Multi-station surgical gown sleeve cutting and pasting device

The multi-station surgical gown sleeve cutting and gluing device enables simultaneous cutting and gluing, solving the problem of low production efficiency of surgical gown sleeves, reducing the generation of scraps, and improving production efficiency and stability.

CN116268680BActive Publication Date: 2025-11-28ANHUI PULDE NON WOVEN TECH CO LTD
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Patent Information

Application Number
CN202310278746.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-21
Publication Date
2025-11-28
Estimated Expiration
2043-03-21

AI Technical Summary

Technical Problem

The current surgical gown sleeves are cut and glued in two separate processes, resulting in low production efficiency and a large amount of scrap material generated during cutting that requires secondary cleaning.

Method used

A multi-station surgical gown sleeve cutting and gluing device is designed. The cutting and gluing mechanism enables simultaneous cutting and gluing, and the negative pressure absorbs scraps to reduce scrap generation.

Benefits of technology

It improved the production efficiency of surgical gown sleeves, reduced the generation of scraps and cleaning work, and ensured the stability and efficiency of the production process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a multi-station surgical gown sleeve cutting and pasting device, relates to the technical field of surgical gown production, and comprises a device platform, a moving track is installed at the top middle position of the device platform, a plurality of groups of cutting and pasting mechanisms are arranged on the outer side of the moving track, the cutting and pasting mechanisms are used for cutting surgical gown sleeves and pasting the cut surgical gown sleeves, and meanwhile, the cutting process of the surgical gown sleeves is simultaneously carried out through negative pressure absorption of the generated edge and corner materials, a station groove is formed in the top surface of the device platform, and the station groove is used for placing the surgical gown sleeves; the cutting and pasting mechanisms absorb the generated edge and corner materials and dust in the cutting process of the surgical gown sleeves through a negative pressure environment, so that the edge and corner materials do not need to be treated when the surgical gown sleeves are produced, and the production efficiency of the surgical gown sleeves is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of surgical gown production, in particular to a multi-station surgical gown sleeve cutting and pasting device. BACKGROUND

[0002] The existing surgical gown sleeve cutting and pasting is divided into two processes, that is, cutting first to shape the size of the surgical gown sleeve, and then spraying glue and pasting at the cutting position. Therefore, two devices are used in the production process of the existing surgical gown sleeve, namely, a surgical gown sleeve cutting device and a surgical gown sleeve glue spraying and pasting device.

[0003] When the surgical gown sleeve cutting device and the surgical gown sleeve glue spraying and pasting device are used in cooperation to produce the surgical gown sleeve, the production efficiency of the surgical gown sleeve is affected, and a large amount of leftover material is generated during the cutting of the surgical gown sleeve, which needs to be cleaned again, further reducing the production efficiency of the surgical gown sleeve. SUMMARY

[0004] In order to overcome the above technical problems, the purpose of the present application is to provide a multi-station surgical gown sleeve cutting and pasting device to solve the problem that the cutting and pasting of the surgical gown sleeve are divided into two processes in the prior art, which limits the production efficiency of the surgical gown sleeve, and a large amount of leftover material is generated during the cutting of the surgical gown sleeve, which needs to be cleaned again, resulting in a reduction in the production efficiency of the surgical gown sleeve.

[0005] The purpose of the present application can be achieved by the following technical solutions:

[0006] The multi-station surgical gown sleeve cutting and pasting device comprises a device platform, a moving track is installed at the top middle position of the device platform, a plurality of cutting and pasting mechanisms are arranged on the outer side of the moving track, the cutting and pasting mechanism is used for cutting the surgical gown sleeve and pasting the cut surgical gown sleeve, and the leftover material generated during the cutting of the surgical gown sleeve is absorbed by negative pressure. A work station groove is formed in the top surface of the device platform, and the work station groove is used for placing the surgical gown sleeve.

[0007] As a further scheme of the present application: the cutting and pasting mechanism comprises a moving seat and a lifting seat, a track groove is formed in the top surface of the moving seat, a limiting block is fixedly connected to the inner wall of the track groove, the track groove and the moving track are mutually fitted, a motor is arranged in the limiting block, a gear is nested on the output shaft of the motor, a gear groove is formed in the top surface of the moving track near the gear, and the gear groove is mutually fitted with the moving track. When the motor is started, the motor can make the gear rotate, and the rotating gear cooperates with the gear groove in the top surface of the moving track to realize the movement of the moving seat.

[0008] As a further scheme of the present application: one side of the mobile seat is provided with a vertical screw rod through a bearing, the lifting seat is fixedly connected with a sliding block on the side close to the vertical screw rod, the sliding block is internally provided with a ball nut matched with the vertical screw rod, and one end of the vertical screw rod is connected with a motor through a shaft coupling; when the motor is turned on, the output shaft of the motor directly drives the vertical screw rod to rotate, and the rotating vertical screw rod cooperates with the ball nut, so that the lifting seat can freely ascend and descend.

[0009] As a further scheme of the present application: the bottom surface of the lifting seat is fixedly connected with a glue spraying head at the middle position, a pressing wheel is arranged on the side close to the glue spraying head, and a sliding pipe is arranged on the other side close to the glue spraying head.

[0010] As a further scheme of the present application: the top end of the pressing wheel is fixedly connected with a moving rod, and the end of the moving rod penetrating through the lifting seat is nested with a buffer spring; the pressing wheel can act on the top surface of the surgical gown to fix the position of the surgical gown and prevent the surgical gown from being wrinkled during cutting or glue spraying; the buffer spring acts on the moving rod, and the moving rod controls the pressing wheel to generate extrusion force, thereby ensuring the stability of the surgical gown.

[0011] As a further scheme of the present application: the bottom surface of the sliding pipe is fixedly connected with a cutting blade on the side close to the glue spraying head, and the top end of the sliding pipe is fixedly connected with a supporting spring; the cutting blade can cut the surgical gown, so that the surgical gown can be cut during glue spraying.

[0012] As a further scheme of the present application: the inside of the lifting seat is provided with a negative pressure groove, the negative pressure groove is communicated with the sliding pipe, and a guide wheel is arranged at the inside middle position of the negative pressure groove; the guide wheel mainly plays a guiding role, so that the cutting waste can pass through the negative pressure groove and prevent the cutting waste from being blocked in the negative pressure groove.

[0013] As a further scheme of the present application: an isolation net is arranged at the end of the negative pressure groove away from the sliding pipe, and a fan is arranged on one side of the isolation net; the fan can generate suction force on the negative pressure groove, and the isolation net can block the cutting waste in the negative pressure groove, thereby preventing the operation of the fan.

[0014] As a further scheme of the present application: a waste groove is arranged at the bottom of the inside of the lifting seat close to the isolation net, and a rotating plate is arranged at the bottom of the waste groove.

[0015] The present application has the following beneficial effects:

[0016] The glue spraying head at the bottom of the cutting and pasting mechanism and the cutting blade are matched with each other, so that cutting and glue spraying are synchronously performed, the production process of the surgical gown sleeve is reduced, and the production efficiency of the surgical gown sleeve is improved.

[0017] The pressing wheel can act on the top surface of the surgical gown, fix the position of the surgical gown, prevent the surgical gown from being wrinkled in the process of cutting or glue spraying, and the buffer spring can act on the moving rod, the moving rod can control the pressing wheel, the pressing wheel can generate extrusion force, and the stability of the surgical gown is ensured.

[0018] The hydraulic cylinder can drive the rotating frame to rotate away from the contact with the isolation net, and also drive the rotating plate through the synchronous rod to automatically open the rotating plate, so that the edge scraps embedded in the isolation net are removed when the rotating frame is away from the isolation net, and the isolation net is cleaned. BRIEF DESCRIPTION OF DRAWINGS

[0019] The application will be further described below with reference to the drawings.

[0020] Figure 1 is a structural schematic diagram of the application;

[0021] Figure 2 is a structural schematic diagram of the cutting and pasting mechanism in the application;

[0022] Figure 3 is a structural schematic diagram of the lifting seat in the application;

[0023] Figure 4 is a sectional view of the lifting seat in the application;

[0024] Figure 5 is a front view of the isolation net in the application.

[0025] In the figure: 1, device platform; 2, moving track; 3, cutting and pasting mechanism; 31, moving seat; 311, track groove; 312, limiting block; 313, vertical lead screw; 32, lifting seat; 321, sliding block; 322, ball nut; 323, glue spraying head; 324, pressing wheel; 3241, moving rod; 3242, buffer spring; 325, sliding pipe; 3251, cutting blade; 3252, supporting spring; 326, negative pressure groove; 3261, guide wheel; 327, isolation net; 3271, hydraulic cylinder; 3272, rotating frame; 328, waste groove; 3281, rotating plate; 329, fan; 4, work station groove. DETAILED DESCRIPTION

[0026] 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 part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0027] As shown in Figures 1-4 , the present application discloses a multi-station surgical gown sleeve cutting and pasting device, which specifically comprises a device platform 1, a moving track 2 is installed at the top middle position of the device platform 1, a plurality of sets of cutting and pasting mechanisms 3 are arranged on the outer side of the moving track 2, the cutting and pasting mechanisms 3 are used for cutting and pasting the surgical gown sleeves, and the edge scraps generated in the cutting process of the surgical gown sleeves are absorbed through negative pressure, a station groove 4 is opened on the top surface of the device platform 1, and the station groove 4 is used for placing the surgical gown sleeves;

[0028] During work, the plurality of sets of cutting and pasting mechanisms 3 can simultaneously perform the cutting and pasting operation of the surgical gown sleeves, so as to ensure the processing efficiency of the surgical gown sleeves, the cutting and pasting mechanisms 3 can simultaneously realize the cutting and pasting two processes, so as to ensure the processing efficiency of the surgical gown sleeves, and the cutting and pasting mechanisms 3 can also absorb the edge scraps and dust generated in the cutting process of the surgical gown sleeves through the negative pressure environment, so as to ensure that the edge scraps do not need to be treated during the production of the surgical gown sleeves, and the production efficiency of the surgical gown sleeves is improved.

[0029] As shown in Figure 2 , the cutting and pasting mechanism 3 comprises a moving seat 31 and a lifting seat 32, the top surface of the moving seat 31 is provided with a track groove 311, the inner wall of the track groove 311 is fixedly connected with a limiting block 312, the track groove 311 is matched with the moving track 2, the inside of the limiting block 312 is provided with a motor, the output shaft of the motor is nested with a gear, the top surface of the moving track 2 is provided with a gear groove matched with the moving track 2 near the gear, and when the motor is started, the motor can drive the gear to rotate, and the rotating gear can realize the movement of the moving seat 31 in cooperation with the gear groove on the top surface of the moving track 2.

[0030] As shown in Figure 2 , one side of the moving seat 31 is provided with a vertical lead screw 313 through a bearing, one side of the lifting seat 32 close to the vertical lead screw 313 is fixedly connected with a sliding block 321, the inside of the sliding block 321 is provided with a ball nut 322 matched with the vertical lead screw 313, one end of the vertical lead screw 313 is connected with a motor through a shaft coupling, and when the motor is turned on, the output shaft of the motor will directly drive the vertical lead screw 313 to rotate, and the rotating vertical lead screw 313 will cooperate with the ball nut 322, so that the lifting seat 32 can freely ascend and descend.

[0031] AsFigure 3 As shown, a spray nozzle 323 is fixedly connected to the middle of the bottom surface of the lifting seat 32. A pressure roller 324 is installed on the bottom surface of the lifting seat 32 near the spray nozzle 323. A sliding pipe 325 is installed on the other side of the bottom surface of the lifting seat 32 near the spray nozzle 323. A moving rod 3241 is fixedly connected to the top of the pressure roller 324. A buffer spring 3242 is nested at one end of the moving rod 3241 that passes through the lifting seat 32.

[0032] The pressure roller 324 can act on the top surface of the surgical gown to fix its position and prevent wrinkles from forming during the cutting or glue spraying process. The buffer spring 3242 acts on the moving rod 3241, which controls the pressure roller 324 to generate squeezing force and ensure the stability of the surgical gown.

[0033] like Figure 4 As shown, a cutting blade 3251 is fixedly connected to the bottom surface of the sliding pipe 325 near the glue spray head 323, and a support spring 3252 is fixedly connected to the top of the sliding pipe 325. A negative pressure environment is generated inside the sliding pipe 325, and the cutting blade 3251 can cut the surgical gown, so that the surgical gown can be cut during the glue spraying process.

[0034] like Figure 4 As shown, the lifting seat 32 has a negative pressure groove 326 inside, which is connected to the sliding pipe 325. A guide wheel 3261 is installed in the middle of the negative pressure groove 326. The guide wheel 3261 mainly plays a guiding role to ensure that the cut scraps can pass through the negative pressure groove 326 and prevent the scraps from getting blocked inside the negative pressure groove 326.

[0035] like Figure 4 As shown, an isolation net 327 is installed at the end of the negative pressure trough 326 away from the sliding pipe 325. A fan 329 is installed on one side of the isolation net 327. The fan 329 can generate suction in the negative pressure trough 326, while the isolation net 327 can block scraps inside the negative pressure trough 326 to prevent them from affecting the operation of the fan 329.

[0036] like Figure 4 As shown, a waste trough 328 is provided inside the lifting seat 32 near the bottom of the isolation net 327. A rotating plate 3281 is installed at the bottom of the waste trough 328. A rotating frame 3272 is rotatably connected to the inner side of the isolation net 327. A hydraulic cylinder 3271 is connected between the isolation net 327 and the rotating frame 3272. A synchronizing rod is movably connected between the rotating frame 3272 and the rotating plate 3281.

[0037] The isolation net 327 is obliquely arranged, which can prevent the leftover material from being attached to the surface of the isolation net 327 and affecting the air circulation in the negative pressure groove 326. When the waste groove 328 accumulates a certain amount of leftover material, the hydraulic cylinder 3271 can be opened, the hydraulic cylinder 3271 can drive the rotating frame 3272 to rotate to be separated from the isolation net 327, and at the same time, the rotating plate 3281 is automatically opened through the synchronous rod. When the rotating frame 3272 is away from the isolation net 327, the leftover material embedded in the isolation net 327 can also be removed, and the isolation net 327 can be cleaned.

[0038] The working principle of the present application is as follows:

[0039] The sleeve of the surgical gown is placed in the working groove 4, the motor at one end of the vertical screw rod 313 is opened, the output shaft of the motor directly drives the vertical screw rod 313 to rotate, the rotating vertical screw rod 313 cooperates with the ball nut 322 to make the lifting seat 32 descend, so that the cutting blade 3251 contacts the sleeve of the surgical gown, and the glue spraying head 323 is above the sleeve of the surgical gown. Then, when the sleeve of the surgical gown is moved, the cutting blade 3251 can cut the sleeve of the surgical gown, and the glue spraying head 323 can spray glue on the sleeve of the surgical gown. The fan 329 is opened, the fan 329 can generate suction in the negative pressure groove 326, the leftover material cut by the cutting blade 3251 can enter the negative pressure groove 326 through the sliding pipe 325, and finally enter the waste groove 328. When the waste groove 328 accumulates a certain amount of leftover material, the hydraulic cylinder 3271 can be opened, the hydraulic cylinder 3271 can drive the rotating frame 3272 to rotate to be separated from the isolation net 327, and at the same time, the rotating plate 3281 is automatically opened through the synchronous rod. When the rotating frame 3272 is away from the isolation net 327, the leftover material embedded in the isolation net 327 can also be removed, and the isolation net 327 can be cleaned.

[0040] The above describes one embodiment of the present application in detail, but the content described is only the preferred embodiment of the present application, and cannot be considered as limiting the scope of the present application. Any equivalent changes and improvements made according to the scope of the present application should still belong to the patent coverage range of the present application.

Claims

1. A multi-station surgical gown sleeve cutting and pasting device, characterized in that, Include: Device platform (1); Mobile track (2) is installed in the middle of the top of the device platform (1); Cutting and pasting mechanism (3) is provided outside the mobile track (2), which is used for cutting and pasting the sleeve of the surgical gown, and absorbing the edge material generated in the process of cutting the surgical gown sleeve by negative pressure; Workstation slot (4) is provided on the top surface of the device platform (1), which is used for placing the surgical gown sleeve; The cutting and pasting mechanism (3) comprises a moving seat (31) and a lifting seat (32), the bottom surface of the lifting seat (32) is fixedly connected with a glue spraying head (323) in the middle position, one side of the bottom surface of the lifting seat (32) near the glue spraying head (323) is provided with a pressure roller (324), and the other side of the bottom surface of the lifting seat (32) near the glue spraying head (323) is provided with a sliding pipe (325); the bottom surface of the sliding pipe (325) is fixedly connected with a cutting blade (3251) on one side near the glue spraying head (323); The inside of the lifting seat (32) is provided with a negative pressure groove (326), which is communicated with the sliding pipe (325), and the inside of the negative pressure groove (326) is provided with a guide wheel (3261) in the middle position; The end of the negative pressure groove (326) away from the sliding pipe (325) is provided with a isolation net (327), which is inclinedly arranged, and the side of the isolation net (327) is provided with a fan (329); The bottom of the inside of the lifting seat (32) near the isolation net (327) is provided with a waste groove (328), and the bottom of the waste groove (328) is provided with a rotating plate (3281); the inner side surface of the isolation net (327) is rotatably connected with a rotating frame (3272), the isolation net (327) and the rotating frame (3272) are connected with a hydraulic cylinder (3271), and the rotating frame (3272) and the rotating plate (3281) are movably connected with a synchronous rod.

2. The multi-station surgical gown sleeve cutting and pasting device of claim 1, wherein, The top surface of the moving seat (31) is provided with a track groove (311), and the inner wall of the track groove (311) is fixedly connected with a limiting block (312), and the track groove (311) and the mobile track (2) are matched with each other.

3. The multi-station surgical gown sleeve cutting and pasting device of claim 2, wherein, One side of the moving seat (31) is provided with a vertical lead screw (313) through a bearing, one side of the lifting seat (32) near the vertical lead screw (313) is fixedly connected with a sliding block (321), and the inside of the sliding block (321) is provided with a ball nut (322) matched with the vertical lead screw (313).

4. The multi-station surgical gown sleeve cutting and pasting device of claim 3, wherein, The top end of the pressure roller (324) is fixedly connected with a moving rod (3241), and one end of the moving rod (3241) penetrating through the lifting seat (32) is nested with a buffer spring (3242).

5. The multi-station surgical gown sleeve cutting and pasting device of claim 4, wherein, The top end of the sliding pipe (325) is fixedly connected with a supporting spring (3252).

Citation Information

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