CN211584392U - Portable UVCLED disinfection box - Google Patents

Portable UVCLED disinfection box Download PDF

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Publication number
CN211584392U
CN211584392U CN201922301447.3U CN201922301447U CN211584392U CN 211584392 U CN211584392 U CN 211584392U CN 201922301447 U CN201922301447 U CN 201922301447U CN 211584392 U CN211584392 U CN 211584392U
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CN
China
Prior art keywords
shell
uvcled
cavity
cavity shell
portable
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Expired - Fee Related
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CN201922301447.3U
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Chinese (zh)
Inventor
王根浩
李春峰
李冬
崔金琦
孙连根
杨晓娟
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Tianjin Zhonghuan Electronic Lighting Technology Co ltd
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Tianjin Zhonghuan Electronic Lighting Technology Co ltd
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Priority to CN201922301447.3U priority Critical patent/CN211584392U/en
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Publication of CN211584392U publication Critical patent/CN211584392U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model provides a portable UVCLED disinfection box, which comprises an upper shell and a lower shell, wherein the upper shell and the lower shell are respectively provided with a hollow inner cavity, an upper cavity shell with a concave middle part is arranged in the hollow inner cavity of the upper shell, a lower cavity shell with a concave middle part is arranged in the hollow inner cavity of the lower shell, and the upper cavity shell and the lower cavity shell can be mutually closed to form a closed hollow space; the upper shell and the lower shell are mutually rotatably connected through a rotating shaft structure; the improved lamp is characterized in that a UVCLED lamp plate is arranged above the upper cavity shell in the upper shell, UVCLED lamp beads are arranged below the UVCLED lamp plate, and notches corresponding to the UVCLED lamp beads are formed in the upper cavity shell. The utility model discloses small and exquisite portable can carry out the split, and the nonhazardous risk.

Description

Portable UVCLED disinfection box
Technical Field
The utility model relates to a UVC technical field that disinfects, concretely relates to portable UVCLED disinfection box.
Background
The ultraviolet sterilization technology is a technology for killing bacteria by utilizing ultraviolet rays, and has the characteristics of instantaneous high-energy ultraviolet, strong ultraviolet penetrating power, high-efficiency sterilization and no reactivation. The conventional mercury lamp ultraviolet disinfection has the defects of higher power consumption, short service life (1000-1500 hours), complex water immersion type structure, secondary mercury pollution and the like, and the emitted ultraviolet energy is higher, so that the conventional mercury lamp ultraviolet disinfection is very easy to cause huge damage to a human body if no protective measures are taken. In addition, the traditional ultraviolet disinfection product of the mercury lamp contains deadly heavy metal mercury, has larger size, is only suitable for indoor sterilization on a large surface, has no sterilization effect in places where the light shielded by objects cannot reach, and cannot carry out targeted sterilization on the surface of a certain specific article, such as tableware or a table, so that the household disinfection is difficult to realize.
The UVCLED has the service life of more than 20000 hours and is not influenced by the opening and closing times; UVCLED can light up in the twinkling of an eye, and the instant use is promptly opened, guarantees to set for power output. The energy is evenly output and stable, the consumption is low, and the maintenance cost is low. UVCLED has very strong bactericidal disinfection effect, and is fast, efficient, and is more advanced than traditional mercury lamp ultraviolet ray disinfection method in technology. UVCLED ultraviolet ray does not produce ozone, does not produce secondary pollution, does not add any chemical agent, green. After the water guarantee convention comes into effect, the UVCLED gradually replaces the traditional mercury lamp sterilization by virtue of the characteristics of no toxicity and no pollution.
However, the UVCLED ultraviolet product still has the defects of large power consumption, low efficiency, heavy body, difficulty in carrying and the like, and the wide application of the disinfection product is limited.
Disclosure of Invention
An object of the utility model is to provide a portable UVCLED disinfection box, be different from traditional disinfection mode, the size is small and exquisite, conveniently carries to can the split be two parts, can provide a cavity, disinfect to articles such as the less tableware of size, nipple, also can get off last casing split, do surface disinfection to places such as the desktop of family or hotel, toilet lid. Thereby meeting certain crowds with special requirements on sanitary conditions and realizing the domestication and the portability of sterilization. And the worry that the traditional mercury lamp contains fatal metallic mercury is eliminated, and the traditional mercury lamp has no toxic risk.
The utility model discloses a portable UVCLED disinfection box, including upper casing and lower casing, upper casing and lower casing are equipped with hollow inner chamber respectively, are equipped with the upper chamber casing that the middle part is sunken in the hollow inner chamber of upper casing, and the cavity inner chamber of lower casing is equipped with the cavity of resorption casing that the middle part is sunken, upper chamber casing and cavity of resorption casing can be closed each other and form inclosed hollow space; the upper shell and the lower shell are mutually rotatably connected through a rotating shaft structure; the improved lamp is characterized in that a UVCLED lamp plate is arranged above the upper cavity shell in the upper shell, UVCLED lamp beads are arranged below the UVCLED lamp plate, and notches corresponding to the UVCLED lamp beads are formed in the upper cavity shell.
The upper shell and the upper cavity shell can be arranged separately or integrally, and the lower shell and the lower cavity shell can be arranged separately or integrally; the upper shell and the lower shell are provided with outer peripheral surfaces with mutually matched sizes, the upper shell and the lower shell are provided with outer peripheral surfaces capable of being mutually closed, and a hollow space is formed by enclosing the middle concave parts of the upper shell and the lower shell; the utility model discloses a decoration pad, including last chamber casing, last decorative pad and lower decorative pad are equipped with respectively on the last chamber casing, the lower terminal surface size phase-match of the periphery of lower chamber casing and lower casing, last decorative pad and the lower decorative pad of still being equipped with on the last chamber casing and the lower.
A lower shell opening is formed in one side wall of the lower shell, and a lower cavity opening correspondingly matched with the lower shell opening is formed in the lower cavity shell; a sliding switch capable of opening or closing the lower shell opening and the lower cavity opening is vertically and slidably arranged between the lower shell and the lower cavity shell, the sliding switch comprises a sliding block, a lifting handle is vertically arranged on the sliding block, the lifting handle sequentially penetrates through the lower cavity shell, the lower decoration pad, the upper decoration pad and the upper cavity shell and extends into the upper shell, a slot capable of being matched with the upper part of the lifting handle is formed in the upper shell, and the lifting handle serves as the rotating shaft structure to enable the upper shell and the lower shell to be rotatably connected; the handle is provided with a plurality of ring grooves, and the ring grooves are provided with annular gaskets or annular snap springs; a first vertical wall group used for limiting the sliding block is arranged between the lower shell and the lower cavity shell, and the sliding block can slide up and down along the first vertical wall group; and a spring is compressed between the sliding block and the lower cavity extension surface of the lower cavity shell.
At least one locking structure is arranged between the lower shell and the lower cavity shell, locking structures which correspond to the locking structures between the lower shell and the lower cavity shell in position and are matched with each other are arranged between the upper shell and the upper cavity shell, and the locking structures are magnet blocks, clamping hooks or locking buckles.
The upper cavity shell divides an inner cavity of the upper shell into an upper cavity and a lower cavity, the lower cavity and the lower cavity can be mutually closed to form a closed hollow space, the wall body recessed in the middle of the upper cavity shell is provided with the notch, a glass sheet is hermetically packaged in the notch, a UVCLED lamp panel is erected above the upper cavity shell through a plurality of ribs and limited by a plurality of short screw posts arranged on the upper part of the upper cavity shell, the UVCLED lamp panel is provided with positioning holes matched with the short screw posts, the UVCLED lamp bead is just positioned above the glass sheet in the notch, and a circuit between the UVCLED lamp beads is integrated on the UVCLED lamp panel; the UVCLED lamp plate top is equipped with circuit board and battery, and the circuit board is fixed or spacing through setting up in a plurality of long screw posts on last cavity casing upper portion, is equipped with on the UVCLED lamp plate and supplies hole or groove that long screw post passes through.
The touch screen is arranged on the upper shell, and the glass cover plate is arranged above the touch screen; a switch and a charging hole are respectively arranged on the side wall of the upper shell; the circuit board is provided with a control circuit, a charging circuit and a power supply circuit, the charging circuit and the power supply circuit are connected with a battery through electric wires, the switch is connected with an original point button of the power supply circuit in an openable and closable mode, a socket used for charging on the charging circuit is arranged on a charging hole, and the control circuit is respectively in signal connection with the touch screen and the UVCLED lamp panel.
The UVCLED lamp panel is characterized in that a photoreceptor is further integrated on the UVCLED lamp panel, the photoreceptor penetrates into a lower cavity formed by the upper cavity body in a separated mode through a through hole formed in the upper cavity body, and the photoreceptor is in signal connection with a control circuit of the circuit board.
Wherein, the inner surfaces of the upper cavity shell and the lower cavity shell which are closed to form a closed hollow space are provided with plating layers or coatings.
The utility model discloses a disinfection box has following advantage:
1. the UVCLED has long service life, can be instantly lightened, can be instantly used after being opened, ensures set power output, has uniform energy output, low consumption, low maintenance cost, high sterilization speed and high efficiency, does not generate ozone, secondary pollution or any chemical agent, eliminates the worry that the traditional mercury lamp contains fatal metallic mercury, is green and environment-friendly, has no toxic risk and can not cause the panic of consumers.
2. This disinfection box, the size is small and exquisite, conveniently carries, can regard as handheld body to can the split be two parts, can provide a cavity, disinfect to article such as the less tableware of size, nipple, also can get off the split of last casing 0100, do surface disinfection to places such as family or hotel's desktop, toilet lid. Thereby meeting certain crowds with special requirements on sanitary conditions and realizing the domestication and the portability of sterilization.
Drawings
The accompanying drawings, which form a part hereof, are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the invention without undue limitation. In the drawings:
fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is an exploded schematic view of the present invention.
Fig. 3-6 are enlarged views of portions of fig. 2.
Fig. 7 is a schematic structural diagram of one side of the UVCLED lamp panel.
Fig. 8 is a structural schematic view of one side of the lower chamber housing.
Fig. 9 is a sectional structure view of the present invention.
Fig. 10 is a schematic diagram of the splitting process of the present invention.
Fig. 11-12 are schematic views of the present invention for disinfecting chopsticks.
Detailed Description
For a better understanding of the present invention, reference will now be made in detail to the present invention as illustrated in the accompanying drawings.
The utility model provides a portable UVCLED disinfection box, as shown in figure 1-9, including upper casing 0100 and lower casing 0200, upper casing 0100 and lower casing 0200 are equipped with hollow inner chamber respectively, and upper casing 0300 with sunken middle part is equipped with in the hollow inner chamber of upper casing 0100, and lower casing 0400 with sunken middle part is equipped with in the hollow inner chamber of lower casing 0200; the upper shell 0100 and the lower shell 0200 are provided with outer peripheral surfaces with sizes matched with each other, the upper cavity shell 0300 and the lower cavity shell 0400 are provided with outer peripheral surfaces capable of being closed with each other, the upper cavity shell 0300 and the lower cavity shell 0400 can form a closed hollow space after being closed with each other, the hollow space is formed by surrounding middle sunken parts of the upper cavity shell 0300 and the lower cavity shell 0400, the middle sunken part is approximately rectangular, the side surfaces can be slightly inclined, and other space shapes such as a cylinder shape can also be formed according to requirements.
Be equipped with epicoele epitaxial surface 0301 on the lower terminal surface of epicoele casing 0300, epicoele epitaxial surface 0301's periphery and the lower terminal surface size phase-match of upper housing 0100, be equipped with lower chamber epitaxial surface 0401 on the up end of lower chamber casing 0400, the periphery of lower chamber epitaxial surface 0401 and the up end size phase-match of lower housing 0200, still be equipped with respectively on epicoele epitaxial surface 0301 and the lower chamber epitaxial surface 0401 and adorn pad 0302 down, can play decorative action and sealing action simultaneously.
A lower shell opening 0201 is formed in one side wall of the lower shell 0200, and a lower cavity opening 0403 correspondingly matched with the lower shell opening 0201 is formed in the lower cavity shell 0400. The sliding switch 0500 capable of opening or closing the lower shell opening 0201 and the lower cavity opening 0403 is vertically arranged between the lower shell 0200 and the lower cavity shell 0400 in a sliding mode, the sliding switch 0500 comprises a sliding block 0501, a lifting handle 0502 is vertically arranged on the sliding block 0501, the lifting handle 0502 sequentially penetrates through the lower cavity shell 0400, the lower decoration pad 0402, the upper decoration pad 0302 and the upper cavity shell 0300 and extends into the upper shell 0100, and a slot capable of being matched with the upper portion of the lifting handle 0502 is formed in the upper shell 0100. The lifting handle 0502 can be provided with a plurality of annular grooves 0505, and the annular grooves 0505 can be provided with annular gaskets or annular snap springs for increasing the clamping force between the lifting handle 0502 and the slots, or promoting the upper shell 0100 and the lower shell 0200 to reset after being mutually offset. The inner wall of the lower shell 0200 is provided with a first vertical wall group 0202 used for limiting the sliding block 0501, the sliding block 0501 can slide up and down along the first vertical wall group 0202, and the first vertical wall group 0202 can also be arranged on the lower cavity shell 0400. A spring 0504 is compressed between the slider 0501 and the lower cavity extension surface 0401 of the lower cavity shell 0400, one end of the spring 0504 is limited in a limiting groove 0503 formed on the slider 0501, and the other end is limited on an extension positioning column 0404 arranged below the lower cavity extension surface 0401 of the lower cavity shell 0400 in a sleeving manner. A support table is arranged below the sliding block 0501 and at the bottom of the lower shell 0200 and used for reinforcing and supporting the sliding switch 0500, and at least one rubber mat 0506 is arranged between the support table and the sliding block 0501.
The lifting handle 0502 can extend out or not extend out of the surface of the upper shell 0100, the upper shell 0100 can be additionally provided with a positioning bolt, a nut and other structures which can be detachably matched with the lifting handle 0502, the limiting effect of the lifting handle 0502 on the upper shell 0100 is enhanced, and the upper shell 0100 is prevented from accidentally falling off.
The inner wall of the lower shell 0200 is further provided with at least one set of second vertical wall group 0203 used for limiting the magnet block 0600, the inner wall of the upper shell 0100 is provided with at least one set of third vertical wall group 0101 used for limiting the magnet block 0600, and the vertical positions of the second vertical wall group 0203 and the third vertical wall group 0101 correspond to each other so that the upper shell 0100 and the lower shell 0200 are buckled together through mutual adsorption of the magnet block 0600. Through grooves are formed in the positions corresponding to the second vertical wall group 0203 on the lower cavity shell 0400, the lower decoration pad 0402, the upper decoration pad 0302 and/or the upper cavity shell 0300 respectively, so that the suction effect between the magnet blocks 0600 can be enhanced. The magnet block 0600 may also be replaced with another locking structure capable of cooperating with each other to lock the upper housing 0100 and the lower housing 0200, such as a hook and a latch capable of cooperating with each other. The second vertical wall group 0203 and the third vertical wall group 0101 may also be disposed on the outer walls of the lower cavity housing 0400 and the upper cavity housing 0300, respectively.
The upper cavity shell 0300 divides the inner cavity of the upper shell 0100 into an upper cavity and a lower cavity, the lower cavity and the lower cavity shell 0400 can be mutually closed to form a closed hollow space, and the upper cavity is used for placing optical elements, circuits and other elements and a control system. The improved lamp is characterized in that a plurality of notches 0303 are formed in the wall body sunken in the middle of the upper cavity shell 0300, glass sheet 0304 is sealed and packaged in the notches 0303 in a dispensing mode or in other modes, a UVCLED lamp panel 0700 is erected above the upper cavity shell 0300 through a plurality of ribs 0305 and limited through a plurality of short screw columns 0306 arranged on the upper portion of the upper cavity shell 0300, a positioning hole 0701 matched with the short screw columns 0306 is formed in the UVCLED lamp panel 0700, UVCLED lamp beads 0703 used for disinfection are welded below the UVCLED lamp panel 0700, the UVCLED 0703 are located above the glass sheet 0304 in the notches 0303, and circuits between the UVCLED lamp beads 0703 are integrated on the UVCLED lamp panel 0700. Circuit board 0800 and battery 0900 are equipped with above the UVCLED lamp plate, and circuit board 0800 is fixed or spacing through setting up a plurality of long screw post 0307 on upper chamber casing 0300 upper portion, is equipped with on UVCLED lamp plate 0700 and supplies hole or groove that long screw post 0307 passes through, battery 0900 bonds and fixes on the inner wall of upper housing 0100, also can fix through other modes such as similar with long screw post 0307.
The upper shell 0100 is provided with a slot 0102, the slot 0102 is provided with a touch screen 1000, and a glass cover plate 1100 is arranged above the touch screen 1000. The switch 1200 and the charging hole 0103 are respectively installed on the side wall of the upper shell 0100, an upper convex rib 0104 is arranged on the inner side of the upper shell 0100, a lower convex rib 0308 which is meshed with the upper convex rib 0104 in a matching manner is arranged on the upper shell 0300, and the switch 1200 is fixed through the upper convex rib 0104 and the lower convex rib 0308 which are meshed with each other.
There are control circuit, charging circuit and supply circuit on the circuit board 0800, and charging circuit and supply circuit pass through the electric wire and are connected with battery 0900, but switch 1200 and supply circuit's original point button switching is connected, and the socket that is used for charging on the charging circuit sets up on charging hole 0103, and control circuit respectively with touch-sensitive screen 1000 and UVCLED lamp plate 0700 signal connection. The operation control steps and logic of the disinfection box can be controlled and completed through the touch screen 1000, and the operation control steps comprise disinfection starting, disinfection stopping, disinfection time, disinfection lamp intensity adjustment and the like.
The UVCLED lamp panel 0700 is further integrated with a light sensor 0702, the light sensor 0702 penetrates into a lower cavity formed by the upper cavity shell 0300 through a through hole formed in the upper cavity shell 0300, and the light sensor 0702 is in signal connection with a control circuit of the circuit board 0800. Photoreceptor 0702 can be through the sterile start or stop of design procedure automatic control, and when the disinfection box was airtight, photoreceptor 0702 judged that there was not the light entering, then the disinfection box can normally begin work to avoid the light that UVCLED sent to cause the damage to people's eye or other positions, when the disinfection box was opened or when unusually opening, photoreceptor 0702 judged that there was the outside light source to get into, disinfection box stop work. The photoreceptor 0702 may also be replaced with other mechanical control elements, changing automatic sensitization to a mechanical or manual control switch.
The inner surfaces of the upper cavity shell 0300 and the lower cavity shell 0400 which are closed to form a closed hollow space are provided with coatings or coatings, for example, the inner surface of the upper cavity shell 0300 is sprayed with a diffuse reflection layer, and the inner surface of the lower cavity shell 0400 is provided with a chromium coating layer, so that the UVCLED light realizes mirror reflection in the hollow space, and the sterilized objects can be sterilized in a sterilizing box at 360 degrees without dead angles through the combination of diffuse reflection and mirror reflection.
The utility model discloses a disinfection box can the closed use of integral type, also can the split use. Fig. 10 is a schematic diagram of the splitting process. Holding the upper casing 0100 and the lower casing 0200 closed to each other, pushing the upper casing 0100 to one side to make the upper casing 0100 overcome the suction force of the magnet block 0600, rotating around the lifting handle 0502 of the slide switch 0500, and then pulling out the upper casing 0100 upward. The separated upper shell 0100 can be disinfected independently, when the surface of a table top, a toilet cover and the like of a home or a hotel is sterilized, the upper shell 0300 of the upper shell 0100 is in close contact with the surface to be sterilized through the upper extension surface 0301 and the upper decoration pad 0302 to form a closed space, and the sterilization box can be disinfected.
Fig. 11-12 are schematic views of the disinfection box for disinfection, and products to be disinfected, such as spoons, nipples, etc., can be directly placed in the inner cavity of the lower cavity shell 0400, or the slider 0501 can slide upwards to open the lower cavity opening 0201 and the lower cavity opening 0403 by lifting up the lifting handle 0502, so that longer chopsticks 1300, etc., can enter the hollow space, and then the upper shell 0100 is covered for disinfection.
The above description is only a preferred embodiment of the present invention, and should not be taken as limiting the invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (8)

1. A portable UVCLED disinfection box comprises an upper shell (0100) and a lower shell (0200), wherein the upper shell (0100) and the lower shell (0200) are respectively provided with a hollow inner cavity, an upper cavity shell (0300) with a concave middle part is arranged in the hollow inner cavity of the upper shell (0100), a lower cavity shell (0400) with a concave middle part is arranged in the hollow inner cavity of the lower shell (0200), and the upper cavity shell (0300) and the lower cavity shell (0400) can be mutually closed to form a closed hollow space; the upper shell (0100) and the lower shell (0200) are rotatably connected with each other through a rotating shaft structure; the lamp is characterized in that a UVCLED lamp panel (0700) is arranged above an upper cavity shell (0300) in the upper shell (0100), UVCLED lamp beads (0703) are arranged below the UVCLED lamp panel (0700), and notches (0303) corresponding to the UVCLED lamp beads (0703) are formed in the upper cavity shell (0300).
2. The portable UVCLED disinfection cartridge of claim 1, wherein said upper housing (0100) and upper housing (0300) are separable or integral, and said lower housing (0200) and lower housing (0400) are separable or integral; the upper shell (0100) and the lower shell (0200) are provided with outer peripheral surfaces with mutually matched sizes, the upper cavity shell (0300) and the lower cavity shell (0400) are provided with outer peripheral surfaces capable of being mutually closed, and a hollow space is formed by enclosing middle recessed parts of the upper cavity shell (0300) and the lower cavity shell (0400); be equipped with epicoele epitaxial surface (0301) on the lower terminal surface of epicoele casing (0300), the periphery of epicoele epitaxial surface (0301) and the lower terminal surface size phase-match of last casing (0100), be equipped with lower chamber epitaxial surface (0401) on the up end of lower chamber casing (0400), the periphery of lower chamber epitaxial surface (0401) and the up end size phase-match of lower casing (0200), still be equipped with respectively on epicoele epitaxial surface (0301) and lower chamber epitaxial surface (0401) and adorn pad (0302) down.
3. A portable UVCLED disinfection box according to claim 2, wherein said lower shell (0200) is provided with a lower shell opening (0201) in one side wall and a lower cavity shell (0400) is provided with a lower cavity opening (0403) corresponding to said lower shell opening (0201); a sliding switch (0500) capable of opening or closing the lower shell opening (0201) and the lower cavity opening (0403) is vertically and slidably arranged between the lower shell (0200) and the lower cavity shell (0400), the sliding switch (0500) comprises a sliding block (0501), a lifting handle (0502) is vertically arranged on the sliding block (0501), the lifting handle (0502) sequentially penetrates through the lower cavity shell (0400), the lower decoration pad (0402), the upper decoration pad (0302) and the upper cavity shell (0300) and extends into the upper shell (0100), a slot capable of being matched with the upper part of the lifting handle (0502) is arranged in the upper shell (0100), and the lifting handle (0502) serves as the rotating shaft structure to enable the upper shell (0100) and the lower shell (0200) to be rotatably connected; the lifting handle (0502) is provided with a plurality of ring grooves (0505), and the ring grooves (0505) are provided with annular gaskets or annular snap springs; a first vertical wall group (0202) used for limiting the sliding block (0501) is arranged between the lower shell (0200) and the lower cavity shell (0400), and the sliding block (0501) can slide up and down along the first vertical wall group (0202); a spring (0504) is compressed between the slider (0501) and the lower cavity extension surface (0401) of the lower cavity shell (0400).
4. Portable UVCLED disinfection box according to claim 1, characterized in that between the lower shell (0200) and the lower cavity shell (0400) at least one locking structure is provided, between the upper shell (0100) and the upper shell (0300) there is a locking structure corresponding in position and cooperating with the locking structure between the lower shell (0200) and the lower cavity shell (0400), the locking structure being a magnet block (0600), a catch or a catch.
5. The portable UVCLED sterilization case of claim 1, the upper cavity shell (0300) divides the inner cavity of the upper shell (0100) into an upper cavity and a lower cavity, the lower cavity and the lower cavity shell (0400) can be mutually closed to form a closed hollow space, the notch (0303) is arranged on the wall body which is sunken in the middle of the upper cavity shell (0300), the inner point of the notch (0303) is sealed and encapsulated with a glass sheet (0304), an UVCLED lamp panel (0700) is erected above the upper cavity shell (0300) through a plurality of ribs (0305), the UVCLED lamp panel (0700) is limited by a plurality of short screw posts (0306) arranged on the upper part of the upper cavity shell (0300), positioning holes (0701) matched with the short screw posts (0306) are arranged on the UVCLED lamp panel (0700), the UVCLED lamp beads (0703) are located just above the glass sheet (0304) in the notches (0303), and circuits between the UVCLED lamp beads (0703) are integrated on the UVCLED lamp panel (0700); circuit board (0800) and battery (0900) are arranged above the UVCLED lamp panel, the circuit board (0800) is fixed or limited through a plurality of long screw posts (0307) arranged on the upper part of the upper cavity shell (0300), and holes or grooves for the long screw posts (0307) to pass through are formed in the UVCLED lamp panel (0700).
6. The portable UVCLED sterilization case of claim 5, wherein said upper case (0100) is mounted with a touch screen (1000) and a glass cover plate (1100) is mounted over said touch screen (1000); the side wall of the upper shell (0100) is provided with a switch (1200) and a charging hole (0103) respectively; the circuit board (0800) is provided with a control circuit, a charging circuit and a power supply circuit, the charging circuit and the power supply circuit are connected with a battery (0900) through wires, a switch (1200) is connected with an origin button of the power supply circuit in an opening and closing mode, a socket for charging on the charging circuit is arranged on a charging hole (0103), and the control circuit is in signal connection with the touch screen (1000) and the UVCLED lamp panel (0700) respectively.
7. The portable UVCLED disinfection box of claim 6, wherein said UVCLED lamp panel (0700) is further integrated with a photoreceptor (0702), said photoreceptor (0702) is inserted into a lower cavity partitioned by an upper cavity shell (0300) through a through hole opened on said upper cavity shell (0300), said photoreceptor (0702) is in signal connection with a control circuit of said circuit board (0800).
8. A portable UVCLED disinfection box according to claim 1, wherein the inner surfaces of the upper chamber shell (0300) and the lower chamber shell (0400) closing the closed hollow space are provided with a plating or coating.
CN201922301447.3U 2019-12-19 2019-12-19 Portable UVCLED disinfection box Expired - Fee Related CN211584392U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922301447.3U CN211584392U (en) 2019-12-19 2019-12-19 Portable UVCLED disinfection box

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922301447.3U CN211584392U (en) 2019-12-19 2019-12-19 Portable UVCLED disinfection box

Publications (1)

Publication Number Publication Date
CN211584392U true CN211584392U (en) 2020-09-29

Family

ID=72593808

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922301447.3U Expired - Fee Related CN211584392U (en) 2019-12-19 2019-12-19 Portable UVCLED disinfection box

Country Status (1)

Country Link
CN (1) CN211584392U (en)

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Granted publication date: 20200929

CF01 Termination of patent right due to non-payment of annual fee