Antibacterial anesthetic puncture kit
By designing a flip-top and limiting mechanism for the antibacterial anesthesia puncture kit, the problems of bacterial spread and needlestick injuries to medical staff after instrument use are solved, achieving safe and efficient instrument management.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-19
- Publication Date
- 2026-04-10
AI Technical Summary
Existing anesthesia puncture kits have residual pathogens on the surface of the instruments after use, which can easily lead to the spread of bacteria and infection of medical staff. In addition, the sharp ends of the instruments can easily injure people and increase psychological stress.
An antibacterial anesthesia puncture kit was designed. Through the combination of a flip-top cover, a fixing rod, a locking block, and a limiting mechanism, the flip-top cover is restricted from being opened again after the instrument is used, preventing the spread of pathogens and protecting medical staff during transportation. The used instruments are placed in the placement slot for easy classification.
It effectively prevents the spread of germs, reduces the risk of medical staff being stabbed, simplifies the sorting process of instruments, and improves operational safety and efficiency.
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Figure CN120616786B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of anesthetic equipment, in particular to a bacteria-proof anesthetic puncture kit. BACKGROUND
[0002] Anesthesia is a reversible inhibition of central nervous and / or peripheral nervous system function produced by drugs or other methods, the main feature of which is the loss of sensation, especially pain, to achieve the purpose of painless operation, while ensuring the safety of patients during the operation period.
[0003] The prior art usually uses various instruments in the bacteria-proof anesthetic puncture kit to perform anesthetic operations on patients during local or general anesthesia. The instruments used during the anesthetic process are placed in different areas after use to facilitate subsequent classification and processing. However, some instruments (such as puncture needles, syringe needles, and catheters) need to pierce the human body and penetrate into the human body during the anesthetic process. The surface of the instrument after use will have blood or tissue fluid, carrying blood-borne pathogens such as hepatitis B and HIV, which will increase the possibility of contact transmission and cause the spread of bacteria when placed in different areas exposed to the environment. In addition, the end of some instruments is sharp, and the exposed needle can easily injure medical personnel during sorting and transportation, leading to infection. Even if there is no infection, post-injury detection and preventive medication (such as HIV blocking) will cause long-term psychological stress to medical personnel. SUMMARY
[0004] The purpose of the present application is to provide a bacteria-proof anesthetic puncture kit to solve the problems raised in the background.
[0005] To achieve the above-mentioned purpose, the present application provides the following technical solution: a bacteria-proof anesthetic puncture kit, comprising a storage box, two flip covers hinged to the storage box through rotating rods, a handrail rotatably connected to the surface of the flip cover through a rotating column, a bearing plate arranged inside the storage box, and a plurality of placement slots opened on the surface of the bearing plate.
[0006] The storage box is internally provided with two U-shaped sliding rods arranged transversely and elastically by springs, and the sliding rods can move up and down. The two sliding rods are below the bearing plate to support the bearing plate. The side of the sliding rod close to the rotating rod is inclined. The surface of the rotating rod is fixedly connected with an extrusion block with an arc-shaped side and penetrating through the inner wall of the storage box. The extrusion block is used to extrude the sliding rod to move when rotating. The surface of the sliding rod is fixedly connected with a fixed rod. The inner wall of the storage box is provided with a groove corresponding to the position of the fixed rod. The surface of the fixed rod is fixedly connected with a clamping block which is telescopic and has an inclined end. The surface of the flip cover close to the groove is fixedly connected with a hook which is L-shaped and has an inclined end. The hook and the clamping block are arranged in a staggered manner.
[0007] The inner wall surface of the storage box is provided with a limiting mechanism for limiting the slide rod when the turnover cover is fully opened.
[0008] As a further scheme of the present application, the limiting mechanism comprises two limiting blocks respectively arranged at the corresponding positions of the two slide rods on the front and rear inner walls of the storage box, the ends of the two limiting blocks are retractable and are beveled, and the surface of the slide rod is provided with limiting holes arranged in a staggered manner with the limiting blocks.
[0009] As a further scheme of the present application, the front and rear inner walls of the storage box are elastically and slidably connected with two U-shaped push rods, the two ends of each push rod are connected with the bottom of a limiting block, the front and rear sides of the inner wall of the storage box are rotatably connected with drive rods through drive blocks, the drive rods are used to drive the push rods to move downward when the drive rods rotate, the drive blocks extend through the storage box to the outside of the storage box, and the surface of the drive block is provided with a special-shaped release groove.
[0010] As a further scheme of the present application, the surface of the rotating column near the side of the fixed rod is provided with a plurality of clamping grooves arranged at equal angles and beveled on one side, the inner wall of the turnover cover is slidably connected with a clamping rod having a retractable upper end and beveled on both upper and lower ends at the position corresponding to the rotating column, the bottom of the clamping rod extends through the turnover cover into the recess, and the fixed rod can extrude the clamping rod to move upward when the fixed rod and the clamping block move.
[0011] As a further scheme of the present application, the surface of the inner wall of the turnover cover is provided with a sliding groove at the position corresponding to the clamping rod, the inner wall surface of the sliding groove is provided with an observation port extending through the outside of the turnover cover through a transparent plate, and the surface of the clamping rod is fixedly connected with a warning block sliding in the sliding groove, the warning block moves synchronously to the position of the observation port when the clamping rod moves upward into the clamping groove.
[0012] As a further scheme of the present application, the surface of the turnover cover is fixedly connected with a blocking rod at the position corresponding to the hand rod.
[0013] As a further scheme of the present application, the inner wall of the storage box is fixedly connected with limiting rods at the positions corresponding to the two sides of the drive rod, and the two limiting rods are respectively located below the two slide rods.
[0014] As a further scheme of the present application, the drive rods on the front and rear sides are fixedly connected with a synchronous rod.
[0015] As a further scheme of the present application, the inner wall surface of the storage box is fixedly connected with a stop block below the position corresponding to the drive rod, and the stop block is used to limit the rotation of the drive rod.
[0016] As a further scheme of the present application, the surfaces of the two turnover covers are respectively provided with limiting plates and limiting blocks, the limiting plates are fixedly connected with the turnover covers, the limiting blocks are slidably connected with the turnover covers, and the limiting plates and the limiting blocks are used to stably close the two turnover covers.
[0017] Compared with the prior art, the present application has the following advantages:
[0018] In the process of anesthesia for patients, the fixed rod, the clamping block and the hook are used to limit the turnover cover when it is opened after use and closed again, so as to avoid the opening of the turnover cover after use, the exposure of pathogens and the spread caused thereby, and the limited opening of the turnover cover can avoid the sharp instruments such as exposed needles from injuring medical staff during transportation and transfer of the instruments, the used instruments are placed in the placing groove, so that the sorting in the later stage is facilitated, the sorting difficulty is reduced, the sorting efficiency is improved, and the sharp instruments such as needles are blocked by other instruments, so that the probability of injury of medical staff is increased.
[0019] In the process of opening of the turnover cover, the sliding rod is limited by the limiting hole and the limiting block, and then when the turnover cover is closed after anesthesia, the sliding rod, the fixed rod and the clamping block remain stationary under the action of the limiting block, and the clamping block and the hook can be stably clamped to ensure the limitation of the turnover cover.
[0020] When the used storage box is transported to a specific recycling point, the driving block and the driving rod are rotated by using the release block which is the same shape as the special-shaped release slot, and the driving rod can push the push rod and the limiting block to move downward synchronously under the action of the spring force, and after the end of the limiting block moves out of the limiting hole, the sliding rod will return to the original position under the action of the spring force, the clamping block and the hook are separated, and the turnover cover can be opened again, so that the operator can sort and classify the used instruments and other operations, the release slot is set to be special-shaped and needs to be rotated by the corresponding release block, so that the person who can open the storage box is limited, the unnecessary opening times of the storage box are reduced, and the spread of bacteria is avoided. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is a schematic view of the overall structure of the present application;
[0022] Figure 2 It is a schematic view of the overall structure of the present application; Figure 1 It is a schematic view of the structure at position A in the present application;
[0023] Figure 3 It is a schematic view of the structure at position A in the present application; Figure 1 It is a schematic view of the structure at position B in the present application;
[0024] Figure 4 It is a schematic view of the overall structure of the present application;
[0025] Figure 5 It is a schematic view of the overall structure of the present application;
[0026] Figure 6Structure schematic view of position relation of bearing plate, slide bar and push rod in the application;
[0027] Figure 7 For Figure 6 Structure schematic view at C in the middle;
[0028] Figure 8 For Figure 6 Structure schematic view at D in the middle;
[0029] Figure 9 Structure schematic view of storage box and turnover cover after being cut open in the application;
[0030] Figure 10 For Figure 9 Structure schematic view at E in the middle;
[0031] Figure 11 For Figure 9 Structure schematic view at F in the middle;
[0032] Figure 12 Structure schematic view of turnover cover after being cut open in the application;
[0033] Figure 13 For Figure 12 Structure schematic view at G in the middle.
[0034] In the drawings, the components represented by each reference numeral are as follows:
[0035] 1-storage box, 2-rotation rod, 3-turnover cover, 4-rotation column, 5-hand carrying rod, 6-bearing plate, 7-placing groove, 8-slide bar, 9-squeezing block, 10-fixing rod, 11-groove, 12-clamping block, 13-hook, 14-limiting block, 15-limiting hole, 16-push rod, 17-driving block, 18-driving rod, 19-releasing groove, 20-clamping groove, 21-clamping rod, 22-sliding groove, 23-observation port, 24-warning block, 25-blocking rod, 26-limiting rod, 27-synchronous rod, 28-stop block, 29-limiting plate, 30-limiting block. DETAILED DESCRIPTION
[0036] Please refer to Figures 1-13 The application provides a technical scheme: an antibacterial anesthesia puncture bag, comprising a storage box 1, two turnover covers 3 hingedly connected with the storage box 1 through rotation rods 2, a hand carrying rod 5 rotationally connected to the surface of the turnover cover 3 through a rotation column 4, a bearing plate 6 arranged in the inside of the storage box 1, and a plurality of placing grooves 7 opened on the surface of the bearing plate 6;
[0037] The storage box 1 is internally provided with two U-shaped slide rods 8 which are transversely elastically arranged by springs and can move up and down, the two slide rods 8 are below the bearing plate 6 to support the bearing plate 6, the side close to the rotating rod 2 of the slide rod 8 is a slope, the surface of the rotating rod 2 is fixedly connected with an extrusion block 9 which has an arc-shaped side and penetrates through the inner wall of the storage box 1, the extrusion block 9 is used to extrude the slide rod 8 to move when rotating, the surface of the slide rod 8 is fixedly connected with a fixed rod 10, the inner wall of the storage box 1 is provided with a groove 11 at the position corresponding to the fixed rod 10, the surface of the fixed rod 10 is fixedly connected with a clamping block 12 which is telescopic and has a slope at the end, the surface of the side close to the groove 11 of the turnover cover 3 is fixedly connected with a hook 13 which is L-shaped and has a slope at the end, the hook 13 and the clamping block 12 are arranged in a staggered manner;
[0038] The inner wall of the storage box 1 is provided with a limiting mechanism for limiting the slide rod 8 when the turnover cover 3 is completely opened;
[0039] During the anesthesia of the patient, first, the turnover cover 3 is opened to expose the instruments on the surface of the bearing plate 6 in the placing groove 7, so that the instruments are convenient to take, when the turnover cover 3 is opened, the turnover cover 3 drives the rotating rod 2 and the extrusion block 9 to rotate synchronously, the extrusion block 9 extrudes and pushes the slide rod 8, the fixed rod 10 and the clamping block 12 to move synchronously, the clamping block 12 moves to the side close to the hook 13, then after the turnover cover 3 is completely opened, the limiting mechanism limits the slide rod 8, the clamping block 12 is at the initial position of the hook 13, then after the anesthesia is completed, the used instruments are placed in the placing groove 7 again, the two turnover covers 3 are combined again, when the hook 13 moves to the position of the clamping block 12, the hook 13 extrudes and shrinks the clamping block 12 and passes through the clamping block 12, the clamping block 12 and the hook 13 are clamped to limit the turnover cover 3, so that the used turnover cover 3 is prevented from being opened again, so that the pathogens are prevented from being exposed and diffused, and the turnover cover 3 is limited to be opened, so that the sharp instruments such as exposed needles are prevented from pricking the medical staff when the instruments are transported and transferred, the used instruments are placed in the placing groove 7 again, so that the instruments are convenient to sort later, the sorting difficulty is reduced, the sorting efficiency is improved, and the sharp instruments such as needles are blocked by other instruments, so that the probability of the medical staff being pricked is increased.
[0040] As a further scheme of the present application, the limiting mechanism comprises two limiting blocks 14 which are respectively arranged at the positions corresponding to the two slide rods 8 on the front and rear inner walls of the storage box 1, the end of each limiting block 14 is telescopic and has a slope, and the surface of the slide rod 8 is provided with a limiting hole 15 which is arranged in a staggered manner with the limiting block 14;
[0041] In the process of opening the turnover cover 3, the rotating rod 2 and the extrusion block 9 are synchronously rotated under the driving of the turnover cover 3, the extrusion block 9 extrudes and pushes the sliding rod 8 to move, when the turnover cover 3 is completely opened, the limiting hole 15 moves to the position of the limiting block 14, the end of the limiting block 14 extends and moves into the limiting hole 15 to limit the sliding rod 8, then when the turnover cover 3 is combined after anesthesia, the sliding rod 8, the fixed rod 10 and the clamping block 12 remain stationary under the action of the limiting block 14, the clamping block 12 and the hook 13 can be stably clamped, and the limitation of the turnover cover 3 is ensured.
[0042] When the used storage box 1 is recycled, the turnover cover 3 is still difficult to open, which is not convenient for recycling and sorting, and as a further scheme of the application, the front and rear inner walls of the storage box 1 are elastically and slidably connected with two U-shaped pushing rods 16, the two ends of the pushing rods 16 are connected with the bottom of the limiting block 14, the front and rear sides of the inner wall of the storage box 1 are rotatably connected with driving rods 18 through driving blocks 17, the driving rods 18 are used to drive the pushing rods 16 to move downward when rotating, the driving blocks 17 extend through the storage box 1 to the outside of the storage box 1, and a special-shaped release groove 19 is formed in the surface of the driving block 17.
[0043] When the used storage box 1 is transported to a specific recycling point, a release block with the same shape as the special-shaped release groove 19 is used to rotate the driving block 17 and the driving rod 18, the driving rod 18 can push the pushing rod 16 and the limiting block 14 to move downward synchronously when rotating, after the end of the limiting block 14 moves out of the limiting hole 15, the sliding rod 8 will return to the original position under the action of the spring force, the clamping block 12 and the hook 13 are separated, and the turnover cover 3 can be reopened, which is convenient for the operator to sort and classify the used instruments and the like, the release groove 19 is formed in a special shape and needs to be rotated by a corresponding release block, which limits the personnel who can open the storage box 1, reduces the unnecessary opening times of the storage box 1, and avoids the spread of bacteria.
[0044] When a patient is anesthetized, the used storage box 1 is difficult to distinguish from the unused storage box 1, and as a further scheme of the application, a plurality of clamping grooves 20 are formed in the surface of the rotating column 4 close to one side of the fixed rod 10, the clamping grooves 20 are arranged at equal angles and have an inclined surface on one side, a clamping rod 21 is slidably connected to the inner wall of the turnover cover 3 corresponding to the position of the rotating column 4, the upper end of the clamping rod 21 is telescopic and the upper and lower ends of the clamping rod 21 are inclined surfaces, the bottom of the clamping rod 21 extends through the turnover cover 3 into the recess 11, and the fixed rod 10 and the clamping block 12 can extrude the clamping rod 21 to move upward when moving.
[0045] When the patient is anesthetized, the turnover cover 3 opens the sliding cover and the fixed rod 10 and the clamping block 12 move, the fixed rod 10 moves to the lower side of the initial position of the clamping rod 21, and then when the turnover cover 3 is combined, the clamping rod 21 moves to the clamping groove 20 under the extrusion of the fixed rod 10 to limit the rotating column 4, and then when the hand-held rod 5 is rotated, the clamping groove 20 can extrude the end of the clamping rod 21 to shrink, and the clamping rod 21 and the clamping groove 20 can limit the rotating column 4 and the hand-held rod 5 in a single direction, and the lifted hand-held rod 5 cannot be rotated and put down again, on the one hand, it is convenient for medical staff to transfer the used storage box 1, and on the other hand, it is convenient for medical staff to distinguish between used and unused storage boxes 1.
[0046] During the process of anesthetizing the patient, when the operation is relatively busy, the used storage box 1 and the unused storage box 1 are placed together, and the taking error may still occur, as a further scheme of the present application, a sliding groove 22 is formed in the inner wall surface of the turnover cover 3 corresponding to the position of the clamping rod 21, the inner wall surface of the sliding groove 22 is provided with an observation port 23 penetrating the outer side of the turnover cover 3 through a transparent plate, and the surface of the clamping rod 21 is fixedly connected with a warning block 24 sliding in the sliding groove 22, when the clamping rod 21 moves upwardly to the clamping groove 20, the warning block 24 moves synchronously to the position of the observation port 23;
[0047] During the process of anesthetizing the patient, when the turnover cover 3 is combined after the instruments in the storage box 1 are used, the clamping rod 21 moves upwardly to the clamping groove 20 under the extrusion of the fixed rod 10, and the clamping rod 21 drives the warning block 24 to move upwardly to the position of the observation port 23 in the sliding groove 22, the surface of the warning block 24 is coated with a conspicuous color, which is beneficial to enable medical staff to judge the use of the storage box 1 in a very short time when taking, and avoid the mistake of taking.
[0048] When the used storage box 1 is transferred, the rotation angle of the hand-held rod 5 is too large, which is easy to make the two hand-held rods 5 staggered, and inconvenient for hand-held operation, as a further scheme of the present application, a blocking rod 25 is fixedly connected to the surface of the turnover cover 3 corresponding to the position of the hand-held rod 5;
[0049] When the used storage box 1 is transferred, the blocking rod 25 can block the hand-held rod 5, so that the hand-held rods 5 on both sides can be rotated to the corresponding positions, which is convenient for hand-held operation, avoids that the rotation angle of the hand-held rod 5 is too large, so that the hand-held rods 5 on both sides are misaligned, which is inconvenient for hand-held operation, and the angle of the hand-held rod 5 cannot be adjusted back because the rotating column 4 is limited by the clamping rod 21.
[0050] In the process of anesthesia to the patient, when the sliding rod 8 moves, the limiting hole 15 moves to the position of the limiting block 14, the sliding rod 8 moves downward under the gravity of the bearing plate 6, which affects the subsequent removal, as a further scheme of the application, the inner wall of the storage box 1 is fixedly connected with a limiting rod 26 corresponding to the two sides of the driving rod 18, and the two limiting rods 26 are located below the two sliding rods 8;
[0051] In the process of anesthesia to the patient, when the sliding rod 8 moves, the limiting hole 15 moves to the position of the limiting block 14, the sliding rod 8 moves downward under the gravity of the bearing plate 6, which affects the subsequent removal, as a further scheme of the application, the inner wall of the storage box 1 is fixedly connected with a limiting rod 26 corresponding to the two sides of the driving rod 18, and the two limiting rods 26 are located below the two sliding rods 8;
[0052] When the used storage box 1 is opened, the restrictions of the front and rear sides of the turnover cover 3 cannot be removed at the same time, as a further scheme of the application, a synchronous rod 27 is fixedly connected between the driving rods 18 on the front and rear sides;
[0053] When the used storage box 1 is opened, the driving rod 18 is driven to rotate by the synchronous rod 27 when the driving block 17 on one side is removed, so that the driving rod 18 on the other side is synchronously rotated, which can quickly remove the restriction of the turnover cover 3 and improve the operation efficiency.
[0054] When the used storage box 1 is opened, the driving rod 18 is difficult to keep vertical when rotating, as a further scheme of the application, a stop block 28 is fixedly connected to the inner wall surface of the storage box 1 below the driving rod 18, and the stop block 28 is used to limit the rotation of the driving rod 18;
[0055] When the used storage box 1 is opened, the driving rod 18 is blocked by the stop block 28 when rotating, so that the driving rod 18 can be kept in a vertical state to push the pushing rod 16, and the removal of the sliding rod 8 is ensured.
[0056] In the process of anesthesia to the patient, the turnover cover 3 of the unused storage box 1 is not restricted, and the turnover cover 3 is easily opened when the storage box 1 is lifted by the hand-held rod 5, as a further scheme of the application, a limiting plate 29 and a limiting block 30 are arranged on the surfaces of the two turnover covers 3 respectively, the limiting plate 29 is fixedly connected with the turnover cover 3, the limiting block 30 is slidingly connected with the turnover cover 3, and the limiting plate 29 and the limiting block 30 are used to stably close the two turnover covers 3;
[0057] In the process of anesthetizing the patient, the unused storage box 1 is limited by the limiting block 30 and the limiting plate 29, the storage box 1 can be transferred by the carrying rod 5, and the closure of the turnover cover 3 is ensured.
Claims
1. An antibacterial type of anesthesia puncture kit, comprising a storage box (1), two flip covers (3) hinged to the storage box (1) by rotating rods (2), a hand bar (5) rotatably connected to the surface of the flip cover (3) by a rotating column (4), a bearing plate (6) arranged inside the storage box (1), and a plurality of placing grooves (7) opened on the surface of the bearing plate (6); characterized in that: the inside of the storage box (1) is provided with two U-shaped slide rods (8) arranged transversely and elastically, and the slide rods (8) can move up and down, the two slide rods (8) are below the bearing plate (6) to support the bearing plate (6), the side of the slide rod (8) close to the rotating rod (2) is a slope, the surface of the rotating rod (2) is fixedly connected with an extrusion block (9) with an arc-shaped side and penetrating through the inner wall of the storage box (1), the extrusion block (9) is used for extruding the slide rod (8) to move when rotating, the surface of the slide rod (8) is fixedly connected with a fixed rod (10), the inner wall of the storage box (1) is provided with a groove (11) corresponding to the position of the fixed rod (10), the surface of the fixed rod (10) is fixedly connected with a clamping block (12) which is telescopic and has a slope at the end, the surface of the flip cover (3) close to the groove (11) is fixedly connected with an L-shaped hook (13) with a slope at the end, and the hook (13) and the clamping block (12) are arranged in a staggered manner. The inner wall surface of the storage box (1) is provided with a limiting mechanism for limiting the slide rod (8) when the flip cover (3) is completely opened.
2. The bacteria-proof anesthetic puncture kit according to claim 1, wherein: The limiting mechanism comprises two limiting blocks (14) arranged respectively on the front and rear inner walls of the storage box (1) corresponding to the positions of the two slide rods (8), the ends of the two limiting blocks (14) are telescopic and have a slope, and the surface of the slide rod (8) is provided with limiting holes (15) arranged in a staggered manner.
3. The bacteria-proof anesthetic puncture kit according to claim 2, wherein: The front and rear inner walls of the storage box (1) are elastically and slidably connected with two U-shaped push rods (16) having two ends connected with the bottoms of the limiting blocks (14), respectively, the front and rear sides of the inner wall of the storage box (1) are rotatably connected with drive rods (18) through drive blocks (17), the drive rods (18) are used for driving the push rods (16) to move downward when rotating, the drive blocks (17) penetrate through the storage box (1) and extend to the outside of the storage box (1), and the surface of the drive block (17) is provided with a special-shaped release groove (19).
4. The bacteria-proof anesthetic puncture kit according to claim 1, wherein: The surface of the rotating column (4) close to the fixed rod (10) is provided with a plurality of clamping grooves (20) arranged at equal angles and having a slope at one side, the inner wall of the flip cover (3) is slidably connected with a clamping rod (21) having a telescopic upper end and slopes at both upper and lower ends corresponding to the position of the rotating column (4), the bottom of the clamping rod (21) penetrates through the flip cover (3) and extends into the groove (11), and the fixed rod (10) and the clamping block (12) can extrude the clamping rod (21) to move upward when moving.
5. The bacteria-proof anesthetic puncture kit according to claim 4, wherein: The inner wall surface of the turnover cover (3) is provided with a sliding groove (22) corresponding to the position of the clamping rod (21), the inner wall surface of the sliding groove (22) is provided with an observation port (23) penetrating the outer side of the turnover cover (3) through a transparent plate, the surface of the clamping rod (21) is fixedly connected with a warning block (24) sliding in the sliding groove (22), and when the clamping rod (21) moves upward to the clamping groove (20), the warning block (24) moves synchronously to the position of the observation port (23).
6. The bacteria-proof anesthetic puncture kit according to claim 1, wherein: The surface of the turnover cover (3) is fixedly connected with a blocking rod (25) corresponding to the position of the hand-held rod (5).
7. The bacteria-proof anesthetic puncture kit according to claim 3, wherein: The inner wall of the storage box (1) is fixedly connected with a limiting rod (26) corresponding to both sides of the driving rod (18), and the two limiting rods (26) are located below the two sliding rods (8) respectively.
8. The bacteria-proof anesthetic puncture kit according to claim 3, wherein: The driving rods (18) on the front and back sides are fixedly connected with a synchronous rod (27).
9. The bacteria-proof anesthetic puncture kit according to claim 3, wherein: The inner wall surface of the storage box (1) is fixedly connected with a stop block (28) corresponding to the lower side of the driving rod (18), and the stop block (28) is used for limiting the rotation of the driving rod (18).
10. The bacteria-proof anesthetic puncture kit according to claim 1, wherein: The surfaces of the two turnover covers (3) are respectively provided with a limiting plate (29) and a limiting block (30), the limiting plate (29) is fixedly connected with the turnover cover (3), the limiting block (30) is slidingly connected with the turnover cover (3), and the limiting plate (29) and the limiting block (30) are used for stably closing the two turnover covers (3).
Citation Information
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