Rapid storage device for medicine detection extraction reagent
By designing a rapid storage device for drug detection and extraction reagents, and utilizing components such as a collection cylinder, a dispensing cylinder, a motor, and a light sensor, the automated storage and retrieval of reagent bottles is achieved, solving the problem of low storage and retrieval efficiency in existing technologies and improving operational efficiency.
Patent Information
- Application Number
- CN202521054811.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-27
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-05-27
AI Technical Summary
In existing technologies, the storage and retrieval of reagent bottles during drug testing cannot be performed quickly, resulting in low operational efficiency.
A rapid storage device for drug detection extraction reagents was designed, which adopts a combination of a collection cylinder, a dispensing cylinder, a motor, a light sensor and a pushing structure to realize the automated storage and retrieval of reagent bottles.
It enables rapid and automated storage, retrieval, and collection of reagent bottles, improving operational efficiency.
Smart Images

Figure CN223865815U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of detection equipment technology, specifically relating to a rapid storage device for drug detection extraction reagents. Background Technology
[0002] Drug testing encompasses a wide range of testing items, including drug quality testing, drug ingredient testing, drug heavy metal testing, drug adverse reaction testing, drug sealing testing, biological drug testing, drug appearance testing, routine drug testing, drug physicochemical testing, drug safety testing, and drug defect testing.
[0003] In drug testing, reagent bottles are generally used for rapid dissolution. However, since the actual quantity in a batch is large, the reagent bottles cannot be quickly put in and taken out each time, so improvements are needed. Utility Model Content
[0004] The present invention aims to solve the technical problems existing in the prior art and provide a rapid storage device for drug detection extraction reagents.
[0005] The above-mentioned technical problems of this utility model are mainly solved by the following technical solution: a rapid storage device for drug detection extraction reagents, including a collection cylinder, a through opening on one side of the collection cylinder, a side sealing plate at the opening, the bottom of the side sealing plate not sealing the opening, an inclined base at the top of the collection cylinder, a cavity in the middle of the inclined base, a motor in the cavity, the output end of the motor penetrating upward through the base and the collection cylinder into the inside of the collection cylinder, a main shaft on the output end of the motor, a discharge cylinder sleeved on the surface of the main shaft, a plurality of discharge cavities on the surface of the discharge cylinder, a side connecting seat at the bottom opening of the side sealing plate corresponding to the collection cylinder, a feeding channel formed between the top of the side connecting seat and the opening, a raised baffle formed on one side of the feeding channel at the opening, a plurality of light sensors arranged upward inside the raised baffle, symmetrical grooves on the top of the side connecting seat, a pushing structure on one side of the side connecting seat from the collection cylinder, the pushing structure extending into the feeding channel through the top groove.
[0006] Preferably, a sensing plate is provided on the surface of the feeding cylinder and on one side of the protrusion corresponding to each feeding chamber, and multiple linear sensors are provided on one side of the side sealing plate, with one end of the linear sensor penetrating the side sealing plate and facing the surface of the feeding cylinder.
[0007] Preferably, the pushing structure includes a pushing box, an inspection cover, a small electric push rod, a push plate, and a slide. The pushing box is located on one side of the side connecting seat, the inspection cover is rotatably located on the top of the pushing box, the small electric push rod is symmetrically arranged in two positions inside the pushing box, and the output end extends through the pushing box into the side connecting seat. The slide is located inside the side connecting seat, and its top extends into the feeding channel through a groove. The push plate is located on the top of the slide and is located in the feeding channel.
[0008] The beneficial effects of this utility model are as follows: By setting a collection cylinder and a discharge cylinder inside the collection cylinder, the discharge cylinder has multiple discharge cavities on its surface for collecting test tubes. A side connecting seat and a top feeding channel are also provided. A raised baffle is formed at the opening of the collection cylinder, and a light sensor is installed inside the raised baffle to detect the test tubes placed into the feeding channel. Then, in conjunction with the rear pushing structure, the tubes are pushed, achieving an automatic feeding effect. Simultaneously, a motor at the bottom of the discharge cylinder drives the discharge cylinder to rotate. The discharge cylinder's automatic rotation is achieved through surface sensing plates and multiple linear sensors on one side of the side sealing plate, working in conjunction with the pushing structure to achieve automatic collection, thus greatly accelerating the collection of test tubes. Furthermore, a 30-degree inclined base is provided at the top of the collection cylinder, allowing the top of the collection cylinder to tilt towards the personnel, facilitating material discharge. Attached Figure Description
[0009] Figure 1 This is a three-dimensional structural diagram of the front of this utility model;
[0010] Figure 2 This is a three-dimensional structural diagram of the back of this utility model;
[0011] Figure 3 This is a top view structural diagram of this utility model.
[0012] In the diagram: 1. Collection cylinder; 11. Opening; 12. Side sealing plate; 13. Linear sensor; 2. Discharge cylinder; 21. Main shaft; 22. Motor; 23. Discharge chamber; 24. Induction plate; 3. Inclined base; 31. Cavity; 4. Side connecting seat; 41. Feeding channel; 42. Raised baffle; 43. Light sensor; 44. Slide; 5. Push box; 51. Inspection cover; 52. Small electric push rod; 53. Push plate; 54. Slide carriage. Detailed Implementation
[0013] The technical solution of this utility model will be further described in detail below through embodiments and in conjunction with the accompanying drawings.
[0014] Example: A rapid storage device for drug detection extraction reagents, such as... Figures 1-3As shown, the device includes a collection cylinder 1 with a through opening 11 on one side. A side sealing plate 12 is provided at the opening 11, but the bottom of the side sealing plate 12 does not seal the opening 11. An inclined base 3 is provided at the top of the collection cylinder 1, and a cavity 31 is provided in the middle of the inclined base 3. A motor 22 is provided inside the cavity 31. The output end of the motor 22 extends upward through the inclined base 3 and the collection cylinder 1 into the collection cylinder 1. A main shaft 21 is provided on the output end of the motor 22, and a discharge cylinder 2 is sleeved on the surface of the main shaft 21. Multiple discharge chambers 23 are provided. A side connecting seat 4 is provided at the bottom opening 11 of the side sealing plate 12 corresponding to the collection cylinder 1. A feeding channel 41 is formed between the top of the side connecting seat 4 and the opening 11. A raised baffle 42 is formed on one side of the feeding channel 41 at the opening 11. Multiple light sensors 43 are arranged inside the raised baffle 42 facing upward. The top of the side connecting seat 4 is symmetrically provided with sliding grooves 44. A pushing structure is provided on one side of the collection cylinder 1. The pushing structure extends into the feeding channel 41 through the sliding grooves 44 on the top.
[0015] A sensor 24 is provided on the surface of the feeding cylinder 2 and on one side of the protrusion corresponding to each feeding chamber 23. Multiple linear sensors 13 are provided on one side of the side sealing plate 12, with one end of the linear sensor 13 penetrating the side sealing plate 12 and facing the surface of the feeding cylinder 2.
[0016] The material pushing structure includes a material pushing box 5, an inspection cover 51, a small electric push rod 52, a push plate 53, and a slide 54. The material pushing box 5 is located on one side of the side connecting seat 4. The inspection cover 51 is rotatably located on the top of the material pushing box 5. The small electric push rod 52 is symmetrically arranged in two positions inside the material pushing box 5, and its output end extends through the material pushing box 5 into the side connecting seat 4. The slide 54 is located inside the side connecting seat 4, and its top extends through the slide groove 44 into the feeding channel 41. The push plate 53 is located on the top of the slide 54 and is located in the feeding channel 41.
[0017] The principle of this invention is as follows: After the medicine is dissolved in the test tube, the operator holds the bottle mouth and places the test tube into the feeding channel 41 at the top of the side connecting seat 4. Then, the test tube blocks the light sensor 43 in the raised baffle 42 on one side. At this time, the small electric push rod 52 is activated, which drives the slide 54 and push plate 53 at the output end to push the test tube through the feeding channel 41 and the raised baffle 42 into the discharge chamber 23 in the discharge cylinder 2. At this time, the motor 22 is turned on and drives the discharge cylinder 2 to rotate. Since multiple sensing plates 24 are set on the surface of the discharge cylinder 2, when the discharge cylinder 2 rotates to the position of one discharge chamber 23, the linear sensor 13 senses the sensing plate 24 on the surface of the discharge cylinder 2 at one station, and the motor 22 stops. This device can quickly collect test tubes, avoiding the need for personnel to place test tubes during operation.
[0018] Finally, it should be noted that the above embodiments are merely representative examples of this utility model. Obviously, this utility model is not limited to the above embodiments and many variations are possible. Any simple modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of this utility model should be considered to fall within the protection scope of this utility model.
Claims
1. A rapid storage device for drug testing extraction reagents, comprising a collection cartridge (1), characterized in that: The collecting cylinder (1) is provided with a through opening (11) on one side, and a side sealing plate (12) is arranged at the opening (11). The bottom of the side sealing plate (12) does not seal the opening (11). An inclined base (3) is arranged at the top of the collecting cylinder (1). A cavity (31) is arranged in the middle of the inclined base (3). A motor (22) is arranged in the cavity (31). The output end of the motor (22) penetrates the inclined base (3) and the collecting cylinder (1) upward to the inside of the collecting cylinder (1). A main shaft (21) is arranged on the output end of the motor (22). A discharging cylinder (2) is sleeved on the surface of the main shaft (21). A plurality of discharging cavities (23) are arranged on the surface of the discharging cylinder (2). A side connecting seat (4) is arranged at the opening (11) corresponding to the bottom of the side sealing plate (12) of the collecting cylinder (1). A feeding channel (41) is formed between the top of the side connecting seat (4) and the opening (11). A protruding stop strip (42) is formed on one side of the opening (11). A plurality of light sensors (43) are arranged upward in the inside of the protruding stop strip (42). A sliding groove (44) is symmetrically arranged on the top of the side connecting seat (4). A pushing structure is arranged on one side of the collecting cylinder (1) of the side connecting seat (4). The pushing structure extends to the feeding channel (41) through the sliding groove (44) on the top.
2. The rapid storage device for drug detection extraction reagent according to claim 1, characterized in that: An induction sheet (24) is arranged on the surface of the discharging cylinder (2) and corresponds to one side of each discharging cavity (23). A plurality of linear sensors (13) are arranged on one side of the side sealing plate (12). One end of the linear sensor (13) penetrates the side sealing plate (12) and is arranged toward the surface of the discharging cylinder (2).
3. The rapid storage device for drug detection extraction reagent of claim 1, wherein: The pushing structure comprises a pushing box (5), an inspection cover (51), a small electric push rod (52), a push plate (53) and a sliding frame (54). The pushing box (5) is arranged on one side of the side connecting seat (4). The inspection cover (51) is rotatably arranged on the top of the pushing box (5). The small electric push rod (52) is symmetrically arranged in the inside of the pushing box (5). The output end of the small electric push rod (52) penetrates the pushing box (5) and extends to the side connecting seat (4). The sliding frame (54) is arranged in the side connecting seat (4). The top of the sliding frame (54) extends to the feeding channel (41) through the sliding groove (44). The push plate (53) is arranged on the top of the sliding frame (54) and located in the feeding channel (41).