Storage structure and refrigerator
By designing movable sample compartments, humidity-controlled membranes, and odor-eliminating modules, the problem of tea deterioration under high temperature, humidity, and odor conditions has been solved, enabling efficient and independent storage and management of tea, improving tea quality and refrigerator space utilization.
Patent Information
- Application Number
- CN202423094866.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-16
AI Technical Summary
Existing tea storage devices are prone to spoilage in high-temperature, humid, and odorous environments, and they also take up a lot of refrigerator space, failing to meet the specialized storage needs of high-value teas.
A storage structure was designed, including storage components, sample boxes, and a freezing chamber. It employs movable sample compartments, a humidity-controlled membrane, an odor-neutralizing module, an odor sensor, and a drive component to achieve independent freezing and odor-proof storage of tea.
It effectively prevents tea from spoiling during storage, saves refrigerator space, ensures the quality and aroma of tea, and provides convenient tea management functions.
Smart Images

Figure CN223610423U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to tea storage technical field, concretely relates to a storage structure and refrigerator. BACKGROUND
[0002] The development of the refrigeration and refrigeration box is more and more close to the use requirement of special user, for example, the refrigeration and refrigeration box for satisfying the storage of litchi, the refrigeration and refrigeration box for satisfying the demand of milk tea shop slush, the refrigeration and refrigeration box for satisfying the preservation of cosmetics.
[0003] With the development of technology and the improvement of living standards, tea drinking becomes a habit of people, and tea is one of the necessary drinks for every family. The storage of tea needs to solve the following problems: avoiding high temperature; under the condition of high temperature, tea is easy to brown, and the quality, aroma and taste are reduced; different tea has different requirements for temperature; avoiding humidity; under the condition of humidity, tea is easy to absorb moisture in the air and cause mildew, so tea must be stored in dry conditions; avoiding odor; tea has strong adsorption, and is easy to adsorb odor when placed with other articles, which affects the aroma of tea itself.
[0004] The existing tea is generally placed in bulk in a self-packaging iron can during storage, and then the iron can is placed in a light-proof cool place or directly placed in a refrigeration and refrigeration box, which can prolong the shelf life of tea to a certain extent, but for some private high-value tea, a refrigeration and refrigeration box specially used for storing tea is needed to completely avoid the above situation and solve the pain point problem of users storing tea. Moreover, the iron can itself occupies a large volume, which seriously wastes the space of the refrigerator. At present, there is no area in the refrigeration and refrigeration box industry to meet the storage of tea, so how to effectively save tea is a new research direction of the refrigerator industry.
[0005] Therefore, the prior art needs to be further developed. UTILITY MODEL CONTENT
[0006] The utility model aims at overcoming the above technical defects, and provides a storage structure and refrigerator to solve the technical problem that tea is easy to deteriorate during storage in the related art.
[0007] To achieve the above technical purpose, the utility model adopts the following technical scheme: a storage structure is provided, which comprises:
[0008] The storage assembly has a storage grid for storing materials;
[0009] The sample box has a shell and at least two sample grids for placing samples; the at least two sample grids are movably arranged to expose or shield the samples in the sample grids;
[0010] A freezing box body is used to accommodate the storage assembly to freeze the materials and the samples.
[0011] Further, the storage assembly comprises:
[0012] A kit is arranged in the freezing box body, and the kit has an accommodating cavity therein;
[0013] A drawer is detachably arranged in the accommodating cavity, and the storage compartments are arranged in the drawer; and the sample box is detachably arranged in the drawer.
[0014] Further, an upper top plate is arranged at the upper portion of the kit, and a humidity control film assembly is arranged on the upper top plate.
[0015] Further, the kit comprises a mounting port communicated with the accommodating cavity and a top plate arranged opposite to the mounting port, and a deodorization module is arranged on the top plate.
[0016] Further, a sealing strip is arranged at the mounting port, and the sealing strip is arranged around the mounting port.
[0017] Further, a first odor sensor is arranged on the side wall of the accommodating cavity.
[0018] Further, the sample box comprises a driving assembly connected with the sample compartments to drive the sample compartments to move.
[0019] Further, the driving assembly comprises:
[0020] A driving motor;
[0021] A driving gear connected with an output shaft of the driving motor; the driving gear is rotatably arranged;
[0022] A storage box gear engaged with the driving gear; the storage box gear is connected with the sample compartments.
[0023] Further, the storage box gear is at least two, and at least two storage box gears are arranged around the driving gear; and at least two storage box gears are connected with at least two sample compartments in one-to-one correspondence.
[0024] Further, the shell comprises:
[0025] A base, and the storage box gear is rotatably connected with the base in opposition;
[0026] A cover body covering the base to enclose the accommodating cavity; and the driving motor is arranged on the cover body.
[0027] Further, the cover is provided with:
[0028] Cold storage agent;
[0029] Refrigeration fan, for sending air to the sample compartment;
[0030] Temperature sensor.
[0031] Further, the cover is provided with a controller for controlling the driving motor.
[0032] Further,
[0033] The sample compartment is provided with a second odor sensor; and / or,
[0034] The sample compartment is rotatably arranged, and has a folded state and an unfolded state, when the sample compartment is in the folded state, two adjacent sample compartments are attached to each other; when the sample compartment is in the unfolded state, two adjacent sample compartments are away from each other.
[0035] Further,
[0036] The storage compartment is a plurality of, a plurality of storage compartments are arranged at intervals; and / or,
[0037] The bottom of the storage compartment is provided with a humidity sensor.
[0038] A refrigerator comprising the storage structure, the refrigerator comprising:
[0039] The box door is rotatably connected with the freezer body to open or close the freezer body.
[0040] Beneficial effects:
[0041] The storage structure of the utility model discloses, comprising: storage assembly, the storage assembly has the storage compartment for storing material, sample box, the sample box has the shell and at least two sample compartments for placing sample, at least two sample compartments are movably arranged to make the shell expose or shield the sample in the sample compartment, freezer body is used to accommodate the storage assembly to freeze the material and the sample, utilize sample compartment, whether the tea in the sample compartment meets the requirement can be checked under the premise of not opening the storage compartment, thereby controlling the freezer body to carry out the freezing treatment to the tea, the technical problem that the tea is easy to deteriorate in the process of storage in the related art is solved. BRIEF DESCRIPTION OF DRAWINGS
[0042] Figure 1 It is the first perspective structure schematic diagram of the refrigerator that the utility model embodiment adopts;
[0043] Figure 2is a second perspective structure schematic view of the refrigerator adopted by the embodiment of the utility model;
[0044] Figure 3 is a third perspective structure schematic view of the refrigerator adopted by the embodiment of the utility model;
[0045] Figure 4 is a structure schematic view of the storage assembly adopted by the embodiment of the utility model;
[0046] Figure 5 is a structure schematic view of the storage assembly's box adopted by the embodiment of the utility model;
[0047] Figure 6 is a structure schematic view of the drawer of the storage assembly adopted by the embodiment of the utility model;
[0048] Figure 7 is a top view of the drawer of the storage assembly adopted by the embodiment of the utility model;
[0049] Figure 8 is a structure schematic view of the drawer of the storage assembly adopted by the embodiment of the utility model;
[0050] Figure 9 is a structure schematic view of the sample box in the folding state adopted by the embodiment of the utility model;
[0051] Figure 10 is a structure schematic view of the sample box in the unfolding state adopted by the embodiment of the utility model;
[0052] Figure 11 is a structure schematic view of the sample box's disassembly adopted by the embodiment of the utility model;
[0053] Figure 12 is a structure schematic view of the sample box's cover adopted by the embodiment of the utility model;
[0054] Figure 13 is a structure schematic view of the sample box's base adopted by the embodiment of the utility model;
[0055] Figure 14 is a top view of the sample box adopted by the embodiment of the utility model;
[0056] Figure 15 is a structure schematic view of the sample box's inside adopted by the embodiment of the utility model.
[0057] Among them, the above-mentioned drawing includes the following drawing marks:
[0058] 10, storage assembly; 11, case; 12, humidity control film assembly; 13, odor removal module; 14, first odor sensor; 15, sealing strip; 16, drawer; 161, storage compartment; 162, humidity sensor; 163, thermal insulation partition;
[0059] 20, freezer body;
[0060] 30, door;
[0061] 40, sample box; 41, cover; 411, controller; 43, sample compartment; 44, second odor sensor; 45, storage box gear; 46, drive motor; 48, drive gear;
[0062] 51, refrigeration fan; 52, base; 54, temperature sensor. DETAILED DESCRIPTION
[0063] In order to make the person skilled in the art better understand the scheme of the present application, the technical scheme in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by the person skilled in the art without creative labor should belong to the scope of protection of the present application.
[0064] Referring to Figures 1 to 15 According to the storage structure provided in the embodiments of the present application, the storage assembly 10 has a storage compartment 161 for storing materials; the sample box 40 has a shell and at least two sample compartments 43 for placing samples; the at least two sample compartments 43 are movably arranged to expose or shield the samples in the sample compartments 43; and the freezer body 20 is used to accommodate the storage assembly 10 to freeze the materials and the samples.
[0065] With the above arrangement, the sample compartments 43 can be used to check whether the tea leaves in the sample compartments 43 meet the requirements without opening the storage compartment 161, so as to control the freezing treatment of the tea leaves by the freezer body 20, thereby solving the technical problem that the tea leaves are prone to deterioration during storage in the related art.
[0066] Referring to Figures 4 to 8 In the storage structure of the present embodiment, the storage assembly 10 includes: a case 11 arranged in the freezer body 20, the case 11 having an accommodating cavity; a drawer 16 detachably arranged in the accommodating cavity, the storage compartment 161 being arranged in the drawer 16; and the sample box 40 being detachably arranged in the drawer 16.
[0067] With the above arrangement, the tea leaves can be conveniently accessed.
[0068] In the storage structure of the embodiment, referring to Figures 4 to 8 , the upper portion of the box 11 is provided with an upper top plate, and the upper top plate is provided with a humidity control film assembly 12. In this way, the humidity in the box 11 can be removed through the humidity control film assembly 12.
[0069] Referring to Figures 4 to 8 , in the storage structure of the embodiment, the box 11 includes a mounting port in communication with the containing cavity and a top plate arranged opposite to the mounting port, and the top plate is provided with a deodorization module 13.
[0070] With the above arrangement, the deodorization module 13 can directly contact with the air flow entering and exiting from the back of the refrigerator, so as to remove the odor in the air flow.
[0071] In the storage structure of the embodiment, referring to Figures 4 to 8 , a sealing strip 15 is arranged at the mounting port, and the sealing strip 15 is arranged around the mounting port. In this way, the humidity outside the storage structure can be effectively blocked from entering, so as to ensure the quality of the tea leaves.
[0072] In the storage structure of the embodiment, referring to Figures 4 to 8 , a first odor sensor 14 is arranged on the side wall of the containing cavity. In this way, the quality of the air inside the storage structure can be effectively detected, so as to facilitate control.
[0073] Specifically, in some embodiments, the first odor sensor 14 is a plurality of first odor sensors 14 arranged at intervals to effectively improve the detection efficiency.
[0074] Specifically, the odor sensor, also known as a gas sensor or gas-sensitive element, is a device that can detect the presence and concentration of a specific gas. Their working principles are diverse, but most of them are based on physical or chemical changes to achieve detection of gas. According to the characteristic odor components and spoilage odor components of the food stored in the refrigerator, a gas sensor capable of detecting both inorganic and organic gases should be selected. There are many methods and means for detecting gas, mainly including electrochemical method, gas chromatography, heat conduction method, infrared absorption method, contact combustion method, semiconductor gas sensor detection method, etc. Among them, semiconductors are mainly used in the food industry and hospital fields, as well as home environment and comfort adjustment systems, etc. Therefore, the odor sensor in the case is a semiconductor sensor.
[0075] In the storage structure of the embodiment, referring to Figures 9 to 15 , the sample box 40 includes a driving assembly connected with the sample compartment 43 to drive the sample compartment 43 to move.
[0076] With the above arrangement, the opening and closing of the sample compartment 43 is conveniently controlled.
[0077] Referring to Figures 9 to 15 In the storage structure of the embodiment, the drive assembly comprises a drive motor 46, a drive gear 48 connected to an output shaft of the drive motor 46, the drive gear 48 being rotatably arranged, and a storage box gear 45 engaged with the drive gear 48, the storage box gear 45 being connected to the sample compartment 43.
[0078] With the above arrangement, the storage box gear 45 conveniently drives the sample compartment 43 to expand or close by driving the drive gear 48 to rotate.
[0079] Specifically, in some embodiments, the drive gear 48 is in a sector structure.
[0080] Referring to Figures 9 to 15 In the storage structure of the embodiment, the storage box gear 45 is at least two, the at least two storage box gears 45 being arranged around the drive gear 48, and the at least two storage box gears 45 being connected to the at least two sample compartments 43 in one-to-one correspondence.
[0081] With the above arrangement, the storage box gear 45 conveniently drives multiple sample compartments 43 to expand or close by driving the drive gear 48 to rotate, thereby increasing the storage capacity of the sample compartment 43 and making the structure more compact.
[0082] In the storage structure of the embodiment, referring to Figures 9 to 15 The housing comprises a base 52, the storage box gear 45 being rotatably connected to the base 52 in opposition, a cover 41 covering the base 52 to enclose the accommodation cavity, and the drive motor 46 being arranged on the cover 41.
[0083] In this way, the structure is more compact, and the internal space of the sample box 40 is saved.
[0084] Referring to Figures 9 to 15 In the storage structure of the embodiment, the cover 41 is provided with a cold accumulator, a refrigeration fan 51 for supplying air to the sample compartment 43, and a temperature sensor 54.
[0085] With the above arrangement, the tea sample is prevented from being affected by the ambient temperature, absorbing moisture and air odor during the display process, thereby affecting the definition of tea quality and taste.
[0086] In the storage structure of the embodiment, referring to Figures 9 to 15 The cover 41 is provided with a controller 411 for controlling the drive motor 46.
[0087] In this way, the user can conveniently control the action of the sample box 40, thereby facilitating the storage of the sample.
[0088] Referring to Figures 9 to 15 In the storage structure of the embodiment, the sample compartments 43 are provided with first odor sensors 14; and / or, the sample compartments 43 are rotatably arranged, and have a folded state and an unfolded state, when the sample compartments 43 are in the folded state, two adjacent sample compartments 43 are in close contact with each other; when the sample compartments 43 are in the unfolded state, two adjacent sample compartments 43 are away from each other.
[0089] With the above arrangement, when the aroma of tea needs to be compared, the single storage box is opened, and the process is reversed when closed, thereby effectively saving the internal space of the sample box 40.
[0090] Referring to Figures 9 to 15 In the storage structure of the embodiment, the storage compartments 161 are a plurality of storage compartments 161 arranged at intervals; and / or, the bottom of the storage compartment 161 is provided with a humidity sensor 162.
[0091] With the above arrangement, the storage quality of the storage compartment 161 is improved.
[0092] The refrigerator of the embodiment includes the above-mentioned storage structure, and the refrigerator includes: a box door 30 rotatably connected with the freezer cabinet 20 to open or close the freezer cabinet 20.
[0093] The implementation process of the utility model is as follows:
[0094] The utility model provides a storage structure convenient for tea storage, solves the problems of the above-mentioned traditional tea family, storage, and odor deterioration. The utility model will be further described below with reference to the drawings;
[0095] The utility model is divided into two aspects of storage inside the storage structure and outside the storage structure:
[0096] I. Tea is stored in the storage structure;
[0097] As shown in the accompanying Figure 1 The storage structure is provided with a component storage assembly 10, a box 11, a component sealing strip 15, and a drawer 16 to form a sealed space, the area is provided with a humidity sensor 162 for ensuring the humidity of the tea storage area, a first odor sensor 14 is used to monitor the odor in the box 11 and compare it with the original odor S0, and when there is an odor, the odor removal module 13 is started.
[0098] The tea bought by the user is mostly packed in iron cans to prevent the tea from being squeezed and crushed during transportation. In order to improve the grade, the shape, size and modeling of the iron can packaging are different, which wastes a lot of space in the refrigeration box. The storage assembly 10 of the embodiment is separated by the heat preservation partition plate 163 in the middle, and each kind of tea is bagged and separated according to categories. Each compartment is provided with a humidity sensor 162 for real-time monitoring and correction of the temperature in the compartment, so as to maximize the quality of the tea.
[0099] The tea is stored outside the storage structure:
[0100] Only the sample box 40 is in the box 11, and each single storage box is provided with tea samples of different quality grades of the same category. The corresponding storage compartment 161 is provided with a mark indication in the storage assembly 10. The storage compartment 161 is in a closed state in the storage structure, and the cold storage absorbs cold air to reach the set temperature. When the user needs to taste tea, the storage compartment 161 is taken out. When the sensor senses that the temperature in the box is lower than the set temperature, the condensing drive motor is opened, the refrigeration fan is rotated, the cold storage cold air is introduced into each interval storage compartment 161, and the tea is not affected by the environment temperature. When the temperature of the cold storage is too low and is not sufficient for cooling, the controller 411 sends an alarm to prompt the user to return the storage compartment 161 to the storage assembly 10 to recharge, so as to ensure the quality of the tea.
[0101] The sample compartment 43 is provided with different categories of tea and is labeled. The cover 41 and the sample compartment 43 are both transparent materials, so that the user can compare the shape, size and color of the tea without opening the box, determine the tea needed, and compare the aroma of the tea. When the aroma of the tea needs to be compared, the switch button is pressed to start the drive motor 46 to drive the drive gear 48 to rotate, the storage box gear 45 drives the sample storage single box to rotate, the storage single box is opened, and the closing process is reversed.
[0102] A gravity sensor is arranged at the bottom of each sample storage compartment 161, and the initial weight G0 of each kind of tea sample in the storage compartment 161 is set in the controller 411. When the sample is repeatedly demonstrated, the gravity sensor in the small box is detected in real time.
[0103] When the measured weight GS and the set initial weight G0 of the tea in the chamber are compared, and the difference exceeds the set value, the controller 411 sends an alarm, and the merchant needs to replace the tea sample.
[0104] The smell detection system stores the sample smell, such as the sample tea sample Q0, in the controller 411, and repeatedly detects the smell in the box and compares it with the initial tea sample smell, and when there is an odor, the driving motor 46 is automatically started, and the sample box 40 is closed. Avoid the influence of environmental temperature, adsorbed moisture and air smell on the definition of tea quality and the influence on taste during the display process.
[0105] The preferred embodiments of the present application are described above, and the protection scope of the present application is not limited to the above-mentioned embodiments. Any technical solutions falling within the concept of the present application shall fall within the protection scope of the present application. It should be noted that for ordinary skilled persons in the art, some improvements and decorations can be made without departing from the principles of the present application, and these improvements and decorations shall be considered as the protection scope of the present application.
[0106] It should be noted that the terms "first", "second" and the like in the specification and claims of the present application and the above-described drawings are used to distinguish similar objects, and do not necessarily indicate a specific order or a chronological sequence. It should be understood that the data thus used can be interchanged under appropriate circumstances, so that the embodiments of the present application described herein can be implemented in an order other than that illustrated or described herein. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product or device including a series of steps or units does not necessarily have to include only those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to the process, method, product or device.
[0107] Alternatively, the specific examples in the present embodiment can refer to the examples described in the above-described embodiments, and the present embodiment will not be described here.
[0108] The above-mentioned serial numbers of the embodiments of the present application are only for description, and do not represent the advantages or disadvantages of the embodiments.
[0109] In the above-described embodiments of the present application, the description of each embodiment has its own emphasis, and the parts not described in detail in a certain embodiment can be referred to the related description of other embodiments.
[0110] The above-mentioned preferred embodiments of the present application are only preferred embodiments of the present application, and it should be noted that for ordinary skilled persons in the art, some improvements and decorations can be made without departing from the principles of the present application, and these improvements and decorations shall be considered as the protection scope of the present application.
Claims
1. A storage structure, characterized by, The application relates to a storage structure, which comprises: a storage assembly (10) provided with storage cells (161) for storing materials; a sample box (40) provided with a shell and at least two sample cells (43) for placing samples; the at least two sample cells (43) are movably arranged to expose or shield the samples in the sample cells (43); a freezer box (20) for accommodating the storage assembly (10) to freeze the materials and the samples.
2. The memory structure of claim 1, wherein, The storage assembly (10) comprises: a box set (11) arranged in the freezer box (20), the box set (11) is provided with an accommodating cavity; a drawer (16) detachably arranged in the accommodating cavity, the storage cells (161) are arranged in the drawer (16); and the sample box (40) is detachably arranged in the drawer (16).
3. The memory structure of claim 2, wherein, An upper top plate is arranged on the upper portion of the box set (11), and a humidity control film assembly (12) is arranged on the upper top plate.
4. The memory structure of claim 2, wherein, The box set (11) comprises a mounting port communicated with the accommodating cavity and a top plate oppositely arranged with the mounting port, and a deodorization module (13) is arranged on the top plate.
5. The memory structure of claim 4, wherein, A sealing strip (15) is arranged at the mounting port and surrounds the mounting port.
6. The memory structure of claim 2, wherein, A first odor sensor (14) is arranged on the side wall of the accommodating cavity.
7. The memory structure of claim 2, wherein, The sample box (40) comprises a driving assembly connected with the sample cells (43) to drive the sample cells (43) to move.
8. The memory structure of claim 7, wherein, The driving assembly comprises: a driving motor (46); a driving gear (48) connected with the output shaft of the driving motor (46); the driving gear (48) is rotatably arranged; a storage box gear (45) engaged with the driving gear (48), and the storage box gear (45) is connected with the sample cells (43).
9. The memory structure of claim 8, wherein, The storage box gear (45) is at least two, at least two storage box gears (45) are arranged around the driving gear (48); and at least two storage box gears (45) are connected with at least two sample cells (43) in one-to-one correspondence.
10. The memory structure of claim 9, wherein, The shell comprises: a base (52), the storage box gear (45) is rotatably connected with the base (52); a cover (41) arranged on the base (52) to enclose the accommodating cavity; and the driving motor (46) is arranged on the cover (41).
11. The storage structure of claim 10, wherein, The cover (41) is provided with: a cold accumulator; a refrigeration fan (51) for sending air to the sample cells (43); a temperature sensor (54).
12. The storage structure of claim 10, wherein, The cover (41) is provided with a controller (411) for controlling the driving motor (46).
13. The storage structure according to claim 10, wherein a second odor sensor (44) is arranged in the sample cell (43); and / or The sample compartments (43) are rotatably arranged, and have a folded state and an unfolded state; when the sample compartments (43) are in the folded state, two adjacent sample compartments (43) are close to each other; when the sample compartments (43) are in the unfolded state, two adjacent sample compartments (43) are away from each other.
14. The storage structure of claim 1, wherein, The storage compartments (161) are a plurality of storage compartments (161) arranged at intervals; and / or, The bottom of the storage compartment (161) is provided with a humidity sensor (162).
15. A refrigerator comprising the storage structure according to any one of claims 1 to 14, characterized in that, The refrigerator comprises: A box door (30) rotatably connected with the freezer cabinet (20) opposite to open or close the freezer cabinet (20).