A blood collection and storage device
By designing sliding channels and control components within the storage box, and combining the connection method of brackets and card slots, the problem of damage and contamination of blood collection tubes during transportation was solved, ensuring the safety and stability of blood collection tubes and improving transportation efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHIJIAZHUANG HOSPITAL OF TRADITIONAL CHINESE MEDICINE
- Filing Date
- 2025-08-07
- Publication Date
- 2026-05-26
AI Technical Summary
In existing technologies, blood collection tubes are easily damaged and contaminated during transportation, and their storage stability is poor, affecting transportation efficiency.
A blood collection and storage device including a storage box, a first channel, and a second channel was designed. Through the cooperation of control components and brackets, the blood collection tubes are safely and stably stored. The connection method of sliding connection and slot block ensures the safety and stability of the blood collection tubes during transportation.
It effectively protects blood collection tubes from damage and contamination, improves transportation efficiency and stability, and is suitable for use in different scenarios.
Smart Images

Figure CN224278131U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of transport box technology, and in particular to a blood collection and storage device. Background Technology
[0002] Currently, after blood collection, blood collection tubes are often placed in blood collection racks for transportation. On the one hand, this cannot guarantee the safety of the blood collection tubes and can easily cause damage and contamination. On the other hand, simply relying on stacking blood collection racks provides poor stability, making storage and transportation inconvenient and greatly limiting transportation efficiency. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide a blood collection and storage device in response to the above-mentioned technical deficiencies. By placing the blood collection tubes sequentially into the storage rack and storing them inside the storage box, the safety of the blood collection tubes during transportation can be effectively guaranteed. In addition, the multiple storage racks and brackets work together to facilitate storage and increase the number of tubes transported at one time.
[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model includes:
[0005] A storage box, wherein a first channel and a slidable second channel are sequentially arranged inside the storage box, a control component connected to the storage box is provided above the second channel, and a slidably connected bracket is provided in the first channel and the second channel respectively;
[0006] A storage rack is connected to a bracket, and the upper surface of the storage rack is evenly provided with multiple insertion holes.
[0007] Preferably, positioning rods are symmetrically arranged above the second channel, and the positioning rods are slidably connected to the storage box.
[0008] Preferably, the control component includes a horizontal plate, a rotating sleeve, and a spring; the horizontal plate is connected to the second channel on both sides, a vertical shaft is provided in the middle of the horizontal plate, and a guide block and a pull rope are respectively provided at the top of the vertical shaft; the rotating sleeve is connected to the top of the storage box, and a guide groove connected to the guide block is provided on the rotating sleeve; the spring is sleeved on the rotating sleeve.
[0009] Preferably, the rotating sleeve has a through hole at its center for the pull rope to pass through.
[0010] Preferably, the top of the pull rope is provided with a pull ring.
[0011] Preferably, the bracket has two symmetrical installation spaces, and each installation space has symmetrical slots on both sides; the storage rack has symmetrical blocks on both sides that connect to the slots.
[0012] Preferably, the storage rack has a sink hole at its bottom.
[0013] Preferably, the inner wall of the storage box is provided with a heat insulation layer.
[0014] Compared with the prior art, the present invention has the following advantages:
[0015] 1. The storage rack can be slid out for easy placement of blood collection tubes. After placement, the tubes can be stored inside the storage box to prevent contact with external objects during transportation, thus ensuring the safety of the blood collection tubes and preventing contamination.
[0016] 2. The storage rack and bracket are connected, providing an installation position for the storage rack. With the connection method of slots and blocks, the whole is stable and reliable, meeting transportation needs. Moreover, the two can be detached from each other, making it suitable for different usage scenarios.
[0017] 3. By controlling the components to push the upper storage rack down, the lower blood collection tubes can be reinforced, which is suitable for situations where the transportation is bumpy and improves the stability of the blood collection tubes;
[0018] 4. The design of the recessed slot on the storage rack can limit and support the bottom of the blood collection tube, which can further improve the stability of the installation position after the blood collection tube is inserted, and facilitate the insertion and installation operation by the staff. Attached Figure Description
[0019] Figure 1 A schematic diagram of the overall structure of a blood collection and storage device;
[0020] Figure 2 This is a schematic diagram of the internal structure of the storage box;
[0021] Figure 3 This is a demonstration diagram showing the sliding state of the storage rack;
[0022] Figure 4 This is a schematic diagram showing the connection between the storage rack and the bracket;
[0023] Figure 5 This is a schematic diagram of the control component structure;
[0024] Figure 6 This is a sectional view of the slewing sleeve;
[0025] Figure 7 This is a schematic diagram of the top of the vertical axis.
[0026] In the diagram: 1. Storage box; 2. First channel; 3. Second channel; 4. Control component; 5. Bracket; 6. Storage rack; 101. Insulation layer; 301. Positioning rod; 401. Horizontal plate; 402. Rotating sleeve; 403. Spring; 404. Vertical shaft; 405. Guide block; 406. Pull rope; 407. Guide groove; 408. Through hole; 409. Pull ring; 501. Installation space; 502. Slot; 601. Insertion hole; 602. Locking block; 603. Countersunk hole. Detailed Implementation
[0027] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings. It should be understood that these descriptions are merely exemplary and not intended to limit the scope of this utility model. Furthermore, descriptions of well-known structures and technologies are omitted in the following description to avoid unnecessarily obscuring the concept of this utility model.
[0028] Specific implementation method one: Combining Figure 1-7 As shown, a blood collection and storage device includes: a storage box 1, in which a first channel 2 and a second channel 3 that can slide downwards are arranged sequentially; a control component 4 connected to the storage box 1 is provided above the second channel 3; by operating the control component 4, the second channel 3 can be moved downwards by a certain distance; a bracket 5 that is slidably connected is provided in the first channel 2 and the second channel 3 respectively; and a storage rack 6, which is connected to the bracket 5; a plurality of insertion holes 601 are evenly provided on the upper surface of the storage rack 6.
[0029] In use, pull out the bracket 5 from the first channel 2 to facilitate the sequential insertion of blood collection tubes into the insertion holes 601 on the surface, completing the installation of the blood collection tubes. After installation, push in the bracket 5 and close the sliding door in front of the storage box 1 to seal the interior of the storage box 1, effectively preventing contact with the external space and ensuring the safety of the blood collection tubes. When it is necessary to reinforce the blood collection tubes on the first channel 2, the control component 4 can be operated to release the limit on the second channel 3, push the second channel 3 down, and use the bottom of the storage rack 6 above to contact the top of the blood collection tubes to complete the limit fixation. When there are many blood collection tubes, the bracket 5 on the second channel 3 can be pulled out to continue loading, and a large batch of blood collection tubes can be transported in a single trip.
[0030] Preferred embodiments, in combination Figure 3 As shown, positioning rods 301 are symmetrically arranged above the second channel 3. The positioning rods 301 pass through the top of the storage box 1 to form a sliding connection, thereby realizing the guiding and positioning of the second channel 3.
[0031] In a preferred embodiment, referring to the figures, the control component 4 includes a horizontal plate 401, a rotating sleeve 402, and a spring 403. The two sides of the horizontal plate 401 are fixedly connected to the positioning rods above the second channel 3. A vertical shaft 404 is welded to the middle of the horizontal plate 401, and two guide blocks 405 and a pull rope 406 are respectively provided at the top of the vertical shaft 404. The rotating sleeve 402 is connected to the top of the storage box 1 by a rotating shaft. The rotating sleeve 402 is provided with a guide groove 407 connected to the guide blocks 405. The spring 403 is sleeved on the rotating sleeve 402. By rotating the rotating sleeve 402, the guide blocks 405 are aligned with the vertical sliding groove of the guide groove 407. Under the pushing force of the spring 403, the horizontal plate 401 is pushed downward, thereby driving the second channel 3 to move downward and completing the pressing operation. When resetting is required, simply pull the pull rope 406 to slide the guide blocks 405 to the top of the guide groove 407 and rotate them at a certain angle to achieve locking and fixing.
[0032] Preferred embodiments, in combination Figure 6 As shown, the center of the rotating sleeve 402 is provided with a through hole 408 for the pull rope 406 to pass through, which facilitates operation by the staff from outside the storage box 1.
[0033] Preferred embodiments, in combination Figure 7 As shown, the top of the pull rope 406 is equipped with a pull ring 409, which makes it convenient for staff to pull the pull rope 406.
[0034] Preferred embodiments, in combination Figure 4 As shown, the bracket 5 is symmetrically provided with two installation spaces 501, and each installation space 501 is symmetrically provided with slots 502 on both sides; the storage rack 6 is symmetrically provided with locking blocks 602 connected to the slots 502 on both sides. The locking blocks 602 are inserted into the slots 502, and after the bracket 5 is reset and enters the second channel 3 or the first channel 2, the channel can limit the upper part of the locking blocks 602 to achieve complete fixation of the storage rack 6. At the same time, the arrangement of the two sets of installation spaces 501 improves the rationality and aesthetics of the internal space layout while ensuring storage capacity; when it is not necessary to disassemble the storage rack 6, the storage rack 6 can also be welded to the bracket 5 or fixed with screws.
[0035] Preferred embodiments, in combination Figure 4 As shown, the storage rack 6 has a sink hole 603 at the bottom, which improves the stability of the blood collection tube after it is placed by contacting the bottom of the blood collection tube.
[0036] Preferred embodiments, in combination Figure 2 As shown, the inner wall of the storage box 1 is provided with a heat insulation layer 101. The heat insulation layer 101 is made of foam material, which can ensure the stability of the internal temperature and avoid excessive cold or heat. Specific Implementation Method Two
[0038] Combination Figure 3and Figure 4 As shown, in the above scheme, only the blood collection tubes on the first channel 2 can be fixed. In order to also fix the blood collection tubes on the second channel 3, a plate can be processed. The plate can cover the upper area of the two storage racks 6. At the same time, two sliding columns are symmetrically arranged on the plate. The sliding columns pass through the storage box 1 and the horizontal plate 401 to form a sliding connection. A second spring is sleeved on the sliding column. The upper end of the second spring contacts the horizontal plate 401, and the lower end contacts the stepped platform on the sliding column. During the downward movement of the horizontal plate 401, the plate can be pushed to contact the blood collection tubes synchronously. After the plate contacts the upper blood collection tubes, but the storage rack 6 does not contact the lower blood collection tubes, the elastic force of the second spring can be overcome to avoid interference. The elastic force of the second spring is less than the elastic force of the spring 403.
[0039] It should be understood that the specific embodiments described above are merely illustrative or explanatory of the principles of this utility model and do not constitute a limitation thereof. Therefore, any modifications, equivalent substitutions, improvements, etc., made without departing from the spirit and scope of this utility model should be included within its protection scope. Furthermore, the appended claims are intended to cover all variations and modifications falling within the scope and boundaries of the appended claims, or equivalent forms of such scope and boundaries.
Claims
1. A blood collection storage device, characterized by, include: Storage box (1), the storage box (1) is provided with a first channel (2) and a second channel (3) that can be slidably displaced in sequence, a control component (4) connected to the storage box (1) is provided above the second channel (3), and a bracket (5) that is slidably connected is provided in the first channel (2) and the second channel (3); Storage rack (6), which is connected to bracket (5), and the upper surface of the storage rack (6) is evenly provided with a plurality of insertion holes (601).
2. A blood collection storage device according to claim 1, wherein: A positioning rod (301) is symmetrically provided above the second channel (3), and the positioning rod (301) is slidably connected to the storage box (1).
3. The blood collection storage device of claim 1, wherein: The control component (4) includes a horizontal plate (401), a rotating sleeve (402), and a spring (403); the horizontal plate (401) is connected to the second channel (3) on both sides, and a vertical shaft (404) is provided in the middle of the horizontal plate (401), and a guide block (405) and a pull rope (406) are respectively provided at the top of the vertical shaft (404); the rotating sleeve (402) is connected to the top of the storage box (1), and a guide groove (407) connected to the guide block (405) is provided on the rotating sleeve (402); the spring (403) is sleeved on the rotating sleeve (402).
4. A blood collection storage device according to claim 3, wherein: The rotating sleeve (402) has a through hole (408) at its center for the pull rope (406) to pass through.
5. A blood collection storage device according to claim 4, wherein: The top of the pull rope (406) is provided with a pull ring (409).
6. The blood collection storage device of claim 1, wherein: The bracket (5) is symmetrically provided with two installation spaces (501), and each installation space (501) is symmetrically provided with slots (502) on both sides; the storage rack (6) is symmetrically provided with blocks (602) connected to the slots (502) on both sides.
7. The blood collection storage device of claim 1, wherein: The storage rack (6) is provided with a sink hole (603) at the bottom.
8. A blood collection and storage device according to claim 1, characterized in that: The inner wall of the storage box (1) is provided with a heat insulation layer (101).