Blending device of coating liquid for production of absorbable suture

The combined design of the configuration box and the magnetic pressure roller solves the problem of low dissolution efficiency of the existing stirring device, achieves rapid mixing and uniform dissolution of the drug solution, and improves production efficiency.

CN120789981AInactive Publication Date: 2025-10-17HUBEI SHUANGXING PHARMA CO LTD
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Patent Information

Application Number
CN202511187684.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-25
Publication Date
2025-10-17
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing stirring devices are inefficient in dissolving granular drugs, resulting in residual solid particles that cannot be quickly dissolved.

Method used

The configuration box design is combined with a magnetic pressure roller and a spoiler. The upward and downward movement of the configuration box and the rolling and crushing of the magnetic pressure roller achieve the mixing of the liquid medicine and the rapid dissolution of the particles, reducing the dependence on the stirring device.

Benefits of technology

It improves the mixing efficiency and cleaning efficiency of the liquid medicine, ensures the uniformity and dissolution speed of the liquid medicine, and reduces the residual solid particles.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of liquid medicine blending and mixing, particularly relates to a blending device for absorbable coating liquid for suture production, and provides the following scheme aiming at the problem that a stirring device in the prior art is not easy to quickly dissolve granular material flow: the blending device comprises a supporting base which is integrally of a rectangular structure, the long side direction of the supporting base is parallel to the X-axis direction, bearing seat frames parallel to each other are fixed to the edges of the front side and the rear side, close to one end, of the upper surface of the supporting base respectively, anti-shifting bearings which are coaxial and equal in height are embedded into the top ends of the two bearing seat frames respectively, and the rotating axes of the anti-shifting bearings are perpendicular to the front face. The magnetic compression roller capable of rolling is arranged, when the preparation box rotates to be in the horizontal state, namely the initial state, undissolved solid particles are concentrated in the arc-shaped material collecting groove to be ground, and the dissolution speed of the solid particles can be increased.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of liquid preparation and mixing, in particular to a liquid preparation device for absorbable suture production. BACKGROUND

[0002] The production of absorbable suture liquid generally involves precise handling of drugs and materials to ensure the effectiveness of the suture in medical applications, especially during the drug coating or liquid preparation process. Such liquid not only increases the antibacterial or anti-inflammatory effect of the suture, but also helps the wound heal better. Among them, the sterile environment must be maintained during the production process, and precise equipment such as stirrers, ultrasonic cleaners, filters, etc. are used to ensure complete dissolution of the drug and avoid residue of particles.

[0003] After searching, the existing technology in the prior art is to pour the raw material of the liquid directly into the configured tank, and then start the internal stirring equipment to melt the material. However, when dissolving the solidified drug, these devices can only break the solid particles by physical impact through high-speed rotation to accelerate dissolution. However, in the actual process, a large number of solid particles still sink to the bottom and cannot be quickly dissolved. Therefore, in view of the situation that the granular material cannot be quickly dissolved, we propose a new type of liquid preparation device. SUMMARY

[0004] In view of the technical problem that the stirring device in the prior art is not easy to quickly dissolve the granular material, the present application adopts the following technical scheme:

[0005] A liquid preparation device for absorbable suture production, comprising a support base in a rectangular structure, and the long side direction of the support base is parallel to the X-axis direction, the upper surface of the support base is fixed with two bearing seat frames parallel to each other at the front and rear edges near one end, and the top ends of the two bearing seat frames are embedded with two anti-channeling bearings with the same center and the same height, the rotation axis of the anti-channeling bearing is perpendicular to the front, and a C-shaped bucket rod is rotatably connected between the two anti-channeling bearings, the C-shaped bucket rod is clamped with a cylindrical barrel-shaped configuration box, the upper surface of the support base is provided with a driving mechanism near the barrel bottom of the configuration box, the whole configuration box can be lifted up and then put down around the rotation axis of the anti-channeling bearing, the opening of the configuration box is away from the driving mechanism, and the circumferential outer wall of the configuration box is reserved with an arc-shaped material collection groove in a box-like structure downwardly recessed near the middle part of the upper surface of the support base; the groove bottom of the arc-shaped material collection groove is provided with a magnetic pressure roller capable of rolling left and right along the groove bottom, the upper surface of the support base is provided with two slot-type slide rails with opposite openings and parallel to each other at the front and rear sides of the arc-shaped material collection groove, two protruding blocks commonly advancing and retreating are slidably connected in the two slot-type slide rails, and two magnets are embedded on the opposite sides of the two protruding blocks, which are attracted to the two ends of the magnetic pressure roller.

[0006] A further arrangement of the present invention is that the support base is located between the two groove-type slide rails and has a same strip hole, and the width of the strip hole is equal to the spacing between the two groove-type slide rails, and the length of the strip hole is equal to the length of the groove-type slide rails, and the same U-shaped pull rod is fixed between the bottoms of the two boss sliders; the bottom middle of the U-shaped pull rod is horizontally connected to a connecting rod for rotation; a driving motor is fixed to the middle of the upper surface of one end of the support base close to the driving mechanism, and a rotating wheel is fixed to the top end of the output shaft of the driving motor passing downward through the support base, and a movable shaft is provided on the lower surface of the wheel near the circumferential edge, and the other end of the connecting rod is sleeved and fixed to the end of the movable shaft.

[0007] A further configuration of the present invention is that both ends of the magnetic pressure roller are reserved with protruding roller shafts, and the gap between the two ends of the magnetic pressure roller and the front and rear inner walls of the arc-shaped aggregate trough is less than five millimeters, and the front and rear inner walls of the arc-shaped aggregate trough are provided with arc-shaped limiting grooves with a curvature that is adapted to the bottom of the arc-shaped aggregate trough, and the groove width of the arc-shaped limiting groove is greater than the outer diameter of the roller shaft.

[0008] A further configuration of the present invention is that a leakage hole is opened on the circumferential side wall of the configuration box near the end of the arc-shaped aggregate trough, and a discharge valve extending outward is provided in the leakage hole; a constriction is provided on the circumferential inner wall at the opening of the configuration box, and an end cover is screwed on the circumferential inner wall of the constriction, and the end cover can be removed when changing batches for cleaning, which makes it easier to clean the interior.

[0009] A further configuration of the present invention is that an observation window is reserved near the front of the circumferential outer wall of the configuration box, and transparent glass is provided in the observation window, so that the dissolution of the inner wall can be observed in real time during shaking and rolling, which is convenient for adjusting the shaking speed.

[0010] A further configuration of the present invention is that a bracket is fixed to one end of the circumferential outer wall of the configuration box away from the C-shaped pocket rod, and the bracket is located at the end of the arc-shaped aggregate trough, that is, the circumferential outer wall of the configuration box is close to the bottom, and the lower surface of the bracket is fixed with buffer springs near the front and rear ends, and the bottom ends of the buffer springs are fixed with buffer blocks; when the upturned configuration box is lowered, the number of shakes can be increased, the degree of internal shaking can be increased, and then the dissolution and mixing effect can be improved, and the impact on the fixed position of the support base can be reduced to a certain extent.

[0011] The further arrangement of the application is that the top end of the circumferential outer wall of the configuration box near the barrel mouth is reserved with two concentric arc sleeves respectively, and the center of the arc sleeve two falls on the axis of the two anti-channeling bearings, the top end of the arc sleeve two and the arc sleeve one are flush when the configuration box rotates to the highest point, the top plate extending upward and having L-shaped structure in longitudinal section is fixed to the end of the support base near the driving mechanism, and the end of the top plate near the opening of the configuration box is fixed with the feeding rod one and the feeding rod two inserted into the configuration box respectively, and the feeding rod one and the feeding rod two are slidingly connected in the arc sleeve one and the arc sleeve two respectively, so that the liquid medicine can be supplemented in real time during the dissolving process according to the needs, so as to ensure that the concentration or viscosity of the finished product meets the needs.

[0012] The further arrangement of the application is that the top end of the circumferential outer wall of the configuration box near the barrel mouth is reserved with two concentric arc sleeves respectively, and the center of the arc sleeve two falls on the axis of the two anti-channeling bearings, the top end of the arc sleeve two and the arc sleeve one are flush when the configuration box rotates to the highest point, the top plate extending upward and having L-shaped structure in longitudinal section is fixed to the end of the support base near the driving mechanism, and the end of the top plate near the opening of the configuration box is fixed with the feeding rod one and the feeding rod two inserted into the configuration box respectively, and the feeding rod one and the feeding rod two are slidingly connected in the arc sleeve one and the arc sleeve two respectively, so that the liquid medicine can be supplemented in real time during the dissolving process according to the needs, so as to ensure that the concentration or viscosity of the finished product meets the needs.

[0013] The further arrangement of the application is that the top end of the circumferential outer wall of the configuration box near the barrel mouth is reserved with two concentric arc sleeves respectively, and the center of the arc sleeve two falls on the axis of the two anti-channeling bearings, the top end of the arc sleeve two and the arc sleeve one are flush when the configuration box rotates to the highest point, the top plate extending upward and having L-shaped structure in longitudinal section is fixed to the end of the support base near the driving mechanism, and the end of the top plate near the opening of the configuration box is fixed with the feeding rod one and the feeding rod two inserted into the configuration box respectively, and the feeding rod one and the feeding rod two are slidingly connected in the arc sleeve one and the arc sleeve two respectively, so that the liquid medicine can be supplemented in real time during the dissolving process according to the needs, so as to ensure that the concentration or viscosity of the finished product meets the needs.

[0014] The further arrangement of the application is that the top end of the circumferential outer wall of the configuration box near the barrel mouth is reserved with two concentric arc sleeves respectively, and the center of the arc sleeve two falls on the axis of the two anti-channeling bearings, the top end of the arc sleeve two and the arc sleeve one are flush when the configuration box rotates to the highest point, the top plate extending upward and having L-shaped structure in longitudinal section is fixed to the end of the support base near the driving mechanism, and the end of the top plate near the opening of the configuration box is fixed with the feeding rod one and the feeding rod two inserted into the configuration box respectively, and the feeding rod one and the feeding rod two are slidingly connected in the arc sleeve one and the arc sleeve two respectively, so that the liquid medicine can be supplemented in real time during the dissolving process according to the needs, so as to ensure that the concentration or viscosity of the finished product meets the needs.

[0015] The beneficial effects in the application are:

[0016] 1. By setting the overall upwarping and lowering configuration box, without setting the stirring device inside, the mixing of the liquid medicine inside can be realized by shaking the configuration box as a whole, greatly improving the cleaning efficiency in the later period, and setting the rolling magnetic pressure roller, when the configuration box rotates to the horizontal state, i.e. the initial state, the undissolved solid particles can be concentrated in the arc-shaped material collecting groove for rolling, which can speed up the dissolution speed.

[0017] 2. By setting the arc-shaped limiting groove for limiting the operation of the magnetic pressure roller, the magnetic pressure roller can always be kept in the arc-shaped material collecting groove and rolled on the arc-shaped groove bottom, and can have certain up and down fluctuations, which can effectively roll the particles accumulated to a certain thickness.

[0018] 3. By setting the spoiler, the disturbance effect can be improved when the liquid inside impacts the other end at full speed, and the particles accumulated in the groove bottom of the arc-shaped material collecting groove during rolling can be impacted under the action of the spoiler, improving the mixing effect. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 The overall structure diagram of the liquid coating preparation device for absorbable suture production is proposed in the present application;

[0020] Figure 2 The bottom view structure diagram of the liquid coating preparation device for absorbable suture production is proposed in the present application;

[0021] Figure 3 The front view of the liquid coating preparation device for absorbable suture production is proposed in the present application;

[0022] Figure 4 The side view of the liquid coating preparation device for absorbable suture production is proposed in the present application;

[0023] Figure 5 The liquid coating preparation device for absorbable suture production is proposed in the present application Figure 4 The cross-sectional structure diagram of the liquid coating preparation device for absorbable suture production along line A-A is proposed in the present application;

[0024] Figure 6 The front view of the liquid coating preparation device for absorbable suture production in the initial state is proposed in the present application;

[0025] Figure 7 The half-sectioned perspective structure diagram of the liquid coating preparation device for absorbable suture production in the initial state is proposed in the present application;

[0026] Figure 8 The half-sectioned perspective structure diagram of the configuration box of the liquid coating preparation device for absorbable suture production is proposed in the present application;

[0027] Figure 9 An assembly drawing of a spoiler for a coating liquid preparation device for absorbable suture production is provided.

[0028] In the figure: 1, support base; 101, strip-shaped hole; 2, bearing seat frame; 3, arc-shaped material collecting groove; 4, boss sliding block; 5, magnet; 6, slot-shaped sliding rail; 7, support seat; 8, buffer spring; 9, end cover; 10, top plate; 11, feeding rod one; 12, feeding rod two; 13, observation window; 14, configuration box; 141, arc-shaped sleeve two; 142, arc-shaped sleeve one; 143, leakage hole; 144, arc-shaped limiting groove; 145, sliding hole; 15, C-shaped bucket rod; 16, speed reducer motor; 17, intermittent gear; 18, arc-shaped resisting block; 19, U-shaped pull rod; 20, connecting rod; 21, rotating wheel; 22, end clamping block; 23, arc-shaped tooth; 24, motor base; 25, driving motor; 26, spring baffle; 27, sliding rod; 271, spoiler; 272, oval insertion hole; 28, discharge valve; 29, magnetic pressure roller. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments.

[0030] In the embodiments, refer to Figures 1-9 A coating liquid preparation device for absorbable suture production, comprising a support base 1 in a rectangular structure, and the long side direction of the support base 1 is parallel to the X-axis direction, and the upper surface of the support base 1 is fixed with two bearing seat frames 2 parallel to each other at the front and rear edges near one end, and the top ends of the two bearing seat frames 2 are respectively embedded with two anti-channeling bearings with the same axis and the same height, and the rotating axis of the anti-channeling bearings is perpendicular to the front surface, characterized in that the same C-shaped bucket rod 15 is rotatably connected between the two anti-channeling bearings, the C-shaped bucket rod 15 is clamped with a configuration box 14 in a cylindrical barrel structure, and the upper surface of the support base 1 is provided with a driving mechanism near the barrel bottom of the configuration box 14, so that the whole configuration box 14 can be lifted up and then put down around the rotating axis of the anti-channeling bearing, the opening of the configuration box 14 is away from the driving mechanism, and the circumferential outer wall of the configuration box 14 is reserved with an arc-shaped material collecting groove 3 in a box-like structure downwardly recessed near the middle part of the upper surface of the support base 1; the groove bottom of the arc-shaped material collecting groove 3 is provided with a magnetic pressure roller 29 capable of rolling left and right along the groove bottom, the upper surface of the support base 1 is provided with two slot-shaped sliding rails 6 with opposite openings and parallel to each other at the front and rear sides of the arc-shaped material collecting groove 3, two boss sliding blocks 4 are slidingly connected in the two slot-shaped sliding rails 6 and advance and retreat together, and the opposite sides of the two boss sliding blocks 4 are respectively embedded with two magnets 5 attracted to the two ends of the magnetic pressure roller 29;

[0031] Specific, by setting the overall can up and down the configuration box 14, without setting the internal stirring device, by letting the configuration box 14 whole shaking can realize the mixing of the internal liquid, greatly improve the later cleaning efficiency, and set the rolling magnetic pressure roller 29, can be in the configuration box 14 rotation to horizontal state, that is, the initial state, the solid particles which have not been dissolved are concentrated in the arc-shaped collection tank 3 for rolling, which can speed up the dissolution rate.

[0032] Wherein, the support base 1 is located between the two slot type slide rail 6 open with a same strip hole 101, and the width of strip hole 101 is equal to the interval between the two slot type slide rail 6, the length of strip hole 101 is equal to the length of slot type slide rail 6, the bottom of the two boss slider 4 is fixed with a same U-shaped pull rod 19; the bottom of U-shaped pull rod 19 is connected with a connecting rod 20; the support base 1 is close to the driving mechanism of one end of the upper surface of the middle fixed with driving motor 25, and the output shaft of driving motor 25 top down through the support base 1 is fixed with the rotating wheel 21, the lower surface of rotating wheel 21 is close to the circumferential edge of the setting activity shaft, the other end of the connecting rod 20 is fixed in the end of the activity shaft, through the setting of rotating wheel 21 and connecting rod 20 combination, can be in need of rolling pressure of the accumulated solid particles, only need to control the driving motor 25 start, can realize the two magnet 5 in the slot type slide rail 6 between the two ends of the back and forth sliding, in turn drive the magnetic pressure roller 29 in the groove bottom of arc-shaped collection tank 3 back and forth rolling.

[0033] Referring to Figure 2 , Figure 5 and Figure 7 , the two ends of the magnetic pressure roller 29 are reserved with protruding roller shaft, and the gap between the two ends of the magnetic pressure roller 29 and the front and back two side walls of the arc-shaped collection tank 3 is less than 5mm, and the front and back two side walls of the arc-shaped collection tank 3 are provided with arc-shaped limiting grooves 144 with the same curvature as the groove bottom of the arc-shaped collection tank 3, and the groove width of the arc-shaped limiting grooves 144 is greater than the outer diameter of the roller shaft; by setting the arc-shaped limiting grooves 144 to limit the operation of the magnetic pressure roller 29, the magnetic pressure roller 29 can always be kept rolling on the arc-shaped groove bottom in the arc-shaped collection tank 3, and can have certain up and down fluctuation, which can effectively roll the particles accumulated to a certain thickness.

[0034] Referring to Figure 6 and Figure 8 , the circumferential side wall of the configuration box 14 is provided with a leakage hole 143 close to the end of the arc-shaped collection tank 3, and the leakage hole 143 is provided with an outward extending discharge valve 28; the opening of the configuration box 14 is provided with a necked opening, and the circumferential inner wall of the necked opening is screwed with an end cover 9, which can be removed during batch cleaning, making it more convenient to clean the inside.

[0035] Referring to Figure 1The circumferential outer wall of the configuration box 14 is reserved with an observation window 13 near the front, and the observation window 13 is provided with transparent glass, so that the dissolution of the inner wall can be observed in real time during the shaking and rolling, and the shaking speed can be adjusted.

[0036] With reference to Figure 1 and Figure 3 , the circumferential outer wall of the configuration box 14 is fixed with a bracket 7 away from one end of the C-shaped bucket rod 15, and the bracket 7 is located at the end of the arc-shaped aggregate chute 3, that is, the circumferential outer wall of the configuration box 14 is close to the lowermost position, and the lower surface of the bracket 7 is fixed with a buffer spring 8 near the front and rear ends, and the bottom end of the buffer spring 8 is fixed with a buffer block; by setting the buffer block and the buffer spring 8, the number of shaking can be increased when the upwarping configuration box 14 is lowered, the internal shaking degree is increased, and then the dissolution and mixing effect can be improved, and the impact on the fixed position of the supporting base 1 is also reduced to a certain extent.

[0037] With reference to Figure 3 , Figure 5 , Figure 6 , the circumferential outer wall of the configuration box 14 is reserved with concentric arc-shaped sleeve two 141 and arc-shaped sleeve one 142 near the top end of the barrel opening, and the center of the arc-shaped sleeve two 141 falls on the axis of the two anti-channeling bearings, and the top openings of the arc-shaped sleeve two 141 and the arc-shaped sleeve one 142 are flush when the configuration box 14 is rotated to the highest point, and the supporting base 1 is fixed with an upward extending top plate 10 with an L-shaped structure in longitudinal section near one end of the driving mechanism, and one end of the top plate 10 near the opening of the configuration box 14 is fixed with a feeding rod one 11 and a feeding rod two 12 inserted into the configuration box 14, and the feeding rod one 11 and the feeding rod two 12 are respectively slidingly connected in the arc-shaped sleeve one 142 and the arc-shaped sleeve two 141, and by setting the feeding rod one 11 and the feeding rod two 12 in a tubular structure, the liquid medicine can be supplemented in real time during the dissolution process according to the needs, so as to ensure that the concentration or viscosity of the finished product meets the needs.

[0038] With reference to Figure 5 , Figure 6 , the barrel bottom outer wall of the configuration box 14 is fixed with an end clamping block 22 passing through the center of the barrel bottom, and an arc-shaped tooth 23 is fixed between the upper and lower ends of the end clamping block 22, and the center of the arc-shaped tooth 23 also falls on the center line of the two anti-channeling bearings; the driving mechanism includes a motor seat 24 fixed on the upper surface of the supporting base 1 near the rear side, and the upper surface of the motor seat 24 is fixed with a speed reducer 16, and the output shaft top of the speed reducer 16 is fixed with an intermittent gear 17 meshing with the arc-shaped tooth 23; by setting the driving mechanism, when the intermittent upwarping and falling of the configuration box 14 needs to be controlled, only the speed reducer 16 needs to be started and its speed needs to be controlled, and the mixing efficiency is improved.

[0039] With reference to Figures 6-8, the bottom of the barrel of the configuration box 14 is fixed with two equal-height sliding holes 145 near the front and back sides, respectively, and a sealing bearing is embedded in each of the two sliding holes 145, and a sliding rod 27 extending into the obliquely upper side of the arc-shaped aggregate chute 3 is slidingly inserted into the two sealing bearings, and two mutually parallel baffles 271 are fixed to one end of the two sliding rods 27 near the arc-shaped aggregate chute 3, the plate surface of the baffle 271 is inclined as a whole, and a spring baffle 26 is fixed to one end of the two sliding rods 27 near the driving mechanism, and a return spring is fixed between the side surface of the spring baffle 26 and the bottom outer wall of the configuration box 14; the side of the spring baffle 26 away from the configuration box 14 is fixed with a resistance wheel, and the upper surface of the support base 1 is fixed with an arc-shaped abutment 18 near the end of the two sliding rods 27, and the resistance wheel is rollingly connected to the circumferential outer wall of the resistance wheel; the bottom end edge of the baffle 271 is attached to the circumferential inner wall of the configuration box 14, and the baffle 271 can improve the disturbance effect when the liquid inside impacts the other end at full speed, and can impact the particles accumulated at the bottom of the arc-shaped aggregate chute 3 under the action of the baffle 271, thereby improving the mixing effect.

[0040] Referring to Figure 9 , the baffle 271 is provided with an oval insertion hole 272 at both ends for fixing the sliding rod 27, which can be easily disassembled during cleaning.

[0041] Working principle: when the device is dispensing liquid medicine, first lift the barrel opening of the configuration box 14, then pour the solid particles from the barrel opening, then cover the end cover 9, then restore the configuration box 14 to the horizontal state, then slowly add liquid medicine from the top of the feeding rod one 11 and the feeding rod two 12, and mix at the same time, start the speed reducer motor 16 in the driving mechanism, and drive the intermittent gear 17, at this time the configuration box 14 can be slowly lifted and quickly dropped, thereby realizing the impact mixing of the liquid medicine inside from one end to the other end at high speed; the baffle 271 is arranged to improve the disturbance effect when the liquid medicine inside impacts the other end at full speed, and can impact the particles accumulated at the bottom of the arc-shaped aggregate chute 3 under the action of the baffle 271, thereby improving the mixing effect; the magnetic pressure roller 29 can roll, and when the configuration box 14 rotates to the horizontal state, i.e. the initial state, the undissolved solid particles are concentrated in the arc-shaped aggregate chute 3 for rolling, which can speed up the dissolution speed.

[0042] The above is only the preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can make equivalent replacement or change according to the technical solution and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. A coating liquid mixing device for the production of absorbable sutures, comprising a support base (1) with an overall rectangular structure, wherein the long side direction of the support base (1) is parallel to the X-axis direction, and the upper surface of the support base (1) is respectively fixed with mutually parallel bearing seats (2) at the front and rear edges near one end, and the top ends of the two bearing seats (2) are respectively embedded with coaxial and equal-height anti-channeling bearings, and the rotation axis of the anti-channeling bearings is perpendicular to the front surface, characterized in that The two anti-slip bearings are rotatably connected to a same C-shaped rod (15), a cylindrical barrel-shaped configuration box (14) is clamped in the C-shaped rod (15), a driving mechanism is provided on the upper surface of the support base (1) near the bottom of the configuration box (14), the opening of the configuration box (14) is away from the driving mechanism, and an arc-shaped aggregate trough (3) with a downward concave overall box-shaped structure is reserved on the circumferential outer wall of the configuration box (14) near the middle of the upper surface of the support base (1); a magnetic pressure roller (29) is provided at the bottom of the arc-shaped aggregate trough (3), and the upper surface of the support base (1) is provided with groove-shaped slide rails (6) with openings facing each other and parallel to each other on the front and rear sides of the arc-shaped aggregate trough (3), and the two groove-shaped slide rails (6) are respectively slidably connected with a boss slider (4) that moves forward and backward together, and the opposite sides of the two boss sliders (4) are respectively embedded with magnets (5) that attract the two ends of the magnetic pressure roller (29).

2. A coating liquid mixing device for absorbable suture production according to claim 1, characterized in that: The support base (1) is located between the two groove-shaped slide rails (6) and has a same strip hole (101). The width of the strip hole (101) is equal to the spacing between the two groove-shaped slide rails (6), and the length of the strip hole (101) is equal to the length of the groove-shaped slide rails (6). A same U-shaped pull rod (19) is fixed between the bottoms of the two boss sliders (4); the middle of the bottom of the U-shaped pull rod (19) is horizontally connected to a connecting rod (20); a driving motor (25) is fixed to the middle of the upper surface of one end of the support base (1) close to the driving mechanism, and the top end of the output shaft of the driving motor (25) passes downward through the support base (1) and is fixed with a rotating wheel (21); a movable shaft is provided on the lower surface of the rotating wheel (21) near the circumferential edge, and the other end of the connecting rod (20) is sleeved and fixed to the end of the movable shaft.

3. A coating liquid mixing device for absorbable suture production according to claim 1, characterized in that: Both ends of the magnetic pressure roller (29) are reserved with protruding roller shafts, and the gaps between the two ends of the magnetic pressure roller (29) and the front and rear inner walls of the arc-shaped aggregate trough (3) are less than five millimeters, and the front and rear inner walls of the arc-shaped aggregate trough (3) are both provided with arc-shaped limiting grooves (144) with a curvature adapted to the bottom of the arc-shaped aggregate trough (3), and the groove width of the arc-shaped limiting grooves (144) is greater than the outer diameter of the roller shaft.

4. A coating liquid mixing device for absorbable suture production according to claim 1, characterized in that: A leakage hole (143) is provided on the circumferential side wall of the configuration box (14) near the end of the arc-shaped collecting trough (3), and a discharge valve (28) extending outward is provided in the leakage hole (143); a constriction is provided on the circumferential inner wall at the opening of the configuration box (14), and an end cover (9) is screwed to the circumferential inner wall of the constriction.

5. The coating liquid mixing device for absorbable suture production according to claim 1, characterized in that: An observation window (13) is reserved on the circumferential outer wall of the configuration box (14) near the front, and transparent glass is arranged in the observation window (13).

6. The coating liquid mixing device for absorbable suture production according to claim 1, characterized in that: A bracket (7) is fixed to one end of the circumferential outer wall of the configuration box (14) away from the C-shaped pocket rod (15), and the bracket (7) is located at the end of the arc-shaped aggregate trough (3), that is, at the bottom of the circumferential outer wall of the configuration box (14), and a buffer spring (8) is fixed to the lower surface of the bracket (7) near the front and rear ends, and a buffer block is fixed to the bottom end of the buffer spring (8).

7. The coating liquid mixing device for absorbable suture production according to claim 1, characterized in that: The top of the circumferential outer wall of the configuration box (14) near the barrel mouth is respectively reserved with concentric arc sleeve 2 (141) and arc sleeve 1 (142), and the center of the arc sleeve 2 (141) falls on the axis of the two anti-slip bearings. The top openings of the arc sleeve 2 (141) and the arc sleeve 1 (142) are flush when the configuration box (14) rotates to the highest point. The support base (1) is fixed with a top plate (10) with an upwardly extending longitudinal section in an L-shaped structure at one end near the driving mechanism, and the top plate (10) is fixed with a feeding rod 1 (11) and a feeding rod 2 (12) inserted into the configuration box (14) at one end near the opening of the configuration box (14), and the feeding rod 1 (11) and the feeding rod 2 (12) are respectively slidably connected in the arc sleeve 1 (142) and the arc sleeve 2 (141).

8. The coating liquid mixing device for absorbable suture production according to claim 1, characterized in that: The outer wall of the barrel bottom of the configuration box (14) is fixed with an end clamping block (22) passing through the center of the barrel bottom circle, and the same arc-shaped tooth (23) is fixed between the upper and lower ends of the end clamping block (22), and the center of the arc-shaped tooth (23) also falls on the center line of the two anti-slip bearings; the driving mechanism includes a motor seat (24) fixed on the upper surface of the support base (1) near the rear side, and a reduction motor (16) is fixed on the upper surface of the motor seat (24), and an intermittent gear (17) that meshes with the arc-shaped tooth (23) is fixed on the top end of the output shaft of the reduction motor (16).

9. The coating liquid mixing device for absorbable suture production according to claim 1, characterized in that: The bottom of the configuration box (14) is fixed with equal-height sliding holes (145) near the front and rear sides, and sealed bearings are embedded in the two sliding holes (145). The two sealed bearings are slidably inserted with sliding rods (27) extending into the upper oblique part of the arc-shaped collecting trough (3). Two parallel spoilers (271) are fixed at one end of the two sliding rods (27) near the arc-shaped collecting trough (3). The surface of the spoiler (271) is tilted as a whole, and the two sliding rods (27) are close to the driving machine. A spring baffle (26) is fixed at one end of the structure, and a return spring is fixed between the side of the spring baffle (26) and the bottom outer wall of the configuration box (14); a stop wheel is fixed on the side of the two spring baffles (26) away from the configuration box (14); an arc-shaped stop block (18) is fixed on the upper surface of the support base (1) near the end of the two slide bars (27), and the stop wheel is rollingly connected to the circumferential outer wall of the stop wheel; the bottom edge of the spoiler (271) is in contact with the circumferential inner wall of the configuration box (14).

10. The coating liquid mixing device for absorbable suture production according to claim 9, characterized in that: Both ends of the spoiler (271) are provided with elliptical sockets (272) for fixing the slide rod (27).