Cleaning and drying device for medical sutures

An automated device integrating cleaning solution, deionized water cleaning, and drying functions has solved the problem of complicated medical suture cleaning procedures, achieving full-process automation, improving cleaning efficiency and stability, and reducing labor costs.

CN223684103UActive Publication Date: 2025-12-19SHANGHAI ZHIXINREN TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423239759.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-12-19
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

Existing medical suture cleaning and drying equipment involves a complicated cleaning process, too many tools, cannot be automated, and requires manual transfer, resulting in unstable cleaning results and low efficiency.

Method used

An automated device integrating cleaning solution cleaning, deionized water cleaning and drying functions was designed. Through components such as rotating bearings, rotating rods, support components and air blowing pipes, the entire process of cleaning and drying of medical sutures is automated.

Benefits of technology

It achieves fully automated cleaning and drying of medical sutures, reducing manual operation, improving cleaning efficiency and stability, and lowering labor costs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a cleaning and drying device for medical suture lines, which is characterized by comprising a line outlet assembly, an upper cavity and a lower cavity are arranged in a cleaning box, a partition plate is arranged in the upper cavity and divides the upper cavity into a cleaning liquid ultrasonic cleaning cavity and a deionized water ultrasonic cleaning cavity, cleaning liquid is injected into the cleaning liquid ultrasonic cleaning cavity, and the deionized water ultrasonic cleaning cavity is filled with deionized water. Deionized water is injected into the deionized water ultrasonic cleaning cavity, a rinsing tank is arranged at the top end of the partition plate, a drying cavity, an equipment cavity and a take-up mechanism are arranged in the drying box, the drying cavity and the equipment cavity are arranged up and down, a heating ultrasonic control system is arranged in the lower cavity, and a blast heating control system is arranged in the equipment cavity. According to the medical suture line cleaning and drying device, cleaning liquid cleaning, deionized water cleaning and drying are integrated, so that automation of the whole cleaning and drying process is achieved, manual operation of complex procedures is reduced, procedures are prevented from being omitted, labor cost is reduced, medical suture line processing efficiency is greatly improved, and automatic cleaning and drying are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to medical appliance cleaning technical field, concretely relates to a kind of cleaning and drying device for medical suture. BACKGROUND

[0002] Medical suture is used for ligature hemostasis, suture hemostasis and tissue suture in surgical operation as a kind of special medical line, after production and manufacturing are completed, it will be cleaned and dried first, to meet the requirement of medical appliance use.Currently, the production enterprises of medical suture in domestic production will use cleaning fluid to carry out multiple ultrasonic cleaning first, then use deionized water to carry out multiple rinsing, then use deionized water to carry out multiple ultrasonic cleaning again, finally use constant temperature drying oven to dry, complete the cleaning and drying work of medical suture.

[0003] The cleaning and drying device in the prior art has the following shortcomings: the area passed by medical suture in each cleaning link is independent of each other, leading to complicated cleaning process, and too many tools are used, so as to easily cause cleaning error, and the stability and cleaning effect of cleaning work cannot be guaranteed.Moreover, artificial repeated transfer of suture shaft is needed, so that suture shaft drives medical suture into each cleaning area and drying area.In addition, the existing cleaning and drying device cannot be combined with medical suture production equipment, so as to realize automation, and therefore the prior art has limitations. SUMMARY

[0004] The utility model is carried out in order to solve the above problem, aims at providing a kind of cleaning and drying device for medical suture.

[0005] The utility model provides a kind of cleaning and drying device for medical suture, with such characteristics, comprising:

[0006] Base,

[0007] Line outlet assembly includes rotating bearing, first rotating rod, line outlet shaft and limiting piece, rotating bearing is damping bearing, is located on base, one end of first rotating rod is inserted in the inner circle hole of rotating bearing, line outlet shaft is detachably inserted on first rotating rod, limiting piece is detachably sleeved on first rotating rod,

[0008] The cleaning box is arranged on the base, the side wall of the cleaning box facing the outgoing assembly is provided with an incoming port communicated with the upper cavity below near the top wall thereof, the side wall of the cleaning box is provided with an incoming wheel on both sides of the incoming port, the inside of the cleaning box is provided with the upper cavity and the lower cavity, a partition plate is arranged in the upper cavity to divide the upper cavity into a cleaning liquid super washing cavity and a deionized water super washing cavity, the cleaning liquid super washing cavity is filled with cleaning liquid, a plurality of first supporting assemblies are arranged in the cleaning liquid super washing cavity, the plurality of first supporting assemblies are divided into two groups and arranged staggeredly above and below the liquid level of the cleaning liquid, so that the medical suture is driven by the plurality of first supporting assemblies to enter the cleaning liquid for super washing multiple times, the deionized water super washing cavity is filled with deionized water, a plurality of baffles are arranged in the deionized water super washing cavity to divide the deionized water super washing cavity into a plurality of deionized water super washing sub-cavities, the height of each baffle is higher than the liquid level of the deionized water, a second supporting assembly is arranged above the top end of each baffle in each deionized water super washing sub-cavity, so that the medical suture is driven by the plurality of second supporting assemblies to pass through the plurality of deionized water super washing sub-cavities for super washing in sequence, the height of the partition plate is less than the height of the upper cavity, a rinsing groove is arranged on the top end of the partition plate, a rinsing wheel is arranged on each of the two side walls of the cleaning liquid super washing cavity and the deionized water super washing cavity, so that the medical suture is driven by the plurality of first supporting assemblies to enter the rinsing groove through a rinsing wheel after leaving the cleaning liquid super washing cavity, and then enters the deionized water super washing cavity through another rinsing wheel and under the support of the plurality of second supporting assemblies,

[0009] The drying box is arranged on the base, the inside of the drying box is provided with a drying cavity and a device cavity arranged in sequence, one side wall of the drying box is attached to one side wall of the cleaning box, a wire passing port for communicating the drying cavity and the deionized water super washing cavity is arranged on the two side walls of the drying box and the cleaning box, a wire passing wheel is arranged on each of the two side walls of the drying box and the cleaning box, the other side wall of the drying box faces the take-up mechanism, an outgoing port is arranged on the other side wall of the drying box near the top wall of the drying box, an outgoing wheel is arranged on each of the two sides of the outgoing port of the other side wall of the drying box, a plurality of third supporting assemblies are arranged in the drying cavity to support and drive the medical suture to pass through the drying cavity for drying and then leave the drying box through the outgoing wheel,

[0010] The take-up mechanism comprises a driving member, a supporting seat, a second rotating rod and a take-up shaft, the driving member and the supporting seat are arranged on the base, the output end of the driving member faces the supporting seat, one end of the second rotating rod is connected to the output end of the driving member, the other end is rotatably inserted into the supporting seat, and the take-up shaft is sleeved on the second rotating rod.

[0011] The cleaning and drying device for medical suture thread has the following characteristics: each first supporting assembly, each second supporting assembly and each third supporting assembly each comprise a fixing rod and a cleaning wheel, the two ends of the fixing rod are fixed on the inner walls of the two sides of the cleaning tank or the drying tank, the axis of the fixing rod is perpendicular to the axis of the first rotating rod, and the cleaning wheel is rotatably arranged on the fixing rod.

[0012] The cleaning and drying device for medical suture thread has the following characteristics: the bottom of the rinsing tank is provided with a water inlet and a water outlet near the two side ends respectively, the water inlet is communicated with one end of an upper water pipe, the other end of the upper water pipe is located in a deionized water super-washing sub-cavity, a water pump is arranged on the upper water pipe and near the other end of the upper water pipe, the water outlet is communicated with one end of a lower water pipe, and the other end of the lower water pipe penetrates through the tank wall of the cleaning tank and is located outside the cleaning tank.

[0013] The cleaning and drying device for medical suture thread has the following characteristics: the bottom of the rinsing tank is provided with a water inlet and a water outlet near the two side ends respectively, the water inlet is communicated with one end of an upper water pipe, the other end of the upper water pipe is located in a deionized water super-washing sub-cavity, a water pump is arranged on the upper water pipe and near the other end of the upper water pipe, the water outlet is communicated with one end of a lower water pipe, and the other end of the lower water pipe penetrates through the tank wall of the cleaning tank and is located outside the cleaning tank.

[0014] The cleaning and drying device for medical suture thread has the following characteristics: the bottom of the rinsing tank is provided with a water inlet and a water outlet near the two side ends respectively, the water inlet is communicated with one end of an upper water pipe, the other end of the upper water pipe is located in a deionized water super-washing sub-cavity, a water pump is arranged on the upper water pipe and near the other end of the upper water pipe, the water outlet is communicated with one end of a lower water pipe, and the other end of the lower water pipe penetrates through the tank wall of the cleaning tank and is located outside the cleaning tank.

[0015] Further, the height of the first sub-air blowing pipe in the upper cavity is lower than the height of the rinsing wheel in the upper cavity, and the height of the second sub-air blowing pipe in the upper cavity is higher than the height of the thread passing wheel in the upper cavity.

[0016] The utility model discloses a structure and a method for realizing the automatic cleaning and drying of medical suture thread.

[0017] According to the cleaning and drying device for medical suture thread, the cleaning, deionized water cleaning and drying are integrally arranged, so that the automatic cleaning and drying of the whole process are realized, the manual operation of complex processes is reduced, the omission of processes is prevented, and the labor cost is reduced, so that the efficiency of the medical suture thread processing is greatly improved, and the automatic cleaning and drying are realized. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is the structural schematic diagram of the utility model.

[0019] Reference numerals:

[0020] 10, base; 20, outgoing line assembly; 21, rotating bearing; 22, first rotating rod; 23, outgoing line shaft; 24, limiting piece; 30, cleaning tank; 31, incoming line wheel; 32, upper cavity; 321, cleaning liquid over-washing cavity; 322, deionized water over-washing cavity; 3221, deionized water over-washing sub-cavity; 33, lower cavity; 34, baffle; 35, partition plate; 36, rinsing tank; 37, rinsing wheel; 38, water inlet pipe; 381, water pump; 39, water outlet pipe; 40, drying tank; 41, drying cavity; 42, equipment cavity; 43, line passing wheel; 44, outgoing line wheel; 50, incoming line assembly; 51, support seat; 52, second rotating rod; 53, incoming line shaft; 60, blowing and washing mechanism; 61, first sub-blowing pipe; 62, second sub-blowing pipe; 70, fixing rod; 80, cleaning wheel; A, medical suture; B, liquid level. DETAILED DESCRIPTION

[0021] In order to make the technical means, creative features, purposes and effects of the present application easy to understand, the following embodiments will be described in detail with reference to the accompanying drawings.

[0022] EMBODIMENT

[0023] Figure 1 is a structural schematic diagram of the present application.

[0024] As Figure 1 shown, the present embodiment provides a cleaning and drying device for medical suture, which comprises a base 10, an outgoing line assembly 20, a cleaning tank 30, a drying tank 40, an incoming line assembly 50, and a blowing and washing mechanism 60.

[0025] In the present embodiment, the base 10 can be a table-shaped, plate-shaped, or box-shaped base 10 capable of supporting the installation of equipment.

[0026] As Figure 1 shown, the outgoing line assembly 20 comprises a rotating bearing 21, a first rotating rod 22, an outgoing line shaft 23, and a limiting piece 24. The rotating bearing 21 is a damping bearing, which is arranged on the base 10. One end of the first rotating rod 22 is inserted into the inner hole of the rotating bearing 21. The outgoing line shaft 23 is detachably inserted on the first rotating rod 22. The limiting piece 24 is detachably sleeved on the first rotating rod 22.

[0027] In the present embodiment, the outgoing line shaft 23 is an outgoing line shaft 23 wound with unwashed medical suture. Therefore, only by connecting the medical suture produced by the medical suture production equipment to the outgoing line shaft 23, the present application can be used in combination with the medical suture production equipment, so as to realize the automation of medical suture production, cleaning and drying, and improve the practical effect of the present application in use.

[0028] In the embodiment, the limiting member 24 is provided with a through hole, so that the limiting member 24 is detachably sleeved on the first rotating rod 22. After the limiting rod is sleeved on the first rotating rod 22, the bottom wall of the limiting member 24 is attached to the top wall of the wire outlet shaft 23. The limiting member 24 can be pressed on the wire outlet shaft 23 after being sleeved on the first rotating rod 22 by its own weight, so as to limit and fix the wire outlet shaft 23; or the inner wall of the through hole of the limiting member 24 and the rod wall of the first rotating rod 22 are provided with internal threads and external threads that are engaged with each other, so as to limit and fix the wire outlet shaft 23.

[0029] As shown in Figure 1 The cleaning box 30 is arranged on the base 10, and the side wall of the cleaning box 30 towards the wire outlet assembly 20 is provided with an inlet opening near the top wall thereof, which is communicated with an upper cavity 32 described below. The side wall of the cleaning box 30 is provided with an inlet wheel 31 on both sides of the inlet opening. Specifically, the top end of the inlet wheel 31 is not higher than the top wall of the inlet opening.

[0030] The cleaning box 30 is internally provided with the upper cavity 32 and a lower cavity 33. The upper cavity 32 is internally provided with a partition plate 35, which divides the upper cavity 32 into a cleaning liquid super washing cavity 321 and a deionized water super washing cavity 322. The lower cavity 33 is internally provided with a heating ultrasonic control system (not shown in the figure), which can heat the cleaning liquid and the deionized water in the cleaning liquid super washing cavity 321 and the deionized water super washing cavity 322, and control the temperature at 37℃. Then, the heating ultrasonic control system converts the acoustic energy of the power ultrasonic frequency source into mechanical vibration through a transducer, and radiates the ultrasonic wave to the cleaning liquid or the deionized water through the bottom wall of the upper cavity 32. At this time, due to the radiation of the ultrasonic wave, the micro-bubbles in the cleaning liquid or the deionized water can keep vibrating under the action of the sound wave, so that the medical suture can be cleaned when passing through the cleaning liquid super washing cavity 321 and the deionized water super washing cavity 322. The heating ultrasonic control system in the utility model is the same as the mature heating ultrasonic control system in the prior art.

[0031] In the embodiment, the cleaning liquid super washing cavity 321 is filled with cleaning liquid, and a plurality of first supporting assemblies are arranged in the cleaning liquid super washing cavity 321. The plurality of first supporting assemblies are divided into two groups and are arranged in the upper and lower parts of the cleaning liquid level, respectively, and are staggered in sequence. Specifically, the plurality of supporting assemblies located above the cleaning liquid level are staggered with the plurality of supporting assemblies located below the cleaning liquid level. The medical suture is driven by the plurality of first supporting assemblies to enter the cleaning liquid for super washing multiple times. The plurality of supporting assemblies located above the cleaning liquid level are located on the same horizontal plane, and the plurality of supporting assemblies located below the cleaning liquid level are located on the same horizontal plane.

[0032] In the embodiment, the deionized water super washing cavity 322 is filled with deionized water, and a plurality of baffles 34 are arranged in the deionized water super washing cavity 322 to divide the deionized water super washing cavity 322 into a plurality of deionized water super washing sub-cavities. The height of each baffle 34 is higher than the liquid level of the deionized water. A second supporting assembly is arranged above the top end of each baffle 34 in each deionized water super washing sub-cavity, so that the medical sutures are sequentially super washed in the plurality of deionized water super washing sub-cavities under the support of the plurality of second supporting assemblies. Each second supporting assembly in the deionized water super washing sub-cavity is below the liquid level of the deionized water.

[0033] In the embodiment, the height of the partition plate 35 is less than the height of the upper cavity 32, and a rinsing groove 36 is arranged on the top end of the partition plate 35. The rinsing groove 36 is provided with a rinsing wheel 37 on each of the top ends of the two side walls of the cleaning liquid super washing cavity 321 and the deionized water super washing cavity 322. When the medical sutures are supported and driven by the plurality of first supporting assemblies to leave the cleaning liquid super washing cavity 321, the medical sutures enter the rinsing groove 36 through a rinsing wheel 37 for rinsing, and then pass through another rinsing wheel 37 and enter the deionized water super washing cavity 322 under the support of the plurality of second supporting assemblies. The bottom of the rinsing groove 36 is provided with a water inlet and a water outlet near the two side ends, respectively. The water inlet is in communication with one end of an upper water pipe 38, and the other end of the upper water pipe 38 is arranged in a deionized water super washing sub-cavity. A water pump 381 is arranged on the upper water pipe 38 near the other end. The water outlet is in communication with one end of a lower water pipe 39, and the other end of the lower water pipe 39 penetrates the wall of the cleaning tank 30 and is arranged outside the cleaning tank 30.

[0034] In the embodiment, a one-way valve (not shown in the figure) is arranged on the other end of the lower water pipe 39 to control the opening and closing of the other end of the lower water pipe 39.

[0035] As Figure 1As shown, the drying chamber 40 is mounted on the base 10. The interior of the drying chamber 40 includes a drying chamber 41 and an equipment chamber 42 arranged vertically. One side wall of the drying chamber 40 is attached to one side wall of the cleaning chamber 30. Cable passages for connecting the drying chamber 41 and the deionized water ultrawashing chamber 322 are provided on the two side walls of the drying chamber 40 and the cleaning chamber 30, respectively. A cable guide wheel 43 is provided on each side of the cable passage located on the two side walls. The other side wall of the drying chamber 40 faces the cable take-up mechanism described below. A cable outlet is provided on this other side wall near the top wall of the drying chamber 40, and a cable outlet wheel 44 is provided on each side of the cable outlet on the other side wall of the drying chamber 40. In this embodiment, a blower heating control system (not shown in the figure) is provided inside the equipment chamber 42. Because the blower heating control system is provided inside the equipment chamber 42 inside the drying chamber 40, a ventilation opening communicating with the equipment chamber 42 is provided on the bottom wall of the drying chamber 41, thereby facilitating the entry of hot air into the drying chamber 41. The blower heating control system in this utility model is the same as the mature heating blower control system in the prior art.

[0036] In this embodiment, the drying chamber 41 is provided with a plurality of third support components, which are used to support and drive the medical suture through the drying chamber 41 for drying and then leave the drying box 40 through the suture wheel 44.

[0037] In this embodiment, each first support assembly, each second support assembly, and each third support assembly includes a fixing rod 70 and a cleaning wheel 80. The two ends of the fixing rod 70 are respectively fixed to the inner walls of the cleaning chamber 30 or the drying chamber 40. The axis of the fixing rod 70 is perpendicular to the axis of the first rotating rod 22. The cleaning wheel 80 is rotatably mounted on the fixing rod 70. Preferably, the fixing rod 70 is made of polished stainless steel, and the cleaning wheel 80 is preferably a self-lubricating Teflon wheel.

[0038] like Figure 1 As shown, the take-up mechanism includes a drive unit (not shown), a support base 51, a second rotating rod 52, and a take-up shaft 53. The drive unit and the support base 51 are both mounted on the base 10. The output end of the drive unit faces the support base 51. One end of the second rotating rod 52 is connected to the output end of the drive unit, and the other end is rotatably inserted into the support base 51. The take-up shaft 53 is sleeved on the second rotating rod 52.

[0039] like Figure 1As shown, the blowing mechanism 60 includes a gas pump (not shown in the figure), a main blowing pipe (not shown in the figure), a first sub blowing pipe 61, and a second sub blowing pipe 62. The gas pump is arranged on the base 10, one end of the main blowing pipe is communicated with the gas pump, one end of the first sub blowing pipe 61 and the second sub blowing pipe 62 is communicated with the other end of the main blowing pipe, the other end of the first sub blowing pipe 61 penetrates the top wall of the cleaning tank 30 and is located above the cleaning liquid, and faces the rinsing wheel 37, the other end of the second sub blowing pipe 62 penetrates the top wall of the cleaning tank 30 and is located above the deionized water, and is located between the two line passing wheels 43 and faces the line passing wheel 43.

[0040] In the embodiment, the height of the first sub blowing pipe 61 in the upper cavity 32 is lower than the height of the rinsing wheel 37 in the upper cavity 32, and the height of the second sub blowing pipe 62 in the upper cavity 32 is higher than the height of the line passing wheel 43 in the upper cavity 32.

[0041] In the embodiment, the gas provided by the gas pump into the main blowing pipe, the first sub blowing pipe 61 and the second sub blowing pipe 62 is clean compressed gas.

[0042] In the embodiment, the utility model can further include a control module, so as to control the driving member, the heating ultrasonic control system and the blowing heating control system to work.

[0043] When the utility model is used to clean and dry the medical suture, first, the medical suture will pass through the two line entering wheels 31 and enter the upper cavity 32 of the cleaning tank 30 from the line exiting wheel 44.

[0044] Then, the medical suture will pass through the cleaning liquid super washing cavity 321 in the mode of passing through a first supporting assembly located below the cleaning liquid level and then passing through a first supporting assembly located above the cleaning liquid level, so as to be cleaned multiple times.

[0045] Next, the medical suture passes through the rinsing groove 36 through the two rinsing wheels 37. The rinsing liquid in the rinsing groove 36 is provided by the water pump 381 in cooperation with the water supply pipe 38, and when use is finished, the rinsing liquid in the rinsing groove 36 is discharged through the drain pipe 39.

[0046] Then, the medical suture passes through the second support assembly and sequentially passes through multiple deionized water sub-cavities for multiple cleaning. When the medical suture enters the cleaning tank 30, the heating ultrasonic control system located in the lower cavity 33 of the cleaning tank 30 works to heat the cleaning liquid and the deionized water in the cleaning liquid super-cleaning cavity 321 and the deionized water super-cleaning cavity 322, and control the temperature at 37 DEG C. Then, the transducer converts the acoustic energy of the power ultrasonic frequency source into mechanical vibration, and the ultrasonic waves are radiated into the cleaning liquid or the deionized water through the bottom wall of the upper cavity 32. At this time, due to the radiation of the ultrasonic waves, the micro-bubbles in the cleaning liquid or the deionized water can vibrate under the action of the sound waves, so that the medical suture can be cleaned multiple times when passing through the cleaning liquid super-cleaning cavity 321 and the deionized water super-cleaning cavity 322.

[0047] Subsequently, the medical suture enters the drying tank 40 through the two line wheels 43, and then passes through the drying cavity 41 through multiple third support assemblies. When the medical suture enters the drying tank 40, the air blowing and heating system located in the equipment cavity 42 of the drying tank 40 works to heat the medical suture in the drying cavity 41.

[0048] Finally, the medical suture passes through the two line wheels 44 and is wound on the line shaft 23 under the condition that the driving member drives the line shaft 23 to rotate, so as to complete the cleaning and drying of the medical suture.

[0049] During the entire cleaning and drying process, when the medical suture enters the rinsing tank 36 from the cleaning liquid super-cleaning cavity 321, the first sub-air blowing pipe 61 can preliminarily clean (blow off) the cleaning liquid on the medical suture, so as to ensure the purity of the rinsing liquid in the rinsing tank 36 as much as possible; when the medical suture enters the drying cavity 41 from the deionized water super-cleaning cavity 322, the second sub-air blowing pipe 62 can preliminarily clean (blow off) the deionized water on the medical suture, so as to accelerate the drying efficiency of the medical suture.

[0050] Effects of the embodiment

[0051] The cleaning and drying device for medical suture according to the utility model relates to, and aims to realize cleaning and drying full-process automation by integrally arranging cleaning liquid cleaning, deionized water cleaning and drying, thereby reducing manual operation of complex processes, preventing omission of processes, and reducing labor cost, so that the efficiency of medical suture treatment is greatly improved, and automatic cleaning and drying are realized.

[0052] The above embodiment is a preferred case of the utility model, and does not limit the protection scope of the utility model.

Claims

1. A cleaning and drying apparatus for medical sutures, characterized by, The utility model relates to a medical suture line cleaning and drying device, including: a base, a line outlet assembly including a rotating bearing, a first rotating rod, a line outlet shaft and a limiting piece, the rotating bearing is a damping bearing and is arranged on the base, one end of the first rotating rod is inserted into an inner ring hole of the rotating bearing, the line outlet shaft is detachably inserted on the first rotating rod, and the limiting piece is detachably sleeved on the first rotating rod, a cleaning box is arranged on the base, a line inlet is formed in a side wall of the cleaning box towards the line outlet assembly and close to a top wall thereof and is communicated with an upper cavity, an inlet wheel is arranged on the side wall of the cleaning box and located on both sides of the line inlet, the cleaning box is internally provided with the upper cavity and a lower cavity, a partition plate is arranged in the upper cavity and divides the upper cavity into a cleaning liquid super washing cavity and a deionized water super washing cavity, the cleaning liquid super washing cavity is filled with cleaning liquid, a plurality of first support assemblies are arranged in the cleaning liquid super washing cavity, the plurality of first support assemblies are divided into two groups and are arranged above and below the liquid level of the cleaning liquid respectively and staggered in sequence, so that the medical suture line is driven by the plurality of first support assemblies to enter the cleaning liquid for super washing for multiple times, the deionized water super washing cavity is filled with deionized water, a plurality of baffles are arranged in the deionized water super washing cavity, the deionized water super washing cavity is divided into a plurality of deionized water super washing sub-cavities, the height of each baffle is higher than the liquid level of the deionized water, a second support assembly is arranged above the top end of each baffle in each deionized water super washing sub-cavity, so that the medical suture line is driven by the plurality of second support assemblies to sequentially pass through the plurality of deionized water super washing sub-cavities for super washing, the height of the partition plate is less than the height of the upper cavity, a rinsing groove is arranged on the top end of the partition plate, a rinsing wheel is arranged on the top end of each side wall of the cleaning liquid super washing cavity and the deionized water super washing cavity, so that the medical suture line is driven by the plurality of first support assemblies to leave the cleaning liquid super washing cavity, enters the rinsing groove through one rinsing wheel for rinsing, and then enters the deionized water super washing cavity through another rinsing wheel and under the support of the plurality of second support assemblies, a drying box is arranged on the base, the drying box is internally provided with a drying cavity and an equipment cavity arranged in a vertical mode, one side wall of the drying box is attached to one side wall of the cleaning box, a wire passing port for connecting the drying cavity and the deionized water super washing cavity is formed in the two side walls of the drying box and the cleaning box, a wire passing wheel is arranged on each of the two sides of the wire passing port and located on the attached two side walls, the other side wall of the drying box faces the take-up mechanism, a line outlet is formed in the other side wall of the drying box and close to the top wall of the drying box, a line outlet wheel is arranged on each of the two sides of the line outlet and located on the other side wall of the drying box, and a plurality of third support assemblies are arranged in the drying cavity for supporting and driving the medical suture line to pass through the drying cavity for drying and then leave the drying box through the line outlet wheel. The take-up mechanism comprises a driving member, a supporting seat, a second rotating rod and a take-up shaft, the driving member and the supporting seat are arranged on the base, the output end of the driving member faces the supporting seat, one end of the second rotating rod is connected with the output end of the driving member, the other end is rotatably inserted in the supporting seat, and the take-up shaft is sleeved on the second rotating rod.

2. The cleaning and drying device for medical sutures according to claim 1, characterized in that: wherein, Each of the first supporting assembly, the second supporting assembly and the third supporting assembly comprises a fixed rod and a cleaning wheel, both ends of the fixed rod are fixed on the inner walls of the two sides of the cleaning tank or the drying tank, the axis of the fixed rod is perpendicular to the axis of the first rotating rod, and the cleaning wheel is rotatably arranged on the fixed rod.

3. The cleaning and drying device for medical sutures according to claim 1, characterized in that: wherein The bottom of the rinsing tank is provided with a water inlet and a water outlet respectively near the two side ends, the water inlet is communicated with one end of a water pipe, the other end of the water pipe is located in a deionized water super-washing sub-cavity, a water pump is arranged on the water pipe near the other end, the water outlet is communicated with one end of a water outlet pipe, and the other end of the water outlet pipe penetrates through the wall of the cleaning tank and is located outside the cleaning tank.

4. The apparatus for cleaning and drying surgical sutures according to claim 1, wherein Further comprising: The blowing mechanism comprises an air pump, a main blowing pipe, a first sub-blowing pipe and a second sub-blowing pipe, the air pump is arranged on the base, one end of the main blowing pipe is communicated with the air pump, one end of the first sub-blowing pipe and the second sub-blowing pipe is communicated with the other end of the main blowing pipe, the other end of the first sub-blowing pipe penetrates through the top wall of the cleaning tank and is located above the cleaning liquid and faces the rinsing wheel, and the other end of the second sub-blowing pipe penetrates through the top wall of the cleaning tank and is located above the deionized water and between the two line passing wheels and faces the line passing wheels.

5. The cleaning and drying device for medical sutures according to claim 4, characterized in that: wherein The height of the first sub-blowing pipe in the upper cavity is lower than the height of the rinsing wheel in the upper cavity, and the height of the second sub-blowing pipe in the upper cavity is higher than the height of the line passing wheel in the upper cavity.

6. The cleaning and drying device for medical sutures according to claim 1, characterized in that: wherein The lower cavity is provided with a heating and ultrasonic control system, and the equipment cavity is provided with a blowing and heating control system.