Food material storage device and cooking equipment
By designing a food storage device, sterilizing light eliminates bacteria and insect eggs in the storage cavity, solving the problem of raw rice prone to mildew and insect worms, achieving long-term storage of food and improving equipment availability.
Patent Information
- Application Number
- CN202422020471.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-08-20
AI Technical Summary
In the existing cooking equipment that integrates cooking pots and rice boxes, raw rice is stored in the rice box for a long time and is prone to mold and insect worms, resulting in limited availability of equipment, and it is necessary to inhibit bacterial growth and egg hatching in the rice box.
A food storage device is designed, including storage parts, storage parts and disinfection lamps. The material storage member has a material storage cavity and a light-transmitting part. The storage member has a storage cavity. The disinfection lamp is installed on the storage member to emit sterilization light. When the storage part is moved into the storage chamber and stored in place, the sterilization light is shot into the storage chamber through the light-transmitting part to kill bacteria and insect eggs.
It effectively inhibits bacterial growth and insect egg hatching in the ingredients, realizes long-term storage of ingredients, and improves the usability of the equipment.
Smart Images

Figure CN222968432U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of kitchen utensils, in particular to a food storage device and a cooking appliance. Background Art
[0002] There is a type of cooking appliance that integrates a cooking pot and a rice box. This cooking appliance can store raw rice in the rice box, and when the user steams rice, the raw rice can be sucked from the rice box into the cooking pot. Raw rice is prone to mildew and insect infestation when stored in the rice box for a long time, which greatly limits the usability of this type of cooking appliance. Therefore, inhibiting the growth of bacteria and hatching of insect eggs in the rice box has become an urgent problem to be solved. Summary of the Utility Model
[0003] In view of this, the utility model provides a food storage device and a cooking appliance that can store food for a long time and inhibit the growth of bacteria and hatching of insect eggs in the food.
[0004] The food storage device of the utility model includes a material storage member, a storage member, and a disinfection lamp. The material storage member has a material storage cavity and a light-transmitting part. The light-transmitting part allows light to pass through and enter the material storage cavity. The storage member has a storage cavity for the material storage member to enter and exit. The disinfection lamp is installed on the storage member and includes a light-emitting part for emitting sterilizing light. When the material storage member is moved into the storage cavity and is in place, the light-emitting part is disposed opposite to the light-transmitting part.
[0005] Compared with the prior art, the food storage device of the utility model has the following beneficial effects:
[0006] 1) Food can be stored in the material storage cavity of the material storage member for a long time. When the material storage member is moved into the storage cavity and is in place, the disinfection lamp emits sterilizing light through the light-emitting part, and the sterilizing light can enter the material storage cavity through the light-transmitting part, thereby killing bacteria and insect eggs in the material storage cavity, destroying the genetic material of bacteria and insect cells, and effectively inhibiting the growth of bacteria and hatching of insect eggs;
[0007] 2) The disinfection lamp is installed on the storage member. When the user takes out the material storage member from the storage cavity to manually take food from the material storage cavity or supplement food to the material storage cavity, the disinfection lamp can be prevented from being damaged, and the user will not be irradiated by the sterilizing light emitted by the disinfection lamp and endangered.
[0008] In some embodiments, at least part of the light-emitting part is disposed inside the storage cavity.
[0009] In some embodiments, when the material storage member is moved into the storage cavity and is in place, the material storage member closes the opening of the storage cavity.
[0010] In some embodiments, the storage member is provided with an access channel extending along a preset access direction. The access channel penetrates the storage member to form the storage cavity, and the light-emitting part is disposed on the inner side wall of the access channel.
[0011] In some embodiments, the light-transmitting part is provided with a light-transmitting hole communicating with the material storage cavity. When the material storage member is moved into the storage cavity and is in place, the light-transmitting hole faces the light-emitting part.
[0012] In some embodiments, when the material storage member is moved into the storage cavity and is in place, the light-emitting part occupies and fits the light-transmitting hole.
[0013] In some embodiments, a moving fit is formed between the material storage member and the storage member along a preset access direction. The light-transmitting hole is a strip-shaped hole extending along the preset access direction, and the light-emitting part is a strip-shaped structure extending along the preset access direction. As the material storage member and the storage member move relative to each other, a moving fit is formed between the light-emitting part and the light-transmitting hole along the preset access direction.
[0014] In some embodiments, the material storage member includes a first end and a second end arranged opposite to each other along the preset access direction, where
[0015] when the material storage member is moved into the storage cavity and is in place, the first end closes the opening of the storage cavity; and / or, the light-transmitting hole penetrates through the second end and forms an access opening, and the access opening allows the light-emitting part to enter the light-transmitting hole.
[0016] In some embodiments, the disinfection lamp further includes a bracket and a light-emitting power supply module fixedly connected to the storage member, and two ends of the light-emitting part are respectively fixedly connected to the bracket and the light-emitting power supply module.
[0017] In some embodiments, the food storage device further includes a refrigerating member installed on the storage member, and the refrigerating member is used to generate cold and supply cold to the storage cavity.
[0018] In some embodiments, when the material storage member is moved into the storage cavity and is in place, the storage cavity includes a refrigerating cavity, and the refrigerating end of the refrigerating member and part of the light-emitting part are arranged inside the refrigerating cavity.
[0019] The cooking device of the present utility model includes a suction and guiding device, a cooking device, and a food storage device. When the material storage member is moved into the storage cavity and is in place, the suction and guiding device communicates the inner cavity of the cooking device with the material storage cavity, and is used to suck the food from the material storage cavity into the cooking device. Description of the Drawings
[0020] Figure 1 is an exploded view of a food storage device according to an embodiment of the present utility model;
[0021] Figure 2 is a cross-sectional view of a food storage device according to an embodiment of the present utility model.
[0022] Reference numerals: 10, storage member; 11, storage box; 111, storage cavity; 12, box cover; 121, light-transmitting portion; 122, light-transmitting hole; 123, insertion port; 13, sealing ring; 14, material extraction port; 101, first end; 102, second end; 20, storage member; 211, top shell; 212, bottom shell; 213, first side shell; 214, second side shell; 215, rear shell; 22, storage cavity; 220, access channel; 221, refrigeration cavity; 30, disinfection lamp; 31, light-emitting portion; 32, light-emitting power supply module; 33, bracket; 40, refrigeration member; 41, refrigeration fan; 42, semiconductor refrigeration device; 43, heat sink; 44, gasket; 45, temperature sensor. Detailed implementation manners
[0023] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0024] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which the present utility model belongs. The terms used in the description of the present utility model herein are only for the purpose of describing specific embodiments, and are not intended to limit the present utility model. The term "or / and" used herein includes any and all combinations of one or more of the related listed items.
[0025] The present utility model provides a food storage device and a cooking device including the food storage device and a cooking device. The food storage device can be used to store granular foods such as raw rice, raw wheat, and beans, and can also be used to store various powdery seasonings. The present utility model does not limit the types of foods that the food storage device can store. The cooking device of the present utility model integrates the functions of food storage and food cooking. Specifically, it further includes a suction and guiding device. When a user cooks food, the suction and guiding device can automatically suck and transport the food in the food storage device to the cooking device.
[0026] Refer to Figures 1 to 2, the food storage device of the present utility model includes a storage member 10 and a receiving member 20. The storage member 10 has a storage cavity 111 which serves as a place for storing food. The receiving member 20 has a receiving cavity 22 which serves as a place for receiving the storage member 10. The storage member 10 can be moved into and out of the receiving cavity 22. When the user intends to manually take out food from the storage cavity 111 or prepare to supplement new food into the storage cavity 111, the storage member 10 can be moved out of the receiving cavity 22 for related operations. When the food storage device is not in use, the storage member 10 can be moved into the receiving cavity 22 and can be received at a preset position within the receiving cavity 22.
[0027] Referring to Figures 1 to 2 , in some embodiments, the storage member 10 includes a storage box 11, a box cover 12 and a sealing ring 13. The storage box 11 is a box-shaped structure with a storage cavity 111. The storage cavity 111 penetrates through the top of the storage box 11 to form a cavity opening. The cavity opening allows the user to manually take out food from the storage cavity 111 and allows the user to supplement new food into the storage cavity 111. The box cover 12 is detachably covered on the top of the storage box 11 and can close the cavity opening, thereby preventing impurities such as dust, debris and water mist from entering the storage cavity 111. The sealing ring 13 is arranged on the box cover 12 and extends along the edge of the cavity opening for realizing the sealed connection between the box cover 12 and the cavity opening.
[0028] Further, referring to Figures 1 to 2 , the storage member 10 further includes a material extraction port 14 provided on the storage box 11. The suction and guidance device includes a guidance component and a suction component. The guidance component has a conveying channel. One end of the guidance component is connected to the material extraction port 14 to communicate the conveying channel with the storage cavity 111. The other end of the guidance component extends towards the inner cavity of the cooking device. When the user cooks food, the suction component is used to generate a suction force to suck the food in the storage cavity 111 into the conveying channel through the material extraction port 14, and then suck the food along the conveying channel of the guidance component into the inner cavity of the cooking device. The cooking device can be a cooking pot, a cooking casserole, etc.
[0029] Referring to Figures 1 to 2, in some embodiments, the storage member 20 is a storage box having an access channel 220. The storage box has a hollow prismatic structure and includes a top shell 211, a bottom shell 212, a first side shell 213, a second side shell 214, and a rear shell 215. The access channel 220 is a channel extending along a preset access direction. The top shell 211 and the bottom shell 212 are arranged opposite to each other at intervals. The first side shell 213 and the second side shell 214 are arranged opposite to each other at intervals. Along the circumferential direction of the access channel 220, the top shell 211, the first side shell 213, the bottom shell 212, and the second side shell 214 are sequentially connected and enclose to form the access channel 220. The rear shell 215 is located at the rear end of the access channel 220 and is connected to the top shell 211, the first side shell 213, the bottom shell 212, and the second side shell 214. The access channel 220 forms a storage cavity 22, and the front end of the access channel 220 forms an opening of the storage cavity 22. A moving fit is formed between the storage member 10 and the storage member 20 along the preset access direction. The storage member 10 is moved into and out of the storage cavity 22 through the opening at the front end of the access channel 220.
[0030] Further, referring to Figures 1 to 2 , the storage member 10 includes a first end 101 and a second end 102 arranged opposite to each other along the preset access direction. When the storage member 10 is moved into the storage cavity 22, the first end 101 is located at the end of the storage member 10 relatively far from the rear shell 215, and the second end 102 is located at the end of the storage member 10 relatively close to the rear shell 215. The rear shell 215 is arranged opposite to the second end 102. When the storage member 10 is moved into the storage cavity 22 and is received at a preset position in the storage cavity 22, the opening of the storage cavity 22 formed by the front end of the access channel 220 is closed by the first end 101, and a gap is provided between the second end 102 and the rear shell 215. At this time, the storage cavity 22 includes a refrigeration cavity 221 formed between the second end 102 and the rear shell 215. A cold-air flow can be introduced into the refrigeration cavity 221, so that the temperature of the storage cavity 111 can be reduced to inhibit the growth of bacteria and the hatching of insect eggs.
[0031] Further, referring to Figures 1 to 2, the food storage device further includes a refrigerating component 40 installed on the storage component 20. The refrigerating component 40 is used to generate cold and supply this cold to the storage cavity 22. Specifically, the refrigerating component 40 includes a refrigerating fan 41, a thermoelectric cooler 42, a temperature sensor 45, a heat sink 43, and a gasket 44 installed on the rear case 215. The refrigerating end of the thermoelectric cooler 42 passes through the rear case 215 and extends into the refrigerating cavity 221. The heating end of the thermoelectric cooler 42 is located outside the storage box and is thermally connected to the heat sink 43. The gasket 44 is hermetically connected between the thermoelectric cooler 42 and the rear case 215, and is used to block the heat exchange between the outside of the storage box and the inside of the refrigerating cavity 221. The temperature sensor 45 is used to sense the temperature inside the refrigerating cavity 221, and the refrigerating fan 41 is used to generate air flow. When the temperature sensor 45 senses that the temperature inside the refrigerating cavity 221 is too high, the refrigerating fan 41 and the thermoelectric cooler 42 are started to operate. The air flow generated by the refrigerating fan 41 is cooled after passing through the refrigerating end of the thermoelectric cooler 42, and thus carries cold to reduce the temperature of the storage component 10.
[0032] The food storage device of the present utility model further includes a disinfection lamp 30 installed on the storage component 20. Refer to Figures 1 to 2 , the disinfection lamp 30 includes a light emitting part 31 for emitting germicidal light. The storage component 10 further includes a light transmissive part 121 that allows light to pass through and enter the storage cavity 111. When the storage component 10 is moved into the storage cavity 22 and is received at a preset position inside the storage cavity 22, the light emitting part 31 and the light transmissive part 121 are arranged opposite to each other. At this time, the germicidal light can pass through the light transmissive part 121 and enter the food inside the storage cavity 111, thereby killing harmful organisms such as bacteria and insect eggs in the food. The disinfection lamp 30 can be an ultraviolet lamp. The ultraviolet light emitted by the ultraviolet lamp as the germicidal light can destroy the genetic material structure inside the bacteria and insect eggs in a short time. Of course, the germicidal light is not limited to ultraviolet light, and the disinfection lamp 30 can also be of other types, such as generating high-frequency blue-violet light. Therefore, the food storage device of the present utility model can effectively inhibit the growth of bacteria and the hatching of insect eggs in the food, and can store food for a long time.
[0033] In some embodiments, at least a part of the light emitting part 31 is arranged inside the storage cavity 22. Refer to Figures 1 to 2, the light-emitting part 31 is located inside the access passage 220 and is installed on the side of the top shell 211 facing the bottom shell 212. The light-transmitting part 121 is located on the side of the storage member 10 relatively close to the top shell 211, and the side of the top shell 211 facing the bottom shell 212 is arranged opposite to the light-transmitting part 121. If the storage member 10 is removed from the storage cavity 22, then when the disinfection lamp 30 is activated, the sterilizing light emitted by the light-emitting part 31 irradiates the side of the bottom shell 212 facing the top shell 211. With such a setting, when the user takes out the storage member 10 from the storage cavity 22, the light-emitting part 31 of the disinfection lamp 30 is not easily damaged or contaminated. Even if the disinfection lamp 30 is not turned off due to negligence, the user does not have to worry about being accidentally irradiated by the sterilizing light emitted by the light-emitting part 31 and endangering their health. When the storage member 10 is moved into the storage cavity 22 and stored at a preset position inside the storage cavity 22, the first end 101 of the storage member 10 closes the opening of the storage cavity 22. Therefore, it is possible to prevent the sterilizing light from leaking out through the opening of the storage cavity 22 and not threaten the health of the user.
[0034] Optionally, the top shell 211 and the bottom shell 212 are respectively located at the top and bottom of the storage box. The light-transmitting part 121 is located at the top of the storage member 10. The preset access direction is the horizontal direction. The storage member 10 slides horizontally relative to the storage member 20 to move into and out of the storage cavity 22. With such a setting, the operations for removing the storage member 10 from the storage cavity 22 and pushing the storage member 10 into the storage cavity 22 are more convenient. Of course, in other embodiments, the light-emitting part 31 can also be arranged on other inner sidewalls of the access passage 220, for example, on the side of the first side shell 213 close to the second side shell 214.
[0035] Furthermore, referring to Figure 2 , when the storage member 10 is moved into the storage cavity 22 and stored at a preset position inside the storage cavity 22, a part of the light-emitting part 31 is located inside the refrigeration cavity 221. With such a setting, the sterilizing light emitted by the light-emitting part 31 can also sterilize the inside of the refrigeration cavity 221 to ensure the cleanliness of the cold air flow.
[0036] Optionally, referring to Figures 1 to 2, in some embodiments, the lid 12 includes a cover plate and a flange. The cover plate is the light-transmitting portion 121 of the storage member 10. The opening of the material chamber faces the cover plate. The flange extends along the outer peripheral edge of the cover plate and protrudes from one side of the cover plate. The sealing ring 13 is connected to the flange to seal the connection between the flange and the opening of the material chamber. The light-transmitting portion 121 is provided with a light-transmitting hole 122 communicating with the storage chamber 111. When the storage member 10 is moved into the storage cavity 22 and is received at a preset position in the storage cavity 22, the light-transmitting hole 122 faces the light-emitting portion 31. Therefore, the sterilizing light emitted by the light-emitting portion 31 can directly pass through the light-transmitting hole 122 and irradiate the food materials in the storage chamber 111. With such a setting, when the sterilizing light irradiates the food materials, there is almost no energy loss. It can be understood that in other embodiments, the light-transmitting portion 121 can also be an element having light-transmitting properties and allowing the sterilizing light to refract through, such as a glass plate. When the light-transmitting portion 121 is an element having light-transmitting properties and allowing the sterilizing light to refract through, the light-transmitting portion 121 may not be provided with the light-transmitting hole 122.
[0037] Refer to again Figures 1 to 2 , the disinfection lamp 30 further includes a bracket 33 fixedly connected to the storage member 20 and a light-emitting power supply module 32. The light-emitting power supply module 32 is fixedly connected to the light-emitting portion 31. The bracket 33 fixedly connects the light-emitting portion 31 to maintain the attitude stability of the light-emitting portion 31. The light-emitting power supply module 32 is responsible for providing electrical energy for the light-emitting portion 31 to emit sterilizing light. Optionally, the light-emitting power supply module 32 is fixedly inserted into the rear shell 215. The light-emitting portion 31 is fixedly connected to one end of the light-emitting power supply module 32 extending into the storage cavity 22, and the light-emitting portion 31 protrudes relative to the rear shell 215.
[0038] Furthermore, the shape of the light-emitting portion 31 matches the opening shape of the light-transmitting hole 122. When the storage member 10 is moved into the storage cavity 22 and is received at a preset position in the storage cavity 22, the light-emitting portion 31 exactly occupies the light-transmitting hole 122 fully and fits the hole wall of the light-transmitting hole 122. With such a setting, after the storage member 10 is moved into the storage cavity 22 and is received in place, the light-emitting portion 31 can also block external dust and impurities from entering the storage chamber 111 through the light-transmitting hole 122, thereby maintaining the cleanliness of the storage chamber 111 and the internal food materials. Refer to Figures 1 to 2, the light-transmitting hole 122 is a strip-shaped hole extending along a preset access direction, the light-emitting part 31 is a strip-shaped structure extending along the preset access direction, the second end 102 of the storage member 10 includes one end of the box cover 12 facing the rear case 215, and the light-transmitting hole 122 penetrates through the end of the box cover 12 facing the rear case 215 to form an access opening 123. When the second end 102 of the storage member 10 is aligned with the opening of the receiving cavity 22 and slightly extends into the receiving cavity 22 by a certain depth, one end of the light-emitting part 31 away from the light-emitting power supply module 32 is aligned with the access opening 123, and the light-transmitting hole 122 and the light-emitting part 31 are located on the same straight line extending along the preset access direction. A moving fit is formed between the light-emitting part 31 and the light-transmitting hole 122 along the preset access direction. As the storage member 10 gradually moves closer to the rear case 215, the length of the light-emitting part 31 extending into the light-transmitting hole 122 along the preset access direction increases. As the storage member 10 gradually moves away from the rear case 215, the length of the light-emitting part 31 extending into the light-transmitting hole 122 along the preset access direction shortens.
[0039] With such a setting, it is possible to make the length of the light-emitting part 31 approximately equal to the length of the light-transmitting hole 122 in the preset access direction, avoid the size of the light-transmitting hole 122 being significantly larger than the size of the light-emitting part 31, ensure that when the storage member 10 is moved into the receiving cavity 22 and placed in place, the light-emitting part 31 can fully occupy the light-transmitting hole 122, better reduce the gap between the light-emitting part 31 and the hole wall of the light-transmitting hole 122, so as to increase the difficulty of external dust and impurities invading the storage cavity 111; in addition, when the storage member 10 is moved into and out of the receiving member 20 along the preset access direction, the light-emitting part 31 will not be interfered by the storage member 10, so the light-emitting part 31 can be better protected and prevented from being accidentally damaged; in addition, after the storage member 10 is moved into the receiving cavity 22 and placed in place, the light-emitting part 31 occupies the light-transmitting hole 122, realizing the reasonable utilization of the opening space of the light-transmitting hole 122, effectively saving the internal space volume of the receiving cavity 22, making the food storage device more compact, and maximizing the matching between the shape of the storage member 10 and the internal space volume of the receiving cavity 22.
[0040] One end of the bracket 33 is fixedly connected to the end of the light-emitting part 31 relatively far from the light-emitting power supply module 32, and the other end of the bracket 33 is fixedly connected to the top case 211. With such a setting, the connection stability between the light-emitting part 31 and the receiving member 20 is enhanced, and the light-emitting part 31 is prevented from becoming a cantilever structure protruding from the rear case 215.
[0041] The technical features of the above-described embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above-described embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope described in this specification.
[0042] Those of ordinary skill in the art should recognize that the above embodiments are only used to illustrate the present utility model, rather than to limit the present utility model. As long as appropriate changes and variations made to the above embodiments fall within the scope of the spirit of the present utility model, they are within the scope of protection required by the present utility model.
Claims
1. A food storage device, characterized in that: The invention comprises a material storage part (10), a storage part (20) and a sterilizing lamp (30), wherein the material storage part (10) has a material storage cavity (111) and a light-transmitting part (121), wherein the light-transmitting part (121) allows light to pass through and enter the material storage cavity (111), and the storage part (20) has a storage cavity (22) for the material storage part (10) to enter and exit, and the sterilizing lamp (30) is installed on the storage part (20) and comprises a light-emitting part (31) for emitting sterilizing light, and when the material storage part (10) is moved into the storage cavity (22) and stored in place, the light-emitting part (31) and the light-transmitting part (121) are arranged relative to each other.
2. The food storage device according to claim 1, characterized in that: At least a portion of the light emitting portion (31) is disposed inside the storage cavity (22).
3. The food storage device according to claim 2, characterized in that: When the material storage piece (10) moves into the storage cavity (22) and is stored in place, the material storage piece (10) closes the opening of the storage cavity (22).
4. The food storage device according to claim 2, characterized in that: The storage member (20) is provided with an inlet and outlet passage (220) extending along a preset inlet and outlet direction, the inlet and outlet passage (220) penetrates the storage member (20) to form the storage cavity (22), and the light emitting portion (31) is arranged on the inner side wall of the inlet and outlet passage (220).
5. The food storage device according to claim 1, characterized in that: The light-transmitting portion (121) is provided with a light-transmitting hole (122) communicating with the material storage cavity (111); when the material storage member (10) is moved into the storage cavity (22) and stored in place, the light-transmitting hole (122) faces the light-emitting portion (31).
6. The food storage device according to claim 5, characterized in that: When the material storage piece (10) is moved into the storage cavity (22) and stored in place, the light-emitting portion (31) occupies and fits into the light-transmitting hole (122).
7. The food storage device according to claim 6, characterized in that: The material storage member (10) and the storage member (20) form a movable fit along a preset entry and exit direction. The light-transmitting hole (122) is a strip-shaped hole extending along the preset inlet and outlet direction, and the light-emitting portion (31) is a strip-shaped structure extending along the preset inlet and outlet direction. As the material storage component (10) and the storage component (20) move relative to each other, the light-emitting portion (31) and the light-transmitting hole (122) form a moving fit along the preset entry and exit direction.
8. The food storage device according to claim 7, characterized in that: The material storage member (10) comprises a first end (101) and a second end (102) which are arranged opposite to each other along the preset inlet and outlet direction, wherein When the material storage member (10) moves into the storage cavity (22) and is stored in place, the first end (101) closes the opening of the storage cavity (22); and / or, The light-transmitting hole (122) passes through the second end (102) to form a penetration opening (123), and the penetration opening (123) allows the light-emitting portion (31) to enter the light-transmitting hole (122).
9. The food storage device according to claim 7, characterized in that: The disinfecting lamp (30) further comprises a bracket (33) and a light-emitting power supply module (32) fixedly connected to the storage member (20), and two ends of the light-emitting portion (31) are respectively fixedly connected to the bracket (33) and the light-emitting power supply module (32).
10. The food storage device according to any one of claims 1 to 9, characterized in that: The food storage device further comprises a refrigeration component (40) installed on the storage component (20), wherein the refrigeration component (40) is used to generate cold energy and supply the cold energy to the storage cavity (22).
11. The food storage device according to claim 10, characterized in that: When the material storage element (10) is moved into the storage chamber (22) and stored in place, the storage chamber (22) comprises a refrigeration chamber (221), and the refrigeration end of the refrigeration element (40) and part of the light-emitting portion (31) are arranged inside the refrigeration chamber (221).
12. A cooking device, characterized in that: It comprises a suction and drainage device, a cooking device and a food storage device as claimed in any one of claims 1 to 11, wherein when the food storage member (10) is moved into the storage cavity (22) and stored in place, the suction and drainage device connects the inner cavity of the cooking device with the food storage cavity (111) and is used to suck food from the food storage cavity (111) into the cooking device.