Detection box for food inspection

By introducing a side frame and U-shaped frame structure into the testing chamber, the problem of the low position of the movable plate is solved, enabling convenient collection of food waste and control of reagent reaction temperature, thus improving the efficiency of the testing operation.

CN224171512UActive Publication Date: 2026-04-28昭通市检验检测院
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
昭通市检验检测院
Filing Date
2025-05-28
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

The movable plate of the existing food testing kit is positioned too low, which requires operators to bend over for extended periods and makes the operation cumbersome, thus affecting the testing speed.

Method used

A side-mounted frame structure was designed, including a side groove, a T-shaped groove, a support frame, and a limiting plate, for convenient adjustment of the position of the preparation plate. The test tubes are tilted by a U-shaped frame and an inclined tube ring, and the temperature is controlled by a thermoelectric cooler.

Benefits of technology

It enables convenient collection of food waste and temperature control of the reagent reaction environment, improving operational efficiency and detection speed.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of food detection, and discloses a detection box for food inspection, which comprises a detection box and a box cover hinged to one side of the top end of the detection box, a side frame A and a side frame B are respectively mounted on two sides in the detection box, a sheet making plate is arranged between the side frame A and the side frame B, and a sheet making groove is formed in the sheet making plate. The slicing plate is pulled out from one side of a side placing frame B provided with a side groove, the slicing plate is placed at the top end of the side placing frame B, after a waste component is taken from one side of a limiting plate, a T-shaped strip box is placed in a T-shaped groove, an operator can push chippings generated by slicing into the T-shaped strip box from the top end of the slicing plate, and centralized collection of food waste is completed; an operator can move at the top ends of the side placing frame B and the side placing frame A when pushing the tablet making plate, the operator can conveniently adjust the position of the tablet making plate according to needs, the tablet making plate is located at the upper end of the interior of the detection box, and the bending degree of the operator in the tablet making process is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of food testing technology, specifically a testing box for food inspection. Background Technology

[0002] A testing kit generally refers to a portable device or case used for food quality testing, containing instruments and tools for detecting various components, quality, and hygiene indicators in food. These testing kits typically include basic chemical, biological, or physical testing instruments for detecting pesticide residues, heavy metal content, bacterial contamination, additives, and nutritional components in food. They can quickly complete food safety testing on-site, helping staff determine whether food meets standards and safety requirements.

[0003] For example, a food inspection and testing box with publication number CN218663196U includes the following technical solution: a chassis, a movable plate, a box body, a lid, and a latch. The chassis is bolted to the lower surface of the box body. The movable plate is slidably mounted on the chassis. A square groove is formed on the upper surface of the movable plate, and protrusions are equidistantly arranged at the bottom of the inner wall of the square groove. One side of the lid is rotatably connected to the box body via a hinge, and the other side of the lid is interlocked with the box body via a latch. The fit between these structures effectively expands the placement area of ​​the food inspection and testing box and facilitates the retrieval of test pieces, meeting the needs of personnel.

[0004] The aforementioned patent proposes that by designing a threaded rod, tightening the threaded rod and engaging it with the chassis will cause the threaded rod to press against the movable plate, thereby positioning the movable plate. However, in actual operation, the movable plate used for food inspection is positioned too low, requiring operators to bend over for extended periods to slice the food, which is inconvenient. Furthermore, operators need to manually operate the threaded rod, which is cumbersome and affects the testing speed. Summary of the Invention

[0005] The purpose of this invention is to provide a testing box for food inspection, so as to solve the problem of the low position of the movable plate in the food inspection used in the above-mentioned background art.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a testing box for food inspection, comprising a testing box and a box cover hinged to one side of the top of the testing box, wherein side frames A and B are respectively installed on the two sides inside the testing box, a sheet preparation plate is provided between side frames A and side frames B, a rotating frame is hinged to one side inside side frame A, a reagent box is installed inside side frame A and below the rotating frame, and a partition is inserted inside the reagent box;

[0007] A side groove is formed on the outer surface of the side frame B facing the side frame A. A bottom groove is formed at the bottom of the tablet plate. A T-shaped groove is formed through the top of the tablet plate. A heat dissipation groove is formed through the bottom of the inside of the side frame A and on one side of the medicine box. A support frame is installed inside the side frame B and on the side close to the side groove. A limiting plate is installed at the top of the support frame and on the side away from the side groove. A placement plate is installed at the upper inside of the support frame. A pipe groove is formed through the middle of the placement plate. A waste material component is placed inside the side frame B and on one side of the limiting plate.

[0008] Preferably, the waste component includes a T-shaped box and a top groove formed on one side of the top of the T-shaped box, and a rotating plate is hingedly installed inside the T-shaped box on the side away from the top groove.

[0009] Preferably, the frame structure includes a U-shaped frame and an inner connecting strip installed inside the U-shaped frame. Positioning strips A and B are installed horizontally and vertically between the U-shaped frame and the inner connecting strip. An inclined tube ring is installed at the intersection of positioning strips A and positioning strip B.

[0010] Preferably, an inner support is installed inside the heat dissipation slot, heat dissipation fins are installed inside the heat dissipation slot and between the inner support, and a low-temperature component is installed at the top of the inner support.

[0011] Preferably, the cryogenic component includes a thermal insulation frame and a thermoelectric cooler installed inside the lower end of the thermal insulation frame.

[0012] Preferably, a metal tube is installed at the top of the insulation frame, and a sealing ring is installed at the top of the metal tube and inside the insulation frame.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] 1. The present invention discloses a food inspection test box. The slicing plate is pulled out from the side of the side frame B with the side groove, and the slicing plate is placed at the top of the side frame B. After the waste component is taken out from the side of the limiting plate, the T-shaped strip box is placed into the T-shaped groove. The operator can push the scraps generated by slicing at the top of the slicing plate into the T-shaped strip box to complete the centralized collection of food waste. The operator can push the slicing plate to move at the top of the side frame B and the side frame A, so that the operator can adjust the position of the slicing plate as needed.

[0015] 2. The present invention discloses a food inspection test box, which rotates the U-shaped frame from a horizontal position to a vertical position. The operator takes out the test tube from the inside of the tube groove, puts the food slice into the test tube, adds the corresponding reagents, and puts the test tube into the inside of the inclined tube ring or metal round tube according to the required reaction temperature. Attached Figure Description

[0016] Figure 1This is a schematic diagram of the overall three-dimensional structure of this utility model;

[0017] Figure 2 This is a three-dimensional structural diagram of the internal structure of the testing box of this utility model;

[0018] Figure 3 This is a three-dimensional structural diagram of the waste component of this utility model;

[0019] Figure 4 This is a schematic diagram of the low-temperature component structure of this utility model.

[0020] In the diagram: 1. Testing box; 11. Box cover; 12. Plate making plate; 121. T-slot; 122. Bottom slot; 13. Side frame A; 14. Side frame B; 141. Side slot; 15. Reagent box; 151. Partition; 16. Heat dissipation slot; 161. Inner support; 162. Heat dissipation fins; 163. Support frame; 164. Limiting plate; 165. Placement plate; 166. Pipe slot; 17. Transition frame component; 171. U-shaped frame; 172. Inner connecting strip; 173. Positioning strip A; 174. Positioning strip B; 175. Inclined tube ring; 18. Waste component; 181. T-shaped strip box; 182. Top slot; 183. Transition plate; 19. Low temperature component; 191. Insulation frame; 192. Metal round tube; 193. Sealing ring; 194. Thermoelectric cooler. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] Example 1: Please refer to Figures 1-3 A food inspection test box includes a test box 1 and a box cover 11 hinged to one side of the top of the test box 1. Side frames A13 and B14 are respectively installed on the two sides inside the test box 1. A sheet preparation plate 12 is provided between the side frames A13 and B14. A rotating frame 17 is hinged to one side inside the side frame A13. A reagent box 15 is installed inside the side frame A13 and below the rotating frame 17. A partition 151 is installed inside the reagent box 15. The partition 151 can divide the interior of the reagent box 15 to facilitate the placement of various reagents.

[0023] A side groove 141 is provided on the outer surface of the side frame B14 facing the side frame A13. A bottom groove 122 is provided at the bottom end of the tablet plate 12. A T-shaped groove 121 is provided through the top side of the tablet plate 12. A heat dissipation groove 16 is provided through the bottom of the inside of the side frame A13 and on one side of the medicine box 15. A support frame 163 is installed inside the side frame B14 and on the side near the side groove 141. A limiting plate 164 is installed at the top of the support frame 163 and on the side away from the side groove 141. A placement plate 165 is installed at the upper inside of the support frame 163. A tube groove 166 is provided through the middle of the placement plate 165. A waste component 18 is placed inside the side frame B14 and on one side of the limiting plate 164.

[0024] The waste component 18 includes a T-shaped carton 181 and a top groove 182 formed on one side of the top of the T-shaped carton 181. A rotating plate 183 is hinged to the inside of the T-shaped carton 181 on the side away from the top groove 182. The rotating plate 183 can cover the inside top of the T-shaped carton 181 to prevent food odors from escaping.

[0025] In this embodiment: After the preparation plate 12 is lifted, it is pulled out from the side of the side frame B14 with the side groove 141 and placed at the top of the side frame B14. After the waste component 18 is taken from the side of the limiting plate 164, the T-shaped strip box 181 is placed inside the T-shaped groove 121. The rotating plate 183 is lifted from the side of the top groove 182 and the food is placed at the top of the preparation plate 12 for slicing. The operator can push the scraps generated by slicing at the top of the preparation plate 12 into the inside of the T-shaped strip box 181 to complete the centralized collection of food waste and prevent food waste from falling into the inside of the detection box 1. As the reagent is taken out, the operator can push the preparation plate 12 to move at the top of the side frame B14 and the side frame A13, so that the operator can adjust the position of the preparation plate 12 as needed.

[0026] Example 2: This example is an improvement upon Example 1. For details, please refer to [link / reference]. Figure 2 and Figure 4 The frame component 17 includes a U-shaped frame 171 and an inner connecting strip 172 installed inside the U-shaped frame 171. Positioning strips A173 and B174 are installed horizontally and vertically between the U-shaped frame 171 and the inner connecting strip 172. An inclined tube ring 175 is installed at the intersection of the positioning strips A173 and B174. The inclined tube ring 175 is installed obliquely inside the U-shaped frame 171.

[0027] An inner support 161 is installed inside the heat dissipation slot 16. Heat dissipation fins 162 are installed inside the heat dissipation slot 16 and between the inner support 161. A low-temperature component 19 is installed at the top of the inner support 161. The heat dissipation fins 162 can dissipate heat inside the low-temperature component 19.

[0028] The low-temperature component 19 includes a thermal insulation frame 191 and a thermoelectric cooler 194 installed inside the lower end of the thermal insulation frame 191, with the hot end of the thermoelectric cooler 194 facing downwards.

[0029] A metal tube 192 is mounted on the top of the insulation frame 191. A sealing ring 193 is installed on the top of the metal tube 192 and inside the insulation frame 191. The sealing ring 193 prevents the leakage of cold air generated by the thermoelectric cooler 194. The thermoelectric cooler 194 is composed of many thermoelectric materials (usually semiconductor materials such as bismuth-tellurium alloy) arranged together. When an electric current is applied, they alternately form heat absorption and heat release zones. When the cold end absorbs heat, a temperature difference is generated, carrying away heat from the surroundings and thus lowering the temperature of the cold end. The hot end releases heat, which is usually conducted to the external environment by means of heat sinks or fans.

[0030] In this embodiment: the U-shaped frame 171 is rotated from a horizontal position to a vertical position. The operator removes the test tube from the inside of the tube groove 166, places the food slice into the test tube, adds the corresponding reagent, and then places the test tube into the inside of the inclined tube ring 175 or the metal round tube 192 according to the required reaction temperature. The test tube is placed at an angle inside the inclined tube ring 175 to facilitate the reaction of the reagent at room temperature. The test tube is inserted into the inside of the sealing ring 193 and the metal round tube 192. The cold energy generated by the operation of the thermoelectric cooler 194 is generated from the cold end, and the metal round tube 192 will absorb the cold energy to facilitate the reaction of the reagent in the test tube. The sealing ring 193 and the heat insulation frame 191 will prevent the cold energy from leaking out. The heat generated by the thermoelectric cooler 194 will be absorbed by the heat dissipation fins 162 to increase the heat dissipation effect of the thermoelectric cooler 194.

[0031] The contents not described in detail in this specification are existing technologies known to those skilled in the art.

[0032] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A food inspection testing box, comprising a testing box (1) and a box cover (11) hinged to one side of the top of the testing box (1), characterized in that: The detection box (1) has a side frame A (13) and a side frame B (14) installed on its inner sides respectively. A plate (12) is provided between the side frame A (13) and the side frame B (14). A rotating frame component (17) is hinged to one side of the inner side of the side frame A (13). A medicine box (15) is installed inside the side frame A (13) and below the rotating frame component (17). A partition (151) is inserted inside the medicine box (15). A side groove (141) is provided on the outer surface of the side frame B (14) and on the side facing the side frame A (13). A bottom groove (122) is provided at the bottom end of the tablet plate (12). A T-shaped groove (121) is provided through the top side of the tablet plate (12). A heat dissipation groove (16) is provided through the bottom end of the side frame A (13) and on the side of the medicine box (15). A support frame (163) is installed inside the side frame B (14) and on the side near the side groove (141). A limiting plate (164) is installed at the top of the support frame (163) and on the side away from the side groove (141). A placement plate (165) is installed at the upper end of the inside of the support frame (163). A pipe groove (166) is provided through the middle end of the placement plate (165). A waste component (18) is placed inside the side frame B (14) and on the side of the limiting plate (164).

2. The food inspection test box according to claim 1, characterized in that: The waste component (18) includes a T-shaped box (181) and a top groove (182) opened on one side of the top of the T-shaped box (181). A rotating plate (183) is hinged to the inside of the T-shaped box (181) and on the side away from the top groove (182).

3. The food inspection testing box according to claim 1, characterized in that: The frame component (17) includes a U-shaped frame (171) and an inner connecting strip (172) installed inside the U-shaped frame (171). Positioning strips A (173) and B (174) are installed horizontally and vertically between the U-shaped frame (171) and the inner connecting strip (172). An inclined tube ring (175) is installed at the intersection of positioning strips A (173) and B (174).

4. The food inspection test box according to claim 1, characterized in that: An inner support (161) is installed inside the heat dissipation slot (16), and heat dissipation fins (162) are installed inside the heat dissipation slot (16) and between the inner supports (161). A low-temperature component (19) is installed at the top of the inner support (161).

5. A food inspection testing box according to claim 4, characterized in that: The cryogenic component (19) includes a thermal insulation frame (191) and a thermoelectric cooler (194) installed inside the lower end of the thermal insulation frame (191).

6. A food inspection testing box according to claim 5, characterized in that: A metal tube (192) is installed at the top of the insulation frame (191), and a sealing ring (193) is installed at the top of the metal tube (192) and inside the insulation frame (191).