Portable suitcase having disinfection function

By integrating disinfection and drying mechanisms into the suitcase and utilizing automated operation controlled by the lid, the problem of bacteria growth on undried clothes in the suitcase is solved, enabling rapid disinfection and drying of clothes and enhancing the functionality of portable suitcases.

WO2026103067A1PCT designated stage Publication Date: 2026-05-21SHANGHAI RUNMI TECH CO LTD
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
SHANGHAI RUNMI TECH CO LTD
Filing Date
2025-05-19
Publication Date
2026-05-21

AI Technical Summary

Technical Problem

Existing suitcases cannot effectively dry undried clothes during travel, leading to bacterial growth and limiting the application of disinfection functions.

Method used

A portable suitcase was designed, which includes a disinfection mechanism and a drying mechanism. The blue light disinfection and drying functions are automatically triggered by the closing of the lid, which disinfects and dries the items in the storage box and the drying box, respectively.

Benefits of technology

It effectively disinfects and dries undried clothes, avoiding bacterial growth caused by mixing clothes with other items, and improving the convenience of using the suitcase.

✦ Generated by Eureka AI based on patent content.

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Abstract

A portable suitcase having a disinfection function, comprising a suitcase body, a disinfection mechanism, and a drying mechanism, wherein the suitcase body comprises a storage case having the top thereof hingedly connected a cover plate and a drying case having the top side thereof hingedly connected to the bottom side of the storage case; the disinfection mechanism is mounted in the storage case, and the drying mechanism is mounted in the drying case. When the cover plate is closed on the storage case, the disinfection mechanism is automatically driven to start operating to irradiate the storage case with blue light, and when the storage case has been irradiated with blue light for a period of time, the drying mechanism is automatically driven to start operating to dry clothes in the drying case. The suitcase solves the problem that the disinfection function of existing suitcases can only enable simple disinfection of items in the suitcases.
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Description

A portable suitcase with disinfection function Technical Field

[0001] This invention relates to the field of luggage technology, specifically to a portable suitcase with a disinfection function. Background Technology

[0002] A suitcase, also known as a travel case or rolling case, is a box carried when traveling to store belongings. It is a type of luggage and is usually used to store clothing, personal care products, and souvenirs needed for a trip.

[0003] Currently, to meet the needs of personal travel and prevent bacteria growth in luggage, some suitcases are equipped with disinfection devices to disinfect the items inside, making the items used during travel more hygienic. Therefore, these suitcases with disinfection functions are similar to simple disinfection boxes.

[0004] However, the existing disinfection functions in suitcases can only disinfect simple items. During travel, people often need to carry clothes that are not dried. These wet clothes cannot be dried and used in time in the suitcase, and bacteria will grow if left for a long time. Therefore, the existing disinfection functions in suitcases cannot meet the needs of travelers and have certain limitations. Summary of the Invention

[0005] The purpose of this section is to outline some aspects of the embodiments of the present invention and to briefly describe some preferred embodiments. Simplifications or omissions may be made in this section, as well as in the abstract and title of this application, to avoid obscuring the purpose of these documents; however, such simplifications or omissions should not be construed as limiting the scope of the invention.

[0006] Therefore, the purpose of this invention is to provide a portable suitcase with a disinfection function to replace the traditional suitcase with a disinfection function. This avoids the problem that the disinfection function in existing suitcases only disinfects the items inside the suitcase, which is inconvenient for carrying clothes that have not been dried during the trip, thus limiting the use of the suitcase.

[0007] To address the aforementioned technical problems, according to one aspect of the present invention, the present invention provides the following technical solution:

[0008] A portable suitcase with disinfection function, comprising:

[0009] The box includes a storage box with a cover hinged to the top and a drying box with one side of the top hinged to the bottom side of the storage box.

[0010] The disinfection mechanism is installed inside the storage box. When the cover is closed on the storage box, the disinfection mechanism is automatically activated to irradiate the inside of the storage box with blue light for a period of time.

[0011] A drying mechanism is installed inside the drying chamber. When the cover is closed on the storage box, it drives the disinfection mechanism to work. After irradiating the storage box with blue light for a period of time, the drying mechanism is automatically activated to start working and dry the clothes in the drying chamber.

[0012] As a preferred embodiment of the portable suitcase with disinfection function described in this invention, the top of the storage box is provided with a through groove, the side wall of the through groove is provided with a connecting groove, and one side of the cover plate is provided with a connecting block that is hinged to the connecting groove.

[0013] As a preferred embodiment of the portable suitcase with disinfection function described in this invention, the disinfection mechanism includes blue light lamps located around the inner wall of the storage box, a first trigger switch installed on the top of the inner wall of the storage box and electrically connected to the blue light lamps, and a drive component that is driven by the cover plate at one end and the first trigger switch at the other end, and automatically triggers the first trigger switch for a period of time when the cover plate is closed.

[0014] As a preferred embodiment of the portable suitcase with disinfection function described in this invention, the side wall of the connecting block on the side wall of the cover plate is connected to a drive gear via a rotating shaft.

[0015] The side wall of the through groove is provided with a storage groove;

[0016] The drive assembly includes a transmission gear installed in the storage slot and meshing with the drive gear, a differential with one end connected to the side wall of the transmission gear via a rotating shaft, a delay transmission assembly with its input end connected to the other end of the differential, and a trigger assembly connected to the output end of the delay transmission assembly and drivingly connected to the first trigger switch.

[0017] As a preferred embodiment of the portable suitcase with disinfection function described in this invention, the triggering component includes two fixed blocks installed on the top of the inner wall of the storage box, a threaded rod located between the two fixed blocks, a limiting slide rod located between the two fixed blocks, and a movable trigger block with one end slidably sleeved on the limiting slide rod and the other end threadedly sleeved on the threaded rod. The outer side wall of the threaded rod adjacent to the first trigger switch is smooth, and one of the fixed blocks has an elastic element on its side wall that is connected to the side wall of the movable trigger block at the other end.

[0018] As a preferred embodiment of the portable suitcase with disinfection function described in this invention, the time-delay transmission assembly includes a box body installed on the top of the inner wall of the storage box and having an arc-shaped groove at the bottom of the inner wall; a spring wheel located inside the box body and connected to the end of the differential away from the transmission gear via a rotating shaft; a first gear located inside the box body and connected to the bottom of the spring wheel at its top; a second gear located inside the box body and meshing with the first gear; a third gear located at the bottom of the second gear and extending its bottom into the arc-shaped groove; and a fourth gear located inside the box body and meshing with the third gear. The bottom of the fourth gear is connected to the end of the threaded rod extending out of the side wall of the fixing block via a rotating shaft.

[0019] As a preferred embodiment of the portable suitcase with disinfection function described in this invention, the drive assembly further includes a connector with one end connected to the differential and the other end connected to the connecting shaft of the mainspring wheel sidewall. The connector includes a ratchet connecting seat with a ratchet groove on the sidewall and a ratchet located in the ratchet groove and having multiple elastic pawls on the sidewall.

[0020] As a preferred embodiment of the portable suitcase with disinfection function described in this invention, the drying mechanism includes a graphene heating film located around the inner wall of the drying chamber and a blower assembly installed inside the drying chamber.

[0021] A second trigger switch, electrically connected to the graphene heating film and the blower assembly, is provided on the top of the inner wall of the storage box.

[0022] As a preferred embodiment of the portable suitcase with disinfection function described in this invention, the inner wall of the drying box is provided with a slot, the interior of the drying box is provided with a pad with multiple holes on the surface, and the side wall of the drying box is provided with an air vent.

[0023] The blower assembly includes a mounting plate with multiple elastic blocks on the sidewalls and a pressure handle on the top, and an electric fan mounted on the mounting plate and electrically connected to the second trigger switch;

[0024] The storage box has multiple ventilation holes at the bottom of its inner wall, and a one-way filter valve is installed on the side wall of the storage box.

[0025] As a preferred embodiment of the portable suitcase with disinfection function described in this invention, the bottom of the mounting plate is provided with a fixing mechanism, the fixing mechanism including hinge seats installed on both sides of the bottom of the mounting plate, a fixing frame hinged to the hinge seats, and a limiting frame installed on the bottom of the mounting plate and located below the hinge seats.

[0026] The fixing frame includes a connecting rod that is hinged at the top to the hinge seat and a fixing rod located at the bottom of the connecting rod. A torsion spring with its other end connected to the inner wall of the hinge rod that is hinged to the hinge seat is sleeved on the side wall of the connecting rod.

[0027] Compared with the prior art, the present invention has the following advantages: when the storage box is sealed by the cover, the disinfection mechanism starts to work, irradiating the inside of the storage box with blue light for a period of time. After the disinfection mechanism irradiates the inside of the storage box with blue light for a period of time, it automatically starts the drying mechanism to dry the undried clothes in the drying box. This replaces the traditional disinfection function of the luggage and avoids the problem that the disinfection function of the existing luggage only disinfects the items in the luggage, which is inconvenient to carry clothes that have not been dried during the journey, thus limiting the use of the luggage. Attached Figure Description

[0028] To more clearly illustrate the technical solutions of the embodiments of the present invention, the present invention will be described in detail below with reference to the accompanying drawings and detailed embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. Wherein:

[0029] Figure 1 is a schematic diagram of the structure of a portable suitcase with disinfection function according to the present invention;

[0030] Figure 2 is a structural breakdown diagram of a portable suitcase with disinfection function according to the present invention.

[0031] Figure 3 is a cross-sectional view of the lid of a portable suitcase with disinfection function according to the present invention when it is open;

[0032] Figure 4 is a cross-sectional view of a portable suitcase with disinfection function according to the present invention when the lid is closed and the disinfection mechanism is working.

[0033] Figure 5 is a side sectional view of a time-delay transmission assembly of a portable suitcase with disinfection function according to the present invention.

[0034] Figure 6 is a side sectional view of the drying box of a portable suitcase with disinfection function according to the present invention;

[0035] Figure 7 is a structurally disassembled view of the drying box and mounting plate of a portable suitcase with disinfection function according to the present invention;

[0036] Figure 8 is a structural breakdown diagram of the mounting plate and fixing mechanism of a portable suitcase with disinfection function according to the present invention.

[0037] In the diagram: 100, cabinet; 110, storage box; 110a, cover plate; 110a-1, drive gear; 110b, through groove; 110b-1, connecting groove; 110b-2, storage groove; 110c, second trigger switch; 110d, ventilation hole; 120, drying box; 120a, slot; 120b, air outlet; 120c, pad; 200, disinfection mechanism; 210, blue light lamp; 220, first trigger switch; 230, drive assembly; 230a, transmission gear; 230b, differential; 230c, time-delay transmission assembly; 230c-1, box body; 230a-11, arc-shaped slide groove; 230c-2, spring wheel; 230c-3, first gear; 230c -4, Second gear; 230c-5, Third gear; 230c-6, Fourth gear; 230d, Trigger assembly; 230d-1, Fixing block; 230d-11, Elastic element; 230d-2, Threaded rod; 230d-3, Limiting slide bar; 230d-4, Moving trigger block; 240, Connector; 300, Drying mechanism; 310, Graphene heating film; 320, Blowing assembly; 320a, Mounting plate; 320a-1, Elastic locking block; 320a-2, Pressure handle; 320b, Electric fan; 400, Fixing mechanism; 410, Hinge seat; 420, Fixing frame; 420a, Connecting rod; 420a-1, Torsion spring; 420b, Fixing rod; 430, Limiting frame. Detailed Implementation

[0038] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.

[0039] Secondly, the present invention is described in detail with reference to the schematic diagrams. When detailing the embodiments of the present invention, for ease of explanation, the cross-sectional views illustrating the device structure may be partially enlarged, not according to the usual scale. Furthermore, the schematic diagrams are merely examples and should not limit the scope of protection of the present invention. In addition, actual fabrication should include three-dimensional spatial dimensions of length, width, and depth.

[0040] To make the objectives, technical solutions, and advantages of the present invention clearer, the embodiments of the present invention will be described in further detail below with reference to the accompanying drawings.

[0041] This invention provides a portable suitcase with a disinfection function, replacing the traditional suitcase with a disinfection function. It avoids the problem that the disinfection function in existing suitcases only disinfects the items inside the suitcase, which is inconvenient for carrying clothes that have not been dried during the journey, thus limiting the use of the suitcase.

[0042] Figures 1-8 show schematic diagrams of the structure of a portable suitcase with disinfection function according to the present invention. Please refer to Figures 1-8 for a detailed description of this portable suitcase with disinfection function.

[0043] Example 1

[0044] Referring to Figures 1-6, the present invention discloses a portable suitcase with disinfection function, the main body of which includes a suitcase body 100, a disinfection mechanism 200 and a drying mechanism 300.

[0045] Referring to Figures 1-2, the case 100 is used to store personal items during travel. The case 100 includes a storage box 110 with a cover plate 110a hinged to the top and a drying box 120 with one side of the top hinged to the bottom side of the storage box 110. The storage box 110 is used to place some personal items, and the cover plate 110a is used to seal the storage box 110 after items are taken out. The drying box 120 is used to place clothes that need to be dried. By setting up the storage box 110 and the drying box 120, wet clothes are separated from other items, thereby avoiding moisture from affecting other items.

[0046] Referring to Figures 2 and 3, the disinfection mechanism 200 is used to irradiate the storage box 110 with blue light during operation, thereby disinfecting the items inside the storage box 110. The disinfection mechanism 200 is installed inside the storage box 110. When the cover 110a is closed on the storage box 110, the disinfection mechanism 200 is automatically activated to start working and irradiate the storage box 110 with blue light for a period of time. Then, after the cover 110a is closed, the disinfection mechanism 200 automatically starts working to irradiate the storage box 110 with blue light for a period of time and then stops irradiating, thereby disinfecting the inside of the storage box 110.

[0047] Referring to Figures 1-6, the drying mechanism 300 is used to dry the wet clothes inside the drying box 120 during operation. The drying mechanism 300 is installed inside the drying box 120. When the cover 110a is closed on the storage box 110, it drives the disinfection mechanism 200 to work. After irradiating the storage box 110 with blue light for a period of time, the drying mechanism 300 is automatically activated to start working and dry the clothes inside the drying box 120. Thus, after the disinfection mechanism 200 irradiates the storage box 110 with blue light for a period of time, the drying mechanism 300 automatically starts working to dry the inside of the drying box 120 and dry the wet clothes inside the drying box 120.

[0048] In this embodiment, referring to Figures 2-3, the top of the storage box 110 is provided with a through groove 110b for easy access to the items inside the storage box 110. The side wall of the through groove 110b is provided with a connecting groove 110b-1 for easy connection with a connecting block. One side of the cover plate 110a is provided with a connecting block that is hinged to the connecting groove 110b-1, so that the cover plate 110a can be easily flipped after being hinged to the connecting groove 110b-1.

[0049] In this embodiment, the specific usage process is as follows: wet clothes are placed into the drying box 120. After the items are placed inside the storage box 110, the cover 110a is closed. After the cover 110a is closed, the disinfection mechanism 200 is automatically activated. When the disinfection mechanism 200 is working, it irradiates the inside of the storage box 110 with blue light for a period of time to disinfect the inside of the storage box 110. After the disinfection mechanism 200 irradiates the inside of the storage box 110 with blue light for a period of time, the drying mechanism 300 starts working to dry the wet clothes in the drying box 120, thereby preventing the wet clothes from mixing with other items and quickly drying the wet clothes for easy use next time.

[0050] Example 2

[0051] Based on Embodiment 1, referring to Figures 1-4, the disinfection mechanism 200 includes blue light lamps 210 located around the inner wall of the storage box 110, a first trigger switch 220 installed on the top of the inner wall of the storage box 110 and electrically connected to the blue light lamps 210, and a drive component 230 whose one end is connected to the cover plate 110a and the other end is connected to the first trigger switch 220. When the cover plate 110a is closed, the first trigger switch 220 is automatically triggered for a period of time. The blue light lamps 210 emit blue light to disinfect the inside of the storage box 110 by irradiating it. The first trigger switch 220 is turned on when triggered. The drive component 230 is automatically triggered to separate the first trigger switch 220 after the cover plate 110a is closed, so that after the cover plate 110a is closed, the first trigger switch 220 is triggered by the drive component 230 to separate after a period of time, thereby turning off the blue light lamps 210 after irradiating for a period of time.

[0052] In this embodiment, referring to Figures 3-4, the side wall of the connecting block on the side wall of the cover plate 110a is connected to a drive gear 110a-1 via a rotating shaft, which drives the transmission gear 230a to rotate when the cover plate 110a rotates.

[0053] Referring to Figures 3 and 4, a storage groove 110b-2 is provided on the side wall of the through groove 110b to facilitate the installation of the transmission gear 230a and the differential 230b;

[0054] Referring to Figures 3-4, the drive assembly 230 includes a transmission gear 230a installed in the storage slot 110b-2 and meshing with the drive gear 110a-1, a differential 230b with one end connected to the side wall of the transmission gear 230a via a rotating shaft, a time-delay transmission assembly 230c with its input end connected to the other end of the differential 230b, and a trigger assembly 230d connected to the output end of the time-delay transmission assembly 230c and driven by the first trigger switch 220. The trigger gear is used to drive the differential 230b to rotate when it rotates. The differential 230b is used to drive the time-delay transmission assembly 230c to work when it rotates. The time-delay transmission assembly 230c is used to drive the trigger assembly 230d to start working for a period of time after the cover plate 110a is closed. The trigger assembly 230d is used to trigger the first trigger switch 220 when it is working.

[0055] In this embodiment, referring to Figures 3-4, the trigger assembly 230d includes two fixed blocks 230d-1 installed on the top of the inner wall of the storage box 110, a threaded rod 230d-2 located between the two fixed blocks 230d-1, a limiting slide rod 230d-3 located between the two fixed blocks 230d-1, and a movable trigger block 230d-4 with one end slidably sleeved on the limiting slide rod 230d-3 and the other end threadedly sleeved on the threaded rod 230d-2. The outer side wall of the threaded rod 230d-2 adjacent to the first trigger switch 220 is smooth. The fixed blocks 230d-1 are used to facilitate the installation of the threaded rod 230d-2 and the limiting slide rod 230d-3. The threaded rod 230d-2 is used to drive the movable trigger block 230d-4 to move along the threaded rod 230d-2 when rotated. 3 is used to limit the movement trigger block 230d-4, so as to prevent the threaded rod 230d-2 from rotating synchronously and thus preventing it from moving. The movement trigger block 230d-4 is used to drive the threaded rod 230d-2 to move to the position of triggering the first trigger switch 220 after the threaded rod 230d-2 rotates. One of the fixed blocks 230d-1 has an elastic element 230d-11 on its side wall, the other end of which is connected to the side wall of the movement trigger block 230d-4. When the movement trigger block 230d-4 triggers the first trigger switch 220, it is squeezed, so that after the spring wheel 230c-2 finishes unwinding, the movement trigger block 230d-4 is driven away from the first trigger switch 220 by its own restoring force, so that the blue light 210 automatically turns off after working for a period of time.

[0056] In this embodiment, referring to Figures 3-5, the time-delay transmission assembly 230c includes a housing 230c-1 installed on the top of the inner wall of the storage box 110 and having an arc-shaped groove 230a-11 at the bottom of the inner wall; a spring wheel 230c-2 located inside the housing 230c-1 and connected on one side to the differential 230b away from the transmission gear 230a via a rotating shaft; and a first gear 2 located inside the housing 230c-1 and connected at its top to the bottom of the spring wheel 230c-2. 30c-3, a second gear 230c-4 located inside the housing 230c-1 and meshing with the first gear 230c-3, a third gear 230c-5 located at the bottom of the second gear 230c-4 and extending to the arc-shaped slide groove 230a-11, and a fourth gear 230c-6 located inside the housing 230c-1 and meshing with the third gear 230c-5. The housing 230c-1 is used to facilitate the installation of the entire time-delay transmission assembly 230c. The mainspring wheel 230c-2 is used to engage the transmission gear 230a via the rotation of the differential 230b and the transmission gear 230a during the process of the cover plate 110a being closed. The first gear 230c-3 drives the second gear 230c-4 to rotate when it rotates. The second gear 230c-4 drives the third gear 230c-5 to rotate when it rotates. The third gear 230c-5 moves along the arc-shaped slide groove 230a-11 to the position where it meshes with the fourth gear 230c-6 after the mainspring wheel 230c-2 reverses and drives the first gear 230c-3 and the second gear to reverse. It also drives the fourth gear 230c-6 to rotate. The fourth gear 230c-6 drives the threaded rod 230d-2 when it rotates. The bottom of the fourth gear 230c-6 is connected to one end of the fixed block 230d-1 extending from the threaded rod 230d-2 via a rotating shaft. Thus, the threaded rod 230d-2 rotates when the fourth gear 230c-6 rotates.

[0057] In this embodiment, referring to Figures 3-4, the drive assembly 230 further includes a connector 240, one end of which is connected to the differential 230b and the other end of which is connected to the connecting shaft of the side wall of the mainspring wheel 230c-2. This connector is used to facilitate the mainspring wheel 230c-2 to reverse and release its tension when the cover plate 110a stops flipping and the differential 230b stops rotating. This prevents the differential 230b from reversing and generating a force that would drive the cover plate 110a to reverse and open, thus avoiding jamming when the mainspring wheel 230c-2 reverses and releases its tension. The connector 240 includes a ratchet connecting seat with a ratchet groove on the side wall and a ratchet located in the ratchet groove and having multiple elastic pawls on the side wall.

[0058] In this embodiment, the specific workflow is as follows: When the cover plate 110a is closed, the drive gear 110a-1 rotates, driving the transmission gear 230a to rotate. The rotation of the transmission gear 230a drives the differential 230b to rotate. The rotation of the differential 230b drives the mainspring wheel 230c-2 to accelerate and wind up. At this time, the third gear 230c-5 and the fourth gear 230c-6 separate. When the cover plate 110a is closed, the differential 230b... The mainspring wheel 230c-2 stops rotating to wind, and then reverses to release the winding, thereby driving the first gear 230c-3 to rotate. The rotation of the first gear 230c-3 drives the second gear 230c-4 to rotate, and the rotation of the second gear 230c-4 drives the third gear 230c-5 to rotate. Simultaneously, the second gear 230c-5 moves along the arc-shaped groove 230a-11 to engage with the fourth gear 230c-6, thus driving the fourth gear 230c-6 to rotate. When the fourth gear 230c-6 rotates, it drives the threaded rod 230d-2 to rotate. As the threaded rod 230d-2 rotates, it drives the movable trigger block 230d-4 to move along the threaded rod 230d-2 and the limiting slide bar 230d-3 to a position where it contacts the first trigger switch 220. At this time, the elastic element 230d-11 is compressed. Since the front end of the threaded rod 230d-2 has a smooth sidewall, as the threaded rod 230d-2 rotates, and the first trigger switch 220... Under the limiting action, the moving trigger plate continues to contact the first trigger switch 220, thereby triggering the blue light lamp 210 to start working and disinfect the inside of the storage box 110 with blue light irradiation. When the spring wheel 230c-2 finishes releasing, the elastic element 230d-11 resets, thereby driving the threaded rod 230d-2 to reverse. At this time, the moving trigger plate moves back and separates from the first trigger switch 220, thereby stopping the blue light lamp 210 from working and completing one disinfection operation inside the storage box 110.

[0059] Example 3

[0060] Based on Example 2, referring to Figure 6, the drying mechanism 300 includes a graphene heating film 310 located around the inner wall of the drying chamber 120 and a blower assembly 320 installed inside the drying chamber 120. The graphene heating film 310 is used to heat the air inside the drying chamber 120 during operation, and the graphene heating film 310 has excellent conductivity and thermal stability, which improves safety performance. The blower assembly 320 is used to blow air into the drying chamber 120 during operation, thereby blowing hot air over the wet clothes and drying them.

[0061] Referring to Figures 3 and 4, a second trigger switch 110c is provided on the top of the inner wall of the storage box 110, which is electrically connected to the graphene heating film 310 and the blower assembly 320. When the second trigger switch 110c is triggered, the graphene heating film 310 and the electric fan 320b start to work.

[0062] In this embodiment, referring to Figures 6-8, the inner wall of the drying chamber 120 is provided with a slot 120a for cooperating with the elastic block 320a-1 to fix the mounting plate 320a. The interior of the drying chamber 120 is provided with a pad 120c with multiple holes on its surface. The pad 120c is used to support the wet clothes, and the holes are used to facilitate the passage of hot air, thereby improving the drying efficiency. The side wall of the drying chamber 120 is provided with an air outlet 120b for discharging the humid air that has passed through the wet clothes and the holes on the pad 120c from the drying chamber.

[0063] Referring to Figures 6 and 7, the blower assembly 320 includes a mounting plate 320a with multiple elastic blocks 320a-1 on the side wall and a pressure handle 320a-2 on the top, and an electric fan 320b mounted on the mounting plate 320a and electrically connected to the second trigger switch 110c. The mounting plate 320a is used to facilitate the installation of the electric fan 320b. The elastic blocks 320a-1 are used to cooperate with the slot 120a to fix the mounting plate 320a. The pressure handle 320a-2 is used to facilitate the removal of the mounting plate 320a. The electric fan 320b is used to start rotating when the second trigger switch 110c is triggered to blow air into the drying chamber.

[0064] Referring to Figure 2, the bottom of the inner wall of the storage box 110 is provided with multiple ventilation holes 110d, which are used to facilitate the air inside the storage box 110 to be drawn away by the electric fan 320b when it is rotated through the ventilation holes 110d. The side wall of the storage box 110 is provided with a one-way filter valve, which is used to replenish the air inside the storage box 110. In this way, during the operation of the drying mechanism, the air circulation inside the storage box 110 is maintained at the same time, thereby more effectively preventing the growth of bacteria inside the storage box 110.

[0065] In this embodiment, the specific workflow is as follows: After the disinfection mechanism 200 has been working for a period of time, the moving trigger block 230d-4 is reset and squeezed back by the elastic element 230d-11 and then contacts the trigger switch, thereby triggering the second trigger switch 110c, which in turn causes the graphene heating film and electric fan 320b to start working. When the graphene heating film 310 is working, it heats the air inside the drying chamber. When the electric fan 320b is working, it draws the air in the storage box 110 into the drying chamber through the ventilation hole 110d. The heated air passes through the holes on the clothes and pad 120c and is discharged from the drying chamber through the air outlet 120b, thereby drying the clothes in the drying chamber.

[0066] Example 4

[0067] Based on Example 3, in order to fix the clothes in the drying box and prevent the wet clothes from piling up together and affecting the drying effect, referring to Figures 6-8, a fixing mechanism 400 is provided at the bottom of the mounting plate 320a. When fixing the mounting plate 320a, the fixing mechanism 400 automatically fixes the clothes on the pad 120c. The fixing mechanism 400 includes hinge seats 410 installed on both sides of the bottom of the mounting plate 320a, a fixing frame 420 hinged to the hinge seats 410, and a limiting frame 430 installed at the bottom of the mounting plate 320a and located below the hinge seats 410. The hinge seats 410 are used to facilitate the hinge of the fixing frame 420, so that the fixing frame 420 can rotate during the process of pressing down the mounting plate 320a to fix it. The fixing frame 420 is used to fix the wet clothes on the pad 120c. The limiting frame 430 is used to limit the fixing frame 420 to prevent the fixing frame 420 from rotating in the opposite direction during the process of pressing down the mounting plate 320a.

[0068] Referring to Figures 6-8, the fixing frame 420 includes a connecting rod 420a hinged to the top of the hinge seat 410 and a fixing rod 420b located at the bottom of the connecting rod 420a. The connecting rod 420a is used to connect to the fixing rod 420b. When the mounting plate 320a presses down and drives the connecting rod 420a to rotate, the fixing rod 420b moves to both sides against the attached clothes, thereby clamping and fixing the wet clothes while flattening the clothes, which is more conducive to drying the clothes. The side wall of the hinge rod that is hinged to the connecting rod 420a and the hinge seat 410 is sleeved with a torsion spring 420a-1 whose other end is connected to the inner wall of the hinge seat 410. When the connecting rod 420a rotates, its own torsion makes the fixing rod 420b press tightly against the surface of the clothes, thereby fixing the wet clothes.

[0069] In this embodiment, the specific workflow is as follows: When wet clothes are placed on the pad 120c, as the mounting plate 320a is pressed down, the fixing rod 420b contacts the wet clothes, causing the connecting rod 420a to rotate to both sides. At the same time, the fixing rod 420b is driven to move to both sides. Under the torque of the torsion spring 420a-1, the fixing rod 420b is pressed tightly against the surface of the wet clothes, thereby fixing the wet clothes. At the same time, as the fixing rod 420b moves to both sides, the wet clothes are flattened to both sides, which is more conducive to drying.

[0070] Example 5

[0071] Based on Embodiment 4, in order to prevent insufficient force when the elastic element 230d-11 resets and rebounds to drive the moving trigger block 230d-4 to reset and contact the second trigger switch 110c, thereby causing the drying mechanism 300 to malfunction, the inner wall of the storage box 110 is also provided with an electric telescopic rod that drives the moving trigger block 230d-4 to move towards the second trigger switch 110c. When the elastic element 230d-11 resets and rebounds to drive the moving trigger block 230d-4 to reset, but the moving trigger block 230d-4 cannot contact the second trigger switch 110c, the electric telescopic rod works to drive the moving trigger block 230d-4 to move towards the second trigger switch 110c, thereby triggering the second trigger switch 110c and enabling the drying mechanism 300 to work normally.

[0072] Although the present invention has been described above with reference to embodiments, various modifications can be made and components can be replaced with equivalents without departing from the scope of the invention. In particular, as long as there is no structural conflict, the features in the disclosed embodiments can be combined with each other in any manner. The lack of an exhaustive description of these combinations in this specification is merely for the sake of brevity and resource conservation. Therefore, the present invention is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

Claims

1. A portable luggage case having a sterilization function, characterized by comprising: include: The box (100) includes a storage box (110) with a cover plate (110a) hinged to the top and a drying box (120) with one side of the top hinged to the bottom side of the storage box (110). A disinfection mechanism (200) is installed inside the storage box (110). When the cover plate (110a) is closed on the storage box (110), the disinfection mechanism (200) is automatically activated to start working and irradiate the storage box (110) with blue light for a period of time. A drying mechanism (300) is installed inside the drying box (120). When the cover plate (110a) closes on the storage box (110), it drives the disinfection mechanism (200) to work. After irradiating the storage box (110) with blue light for a period of time, the drying mechanism (300) is automatically activated to start working and dry the clothes in the drying box (120).

2. The portable luggage case with a sterilization function according to claim 1, wherein, The top of the storage box (110) is provided with a through groove (110b), the side wall of the through groove (110b) is provided with a connecting groove (110b-1), and a connecting block that is hinged to the connecting groove (110b-1) is provided on one side of the cover plate (110a).

3. The portable luggage case with a sterilization function according to claim 2, wherein, The disinfection mechanism (200) includes blue light lamps (210) located around the inner wall of the storage box (110), a first trigger switch (220) installed on the top of the inner wall of the storage box (110) and electrically connected to the blue light lamps (210), and a drive assembly (230) whose one end is connected to the cover plate (110a) and the other end is connected to the first trigger switch (220) and automatically triggers the first trigger switch (220) for a period of time when the cover plate (110a) is closed.

4. The portable luggage case with a sterilization function according to claim 3, wherein, The side wall of the connecting block on the side wall of the cover plate (110a) is connected to a drive gear (110a-1) via a rotating shaft; The side wall of the through groove (110b) is provided with a storage groove (110b-2); The drive assembly (230) includes a transmission gear (230a) installed in the storage slot (110b-2) and meshing with the drive gear (110a-1), a differential (230b) with one end connected to the side wall of the transmission gear (230a) via a rotating shaft, a time-delay transmission assembly (230c) with its input end connected to the other end of the differential (230b), and a trigger assembly (230d) connected to the output end of the time-delay transmission assembly (230c) and drivenly connected to the first trigger switch (220).

5. The portable luggage case with a sterilization function according to claim 4, wherein, The trigger assembly (230d) includes two fixed blocks (230d-1) installed on the top of the inner wall of the storage box (110), a threaded rod (230d-2) located between the two fixed blocks (230d-1), a limiting slide rod (230d-3) located between the two fixed blocks (230d-1), and a movable trigger block (230d-4) with one end slidably sleeved on the limiting slide rod (230d-3) and the other end threadedly sleeved on the threaded rod (230d-2). The outer side wall of the threaded rod (230d-2) adjacent to the first trigger switch (220) is smooth. One of the fixed blocks (230d-1) has an elastic element (230d-11) on its side wall, the other end of which is connected to the side wall of the movable trigger block (230d-4).

6. The portable luggage case with a sterilization function according to claim 5, wherein, The time-delay transmission assembly (230c) includes a housing (230c-1) mounted on the top of the inner wall of the storage box (110) and having an arc-shaped groove (230a-11) at the bottom of the inner wall; a spring wheel (230c-2) located inside the housing (230c-1) and connected on one side to the differential (230b) away from the transmission gear (230a) via a rotating shaft; a first gear (230c-3) located inside the housing (230c-1) and connected at its top to the bottom of the spring wheel (230c-2); and a gear located inside the housing (230c-1). The box contains a second gear (230c-4) that meshes with the first gear (230c-3), a third gear (230c-5) located at the bottom of the second gear (230c-4) and extending into the arc-shaped groove (230a-11), and a fourth gear (230c-6) located in the box (230c-1) and meshing with the third gear (230c-5). The bottom of the fourth gear (230c-6) is connected to one end of the threaded rod (230d-2) extending out of the side wall of the fixing block (230d-1) via a rotating shaft.

7. The portable luggage case with a sterilization function according to claim 6, wherein, The drive assembly (230) further includes a connector (240) with one end connected to the differential (230b) and the other end connected to the connecting shaft of the side wall of the mainspring wheel (230c-2). The connector (240) includes a ratchet connecting seat with a ratchet groove on the side wall and a ratchet located in the ratchet groove and having a plurality of elastic pawls on the side wall.

8. The portable luggage case with a sterilization function according to claim 5, wherein, The drying mechanism (300) includes a graphene heating film (310) located around the inner wall of the drying chamber (120) and a blower assembly (320) installed inside the drying chamber (120); The storage box (110) has a second trigger switch (110c) on the top of its inner wall that is electrically connected to the graphene heating film (310) and the blower assembly (320).

9. The portable luggage case with a sterilization function according to claim 8, wherein, The drying oven (120) has a slot (120a) on its inner wall, a pad (120c) with multiple holes on its surface is provided inside the drying oven (120), and an air vent (120b) is provided on the side wall of the drying oven (120). The blower assembly (320) includes a mounting plate (320a) with a plurality of elastic blocks (320a-1) on the sidewalls and a pressure handle (320a-2) on the top, and an electric fan (320b) mounted on the mounting plate (320a) and electrically connected to the second trigger switch (110c); The storage box (110) has multiple ventilation holes (110d) at the bottom of its inner wall, and a one-way filter valve is provided on the side wall of the storage box (110).

10. The portable luggage case with a sterilization function according to claim 9, wherein, The bottom of the mounting plate (320a) is provided with a fixing mechanism (400), which includes hinge seats (410) installed on both sides of the bottom of the mounting plate (320a), a fixing frame (420) hinged to the hinge seats (410), and a limiting frame (430) installed on the bottom of the mounting plate (320a) and located below the hinge seats (410). The fixing frame (420) includes a connecting rod (420a) whose top is hinged to the hinge seat (410) and a fixing rod (420b) located at the bottom of the connecting rod (420a). The side wall of the hinge rod (420a) that is hinged to the hinge seat (410) is fitted with a torsion spring (420a-1) whose other end is connected to the inner wall of the hinge seat (410).