Highly antimicrobial suture packaging device

By designing a highly antibacterial suture packaging device and utilizing the collaborative work of the feeding component and the sterilization component, the stability and antibacterial problems of the suture when it is packaged in an inner bag are solved, and the sealing stability and sterilization effect are improved.

CN118358835BActive Publication Date: 2025-10-17JIANGXI LONGTENG BIOLOGICAL HIGH-TECH CO LTD
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Patent Information

Application Number
CN202410401401.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-04-03
Publication Date
2025-10-17
Estimated Expiration
2044-04-03

AI Technical Summary

Technical Problem

Existing suture inner sealing bags have poor stability during packaging and are easily deflected, which affects the sealing effect and reduces the antibacterial performance.

Method used

A highly antibacterial suture packaging device was designed, which includes a feeding component, a stabilizing component and a sterilizing component. The coordinated use of a conveying wheel, an extrusion belt and sterilizing gas ensures the stability and sterilization effect of the inner sealed bag during packaging in the sealing machine.

Benefits of technology

The stability of the inner sealed bag during sealing in the sealing machine is improved, the risk of the suture line contacting the outside world is reduced, the antibacterial performance of the suture line is ensured, and efficient sealing and sterilization effects are achieved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of suture packaging, in particular to a high-antibacterial suture packaging device, which comprises a machine body, an observation window is fixedly installed on the surface of the machine body, a fixed shell is fixedly installed on the top of the machine body, a sealing machine, a sterilization feeding mechanism and an inner sealing bag are arranged in the machine body; when the inner sealing bag is placed on the multiple conveying wheels on one side, the inner sealing bag can be effectively supported; when the inner sealing bag enters the machine body, the extrusion belt driven by the motor is close to the conveying wheel, the inner sealing bag is stably extruded, the extrusion spring is in contact with the conveying wheel, so that the pressure degree is buffered, the risk of damaging the suture is significantly reduced, in addition, the cooperative work of the multiple conveying wheels and the two extrusion belts ensures the high stability of the sealing process, the sealing effect is prevented from being affected by the deviation of the inner sealing bag, the suture is prevented from contacting with the external air, and the antibacterial property is maintained.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of suture packaging, in particular to a high-antibacterial suture packaging device. BACKGROUND

[0002] The packaging structure of the existing suture product (which can include a suture needle) generally includes two parts of an inner sealing bag and an outer packaging bag, wherein the inner sealing bag is made of an aluminum plastic film material, and the suture is packaged in the bag;

[0003] When packaging the inner sealing bag, a medical sealing machine can be used to package the inner sealing bag, as shown in the reference website [https: / / www.bilibili.com / video / BV13h411M788 / ?spm_id_from=333.337.search-card.all.click&vd_source=5623db1dc5adb6a9c3501a61b836d0f1];

[0004] When packaging the suture inner sealing bag, the side of the inner sealing bag needs to be sealed by a medical sealing machine to complete the packaging, but the side of the inner sealing bag is located on the outside, and the stability is poor during packaging. If the packaging deviates during packaging, the sealing effect will be affected, which will affect the antibacterial performance of the suture due to the contact with the outside world. SUMMARY

[0005] The purpose of the present application is to solve the above problems and provide a high-antibacterial suture packaging device to improve the problem that when packaging the suture inner sealing bag, the side of the inner sealing bag needs to be sealed by a medical sealing machine to complete the packaging, but the side of the inner sealing bag is located on the outside, and the stability is poor during packaging. If the packaging deviates during packaging, the sealing effect will be affected, which will affect the antibacterial performance of the suture due to the contact with the outside world.

[0006] The application achieves the above-mentioned purpose through the following technical scheme. The high-antibacterial suture packaging device comprises a machine body, an observation window fixedly installed on the surface of the machine body, a fixed shell fixedly installed on the top of the machine body, a sealing machine and a sterilization feeding mechanism arranged in the machine body and used for reducing the breeding of bacteria when the suture is packaged in an inner sealing bag. The sterilization feeding mechanism comprises a feeding assembly arranged on one side of the machine body, a stabilizing assembly arranged on one side of the feeding assembly, and a sterilization assembly arranged on the inner top wall of the machine body. The feeding assembly comprises shielding plates fixedly installed on both sides of the machine body, and a fixed frame fixedly installed in the machine body. The fixed frame extends out of the machine body on both sides, is located on one side of the sealing machine, and is rotatably provided with a plurality of conveying wheels on one side. The fixed frame is drivingly provided with a conveying belt inside. One side of each of the plurality of conveying wheels is in contact with the conveying belt. The inner sealing bag can be stably supported and conveyed on one side of the sealing machine by the feeding assembly, so that the inner sealing bag can be stably sealed by the sealing machine. The feeding assembly can be used in cooperation with the stabilizing assembly to further stabilize the inner sealing bag when passing through the sealing machine, avoid the deviation of the inner sealing bag, and thus affect the sealing effect. When the inner sealing bag passes through the sealing machine, the sterilization assembly continuously releases sterilization gas into the machine body to sterilize the machine body and reduce the bacteria in the machine body, thereby further reducing the pollution of the inner sealing bag during sealing. The inner sealing bag can be placed on one side of the plurality of conveying wheels, and the inner sealing bag can be stably conveyed through the sealing machine by the conveying wheels, thereby improving the stability of the inner sealing bag when passing through the sealing machine.

[0007] Preferably, the feeding assembly further comprises a plurality of rubber strips fixedly installed on the surface of the conveying wheels. One side of each of the plurality of rubber strips is arranged in an arc shape. When the plurality of conveying wheels convey the inner sealing bag, the plurality of rubber strips arranged on the surface can increase the frictional force between the inner sealing bag and the plurality of conveying wheels, thereby more stably driving the inner sealing bag to move on the surface of the plurality of conveying wheels.

[0008] Preferably, the sealing machine is provided with a guide frame on both sides. The guide frames extend out of the machine body on the sides away from each other. The guide frames are fixedly connected with the shielding plates respectively, so that the inner sealing bag to be sealed is stably guided into the machine body by the guide frames, the inner sealing bag can be stably sealed, and the sealing of the inner sealing bag is more convenient.

[0009] Preferably, the stabilizing assembly comprises a support frame fixedly installed on the inner top wall of the body, a motor is fixedly installed in the inner of the fixed shell, the output end of the motor extends to the inside of the body and is located on one side of the support frame, a screw rod is fixedly connected to the output end of the motor, the other end of the screw rod is rotatably connected with the support frame, an activity plate is slidably connected in the inside of the support frame, the screw rod penetrates through the activity plate, the screw rod is threadedly connected with the activity plate, the bottom of the activity plate is fixedly connected with two movable rods, the other ends of the two movable rods penetrate through the support frame and are fixedly connected with the same driving plate, two extrusion belts are arranged on the bottom of the driving plate, and the two extrusion belts are located above the plurality of conveying wheels.

[0010] Preferably, the stabilizing assembly further comprises two guide rods slidably installed on one side of the driving plate, one support frame is fixedly connected to one side of the two guide rods, springs are sleeved outside the two guide rods, and the two ends of the springs are fixedly connected with the support frame and the driving plate respectively, movable wheels are rotatably connected to the two sides of the support frame, two extrusion belts are in transmission connection with the surfaces of the two movable wheels, and the two extrusion belts are located on the two sides of the support frame respectively, the extrusion belts are synchronously rotated when being in contact with the inner sealing bag, the two movable wheels corresponding to the extrusion belts are synchronously rotated, when the two extrusion belts are in contact with the plurality of conveying wheels, the extrusion belts can synchronously drive the corresponding support frame to move upwards, so that the support frame synchronously moves the two guide rods, and the two springs corresponding to the support frame are extruded, the downward pressing degree of the extrusion belts is buffered by the springs, and the probability of damaging the suture line when the extrusion belts extrude the inner sealing bag is reduced.

[0011] Preferably, the stabilizing assembly further comprises a driving rod fixedly installed at one end of the two movable wheels, a plurality of supporting rods are fixedly connected to the surface of the driving rod, and a plurality of stirring plates are fixedly connected to the two sides of the plurality of supporting rods, when the two movable wheels are rotated, the two movable wheels can synchronously drive the corresponding driving rod to rotate, so that the driving rod synchronously drives the corresponding plurality of supporting rods to move, the plurality of supporting rods synchronously drive the plurality of stirring plates to move, and the stirring plates agitate the airflow around the fixed frame, so that the sterilizing assembly is used in cooperation, and the sterilizing gas better sterilizes the inside of the body.

[0012] Preferably, the stirring plate is arranged in a wave shape, and a plurality of air holes are formed in the surface of the stirring plate; the wave-shaped stirring plate can increase the convenience of contact between the stirring plate and air, so that the stirring effect of the stirring plate on air is better; the air holes in the surface of the stirring plate can allow air to pass through the air holes when the stirring plate moves, thereby further improving the stirring effect on air.

[0013] Preferably, the sterilization assembly comprises a storage barrel fixedly installed in the fixed shell, an air pump fixedly installed in the inside of the fixed shell, an air inlet pipe fixedly connected to one side of the air pump, the other end of the air inlet pipe in communication with the storage barrel, a conveying pipe fixedly connected to the output end of the air pump, the other end of the conveying pipe extending to the inside of the machine body and fixedly connected with a guide pipe, and the guide pipe being located on the inner top wall of the machine body; during use of the machine body, the sterilization gas in the storage barrel can be pumped out by the air pump and conveyed to the inside of the guide pipe, and the sterilization gas can be sprayed in the inside of the machine body by the guide pipe to continuously sterilize the inside of the machine body, thereby reducing the contact between the inner sealing bag and bacteria during packaging.

[0014] Preferably, a plurality of gas nozzles are fixedly connected to the two sides of the guide pipe, and the plurality of gas nozzles are uniformly distributed on the two sides of the guide pipe; the plurality of gas nozzles uniformly arranged on the two sides of the guide pipe can uniformly spray the gas in a conical range, thereby improving the coverage range of the gas in the inside of the machine body and further improving the contact area of the sterilization gas.

[0015] Preferably, a movable cover is hingedly installed on one side of the machine body, and the movable cover is located on one side of the sealing machine; the sealing machine is slidingly installed in the inside of the machine body; when the sealing machine needs to be overhauled, the machine body on one side can be opened by rotating the movable cover, and the sealing machine can be slidingly taken out to facilitate overhauling and cleaning of the sealing machine.

[0016] The beneficial effects of the present application are:

[0017] 1. When the inner sealing bag is placed on the surfaces of the plurality of conveying wheels, the conveying wheels can effectively support the inner sealing bag; as the inner sealing bag enters the machine body, the two extrusion belts driven by the motor approach the conveying wheels to stably extrude the inner sealing bag, thereby enhancing the stability of the inner sealing bag when passing through the sealing machine; during the contact between the extrusion belts and the conveying wheels, the extrusion belts synchronously drive the corresponding support frames to move upward, thereby synchronously moving the two guide rods and extruding the two springs; such a design allows the spring to buffer the downward pressure of the extrusion belt, greatly reduces the risk of damaging the sutures during the extrusion process, and ensures the high stability of the inner sealing bag when the sealing machine seals, thereby avoiding the influence of the sealing effect caused by the deviation of the inner sealing bag, preventing the sutures in the inner sealing bag from contacting with the external air, and ensuring the antibacterial property of the sutures;

[0018] 2. When the two movable wheels rotate, the two movable wheels can synchronously drive the corresponding driving rods to rotate, so that the driving rods synchronously drive the corresponding multiple support rods to move, and the multiple support rods synchronously drive the multiple stirring plates to move, so that the stirring plates stir the airflow around the fixed frame, and are used in conjunction with the sterilization component to enable the sterilization gas to better sterilize the inside of the body. The wavy-shaped stirring plate can increase the contact convenience between the stirring plate and the air, so that the stirring plate has a better stirring effect on the air. The gas can pass through the pores on the surface of the stirring plate when the stirring plate moves, thereby further improving the stirring effect on the gas.

[0019] 3. When the machine is in use, the sterilizing gas inside the storage barrel can be extracted and transported to the inside of the guide tube through the air pump, and the sterilizing gas can be sprayed inside the machine through the guide tube to continuously sterilize the inside of the machine, which can reduce the contact between the inner sealing bag and bacteria during packaging. When the extrusion belt rotates, the synchronous drive rod rotates, so that the drive rod synchronously drives the corresponding multiple support rods to move, and the multiple support rods synchronously drive the multiple stirring plates to move, so that the stirring plates stir the airflow around the fixed frame, and are used in conjunction with the sterilization component to enable the sterilizing gas to better sterilize the inside of the machine. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the main structure of the present invention;

[0021] Figure 2 It is a schematic diagram of the movable cover structure of the present invention;

[0022] Figure 3 Schematic diagram of the internal structure of the body of the present invention;

[0023] Figure 4 It is a schematic diagram of the fixing frame structure of the present invention;

[0024] Figure 5 It is a schematic diagram of the conveyor wheel and conveyor belt structure of the present invention;

[0025] Figure 6 Schematic diagram of the extruded belt structure of the present invention;

[0026] Figure 7 It is a schematic diagram of the structure of the stabilizing assembly of the present invention;

[0027] Figure 8 Schematic diagram of the driving rod structure of the present invention;

[0028] Figure 9 Schematic diagram of the structure of the sterilization component of the present invention;

[0029] Figure 10 It is a structural schematic diagram of the sterilization feeding mechanism of the present invention.

[0030] In the figure: 1, body; 101, observation window; 102, fixed shell; 103, sealing machine; 104, movable cover; 2, sterilization feeding mechanism; 21, feeding assembly; 211, shielding plate; 212, fixed frame; 213, conveying wheel; 214, conveying belt; 215, rubber strip; 216, guide frame; 22, stabilizing assembly; 221, support frame; 222, motor; 223, screw; 224, movable plate; 225, movable rod; 226, driving plate; 227, guide rod; 228, support frame; 229, spring; 2210, movable wheel; 2211, extrusion belt; 2212, driving rod; 2213, support rod; 2214, stirring plate; 2215, air hole; 23, sterilization assembly; 231, storage barrel; 232, air pump; 233, air inlet pipe; 234, conveying pipe; 235, guide pipe; 236, gas nozzle. DETAILED DESCRIPTION

[0031] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of protection of the present application.

[0032] In the specific implementation, for example, Figures 1-10As shown, a kind of high antibacterial suture packaging device, including: machine body 1, the surface of machine body 1 is fixedly installed with observation window 101, the top of machine body 1 is fixedly installed with fixed shell 102, the inside of machine body 1 is provided with sealing machine 103, sterilization feeding mechanism 2 is used to reduce the sterilization feeding mechanism 2 when suture inner bag packaging Bacteria breeding, it is arranged in the inside of machine body 1, wherein the sterilization feeding mechanism 2 includes the feeding assembly 21 being arranged in one side of machine body 1, the side of feeding assembly 21 is provided with stabilizing assembly 22, the inner top wall of machine body 1 is provided with sterilization assembly 23, feeding assembly 21 includes the shielding plate 211 being fixedly installed on both sides of machine body 1, the inside of machine body 1 is fixedly installed with fixed frame 212, the both sides of fixed frame 212 extend out the inside of machine body 1, fixed frame 212 is located at one side of sealing machine 103, a plurality of conveying wheels 213 are rotatably installed on the side of fixed frame 212, the inside of fixed frame 212 is drivingly installed with conveying belt 214, the side of a plurality of conveying wheels 213 is in contact with conveying belt 214, the inner bag exposed on the side of sealing machine 103 can be stably supported and transported by feeding assembly 21, so that the inner bag can be stably sealed by sealing machine 103, feeding assembly 21 can be used with stabilizing assembly 22, to further make the inner bag more stable when passing through sealing machine 103, avoid the inner bag from deviating, so as to affect the sealing effect, when the inner bag passes through sealing machine 103, sterilization assembly 23 continuously releases sterilization gas in the inside of machine body 1, and the inside of machine body 1 is sterilized, to reduce the bacteria in the inside of machine body 1, further reduce the pollution of inner bag when sealing, the side of inner bag can be placed on the surface of a plurality of conveying wheels 213, the side of inner bag is supported by conveying wheel 213, so that the inner bag can stably pass through sealing machine 103.

[0033] As shown, Figures 2-5 Feeding assembly 21 further includes a plurality of rubber strips 215 fixedly installed on the surface of conveying wheel 213, the side of a plurality of rubber strips 215 is arranged as arc-shaped, when a plurality of conveying wheels 213 transport the inner bag, the contact friction between a plurality of rubber strips 215 on the surface and the inner bag can be increased, so that the inner bag can be more stably driven to move on the surface of a plurality of conveying wheels 213, the both sides of sealing machine 103 are provided with guide frame 216, the side of two guide frames 216 away from each other extends out the inside of machine body 1, two guide frames 216 are fixedly connected with two shielding plates 211 respectively, the side of inner bag needing to be sealed can be stably guided into the inside of sealing machine 103 by guide frame 216, so that the inner bag can be stably sealed.

[0034] As shown, Figures 6-8As shown, the stabilizing assembly 22 comprises a support frame 221 fixedly installed on the top wall in the body 1, the inside of the fixed shell 102 is fixedly installed with a motor 222, the output end of the motor 222 extends to the inside of the body 1 and is located on one side of the support frame 221, the output end of the motor 222 is fixedly connected with a screw rod 223, the other end of the screw rod 223 is rotatably connected with the support frame 221, the inside of the support frame 221 is slidably connected with a movable plate 224, one end of the screw rod 223 penetrates through the movable plate 224, the screw rod 223 is threadedly connected with the movable plate 224, the bottom of the movable plate 224 is fixedly connected with two movable rods 225, the other ends of the two movable rods 225 both penetrate through the support frame 221 and are fixedly connected with the same driving plate 226, the bottom of the driving plate 226 is provided with two extrusion belts 2211, the two extrusion belts 2211 are both located above the plurality of conveying wheels 213, when the inner sealing bag enters into the body 1, the screw rod 223 can be rotated by the motor 222, the movable plate 224 is driven by the screw rod 223 to slide in the support frame 221, the movable plate 224 drives the movable rods 225 to move the driving plate 226 synchronously when moving, the driving plate 226 can drive the two extrusion belts 2211 to move close to the plurality of conveying wheels 213, the inner sealing bag passing through the plurality of conveying wheels 213 is extruded and stabilized, and the stability of the inner sealing bag passing through the sealing machine 103 is further improved;

[0035] The stabilizing assembly 22 further comprises two guide rods 227 slidingly installed on one side of the driving plate 226, one same support frame 228 is fixedly connected to one side of the two guide rods 227, springs 229 are sleeved outside the two guide rods 227, two ends of the springs 229 are fixedly connected with the support frame 228 and the driving plate 226 respectively, movable wheels 2210 are rotatably connected to two sides of the support frame 228, two extrusion belts 2211 are drivingly connected to surfaces of the two movable wheels 2210, the two extrusion belts 2211 are located on the two sides of the support frame 228 respectively, the extrusion belts 2211 rotate synchronously when the extrusion belts 2211 contact the inner sealing bag, so as to synchronously drive the corresponding two movable wheels 2210 to rotate on the two sides of the support frame 228, when the two extrusion belts 2211 contact the plurality of conveying wheels 213, the extrusion belts 2211 can synchronously drive the corresponding support frame 228 to move upwards, so that the support frame 228 synchronously moves the two guide rods 227, that is, the two springs 229 are extruded, the springs 229 buffer the extrusion degree of the extrusion belts 2211, and the probability of damaging the suture when the extrusion belts 2211 extrude the inner sealing bag is reduced, the stabilizing assembly 22 further comprises a driving rod 2212 fixedly installed at one end of the two movable wheels 2210, a plurality of supporting rods 2213 are fixedly connected to the surface of the driving rod 2212, a plurality of stirring plates 2214 are fixedly connected to two sides of the plurality of supporting rods 2213, when the two movable wheels 2210 rotate, the two movable wheels 2210 can synchronously drive the corresponding driving rod 2212 to rotate, so that the driving rod 2212 synchronously drives the corresponding plurality of supporting rods 2213 to move, so that the plurality of supporting rods 2213 synchronously drive the plurality of stirring plates 2214 to move, so that the stirring plates 2214 stir the air around the fixing frame 212, improve the use effect of the sterilizing assembly 23, the stirring plates 2214 are in a wave shape, a plurality of air holes 2215 are formed in the surface of the stirring plates 2214, the wave-shaped stirring plates 2214 can increase the convenience of contact between the stirring plates 2214 and the air, so that the stirring effect of the stirring plates 2214 on the air is better, the air holes 2215 on the surfaces of the stirring plates 2214 can make the air pass through the air holes 2215 when the stirring plates 2214 move, and the stirring effect on the air is further improved.

[0036] As Figure 3 , Figure 9 and Figure 10As shown, the sterilization assembly 23 comprises a storage barrel 231 fixedly installed inside the fixed shell 102, the inside of the fixed shell 102 is fixedly installed with an air pump 232, one side of the air pump 232 is fixedly connected with an air inlet pipe 233, the other end of the air inlet pipe 233 is communicated with the storage barrel 231, the output end of the air pump 232 is fixedly connected with a conveying pipe 234, the other end of the conveying pipe 234 extends to the inside of the machine body 1 and is fixedly connected with a guide pipe 235, the guide pipe 235 is located on the inner top wall of the machine body 1, when the machine body 1 is used, the sterilization gas inside the storage barrel 231 can be pumped out by the air pump 232 and conveyed to the inside of the guide pipe 235, the sterilization gas is sprayed in the inside of the machine body 1 by the guide pipe 235 to continuously sterilize the inside of the machine body 1, a plurality of gas nozzles 236 are fixedly connected on both sides of the guide pipe 235, the plurality of gas nozzles 236 are uniformly distributed on both sides of the guide pipe 235, the plurality of gas nozzles 236 can be more uniformly sprayed in a conical range by being uniformly arranged on both sides of the guide pipe 235, the covering range of the gas in the inside of the machine body 1 is improved, a movable cover 104 is hingedly installed on one side of the machine body 1, the movable cover 104 is located on one side of the sealing machine 103, the sealing machine 103 is slidingly installed in the inside of the machine body 1, when the sealing machine 103 needs to be overhauled, the movable cover 104 can be rotated to open one side of the machine body 1, the sealing machine 103 is slidingly taken out to facilitate the overhauling and cleaning of the sealing machine 103.

[0037] In use, the inner bag can be placed on one side of the plurality of conveying wheels 213, and the inner bag can be supported by the conveying wheels 213, so that the inner bag can stably pass through the sealing machine 103. The inner bag can be stably guided to the inside of the sealing machine 103 by the guide frame 216, so that the inner bag can stably be sealed. When the inner bag enters the machine body 1, the motor 222 can drive the screw rod 223 to rotate, and the screw rod 223 can drive the movable plate 224 to slide in the support frame 221. The movable plate 224 can drive the movable rod 225 to move the driving plate 226 synchronously when moving. The driving plate 226 can drive the two extrusion belts 2211 to move close to the plurality of conveying wheels 213, so that the inner bag passing through the plurality of conveying wheels 213 can be extruded and stabilized, further improving the stability of the inner bag passing through the sealing machine 103. When the two extrusion belts 2211 contact the plurality of conveying wheels 213, the extrusion belts 2211 can drive the corresponding support frame 228 to move upward synchronously, so that the support frame 228 can move the two guide rods 227 synchronously, and the two springs 229 can be extruded. The spring 229 can buffer the extrusion force of the extrusion belt 2211, reducing the probability of damaging the suture when the extrusion belt 2211 extrudes the inner bag. When the machine body 1 is in use, the air pump 232 can draw the sterilization gas in the storage barrel 231 into the guide pipe 235, and the sterilization gas can be sprayed in the machine body 1 to continuously sterilize the machine body 1. When the two movable wheels 2210 rotate, the two movable wheels 2210 can drive the corresponding driving rods 2212 to rotate synchronously, so that the driving rods 2212 can drive the plurality of support rods 2213 to move synchronously, so that the plurality of support rods 2213 can drive the plurality of stirring plates 2214 to move synchronously, so that the stirring plates 2214 can stir the airflow around the fixed frame 212, improving the use effect of the sterilization assembly 23.

[0038] It should be noted that the motors, conveyor belts, air pumps and the like in the above description are relatively mature devices in the prior art, and specific models can be selected according to actual needs. Meanwhile, the motors, conveyor belts and air pumps can be powered by built-in power supply or mains power supply, and the specific power supply mode is selected as needed, which will not be described here.

[0039] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution. The description of the specification is for the sake of clarity, and those skilled in the art should consider the specification as a whole. The technical solutions in each embodiment can be combined appropriately to form other embodiments that can be understood by those skilled in the art.

Claims

1. A highly antibacterial suture packaging device, characterized in that: include: A machine body (1), wherein an observation window (101) is fixedly mounted on the surface of the machine body (1), a fixed shell (102) is fixedly mounted on the top of the machine body (1), and a sealing machine (103) is provided inside the machine body (1); A sterilization feeding mechanism (2) is provided inside the body (1) for reducing bacterial growth when sealing the inner sealing bag of the suture thread; The sterilization feeding mechanism (2) comprises a feeding assembly (21) arranged on one side of the machine body (1), a stabilization assembly (22) is arranged on one side of the feeding assembly (21), and a sterilization assembly (23) is arranged on the inner top wall of the machine body (1); The feeding assembly (21) includes shielding plates (211) fixedly mounted on both sides of the machine body (1); a fixing frame (212) is fixedly mounted inside the machine body (1); both sides of the fixing frame (212) extend out of the interior of the machine body (1); the fixing frame (212) is located on one side of the sealing machine (103); a plurality of conveying wheels (213) are rotatably mounted on one side of the fixing frame (212); a conveying belt (214) is installed inside the fixing frame (212); and one side of the plurality of conveying wheels (213) is in contact with the conveying belt (214); The feeding assembly (21) further comprises a plurality of rubber strips (215) fixedly mounted on the surface of the conveying wheel (213), one side of each of the plurality of rubber strips (215) being configured as an arc surface. The stabilizing assembly (22) comprises a support frame (221) fixedly mounted on the inner top wall of the machine body (1), a motor (222) being fixedly mounted inside the fixed shell (102), an output end of the motor (222) extending into the interior of the machine body (1) and being located on one side of the support frame (221), a screw (223) being fixedly connected to the output end of the motor (222), the other end of the screw (223) being rotatably connected to the support frame (221), a movable plate (224) being slidably connected inside the support frame (221), one end of the screw (223) penetrating the movable plate (224), the screw (223) being threadedly connected to the movable plate (224), two movable rods (225) being fixedly connected to the bottom of the movable plate (224), the two movable rods ( The other ends of the two guide rods (225) pass through the support frame (221) and are fixedly connected to the same driving plate (226). Two extrusion belts (2211) are provided at the bottom of the driving plate (226). The two extrusion belts (2211) are located above the plurality of conveying wheels (213). The stabilizing assembly (22) further includes two guide rods (227) slidably mounted on one side of the driving plate (226). One side of the two guide rods (227) is fixedly connected to the same support frame (228). The outer sides of the two guide rods (227) are sleeved with springs (229). The two ends of the springs (229) are respectively fixedly connected to the support frame (228) and the driving plate (226). Both sides of the support frame (228) are rotatably connected to movable wheels (2210). The surfaces of the two movable wheels (2210) are transmission-connected to the two extrusion belts (2211). The two extrusion belts (2211) are respectively located on both sides of the support frame (228). The stabilizing assembly (22) further comprises a driving rod (2212) fixedly mounted on one end of the two movable wheels (2210); a plurality of supporting rods (2213) are fixedly connected to the surface of the driving rod (2212); and a plurality of stirring plates (2214) are fixedly connected to both sides of the plurality of supporting rods (2213); The sterilization assembly (23) comprises a storage barrel (231) fixedly mounted inside a fixed shell (102), an air pump (232) fixedly mounted inside the fixed shell (102), an air inlet pipe (233) fixedly connected to one side of the air pump (232), the other end of the air inlet pipe (233) being in communication with the storage barrel (231), an output end of the air pump (232) fixedly connected to a delivery pipe (234), the other end of the delivery pipe (234) extending into the interior of the body (1) and fixedly connected to a guide pipe (235), the guide pipe (235) being located on the inner top wall of the body (1).

2. The highly antibacterial suture packaging device according to claim 1, characterized in that: Guide frames (216) are provided on both sides of the sealing machine (103), and the two guide frames (216) extend away from each other on their respective sides from the interior of the machine body (1). The two guide frames (216) are fixedly connected to the two shielding plates (211), respectively.

3. The highly antibacterial suture packaging device according to claim 1, characterized in that: The stirring plate (2214) is configured to be in a wave shape, and a plurality of air holes (2215) are provided on the surface of the stirring plate (2214).

4. The highly antibacterial suture packaging device according to claim 1, characterized in that: Both sides of the guide tube (235) are fixedly connected with a plurality of gas nozzles (236), and the plurality of gas nozzles (236) are evenly distributed on both sides of the guide tube (235).

5. The highly antibacterial suture packaging device according to claim 1, characterized in that: A movable cover (104) is hingedly mounted on one side of the machine body (1), and the movable cover (104) is located on one side of the sealing machine (103). The sealing machine (103) is slidably mounted inside the machine body (1).

Citation Information

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