Hair drier with tuyere
By setting a detachable structure of the introduction groove and the plug block on the hair dryer, the elastic deformation connecting plate and anti-detachment components are used to solve the problems of increased installation weight and high cost of the air nozzle, and simple installation and disassembly are realized, reducing the probability of air nozzle disengagement and production costs.
Patent Information
- Application Number
- CN202421519002.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-28
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-06-28
AI Technical Summary
The use of magnets and magnetic bodies during the installation of existing hair dryers leads to problems such as weight increase and increased production and usage costs.
It adopts a detachable structure, including the introduction groove and the plug block, and the design of the elastic deformation connecting plate and anti-detachment components can realize the simple installation and disassembly of the air nozzle and the hair dryer.
Reduces the probability of the air nozzle being disengaged from the blower, reduces the overall weight increase and production and usage costs.
Smart Images

Figure CN223111210U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of hair dryers, in particular to a hair dryer with a nozzle. Background Art
[0002] A hair dryer is a device used to dry hair and style hair. With the increasing requirements for the functions of hair dryers, more and more hair dryers can install accessories at the air outlet to increase the functionality of the hair dryer. For example, adding a nozzle can make the air flow more concentrated, easier to dry hair, and easier to control the wind direction; another example is that a heat dissipation nozzle can evenly dissipate the hot air, thereby reducing damage to the hair.
[0003] Chinese Patent No. CN219613267U discloses a quick-release nozzle and a hair dryer of a hair dryer. Between the nozzle and the hair dryer, there is a connecting component for connecting the two. The connecting component includes a connecting platform arranged on the end face of the nozzle, and a connecting ring arranged near the air outlet of the hair dryer. A convex part is arranged on the outer wall edge of the connecting platform. Magnets and magnetic bodies that can adsorb each other are respectively arranged on the connecting platform and the connecting ring. A cavity is arranged on the connecting platform. A plurality of magnets are arranged around the central axis of the cavity. A clamping groove is arranged at the inner lining edge of the connecting ring. The clamping groove includes a first groove body and a second groove body bent relative to the first groove body. One end of the first groove body penetrates the edge of the connecting ring, and the other end is communicated with the second groove body.
[0004] The installation process of the nozzle in the above structure is as follows: First, align the convex part with the clamping groove. Then, move the nozzle so that the connecting platform on the nozzle is inserted into the connecting ring. At this time, the magnets and magnetic bodies arranged on the connecting platform and the connecting ring will adsorb each other. Then, rotate the nozzle so that the convex part is inserted from the first groove body of the clamping groove to the end of the second groove body, thereby realizing the installation between the nozzle and the hair dryer. However, installing a plurality of magnets and magnetic bodies in the nozzle and the hair dryer will increase the weight of the hair dryer with the nozzle installed, and at the same time, it also increases the production and use costs of both. Summary of the Utility Model
[0005] Aiming at the disadvantages of the prior art that installing a plurality of magnets and magnetic bodies in the nozzle and the hair dryer results in an increase in the weight of the hair dryer with the nozzle installed, and at the same time, it also increases the production and use costs of both, the utility model provides a hair dryer with a nozzle that is convenient to disassemble and assemble and has a simple structure.
[0006] To solve the above technical problems, the utility model is solved by the following technical solutions:
[0007] A hair dryer with a nozzle, comprising a hair dryer and a nozzle. An air outlet is provided on the hair dryer, and the nozzle is installed on the air outlet. A detachable structure for disassembling and assembling the nozzle is provided between the air outlet and the nozzle. The detachable structure includes an inlet groove provided on the air outlet and a plug block provided at the insertion end of the nozzle that can be inserted into the inlet groove. The plug block is connected to the nozzle through an elastic deformation performance connecting plate. An anti-detachment component is provided between the inlet groove and the plug block to reduce the probability of the nozzle installed at the air outlet being detached from the hair dryer.
[0008] With the above solution, when the nozzle is installed on the air outlet of the hair dryer, the plug block connected to the nozzle through the connecting plate can be inserted into the inlet groove provided on the air outlet. After the plug block is inserted into the inlet groove, the position of the plug block can be limited by the anti-detachment component provided between the inlet groove and the plug block, reducing the probability of the plug block coming out of the inlet groove, thereby reducing the probability of the nozzle being detached from the hair dryer. Since the installation of the nozzle only requires inserting the plug block into the inlet groove and then using the anti-detachment component to limit the position of the plug block, the installation between the nozzle and the hair dryer can be achieved, thereby reducing the overall weight of the hair dryer after the nozzle is installed on it, and at the same time reducing the production and use costs of both.
[0009] Preferably, the anti-detachment component includes a pressing inclined surface provided on the inner wall of the inlet groove and a pressing flat surface provided at one end of the pressing inclined surface away from the air outlet of the hair dryer. The pressing inclined surface is inclined and increased from the end away from the pressing flat surface to the end close to the pressing flat surface. When the nozzle is inserted into the hair dryer, the plug block moves from the pressing inclined surface to the pressing flat surface, and the connecting plate deforms; when the plug block moves to the pressing flat surface, the pressing flat surface drives the connecting plate to maintain the deformed state, increasing the damping required for the nozzle to be detached from the hair dryer.
[0010] With the above solution, when the nozzle is installed at the air outlet of the hair dryer, the plug block connected to the nozzle through the connecting plate on the nozzle will gradually be inserted into the inlet groove. When the plug block is inserted into the inlet groove, the plug block will be squeezed against the pressing inclined surface in the inlet groove. At this time, the plug block will apply force to the connecting plate, causing the connecting plate to deform. The plug block and the pressing inclined surface will be squeezed against each other. When the plug block continues to penetrate deeper into the inlet groove, the plug block will move directly to the pressing flat surface. At this time, the pressing flat surface will keep the connecting plate in an elastically deformed state. At this time, the plug block will be squeezed against the pressing flat surface, thereby reducing the probability of the nozzle being detached from the hair dryer.
[0011] Preferably, splicing components are respectively provided on the outer wall of the hair dryer near the air outlet and the inner wall of the insertion end of the nozzle to make the outer walls flush when the two are connected.
[0012] Preferably, the splicing component includes a plug-in section provided at the air outlet of the hair dryer with an outer diameter smaller than that of the air outlet of the hair dryer, and a plug-in slot provided at the nozzle insertion section for the plug-in section to be inserted into when the nozzle is installed on the hair dryer.
[0013] With the above solution, the splicing section provided at the air outlet of the hair dryer can be inserted into the plug-in slot in the nozzle when the nozzle is installed at the air outlet, so that the nozzle is flush with the outer wall of the hair dryer, increasing the overall aesthetic feeling of the hair dryer.
[0014] Preferably, the guiding groove is provided on the plug-in section and at least two guiding grooves are circumferentially arranged around the plug-in section. The connecting plate is horizontally arranged in the plug-in slot and one end is fixed to the end of the plug-in slot. The number and positions of the connecting plate and the plug-in blocks on the connecting plate correspond to the number and positions of the guiding grooves.
[0015] With the above solution, setting at least two guiding grooves on the plug-in section and arranging the same number of connecting plates and plug-in blocks as the guiding grooves in the plug-in slot can further reduce the probability of the nozzle detaching from the hair dryer. At the same time, when the plug-in section is inserted into the plug-in slot on the nozzle, the bottom of the plug-in slot can also block the guiding grooves on the plug-in section, making the guiding grooves on the plug-in section not directly visible from the outside, thereby improving the overall aesthetic feeling of the hair dryer after installing the nozzle.
[0016] Preferably, the connecting plate is arranged near the inner part of the nozzle at the end of the plug-in slot.
[0017] With the above solution, arranging the connecting plate near the inner part of the nozzle at the end of the plug-in slot can increase the distance between the plug-in blocks on the connecting plate and the bottom surface of the plug-in slot, so that the space for the connecting plate to undergo elastic deformation is larger, making it more labor-saving for people to install the nozzle.
[0018] Preferably, the guiding groove is spirally arranged on the bottom surface of the plug-in section near the inside of the hair dryer.
[0019] With the above solution, when the length of the plug-in section is the same, compared with horizontally arranging the guiding groove on the plug-in end, the length of the spirally arranged guiding groove on the plug-in section is longer, the stroke of the plug-in block inserted into the bottom of the guiding groove will increase, and the inclination angle of the pressing inclined surface will decrease. Thus, when the plug-in block is inserted into the guiding groove, the probability of damage to the connecting plate is reduced, the service life of the connecting plate is increased, and the use cost of the nozzle is reduced.
[0020] Due to the adoption of the above technical solutions, the utility model has remarkable technical effects: when the plug-in block connected to the air nozzle through the connecting plate is arranged on the air nozzle and installed at the air outlet of the hair dryer, it can be inserted into the guiding groove arranged on the air outlet. After the plug-in block is inserted into the guiding groove, the anti-disengagement component arranged between the guiding groove and the plug-in block can limit the position of the plug-in block, reducing the probability of the plug-in block disengaging from the guiding groove, thereby reducing the probability of the air nozzle detaching from the hair dryer. Since the installation of the air nozzle only requires inserting the plug-in block into the guiding groove and then using the anti-disengagement component to limit the position of the plug-in block, the installation between the air nozzle and the hair dryer can be achieved, thereby reducing the increase in weight after the air nozzle is installed on the hair dryer, and at the same time reducing the production and use costs of both. Description of the Drawings
[0021] Figure 1 is an axonometric view of a hair dryer with an air nozzle in this embodiment;
[0022] Figure 2 is an exploded view of the hair dryer and the air nozzle in this embodiment;
[0023] Figure 3 is Figure 2 an enlarged view of part A in
[0024] Figure 4 is an axonometric view of the hair dryer in this embodiment;
[0025] Figure 5 is Figure 4 an enlarged view of part B in
[0026] Figure 6 is an axonometric view of the air nozzle in this embodiment.
[0027] The names of the parts referred to by each digital label in the above drawings are as follows: 1, hair dryer; 2, air nozzle; 3, air outlet; 4, plug-in block; 5, guiding groove; 6, connecting plate; 7, pressing inclined surface; 8, pressing plane; 9, plugging section; 10, plugging groove. Detailed Description of the Specific Embodiment
[0028] The following further describes the present utility model in detail in conjunction with the drawings and embodiments.
[0029] Embodiment
[0030] A hair dryer with an air nozzle, refer to Figures 1-5, including a hair dryer 1 and a nozzle 2. An air outlet 3 is provided on the hair dryer 1, and the nozzle 2 is installed on the air outlet 3. A detachable structure for disassembling and assembling the nozzle 2 is provided between the air outlet 3 and the nozzle 2. The detachable structure includes an inlet groove 5 provided on the air outlet 3 and a plug-in block 4 provided at the insertion end of the nozzle 2 that can be inserted into the inlet groove 5. The plug-in block 4 is connected to the nozzle 2 through an elastic deformation plate 6. An anti-detachment component is provided between the inlet groove 5 and the plug-in block 4 to reduce the probability of the nozzle 2 installed at the air outlet 3 detaching from the hair dryer 1.
[0031] Reference Figures 2-6 , the anti-detachment component includes a pressing inclined surface 7 provided on the inner wall of the inlet groove 5 and a pressing plane 8 provided at one end of the pressing inclined surface 7 away from the air outlet 3 of the hair dryer 1. The pressing inclined surface 7 is inclined and increases from the end away from the pressing plane 8 to the end close to the pressing plane 8. When the nozzle 2 is inserted into the hair dryer 1, the plug-in block 4 moves from the pressing inclined surface 7 to the pressing plane 8, and the connecting plate 6 deforms; when the plug-in block 4 moves to the pressing plane 8, the pressing plane 8 drives the connecting plate 6 to maintain the deformed state, increasing the damping required for the nozzle 2 to detach from the hair dryer 1.
[0032] On the outer wall of the hair dryer 1 near the air outlet 3 and the inner wall of the insertion end of the nozzle 2, splicing components are respectively provided to make the outer walls flush when the two are connected. The splicing components include a plug-in section 9 provided at the air outlet 3 of the hair dryer 1 with an outer diameter smaller than that of the air outlet 3 of the hair dryer 1 and a plug-in slot 10 provided at the insertion section of the nozzle 2 for the plug-in section 9 to be inserted when the nozzle 2 is installed on the hair dryer 1. The inlet groove 5 is spirally provided on the plug-in section 9 and at least two inlet grooves 5 are evenly arranged around the circumference of the plug-in section 9. The connecting plate 6 is horizontally arranged in the plug-in slot 10 and one end is fixed to the end of the plug-in slot 10. The number and positions of the connecting plate 6 and the plug-in block 4 on the connecting plate 6 correspond to the number and positions of the inlet grooves 5. The connecting plate 6 is arranged near the inside of the nozzle 2 at the end of the plug-in slot 10.
[0033] Specific installation process of the nozzle 2: When the nozzle 2 needs to be installed on the hair dryer 1, first, align the insertion block 4 on the nozzle 2 with the guiding groove 5 on the insertion section 9. Then, rotate the nozzle 2 so that the insertion block 4 gradually screws into the helically arranged guiding groove 5. When the insertion block 4 is inserted into the guiding groove 5, the insertion block 4 will first come into contact with and squeeze against the pressing inclined surface 7 in the guiding groove 5. At this time, the connecting plate 6 used to connect the insertion block 4 and the nozzle 2 will undergo elastic deformation. As the insertion block 4 further enters the guiding groove 5, the insertion block 4 will gradually move from the pressing inclined surface 7 to the pressing plane 8. At this time, the insertion block 4 will squeeze against the pressing plane 8, keeping the connecting plate 6 in an elastically deformed state, thereby reducing the probability of the insertion block 4 disengaging from the guiding groove 5 and achieving the installation between the nozzle 2 and the hair dryer 1. When the nozzle 2 needs to be removed from the hair dryer 1, the nozzle 2 can be rotated in the reverse direction to move the insertion block 4 from the pressing plane 8 to the pressing inclined surface 7, and then continue to rotate the nozzle 2 to remove the nozzle 2 from the hair dryer 1.
[0034] The above is only the preferred embodiment of the present invention. The protection scope of the present invention is not limited to the above embodiments. All technical solutions falling within the concept of the present invention belong to the protection scope of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements should also be regarded as within the protection scope of the present invention.
Claims
1. A hair dryer with a nozzle, comprising a hair dryer (1) and a nozzle (2). An air outlet (3) is provided on the hair dryer (1), and the nozzle (2) is installed on the air outlet (3). A detachable structure for disassembling and assembling the nozzle (2) is provided between the air outlet (3) and the nozzle (2), characterized in that: The detachable structure includes an insertion groove (5) provided on the air outlet (3) and a plug-in block (4) provided at the insertion end of the nozzle (2) that can be inserted into the insertion groove (5). The plug-in block (4) is interconnected with the nozzle (2) through an elastic deformation performance connecting plate (6). A anti-disengagement component is provided between the insertion groove (5) and the plug-in block (4) to reduce the probability of the nozzle (2) installed at the air outlet (3) detaching from the hair dryer (1).
2. The hair dryer with a nozzle according to claim 1, characterized in that: The anti-disengagement component includes a pressing inclined surface (7) provided on the inner wall of the insertion groove (5) and a pressing flat surface (8) provided at one end of the pressing inclined surface (7) away from the air outlet (3) of the hair dryer (1). The pressing inclined surface (7) is inclined and increases from the end away from the pressing flat surface (8) to the end close to the pressing flat surface (8). When the nozzle (2) is inserted into the hair dryer (1), the plug-in block (4) moves from the pressing inclined surface (7) to the pressing flat surface (8), and the connecting plate (6) deforms; when the plug-in block (4) moves to the pressing flat surface (8), the pressing flat surface (8) drives the connecting plate (6) to maintain the deformed state, increasing the damping required for the nozzle (2) to disengage from the hair dryer (1).
3. The hair dryer with a nozzle according to claim 2, characterized in that: Splicing components are respectively provided on the outer wall of the hair dryer (1) near the air outlet (3) and the inner wall of the insertion end of the nozzle (2) to make the outer walls flush when the two are connected.
4. The hair dryer with a nozzle according to claim 3, characterized in that: The splicing component includes a plug-in section (9) provided at the air outlet (3) of the hair dryer (1) with an outer diameter smaller than that of the air outlet (3) of the hair dryer (1) and a plug-in groove (10) provided in the insertion section of the nozzle (2) for the plug-in section (9) to be inserted when the nozzle (2) is installed on the hair dryer (1).
5. The hair dryer with a nozzle according to claim 4, characterized in that: The insertion groove (5) is provided on the plug-in section (9) and at least two insertion grooves (5) are circumferentially arranged around the plug-in section (9). The connecting plate (6) is horizontally arranged in the plug-in groove (10) and one end is fixed to the end of the plug-in groove (10). The number and positions of the connecting plate (6) and the plug-in block (4) on the connecting plate (6) correspond to the number and positions of the insertion grooves (5).
6. The hair dryer with a nozzle according to claim 5, wherein: The connecting plate (6) is arranged at the end of the plug-in groove (10) near the inside of the nozzle (2).
7. The hair dryer with a nozzle according to claim 4, characterized in that: The insertion groove (5) is spirally arranged on the bottom surface of the plug-in section (9) close to the inside of the hair dryer (1).
Citation Information
Patent Citations
Quick-release tuyere of hair drier and hair drier
CN219613267U