Automatic processing equipment for rubber mouthpieces of medical instruments

By designing fully automated rubber sleeve nozzle processing equipment, the problems of low cutting efficiency and high defect rate of rubber sleeve nozzle are solved, efficient automatic cutting and detection are achieved, manual intervention is reduced, and resource waste is reduced.

CN119748548BActive Publication Date: 2025-08-08FOSHAN NANHAI HEFENG RUBBER WARE
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202510085897.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2025-08-08
Estimated Expiration
2045-01-20

AI Technical Summary

Technical Problem

In the prior art, the rubber sleeve opening has low cutting efficiency and high defect rate, which is mainly due to the inclination of the cutting opening due to the unstandard artificial sleeve setting, and the manual loading and unloading time is long.

Method used

Design an automatic processing equipment for rubber sleeve nozzles of medical equipment, including feeding, testing, cutting and cutting mechanisms, fully automated operation through turntables and drive parts, add detection steps to ensure sleeve standards, and reduce manual intervention.

Benefits of technology

It improves the working efficiency of opening cutting of rubber sleeve nozzles, reduces the number of defective products, reduces resource waste, and simplifies manual operation process.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119748548B_ABST
    Figure CN119748548B_ABST
Patent Text Reader

Abstract

The present application relates to the technical field of rubber mouthpiece processing equipment, and in particular to an automatic processing equipment for rubber mouthpieces of medical devices, comprising: a frame: a turntable is rotatably connected to the top surface of the frame, and a device unit is arranged on the top surface of the turntable; there are multiple device units, and the multiple device units are distributed along the circumference of the turntable; a loading mechanism: the loading mechanism includes a loading drive and a loading assembly, and the loading assembly is arranged at the output end of the loading drive; a detection mechanism: the detection mechanism is arranged at the output end of the loading mechanism, and the detection mechanism is used to detect whether the rubber mouthpiece placed on the device unit is qualified; a cutting mechanism: the cutting mechanism is arranged at the output end of the detection mechanism, and the cutting mechanism is used to cut the qualified rubber mouthpiece placed on the device unit; a blanking mechanism: the blanking mechanism is arranged at the output end of the cutting mechanism, and the blanking mechanism is used to blank the cut rubber mouthpiece, which can improve the working efficiency of the rubber mouthpiece opening cutting.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present application relates to the technical field of rubber mouthpiece processing equipment, and in particular to an automatic processing equipment for rubber mouthpieces of medical devices. Background Art

[0002] The rubber mouthpiece of medical devices is produced by injection molding. After injection molding, the rubber mouthpiece has an installation cavity inside, and one end of the installation cavity passes through. The rubber mouthpiece is often mounted on the outer wall of the device during use. Therefore, an opening needs to be cut in the side wall of the rubber mouthpiece, and the cut opening is connected to the installation cavity. When the rubber mouthpiece is mounted on one end of the device, one end of the device enters the installation cavity, and then the other end of the device passes through the cut opening, thereby mounting the rubber mouthpiece on the device.

[0003] At present, the cutting of the rubber nozzle opening is often carried out in a semi-automatic cutting method. The operator first puts the rubber nozzle on the outer wall of the installation column, and then cuts the side wall of the rubber nozzle through the cutting equipment. In the process of putting the rubber nozzle on the outer wall of the installation column, the position of the rubber nozzle is often not standard, so that the opening cut on the side wall of the rubber nozzle is tilted to one end, resulting in a large number of defective rubber nozzle openings. In addition, the time spent on manual loading and unloading is long, resulting in low efficiency in cutting the rubber nozzle opening. Summary of the Invention

[0004] In order to improve the efficiency of cutting the opening of a rubber mouthpiece, the present application provides an automatic processing device for the rubber mouthpiece of a medical device.

[0005] The present application provides an automatic processing device for medical device rubber mouthpieces, which adopts the following technical solutions:

[0006] An automatic processing device for a rubber mouthpiece of a medical device, comprising:

[0007] Frame: The top surface of the frame is rotatably connected to a turntable, and the top surface of the turntable is provided with a device unit, and the device unit is used to place the rubber mouthpiece; there are multiple device units, and the multiple device units are distributed along the circumference of the turntable;

[0008] Feeding mechanism: The feeding mechanism includes a feeding drive and a feeding assembly. The feeding drive is used to sequentially arrange and move multiple rubber nozzles for feeding. The feeding assembly is arranged at the output end of the feeding drive and is used to place the rubber nozzles at the output end of the feeding drive onto the device unit.

[0009] Detection mechanism: The detection mechanism is arranged at the output end of the feeding mechanism, and is used to detect whether the rubber nozzle placed on the device unit is qualified;

[0010] Cutting mechanism: The cutting mechanism is arranged at the output end of the detection mechanism, and the cutting mechanism is used to cut the qualified rubber sleeve placed in the device unit;

[0011] Blanking mechanism: The blanking mechanism is arranged at the output end of the cutting mechanism, and the blanking mechanism is used to blank the cut rubber sleeve.

[0012] By adopting the above technical solution, a plurality of rubber nozzles are placed in the feeding drive member, and then the plurality of rubber nozzles are arranged and moved in sequence for feeding by the feeding drive member. The rubber nozzles move to the output end of the feeding drive member and enter the feeding assembly. The rubber nozzles are placed on the device unit through the feeding assembly. Then, the turntable is rotated to rotate the device unit with the rubber nozzles to the side of the detection mechanism. When the rubber nozzles placed on the device unit are unqualified, the detection mechanism collects the rubber nozzles. When the rubber nozzles placed on the device unit are qualified, the turntable is rotated to rotate the device unit with the rubber nozzles to the side of the cutting mechanism, and the rubber nozzles are cut and opened by the cutting mechanism. Finally, the turntable is started again to rotate the device unit with the cut rubber nozzles to the side of the unloading mechanism, and the rubber nozzles are unloaded by the unloading mechanism.

[0013] The present application reduces the steps of manually putting the rubber nozzle on the outer wall of the installation column through a fully automatic cutting method. At the same time, it also reduces the steps of manually cutting materials, and adds the step of detecting whether the installation of the installation column and the rubber nozzle is qualified, thereby improving the work efficiency of cutting the rubber nozzle opening. At the same time, it also reduces the number of defective rubber nozzle cutting openings and reduces the waste of resources.

[0014] Preferably, the device unit includes a telescopic drive assembly and a placement seat, the placement seat is slidably connected to the top surface of the frame, the output end of the telescopic drive assembly is connected to the inner end of the placement seat, and the rubber mouthpiece is mounted on the outer end of the placement seat.

[0015] By adopting the above technical solution, the rubber nozzle is arranged on the outer end of the placement seat. When the detection mechanism detects that the installation between the rubber nozzle and the placement seat is unqualified, or when the rubber nozzle is unloaded by the unloading mechanism, the rubber nozzle needs to be moved away from the placement seat, and the telescopic drive component is started. The telescopic drive component drives the placement seat to retract and retract quickly, thereby unloading the rubber nozzle.

[0016] Preferably, the top surface of the frame is slidably connected to a mounting seat near one end of the loading drive member, the loading assembly is arranged on the top of the mounting seat, the loading mechanism includes a push-pull driving member, and the output end of the push-pull driving member is connected to the side of the mounting seat away from the turntable.

[0017] By adopting the above technical solution, when the rubber nozzle is located in the loading assembly, the push-pull drive component is started, and the push-pull drive component drives the mounting seat to move toward one end close to the turntable, so that the rubber nozzle in the loading assembly is placed on the outer end of the placement seat, thereby completing the loading of the rubber nozzle.

[0018] Preferably, the feeding mechanism includes a guide seat and a suction pipe. The guide seat has a guide groove inside, and the guide groove runs through the top and bottom. One end of the suction pipe is inserted into the top of the guide groove, and the other end of the suction pipe is connected to the output end of the feeding drive component.

[0019] By adopting the above technical solution, when the rubber nozzle moves to the output end of the feeding drive component, the opening of the installation cavity of the rubber nozzle is located away from the end of the suction tube. Then, the rubber nozzle is sucked into the suction tube, and the rubber nozzle enters the guide groove through the suction tube cavity. When the rubber nozzle is located in the guide groove, the opening of the installation cavity of the rubber nozzle faces upward, and then the rubber nozzle is transferred to the feeding assembly.

[0020] Preferably, the loading assembly includes a loading seat and a rotation drive unit, the loading seat is rotatably connected to the top of the mounting seat, a placement groove is opened on the outer wall of the loading seat, the placement groove corresponds to the guide groove, and the output end of the rotation drive unit is assembled with one end of the loading seat.

[0021] By adopting the above technical solution, after the rubber nozzle enters the guide groove, the rubber nozzle enters the placement groove from the bottom of the guide groove, and the rotation drive unit is started, thereby driving the loading seat to rotate until the opening of the placement groove is aligned with one end of the placement seat, and then the push-pull drive member is started to put the rubber nozzle in the loading assembly on the outer end of the placement seat, thereby completing the loading of the rubber nozzle.

[0022] Preferably, the detection mechanism includes a detection collection box and a sensor. The detection collection box is installed on the top of the frame. A collection port is provided on the side of the detection collection box close to the turntable. The collection port is aligned with one end of the placement seat. The sensor is installed on the side of the detection collection box close to the turntable. The sensor is located at the bottom of the collection port.

[0023] By adopting the above technical solution, when the rubber nozzle is not properly installed on one end of the placement seat, the installation cavity of the rubber nozzle inserted into one end of the placement seat is shallower, and when the installation between the rubber nozzle and the placement seat is qualified, the installation cavity of the one end of the placement seat is deeper. Therefore, compared with the situation where the installation between the rubber nozzle and the placement seat is qualified, the part of the rubber nozzle protruding from the placement seat is more when the installation between the rubber nozzle and the placement seat is unqualified. At this time, the sensor will detect the part of the rubber nozzle protruding from the placement seat, thereby judging that the installation between the rubber nozzle and the placement seat is unqualified, and then collecting the rubber nozzle into the detection collection box, reducing the situation where the rubber nozzle is often installed in the non-standard position of the placement seat, thereby reducing the situation where the opening of the subsequent rubber nozzle side wall cutting is non-standard, and further reducing the number of defective rubber nozzle cutting openings.

[0024] Preferably, the telescopic drive assembly includes a telescopic drive member and a mechanical valve, the output end of the telescopic drive member is connected to the inner end of the placement seat, and the mechanical valve is arranged on one side of the placement seat. The mechanical valve is used to control the telescopic movement of the telescopic drive member.

[0025] By adopting the above technical solution, the extension and retraction of the telescopic driving member can be controlled by the mechanical valve. When the rubber sleeve needs to be moved away from the placement seat, the extension and retraction of the telescopic driving member is controlled by closing the output end of the mechanical valve, thereby facilitating the operation of moving the rubber sleeve away from the placement seat.

[0026] Preferably, the detection mechanism further includes a push drive component, the push drive component is installed on the top surface of the frame, the push drive component is arranged on one side of the detection collection box, and the output end of the push drive component is aligned with the output end of the mechanical valve.

[0027] By adopting the above technical solution, when the installation between the rubber nozzle and the placement seat is unqualified, the push drive component is started, and the push drive component pushes the output end of the mechanical valve until the mechanical valve is in a closed state, thereby starting the telescopic drive component, so that the placement seat is quickly extended into the detection collection box cavity, and the rubber nozzle is pushed into the collection box cavity, and then the telescopic drive component drives the placement seat to return to its original position.

[0028] Preferably, the material discharge mechanism includes a material discharge collection box, which is installed on the frame. The material discharge collection box is provided with a material discharge opening on a side close to the turntable, and the material discharge opening is aligned with one end of the placement seat.

[0029] By adopting the above technical solution, under the action of the blanking collection box, the rubber sleeve installed on one end of the placement seat is cut and then collected into the blanking collection box through the blanking port.

[0030] Preferably, the unloading mechanism further includes a pressure plate, which is installed on the top of the frame, located on one side of the unloading collection box, and one side of the pressure plate presses against the output end of the mechanical valve.

[0031] By adopting the above technical solution, the output end of the mechanical valve pressed by the pressure plate is used to control the extension and retraction of the telescopic drive member aligned with the material collection box. Therefore, when the pressure plate presses the output end of the mechanical valve to close the mechanical valve, the telescopic drive member aligned with the material collection box is started, and the telescopic drive member drives the placement seat to quickly extend into the cavity of the material collection box, and pushes the rubber nozzle provided on one end of the placement seat into the cavity of the material collection box, thereby completing the unloading of the rubber nozzle with the cut opening.

[0032] In summary, this application includes at least one of the following beneficial technical effects:

[0033] 1. Place multiple rubber nozzles in the feeding drive part, and then use the feeding drive part to arrange the multiple rubber nozzles in sequence and move them for feeding. The rubber nozzles move to the output end of the feeding drive part and then enter the feeding assembly. The rubber nozzles are placed on the device unit through the feeding assembly. Then, rotate the turntable to rotate the device unit with the rubber nozzles to the side of the detection mechanism. When the rubber nozzles placed on the device unit are unqualified, the detection mechanism collects the rubber nozzles. When the rubber nozzles placed on the device unit are qualified, rotate the turntable to rotate the device unit with the rubber nozzles to the side of the cutting mechanism, and cut the rubber nozzles through the cutting mechanism. Finally, start the turntable again, rotate the device unit with the cut rubber nozzles to the side of the unloading mechanism, and unload the rubber nozzles through the unloading mechanism.

[0034] The present application reduces the steps of manually putting the rubber nozzle on the outer wall of the installation column through a fully automatic cutting method. At the same time, it also reduces the steps of manually cutting materials, and adds the step of detecting whether the installation of the installation column and the rubber nozzle is qualified, thereby improving the work efficiency of cutting the rubber nozzle opening. At the same time, it also reduces the number of defective rubber nozzle cutting openings and reduces the waste of resources.

[0035] 2. When the rubber nozzle is not properly installed on one end of the placement seat, the installation cavity of the rubber nozzle at one end of the placement seat is shallower. When the installation between the rubber nozzle and the placement seat is qualified, the installation cavity of one end of the placement seat is deeper. Therefore, compared with the situation where the installation between the rubber nozzle and the placement seat is qualified, when the installation between the rubber nozzle and the placement seat is unqualified, the part of the rubber nozzle protruding from the placement seat is larger. At this time, the sensor will detect the part of the rubber nozzle protruding from the placement seat, thereby judging that the installation between the rubber nozzle and the placement seat is unqualified, and then collecting the rubber nozzle into the detection collection box, reducing the situation where the rubber nozzle is often installed in the non-standard position of the placement seat, thereby reducing the situation where the opening of the subsequent rubber nozzle side wall cutting is non-standard, and thus reducing the number of defective rubber nozzle cutting openings. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the present application.

[0037] Figure 2 It is a schematic diagram of the local structure of an embodiment of the present application.

[0038] Figure 3 yes Figure 1 A magnified view of center.

[0039] Figure 4 It is a structural diagram of the blanking mechanism in the embodiment of the present application.

[0040] Figure 5 yes Figure 1 Magnified view of B.

[0041] Explanation of the reference numerals: 1. Frame; 11. Turntable; 12. Mounting seat; 13. Fixed seat; 14. Abutment column; 15. Support column; 2. Device unit; 21. Telescopic drive assembly; 211. Telescopic cylinder; 212. Valve body; 213. Valve stem; 214. Roller; 215. Air pipe; 22. Placement seat; 221. Moving block; 222. Mounting column; 3. Feeding mechanism; 31. Vibrating plate; 32. Suction assembly; 321. Suction pipe; 322. Guide seat; 323. Suction pipe; 33. Feeding Components; 331, loading base; 332, moving cylinder; 333, gear; 334, rack; 335, placement slot; 34, push-pull cylinder; 4, detection mechanism; 41, detection collection box; 42, sensor; 43, push drive component; 431, push cylinder; 432, push column; 5, cutting mechanism; 51, connecting base; 52, sliding cylinder; 53, cutting machine; 6, unloading mechanism; 61, unloading collection box; 62, pressing component; 621, support frame; 622, pressing plate; 7, rubber sleeve. DETAILED DESCRIPTION

[0042] The following is combined with Figure 1-5 This application is described in further detail.

[0043] The embodiment of the present application discloses an automatic processing device for a rubber mouthpiece of a medical device.

[0044] Reference Figure 1 and Figure 2 , an automatic processing equipment for a medical device rubber mouthpiece 7, includes a frame 1, the top surface of the frame 1 is rotatably connected to a turntable 11, in the embodiment of the present application, the turntable 11 is a circular disk, a rotating driving member that drives the turntable 11 to rotate is installed in the frame 1, and a device unit 2 is provided on the top surface of the turntable 11, the device unit 2 includes a telescopic driving assembly 21 and a placement seat 22, the placement seat 22 includes a moving block 221 and a mounting column 222, the moving block 221 is slidably connected to the outer end of the top surface of the frame 1, the moving block 221 can move along the diameter direction of the turntable 11, the mounting column 222 is installed on the side of the moving block 221 away from the center of the turntable 11, the long side of the mounting column 222 is parallel to the long side of the moving block 221, there are two mounting columns 222, and the two mounting columns 222 are distributed along the wide side direction of one side of the moving block 221,

[0045] The telescopic drive assembly 21 includes a telescopic drive part and a mechanical valve. In the embodiment of the present application, the telescopic drive part is a telescopic cylinder 211, and the mechanical valve is a roller 214 type mechanical valve. The telescopic cylinder 211 is installed on the inner end of the top surface of the frame 1, and the output end of the telescopic cylinder 211 is assembled with the side of the moving block 221 close to the center of the turntable 11. The roller 214 type mechanical valve includes a valve body 212, a valve stem 213 and a roller 214. The valve body 212 is installed on the top surface of the frame 1, and the valve body 212 is located on one side of the moving block 221. The output end of the valve body 212 is connected to the air pipe 215, and the other end of the air pipe 215 is connected to the input end of the telescopic cylinder 211. One end of the valve stem 213 is hinged to the outer side of the valve body, and the other end of the valve stem 213 is rotatably connected to the roller 214.

[0046] When an inward force is applied to the roller 214, the valve body 212 is closed, and then the gas enters the telescopic cylinder 211 through the air pipe 215 cavity, and the telescopic cylinder 211 drives the moving block 221 to move back and forth. The telescopic cylinder 211 first pushes the moving block 221 to move outward, and then the telescopic cylinder 211 pulls the moving block 221 inward to return to its original position.

[0047] The number of the device units 2 is determined according to specific circumstances. In the embodiment of the present application, there are six device units 2 , and the six device units 2 are evenly distributed along the circumference of the turntable 11 .

[0048] Reference Figure 1 and Figure 3, a feeding mechanism 3 is provided at one end of the top surface of the frame 1, and the feeding mechanism 3 includes a feeding drive and a suction assembly 32. In the embodiment of the present application, the feeding drive is a vibration disk 31, and multiple rubber nozzles 7 are placed in the vibration disk 31. Then, the multiple rubber nozzles 7 are arranged and moved in sequence through the vibration disk 31 to feed. There are two vibration disks 31, and the two vibration disks 31 are distributed at both ends of the top surface of the frame 1. The suction assembly 32 includes a suction pipe 321 and a guide seat 322. The top surface of the frame 1 is slidably connected to the mounting seat 12 at one end close to the vibration disk 31. The bottom of the guide seat 322 is fixed to the top side wall of the mounting seat 12 away from the turntable 11, and the guide seat 322 is internally penetrated A guide groove is provided through the guide groove, which is set vertically. The diameter of the guide groove is adapted to the diameter of the internal cavity of the suction pipe 321. There are two guide grooves, which are distributed at both ends of the guide seat 322. Correspondingly, there are two suction pipes 321, and one end of the two suction pipes 321 is respectively inserted into the top of the guide groove close to it, and the other ends of the two suction pipes 321 are respectively connected to the output end of the vibration disk 31 close to it. An air suction pipe 323 is inserted into the side of the guide seat 322 away from the turntable 11. There are two air suction pipes 323, which are distributed at both ends of one side of the guide seat 322, and the cavities of the two air suction pipes 323 are respectively connected with the guide grooves close to them.

[0049] When the rubber nozzle 7 moves to the output end of the vibration disk 31, the installation cavity opening of the rubber nozzle 7 is located at the end away from the suction pipe 321. Afterwards, the two suction pipes 323 respectively suck air into the two guide grooves, and the generated attraction sucks the rubber nozzle 7 into the guide groove. When the rubber nozzle 7 is located in the guide groove, the installation cavity opening of the rubber nozzle 7 faces upward.

[0050] Reference Figure 3 The feeding mechanism 3 includes a feeding assembly 33, and the feeding assembly 33 includes a feeding seat 331 and a rotation driving unit. The feeding seat 331 is rotatably connected to the top of the mounting seat 12. A placement groove 335 is opened on the outer wall of the feeding seat 331. There are two placement grooves 335. The two placement grooves 335 are respectively connected to the guide grooves adjacent to them, so that after the rubber sleeve 7 enters the guide groove, the rubber sleeve 7 enters the placement groove 335 from the bottom of the guide groove.

[0051] The rotation drive unit includes a mobile driving member, a gear 333 and a rack 334. The rack 334 is slidably connected to the top surface of the mounting seat 12. The gear 333 is assembled on the loading seat 331 close to one end of the rack 334. The outer wall of the gear 333 is engaged with the top of the rack 334. In the embodiment of the present application, the mobile driving member is a mobile cylinder 332. The mobile cylinder 332 is mounted on the end of the mounting seat 12 away from the turntable 11, and the output end of the mobile cylinder 332 is assembled with one end of the rack 334.

[0052] When the rubber sleeve 7 is located in the placement groove 335, the moving cylinder 332 is started, and the moving cylinder 332 pulls the rack 334 to move away from the turntable 11. Under the cooperation of the rack 334 and the gear 333, the gear 333 is driven to rotate, thereby driving the loading seat 331 to rotate until the opening of the placement groove 335 is aligned with one end of the mounting column 222.

[0053] The feeding mechanism 3 also includes a push-pull drive component. In the embodiment of the present application, the push-pull drive component is a push-pull cylinder 34. The push-pull cylinder 34 is installed on the top surface of the frame 1. The output end of the push-pull cylinder 34 is assembled with the end of the mounting seat 12 away from the turntable 11. After the opening of the placement groove 335 is aligned with one end of the mounting column 222, the push-pull cylinder 34 is started. The push-pull cylinder 34 drives the mounting seat 12 to move toward the end close to the turntable 11, thereby putting the rubber sleeve 7 in the placement groove 335 on the outer wall of the mounting column 222, thereby completing the loading of the rubber sleeve 7.

[0054] Reference Figure 1 and Figure 2 , a detection mechanism 4 is provided on one side of the feeding mechanism 3, the detection mechanism 4 includes a detection collection box 41, a sensor 42 and a push drive assembly 43, the detection collection box 41 is installed on the top of the frame 1, the detection collection box 41 is located on the side of the mounting seat 12, the detection collection box 41 is provided with a collection port on the side close to the turntable 11, the collection port is aligned with the two mounting columns 222 close thereto, the bottom surface of the detection collection box 41 is fixed with a mounting plate on the side close to the turntable 11, the sensor 42 is installed on the top surface of the mounting plate, and the push drive assembly 43 includes a push drive The moving part and the pushing column 432. In the embodiment of the present application, the pushing driving part is the pushing cylinder 431. A fixed seat 13 is fixed on the top surface of the frame 1. The fixed seat 13 is located on one side of the detection and collection box 41. The pushing cylinder 431 is installed on the top surface of the fixed seat 13. The output end of the pushing cylinder 431 is assembled with the pushing column 432. One end of the pushing column 432 is aligned with one end of the roller 214 close to it. The valve body 212 controlled by the roller 214 aligned with the pushing column 432 is used to control the extension and retraction of the telescopic cylinder 211 aligned with the detection and collection box 41.

[0055] After the rubber sleeve 7 is loaded, the rotating drive member is started, and the rotating drive member drives the turntable 11 to rotate, and the device unit 2 with the rubber sleeve 7 is rotated to the side of the detection mechanism 4. When the rubber sleeve 7 is not qualified on the outer wall of the installation column 222, the installation column 222 is inserted into the installation cavity of the rubber sleeve 7 shallowly. When the installation between the rubber sleeve 7 and the installation column 222 is qualified, the installation column 222 is inserted into the installation cavity more deeply. Therefore, compared with the case where the installation between the rubber sleeve 7 and the installation column 222 is qualified, when the installation between the rubber sleeve 7 and the installation column 222 is unqualified, the part of the rubber sleeve 7 that protrudes from the installation column 222 is larger. At this time, the sensor 42 will detect the part of the rubber sleeve 7 that protrudes from the installation column 222, thereby judging that the rubber sleeve 7 and the installation column are not qualified. When the installation between 222 is unqualified, the pushing cylinder 431 is started, and the pushing cylinder 431 pushes the pushing column 432, and the pushing column 432 pushes the outer wall of the roller 214 close to it until the valve body 212 is in a closed state, thereby starting the telescopic cylinder 211, so that the installation column 222 quickly extends into the cavity of the detection collection box 41, and pushes the rubber nozzle 7 into the cavity of the collection box, and then the telescopic cylinder 211 drives the installation column 222 to return to its original position, and at the same time, the pushing cylinder 431 drives the pushing column 432 away from the roller 214 to return to its original position, reducing the situation where the rubber nozzle 7 is often installed in the non-standard position of the installation column 222, thereby reducing the situation where the opening of the subsequent rubber nozzle 7 side wall cutting is non-standard, and further reducing the number of defective openings cut by the rubber nozzle 7.

[0056] Reference Figure 1 and Figure 2 A cutting mechanism 5 is provided on one side of the detection mechanism 4. The cutting mechanism 5 includes a connecting seat 51, a sliding drive member and a cutter 53. The connecting seat 51 is fixed on the top surface of the frame 1. The connecting seat 51 is located on one side of the fixed seat 13. The cutter 53 is slidably connected to the connecting top surface. In the embodiment of the present application, the sliding drive member is a sliding cylinder 52. The sliding cylinder 52 is installed at the end of the connecting seat 51 away from the turntable 11. The output end of the sliding cylinder 52 is assembled with one side of the cutter 53, and the output end of the cutter 53 is aligned with the mounting column 222 close to it.

[0057] When the rubber nozzle 7 is loaded, the turntable 11 rotates, driving the device unit 2 with the rubber nozzle 7 to rotate to the side of the detection mechanism 4. When the detection mechanism 4 detects that the installation between the mounting column 222 and the rubber nozzle 7 is qualified, the turntable 11 rotates again, and the device unit 2 with the rubber nozzle 7 is rotated to the side of the cutting mechanism 5. The sliding cylinder 52 is started, and the sliding cylinder 52 pushes the cutting machine 53 to move toward one end of the turntable 11. After that, the cutting machine 53 cuts the side wall of the rubber nozzle 7 mounted on the outer wall of the mounting column 222. After that, the sliding cylinder 52 is started again, and the sliding cylinder 52 drives the cutting machine 53 to return to its original position.

[0058] Reference Figure 1 and Figure 4 , a feeding mechanism 6 is provided on one side of the detection mechanism 4, and the feeding mechanism 6 is located on one side of the cutting mechanism 5. The loading mechanism 3, the detection mechanism 4, the cutting mechanism 5 and the feeding mechanism 6 are arranged in sequence along the outer circumference of the turntable 11, and the loading mechanism 3, the detection mechanism 4, the cutting mechanism 5 and the feeding mechanism 6 are arranged in sequence along the rotation direction of the turntable 11. The feeding mechanism 6 includes a feeding collection box 61 and a pressing assembly 62. The feeding collection box 61 is fixed on the frame 1, and the feeding collection box 61 is located on one side of the connecting seat 51. A feeding port is provided in the feeding collection box 61 near the side of the turntable 11, and the feeding port is aligned with the mounting column 222 close thereto. The pressing assembly 62 includes a support frame 621 and a pressing plate 622. The support frame 621 is fixed on the top surface of the frame 1, and the support frame 621 is located on one side of the feeding collection box 61. The pressing plate 622 is fixed at one end of the support frame 621 near the turntable 11, and one side of the pressing plate 622 is pressed against the outer wall of the roller 214 close thereto.

[0059] When the roller 214 rolls along one side of the pressure plate 622, it drives the valve stem 213 to rotate, so that the valve body 212 is in a closed state. The valve body 212 controlled by the roller 214 pressed by the pressure plate 622 is used to control the extension and contraction of the telescopic cylinder 211 aligned with the unloading collection box 61. Therefore, when the pressure plate 622 presses the roller 214 to close the valve body 212, the telescopic cylinder 211 aligned with the unloading collection box 61 is started, and the telescopic cylinder 211 drives the mounting column 222 to quickly extend into the cavity of the unloading collection box 61, and pushes the rubber sleeve 7 sleeved on the outer wall of the mounting column 222 into the cavity of the unloading collection box 61, thereby completing the unloading of the rubber sleeve 7 with the cut opening.

[0060] The present application reduces the steps of manually putting the rubber nozzle 7 on the outer wall of the installation column 222 through a fully automatic cutting method. At the same time, it also reduces the steps of manually cutting materials, and adds a step of detecting whether the installation of the installation column 222 and the rubber nozzle 7 is qualified, thereby improving the work efficiency of cutting the opening of the rubber nozzle 7. At the same time, it also reduces the number of defective products of the cut opening of the rubber nozzle 7 and reduces the waste of resources.

[0061] Reference Figure 1 and Figure 5, an abutment column 14 is fixed to one end of the top surface of the frame 1 away from the pushing column 432, and the abutment column 14 is aligned with the outer wall of the turntable 11. Correspondingly, a support column 15 is fixed to the outer wall of the turntable 11, and the support column 15 abuts against the abutment column 14 on the side away from the turntable 11. The number of support columns 15 is consistent with the number of device units 2. In the embodiment of the present application, there are six support columns 15, and the six support columns 15 are evenly distributed along the outer wall of the turntable 11. The turntable 11 rotates six times, so that the six support columns 15 abut against the abutment column 14 in turn. When the pushing column 432 pushes The outer wall of the roller 214 close to it, until the pushing column 432 is pressed against the outer wall of the roller 214, the pushing column 432 exerts a momentary impact force on the roller 214, and then the impact force acts on the turntable 11. Under the action of the supporting column 15 and the abutting column 14, a reaction force can be generated on the turntable 11 to withstand the momentary impact force. When the turntable 11 is subjected to the momentary impact force, the shaking and instability of the turntable 11 can be reduced. At the same time, the damage to the turntable 11 and other internal structures in the frame 1 can also be reduced.

[0062] The above are all preferred embodiments of the present application. These embodiments are only explanations of the present application and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be covered within the scope of protection of the present application.

Claims

1. An automatic processing equipment for medical instrument rubber mouthpiece, characterized in that: include: A frame (1): a top surface of the frame (1) is rotatably connected to a turntable (11), a top surface of the turntable (11) is provided with a device unit (2), and the device unit (2) is used to place a rubber mouthpiece (7); there are multiple device units (2), and the multiple device units (2) are distributed along the circumference of the turntable (11); A feeding mechanism (3): The feeding mechanism (3) includes a feeding drive and a feeding assembly (33), wherein the feeding drive is used to sequentially arrange and move the plurality of rubber nozzles (7) for feeding, and the feeding assembly (33) is arranged at the output end of the feeding drive, and the feeding assembly (33) is used to place the rubber nozzles (7) at the output end of the feeding drive onto the device unit (2); Detection mechanism (4): the detection mechanism (4) is arranged at the output end of the feeding mechanism (3), and the detection mechanism (4) is used to detect whether the rubber sleeve (7) placed on the device unit (2) is qualified; Cutting mechanism (5): the cutting mechanism (5) is arranged at the output end of the detection mechanism (4), and the cutting mechanism (5) is used to cut the qualified rubber sleeve (7) placed in the device unit (2); A blanking mechanism (6): the blanking mechanism (6) is arranged at the output end of the cutting mechanism (5), and the blanking mechanism (6) is used to blank the cut rubber sleeve (7); The device unit (2) includes a telescopic drive component (21) and a placement seat (22), the placement seat (22) is slidably connected to the top surface of the frame (1), the output end of the telescopic drive component (21) is connected to the inner end of the placement seat (22), and the rubber sleeve (7) is sleeved on the outer end of the placement seat (22); The top surface of the frame (1) is slidably connected to a mounting seat (12) near one end of the feeding drive member, the feeding assembly (33) is arranged on the top of the mounting seat (12), and the feeding mechanism (3) includes a push-pull driving member, and the output end of the push-pull driving member is connected to the side of the mounting seat (12) away from the turntable (11); The feeding mechanism (3) includes a guide seat (322) and a suction pipe (321), wherein the guide seat (322) has a guide groove inside, the guide groove runs through from top to bottom, one end of the suction pipe (321) is inserted into the top of the guide groove, and the other end of the suction pipe (321) is connected to the output end of the feeding drive component; The loading assembly (33) includes a loading seat (331) and a rotation drive unit. The loading seat (331) is rotatably connected to the top of the mounting seat (12). A placement groove (335) is provided on the outer wall of the loading seat (331). The placement groove (335) corresponds to the guide groove. The output end of the rotation drive unit is assembled with one end of the loading seat (331).

2. The automatic processing equipment for medical device rubber mouthpiece according to claim 1, characterized in that: The detection mechanism (4) includes a detection collection box (41) and a sensor (42). The detection collection box (41) is installed on the top of the frame (1). A collection port is provided on the side of the detection collection box (41) close to the turntable (11). The collection port is aligned with one end of the placement seat (22). The sensor (42) is installed on the side of the detection collection box (41) close to the turntable (11). The sensor (42) is located at the bottom of the collection port.

3. The automatic processing equipment for medical device rubber mouthpiece according to claim 2, characterized in that: The telescopic drive assembly (21) includes a telescopic drive member and a mechanical valve. The output end of the telescopic drive member is connected to the inner end of the placement seat (22). The mechanical valve is arranged on one side of the placement seat (22). The mechanical valve is used to control the telescopic movement of the telescopic drive member.

4. The automatic processing equipment for medical device rubber mouthpiece according to claim 3, characterized in that: The detection mechanism (4) further comprises a push drive assembly (43), the push drive assembly (43) being mounted on the top surface of the frame (1), the push drive assembly (43) being arranged on one side of the detection collection box (41), and the output end of the push drive assembly (43) being aligned with the output end of the mechanical valve.

5. The automatic processing equipment for medical device rubber mouthpiece according to claim 3, characterized in that: The unloading mechanism (6) includes an unloading collection box (61), which is mounted on the frame (1). The unloading collection box (61) is provided with an unloading opening on one side close to the turntable (11), and the unloading opening is aligned with one end of the placement seat (22).

6. The automatic processing equipment for medical device rubber mouthpiece according to claim 5, characterized in that: The unloading mechanism (6) further comprises a pressure plate (622), the pressure plate (622) being mounted on the top of the frame (1), the pressure plate (622) being located on one side of the unloading collection box (61), and one side of the pressure plate (622) being pressed against the output end of the mechanical valve.

Citation Information

Patent Citations

  • Rotary positioning device of vibration feeder

    CN211594102U

  • Adapter shell feeding device

    CN214269303U