reset and align with the blade teeth of the fixed blade 100 to close.
[0057] refer to Figure 1 and Figure 2The comb teeth of the aligned and closed comb cover 300 and the blade teeth of the fixed blade 100 form an arc-shaped curved surface. Specifically, the blade teeth of the fixed blade 100 have a first arc surface 110, and the comb teeth of the comb cover 300 have a second arc surface 310. Both the first arc surface 110 and the second arc surface 310 are used to contact the skin. After the comb teeth of the comb cover 300 and the blade teeth of the fixed blade 100 are aligned and closed, the first arc surface 110 and the second arc surface 310 form an arc-shaped curved surface. It is easy to understand that the blade teeth of the fixed blade 100 and the comb teeth of the comb cover 300 contact the customer's skin through an arc shape, effectively preventing the blade teeth of the fixed blade 100 and the comb teeth of the comb cover 300 from scratching the skin, and also preventing the blade teeth of the fixed blade 100 and the comb teeth of the comb cover 300 from pinching and injuring the skin.
[0058] refer to Figure 8 The first elastic element 230 consists of two torsion springs. One end of each torsion spring is connected to or abuts against the blade holder 500, and the other end is connected to or abuts against both ends (left and right ends) of the moving blade 200. Both torsion springs are used to drive the blade teeth of the moving blade 200 to engage with the blade teeth of the fixed blade 100. It can be understood that when the pressing end of the pressing block 400 is pressed down, the moving blade 200 is lifted away from the fixed blade 100, and the two torsion springs undergo elastic deformation. After the pressing end of the pressing block 400 is released, the other ends of the two torsion springs drive the moving blade 200 closer to the fixed blade 100, causing the blade teeth of the moving blade 200 to engage with the blade teeth of the fixed blade 100. Furthermore, the two torsion springs can continuously drive the blade teeth of the moving blade 200 to engage with the blade teeth of the fixed blade 100 to ensure the haircutting effect of the electric clippers. Specifically, the moving blade 200 has a mounting groove 240, and the other ends of the two torsion springs are engaged in the mounting groove 240.
[0059] refer to Figure 6 and Figure 8 This electric hair clipper, which facilitates cleaning hair from the blades, also includes two mounting posts 510, both of which are mounted on the blade holder 500. Two torsion springs are respectively sleeved on the two mounting posts 510. Understandably, the mounting posts 510 serve to fix the torsion springs, ensuring a secure connection and preventing them from wobbling. Specifically, the mounting posts 510 are bolts, threadedly connected to the blade holder 500, with the torsion springs sleeved on the threaded sections of the bolts.
[0060] refer to Figure 3 and Figure 6This electric hair clipper, which facilitates cleaning hair from the blades, also includes a hinge shaft 520. The hinge shaft 520 is mounted on the blade holder 500, and the pressing block 400 is rotatably connected to the blade holder 500 via the hinge shaft 520. Hinging is a common connection method. Both the pressing block 400 and the blade holder 500 have hinge holes. The hinge shaft 520 is inserted into these hinge holes, allowing the pressing block 400 to be hinged to the blade holder 500 and rotate around the hinge shaft 520. For details, refer to [reference needed]. Figure 4 and Figure 7 The connection between the first elastic element 230 and the moving blade 200 is located in front of the transmission block 210, and the connection end of the pressing block 400 is located behind the connection between the first elastic element 230 and the moving blade 200. That is, the mounting groove 240 is located in front of the transmission block 210, and the connection between the first elastic element 230 and the blade holder 500 is located behind the transmission block 210, or the mounting post 510 is located behind the transmission block 210.
[0061] refer to Figure 8 This electric hair clipper, which facilitates the removal of hair from the blades, also includes a housing 700 and a reciprocating drive mechanism 600. A fixed blade 100 is connected to the housing 700, and the reciprocating drive mechanism 600 is located inside the housing 700. The output end of the reciprocating drive mechanism 600 is connected to a movable blade 200. The reciprocating drive mechanism 600 drives the movable blade 200 to reciprocate, thereby cutting the hair. Specifically, the reciprocating drive mechanism 600 can drive the movable blade 200 in a left-right direction, so that the cutting teeth of the movable blade 200 and the fixed blade 100 can cut the hair.
[0062] refer to Figure 8 The moving blade 200 has a second transmission groove 220. The reciprocating drive mechanism 600 includes a rotary drive member 620 and an eccentric rod 610. The eccentric rod 610 passes through the second transmission groove 220. The rotary drive member 620 drives the eccentric rod 610 to reciprocate against the inner wall of the second transmission groove 220, thereby causing the moving blade 200 to reciprocate. In one embodiment of the present invention, the rotary drive member 620 can be a motor. It is understood that the output shaft of the motor is connected to the eccentric rod 610. The motor drives the eccentric rod 610 to perform circular motion around the central axis of the motor output shaft, causing the eccentric rod 610 to reciprocate against the left or right side wall of the second transmission groove 220, thereby driving the moving blade 200 to reciprocate in the left and right directions. It should be explained that in this embodiment of the present invention, during the rotation of the moving blade 200 relative to the fixed blade 100, the eccentric rod 610 always passes through the second transmission groove 220. The reciprocating drive mechanism 600 also includes a charging power supply module, which is used to supply power to the rotary drive component 620.
[0063] As an embodiment of the present invention, the electric hair clipper for convenient cleaning of hair from blades also includes a limiting slide plate (not shown in the figure). A groove (not shown in the figure) is formed on the housing 700. The limiting slide plate is slidably connected in the groove and can slide out of the groove to abut against the pressing end of the pressing block 400 to prevent the blade teeth of the moving blade 200 from approaching the blade teeth of the fixed blade 100. It is understood that when it is necessary to clean the hair remaining between the fixed blade 100 and the moving blade 200, the cleaner can press the pressing end of the pressing block 400, bringing the pressing end of the pressing block 400 closer to the fixed blade 100. Then the cleaner can push the limiting slide plate out of the groove, so that the limiting slide plate abuts against the pressing end of the pressing block 400. The limiting slide plate acts as a limit for the pressing block 400, preventing the extension of the second elastic element 420 and preventing the pressing end of the pressing block 400 from moving away from the fixed blade 100. This, in turn, prevents the cutting tooth end of the moving blade 200 from approaching the cutting tooth end of the fixed blade 100, allowing the cutting tooth end of the moving blade 200 to remain in a state away from the cutting tooth end of the fixed blade 100 for an extended period, further improving the convenience for cleaning personnel in removing residual hair. After the residual hair is removed, the cleaning personnel can push the limiting slide plate into the groove, causing the pressing end of the pressing block 400 to disengage from the limiting slide plate. After the pressing block 400 disengages from the limiting slide plate, the second elastic element 420 extends, causing the pressing end of the pressing block 400 to move away from the fixed blade 100, and the connecting end of the pressing block 400 to approach the cutting tooth end of the fixed blade 100. The cutting tooth end of the moving blade 200 can then fit against the cutting tooth end of the fixed blade 100.
[0064] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0065] Of course, the present invention is not limited to the above-described embodiments. Those skilled in the art can make equivalent modifications or substitutions without departing from the spirit of the present invention. All such equivalent modifications or substitutions are included within the scope defined by the claims of this application.
Claims
1. An electric clipper for easy cleaning of the hair from the cutting tool, characterized in that The utility model relates to a hair cutting device, comprising: a cutter holder; a fixed cutter connected to the cutter holder; a moving cutter; a first elastic member for urging the blade end of the moving cutter to abut on the blade end of the fixed cutter; a connecting assembly; a pressing block having a connecting end and a pressing end, the area between the connecting end and the pressing end being hinged to the cutter holder, the connecting assembly comprising a first transmission groove provided on the connecting end and a transmission block provided on the moving cutter, the length direction of the first transmission groove being parallel to the length direction of the blade end of the moving cutter, the transmission block extending into the first transmission groove, the transmission block being capable of reciprocating in the first transmission groove along the length direction of the first transmission groove, the pressing end being capable of being pressed and approaching the fixed cutter, the inner side wall of the first transmission groove close to the moving cutter being capable of abutting on the transmission block, so that the connecting end can pull the blade end of the moving cutter away from the blade end of the fixed cutter.
2. The electric clipper for easy cleaning of the hair of the cutter according to claim 1, characterized in that: Further comprising a second elastic member, the two ends of the second elastic member being connected or abutted with the cutter holder and the pressing end respectively, the second elastic member being used for urging the pressing end away from the fixed cutter.
3. The electric clipper for easy cleaning of the hair of the user according to claim 2, characterized in that: Further comprising a cutter comb cover, the cutter comb cover being connected with the connecting end and / or the pressing end, the comb teeth end of the cutter comb cover being aligned and closed with the blade end of the fixed cutter, the moving cutter being arranged between the cutter comb cover and the fixed cutter.
4. The electric clipper for easy cleaning of the hair of the user according to claim 3, characterized in that: The comb teeth end of the aligned and closed cutter comb cover and the blade end of the fixed cutter form an arc-shaped curved surface.
5. The electric clipper for easy cleaning of the hair of the user according to claim 1, characterized in that: The first elastic member comprises two torsion springs, one end of each of the two torsion springs being connected or abutted with the cutter holder, the other end of each of the two torsion springs being connected or abutted with two ends of the moving cutter respectively, the two torsion springs being used for urging the blade end of the moving cutter to abut on the blade end of the fixed cutter.
6. The electric clipper for easy cleaning of the hair of the cutting blade according to claim 5, characterized in that: Further comprising two mounting columns, the two mounting columns being capable of being detachably mounted on the cutter holder, the two torsion springs being sleeved on the two mounting columns respectively.
7. The electric clipper for easy cleaning of the hair of the cutting blade according to claim 1, characterized in that: Further comprising a hinge shaft, the hinge shaft being arranged on the cutter holder, the pressing block being rotatably connected to the cutter holder through the hinge shaft.
8. The electric clipper for easy cleaning of the hair of the cutting blade according to claim 1, characterized in that: Further comprising a housing and a reciprocating driving mechanism, the fixed cutter being connected to the housing, the reciprocating driving mechanism being arranged in the housing, the output end of the reciprocating driving mechanism being connected with the moving cutter, the reciprocating driving mechanism being used for driving the moving cutter to reciprocate, so as to cut off the hair.
9. The electric clipper for easy cleaning of the hair of the user according to claim 8, characterized in that: The moving cutter is formed with a second transmission groove, the reciprocating driving mechanism comprising a rotary driving member and an eccentric rod, the eccentric rod being arranged in the second transmission groove, the rotary driving member being used for urging the eccentric rod to abut on the inner side wall of the second transmission groove back and forth, so that the moving cutter reciprocates.
Citation Information
Patent Citations
Double-blade hair scissors convenient to clean
CN116872259A
Electric hair cutter convenient for cleaning hair of cutter
CN223173030U
Hair cutter
JP1994071063A