Cosmetic refrigeration and storage equipment
By designing a refrigeration module with ventilated partitions and an ultrasonic atomizing drainage device, the problems of poor condensate drainage and uneven temperature in cosmetic refrigerators were solved, achieving temperature balance and dryness inside the cosmetic refrigerator and improving the storage effect of cosmetics.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-05
- Publication Date
- 2026-03-06
AI Technical Summary
Existing cosmetic refrigerators are not energy-efficient enough in terms of condensate drainage when using semiconductor refrigeration, and poor cold air circulation leads to uneven temperature, which affects the storage effect of cosmetics.
The design incorporates a refrigeration module with perforated baffles and an ultrasonic atomizing drainage device, combined with a vortex fan and a semiconductor refrigeration device, to achieve efficient cold air circulation and condensate drainage.
It improves the temperature uniformity inside the cosmetic refrigerator, allows for rapid and efficient drainage of condensate, keeps the storage cavity dry, and is suitable for long-term storage of cosmetics.
Smart Images

Figure CN223976270U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a refrigerated storage device, and more particularly to a refrigerated storage device for cosmetics. Background Technology
[0002] Cosmetics are preparations used on the human body to beautify, preserve, or alter a person's appearance, or to cleanse, dye, wipe, correct, or protect the skin, hair, nails, eyes, or teeth. Modern cosmetics are often made from biological and chemical raw materials. Strict control of temperature and humidity conditions is necessary during use and storage to ensure their efficacy. Therefore, storage devices such as cosmetic refrigerators have been designed specifically for storing cosmetics.
[0003] Conventional cosmetic refrigerators mostly use mechanical or semiconductor refrigeration, with semiconductor refrigeration being more widely used due to its vibration-free and noise-free characteristics. However, semiconductor refrigeration often produces a large amount of condensation, which existing cosmetic refrigerators cannot efficiently and energy-savingly remove. Furthermore, due to the settling effect of cold air, the refrigeration module of cosmetic refrigerators is often located in the upper part of the refrigerator. However, existing cosmetic refrigerators typically have shelves and drawers inside, which obstruct the smooth circulation of descending cold air within the storage cavity. This leads to uneven temperature distribution throughout the cavity, ultimately affecting the effective storage of cosmetics. Utility Model Content
[0004] Therefore, it is necessary to provide a cosmetic refrigeration and storage device to address the shortcomings of existing technologies.
[0005] A cosmetic refrigeration storage device includes a mounting box, an insulated shell, a storage box, a refrigeration module, and a sealing door. The mounting box has a mounting cavity with an open front end. The insulated shell is fitted into the mounting cavity from front to back, with its top separating from the mounting cavity to form a heat dissipation cavity. The insulated shell has an insulated cavity with an open front end and a locking notch at its upper end, which communicates with both the heat dissipation cavity and the insulated cavity. The storage box is fitted into the insulated cavity from front to back. The storage box has a storage cavity with an open front end and a cold air circulation port at its upper end, which communicates with the storage cavity. The refrigeration module is mounted on the locking notch and corresponds to the cold air circulation port. The sealing door is pivotally connected to one side of the storage box and can be rotated and opened / closed. The storage cavity of the storage box is further provided with several partitions, which are arranged longitudinally and transversely. Each of the transversely arranged partitions has several through-holes. The cooling module includes a mounting frame, a top cover, a bottom shell, a semiconductor cooling device, and an ultrasonic atomizing drainage device. The mounting frame is snapped into a notch, the top cover is installed in the mounting frame from bottom to top, and the bottom shell is fitted over the bottom of the top cover from bottom to top. The bottom shell also contains a cooling groove and a drainage groove, which are connected to the cooling groove. The semiconductor cooling device is installed in the cooling groove, and the ultrasonic atomizing drainage device is installed in the drainage groove. The bottom and top of the ultrasonic atomizing drainage device are connected to the drainage groove and the heat dissipation cavity, respectively.
[0006] Furthermore, the bottom shell of the package is also provided with an air inlet groove and an air outlet groove, which are located on both sides of the cooling groove and are separated from the drain groove. The bottom of the air inlet groove and the air outlet groove are also provided with a cooling air inlet and a cooling air outlet that run vertically through the bottom. The cooling air inlet and the cooling air outlet are both connected to the receiving cavity.
[0007] Furthermore, the refrigeration module also includes a condensate monitoring sensor, which is installed in the drainage tank and is connected to the ultrasonic atomizing drainage device.
[0008] Furthermore, the cooling module also includes a vortex fan, which is installed in the air inlet slot and is positioned corresponding to the cooling air inlet.
[0009] Furthermore, the cooling module also includes a heat dissipation device, which is attached to the upper end of the semiconductor cooling device and extends upward beyond the package cover and mounting bracket. The mounting housing is also provided with a heat dissipation inlet and outlet that penetrate through the interior and exterior, and both the heat dissipation inlet and outlet are connected to the heat dissipation cavity.
[0010] Furthermore, the mounting box has multiple heat dissipation vents, which are respectively located at the top and left and right sides of the mounting box.
[0011] Furthermore, the mounting enclosure also includes an air inlet dust cover and several air outlet dust covers. The air inlet dust cover is engaged with the heat dissipation air inlet, and the several air outlet dust covers are respectively engaged with several heat dissipation air outlets.
[0012] Furthermore, the sealed door includes a bottom frame, a middle frame, a makeup mirror, a display module, and a decorative frame. The bottom frame is pivotally connected to one side of the storage box and can be rotated and opened / closed. The middle frame is fitted to the front end of the bottom frame from front to back. The makeup mirror is fitted to the front end of the middle frame from front to back. The display module is mounted on the lower rear end of the makeup mirror and is signal-connected to the cooling module. The decorative frame is engaged with the four sides of the bottom frame and limits the position of the makeup mirror and the middle frame.
[0013] Furthermore, the cosmetic refrigeration storage device also includes a plasma sterilizer, which is installed at the bottom of the refrigeration outlet and located inside the storage cavity.
[0014] Furthermore, the cooling module also includes a control panel, which is equipped with a smart IoT WIFI module.
[0015] In summary, the beneficial effects of this utility model's cosmetic refrigeration and storage device are as follows: by designing a partition with ventilated holes, the circulation of cold air within the storage cavity is made smoother, greatly optimizing the temperature uniformity inside the cosmetic refrigerator, thereby improving the storage effect of cosmetics; and the design of a refrigeration module with an ultrasonic atomizing drainage device allows the storage device to not only freely adjust the temperature within the storage space, but also to quickly and efficiently drain the condensate generated during the refrigeration process, thus ensuring that the storage cavity remains dry and making it easier to store cosmetics for extended periods; this utility model is highly practical and has significant potential for widespread application. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of a cosmetic refrigeration and storage device according to the present invention;
[0017] Figure 2 for Figure 1 A schematic diagram of the decomposed structure;
[0018] Figure 3 for Figure 2 Exploded view of the mounting box in the middle;
[0019] Figure 4 for Figure 2 Schematic diagram of the structure of the central insulation shell;
[0020] Figure 5 for Figure 2 Structural diagram of the storage box;
[0021] Figure 6 for Figure 2 Exploded view of the cooling module;
[0022] Figure 7 for Figure 6 Schematic diagram of the structure of the inner packaging bottom shell;
[0023] Figure 8 for Figure 2 A schematic diagram of the exploded structure of a centrally sealed door. Detailed Implementation
[0024] To make the objectives, technical solutions, and advantages of this utility model clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of the utility model.
[0025] like Figures 1 to 8 As shown, this utility model provides a cosmetic refrigeration and storage device 100, which includes an installation box 10, an insulation shell 20, a storage box 30, a refrigeration module 40, and a sealing door 50. The installation box 10 has an installation cavity 11 with an open front end. The insulation shell 20 is fitted into the installation cavity 11 from front to back, and its top is separated from the installation cavity 11 to form a heat dissipation cavity (not shown). The insulation shell 20 has an insulation cavity 21 with an open front end, and its upper end also has a locking notch 22, which communicates with both the heat dissipation cavity and the insulation cavity 21. The storage box 30 is fitted into the insulation cavity 21 from front to back. The storage box 30 has a storage cavity 31 with an open front end, and its upper end also has a cold air circulation port 32, which communicates with the storage cavity 31. The refrigeration module 40 is mounted on the locking notch 22 and is correspondingly arranged with the cold air circulation port 32. The sealing door 50 is axially connected to one side of the storage box 30 and can be rotated and opened.
[0026] The storage cavity 31 of the storage box 30 is further provided with several partitions 33, which are arranged longitudinally and transversely. Each of the transversely arranged partitions 33 has several through-holes 331. The longitudinal and transverse arrangement of the partitions 33 divides the storage cavity 31 into multiple storage compartments for storing different cosmetics. The vents 331 on the transverse partitions facilitate the circulation of cool air generated by the cooling module 40 within the storage cavity 31, resulting in a more even and uniform temperature distribution within the storage cavity 31.
[0027] The cooling module 40 includes a mounting bracket 41, an encapsulation cover 42, an encapsulation bottom shell 43, a vortex fan 44, a semiconductor cooling device 45, and an ultrasonic atomizing drainage device 46. The mounting bracket 41 is snapped into the snap-fit notch 22. The encapsulation cover 42 is installed in the mounting bracket 41 from bottom to top. The encapsulation bottom shell 43 is fitted onto the bottom of the encapsulation cover 42 from bottom to top. The encapsulation bottom shell 43 is also provided with a cooling groove 431, an air inlet groove 432, an air outlet groove 433 and a drainage groove 434. The air inlet groove 432 and the air outlet groove 433 are located on both sides of the cooling groove 431. The drainage groove 434 is connected to the cooling groove 431 and separated from the air inlet groove 432 and the air outlet groove 433. The bottom of the air inlet groove 432 and the air outlet groove 433 are respectively provided with a cooling air inlet 435 and a cooling air outlet 436 that pass through vertically. The cooling air inlet 435 and the cooling air outlet 436 are both connected to the heat dissipation cavity. The vortex fan 44 is installed in the air inlet slot 432 and is correspondingly arranged with the cooling air inlet 435. The semiconductor cooling device 45 is installed in the cooling slot 431. The ultrasonic atomizing drainage device 46 is installed in the drainage slot 434.
[0028] When the cooling module 40 is working, the vortex fan 44 first draws air from the receiving cavity 31 and pumps it into the cooling tank 431. Then, the semiconductor cooling device 45 cools the air in the cooling tank 431 into low-temperature cold air according to the set storage temperature. The water vapor in the air condenses into liquid condensate at the low temperature and is stored at the bottom of the cooling tank 431. The condensate at the bottom of the cooling tank 431 also flows into the drain trough 434 connected to the cooling tank 431. Under the action of the ultrasonic atomizing drain device 46, the liquid condensate is re-atomized into water vapor and discharged to the outside. The dry cold air is then sent back into the receiving cavity 31 through the cooling air outlet 436 to form an airflow circulation.
[0029] With the help of the semiconductor cooling device 45, the storage cavity 31 can maintain a low temperature and dryness simultaneously, which is more conducive to the long-term storage of cosmetics. The ultrasonic atomizing drainage device 46 is more efficient than the ordinary liquid condensate drainage method. In addition, the structural design of each tank in the encapsulation bottom shell 43 facilitates the flow of cold air and condensate, which not only makes drainage more convenient, but also ensures the dryness of the cold air to the greatest extent.
[0030] The cooling module 40 also includes a heat dissipation device 47, which is attached to the upper end of the semiconductor cooling device 45 and extends upward beyond the encapsulation cover 42 and the mounting bracket 41. The mounting housing 10 is also provided with a through-hole heat dissipation inlet 12 and a heat dissipation outlet 13, both corresponding to the heat dissipation device 47. Multiple heat dissipation outlets 13 are provided on the mounting housing 10, located at the upper end and left and right sides of the housing 10. The heat dissipation device 47, in conjunction with the heat dissipation inlet 12 and multiple heat dissipation outlets 13, ensures that the heat generated by the cooling module 40 during operation is dissipated to the outside in a timely manner, preventing heat accumulation inside the device and affecting the cooling effect. The cooling module 40 also includes a control panel (not shown), which is equipped with a smart IoT WIFI module (not shown). The smart IoT WIFI module on the control panel also allows users to remotely control the device via a mobile app or other terminal.
[0031] The mounting housing 10 also includes an inlet dust cover 14 and several outlet dust covers 15. The inlet dust cover 14 is engaged with the heat dissipation inlet 12, and the several outlet dust covers 15 are respectively engaged with several heat dissipation outlets 13. The dust covers can effectively prevent external dust and dirt from entering the equipment and affecting its operation. The refrigeration module 40 also includes a condensate monitoring sensor 48, which is installed in the drainage tank 434 and is signal-connected to the ultrasonic atomizing drainage device 46. The condensate monitoring sensor 48 can monitor the amount of condensate generated in real time, thereby controlling the ultrasonic atomizing drainage device 46 to atomize and drain water in a targeted manner, avoiding problems such as the device running dry.
[0032] The sealed door 50 includes a bottom frame 51, a middle frame 52, a makeup mirror 53, a display module 54, and a decorative frame 55. The bottom frame 51 is pivotally connected to one side of the storage box 30 and can be rotatably opened and closed. The middle frame 52 is fitted to the front end of the bottom frame 51 from front to back. The makeup mirror 53 is fitted to the front end of the middle frame 52 from front to back. The display module 54 is installed at the lower rear end of the makeup mirror 53 and is signal-connected to the cooling module 40. The decorative frame 55 engages with the four sides of the bottom frame 51 and limits the position of the makeup mirror 53 and the middle frame 52. Furthermore, it is understood that in other embodiments, multiple lights can be provided around the makeup mirror 53 for supplementary lighting during makeup application.
[0033] The multi-layered sealing door 50 is not only strong and not easily damaged, but also has a stronger sealing performance, which can keep the storage cavity 31 highly independent from the external environment; the sealing door 50 with a makeup mirror 53 makes it convenient for users to apply makeup directly using the mirror on the door after taking out cosmetics; and the display module 54 can display the operating status of the cooling module 40 and the temperature and humidity parameters inside the storage cavity 31 in real time, so that users can keep track of the working status of the storage device at any time.
[0034] The cosmetic refrigeration storage device 100 also includes a plasma sterilizer (not shown), which is installed at the bottom of the refrigeration air outlet 436 and located inside the storage cavity 31. Before the cold air generated by the refrigeration module 40 is delivered to the storage cavity 31, it will pass through the plasma sterilizer to kill most of the bacteria and other harmful microorganisms, thereby making the air environment inside the storage cavity 31 cleaner and significantly reducing the risk of stored cosmetics deteriorating due to microbial contamination.
[0035] In summary, the beneficial effects of this utility model's cosmetic refrigeration storage device 100 are as follows: by designing a refrigeration module 40 with an ultrasonic atomizing drainage device 46, the storage device can not only freely adjust the temperature within the storage space, but also quickly and efficiently drain the condensate generated during the refrigeration process, thereby ensuring that the storage cavity 31 remains dry, making it easier to store cosmetics for extended periods. This utility model is highly practical and has significant potential for widespread application.
[0036] The embodiments described above illustrate only one implementation of the utility model, and while the description is relatively specific and detailed, it 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 inventive concept, and these all fall within the protection scope of the utility model. Therefore, the protection scope of the utility model patent should be determined by the appended claims.
Claims
1. A cosmetic refrigeration storage device characterized by: The utility model provides a refrigeration device, including installation box, heat preservation shell, storage box, refrigeration module and sealing door, be equipped with one installation cavity of front end opening on the installation box, the heat preservation shell is from front to back and is equipped with in installation cavity, and its top is separated with installation cavity and forms a heat dissipation cavity, and the heat preservation shell is equipped with one heat preservation cavity of front end opening, and its upper end is equipped with a clamping gap, the clamping gap is communicated with heat dissipation cavity and heat preservation cavity respectively, the storage box is from front to back and is equipped with in heat preservation cavity, and the storage box is equipped with one storage cavity of front end opening, and the upper end of storage box is also equipped with cold air circulation port, and cold air circulation port is communicated with storage cavity, the refrigeration module is equipped with on the clamping gap and is correspondingly arranged with cold air circulation port, and the sealing door is pivotally connected to one side of storage box and can be opened and closed, the storage cavity of storage box is also equipped with a plurality of partitions, and a plurality of partitions are longitudinally and transversely spliced, wherein a plurality of partitions transversely arranged are also equipped with a plurality of upper and lower penetrating air holes, the refrigeration module includes mounting bracket, encapsulation upper cover, encapsulation bottom shell, semiconductor refrigeration device and ultrasonic atomization drainage device, the mounting bracket is clamped and is equipped with in the clamping gap, the encapsulation upper cover is from bottom to top and is equipped with in mounting bracket, the encapsulation bottom shell is from bottom to top and is covered on the bottom of encapsulation upper cover, and the encapsulation bottom shell is also respectively equipped with refrigeration groove and drainage groove, the drainage groove is communicated with refrigeration groove, the semiconductor refrigeration device is equipped with in refrigeration groove, and the ultrasonic atomization drainage device is equipped with in drainage groove, and the bottom end and top end of ultrasonic atomization drainage device are communicated with drainage groove and heat dissipation cavity respectively.
2. The cosmetic refrigerating storage apparatus according to claim 1, characterized by: The encapsulation bottom shell is also respectively equipped with air inlet groove and air outlet groove, and the air inlet groove and air outlet groove are respectively located on both sides of the refrigeration groove and are separated from the drainage groove, and the bottom of the air inlet groove and air outlet groove is respectively equipped with an upper and lower penetrating refrigeration air inlet and refrigeration air outlet, and the refrigeration air inlet and refrigeration air outlet are communicated with the storage cavity.
3. The cosmetic refrigerating storage apparatus according to claim 1, characterized by: The refrigeration module also includes a condensate water monitoring sensor, which is installed in the drainage groove and is signal connected with the ultrasonic atomization drainage device.
4. The cosmetic refrigerating storage apparatus according to claim 2, characterized by: The refrigeration module also includes a vortex fan, which is installed in the air inlet groove and is correspondingly arranged with the refrigeration air inlet.
5. The cosmetic refrigerating storage apparatus according to claim 4, characterized by: The refrigeration module also includes a heat dissipation device, which is attached to the upper end of the semiconductor refrigeration device and extends upward outside the encapsulation upper cover and the mounting bracket; the mounting box is also provided with an inner and outer penetrating heat dissipation air inlet and heat dissipation air outlet, and the heat dissipation air inlet and heat dissipation air outlet are communicated with the heat dissipation cavity.
6. The cosmetic refrigerating storage apparatus according to claim 5, characterized by: The heat dissipation air outlet on the mounting box is provided with a plurality of heat dissipation air outlets, and the plurality of heat dissipation air outlets are respectively arranged on the upper end and the left and right sides of the mounting box.
7. The cosmetic refrigerating storage apparatus according to claim 2, characterized by: The mounting box also includes an air inlet dust cover and a plurality of air outlet dust covers, the air inlet dust cover is clamped on the heat dissipation air inlet, and the plurality of air outlet dust covers are respectively clamped on the plurality of heat dissipation air outlets.
8. The cosmetic refrigerating storage apparatus according to claim 2, characterized by: The sealing door comprises a door plate bottom frame, a door plate middle frame, a makeup mirror, a display module and a decorative frame; the door plate bottom frame is pivotally connected to one side of the storage box and can be opened and closed, the door plate middle frame is attached to the front end of the door plate bottom frame from front to back, the makeup mirror is attached to the front end of the door plate middle frame from front to back, the display module is attached to the rear lower part of the makeup mirror and is signal-connected with the refrigeration module, and the decorative frame is clamped on the four side edges of the door plate bottom frame and limits the makeup mirror and the door plate middle frame.
9. The cosmetic refrigerating storage apparatus according to claim 1, characterized by: The cosmetic refrigeration storage device further comprises a plasma sterilizer, which is arranged at the bottom of the refrigeration air outlet and located in the storage cavity. 10.The cosmetic refrigerating storage apparatus of claim 1, wherein: The refrigeration module further comprises a control panel, and the control panel is provided with an intelligent Internet of Things WIFI module.