CN216887855U - Sample storage device for food detection - Google Patents
Sample storage device for food detection Download PDFInfo
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- CN216887855U CN216887855U CN202220091196.XU CN202220091196U CN216887855U CN 216887855 U CN216887855 U CN 216887855U CN 202220091196 U CN202220091196 U CN 202220091196U CN 216887855 U CN216887855 U CN 216887855U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A40/00—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
- Y02A40/90—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in food processing or handling, e.g. food conservation
- Y02A40/963—Off-grid food refrigeration
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Abstract
The application relates to a sample storage device for food detection, which relates to the field of food detection and comprises a main body, wherein a control module is arranged at a position, close to a corner, of the side wall of the main body, a cover plate is arranged at the upper end of the main body, a placement groove is formed in the upper end surface of the main body, a plurality of groups of storage mechanisms are arranged in the placement groove, temperature control mechanisms are arranged on two sides of the main body respectively, each storage mechanism comprises a plurality of groups of storage grooves formed in the bottom end of the placement groove, supports are arranged at positions, close to the edge, of two inner side walls of each storage groove, baffles are arranged at positions, close to the top, of the inner side walls of each storage groove, and sliding grooves are formed at positions, close to two sides, of the bottom ends of the baffles; this sample storage device for food detection can protect the raw materials of placing, avoids debris to drop to the inside raw materials that pollutes of holding tank, and the staff of can being convenient for makes its temperature rise to the main part heating as required, avoids damaging because of the lower messenger food sample of main part temperature.
Description
Technical Field
The application relates to the field of food detection, in particular to a sample storage device for food detection.
Background
The food detection is used for detecting harmful substances in food, mainly detecting harmful and toxic indexes such as heavy metal, aflatoxin and the like, and detecting the quality of food raw materials, auxiliary materials, semi-finished products, finished products and byproducts to ensure that the product quality is qualified, wherein the food detection contents comprise sensory detection on the food, detection on nutritional ingredients, additives and harmful substances in the food and the like;
common food sample storage device for detection in market, most debris easily drop to the inside raw materials that pollutes of holding tank, are not convenient for make the main part temperature rise as required, and for this, we propose a food sample storage device for detection.
SUMMERY OF THE UTILITY MODEL
In order to solve the problems of the background art, the present application provides a sample storage device for food detection.
The application provides a sample storage device for food detection adopts following technical scheme:
the utility model provides a sample storage device for food detection, includes the main part, the main part lateral wall is close to top corner position and is provided with control module, the main part upper end is provided with the apron, the standing groove has been seted up to main part upper end surface, the inside storage mechanism of a plurality of groups that is provided with of standing groove, the main part both sides all are provided with temperature-controlled mechanism.
Further, the storage mechanism is including seting up a plurality of groups of holding tanks in the inside bottom of standing groove, two inside walls of holding tank are close to border position and all are provided with the support, the holding tank inside wall is close to top position and is provided with the baffle, the baffle bottom is close to both sides position and all has seted up the spout, the inside slide that is provided with of spout, be provided with the telescopic link between support and the slide.
Further, the telescopic link both ends all are provided with the cross axle, telescopic link surface winding is provided with the spring, and the both ends of spring respectively with the both ends rigid coupling of telescopic link, be provided with the spiral shaft between baffle one side and the holding tank, the baffle sets up at holding tank top position, a plurality of groups through spiral shaft cooperation telescopic link activity the holding tank equidistance distributes in the inside bottom position of standing groove.
Further, the temperature control mechanism includes the basin, the basin inside wall is provided with a plurality of heater strips of group, the basin inside wall is close to both sides position and has all seted up the cavity, the basin inside wall is close to top corner position and is provided with temperature sensor, be close to the notch position between the basin inside wall and be provided with the curb plate, the curb plate top is close to corner position and inlays and be provided with ventilative waterproof valve.
Furthermore, a plurality of groups of heating wires are equidistantly arranged on the surface of the inner side wall of the water tank, and the two groups of water tanks are communicated through the cavities.
Furthermore, the output end of the temperature sensor is electrically connected with the input end of the control module, and a plurality of groups of micropores are formed in the breathable waterproof valve in a penetrating mode.
Furthermore, a hinge is arranged between one side of the cover plate and the main body, and the cover plate is movably arranged with the main body through the hinge.
To sum up, this application includes following beneficial technological effect:
(1) one end of the plate is moved to lift the baffle upwards along the rotary shaft, in the process, the sliding plate moves towards the position, close to the rotary shaft, of the baffle along the sliding groove, so that the telescopic rod is shortened and rotates around the support through the transverse shaft, the spring is compressed, then a worker places a food sample in the corresponding storage groove, the pushing force of the spring pushes the sliding plate to slide towards the position of the other end of the sliding groove, at the moment, the telescopic rod extends to pull the baffle to rotate around the rotary shaft to a position, close to the top, between the inner side walls of the storage grooves, the baffle can be protected, and sundries are prevented from falling into the storage groove to pollute the raw materials;
(2) can detect the temperature of main part through temperature sensor, when the main part temperature is lower, control module makes the heater strip work, the heater strip heats the inside water of basin, wherein the vapor that water produced when heating can make the inside atmospheric pressure of basin increase, the inside air of basin can outwards flow through the ventilative waterproof valve on the curb plate, wherein the water droplet in the air makes the water droplet can not flow from ventilative waterproof valve because water droplet surface tension's principle makes the water droplet when the micropore of seting up in ventilative waterproof valve, avoid the water in the basin to scatter and disappear, hot water heats around the main part through the mode of water bath through basin cooperation cavity, thereby make the main part temperature rise.
Drawings
Fig. 1 is a schematic structural diagram of an overall structure of a sample storage device for food detection in an embodiment of the present application;
FIG. 2 is a schematic structural diagram of a temperature mechanism of a sample storage device for food detection according to an embodiment of the present disclosure;
FIG. 3 is a schematic view of a structure of a placement groove of a sample storage device for food detection in an embodiment of the present application;
fig. 4 is a schematic partial structure diagram of a sample storage device for food detection according to an embodiment of the present application.
Description of reference numerals: 1. a main body; 2. a control module; 3. a cover plate; 4. a placement groove; 5. a storage mechanism; 6. a support; 7. a baffle plate; 8. a chute; 9. a slide plate; 10. a telescopic rod; 11. a storage tank; 12. A temperature control mechanism; 13. a water tank; 14. heating wires; 15. a cavity; 16. a temperature sensor; 17. a side plate; 18. a ventilating waterproof valve.
Detailed Description
Example 1
Referring to fig. 1-4, the present invention provides a technical solution: the utility model provides a sample storage device for food detection, includes main part 1, and 1 lateral wall of main part is close to top corner position and is provided with control module 2, and 1 upper end of main part is provided with apron 3, and standing groove 4 has been seted up to 1 upper end surface of main part, and standing groove 4 is inside to be provided with a plurality of storage mechanism 5 of group, and 1 both sides of main part all are provided with temperature control mechanism 12.
Referring to fig. 3, the storage mechanism 5 includes a plurality of storage slots 11 arranged at the bottom inside the placement slot 4, wherein two inner side walls of the storage slots 11 are provided with a support 6 near the edge, a baffle 7 is arranged at the position near the top of the inner side wall of the storage slot 11, sliding slots 8 are arranged at the positions near the two sides of the bottom of the baffle 7, a sliding plate 9 is arranged inside the sliding slots 8, and a telescopic rod 10 is arranged between the support 6 and the sliding plate 9.
The 10 both ends of telescopic link all are provided with the cross axle, and the winding of 10 surfaces of telescopic link is provided with the spring, and the both ends of spring respectively with the both ends rigid coupling of telescopic link 10, be provided with the pivot between 7 one sides of baffle and the holding tank 11, baffle 7 sets up at 11 top positions of holding tank through pivot cooperation telescopic link 10 activity, 11 equidistance distributions in the inside bottom position of standing groove 4 of a plurality of groups holding tank.
When using, the staff board moves 7 one ends of baffle and makes it lift up along the pivot upwards, in this process, slide 9 is close to pivot position removal along spout 8 to baffle 7, thereby make telescopic link 10 shorten and rotatory round support 6 through the cross axle, the spring compression, then the staff places the food sample inside storage tank 11 that corresponds, later the thrust of spring promotes slide 9 and slides to 8 other end positions of spout, telescopic link 10 extension pulling baffle 7 rotates to being close to the top position between the 11 inside walls of storage tank round the pivot this moment, can protect the raw materials of placing, avoid debris to drop to 11 internal contamination raw materials of storage tank, then set up apron 3 at 1 upper end surface position of main part through the hinge.
Example 2
Referring to fig. 1-2, the present invention provides a technical solution: the utility model provides a sample storage device for food detection, includes main part 1, and 1 lateral wall of main part is close to top corner position and is provided with control module 2, and 1 upper end of main part is provided with apron 3, and standing groove 4 has been seted up to 1 upper end surface of main part, and standing groove 4 is inside to be provided with a plurality of storage mechanism 5 of group, and 1 both sides of main part all are provided with temperature control mechanism 12.
Referring to fig. 2, the temperature control mechanism 12 includes a water tank 13, a plurality of sets of heating wires 14 are disposed on an inner sidewall of the water tank 13, cavities 15 are disposed on both sides of the inner sidewall of the water tank 13, a temperature sensor 16 is disposed on a corner of the inner sidewall of the water tank 13 near the top, a side plate 17 is disposed between the inner sidewalls of the water tank 13 near the notch, and a gas-permeable and waterproof valve 18 is embedded on the top of the side plate 17 near the corner.
A plurality of groups of heating wires 14 are equidistantly arranged on the surface of the inner side wall of the water tank 13, and the two groups of water tanks 13 are communicated through a cavity 15; the output end of the temperature sensor 16 is electrically connected with the input end of the control module 2, and a plurality of groups of micropores are formed in the breathable waterproof valve 18 in a penetrating mode.
A hinge is arranged between one side of the cover plate 3 and the main body 1, and the cover plate 3 is movably arranged with the main body 1 through the hinge.
Specifically, the temperature of the main body 1 can be detected through the temperature sensor 16, when the temperature of the main body 1 is low, the control module 2 enables the heating wire 14 to work, the heating wire 14 heats water inside the water tank 13, hot water is matched with the cavity 15 through the water tank 13 to heat the periphery of the main body 1 in a water bath mode, so that the temperature of the main body 1 is increased, when the temperature detected by the temperature sensor 16 reaches a specified temperature, the control module 2 enables the heating wire 14 to stop heating, the air pressure inside the water tank 13 can be increased through water vapor generated during heating of the water, air inside the water tank 13 can flow outwards through the air-permeable waterproof valve 18 on the side plate 17, and when water drops in the air pass through micropores formed in the air-permeable waterproof valve 18, the water drops cannot flow out of the air-permeable waterproof valve 18 due to the principle of surface tension of the water drops, so that the water in the water tank 13 is prevented from being lost;
the temperature sensor 16 in this embodiment is of the type T10S-B-HW.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.
Claims (7)
1. The utility model provides a sample storage device for food detection, includes main part (1), its characterized in that, main part (1) lateral wall is close to top corner position and is provided with control module (2), main part (1) upper end is provided with apron (3), standing groove (4) have been seted up to main part (1) upper end surface, standing groove (4) inside is provided with a plurality of storage mechanisms of group (5), main part (1) both sides all are provided with temperature control mechanism (12).
2. The sample storage device for food inspection as set forth in claim 1, wherein: storage mechanism (5) are including seting up a plurality of groups holding tank (11) in standing groove (4) inside bottom, two inside walls of holding tank (11) are close to border position and all are provided with support (6), holding tank (11) inside wall is close to top position and is provided with baffle (7), spout (8) have all been seted up to baffle (7) bottom close to both sides position, spout (8) inside is provided with slide (9), be provided with telescopic link (10) between support (6) and slide (9).
3. The sample storage device for food inspection as set forth in claim 2, wherein: the utility model discloses a storage tank, including telescopic link (10), telescopic link (10) both ends all are provided with the cross axle, telescopic link (10) surface winding is provided with the spring, and the both ends of spring respectively with the both ends rigid coupling of telescopic link (10), be provided with the spiral axle between baffle (7) one side and storage tank (11), baffle (7) set up in storage tank (11) top position, a plurality of groups through spiral axle cooperation telescopic link (10) activity storage tank (11) equidistance distribution is in the inside bottom position of standing groove (4).
4. The sample storage device for food inspection as set forth in claim 1, wherein: temperature control mechanism (12) include basin (13), basin (13) inside wall is provided with a plurality of heater strips of group (14), cavity (15) have all been seted up to basin (13) inside wall near both sides position, basin (13) inside wall is provided with temperature sensor (16) near top corner position, it is provided with curb plate (17) to be close to the notch position between basin (13) inside wall, curb plate (17) top is close to corner position and inlays and is provided with ventilative waterproof valve (18).
5. The sample storage device for food inspection as set forth in claim 4, wherein: the heating wires (14) are arranged on the surface of the inner side wall of the water tank (13) in a plurality of groups at equal intervals, and the water tanks (13) are communicated through the cavity (15).
6. The sample storage device for food inspection as set forth in claim 5, wherein: the output end of the temperature sensor (16) is electrically connected with the input end of the control module (2), and a plurality of groups of micropores are formed in the breathable waterproof valve (18) in a penetrating mode.
7. The sample storage device for food inspection as set forth in claim 6, wherein: a hinge is arranged between one side of the cover plate (3) and the main body (1), and the cover plate (3) is movably arranged with the main body (1) through the hinge.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202220091196.XU CN216887855U (en) | 2022-01-14 | 2022-01-14 | Sample storage device for food detection |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202220091196.XU CN216887855U (en) | 2022-01-14 | 2022-01-14 | Sample storage device for food detection |
Publications (1)
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CN216887855U true CN216887855U (en) | 2022-07-05 |
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CN202220091196.XU Active CN216887855U (en) | 2022-01-14 | 2022-01-14 | Sample storage device for food detection |
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- 2022-01-14 CN CN202220091196.XU patent/CN216887855U/en active Active
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