Charging seat with drying function

By adding a height adjustment and drying unit to the charging base, the electric shaver can be dried in all directions during the charging process, solving the problem of moisture residue after wet shaving and improving the convenience and safety of use.

CN224116217UActive Publication Date: 2026-04-14WENZHOU BAIJIA TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WENZHOU BAIJIA TECH CO LTD
Filing Date
2025-04-28
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing wet and dry electric shavers tend to retain moisture on the surface of the body and in the crevices of the shaver head after wet shaving, which is difficult to remove completely, leading to water accumulation, bacterial growth, and inconvenience in use. Traditional charging docks also lack a drying design.

Method used

A height adjustment function and a drying unit are added to the charging base. The height adjustment mechanism and drying box dry the electric shaver during the charging process. The drying fan and airflow channel design achieve all-round drying of the electric shaver.

Benefits of technology

It effectively removes moisture during charging, prevents bacterial growth, improves ease of use and safety, adapts to different shaver sizes, ensures a dry effect, and extends service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of charging, and particularly relates to a charging seat with a drying function. Comprising a charging shell, the charging shell comprises an insertion part used for vertically fixing the electric shaver and a charging terminal arranged in the insertion part, and the charging terminal is electrically connected with the electric shaver to provide a charging power source; the height adjusting mechanism comprises a lower supporting column, an upper supporting column and a head mounting table, the lower supporting column is fixedly connected with the insertion part, the upper supporting column is connected with the lower supporting column through a buckle structure capable of adjusting the height, and the head mounting table is fixedly connected with the top of the upper supporting column; and the head drying box is detachably connected with the head mounting table, and the head drying box is always located above the electric shaver through a height adjusting mechanism and used for drying the electric shaver. According to the utility model, the drying unit which has a height adjusting function and is linked with the height adjusting function is additionally arranged on the charging seat, so that the drying treatment of the electric shaver in a charging state is realized.
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Description

Technical Field

[0001] This utility model belongs to the field of charging technology, and specifically refers to a charging stand with a drying function. Background Technology

[0002] With the development of personal care technology, wet and dry electric shavers have become a common tool for modern men's daily grooming because they can meet diverse user needs such as shaving in humid environments and dry shaving. These shavers feature a waterproof design that allows users to directly rinse the head or body with water during wet shaving. When used with shaving foam or gel, they can significantly improve shaving comfort and reduce skin irritation, thus enjoying widespread use in home and travel settings.

[0003] However, existing wet and dry electric shavers generally suffer from moisture residue on the surface of the shaver and in the crevices of the shaving head after wet shaving. Due to the complex structure of areas such as the connection between the shaving head and the body, and the gaps between buttons, users cannot completely remove moisture by simply wiping. Long-term use can lead to water stains and even rust, which not only affects the appearance of the shaver but also provides a breeding ground for bacteria and mold, increasing the risk of skin infections. In addition, traditional charging docks only provide power replenishment and lack a targeted drying design, failing to solve the problem of moisture on the shaver after wet shaving. This forces users to air dry or wipe the shaver, reducing its convenience. Therefore, there is an urgent need for a device that can efficiently dry electric shavers during charging to solve the problems of water residue, hygiene hazards, and inconvenience in existing technologies. Utility Model Content

[0004] This invention addresses the problems mentioned in the background by adding a height adjustment function and a drying unit linked to the height adjustment to the charging base, thereby achieving the drying process for an electric shaver in the charging state.

[0005] The purpose of this utility model is achieved as follows: a charging dock with a drying function includes:

[0006] The charging housing includes an insertion part for vertically fixing an electric shaver, and a charging terminal disposed in the insertion part, the charging terminal being electrically connected to the electric shaver to provide charging power;

[0007] The height adjustment mechanism includes a lower support column, an upper support column, and a head mounting platform. The lower support column is fixedly connected to the insertion part, the upper support column is connected to the lower support column through an adjustable height snap-fit ​​structure, and the head mounting platform is fixedly connected to the top of the upper support column.

[0008] The head drying box is detachably connected to the head mounting platform. The head drying box is always positioned above the electric shaver via a height adjustment mechanism and is used to dry the electric shaver.

[0009] The present invention is further configured such that the latching structure of the height adjustment mechanism includes:

[0010] Multiple adjustment slots are spaced apart at the top of the lower support column;

[0011] Multiple adjustment protrusions, which cooperate with each adjustment slot, are located at the bottom of the upper support column;

[0012] The height of the head mounting platform can be adjusted in multiple levels by engaging the adjustment protrusion with different adjustment slots.

[0013] The present invention is further configured such that the head drying box includes an upper cover, a connecting cover, and a lower cover, the upper cover having an airflow inlet at the top, the connecting cover having a drying fan that directs airflow downwards, and the lower cover having an airflow outlet at the bottom.

[0014] The present invention is further configured such that the upper support and the lower support are provided with a flow guide channel on the side near the electric shaver, and the flow guide channel corresponds to the airflow outlet.

[0015] The present invention is further configured such that the airflow inlet of the upper cover includes:

[0016] The first air inlet is a ring-shaped opening distributed sequentially from the outside to the inside along the edge of the upper cover;

[0017] The second air inlet is a long strip of openings that radiate from the center of the upper cover and is combined with the first air inlet.

[0018] The present invention is further configured such that a plurality of inclined through-holes are provided on the side wall of the insertion part, and the drying holes correspond to the airflow outlet of the lower cover.

[0019] The present invention is further configured such that the upper cover, the connecting cover and the lower cover are detachably connected by threads.

[0020] The present invention is further configured such that the head drying box and the head mounting platform are detachably connected by a magnetic attraction assembly, the magnetic attraction assembly comprising:

[0021] Neodymium magnets are evenly distributed circumferentially on the outer surface of the connecting cover;

[0022] A metal adsorption plate, located inside the head mounting platform, is used to attract neodymium magnets to fix the head drying box in place.

[0023] By adopting the above technical solution, the beneficial effects that this utility model can achieve are:

[0024] 1. Through the integrated design of the charging housing, height adjustment mechanism and head drying box, the electric shaver is vertically fixed to the insertion part, so that the head drying box is always positioned above the shaver head through height adjustment, realizing simultaneous drying during charging, solving the problem of water residue and hygiene hazards after wet shaving, and improving the convenience and safety of use.

[0025] 2. By adjusting the engagement of the protrusion and the adjustment slot, the height of the head mounting platform can be adjusted in multiple stages, ensuring that the air outlet of the lower cover and the shaver head maintain the optimal drying distance, adapting to different shaver sizes and improving drying efficiency and targeting.

[0026] 3. The three-layer detachable structure design of the upper cover, connecting cover and lower cover forms a three-dimensional drying process, which quickly dries the moisture in the blade head and reduces moisture residue, solving the drying problem in gaps and complex structures. Attached Figure Description

[0027] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;

[0028] Figure 2 This is a utility model Figure 1 A schematic diagram of the cross-sectional structure;

[0029] Figure 3 This is a utility model Figure 2 A magnified structural diagram of part A;

[0030] Figure 4 This is a utility model Figure 2 A schematic diagram of the enlarged structure of part B;

[0031] Figure 5 This is an exploded view of this utility model.

[0032] The reference numerals in the figure are as follows: 1. Charging housing; 10. Insertion part; 11. Charging terminal; 2. Height adjustment mechanism; 20. Lower support column; 21. Upper support column; 22. Head mounting platform; 23. Buckle structure; 230. Adjustment slot; 231. Adjustment protrusion; 3. Head drying box; 30. Upper cover; 300. Airflow inlet; 3000. First air inlet; 3001. Second air inlet; 31. Connecting cover; 32. Lower cover; 320. Airflow outlet; 33. Drying fan; 4. Guide channel; 5. Drying hole; 6. Magnetic suction assembly; 60. Neodymium magnet; 61. Metal adsorption sheet. Detailed Implementation

[0033] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. See also: Figure 1-5 :

[0034] Example 1:

[0035] This embodiment provides a charging dock with a drying function, including:

[0036] The charging housing 1 includes an insertion part 10 for vertically fixing an electric shaver, and a charging terminal 11 disposed in the insertion part 10, wherein the charging terminal 11 is electrically connected to the electric shaver to provide charging power.

[0037] The height adjustment mechanism 2 includes a lower support column 20, an upper support column 21, and a head mounting platform 22. The lower support column 20 is fixedly connected to the insertion part 10. The upper support column 21 is connected to the lower support column 20 through a height-adjustable buckle structure 23. The head mounting platform 22 is fixedly connected to the top of the upper support column 21.

[0038] The head drying box 3 is detachably connected to the head mounting platform 22. The head drying box 3 is always positioned above the electric shaver via the height adjustment mechanism 2, and is used to dry the electric shaver.

[0039] The charging housing 1 is used to accommodate the insertion part 10 and the charging terminal 11, providing an interface for fixing and charging the electric shaver.

[0040] The insertion part 10 is used to vertically fix the handle of the electric shaver, ensuring that the electric shaver is accurately and stably positioned during charging and drying. The insertion part 10 is typically a slot or hole that fits the handle of the electric shaver, and may contain some flexible structures or positioning devices inside to better secure the handle of the electric shaver. The insertion part 10 is integrally formed with the charging housing 1.

[0041] The charging terminal 11 is electrically connected to the charging interface of the electric shaver, providing charging power to the electric shaver. The charging terminal 11 typically consists of one or more pairs of metal contacts, generally flat or cylindrical, to ensure tight contact with the charging interface of the electric shaver. The charging terminal 11 can be installed within the insertion part 10 by soldering, plugging, or other methods, corresponding to the charging interface of the electric shaver to ensure accurate alignment when the electric shaver is inserted into the insertion part 10.

[0042] The height adjustment mechanism 2 is used to adjust the height of the head drying box 3 to accommodate electric shavers of different sizes, ensuring that the drying airflow can accurately act on the head of the electric shaver. The height adjustment mechanism 2 consists of a lower support column 20, an upper support column 21, and a head mounting platform 22, and the height adjustment is achieved through a specific snap-fit ​​structure 23.

[0043] The lower support column 20, as part of the height adjustment mechanism 2, is fixedly connected to the charging housing 1 and provides support and a base for height adjustment for the upper support column 21. The lower support column 20 is typically a columnar structure, usually perpendicular to the surface of the charging housing 1, and is fixedly connected to the charging housing 1 through integral molding, welding, snap-fit ​​connection, or other methods.

[0044] The upper support column 21, as another part of the height adjustment mechanism 2, is connected to the lower support column 20 via an adjustable-height snap-fit ​​structure 23, and supports the head mounting platform 22, thereby achieving height adjustment of the head drying box 3. The upper support column 21 is typically a columnar structure, and is fixed at different height positions to the lower support column 20 via the snap-fit ​​structure 23, thus achieving height adjustment of the head drying box 3.

[0045] The head mounting platform 22 is fixedly connected to the top of the upper support column 21, providing an installation position for the head drying box 3 and ensuring the stability of the head drying box 3 during height adjustment. The head mounting platform 22 is typically a circular or rectangular block structure, located on top of the upper support column 21 and vertically connected to it. The head mounting platform 22 and the top of the upper support column 21 can be fixedly connected by means of integral molding, welding, snap-fit ​​connection, etc.

[0046] The head drying box 3 is used to dry the electric shaver. It removes moisture from the shaver head and body through airflow, alleviating the problem of residual moisture after wet shaving, preventing bacterial growth and corrosion, and improving the lifespan and hygiene of the electric shaver. The head drying box 3 is detachably connected to the head mounting platform 22 via threads or magnets, and is positioned above the electric shaver via the height adjustment mechanism 2.

[0047] Example 2:

[0048] This embodiment provides a charging dock with a drying function, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0049] The latching structure 23 of the height adjustment mechanism 2 includes:

[0050] Multiple adjustment slots 230 are spaced apart on the top of the lower support column 21;

[0051] Multiple adjustment protrusions 231 are provided at the bottom of the upper support column 21, which cooperate with each adjustment slot 230;

[0052] The height of the head mounting platform 22 can be adjusted in multiple levels by engaging the adjustment protrusion 231 with different adjustment slots 230.

[0053] The adjusting slots 230 cooperate with the adjusting protrusions 231 to determine different height positions of the upper support column 21, thereby adjusting the height of the head mounting platform 22. Simultaneously, they provide multiple selectable positioning points for height adjustment, enabling multi-level height adjustment of the head drying box 3. The adjusting slots 230 are recessed structures spaced apart on the top of the lower support column 20, typically rectangular or semi-circular, to ensure the adjusting protrusions 231 can be securely embedded. The adjusting slots 230 are evenly distributed on the top of the lower support column 20, arranged vertically. The adjusting slots 230 and the lower support column 20 are integrally formed, ensuring structural strength and stability.

[0054] The adjusting protrusion 231 cooperates with the adjusting slot 230 to fix the height position of the upper support column 21. The adjusting protrusion 231 is a raised structure located at the bottom of the upper support column 21. Its number and position correspond to the adjusting slot 230, and its shape matches the shape of the adjusting slot 230, such as a rectangular protrusion or a semi-circular protrusion, to ensure that it can be tightly locked into the adjusting slot 230. The adjusting protrusion 231 is integrally formed with the upper support column 21 to ensure that it will not fall off or loosen during the adjustment process.

[0055] When the height of the head drying box 3 needs to be adjusted, the user applies an upward or downward force to the upper support column 21. At this time, the adjustment protrusion 231 at the bottom of the upper support column 21 will separate from or re-engage with the adjustment slot 230 at the top of the lower support column 20 under the user's operation. For example, when the upper support column 21 is lifted upwards, the adjustment protrusion 231 disengages from its current position in the adjustment slot 230. The user can then adjust the upper support column 21 to a suitable height according to the size of the electric shaver, and then release it. The adjustment protrusion 231 will fall into the corresponding height adjustment slot 230, thereby fixing the height of the head mounting platform 22. In this way, the head drying box 3 can be precisely positioned according to the height of different electric shavers, allowing the drying airflow to accurately act on the shaver head for optimal drying results.

[0056] Example 3:

[0057] This embodiment provides a charging dock with a drying function, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0058] The head drying box 3 includes an upper cover 30, a connecting cover 31, and a lower cover 32. The upper cover 30 has an airflow inlet 300 at the top, the connecting cover 31 is provided with a drying fan 33 that delivers airflow downwards, and the lower cover 32 has an airflow outlet 320 at the bottom.

[0059] The upper cover 30 is used to guide external air into the head drying box. The upper cover 30 is similar to a box lid structure, with multiple airflow inlets 300 on the top. The upper cover 30 is located at the top of the head drying box 3 and can be connected to the connecting cover 31 by threads or snaps.

[0060] The connecting cover 31 connects the upper cover 30 and the lower cover 32, providing installation space for the drying fan 33, guiding airflow downwards, ensuring the structural integrity of the head drying box 3, and allowing airflow to be smoothly delivered from the upper cover 30 to the lower cover 32, achieving airflow circulation for drying. Similar to an intermediate connecting component, the connecting cover 31 has internal space for installing the drying fan 33 and connects to both the upper and lower covers 30 and 32 respectively. The connecting cover 31 can be detachably connected to the upper cover 30 and lower cover 32 via snap-fit ​​or threads, facilitating disassembly and maintenance.

[0061] The drying fan 33 generates airflow, directing the air passing through the upper cover 30 downwards to the electric shaver head. This airflow propels the shaver head, drying it and improving drying efficiency. The drying fan 33 typically consists of a motor, fan blades, and a housing. The motor drives the fan blades to rotate, generating airflow. The drying fan 33 is installed inside the connecting cover 31, corresponding to the position of the electric shaver, ensuring smooth airflow delivery. The housing of the drying fan 33 is secured to the connecting cover 31 using clips, screws, or glue. The motor's electrical connection to the control circuit ensures normal operation.

[0062] The lower cover 32 provides a delivery space for airflow, guiding it towards the electric shaver head so that the airflow acts more effectively on the head. The lower cover 32 resembles a box bottom structure, with an airflow outlet 320 at the bottom. The airflow outlet 320 is an integrally formed perforated structure with the lower cover 32, typically circular or radially arranged rectangular. The lower cover 32 is located at the bottom of the head drying box 3 and can be detachably connected to the bottom of the connecting cover 31 via snaps or threads.

[0063] When the charging dock starts working, outside air enters the head drying box 3 through the airflow inlet 300 of the upper cover 30. The incoming air passes through the airflow inlet 300 on the upper cover 30. Under the action of the drying fan 33, the airflow is transported downward to the connecting cover 31, and then guided into the lower cover 32 through the connecting cover 31.

[0064] Example 4:

[0065] This embodiment provides a charging dock with a drying function, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0066] The upper support column 20 and the lower support column 21 are provided with a flow channel 4 on the side near the electric shaver, and the flow channel 4 corresponds to the air outlet 320.

[0067] The airflow channel 4 guides airflow from the airflow outlet 320 of the lower cover 32 to the body of the electric shaver, ensuring that the airflow covers all parts of the shaver, especially areas prone to water accumulation such as the connection between the shaver head and the body, and button gaps. The airflow channel 4 is an internal channel structure, typically a channel structure, and its shape can be circular, rectangular, or other shapes. Located on the side of the upper support 21 and lower support 20 closest to the electric shaver, the airflow channel 4 receives the dry airflow discharged from the airflow outlet 320 of the lower cover 32. The airflow channel 4 is integrally formed with the upper support 21 and lower support 20.

[0068] Example 5:

[0069] This embodiment provides a charging dock with a drying function, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0070] The airflow inlet 300 of the upper cover 30 includes:

[0071] The first air inlet 3000 is a ring-shaped opening distributed sequentially from the outside to the inside along the edge of the upper cover;

[0072] The second air inlet 3001 is a long strip of opening that radiates from the center of the upper cover and is combined with the first air inlet 3000.

[0073] The aforementioned design of the airflow inlet 300 on the upper cover 30 aims to optimize the air intake effect of the head drying box 3, improving the drying efficiency and quality of the electric shaver. The first air inlet 3000 is designed as a circular opening distributed along the edge of the upper cover 30, allowing a large amount of external air to be drawn in from the edge, expanding the air intake range. The second air inlet 3001 is radially distributed from the center of the upper cover 30, supplementing air from the central area. The combination of these two design forms a three-dimensional air intake structure. This design allows air to enter the head drying box 3 more evenly. Under the action of the drying fan 33, the airflow acts more efficiently and evenly on the shaver head and body, avoiding drying dead zones, accelerating moisture evaporation, comprehensively improving drying efficiency and effect, and ensuring that all parts of the electric shaver are dried quickly and thoroughly, providing users with a better experience.

[0074] Example 6:

[0075] This embodiment provides a charging dock with a drying function, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0076] The side wall of the insertion part 10 is provided with a plurality of inclined through drying holes 5, which correspond to the airflow outlet 320 of the lower cover 32.

[0077] This design aims to solve the problem of water accumulation and difficulty in drying areas after wet shaving with an electric shaver, significantly improving the drying effect. Multiple upward-sloping drying holes 5 are provided on the side wall of the insertion part 10, corresponding to the airflow outlet 320 of the lower cover 32. This guides airflow to the surrounding area of ​​the base. This airflow guiding design allows the drying airflow to act on the electric shaver while simultaneously directing airflow not acting on the shaver to the surrounding area of ​​the base, ensuring simultaneous drying around the base and preventing excessive moisture around the base, which would otherwise result in poor drying.

[0078] Example 7:

[0079] This embodiment provides a charging dock with a drying function, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0080] The upper cover 30, the connecting cover 31, and the lower cover 32 are detachably connected by threads.

[0081] The upper cover 30, connecting cover 31, and lower cover 32 are designed with threaded connections for easy detachment. This design significantly improves product maintenance convenience, component replacement flexibility, and overall durability. During use, the threaded connection allows users to easily disassemble each cover for cleaning, inspection, and maintenance of internal components such as the drying fan 33. If a component is damaged or its performance deteriorates, it can be easily replaced by removing the cover, eliminating the need to replace the entire head drying box 3 and reducing operating costs. Furthermore, the threaded connection offers excellent stability, maintaining a tight connection between the covers even after multiple disassemblies and reassemblies. This ensures the head drying box 3 remains airtight during operation, maintains normal airflow circulation, and guarantees unaffected drying performance, thus extending the product's overall lifespan and providing users with a longer and more stable user experience.

[0082] Example 8:

[0083] This embodiment provides a charging dock with a drying function, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0084] The head drying box 3 and the head mounting platform 22 are detachably connected via a magnetic suction assembly 6, which includes:

[0085] Neodymium magnets 60 are evenly distributed circumferentially on the outer surface of the connecting cover 31;

[0086] A metal adsorption sheet 61 is located inside the head mounting platform 22 and is used to adsorb neodymium magnets 60 to fix the head drying box 3.

[0087] The magnetic assembly 6 enables a detachable connection between the head drying box 3 and the head mounting platform 22, facilitating user installation and removal of the head drying box 3. Compared to traditional fixed connections, the magnetic assembly 6 provides a more convenient and faster way to connect and disconnect, making it easier for users to clean, maintain, or replace the head drying box 3.

[0088] Neodymium magnets 60 are used to generate a strong magnetic field, which attracts the metal adsorption sheet 61, thus fixing the head drying box 3 to the head mounting platform 22. Neodymium magnets 60 are typically in regular geometric shapes, such as cylinders, cuboids, or discs, and contain neodymium iron boron magnetic material. The neodymium magnets 60 are evenly distributed circumferentially on the outer surface of the connecting cover 31, generally at a certain distance from the edge of the connecting cover 31, ensuring uniform distribution of the adsorption force and not affecting other functions of the cover. The neodymium magnets 60 can be glued to the outer surface of the cover, embedded in pre-set grooves on the cover surface, or fixed to the edge of the cover using clips.

[0089] The metal adsorption sheet 61 attracts the neodymium magnet 60, working together to achieve a stable connection between the head drying box 3 and the head mounting platform 22. As the adsorption target of the neodymium magnet 60, it provides a reaction force, ensuring a tight bond between the two and guaranteeing the stability of the head drying box 3 during operation. The metal adsorption sheet 61 is generally a thin sheet or plate structure, commonly round, square, or rectangular. The metal adsorption sheet 61 can be installed inside the head mounting platform 22 by welding or snap-fitting, corresponding to the neodymium magnet 60 to ensure maximum adsorption force between them.

[0090] When installing the head drying box 3 onto the head mounting platform 22, the user brings the head drying box 3 close to the head mounting platform 22, and the neodymium magnet 60 connecting the outer surface of the cover 31 gradually approaches the metal adsorption plate 61 inside the head mounting platform 22. Due to the strong magnetism of the neodymium magnet 60, when the two reach a certain distance, a strong attraction is generated between the neodymium magnet 60 and the metal adsorption plate 61, causing the head drying box 3 to be quickly and firmly adsorbed onto the head mounting platform 22, completing the installation process. During use, this adsorption force ensures that the head drying box 3 remains stably in the installed position; even if the charging base is subjected to slight vibration or external force, the head drying box 3 will not easily fall off. When it is necessary to disassemble the head drying box 3 for cleaning, maintenance, or replacement, the user only needs to apply an external force greater than the adsorption force between the neodymium magnet 60 and the metal adsorption plate 61 to separate the head drying box 3 from the head mounting platform 22; the operation is simple and convenient.

[0091] 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 charging stand with a drying function, characterized in that... ,include: The charging housing (1) includes an insertion part (10) for vertically fixing an electric shaver, and a charging terminal (11) disposed in the insertion part (10), wherein the charging terminal (11) is electrically connected to the electric shaver to provide charging power. The height adjustment mechanism (2) includes a lower support column (20), an upper support column (21), and a head mounting platform (22). The lower support column (20) is fixedly connected to the insertion part (10). The upper support column (21) is connected to the lower support column (20) through an adjustable height snap-fit ​​structure (23). The head mounting platform (22) is fixedly connected to the top of the upper support column (21). The head drying box (3) is detachably connected to the head mounting platform (22). The head drying box (3) is always positioned above the electric shaver via the height adjustment mechanism (2) and is used to dry the electric shaver.

2. A charging stand with a drying function according to claim 1, characterized in that, The latching structure (23) of the height adjustment mechanism (2) includes: Multiple adjustment slots (230) are spaced apart on the top of the lower support column (20); Multiple adjustment protrusions (231) are provided at the bottom of the upper support column (21) to cooperate with each adjustment slot (230); The height of the head mounting platform (22) can be adjusted in multiple stages by engaging the adjustment protrusion (231) with different adjustment slots (230).

3. A charging stand with a drying function according to claim 1, characterized in that, The head drying box (3) includes an upper cover (30), a connecting cover (31), and a lower cover (32). The upper cover (30) has an airflow inlet (300) at the top, the connecting cover (31) is provided with a drying fan (33) that delivers airflow downwards, and the lower cover (32) has an airflow outlet (320) at the bottom.

4. A charging stand with a drying function according to claim 3, characterized in that, The upper support (21) and the lower support (20) are provided with a flow channel (4) on the side near the electric shaver, and the flow channel (4) corresponds to the air outlet (320).

5. A charging stand with a drying function according to claim 3, characterized in that, The airflow inlet (300) of the upper cover (30) includes: The first air inlet (3000) is a ring-shaped opening distributed from the outside to the inside along the edge of the upper cover (30); The second air inlet (3001) is a long strip opening that radiates from the center of the upper cover (30) and is combined with the first air inlet (3000).

6. A charging stand with a drying function according to claim 3, characterized in that, The side wall of the insertion part (10) is provided with a plurality of inclined through drying holes (5), and the drying holes (5) correspond to the airflow outlet (320) of the lower cover (32).

7. A charging stand with a drying function according to claim 3, characterized in that, The upper cover (30), connecting cover (31) and lower cover (32) are detachably connected by threads.

8. A charging stand with a drying function according to claim 3, characterized in that, The head drying box (3) and the head mounting platform (22) are detachably connected via a magnetic suction assembly (6), which includes: Neodymium magnets (60) are evenly distributed circumferentially on the outer surface of the connecting cover (31); A metal adsorption sheet (61) is located inside the head mounting platform (22) and is used to adsorb neodymium magnets (60) to fix the head drying box (3).