Shaver

By introducing a temperature control mechanism and massage balls into the shaver, the problem of skin burning caused by high-speed rotation is solved, achieving adjustable temperature and massage effect, thus improving the user experience.

CN223998478UActive Publication Date: 2026-03-17TIME TECH (ZHONGSHAN) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

In existing shavers, the high-speed rotating blades rub against the foil during use, causing the temperature to rise, resulting in a burning sensation and pain on the user's skin, thus affecting the user experience.

Method used

A shaver has been designed, comprising a housing assembly, a cutting mechanism, a temperature regulation mechanism, and a drive mechanism. The temperature regulation mechanism adjusts the temperature of the skin-contacting area through temperature-conducting and heat-dissipating components, and is connected by an elastic element to float and conform to the face. Combined with a massage ball, it provides a massage effect and reduces temperature irritation.

Benefits of technology

It effectively regulates the temperature of the skin-touching area, relieves skin irritation, improves user experience, extends the service life of the temperature control components, and reduces skin irritation through the massage balls.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a shaver. The shaver comprises a shell assembly and a driving assembly, the cutting mechanism is movably arranged at the top of the shell assembly; the temperature adjusting mechanism comprises a temperature adjusting assembly and an elastic piece, the bottom of the temperature adjusting assembly is connected with the shell assembly through the elastic piece, so that the temperature adjusting assembly can float up and down relative to the shell assembly, a skin contact area exposed to the outside is formed on the temperature adjusting assembly, and the temperature of the skin contact area is adjustable; and the driving mechanism is in driving connection with the cutting mechanism. According to the shaver, the skin contact area which can make contact with the face skin and is adjustable in temperature is formed on the temperature adjusting mechanism, the skin contact area can be better matched with the cutting mechanism to work to meet the requirement for relieving skin irritation, and the temperature adjusting mechanism is connected with the shell assembly through the elastic piece; when a user shaves with the shaver and touches the skin touching area, the temperature adjusting mechanism is stressed to float and fit the face contour better, and the user experience is improved.
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Description

Technical Field

[0001] This invention relates to the field of household appliance technology, and in particular to a shaver. Background Technology

[0002] A razor, also known as a beard trimmer, is a tool for shaving. The razor head needs to be close to the face. Some users have sensitive facial skin, so they may experience pain when shaving. In addition, the high-speed rotating blades constantly rub against the foil during use, causing the foil temperature to rise and making the user's skin feel hot, which seriously affects the user experience. Utility Model Content

[0003] Therefore, it is necessary to provide a shaver that addresses the problem in existing shavers where the high-speed rotating blades constantly rub against the foil during use, causing the foil temperature to rise and easily resulting in a burning sensation on the user's skin.

[0004] A shaver includes: a housing assembly; a cutting mechanism movably disposed on the top of the housing assembly for cutting hair; a temperature regulating mechanism including a temperature regulating component and an elastic element, the bottom of the temperature regulating component being connected to the housing assembly via the elastic element to allow the temperature regulating component to float up and down relative to the housing assembly, the temperature regulating component forming a skin-contacting area exposed to the outside, the temperature of the skin-contacting area being adjustable; and a driving mechanism disposed on the housing assembly and drivenly connected to the cutting mechanism.

[0005] This application provides a shaver, including a housing assembly, a cutting mechanism, a temperature regulating mechanism, and a drive mechanism. The temperature regulating mechanism forms a skin-contacting area that can contact the facial skin and has an adjustable temperature. It can raise or lower the temperature of the skin-contacting area according to the user's needs, so as to better cooperate with the cutting mechanism and meet the need to relieve skin irritation. The temperature regulating mechanism is connected to the housing assembly through an elastic element. When the user uses the shaver to shave and touches the skin-contacting area, the temperature regulating mechanism will be subjected to force to float and conform to the facial contour, thereby improving the user experience.

[0006] In one embodiment, the temperature regulating component includes a temperature-conducting element, a temperature-regulating element, and a heat-dissipating element. The temperature-conducting element forms the skin-contact area. The temperature-regulating element is connected to the temperature-conducting element to regulate the temperature of the skin-contact area. The heat-dissipating element abuts against the side of the temperature-regulating element away from the temperature-conducting element to absorb the heat generated by the temperature-regulating element. One end of the elastic element abuts against the housing assembly, and the other end of the elastic element abuts against the heat-dissipating element and / or the temperature-conducting element. By adopting the above structure, the temperature-regulating element and the surface of the temperature-conducting element are in contact and can exchange heat to regulate the temperature of the skin-contact area. When cooling is required, the temperature-regulating element cools and lowers the temperature of the skin-contact area through energy conduction. When heating is required, the temperature-regulating element heats and raises the temperature of the skin-contact area through energy conduction. The heat-dissipating element is attached to the heating surface of the temperature-regulating element, allowing the heat generated by the temperature-regulating element to be quickly transferred to the heat-dissipating element. This reduces the temperature rise of the temperature-regulating element, lowers the probability of damage, and improves the reliability and service life of the temperature-regulating element.

[0007] In one embodiment, a massage ball is also included, which is rotatably mounted on the heat-conducting element. When a user shaves with the razor, the massage ball can roll and press against the user's skin to relieve skin irritation. Specifically, the massage ball is made of materials such as glass, jade, or metal, which allows it to quickly exchange heat with the heat-conducting element, working together with the skin-contacting area to reduce the irritation caused by temperature on the user's skin.

[0008] In one embodiment, the temperature-conducting component includes a first temperature-conducting portion and a second temperature-conducting portion. The first temperature-conducting portion and / or the second temperature-conducting portion form the skin-contact area. The temperature-regulating component is connected to the first temperature-conducting portion and / or the second temperature-conducting portion to regulate the temperature of the skin-contact area. The second temperature-conducting portion is detachably mounted on the first temperature-conducting portion. The second temperature-conducting portion and the first temperature-conducting portion enclose a first mounting space. A limiting opening is provided at the top of the first mounting space. The massage ball is rotatably mounted in the first mounting space, with a portion of the massage ball protruding through the limiting opening. By adopting the above structure, the detachably connected first and second temperature-conducting portions cooperate to form a first mounting space for mounting the massage ball, allowing the massage ball to protrude through the limiting opening. On the one hand, this facilitates the stable installation of the massage ball. Since the diameter of the limiting opening is smaller than the diameter of the massage ball, the massage ball can roll and contact the user's face without falling out. On the other hand, the first and second temperature-conducting portions increase the contact area with the massage ball, thereby accelerating heat exchange and ensuring that the massage ball is maintained at the temperature required by the user.

[0009] In one embodiment, the first temperature-conducting part includes a base and limiting ribs. The base has a first through hole, and the number of limiting ribs is at least two. The at least two limiting ribs are spaced apart around the periphery of the first through hole. The skin-contacting area is formed on the side of the limiting ribs away from the base. The second temperature-conducting part is detachably disposed at the first through hole, and the at least two limiting ribs cooperate with the second temperature-conducting part to form the first installation space. By adopting the above structure, when the second temperature-conducting part is disassembled, the massage ball can smoothly enter the first installation space through the first through hole, thereby facilitating the stable installation of the massage ball. Furthermore, the massage is positioned inside the skin-contacting area, and by concentrating the skin-contacting area and the massage ball, the soothing effect of contact with the user's face can be effectively improved.

[0010] In one embodiment, at least two of the limiting ribs have inner arc surfaces formed on their sidewalls near the center line of the first through hole, which cooperate to form the limiting opening. By adopting the above simple structure to form the limiting opening, production efficiency can be improved, and the contact area between the first heat-conducting part and the massage ball can be increased by the arc surface abutting against the massage ball, thereby accelerating heat exchange with the massage ball and ensuring that the massage ball can be maintained at the temperature required by the user.

[0011] In one embodiment, the second temperature-conducting part includes a column and an abutting step. The column is adapted to be inserted into the first through hole. At least two of the limiting ribs cooperate with the top wall of the column to form the first installation space. The abutting step is sleeved on the side of the column away from the first installation space, and the abutting step is connected to the end face of the first through hole away from the first installation space. By adopting the above structure, the installation of the column can be limited by the abutting fit between the abutting step and the end face of the first through hole, thereby ensuring that the massage ball can be adapted to the first installation space and can be exposed through the limiting opening. In addition, the abutting step can help improve the sealing effect of the connection gap between the second temperature-conducting part and the first through hole, reducing the risk of external liquids or dust falling into the temperature-regulating components and other components through the connection gap and affecting the operation.

[0012] In one embodiment, the temperature regulating assembly further includes a first sealing ring for sealing the connection gap between the second temperature-conducting part and the first through hole. Further, the first sealing ring is sleeved on the outside of the column, with its two sides abutting against the end face of the first through hole and the abutting step, respectively.

[0013] In one embodiment, the abutting step abuts against the temperature regulating element.

[0014] In one embodiment, the first and / or second temperature-conducting portions, together with the heat sink, form a second mounting space, and the temperature-regulating component is disposed within the second mounting space. By employing the above structure, utilizing the temperature-conducting and heat sink components to form a second mounting space for installing the temperature-regulating component ensures that the temperature-regulating component can be securely installed and is not easily loosened. Furthermore, it avoids heat exchange between the temperature-regulating component and the outside air, thus preventing energy loss and improving temperature regulation efficiency.

[0015] In one embodiment, the heat sink is provided with a first connecting hole, and the first or second temperature-conducting part is provided with a second connecting hole. The first connecting hole and the second connecting hole are connected to the heat sink and the temperature-conducting part by fasteners. The fasteners provide a stable connection between the first connecting hole and the second connecting hole, ensuring that the connected components will not easily separate under accidental stress, effectively guaranteeing the floating surface effect.

[0016] In one embodiment, the temperature regulating component further includes a second sealing ring, the heat sink is provided with a first limiting groove, the second sealing ring is limited and disposed in the first limiting groove, and the bottom of the first temperature conducting part extends into the first limiting groove and is connected to the heat sink through the second sealing ring.

[0017] In one embodiment, the housing assembly has a first cavity at its top, an air inlet and an air outlet respectively connected to the first cavity, and includes a fan wheel rotatably disposed within the first cavity. A drive mechanism is connected to the fan wheel, and the rotation of the fan wheel drives the airflow in the first cavity from the air inlet to the air outlet, thereby carrying away heat from the temperature regulating element and / or the heat dissipation element. By employing this structure, during shaving, the drive mechanism simultaneously drives the fan wheel to rotate, creating airflow in the first cavity. This effectively accelerates the airflow around the temperature regulating element and / or the heat dissipation element, thus promptly and effectively removing the heat generated by the temperature regulating element, effectively cooling the element, preventing it from overheating, and consequently extending its service life and ensuring rapid and effective temperature regulation.

[0018] In one embodiment, the housing assembly includes a top cover assembly and a connecting seat. The top cover assembly is detachably disposed above the connecting seat. The top cover assembly has a second cavity with an upper opening. The cutting mechanism is partially disposed in the second cavity, with its cutting end exposed through the upper opening. The connecting seat has a first cavity, and the heat sink is disposed in the first cavity. The end of the temperature-conducting element away from the heat sink extends through the top cover assembly to the outside and forms a skin-contact area. The heat sink is connected to the connecting seat or the top cover assembly via the elastic element. By adopting the above structure, the top cover assembly has a second cavity for mounting the cutting mechanism to provide protection. Simultaneously, one end of the temperature-conducting element extends through the top cover assembly to the outside and forms a skin-contact area. This allows for a compact arrangement between the skin-contact area and the cutting mechanism, enabling the temperature regulation mechanism to better cooperate with the cutting mechanism to alleviate skin irritation. Furthermore, the top cover assembly can cooperate with the connecting seat to separate the heat sink and the temperature-conducting element, effectively preventing the heat absorbed by the heat sink from affecting the surface temperature of the temperature-conducting element.

[0019] In one embodiment, the top of the first cavity has a mounting port, and the heat sink is adapted to be installed at the mounting port. The bottom of the heat sink is connected to the connecting seat through the elastic member. The heat sink has a second through hole connecting the first cavity and the second cavity. The output end of the driving mechanism extends into the second cavity through the second through hole and is driven by the cutting mechanism. By adapting the heat sink to be installed at the mounting port, on the one hand, the airflow in the first cavity can fully contact the heat sink to remove heat; on the other hand, the floating of the heat sink will be restricted by the side wall of the mounting port, thereby making the floating and resetting process of the temperature regulating mechanism more stable.

[0020] In one embodiment, the outer bottom wall of the top cover assembly protrudes to form a first limiting post, and the heat sink is movably sleeved on the outside of the first limiting post. By adopting the above structure, the floating of the heat sink can be limited by the first limiting post, thereby making the floating reset process of the temperature regulating mechanism smoother.

[0021] In one embodiment, a connecting post is formed on the inner sidewall of the first cavity. The connecting post is used to connect the top cover assembly, and a recessed groove is formed on the outer sidewall of the heat sink. The connecting post is fitted into the recessed groove. By using a connecting post, the connection between the top cover assembly and the connecting seat is facilitated. At the same time, the cooperation between the connecting post and the recessed groove on the heat sink provides a positioning function, enabling the temperature regulating mechanism to complete assembly quickly and accurately, and ensuring that the temperature-conducting component can smoothly pass through the top cover assembly and extend to the outside.

[0022] In one embodiment, the drive mechanism includes a motor and a transmission assembly. The transmission assembly includes a driving gear, a driven gear, and a drive shaft assembly. The driving gear and the driven gear are disposed in the first cavity. The driving gear is sleeved on the output shaft of the motor, and the driven gear meshes with the driving gear. One end of the drive shaft assembly is connected to the driven gear, and the other end of the drive shaft assembly extends into the second cavity and is drively connected to the cutting mechanism. The fan is coaxially disposed on the side of the driving gear and / or the driven gear near the temperature regulating element. Gear transmission is a highly efficient motion conversion method. By adopting the above structure, the fan is coaxially disposed on the driving gear or the driven gear, thereby enabling simultaneous driving of the fan and the cutting mechanism by a single motor, simplifying the drive mechanism structure of the shaver.

[0023] In one embodiment, a second limiting groove is formed on the inner side of the first limiting post, and the two ends of the second limiting groove are respectively connected to the first cavity and the second cavity, and the drive shaft assembly is rotatably disposed in the second limiting groove.

[0024] In one embodiment, the number of elastic elements is at least two, and the at least two elastic elements are spaced apart at the bottom of the temperature regulating mechanism. By spaced out at least two elastic elements, when the skin-contact area is locally subjected to force and moves downward in different directions, the temperature regulating mechanism can more stably float and conform to the face, better fitting the facial contours and improving the user experience.

[0025] In one embodiment, one of the temperature regulating mechanism and the housing assembly has a second limiting post, and the other of the temperature regulating mechanism and the housing assembly has a limiting hole, with the second limiting post movably inserted into the limiting hole. The engagement between the second limiting post and the limiting hole restricts the floating of the heat sink, thereby making the floating and resetting process of the temperature regulating mechanism smoother.

[0026] In one embodiment, the temperature regulating mechanism or the housing assembly has a third limiting post, and the elastic element is sleeved on the outside of the third limiting post. By adopting the above structure, on the one hand, the positioning of the elastic element can be facilitated, and on the other hand, when the elastic element undergoes elastic deformation, excessive twisting of the elastic element can be avoided, which could cause damage.

[0027] In one embodiment, the third limiting post is provided with the limiting hole.

[0028] In one embodiment, one of the temperature regulating mechanism and the housing assembly has the third limiting post, and the other of the temperature regulating mechanism and the housing assembly has a third limiting groove, with one end of the elastic member away from the third limiting post being limited and disposed in the third limiting groove. Attached Figure Description

[0029] Figure 1 A perspective view of a razor according to one embodiment;

[0030] Figure 2 A first exploded view of a razor according to one embodiment;

[0031] Figure 3 A second exploded view of a razor according to one embodiment;

[0032] Figure 4 A third exploded view of a razor according to one embodiment;

[0033] Figure 5 A first exploded view of a temperature regulating mechanism according to one embodiment;

[0034] Figure 6 This is a second exploded view of a temperature regulating mechanism according to one embodiment.

[0035] The correspondence between the reference numerals and the component names is as follows:

[0036] 1. Housing assembly, 101. First cavity, 102. Second cavity, 103. Air inlet, 104. Mounting port, 105. Second limiting groove, 106. Third limiting groove, 11. Top cover assembly, 12. Connecting seat, 121. Connecting post, 122. Second limiting post;

[0037] 2. Cutting mechanism;

[0038] 3 Temperature regulation mechanism, 301 First installation space, 302 Limiting port, 303 First through hole, 304 Second installation space, 305 First connecting hole, 306 Second connecting hole, 307 First limiting groove, 308 Second through hole, 309 Clearance groove, 310 Limiting hole, 31 Temperature regulation component, 311 Temperature conductive component, 3111 First temperature conductive part, 31111 Base, 31112 Limiting rib, 311121 Skin contact area, 311122 Inner arc surface, 3112 Second temperature conductive part, 31121 Column, 31122 Abutting step, 312 Temperature regulating component, 313 Heat dissipation component, 3131 Third limiting post, 32 Elastic component, 33 First sealing ring, 34 Second sealing ring;

[0039] 4. Drive mechanism; 41. Motor; 42. Transmission assembly; 421. Drive gear; 422. Driven gear; 423. Drive shaft assembly.

[0040] 5 massage balls;

[0041] 6. Wind turbines. Detailed Implementation

[0042] To better understand the above-mentioned objectives, features, and advantages of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0043] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and therefore the scope of protection of the invention is not limited to the specific embodiments disclosed below.

[0044] The following describes some embodiments of the razor according to the present invention with reference to the accompanying drawings.

[0045] like Figures 1 to 3 As shown, this embodiment discloses a shaver, including: a housing assembly 1; a cutting mechanism 2, which is movably disposed on the top of the housing assembly 1 and is used to cut hair; a temperature regulating mechanism 3, which includes a temperature regulating component 31 and an elastic element 32, the bottom of which is connected to the housing assembly 1 through the elastic element 32 so that the temperature regulating component 31 can float up and down relative to the housing assembly 1, the temperature regulating component 31 forming a skin-contacting area 311121 exposed to the outside, the temperature of which is adjustable; and a driving mechanism 4, which is disposed on the housing assembly 1 and is drivenly connected to the cutting mechanism 2.

[0046] This application provides a shaver, including a housing assembly 1, a cutting mechanism 2, a temperature regulating mechanism 3, and a drive mechanism 4. The temperature regulating mechanism 3 forms a skin-contacting area 311121 that can contact the facial skin and has an adjustable temperature. The skin-contacting area 311121 can be heated or cooled according to the user's needs to better cooperate with the cutting mechanism 2 and meet the need to relieve skin irritation. The temperature regulating mechanism 3 is connected to the housing assembly 1 through an elastic element 32. When the user uses the shaver to shave and touches the skin-contacting area 311121, the temperature regulating mechanism 3 will be subjected to force and float to better conform to the facial contours, thereby improving the user experience.

[0047] like Figures 3 to 5As shown, in addition to the features of the above embodiments, this embodiment further defines that: the temperature regulating component 31 includes a temperature conducting element 311, a temperature regulating element 312, and a heat dissipation element 313. The temperature conducting element 311 forms a skin-contact area 311121. The temperature regulating element 312 is connected to the temperature conducting element 311 to regulate the temperature of the skin-contact area 311121. The heat dissipation element 313 abuts against the side of the temperature regulating element 312 away from the temperature conducting element 311 to absorb the heat generated by the temperature regulating element 312. One end of the elastic element 32 abuts against the housing assembly 1, and the other end of the elastic element 32 abuts against the heat dissipation element 313 and / or the temperature conducting element 311. By adopting the above structure, the temperature regulating element 312 contacts the surface of the temperature conducting element 311 and can exchange heat to regulate the temperature of the skin contact area 311121. When cooling is required, the temperature regulating element 312 cools down the temperature of the skin contact area 311121 through energy conduction. When heating is required, the temperature regulating element 312 heats up the temperature of the skin contact area 311121 through energy conduction. The heat dissipation element 313 is attached to the heating surface of the temperature regulating element 312, which allows the heat generated by the temperature regulating element 312 to be quickly transferred to the heat dissipation element 313. As a result, the temperature rise of the temperature regulating element 312 is reduced, the probability of damage to the temperature regulating element 312 is reduced, and the working reliability and service life of the temperature regulating element 312 are improved.

[0048] like Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further includes a massage ball 5, which is rotatably mounted on the heat-conducting element 311. When a user shaves with a razor, the massage ball 5 can be used to roll and press on the user's skin to relieve skin irritation. Specifically, the massage ball 5 is made of materials such as glass, jade, or metal, so that the massage ball 5 can also quickly exchange heat with the heat-conducting element 311, working together with the skin-contact area 311121 to reduce the irritation caused by temperature on the user's skin.

[0049] like Figures 3 to 5As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the temperature-conducting component 311 includes a first temperature-conducting part 3111 and a second temperature-conducting part 3112, the first temperature-conducting part 3111 and / or the second temperature-conducting part 3112 form a skin-contacting area 311121, the temperature-regulating component 312 is connected to the first temperature-conducting part 3111 and / or the second temperature-conducting part 3112 to regulate the temperature of the skin-contacting area 311121, the second temperature-conducting part 3112 is detachably disposed on the first temperature-conducting part 3111, the second temperature-conducting part 3112 and the first temperature-conducting part 3111 enclose a first mounting space 301, the top of the first mounting space 301 is provided with a limiting opening 302, the massage ball 5 is rotatably disposed in the first mounting space 301, and part of the massage ball 5 is exposed through the limiting opening 302. By adopting the above structure, the first heating element 3111 and the second heating element 3112, which are detachably connected, cooperate to form a first installation space 301 for installing the massage ball 5, allowing the massage ball 5 to protrude through the limiting port 302. On the one hand, this facilitates the stable installation of the massage ball 5. Since the diameter of the limiting port 302 is smaller than the diameter of the massage ball 5, the massage ball 5 can roll and contact the user's face without falling out. On the other hand, the first heating element 3111 and the second heating element 3112 can increase the contact area with the massage ball 5, thereby accelerating the heat exchange with the massage ball 5 and ensuring that the massage ball 5 can be maintained at the temperature required by the user.

[0050] like Figures 3 to 5 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the first temperature-conducting part 3111 includes a base 31111 and a limiting rib 31112. The base 31111 is provided with a first through hole 303. The number of limiting ribs 31112 is at least two. The at least two limiting ribs 31112 are arranged at intervals around the periphery of the first through hole 303. A skin-contacting area 311121 is formed on the side of the limiting rib 31112 away from the base 31111. The second temperature-conducting part 3112 is detachably disposed at the first through hole 303. The at least two limiting ribs 31112 cooperate with the second temperature-conducting part 3112 to form a first installation space 301. By adopting the above structure, when the second heat-conducting part 3112 is disassembled, the massage ball 5 can smoothly enter the first installation space 301 through the first through hole 303, which can facilitate the stable installation of the massage ball 5. The massage will be set inside the skin contact area 311121. By concentrating the skin contact area 311121 and the massage ball 5, the soothing effect of contact with the user's face can be effectively improved.

[0051] like Figure 5As shown, in addition to the features of the above embodiments, this embodiment further specifies that: at least two limiting ribs 31112 near the center line of the first through hole 303 have inner arc surfaces 311122 formed on their sidewalls, which cooperate to form limiting openings 302. By adopting the above simple structure to form the limiting openings 302, production efficiency can be improved, and the contact area between the first heat-conducting part 3111 and the massage ball 5 can be increased by the arc surface abutting against the massage ball 5, thereby accelerating heat exchange with the massage ball 5 and ensuring that the massage ball 5 can be maintained at the temperature required by the user.

[0052] like Figures 3 to 5 As shown, in addition to the features of the above embodiments, this embodiment further defines that: the second heat-conducting part 3112 includes a column 31121 and an abutting step 31122. The column 31121 is adapted to be inserted into the first through hole 303. At least two limiting ribs 31112 cooperate with the top wall of the column 31121 to form a first installation space 301. The abutting step 31122 is sleeved on the side of the column 31121 away from the first installation space 301. The abutting step 31122 is connected to the end face of the first through hole 303 away from the first installation space 301. By adopting the above structure, the installation of the column 31121 can be limited by the abutting fit between the abutting step 31122 and the end face of the first through hole 303, thereby ensuring that the massage ball 5 can be installed in the first installation space 301 and can be exposed through the limiting port 302. In addition, the abutting step 31122 can help improve the sealing effect of the connection gap between the second temperature conducting part 3112 and the first through hole 303, reducing the risk of external liquids or dust falling into the temperature regulating component 312 and other components through the connection gap and affecting the operation.

[0053] like Figure 5 and Figure 6 As shown, in addition to the features of the above embodiments, this embodiment further specifies that the temperature regulating component 31 also includes a first sealing ring 33, which is used to seal the connection gap between the second temperature-conducting part 3112 and the first through hole 303. Further, the first sealing ring 33 is sleeved on the outside of the column 31121, and both sides of the first sealing ring 33 abut against the end face of the first through hole 303 and the abutment step 31122, respectively.

[0054] In addition to the features of the above embodiments, this embodiment further specifies that the abutting step 31122 abuts against the temperature regulating member 312.

[0055] like Figure 4 and Figure 5As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the first temperature-conducting part 3111 and / or the second temperature-conducting part 3112, together with the heat sink 313, form a second mounting space 304, and the temperature regulating member 312 is disposed in the second mounting space 304. By adopting the above structure, using the temperature-conducting part 311 and the heat sink 313 to form the second mounting space 304 for mounting the temperature regulating member 312 can ensure that the temperature regulating member 312 can be set firmly and is not easy to loosen, and can avoid the temperature regulating member 312 from exchanging heat with the outside air and causing energy loss, thereby improving the temperature regulation efficiency.

[0056] like Figure 5 and Figure 6 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the heat sink 313 is provided with a first connecting hole 305, and the first temperature conducting part 3111 or the second temperature conducting part 3112 is provided with a second connecting hole 306. The first connecting hole 305 and the second connecting hole 306 are connected to the heat sink 313 and the temperature conducting part 311 by fasteners. The fasteners provide a stable connection between the first connecting hole 305 and the second connecting hole 306, ensuring that the connected components will not easily separate under accidental stress, effectively guaranteeing the floating surface effect.

[0057] like Figure 5 and Figure 6 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the temperature regulating component 31 also includes a second sealing ring 34, the heat sink 313 is provided with a first limiting groove 307, the second sealing ring 34 is limited and disposed in the first limiting groove 307, and the bottom of the first temperature conducting part 3111 extends into the first limiting groove 307 and is connected to the heat sink 313 through the second sealing ring 34.

[0058] like Figure 3 and Figure 4As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the top of the housing assembly 1 is provided with a first cavity 101, the housing assembly 1 is provided with an air inlet 103 and an air outlet respectively communicating with the first cavity 101, and also includes a fan wheel 6, which is rotatably disposed in the first cavity 101. The drive mechanism 4 is drivenly connected to the fan wheel 6. The rotation of the fan wheel 6 can drive the airflow in the first cavity 101 to flow from the direction of the air inlet 103 to the direction of the air outlet, so as to remove the heat of the temperature regulating element 312 and / or the heat dissipation element 313. By adopting the above structure, during the shaving process, the drive mechanism 4 simultaneously drives the fan wheel 6 to rotate, so that airflow is formed in the first cavity 101, which effectively accelerates the airflow around the temperature regulating element 312 and / or the heat dissipation element 313, thereby timely and effectively removing the heat generated by the temperature regulating element 312, effectively cooling the temperature regulating element 312, avoiding the temperature of the temperature regulating element 312 from being too high, and thus effectively extending the service life of the temperature regulating element 312 and ensuring rapid and effective temperature regulation.

[0059] like Figure 2 , Figure 3 and Figure 4 As shown, in addition to the features of the above embodiments, this embodiment further defines: the housing assembly 1 includes a top cover assembly 11 and a connecting seat 12. The top cover assembly 11 is detachably disposed above the connecting seat 12. The top cover assembly 11 has a second cavity 102 with an upper opening. The cutting mechanism 2 is partially disposed in the second cavity 102, and the cutting end of the cutting mechanism 2 is exposed through the upper opening. The connecting seat 12 has a first cavity 101. The heat sink 313 is disposed in the first cavity 101. The end of the heat-conducting component 311 away from the heat sink 313 extends through the top cover assembly 11 to the outside and forms a skin-contact area 311121. The heat sink 313 is connected to the connecting seat 12 or the top cover assembly 11 through an elastic component 32. By adopting the above structure, the top cover assembly 11 is provided with a second cavity 102 for installing the cutting mechanism 2 to form a protective function. At the same time, one end of the heat-conducting element 311 extends through the top cover assembly 11 to the outside and forms a skin-contact area 311121. Thus, the skin-contact area 311121 and the cutting mechanism 2 can be compactly arranged, and the temperature regulation mechanism 3 can better cooperate with the cutting mechanism 2 to meet the need to relieve skin irritation. In addition, the top cover assembly 11 can cooperate with the connecting seat 12 to separate the heat sink 313 and the heat-conducting element 311, effectively preventing the heat absorbed by the heat sink 313 from affecting the surface temperature of the heat-conducting element 311.

[0060] like Figure 2 , Figure 3 and Figure 4As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the top of the first cavity 101 is provided with a mounting port 104, the heat sink 313 is adapted to be installed at the mounting port 104, the bottom of the heat sink 313 is connected to the connecting seat 12 through the elastic member 32, the heat sink 313 is provided with a second through hole 308 connecting the first cavity 101 and the second cavity 102, and the output end of the drive mechanism 4 extends into the second cavity 102 through the second through hole 308 and is driven to be connected to the cutting mechanism 2. By adapting the heat sink 313 to be installed at the mounting port 104, on the one hand, the airflow in the first cavity 101 can fully contact the heat sink 313 to remove heat, and on the other hand, the floating of the heat sink 313 will be restricted by the side wall of the mounting port 104, thereby making the floating and resetting process of the temperature regulating mechanism 3 more stable.

[0061] In addition to the features of the above embodiments, this embodiment further specifies that: the outer bottom wall of the top cover assembly 11 protrudes to form a first limiting post, and the heat sink 313 is movably sleeved on the outside of the first limiting post. By adopting the above structure, the floating of the heat sink 313 can be limited by the first limiting post, thereby making the floating reset process of the temperature regulating mechanism 3 more stable.

[0062] like Figure 2 and Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: a connecting post 121 is formed on the inner sidewall of the first cavity 101, the connecting post 121 is used to connect the top cover assembly 11, and a relief groove 309 is formed in the outer sidewall of the heat sink 313, the connecting post 121 and the relief groove 309 are adapted to be installed. By using the connecting post 121, the connection between the top cover assembly 11 and the connecting seat 12 is facilitated, and the cooperation between the connecting post 121 and the relief groove 309 on the heat sink 313 can form a positioning function, so that the temperature regulating mechanism 3 can be assembled quickly and accurately, and the temperature conducting element 311 can smoothly pass through the top cover assembly 11 and extend to the outside.

[0063] like Figures 2 to 4As shown, in addition to the features of the above embodiments, this embodiment further defines: the drive mechanism 4 includes a motor 41 and a transmission assembly 42. The transmission assembly 42 includes a driving gear 421, a driven gear 422, and a drive shaft assembly 423. The driving gear 421 and the driven gear 422 are disposed in the first cavity 101. The driving gear 421 is sleeved on the output shaft of the motor 41, and the driven gear 422 meshes with the driving gear 421. One end of the drive shaft assembly 423 is connected to the driven gear 422, and the other end of the drive shaft assembly 423 extends into the second cavity 102 and is connected to the cutting mechanism 2. The fan 6 is coaxially disposed on the side of the driving gear 421 and / or the driven gear 422 near the temperature regulating element 312. Gear transmission is a highly efficient motion conversion method. By adopting the above structure, the fan is coaxially disposed on the driving gear 421 or the driven gear 422. Thus, by setting up a single motor 41, the drive of the fan 6 and the cutting mechanism 2 can be realized simultaneously, simplifying the structure of the drive mechanism 4 of the shaver.

[0064] like Figure 4 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: a second limiting groove 105 is formed on the inner side of the first limiting post, the two ends of the second limiting groove 105 are respectively connected to the first cavity 101 and the second cavity 102, and the drive shaft assembly 423 is rotatably disposed in the second limiting groove 105.

[0065] like Figure 3 and Figure 5 As shown, in addition to the features of the above embodiments, this embodiment further specifies that the number of elastic elements 32 is at least two, and the at least two elastic elements 32 are spaced apart at the bottom of the temperature regulating mechanism 3. By spaced apart at least two elastic elements 32, when the skin-touching area 311121 is locally subjected to force and moves downward in different directions, the temperature regulating mechanism 3 can more stably float and adhere to the skin with the cooperation of at least two elastic elements 32, better conforming to the facial contours and improving the user experience.

[0066] like Figure 3 and Figure 6 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: one of the temperature regulating mechanism 3 and the housing assembly 1 is provided with a second limiting post 122, and the other of the temperature regulating mechanism 3 and the housing assembly 1 is provided with a limiting hole 310, with the second limiting post 122 movably inserted into the limiting hole 310. The cooperation between the second limiting post 122 and the limiting hole 310 restricts the floating of the heat sink 313, thereby making the floating and resetting process of the temperature regulating mechanism 3 more stable.

[0067] like Figure 3 and Figure 6As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the temperature regulating mechanism 3 or the housing assembly 1 has a third limiting post 3131, and the elastic member 32 is sleeved on the outside of the third limiting post 3131. By adopting the above structure, on the one hand, the positioning of the elastic member 32 can be facilitated, and on the other hand, when the elastic member 32 undergoes elastic deformation, excessive twisting of the elastic member 32 can be avoided to prevent damage.

[0068] like Figure 6 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the third limiting post 3131 is provided with a limiting hole 310.

[0069] like Figure 2 and Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: one of the temperature regulating mechanism 3 and the housing assembly 1 is provided with a third limiting post 3131, the other of the temperature regulating mechanism 3 and the housing assembly 1 is provided with a third limiting groove 106, and the end of the elastic member 32 away from the third limiting post 3131 is limited and disposed in the third limiting groove 106.

[0070] 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.

[0071] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. A shaver, characterized by The utility model relates to a hair cutting device, which comprises: a housing assembly (1); a cutting mechanism (2) movably arranged on the top of the housing assembly (1), which is used for cutting hair; a temperature adjusting mechanism (3) comprising a temperature adjusting assembly (31) and an elastic member (32), the bottom of the temperature adjusting assembly (31) is connected with the housing assembly (1) through the elastic member (32), so that the temperature adjusting assembly (31) can float up and down relative to the housing assembly (1), the temperature adjusting assembly (31) is formed with a skin contact area (311121) exposed to the outside, and the temperature of the skin contact area (311121) can be adjusted; a driving mechanism (4) arranged on the housing assembly (1), which is drivingly connected with the cutting mechanism (2).

2. The shaving razor of claim 1, wherein, The temperature adjusting assembly (31) comprises a temperature guiding member (311), a temperature adjusting member (312) and a heat dissipating member (313), the temperature guiding member (311) is formed with the skin contact area (311121), the temperature adjusting member (312) is connected with the temperature guiding member (311) to adjust the temperature of the skin contact area (311121), the heat dissipating member (313) is abutted with the side of the temperature adjusting member (312) away from the temperature guiding member (311) to absorb the heat generated by the temperature adjusting member (312), one end of the elastic member (32) is abutted with the housing assembly (1), and the other end of the elastic member (32) is abutted with the heat dissipating member (313) and / or the temperature guiding member (311).

3. The shaving razor of claim 2, wherein, Further comprising a massage ball (5) rotatably arranged on the temperature guiding member (311).

4. The shaving razor of claim 3, wherein, The temperature guiding member (311) comprises a first temperature guiding part (3111) and a second temperature guiding part (3112), the first temperature guiding part (3111) and / or the second temperature guiding part (3112) is formed with the skin contact area (311121), the temperature adjusting member (312) is connected with the first temperature guiding part (3111) and / or the second temperature guiding part (3112) to adjust the temperature of the skin contact area (311121), the second temperature guiding part (3112) is detachably arranged on the first temperature guiding part (3111), the second temperature guiding part (3112) and the first temperature guiding part (3111) enclose a first mounting space (301), a limiting opening (302) is arranged on the top of the first mounting space (301), the massage ball (5) is rotatably arranged in the first mounting space (301), and part of the massage ball (5) is exposed through the limiting opening (302).

5. The shaving razor of claim 4, wherein, The first temperature guide part (3111) comprises a base (31111) and a limiting rib (31112), the base (31111) is provided with a first through hole (303), the number of the limiting rib (31112) is at least two, at least two limiting ribs (31112) are arranged at intervals around the periphery of the first through hole (303), and the side of the limiting rib (31112) away from the base (31111) is formed with the skin contact area (311121), and the second temperature guide part (3112) is detachably arranged at the first through hole (303), and at least two limiting ribs (31112) and the second temperature guide part (3112) cooperate to form the first mounting space (301).

6. The shaving razor of claim 5, wherein, At least two limiting ribs (31112) are respectively formed with an inner arc surface (311122) on the side wall close to the center line of the first through hole (303) and cooperate to form the limiting opening (302); and / or The second temperature guide part (3112) comprises a column body (31121) and an abutting step (31122), the column body (31121) is adapted to be inserted into the first through hole (303), at least two limiting ribs (31112) and the top wall of the column body (31121) cooperate to form the first mounting space (301), the abutting step (31122) is arranged on the side of the column body (31121) away from the first mounting space (301), and the abutting step (31122) is connected with the end face of the first through hole (303) away from the first mounting space (301); and / or The first temperature guide part (3111) and / or the second temperature guide part (3112) and the heat dissipation piece (313) cooperatively form a second mounting space (304), and the temperature adjusting piece (312) is arranged in the second mounting space (304); and / or The heat dissipation piece (313) is provided with a first connecting hole (305), the first temperature guide part (3111) or the second temperature guide part (3112) is provided with a second connecting hole (306), and the first connecting hole (305) and the second connecting hole (306) are connected with the heat dissipation piece (313) and the temperature guide piece (311) through fasteners.

7. The shaving razor of claim 2, wherein, The shell assembly (1) is provided with a first cavity (101) at the top, the shell assembly (1) is provided with an air inlet (103) and an air outlet which respectively communicate with the first cavity (101), further comprising a fan wheel (6), the fan wheel (6) is rotatably arranged in the first cavity (101), the driving mechanism (4) is drivingly connected with the fan wheel (6), and the fan wheel (6) is rotatable to drive the airflow in the first cavity (101) to flow from the air inlet (103) to the air outlet direction, so as to carry away the heat of the temperature adjusting piece (312) and / or the heat dissipation piece (313).

8. The shaver according to claim 7, characterized in that The shell assembly (1) comprises a top cover assembly (11) and a connecting seat (12), the top cover assembly (11) is detachably arranged above the connecting seat (12), the top cover assembly (11) is provided with a second cavity (102) with an upper end opening, the cutting mechanism (2) is partially arranged in the second cavity (102), the cutting end of the cutting mechanism (2) is exposed through the upper end opening, the connecting seat (12) is provided with the first cavity (101), the heat dissipation piece (313) is arranged at the first cavity (101), one end of the temperature guide piece (311) away from the heat dissipation piece (313) extends to the outside through the top cover assembly (11) and forms a skin contact area (311121), and the heat dissipation piece (313) is connected with the connecting seat (12) or the top cover assembly (11) through the elastic piece (32).

9. The shaving razor of claim 8, wherein, The top of the first cavity (101) is provided with a mounting port (104), the heat dissipation piece (313) is adaptively mounted at the mounting port (104), the bottom of the heat dissipation piece (313) is connected with the connecting seat (12) through the elastic piece (32), the heat dissipation piece (313) is provided with a second through hole (308) communicating the first cavity (101) and the second cavity (102), and the output end of the driving mechanism (4) extends into the second cavity (102) and is drivingly connected with the cutting mechanism (2) through the second through hole (308); and / or The outer bottom wall of the top cover assembly (11) is protruded to form a first limiting column, and the heat dissipation piece (313) is movably sleeved outside the first limiting column; and / or The inner side wall of the first cavity (101) is formed with a connecting column (121), the connecting column (121) is used for connecting the top cover assembly (11), the outer side wall of the heat dissipation piece (313) is recessed to form a giving slot (309), and the connecting column (121) and the giving slot (309) are adaptively mounted; and / or The driving mechanism (4) comprises a motor (41) and a transmission assembly (42), the transmission assembly (42) comprises a driving gear (421), a driven gear (422) and a driving shaft assembly (423), the driving gear (421) and the driven gear (422) are arranged in the first cavity (101), the driving gear (421) is sleeved on the output shaft of the motor (41), the driven gear (422) is engaged with the driving gear (421), one end of the driving shaft assembly (423) is connected with the driven gear (422), the other end of the driving shaft assembly (423) extends into the second cavity (102) and is drivingly connected with the cutting mechanism (2), and the fan wheel (6) is coaxially arranged on the side of the driving gear (421) and / or the driven gear (422) close to the temperature guide piece (312).

10. The shaving razor of any one of claims 1 to 9, wherein, The number of the elastic members (32) is at least two, and the at least two elastic members (32) are distributed at intervals at the bottom of the temperature adjusting mechanism (3); and / or One of the temperature adjusting mechanism (3) and the shell assembly (1) is formed with a second limiting column (122), the other of the temperature adjusting mechanism (3) and the shell assembly (1) is provided with a limiting hole (310), and the second limiting column (122) is movably inserted in the limiting hole (310); and / or The temperature adjusting mechanism (3) or the shell assembly (1) is formed with a third limiting column (3131), and the elastic member (32) is sleeved outside the third limiting column (3131).