Food storage device for food detection
By employing a layered partition and insulation layer design in the food testing storage device, combined with heating rods and temperature detectors, the problem of existing devices being unable to form temperature zones is solved. This enables the preservation of samples at suitable temperatures and the prevention of cross-contamination, thereby improving the accuracy of test results.
Patent Information
- Application Number
- CN202423231090.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-12-26
AI Technical Summary
Existing food testing storage devices cannot create temperature zones according to the needs of different food samples, resulting in unsuitable sample preservation.
The design employs a layered partition and insulation layer, combined with a heating rod and temperature detector, to form temperature zones. Heat diffusion is reduced through sealing rings and insulation layers, ensuring that samples are preserved at a suitable temperature.
This allows for temperature zoning based on the needs of different food samples, avoiding cross-contamination, ensuring samples are stored at suitable temperatures, and improving the accuracy of test results.
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Figure CN223658706U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to food detection technical field, concretely is a food detection food storage device. BACKGROUND
[0002] The indexes of food detection mainly include general component analysis, trace element analysis, pesticide residue analysis, veterinary drug residue analysis, mycotoxin analysis, food additive analysis and other harmful substance analysis of food. According to the characteristics of the tested project, the inspection of each index corresponds to the corresponding inspection method
[0003] The food storage device for food detection is the key equipment to ensure that food samples maintain their original state, prevent pollution and deterioration during the detection process. These devices not only need to provide appropriate storage conditions, but also facilitate sample management and tracking, ensuring the accuracy and reliability of the detection results.
[0004] The existing patent document with the authorized announcement number CN222041205U, a food detection food storage device, includes a shell, a storage groove is opened in the inside of the shell, a rotating sealing cover is rotatably connected at the top of the storage groove, a clamping structure is arranged at the bottom of the rotating sealing cover, and a test tube is arranged in the clamping structure. This technical solution allows a single shell to store only a single test tube containing food samples, preventing the test tubes from colliding and damaging each other when multiple test tubes are directly placed in the storage device. However, due to the diversity of food, this technical solution cannot form temperature zones according to the needs of different food samples. UTILITY MODEL CONTENTS
[0005] To solve the problem that this technical solution cannot form temperature zones according to the needs of different food samples due to the diversity of food, the first heat insulation layer is used to reduce the diffusion of heat through the layered partition plate into the sample drawer, thereby enabling the device to form temperature zones according to the needs of different food samples and to store the samples at appropriate temperatures.
[0006] The utility model discloses a food storage device for food detection, which comprises a storage assembly, a heat preservation assembly, a partition assembly and a sample assembly.
[0007] The utility model discloses the beneficial effect is: through the stratum baffle for the support of support seat bottom, simultaneously the stratum baffle is used to the partition of storage box internal space, through the first heat insulating layer is used for reducing the diffusion of heat through the stratum baffle to sample drawer inside, and then the device can form temperature partition according to the demand of different food sample, and the sample can be preserved at the suitable temperature.
[0008] In order to measure the temperature on the inner side of the upper part of the storage box by the temperature detector, ensure that the food stored therein is within the suitable temperature range:
[0009] As a further improvement of the above technical solution: the lower end of the storage box is connected with a support seat, the partition stand is slidingly connected with the slide rail in a clamping manner, one end of the partition stand is connected with a label slot, one side of the outer wall of the storage box is connected with a temperature detector, and the probe of the temperature detector is located on the inner side of the upper part of the storage box.
[0010] The improved beneficial effects are: the slide rail is used for connecting with the partition stand and installing the partition stand, the partition stand is used for partitioning the space on the upper part of the storage box, for classified placement of food, the temperature detector is used for measuring the temperature on the inner side of the upper part of the storage box, ensuring that the food stored therein is within the suitable temperature range, and the identification card of the label slot records the sample name, sampling date and detection item information.
[0011] In order to reduce the diffusion of heat generated by the heating rod to the outside of the heat preservation box cover by the second heat insulating layer:
[0012] As a further improvement of the above technical solution: the heat preservation box cover is rotatably connected with the storage box through a hinge, the inner side of the lower part of the heat preservation box cover is provided with a sealing ring, and the inner wall of the third groove is connected with a second heat insulating layer.
[0013] The beneficial effect of the improvement is that the sealing ring is used to ensure the sealing of the connection between the heat preservation box cover and the storage box, and the second heat insulation layer is used to reduce the diffusion of the heat generated by the heating rod to the outside of the heat preservation box cover.
[0014] In order to heat the heating rod and heat the upper storage space of the storage box, the existing sample is stored at a suitable temperature:
[0015] As a further improvement of the above technical solution: the heating rod is electrically connected with the operation panel, the two ends of the mounting plate are symmetrically connected with positioning edge blocks, and the positioning edge blocks are connected with the second groove body through bolts.
[0016] The beneficial effect of the improvement is that after the heat preservation box cover is closed, the heating rod is started to work, and then the heating rod works and heats the upper storage space of the storage box, so that the existing sample is stored at a suitable temperature.
[0017] In order to form the groove body for classified storage by separating the inner cavity space of the partition frame through the first partition plate and the second partition plate, and avoid cross contamination:
[0018] As a further improvement of the above technical solution: one end of the partition frame is connected with a handle, one end of the first partition plate is connected with a second partition plate, the second partition plate has a T-shaped structure in plan view, there are two second partition plates which are symmetrically arranged, and one end of the second partition plate away from the first partition plate is connected with the inner wall of the partition frame.
[0019] The beneficial effect of the improvement is that the first partition plate is used to separate the inner cavity space of the partition frame, the second partition plate is used to further separate the inner cavity space of the partition frame, and then the first partition plate and the second partition plate are used to separate the inner cavity space of the partition frame to form the groove body for classified storage, thereby avoiding cross contamination.
[0020] In order to form temperature partition and enable the sample to be stored at a suitable temperature:
[0021] As a further improvement of the above technical solution: the front end of the sample drawer is connected with a handle, the sample assembly is arranged above the partition assembly, the sample drawer is slidably connected with the storage box, the inner wall of the storage box is connected with a layered partition plate, the inner side of the layered partition plate is provided with a first heat insulation layer, and the layered partition plate is located at the lower end of the support seat.
[0022] The beneficial effects of the improvement are that when the sample drawer needs to be used, the handle at the front end of the sample drawer is held and the sample drawer is smoothly pulled out from the storage box, then the sample tube in the sample drawer is taken and the sample tube is placed into the sample drawer, the layered partition plate is used for supporting the bottom of the support, the layered partition plate is used for separating the internal space of the storage box, the first heat insulation layer is used for reducing the heat diffusion through the layered partition plate into the sample drawer, and therefore the device can form temperature zones according to the requirements of different food samples and the samples can be stored at suitable temperatures.
[0023] In order to avoid the wear and tear of the sample tube caused by the placement plate by using the sleeve for close contact with the sample tube:
[0024] As a further improvement of the above technical solution, the placement plate is provided with two, the four sides of the placement plate are connected with the inner wall of the sample drawer, and the sleeve is a hollow rubber cylinder in a cylindrical structure.
[0025] The beneficial effects of the improvement are that after the sample drawer is pulled out from the storage box, the sample tube is slowly inserted into the sample tube groove, the sleeve is used for close contact with the sample tube, and the wear and tear of the sample tube caused by the placement plate is avoided.
[0026] In order to protect the bottom of the sample tube by using the protective layer:
[0027] As a further improvement of the above technical solution, the four corners of the inner wall of the sample drawer are connected with reinforcing columns, the reinforcing columns are rubber columns in a fan-shaped structure, the protective layer is provided with a groove for inserting the bottom of the sample tube, and the protective layer is a soft rubber layer.
[0028] The beneficial effects of the improvement are that the setting of the receiving bottom plate is used for fixing the bottom of the sample tube to avoid shaking, the protective layer is used for protecting the bottom of the sample tube, and the reinforcing column can increase the use strength of the bending part of the sample drawer. BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 It is a front view structural schematic diagram of the utility model.
[0030] Figure 2 It is a sectional view structural schematic diagram of the storage box of the utility model.
[0031] Figure 3 It is a structural schematic diagram of the heat preservation box cover of the utility model.
[0032] Figure 4 It is a structural schematic diagram of the partition frame of the utility model.
[0033] Figure 5 It is a front view sectional structure schematic diagram of the sample drawer of the utility model.
[0034] Figure 6 It is a three-dimensional structure schematic view of the sample drawer of the utility model.
[0035] In the figure: 1, storage assembly; 11, storage box; 12, separate vertical plate; 13, slide rail; 14, label slot; 15, support seat; 16, layered partition; 17, first heat insulation layer; 18, temperature detector; 2, heat preservation assembly; 21, heat preservation box cover; 22, first groove body; 23, second groove body; 24, installation layer plate; 25, third groove body; 26, heating rod; 27, positioning edge block; 28, sealing ring; 29, second heat insulation layer; 3, partition assembly; 31, partition frame; 32, handle; 33, first partition; 34, second partition; 4, sample assembly; 41, sample drawer; 42, storage plate; 43, sleeve; 44, receiving bottom plate; 45, protective layer; 46, reinforcing column; 47, sample tube groove. DETAILED DESCRIPTION
[0036] In order to make the technical personnel of the prior art better understand the technical scheme of the utility model, the utility model is described in detail below in conjunction with the drawings, and the description of this part is only exemplary and explanatory, and should not have any limiting effect on the protection scope of the utility model.
[0037] As Figures 1-6As shown, a food storage device for food detection, comprising a storage assembly 1, a heat preservation assembly 2, a partition assembly 3, a sample assembly 4, the storage assembly 1 comprises a storage box 11, the heat preservation assembly 2 comprises a heat preservation box cover 21, an installation layer plate 24, the partition assembly 3 comprises a partition frame 31, the sample assembly 4 comprises a sample drawer 41, the inner wall of the upper part of the storage box 11 is connected with a slide rail 13, the inner side of the slide rail 13 is provided with a partition stand 12, the inner side of the heat preservation box cover 21 is provided with a first groove 22, the wall bodies at both ends of the first groove 22 are symmetrically provided with a second groove 23, the inner side of the installation layer plate 24 is provided with a third groove 25, the inner wall of the third groove 25 is provided with a heating rod 26, the inner wall of the partition frame 31 is connected with a first partition plate 33, the inner wall of the sample drawer 41 is connected with a storage plate 42, the inner side of the storage plate 42 is provided with a sample tube groove 47, the inner ring of the sample tube groove 47 is connected with a sleeve 43, the lower bottom wall of the sample drawer 41 is connected with a receiving bottom plate 44, the inner side of the upper part of the receiving bottom plate 44 is connected with a protection layer 45, the lower end of the storage box 11 is connected with a support seat 15, the partition stand 12 is slidingly connected with the slide rail 13 in a clamping manner, one end of the partition stand 12 is connected with a label groove 14, one side of the outer wall of the storage box 11 is connected with a temperature detector 18, the probe of the temperature detector 18 is located on the inner side of the upper part of the storage box 11; the slide rail 13 is used for connecting with the partition stand 12 and installing the partition stand 12, the partition stand 12 is used for partitioning the space on the upper part of the storage box 11, for classified placement of food, the temperature detector 18 is used for measuring the temperature on the inner side of the upper part of the storage box 11, ensuring that the food stored therein is within a suitable temperature range, the identification card of the label groove 14 records the sample name, sampling date and detection item information, the heat preservation box cover 21 is rotationally connected with the storage box 11 through a hinge, the inner side of the lower part of the heat preservation box cover 21 is provided with a sealing ring 28, the inner wall of the third groove 25 is connected with a second heat insulation layer 29; the sealing ring 28 is used for ensuring the sealing property of the connection between the heat preservation box cover 21 and the storage box 11, the second heat insulation layer 29 is used for reducing the diffusion of heat generated by the heating rod 26 to the outside of the heat preservation box cover 21, the heating rod 26 is electrically connected with an operation panel, the two ends of the installation layer plate 24 are symmetrically connected with positioning edge blocks 27, the positioning edge blocks 27 are connected with the second grooves 23 through bolts; after the heat preservation box cover 21 is closed, the operation of the heating rod 26 is started, then the heating rod 26 works and heats the storage space on the upper part of the storage box 11, for storing the existing sample at a suitable temperature, one end of the partition frame 31 is connected with a handle 32, one end of the first partition plate 33 is connected with a second partition plate 34, the top view of the second partition plate 34 is a T-shaped structure, the second partition plate 34 has two and is symmetrically arranged, one end of the second partition plate 34 away from the first partition plate 33 is connected with the inner wall of the partition frame 31.The first partition 33 is used for the separation of the cavity space in the partition frame 31, the second partition 34 is used for the further separation of the cavity space in the partition frame 31, and the first partition 33 and the second partition 34 form a classified storage groove in the cavity space in the partition frame 31, avoiding cross contamination. The front end of the sample drawer 41 is connected with a handle 32. The sample assembly 4 is arranged above the partition assembly 3. The sample drawer 41 is in sliding connection with the storage box 11. The inner wall of the storage box 11 is connected with a layered partition 16. The inner side of the layered partition 16 is provided with a first heat insulation layer 17. The layered partition 16 is located at the lower end of the support seat 15. When the sample drawer 41 is needed, hold the handle 32 at the front end of the sample drawer 41 and pull the sample drawer 41 out of the storage box 11 stably, then take the sample tube in the sample drawer 41 and put the sample tube into the sample drawer 41. The layered partition 16 is used for supporting the bottom of the support seat 15, and is used for separating the internal space of the storage box 11. The first heat insulation layer 17 is used for reducing the heat diffusion from the layered partition 16 to the inside of the sample drawer 41, so that the device can form temperature zoning according to the needs of different food samples and store the samples at a suitable temperature. The storage plate 42 is provided with two plates. The four corners of the storage plate 42 are connected with the inner wall of the sample drawer 41. The sleeve 43 is a hollow rubber cylinder with a cylindrical structure. After pulling the sample drawer 41 out of the storage box 11, slowly insert the sample tube into the sample tube groove 47. The sleeve 43 is used for the contact with the sample tube to avoid the abrasion of the sample tube caused by the storage plate 42. The four corners of the inner wall of the sample drawer 41 are connected with reinforcing columns 46. The reinforcing columns 46 are rubber columns with a fan-shaped structure. The protective layer 45 is provided with a groove for the insertion of the bottom of the sample tube. The protective layer 45 is a soft rubber layer. The receiving bottom plate 44 is used for fixing the bottom of the sample tube to avoid shaking. The protective layer 45 is used for protecting the bottom of the sample tube. The reinforcing columns 46 can increase the use strength of the bending part of the sample drawer 41.
[0038] The working principle of the utility model is: when using, the slide rail 13 is used for connecting with the partition vertical plate 12 and installing the partition vertical plate 12, the partition vertical plate 12 is used for partitioning the upper space of the storage box 11, and the food is classified and placed, the temperature detector 18 is used for measuring the temperature of the inside of the upper part of the storage box 11, the food stored in the storage box 11 is ensured to be in the appropriate temperature range, the identification card of the label slot 14 records the sample name, sampling date and detection item information, after the heat preservation box cover 21 is closed, the heating rod 26 is started to work and heat the storage space of the upper part of the storage box 11, so that the sample can be stored at the appropriate temperature, the sealing ring 28 is used to ensure the sealing property of the connection between the heat preservation box cover 21 and the storage box 11, the second heat insulation layer 29 is used to reduce the diffusion of the heat generated by the heating rod 26 to the outside of the heat preservation box cover 21, the first partition plate 33 is used to partition the inner cavity space of the partition frame 31, the second partition plate 34 is used to further partition the inner cavity space of the partition frame 31, and then the first partition plate 33 and the second partition plate 34 make the partition of the inner cavity space of the partition frame 31 form the groove body for classified storage, so as to avoid cross contamination, when the sample drawer 41 needs to be used, the handle 32 at the front end of the sample drawer 41 is held and the sample drawer 41 is smoothly pulled out from the inside of the storage box 11, then the sample tube in the sample drawer 41 is taken and the sample tube is put into the sample drawer 41, the layered partition plate 16 is used to support the bottom of the support seat 15, and the layered partition plate 16 is used to partition the inner space of the storage box 11, the first heat insulation layer 17 is used to reduce the diffusion of the heat to the inside of the sample drawer 41 through the layered partition plate 16, so that the device can form temperature partition according to the needs of different food samples and the sample can be stored at the appropriate temperature, after the sample drawer 41 is pulled out from the inside of the storage box 11, the sample tube is slowly inserted into the sample tube groove 47, the sleeve 43 is used to be in contact with the sample tube, so as to avoid that the sample tube is abraded by the placement plate 42, the receiving bottom plate 44 is used to fix the bottom of the sample tube and avoid shaking, the protection layer 45 is used to protect the bottom of the sample tube, and the reinforcing column 46 can increase the use strength of the bending part of the sample drawer 41.
[0039] It should be noted that in the present document, the terms "comprising", "comprising" or any other variant thereof are intended to cover non-exclusive inclusions, so that a process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such a process, method, article or equipment.
[0040] The principle and implementation mode of the present application are described by using specific examples herein, and the above examples are only used for helping to understand the method and core idea of the present application. The above description is only the preferred implementation mode of the present application, and it should be pointed out that due to the limited expression, there are unlimited specific structures objectively, and for ordinary skilled persons in the technical field, some improvements, decorations or changes can be made without departing from the principle of the present application, and the above technical features can be combined in a proper way; the improvements, decorations, changes or combinations, or the direct application of the concept and technical solution of the present application to other occasions without improvement, should be regarded as the protection scope of the present application.
Claims
1. A food storage device for food detection, comprising a storage assembly (1), a heat preservation assembly (2), a partition assembly (3), and a sample assembly (4), the storage assembly (1) comprises a storage box (11), the heat preservation assembly (2) comprises a heat preservation box cover (21) and a mounting layer plate (24), the partition assembly (3) comprises a partition frame (31), and the sample assembly (4) comprises a sample drawer (41), characterized in that: The inner wall of the upper part of the storage box (11) is connected with a sliding rail (13), the inner side of the sliding rail (13) is provided with a partition stand (12), the inner side of the heat preservation box cover (21) is provided with a first groove body (22), the wall bodies at both ends of the first groove body (22) are symmetrically provided with a second groove body (23), the inner side of the mounting layer plate (24) is provided with a third groove body (25), the inner wall of the third groove body (25) is provided with a heating rod (26), the inner wall of the partition frame (31) is connected with a first partition plate (33), the inner wall of the sample drawer (41) is connected with a storage plate (42), the inner side of the storage plate (42) is provided with a sample tube groove (47), the inner circle of the sample tube groove (47) is connected with a sleeve (43), the lower bottom wall of the sample drawer (41) is connected with a receiving bottom plate (44), and the inner side of the upper part of the receiving bottom plate (44) is connected with a protection layer (45). 2. The food storage device for food inspection according to claim 1, characterized in that: The lower end of the storage box (11) is connected with a support seat (15), the partition stand (12) and the sliding rail (13) are connected in a clamping and sliding mode, one end of the partition stand (12) is connected with a label groove (14), and one side of the outer wall of the storage box (11) is connected with a temperature detector (18). The probe of the temperature detector (18) is located on the inner side of the upper part of the storage box (11).
3. The food storage device for food inspection according to claim 1, characterized in that: The heat preservation box cover (21) is rotatably connected with the storage box (11) through a hinge, the inner side of the lower part of the heat preservation box cover (21) is provided with a sealing ring (28), and the inner wall of the third groove body (25) is connected with a second heat insulation layer (29).
4. The food storage device for food inspection according to claim 1, characterized in that: The heating rod (26) is electrically connected with an operation panel, and the both ends of the mounting layer plate (24) are symmetrically connected with positioning edge blocks (27), and the positioning edge blocks (27) are connected with the second groove body (23) through bolts.
5. The food storage device for food inspection according to claim 1, characterized in that: One end of the partition frame (31) is connected with a handle (32), one end of the first partition plate (33) is connected with a second partition plate (34), the second partition plate (34) has a T-shaped structure in the top view, there are two second partition plates (34) which are symmetrically arranged, and one end of the second partition plate (34) away from the first partition plate (33) is connected with the inner wall of the partition frame (31).
6. The food storage device for food inspection according to claim 1, characterized in that: The front end of the sample drawer (41) is connected with a handle (32), the sample assembly (4) is arranged above the partition assembly (3), the sample drawer (41) is connected with the storage box (11) in a sliding mode, the inner wall of the storage box (11) is connected with a layered partition plate (16), the inner side of the layered partition plate (16) is provided with a first heat insulation layer (17), and the layered partition plate (16) is located at the lower end of the support seat (15).
7. The food storage device for food inspection according to claim 1, characterized in that: There are two storage plates (42), the periphery of the storage plate (42) is connected with the inner wall of the sample drawer (41), and the sleeve (43) is a hollow rubber cylinder in a cylindrical structure.
8. The food storage device for food inspection according to claim 1, characterized in that: The four corners of the inner wall of the sample drawer (41) are connected with reinforcing columns (46), the reinforcing columns (46) are rubber columns in a fan-shaped structure, the protection layer (45) is provided with a groove for inserting the bottom of a sample tube, and the protection layer (45) is a soft rubber layer.
Citation Information
Patent Citations
Food storage device for food detection
CN222041205U