CN213667025U - Disinfection cabinet and integrated kitchen - Google Patents

Disinfection cabinet and integrated kitchen Download PDF

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Publication number
CN213667025U
CN213667025U CN202021166664.2U CN202021166664U CN213667025U CN 213667025 U CN213667025 U CN 213667025U CN 202021166664 U CN202021166664 U CN 202021166664U CN 213667025 U CN213667025 U CN 213667025U
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China
Prior art keywords
disinfection
disinfection cabinet
top wall
reflector
disinfection cavity
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CN202021166664.2U
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Chinese (zh)
Inventor
付成冲
邓鹏飞
王秀飞
李承鹏
张康康
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Qingdao Haier Intelligent Cooking Appliances Co Ltd
Haier Smart Home Co Ltd
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Qingdao Haier Intelligent Cooking Appliances Co Ltd
Haier Smart Home Co Ltd
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Priority to CN202021166664.2U priority Critical patent/CN213667025U/en
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Abstract

The utility model discloses a disinfection cabinet and an integrated cooker, wherein the disinfection cabinet comprises a hot air device, and the hot air device comprises an installation bracket, a reflecting cover, a light wave generator, a fan and a motor; the light wave generator is designed to emit light waves to heat the disinfection cavity, so that the disinfection cavity is quickly heated and disinfected; by designing the fan, the heat emitted by the light wave generator can be quickly and uniformly blown to all corners of the disinfection cavity to form hot air, so that the uniformity of a temperature field is realized; the reflector is designed to reflect light waves downwards, so that energy waste is avoided; by designing the mounting bracket, a containing space is formed between the mounting bracket and the top wall of the disinfection cavity, the lower part of the reflecting cover is positioned in the disinfection cavity, and the upper part of the reflecting cover passes through the penetrating opening and is positioned in the containing space, so that the space occupied by the reflecting cover in the disinfection cavity is reduced, and the space of the disinfection cabinet is further reduced; when installing the sterilizer in integrated kitchen, effectively solve the not enough, the difficult problem of installation space because of the too big installation space that leads to in sterilizer space.

Description

Disinfection cabinet and integrated kitchen
Technical Field
The utility model relates to a disinfecting equipment technical field especially relates to a sterilizer to and an integrated kitchen.
Background
The highest disinfection level of the current household tableware disinfection cabinet is 2 stars, the disinfection cabinet takes the poliomyelitis and the colibacillus as the standard, and the tableware disinfection cabinet which is lack of higher disinfection level and capability.
In addition, most of the existing tableware disinfection cabinets are disinfected by ozone, the disinfection time of the ozone disinfection cabinet is long, and ozone leakage or secondary pollution can be caused to harm the health of users. Meanwhile, when the disinfection cabinet is installed in the integrated kitchen range, the installation space is insufficient due to the large space of the disinfection cabinet.
Disclosure of Invention
The utility model provides a disinfection cabinet, which solves the problems of slow temperature rise and disinfection and large occupied space in the prior art.
In order to achieve the technical purpose, the utility model adopts the following technical scheme:
a disinfection cabinet is provided with a disinfection cavity inside; the disinfection cabinet further comprises:
a hot air device, the hot air device comprising:
the mounting bracket is positioned above the top wall of the disinfection cavity and fixed with the top wall, an accommodating space is formed between the mounting bracket and the top wall, and a penetrating opening is formed in the top wall;
the lower part of the reflector is positioned in the disinfection cavity, and the upper part of the reflector penetrates through the penetrating opening and is positioned in the accommodating space;
a light wave generator located inside the reflector;
the fan is positioned on the inner side of the reflecting cover and above the light wave generator;
the motor is located above the top wall and fixed on the mounting support, and an output shaft of the motor sequentially penetrates through the reflecting cover and the penetrating opening to be connected with a rotating shaft of the fan.
Furthermore, a heat insulation layer is formed on the outer side of the reflecting cover.
Still further, a grid is arranged at the lower part of the reflecting cover, and the reflecting cover and the grid jointly enclose a space for accommodating the fan and the light wave generator.
Furthermore, a plurality of clamping jaws are arranged on the outer periphery of the grating, a plurality of clamping grooves are arranged on the outer periphery of the reflector, and the clamping jaws are correspondingly clamped with the clamping grooves; the periphery of reflector has a plurality of buckles along the periphery be formed with a plurality of calorie of holes in the corresponding position on the roof, a plurality of buckles correspond the joint with a plurality of calorie of holes.
Still further, the mounting bracket includes a mounting plate and a plurality of legs spaced around the mounting plate; one end of the supporting leg is fixed with the mounting plate, and the other end of the supporting leg is fixed with the top wall.
Furthermore, a plurality of penetrating openings are formed on the top wall, and correspondingly, a plurality of hot air devices are designed.
Still further, the disinfection cavity comprises an upper disinfection cavity and a lower disinfection cavity which are arranged at intervals up and down; the penetrating opening is formed in the top wall of the upper disinfection cavity, and a first temperature detection device and an ultraviolet ray generation device are arranged in the upper disinfection cavity; the first temperature detection device detects a temperature signal and sends the temperature signal to a controller of the disinfection cabinet; the controller controls the operation of the motor, the light wave generator and/or the ultraviolet ray generating device according to the temperature signal sent by the first temperature detecting device.
Furthermore, a second temperature detection device and a heating device are arranged in the lower disinfection cavity; the second temperature detection device detects a temperature signal and sends the temperature signal to the controller; and the controller controls the operation of the heating device according to the temperature signal sent by the second temperature detection device.
Furthermore, the front end of the upper disinfection cavity is rotatably connected with an upper door body, a first door control switch is arranged on the upper door body, the first door control switch detects the opening and closing state of the upper door body and sends a switch signal to the controller, and the controller controls the starting and stopping of the motor, the light wave generator and/or the ultraviolet generating device according to the received switch signal sent by the first door control switch; the front end of the lower disinfection cavity is rotatably connected with a lower door body, a second door control switch is arranged on the lower door body, the second door control switch detects the opening and closing state of the lower door body and sends a switch signal to the controller, and the controller controls the starting and stopping of the heating device according to the received switch signal sent by the second door control switch.
Based on the design of above-mentioned sterilizer, the utility model also provides an integrated kitchen, including lampblack absorber, cooking utensils and the sterilizer, the sterilizer is located the below of cooking utensils.
Compared with the prior art, the utility model discloses an advantage is with positive effect: the disinfection cabinet and the integrated oven of the utility model are designed with the light wave generator to emit light waves to heat the disinfection cavity, so that the disinfection cavity is rapidly heated and disinfected; the fan is designed, so that heat emitted by the light wave generator can be quickly and uniformly blown to all corners of the disinfection cavity to form hot air, the advantage of no dead angle of space heating diffusion is achieved, and the temperature field is uniform; the reflector is designed to reflect light waves downwards, so that energy waste is avoided; by designing the mounting bracket, a containing space is formed between the mounting bracket and the top wall of the disinfection cavity, the lower part of the reflecting cover is positioned in the disinfection cavity, and the upper part of the reflecting cover passes through the penetrating opening and is positioned in the containing space, so that the space occupied by the reflecting cover in the disinfection cavity is reduced, and the space of the disinfection cabinet is further reduced; when installing the sterilizer in integrated kitchen, effectively solve the not enough, the difficult problem of installation space because of the too big installation space that leads to in sterilizer space. Therefore, the utility model discloses a sterilizer adopts the light wave heating disinfection, has not only realized rapid heating up disinfection function, and occupation space is little, and moreover, the disinfection mode does not have ozone, can not harm the user health, and healthy environmental protection, security are high.
Other features and advantages of the present invention will become more apparent from the following detailed description of the invention when read in conjunction with the accompanying drawings.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive labor.
Fig. 1 is an exploded view of an embodiment of an integrated cooker proposed by the present invention;
FIG. 2 is an exploded view of the hot blast apparatus of FIG. 1;
figure 3 is a schematic view of the sterilizer of figure 1.
Reference numerals:
1. a machine head; 2. a cooker; 3. a range hood; 4. a machine base; 5. a display control device;
6. a disinfection cabinet; 601. a top wall; 602. a penetrating opening;
610. an upper disinfection chamber; 611. an upper door body; 612. pulling up the basket; 613. a first gate control switch; 614. a first temperature detection device; 615. an ultraviolet ray generating device;
620. a lower sterilization chamber; 621. a lower door body; 622. pulling the basket down; 623. a second gate control switch; 624. A temperature control switch; 625. a heating device.
7. A hot air device;
710. mounting a bracket; 711. mounting a plate; 712. a support leg;
720. a motor; 730. a reflector; 731. buckling; 732. a fixing clip; 740. a fan; 750. a light wave generator; 760 a grid; 761. a claw is provided.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be described in further detail with reference to the accompanying drawings and embodiments.
It should be noted that in the description of the present invention, the terms of direction or positional relationship indicated by the terms "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings, which are merely for convenience of description, and do not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
Furthermore, it should be noted that, in the description of the present invention, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood by those skilled in the art according to specific situations.
The embodiment provides a disinfection cabinet 6, a disinfection cavity is arranged inside the disinfection cabinet 6, the disinfection cabinet 6 further comprises a hot air device 7, and the hot air device 7 mainly comprises a mounting bracket 710, a reflecting cover 730, a fan 740, a light wave generator 750, a motor 720 and the like, as shown in fig. 1 to 3.
The mounting bracket 710 is positioned above the top wall 601 of the disinfection cavity, the mounting bracket 710 is fixed with the top wall 601, and an accommodating space is formed between the mounting bracket 710 and the top wall 601; a through-opening 602 is formed in the top wall 601, the through-opening 602 communicates with the sterilization chamber, and the through-opening 602 is located below the accommodating space.
The lower part of the reflecting shade 730 is positioned in the disinfection cavity, and the upper part of the reflecting shade 730 passes through the penetrating port 602 and is positioned in the accommodating space; a reflector 730 is secured to the top wall 601. The reflector 730 has a reflective surface to reflect light downward.
The light wave generator 750 is located inside the reflection cover 730 and fixed on the reflection cover 730. The light wave generator 750 emits light waves to irradiate the disinfection cavity, so that the temperature in the disinfection cavity is increased, and rapid heating and sterilization are realized.
The fan 740 is located inside the reflector 730 and above the light wave generator 750, and the fan 740 has a plurality of fan blades.
The motor 720 is located above the top wall 601, the motor 720 is fixed on the mounting bracket 710 through screws, and an output shaft of the motor 720 passes through the reflecting shade 730 and the penetrating opening 602 downwards in sequence to be connected with a rotating shaft of the fan 740. The motor 720 rotates to drive the fan 740 to rotate, the fan 740 rotates to blow heat emitted by the light wave generator 750 to all corners in the disinfection cavity to form hot air, the advantages of no dead angle and uniform temperature field of space heating and diffusion are achieved, uniform and rapid heating of the inner space of the disinfection cavity is achieved, and rapid heating and disinfection are achieved.
The disinfection cabinet 6 of the embodiment is designed with the light wave generator 750 for emitting light waves to heat the disinfection cavity, so that the disinfection cavity is rapidly heated and disinfected; by designing the fan 740, the heat emitted by the light wave generator 750 can be quickly and uniformly blown to each corner of the disinfection cavity to form hot air, so that the disinfection cavity has the advantages of space heating and diffusion basically without dead angles, and uniform temperature field is realized; by designing the reflecting shade 730 to reflect light waves downwards, energy waste is avoided; by designing the mounting bracket 710, an accommodating space is formed between the mounting bracket and the top wall 601 of the disinfection cavity, the lower part of the reflecting shade 730 is positioned in the disinfection cavity, and the upper part of the reflecting shade 730 passes through the penetrating opening 602 and is positioned in the accommodating space, so that the space occupied by the reflecting shade 730 in the disinfection cavity is reduced, and the space of the disinfection cabinet is further reduced; when installing the sterilizer in integrated kitchen, effectively solve the not enough, the difficult problem of installation space because of the too big installation space that leads to in sterilizer space. Therefore, the sterilizer of this embodiment adopts the light wave heating disinfection, has not only realized rapid heating up disinfection function, and occupation space is little, and moreover, the disinfection mode is ozone-free, can not endanger the user health, and is healthy environmental protection, and the security is high.
In this embodiment, the motor 720 is a shaded-pole motor, which has low noise, small vibration, high efficiency and stable performance.
In this embodiment, a heat insulation layer is formed on the outer side of the reflection cover 730 to prevent heat generated by the light wave generator 750 from diffusing upwards through the reflection cover 730, thereby achieving heat insulation of the space above the top wall 601. When the sterilizing cabinet 6 is installed in the integrated cooker, the heat of the reflecting shade 730 is prevented from being upwardly transferred to the gas cooker, and the safe use of the gas cooker is not affected. Therefore, the reflector 730 can reflect light waves downwards and insulate heat of the upper space, has small influence on the temperature of the upper space, can be safely installed in an integrated stove for use, and has no adverse effect on the normal use of a gas stove above a disinfection cabinet.
A grill 760 is installed at a lower portion of the reflecting cover 730, and the reflecting cover 730 and the grill 760 define a space for accommodating the fan 740 and the light wave generator 750. The grille 760 flow equalizes and guides the hot air blown out by the fan 740, the heat is uniformly dispersed into the disinfection cavity along with the wind, continuous, rapid and uniform heating of all spaces in the disinfection cavity is realized, and the temperature rise of the temperature field of the disinfection cavity is ensured to be uniform.
In order to fix the grating 760 conveniently, the outer periphery of the grating 760 is provided with a plurality of clamping jaws 761 arranged at intervals, correspondingly, the outer periphery of the reflector 730 is provided with a plurality of clamping grooves arranged at intervals, the clamping jaws 761 are correspondingly clamped with the clamping grooves, the detachable connection between the grating 760 and the reflector 730 is realized, the connection is reliable and stable, and the disassembly and the assembly are convenient.
In order to facilitate fixing the reflecting shade 730, a plurality of buckles 731 are arranged on the periphery of the reflecting shade 730, a plurality of clamping holes are formed in the corresponding positions on the top wall 601, the plurality of buckles 731 and the plurality of clamping holes are correspondingly clamped, the detachable connection of the reflecting shade 730 and the top wall 601 is realized, the connection is stable and reliable, and the disassembly and assembly are convenient. In this embodiment, the optical wave generator 750 is a ring-shaped optical wave tube, and is coaxial with the fan 740. A plurality of fixing clips 732 are further provided inside the reflector 730 to hold the light wave generator 750. The light wave tube is adopted for emitting light and heating, has the advantages of rapid heating and high efficiency, can realize rapid temperature rise of the disinfection cavity, and has short disinfection time.
In this embodiment, the mounting bracket 710 includes a mounting plate 711 and a plurality of legs 712, the plurality of legs 712 being spaced around the mounting plate 711; one end of each leg 712 is fixed to the mounting plate 711 and the other end of each leg 712 is fixed to the top wall 601; the legs 712 support the mounting plate 711 to form a receiving space with the top wall 601. Through the design the mounting bracket 710 can provide accommodation space for the upper part of the reflector 730 and can fix the motor 720, and the structure is simple, convenient to realize and low in cost. The mounting plate 711 is provided with a through hole for penetrating through the output shaft of the motor 720; the motor 720 is positioned above the mounting plate 711 and is fixed on the mounting plate 711 through a screw; the output shaft of the motor 720 sequentially passes through the mounting plate 711, the reflecting cover 730 and the through hole 602 downwards to be connected with the rotating shaft of the fan 740.
In a preferred embodiment, a plurality of said penetrating openings 602 are formed on the top wall 601, and correspondingly, a plurality of said hot air devices 7 are designed, so as to realize rapid temperature rise disinfection of the disinfection cabinet.
In this embodiment, the sterilization chamber includes an upper sterilization chamber 610 and a lower sterilization chamber 620, and the upper sterilization chamber 610 and the lower sterilization chamber 620 are arranged up and down, completely separated, and can respectively and independently operate to respectively realize sterilization and drying functions; or the lower sterilizing chamber 620 is only used as a cupboard and is not provided with a drying function and auxiliary electric devices.
Referring to fig. 3, the top wall 604 of the upper sterilization chamber 610 is formed with the through-hole 602, and the first temperature sensing device 614 and the ultraviolet ray generating device 615 are disposed in the upper sterilization chamber 610. The first temperature detection means 614 detects a temperature signal inside the upper sterilization chamber 610 and sends the detected temperature signal to the controller of the sterilization cabinet 6; the controller controls the operation of the motor 720, the light wave generator 750 and/or the ultraviolet ray generation device 615 according to the received temperature signal transmitted from the first temperature detection device 614. The ultraviolet ray generator 615 can generate ultraviolet rays with a specific frequency to cooperate with hot air for a certain time to kill bacteria and viruses. When the first temperature detecting device 614 detects that the temperature in the upper sterilization chamber 610 is lower than the target temperature, the controller controls the motor 720, the light wave generator 750 and the ultraviolet ray generating device 615 to operate, so that the temperature in the upper sterilization chamber 610 is maintained at the target temperature, and rapid and effective sterilization is realized. The disinfection cabinet of the embodiment can realize low-temperature disinfection, ultraviolet pasteurization, medical grade disinfection and the like by controlling the motor 720, the light wave generator 750 and the ultraviolet generating device 615. The first temperature sensing device 614 may be a temperature sensor or any other form of temperature sensing device and is not limited to being mounted in any feasible location.
A second temperature detection device and a heating device 625 are arranged in the lower disinfection chamber 620; the second temperature detection device detects a temperature signal in the lower sterilization chamber 620 and sends the detected temperature signal to the controller; the controller controls the operation of the heating device 625 according to the received temperature signal transmitted by the second temperature detecting device. The heating device 625 is used for heating the air in the lower sterilization cavity 620, and drying bowls and dishes in the lower sterilization cavity 620. When the second temperature detecting device detects that the temperature in the lower sterilization chamber 620 is lower than the target temperature, the controller controls the heating device 625 to operate, so that the temperature in the lower sterilization chamber 620 is kept at the target temperature, and the drying operation is guaranteed to be effective. A temperature control switch 624 is further arranged in the lower disinfection chamber 620, and the temperature control switch 624 is used for detecting and controlling the heating temperature of the air in the lower disinfection chamber 620 to be kept at the target temperature, so that the drying effect is ensured. The second temperature detection means may be a temperature sensor or any other form of temperature detection device and is not limited to being mounted at any feasible location.
As shown in fig. 1, an upper door body 611 is rotatably connected to the front end of the upper sterilization chamber 610, an upper pull basket 612 is connected to the inner side of the upper door body 611, and the upper pull basket 612 can be pulled and pulled to receive bowls and dishes; the upper door body 611 is provided with a first door control switch 613, the first door control switch 613 detects the opening and closing state of the upper door body 611 and sends a switch signal to the controller of the disinfection cabinet 6, and the controller controls the start and stop of the motor 720, the light wave generator 750 and/or the ultraviolet ray generation device 615 according to the received switch signal sent by the first door control switch 613. When the first door control switch 613 detects that the upper door body 611 is opened, a signal is sent to the controller, and the controller controls the motor 720, the light wave generator 750 and the ultraviolet generating device 615 to be closed, so that the ultraviolet radiation is prevented from hurting the health of a user or influencing the disinfection effect.
The front end of the lower disinfection cavity 620 is rotatably connected with a lower door body 621, the inner side of the lower door body 621 is connected with a lower pull basket 622, and the lower pull basket 622 can be pulled and pulled to store bowls and dishes; the lower door body 621 is provided with a second door control switch 623, the second door control switch 623 detects the opening and closing state of the lower door body 621 and sends a switch signal to the controller of the disinfection cabinet 6, and the controller controls the start and stop of the heating device 625 according to the received switch signal sent by the second door control switch 623. When the second door control switch 623 detects that the lower door body 621 is opened, a signal is sent to the controller, and the controller controls the heating device 625 to be closed, so that a user is prevented from being injured.
The disinfection cabinet 6 also comprises an audible and visual alarm, and the controller controls the operation of the audible and visual alarm. When the first door control switch 613 detects that the upper door body 611 is opened, the controller controls the audible and visual alarm to give an audible and visual alarm; when the second door control switch 623 detects that the lower door body 621 is opened, the controller controls the audible and visual alarm to give an audible and visual alarm to remind a user.
In order to facilitate the operation of the user, a function mode selection key is arranged on the control panel of the disinfection cabinet 6, the user operates the function mode selection key, the function mode selection key sends a selection signal to the controller, and the controller controls the operation of the motor 720, the light wave generator 750, the ultraviolet ray generation device 615 and the like according to the received selection signal. The user selects different disinfection modes and different drying modes through the function mode selection key, different disinfection modes correspond different target temperatures and different disinfection durations, different drying modes also correspond different target temperatures and different drying durations, and various disinfection drying requirements are effectively met. Of course, the disinfection cabinet can also be provided with only one disinfection mode and only one drying mode.
For example, in the low-temperature mother-infant disinfection mode, the ultraviolet pasteurization mode, the medical grade disinfection mode and the like, the corresponding target temperatures are respectively T1, T2, T3 and the like, and the corresponding disinfection durations are respectively T1, T2, T3 and the like; the target temperatures T1, T2, T3 and the like are lower temperatures, and the influence on the gas safety of the cooker during normal operation can be avoided.
When the user selects the sterilization mode through the control panel, the controller controls the motor 720 and the light wave generator 750 to start operating, the light wave generator 750 emits light waves to heat air, the fan 740 rotates, the air heated by the light wave generator 750 is uniformly diffused to all angles of the upper sterilization chamber 610 after being equalized by the grid 760, hot air is formed, continuous, rapid and uniform heating of all spaces in the upper sterilization chamber 610 is realized, and the temperature in the upper sterilization chamber 610 reaches the target temperature corresponding to the selected sterilization mode and is maintained at the target temperature. Meanwhile, the controller controls the ultraviolet generating device 615 to be started, and the ultraviolet generating device and the hot air are used for sterilizing together until the sterilization duration corresponding to the selected sterilization mode is finished.
When the user selects the drying mode through the control panel, the controller controls the heating device 625 to heat the air in the lower sterilization chamber 620, so that the temperature in the lower sterilization chamber 620 reaches and is maintained at the target temperature corresponding to the selected drying mode until the drying time corresponding to the selected drying mode is finished.
After the user selects the sterilization mode/drying mode and selects the open key through the control panel, if the upper door body 611/the lower door body 621 is not completely closed or pulled out in work, the controller automatically suspends the sterilization/drying and gives an alarm until the user completely closes the upper door body 611/the lower door body 621, and the sterilization/drying is continued.
The disinfection cabinet of this embodiment is a non-ozone tableware disinfection cabinet, can reach medical grade disinfection level, can realize rapid heating up and disinfect and can the modularization install in integrated kitchen, and with the independent work of other functional module of integrated kitchen especially kitchen part mutual noninterference.
Based on the design of above-mentioned sterilizer, this embodiment has still provided an integrated kitchen, including aircraft nose 1, frame 4, show controlling means 5, lampblack absorber 3, cooking utensils 2 sterilizer 6 etc, sterilizer 6 is located the below of cooking utensils 2, refers to and is shown in fig. 1. Through the disinfection cabinet designed in the integrated cooker, the use safety of the integrated cooker is improved.
The stove 2 is fixedly arranged in the middle of the top end of the base 4; the disinfection cabinet 6 is arranged on the front side of the machine base 4 and below the stove 2; the machine head 1 is positioned at the rear side of the top of the machine base 4 and used for gathering cigarettes; the range hood 3 is arranged at the rear part of the machine base 4 and is connected with the smoke collecting cavity of the machine head 1 to realize the pumping and exhausting of the kitchen oil smoke; the display control device 5 is positioned in front of the panel of the cooker 2, and can realize the man-machine interaction between a user and the integrated cooker. The control panel of the disinfection cabinet 6 can be integrated on the display and control device 5.
The specific structure of the disinfection cabinet is described in detail in the detailed description of the above embodiments and the detailed description of the drawings in the specification, and is not repeated herein. The integrated cooker provided with the disinfection cabinet can achieve the same technical effect.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention.

Claims (10)

1. A disinfection cabinet is provided with a disinfection cavity inside; it is characterized by also comprising:
a hot air device, the hot air device comprising:
the mounting bracket is positioned above the top wall of the disinfection cavity and fixed with the top wall, an accommodating space is formed between the mounting bracket and the top wall, and a penetrating opening is formed in the top wall;
the lower part of the reflector is positioned in the disinfection cavity, and the upper part of the reflector penetrates through the penetrating opening and is positioned in the accommodating space;
a light wave generator located inside the reflector;
the fan is positioned on the inner side of the reflecting cover and above the light wave generator;
the motor is located above the top wall and fixed on the mounting support, and an output shaft of the motor sequentially penetrates through the reflecting cover and the penetrating opening to be connected with a rotating shaft of the fan.
2. A disinfection cabinet as claimed in claim 1, characterized in that a heat insulating layer is formed on the outside of said reflector.
3. A disinfection cabinet as claimed in claim 1, wherein a grille is mounted to the lower portion of said reflector, said reflector and grille together enclosing a space for accommodating said fan and said light generator.
4. The disinfection cabinet of claim 3, wherein a plurality of claws are arranged on the outer periphery of the grating, a plurality of clamping grooves are arranged on the outer periphery of the reflector, and the claws are correspondingly clamped with the clamping grooves;
the periphery of reflector has a plurality of buckles along the periphery be formed with a plurality of calorie of holes in the corresponding position on the roof, a plurality of buckles correspond the joint with a plurality of calorie of holes.
5. A disinfection cabinet as claimed in claim 1, wherein said mounting bracket includes a mounting plate and a plurality of legs spaced around said mounting plate; one end of the supporting leg is fixed with the mounting plate, and the other end of the supporting leg is fixed with the top wall.
6. A disinfection cabinet as claimed in claim 1, wherein said top wall is formed with a plurality of said apertures, and correspondingly, said hot air device is designed with a plurality of said apertures.
7. The disinfection cabinet of claim 1 wherein said disinfection chambers include upper and lower disinfection chambers spaced above and below;
the penetrating opening is formed in the top wall of the upper disinfection cavity, and a first temperature detection device and an ultraviolet ray generation device are arranged in the upper disinfection cavity; the first temperature detection device detects a temperature signal and sends the temperature signal to a controller of the disinfection cabinet; the controller controls the operation of the motor, the light wave generator and/or the ultraviolet ray generating device according to the temperature signal sent by the first temperature detecting device.
8. A disinfection cabinet as claimed in claim 7, wherein second temperature sensing means and heating means are provided in said lower chamber; the second temperature detection device detects a temperature signal and sends the temperature signal to the controller; and the controller controls the operation of the heating device according to the temperature signal sent by the second temperature detection device.
9. A disinfection cabinet as claimed in claim 8,
the front end of the upper disinfection cavity is rotatably connected with an upper door body, a first door control switch is arranged on the upper door body, the first door control switch detects the opening and closing state of the upper door body and sends a switch signal to the controller, and the controller controls the starting and stopping of the motor, the light wave generator and/or the ultraviolet generating device according to the received switch signal sent by the first door control switch;
the front end of the lower disinfection cavity is rotatably connected with a lower door body, a second door control switch is arranged on the lower door body, the second door control switch detects the opening and closing state of the lower door body and sends a switch signal to the controller, and the controller controls the starting and stopping of the heating device according to the received switch signal sent by the second door control switch.
10. An integrated kitchen, its characterized in that: comprising a range hood, a cooking appliance and a disinfection cabinet according to any one of claims 1-9, said disinfection cabinet being located below said cooking appliance.
CN202021166664.2U 2020-06-22 2020-06-22 Disinfection cabinet and integrated kitchen Active CN213667025U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113750262A (en) * 2021-08-18 2021-12-07 华帝股份有限公司 Integrated kitchen and kitchen body assembly thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113750262A (en) * 2021-08-18 2021-12-07 华帝股份有限公司 Integrated kitchen and kitchen body assembly thereof

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