Blood sampling test tube split charging box
By designing a multi-layered blood collection tube packaging box, the problem of a single-layer structure being unable to accommodate multiple tubes was solved, enabling stable partitioned storage and convenient transportation of the tubes, and reducing the risk of tube confusion.
Patent Information
- Application Number
- CN202520228653.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-13
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-02-13
AI Technical Summary
The existing blood collection tube packaging box has a single-layer structure, which means that multiple packaging boxes need to be carried when collecting blood in multiple wards at the same time, and it is easy to cause the test tubes to be mixed up, increasing the risk of medical accidents.
A multi-layered blood collection tube dispensing box was designed, including a detachable fixing part and a disassembly part. By setting multiple storage layers inside the box, and using guide ribs and snap-fit structures, the multiple storage layers are stably supported and partitioned, which increases the number of test tubes that can be stored and reduces the risk of confusion.
It increases the number of test tubes that can be stored in a single dispensing box, ensures the partitioning and stability of test tubes, reduces the possibility of test tube confusion, and facilitates movement and transportation.
Smart Images

Figure CN223683591U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to medical inspection technical field, concretely relates to a blood sampling test tube subpackaging box. BACKGROUND
[0002] In the hospital work, especially the inspection department often goes to the ward to take blood, and blood sampling is a necessary nursing skill for medical staff, and the purpose is to collect and keep the blood sample of the patient, assist the diagnosis of clinical disease, and provide necessary basis for clinical treatment. In clinical nursing, medical staffs take blood from patients in each ward, which requires a blood sampling test tube subpackaging box to place and move the collected test tubes.
[0003] Most of the existing subpackaging boxes adopt a single-layer structure, that is, only one layer of test tubes is placed in the box to facilitate the centralized placement and taking of the test tubes. However, considering the overall size of the subpackaging box, too many test tubes cannot be placed in the single-layer structure. When unified blood sampling is performed in multiple wards, multiple subpackaging boxes need to be carried for test tube storage, which is not easy to carry. At this time, it is easy to cause the test tubes taken from different wards to be placed in disorder, causing unnecessary medical accidents.
[0004] In view of the above defects, the utility model creator finally obtains the utility model after long-term research and practice. CONTENT OF THE UTILITY MODEL
[0005] To solve the above technical defects, the utility model adopts the technical scheme of providing a blood sampling test tube subpackaging box including storage layers and a box body. Each storage layer is arranged in the box body from bottom to top. Each storage layer is provided with a placing cavity for placing test tubes. The box body includes a fixed part and a detachable part. The fixed part and the detachable part are detachably connected. The fixed part includes a bottom plate, two side plates, and a fixed plate. The fixed plate is vertically fixed to one end of the bottom plate. The two side plates are vertically fixed to both sides of the bottom plate, and the side plates are vertically fixed to the fixed plate. The detachable part includes a top plate and a detachable plate. The top plate and the detachable plate are vertically arranged. When the fixed part and the detachable part are connected, the top plate and the bottom plate are arranged in parallel, and the detachable plate and the fixed plate are arranged in parallel, thereby forming a rectangular box body. First guide grooves are arranged on the two side plates. The first guide grooves on the two side plates are arranged one by one in correspondence. The two sides of each storage layer are arranged on the corresponding two first guide grooves.
[0006] Preferably, a handle is arranged on the top plate.
[0007] Preferably, the storage layer comprises a storage plate, a bottom support plate and a connecting rod, the storage plate and the bottom support plate are arranged in parallel, the storage plate is fixedly arranged above the bottom support plate through the connecting rod, a sponge layer plate is fixedly arranged between the storage plate and the bottom support plate, the placing cavity is arranged in the sponge layer plate, and the storage plate is provided with a storage hole corresponding to the placing cavity.
[0008] Preferably, the lower end of the connecting rod is provided with a rubber head, and the adjacent storage layers are in contact through the rubber head.
[0009] Preferably, the storage plate and the bottom support plate are both arranged in the shape of a rectangular plate, the length and width dimensions of the storage plate correspond to the cross-sectional dimensions of the box body, the length and width dimensions of the bottom support plate are smaller than the length and width dimensions of the storage plate, and the storage plate is arranged on the corresponding two first guide beams.
[0010] Preferably, the fixed plate is provided with a second guide beam, the two ends of the second guide beam are connected with the end portions of the corresponding two first guide beams, so as to form a U-shaped support beam structure.
[0011] Preferably, the dismounting plate is provided with a fixed beam, the fixed beam is arranged corresponding to the storage plate, the fixed beam is arranged above the corresponding storage plate, and the storage plate is clamped between the fixed beam and the first guide beam.
[0012] Preferably, the side plate is provided with a clamping plate on the side close to the dismounting plate, the dismounting plate is provided with a clamping groove, the clamping plate and the clamping groove are arranged corresponding to each other, and the clamping plate is arranged in the corresponding clamping groove.
[0013] Preferably, the end portion of the clamping plate away from the side plate extends upwards to a limiting block, and the dismounting plate is arranged between the limiting block and the side plate.
[0014] Preferably, the width of the limiting block decreases from bottom to top, and the minimum distance between the limiting block and the side plate is consistent with the thickness of the dismounting plate.
[0015] Compared with the prior art, the utility model has the beneficial effects that: the box body can be opened, a plurality of storage layers for placing test tubes can be arranged at different heights of the box body, the storage quantity of test tubes in a single sub-packaging box can be greatly improved while ensuring convenient storage and taking, and the test tubes can be placed in different areas, so that the test tubes corresponding to different wards or different detections can be placed in different heights or different areas, and the possibility of test tube confusion is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1Structure front view of the blood collection tube sub-packaging box;
[0017] Figure 2 Structure front view of the blood collection tube sub-packaging box;
[0018] Figure 3 Structure front view of the fixed part;
[0019] Figure 4 Structure top view of the fixed part;
[0020] Figure 5 Structure top view of the fixed part;
[0021] Figure 6 Structure side view of the dismounting part;
[0022] Figure 7 Structure bottom view of the dismounting part;
[0023] Figure 8 Structure front view of the storage layer;
[0024] Figure 9 Structure top view of the storage layer.
[0025] Figures indicate:
[0026] 1 - storage layer; 2 - box body; 3 - tube; 11 - storage plate; 12 - bottom support plate; 13 - connecting rod; 14 - storage hole; 15 - rubber head; 21 - bottom plate; 22 - side plate; 23 - fixed plate; 24 - top plate; 25 - dismounting plate; 26 - first guide lug; 27 - handle; 28 - second guide lug; 29 - fixed lug; 30 - clamping plate; 31 - clamping groove; 32 - limiting block; 33 - fixed piece; 34 - adjusting piece; 35 - rotating shaft; 36 - locking hole. DETAILED DESCRIPTION
[0027] The above and other technical features and advantages of the present application will be more apparent from the following detailed description taken in conjunction with the accompanying drawings.
[0028] Embodiment One
[0029] As shown in the drawings, Figures 1 to 7 Figure 1 Structure front view of the blood collection tube sub-packaging box; Figure 2 Structure front view of the blood collection tube sub-packaging box Figure 3 Structure front view of the fixed part; Figure 4 Structure top view of the fixed part; Figure 5 Structure top view of the fixed part; Figure 6 Structure side view of the dismounting part; Figure 7 A structure bottom view of the detachable part.
[0030] The utility model discloses blood sampling test tube sub -packaging box includes deposit layer 1 and box body 2, each deposit layer 1 is sequentially arranged from below to above in the box body 2, each deposit layer 1 is provided with the cavity for placing test tube 3, the box body 2 is the cuboid box type structure as a whole, the box body 2 includes fixed part and detachable part, the fixed part with detachable part is detachably connected, the fixed part includes bottom plate 21, both side plates 22 and a fixed plate 23, the fixed plate 23 is vertically fixed in one end of bottom plate 21, both side plates 22 are vertically fixed in both sides of bottom plate 21, and the side plate 22 is vertically fixed with the fixed plate 23, to form the box body structure of upper end and one side end opening, the detachable part includes top plate 24 and a detachable plate 25, the top plate 24 with detachable plate 25 is vertically set, when the fixed part and detachable part are connected, the top plate 24 with bottom plate 21 is parallelly arranged, the detachable plate 25 with fixed plate 23 is parallelly arranged, to form the box body 2 of cuboid, two first guide beads 26 are provided on both side plates 22, and the first guide bead 26 on both side plates 22 is correspondingly arranged, and both sides of each deposit layer 1 are supported and fixed through the corresponding two first guide beads 26, to realize the placement of each deposit layer 1 in each height in the box body 2.
[0031] Preferably, a handle 27 is arranged on the top plate 24, and after the fixed part and the detachable part are combined and connected, the box body 2 as a whole can be moved through the handle 27, facilitating the movement and transportation of the blood sampling test tube sub-packaging box, and also facilitating the separation of the fixed part and the detachable part.
[0032] The utility model discloses through setting up the box body 2 of openable, can set up the deposit layer 1 for placing test tube 3 at different heights of the box body 2, can greatly improve the deposit quantity of test tube 3 in single sub-packaging box while guaranteeing the convenient deposit and take, and also can realize the partition placement of test tube 3, and the test tube 3 of different wards or different detection is placed in different heights or different areas correspondingly, reduces the possibility of test tube 3 confusion.
[0033] Embodiment two
[0034] As Figure 8 and Figure 9 shown, Figure 8 it is structure front view of the deposit layer; Figure 9 it is structure plan view of the deposit layer.
[0035] The storage layer 1 comprises a storage plate 11, a bottom support plate 12 and a connecting rod 13, the storage plate 11 and the bottom support plate 12 are arranged in parallel, and the storage plate 11 is fixedly arranged above the bottom support plate 12 through the connecting rod 13, a sponge layer plate is fixedly arranged between the storage plate 11 and the bottom support plate 12, the placing cavity is arranged on the sponge layer plate, and the storage hole 14 is arranged on the storage plate 11, the storage hole 14 and the placing cavity are arranged one by one, each test tube 3 is conveniently placed in the placing cavity through the storage hole 14, the placement of the test tube 3 is stable, and collision between adjacent test tubes 3 is avoided.
[0036] Generally, the lower end of the connecting rod 13 is provided with a rubber head 15, and adjacent storage layers 1 are in contact through the rubber head 15, so as to reduce the collision between adjacent storage layers 1.
[0037] The storage plate 11 and the bottom support plate 12 are both arranged in the shape of a rectangular plate, the length and width dimensions of the storage plate 11 correspond to the cross-sectional dimensions of the box body 2, the length and width dimensions of the bottom support plate 12 are smaller than those of the storage plate 11, and the storage plate 11 is arranged on the corresponding two first guide beams 26, so that the first guide beams 26 support the storage layer 1, and the smaller bottom support plate 12 avoids interference with the first guide beams 26, and is more convenient for taking and storing each storage layer 1 in the box body 2.
[0038] Preferably, the second guide beam 28 is arranged on the fixed plate 23, and the two ends of the second guide beam 28 are connected with the end portions of the corresponding two first guide beams 26, so as to form a U-shaped support beam structure, thereby stably supporting the storage plate 11.
[0039] Generally, the fixed beam 29 is arranged on the dismounting plate 25, the fixed beam 29 is arranged one by one on the storage plate 11, the fixed beam 29 is arranged above the corresponding storage plate 11, and the storage plate 11 is clamped between the fixed beam 29 and the first guide beam 26, so as to realize the fixing effect of each storage layer 1 when the box body 2 is connected and fixed, and reduce the up-and-down movement of the storage layer 1 during transportation.
[0040] Embodiment three
[0041] The side plate 22 is provided with a clamping plate 30 on the side close to the dismounting plate 25, the dismounting plate 25 is provided with a clamping groove 31, the clamping plate 30 and the clamping groove 31 are arranged one by one, the clamping plate 30 is arranged in the corresponding clamping groove 31, so as to realize the connection between the dismounting plate 25 and the side plate 22.
[0042] Preferably, the clamping plate 30 is provided as an L-shaped plate, and specifically, an end of the clamping plate 30 away from the side plate 22 extends upwardly to a limiting block 32, and after installation, the dismounting plate 25 is arranged between the limiting block 32 and the side plate 22, thereby ensuring stable connection between the side plate 22 and the dismounting plate 25.
[0043] Generally, the limiting block 32 gradually decreases in width from bottom to top, thereby gradually increasing the distance between the limiting block 32 and the side plate 22 from bottom to top, thereby facilitating downward insertion of the side plate 22 between the limiting block 32 and the side plate 22, and generally, the minimum distance between the limiting block 32 and the side plate 22 is consistent with the thickness of the dismounting plate 25, thereby improving the stability of the dismounting plate 25 between the limiting block 32 and the side plate 22.
[0044] Embodiment Four
[0045] The top of the side plate 22 is provided with a locking portion for fixing the top plate 24 on the top of the side plate 22, thereby achieving detachable connection between the top plate 24 and the side plate 22.
[0046] The locking portion comprises a fixing piece 33 and an adjusting piece 34, the fixing piece 33 is rotatably connected below the adjusting piece 34 through a rotating shaft 35, the fixing piece 33 is fixedly arranged on the top of the side plate 22, the fixing piece 33 and the adjusting piece 34 are both provided as a sheet structure, the top plate 24 is provided with a locking hole 36, the locking hole 36 is provided in a size corresponding to the fixing piece 33, and the adjusting piece 34 is smaller in size than the fixing piece 33.
[0047] During connection, the dismounting portion is first moved horizontally, the clamping plate 30 is inserted into the clamping groove 31, the locking hole 36 is moved above the locking portion, at this time, the dismounting portion is moved downwardly, the dismounting plate 25 is arranged between the limiting block 32 and the side plate 22, the adjusting piece 34 passes through the locking hole 36, the fixing piece 33 is arranged in the locking hole 36, the adjusting piece 34 is clamped and fixed above the top plate 24 by rotating the adjusting piece 34, thereby achieving detachable connection between the top plate 24 and the side plate 22.
[0048] The above description is merely preferred embodiments of the present application, which are only illustrative but not restrictive. It is understood by those skilled in the art that many changes, modifications, and even equivalent can be made to the present application within the spirit and scope of the present application as defined in the claims, and all of them shall fall within the protection scope of the present application.
Claims
1. A blood sampling tube sub-packaging box, characterized in that, The utility model provides a test tube storage box, including deposit layer and box body, each deposit layer is sequentially arranged from bottom to top in the box body, each deposit layer is provided with the depositing cavity for placing test tube, the box body includes fixed part and dismantling part, the fixed part and dismantling part are detachably connected, the fixed part includes bottom plate, both side plates and a fixed plate, the fixed plate is fixedly arranged on one end of the bottom plate, both side plates are fixedly arranged on both sides of the bottom plate, and both side plates are fixedly arranged with the fixed plate, the dismantling part includes top plate and a dismantling plate, the top plate and the dismantling plate are arranged vertically, when the fixed part and dismantling part are connected, the top plate and the bottom plate are arranged in parallel, the dismantling plate and the fixed plate are arranged in parallel, thereby forming the box body of cuboid, two first guide beads are arranged on both side plates, and the first guide bead on both side plates is arranged correspondingly, and both sides of each deposit layer are arranged on the corresponding two first guide beads.
2. The blood-sampling tube dividing and storing box according to claim 1, wherein A handle is arranged on the top plate.
3. The blood-sampling tube dividing and storing box according to claim 1, wherein The deposit layer includes a deposit plate, a bottom support plate and a connecting rod, the deposit plate and the bottom support plate are arranged in parallel, the deposit plate is fixedly arranged above the bottom support plate through the connecting rod, a sponge layer plate is fixedly arranged between the deposit plate and the bottom support plate, the depositing cavity is arranged in the sponge layer plate, a depositing hole is arranged on the deposit plate, and the depositing hole is arranged in communication with the depositing cavity.
4. The blood-sampling test tube sub-packaging box according to claim 3, wherein A rubber head is arranged at the lower end of the connecting rod, and the adjacent deposit layers are in contact through the rubber head.
5. The blood-sampling test tube sub-packaging box according to claim 3, wherein The deposit plate and the bottom support plate are both rectangular plate-shaped members, the length and width dimensions of the deposit plate correspond to the cross-sectional dimensions of the box body, the length and width dimensions of the bottom support plate are smaller than the length and width dimensions of the deposit plate, and the deposit plate is arranged on the corresponding two first guide beads.
6. The blood-sampling test tube sub-packaging box according to claim 5, wherein A second guide bead is arranged on the fixed plate, and the two ends of the second guide bead are connected with the end portions of the corresponding two first guide beads, thereby forming a U-shaped support bead structure.
7. The blood-sampling test tube sub-packaging box according to claim 5, wherein A fixing bead is arranged on the dismantling plate, the fixing bead is arranged in correspondence with the deposit plate, the fixing bead is arranged above the corresponding deposit plate, and the deposit plate is clamped between the fixing bead and the first guide bead.
8. The blood-sampling test tube sub-packaging box according to claim 7, wherein A clamping plate is arranged on the side of the side plate close to the dismantling plate, the dismantling plate is provided with a clamping groove, the clamping plate and the clamping groove are arranged in correspondence, and the clamping plate is arranged in the corresponding clamping groove.
9. The blood-sampling test tube sub-packaging box according to claim 8, wherein The end portion of the clamping plate away from the side plate extends upward to a limiting block, and the dismantling plate is arranged between the limiting block and the side plate.
10. The blood-sampling test tube sub-packaging box according to claim 9, wherein The width of the limiting block decreases from bottom to top, and the minimum distance between the limiting block and the side plate is consistent with the thickness of the dismantling plate.