Fully automatic surgical gown production line
Through the design of a fully automatic surgical gown production line, the problem of low production efficiency of surgical gown production equipment has been solved, and the automated and efficient production of surgical gowns has been achieved.
Patent Information
- Application Number
- CN202210598884.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-05-30
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2042-05-30
AI Technical Summary
Existing surgical gown production equipment has problems such as isolated production steps and low production efficiency.
A fully automatic production line for surgical gowns has been designed, which includes a compounding device, a slicing device, a reinforcing sheet discharge device, a storage device, a side band welding device, and a T-band welding device. Through the sequencing, combination, and coordinated work of these devices, the automated production of surgical gowns is realized, ensuring uninterrupted fabric delivery and automatic connection of each workstation.
The production efficiency of surgical gowns is improved, the fully automatic production of surgical gowns is realized, and the continuity and efficiency of the production process are ensured.
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Figure CN114747826B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of medical protective clothing production equipment, and in particular relates to a fully automatic surgical clothing main body production line. Background Art
[0002] Surgical gowns are essential protective clothing during surgical procedures, used to reduce the risk of medical staff coming into contact with pathogens and the risk of pathogens spreading between medical staff and patients. They serve as a safety barrier in the sterile area during surgical procedures. Surgical gowns consist of a body and sleeves, which are combined to form a complete surgical gown. After the sleeves are assembled, the finished surgical gown has straps attached to both sides of the body, which are then tied together at the back to allow the user to don the gown. In the prior art, the finished product is obtained by processing various locations on the surgical gown body using different equipment. However, the production and assembly of surgical gowns using existing surgical gown production equipment suffers from the isolation of production steps and low production efficiency. Summary of the Invention
[0003] The purpose of the present invention is to provide a fully automatic surgical gown body production line, aiming to solve the technical problem of low production efficiency of surgical gown body production equipment in the prior art.
[0004] To achieve the above purpose, the embodiment of the present invention provides a fully automatic surgical gown production line, comprising
[0005] A composite device is provided with an adsorption conveying device for positioning the reinforcing sheet during the conveying process and compositely assembling the reinforcing sheet onto the main fabric of the surgical gown;
[0006] A slicing device, the discharging side of which is arranged adjacent to the adsorption conveying device, cuts the reinforcing sheet in the conveying process at equal intervals and then conveys it to the adsorption conveying device, and then conveys it to be compounded with the main fabric of the surgical gown;
[0007] a reinforcing sheet discharge device, the reinforcing sheet discharge device being arranged adjacent to the feed side of the slicing device, and the surgical gown body after being assembled with the reinforcing sheet outputted by the compounding device passing under the reinforcing sheet discharge device;
[0008] A material storage device is provided on both sides of the reinforcing sheet discharging device opposite to the slicing device, and is used to receive and store the surgical gown main body fabric conveyed from below the reinforcing sheet discharging device;
[0009] A sideband welding device is provided adjacent to the discharge side of the storage device and simultaneously welds the sidebands on both sides of the received surgical gown main body fabric;
[0010] The T-shaped belt welding device is arranged adjacent to the discharge side of the side belt welding device, and is used to weld the T-shaped belts on the front and back sides of the surgical gown body after the side belts are welded.
[0011] Preferably, the composite device further includes a first frame and a first traction wheel group fixedly mounted on the first frame, a steering wheel group and a gluing device for gluing the surgical gown main body fabric being transported at a fixed distance. The steering wheel group, the gluing device and the adsorption conveying device are all fixedly mounted on the first frame, the gluing device is located above the steering wheel group, the adsorption conveying device is located below the rotating shaft of the steering wheel group, and the adsorption conveying device is tightly attached to the surgical gown main body fabric wrapped around the steering wheel group. The first traction wheel group is fixedly mounted in the first frame, and the first traction wheel group is located below the steering wheel group, and is used to pull the steering and composited surgical gown main body fabric out from below.
[0012] Preferably, a plurality of adsorption through holes are provided on the conveyor belt of the adsorption conveying device.
[0013] Preferably, the slicing device includes a second traction wheel group and a slicing wheel group, the second traction wheel group and the slicing wheel group are both fixedly mounted on the first frame, and the second traction wheel group is arranged adjacent to the reinforcement sheet discharge device, the slicing wheel group is located between the second traction wheel group and the adsorption conveying device, and the slicing wheel group is arranged adjacent to the adsorption conveying device.
[0014] Preferably, the side band welding device includes a second frame, a discharging conveying device, a first side band welding device, a second side band welding device, a first pulling device, a second pulling device and two welding columns, the discharging conveying device is fixedly installed at the top edge position of the second frame, the discharging conveying device is arranged adjacent to the T-band welding device, the first side band welding device and the second side band welding device are both fixedly installed at the side edge position of the discharging conveying device, and the first side band welding device and the second side band welding device are mirror-imaged, the two welding columns are both fixedly installed on the second frame, and the two welding columns are respectively located below the welding joints of the first side band welding device and the second side band welding device, the first pulling device and the second pulling device are both fixedly installed on the second frame, and the first pulling device and the second pulling device are respectively located below the first side band welding device and the second side band welding device, for pulling the two side bands to the welding columns for welding.
[0015] Preferably, the first pulling device and the second pulling device both include a storage tray, a slide rail, a mounting plate, a curling and welding device, an assembly welding device, a side strip storage component and a fixed-distance pulling device, the storage tray is fixedly mounted on the middle position of the side of the discharging conveying device, the slide rail is fixedly mounted on the side of the discharging conveying device laterally, the mounting plate is slidably mounted on the slide rail, the curling and welding device, the assembly welding device, the side strip storage component and the fixed-distance pulling device are all fixedly mounted on the side of the mounting plate, and the curling and welding device is arranged adjacent to one side edge of the mounting plate. , and the curling and welding device is arranged opposite to the storage tray, for receiving the edge strips on the storage tray for curling and welding, the edge strip storage assembly is arranged adjacent to the curling and welding device, the fixed-distance pulling device is arranged adjacent to the edge strip storage assembly, and the fixed-distance pulling device is arranged adjacent to the edge of the mounting plate, the movable end of the fixed-distance pulling device moves up and down to pull and cut the edge strips of fixed length, the first pulling device and the second pulling device are respectively located below the two fixed-distance pulling devices, and are used to move the edge strips cut on the fixed-distance pulling device to the bottom of the welding head for welding and fixing.
[0016] Preferably, the fixed-distance pulling device includes a positioning cutting component and a pulling device, the cutting component and the pulling device are both fixedly mounted on the mounting plate, the positioning cutting component is arranged adjacent to the side band storage component, the pulling device is arranged adjacent to the cutting component, and the pulling device is provided with a first finger cylinder that can move up and down, the first finger cylinder is located below the cutting component, and is used to pull the side band output by the cutting component.
[0017] Preferably, the first pulling device and the second pulling device both include a linear motor, a telescopic cylinder and a rotary gripper. The linear motor is laterally fixedly mounted on the second frame, and one end of the linear motor is located below the fixed-distance pulling device. The other end of the linear motor extends to the side of the welding column. The telescopic cylinder is fixedly mounted on the moving end of the linear motor, and the telescopic end of the telescopic cylinder is arranged opposite to the fabric conveying direction of the surgical gown body. The rotary gripper is fixedly mounted on the telescopic end of the telescopic cylinder.
[0018] Preferably, the T-belt welding device includes two T-belt devices arranged back to back, and the T-belt device is provided with a long belt welding device, a short belt welding device, an overlapping welding device, a cutting moving device and a T-shaped welding device, and a side plate is slidably installed on the T-belt welding device, the long belt welding device, the short belt welding device, the overlapping welding device, the cutting moving device and the T-shaped welding device are all fixedly installed on the side of the side plate, and the long belt welding device and the short belt welding device are arranged relative to each other, and the overlapping welding device is located on the long belt welding device. Between the strip welding device and the short strip welding device, the long strip on the long strip welding device and the short strip on the short strip welding device are both inserted into the overlapping welding device for overlapping welding, and the overlapping welding device is arranged adjacent to the long strip welding device, the cutting moving device is located between the short strip welding device and the overlapping welding device, and the cutting moving device is located between the T-shaped welding device and the side plate, the welding head of the T-shaped welding device is fixedly installed on the T-shaped strip welding device, and the welding head is located below the T-shaped welding device.
[0019] Preferably, the T-shaped welding device includes a vertical clamp, a rotary welding device and a mounting frame, the mounting frame is fixedly mounted on the side panel, the rotary welding device is slidably mounted on the mounting frame, the vertical clamp is fixedly mounted on the rotary welding device, and the clamping portion of the vertical clamp is located above the rotary clamping assembly of the rotary welding device, and the welding surface of the rotary clamping assembly is provided with a number of vacuum suction holes for adsorbing and separating overlapping long and short strips.
[0020] The above one or more technical solutions in the fully automatic surgical gown production line provided by the embodiment of the present invention have at least one of the following technical effects:
[0021] The fully automatic surgical gown main body production line in the present invention is assembled by a compounding device, a slicing device, a reinforcing sheet discharging device, a storage device, a side band welding device and a T-band welding device. When the various devices are arranged and combined, they are arranged and assembled in the order of the compounding device, the slicing device, the reinforcing sheet discharging device, the storage device, the side band welding device and the T-band welding device. A discharging rack is also provided adjacent to the feeding side of the compounding device, and the surgical gown main body fabric roll is placed on the discharging rack, and two automatically rotatable lifting rods are provided on the discharging rack, and the two lifting rods are arranged opposite to each other, and one end of the lifting rod is rotatably mounted on the discharging rack, and the other end rotates freely. At the same time, a groove with an opening facing upward is provided on the lifting rod, and the groove is provided adjacent to the free end edge of the lifting rod, and the two ends of the reel of the material roll are placed in the two grooves. The setting of the groove prevents the material roll from escaping from the lifting rod, and the lifting rod is started and moves along The rotating installation point rotates, and the material roll automatically slides down and is located between the lifting rod and the discharge rack due to the inclination of the upper surface of the lifting rod. The cloth is output from the discharge rack into the composite device and turns 180 degrees above the adsorption conveying device arranged on the composite device, so that the upper surface of the cloth being conveyed is in close contact with the upper surface of the conveyor belt of the adsorption conveying device. The slicing device is adjacent to the adsorption conveying device. At the same time, the reinforcement sheet discharge device is adjacent to the slicing device. The reinforcement sheet discharge device inputs the reinforcement sheet into the slicing device for slicing, and then outputs it one by one from the slicing device to the adsorption conveying device. A number of through holes are provided on the conveyor belt of the adsorption conveying device, which are used to cooperate with the suction pipe at the bottom of the upper conveyor belt to extract air, so that the reinforcement sheet on the conveyor belt is in close contact with the conveyor belt. During the movement of the conveyor belt, it is displaced due to contact with the fabric of the surgical gown body, affecting the composite effect.
[0022] During the conveying process, the reinforcing sheet is pressed against the upper surface of the surgical gown main body fabric. After the turning, the surgical gown main body fabric is turned downward and then transformed in the fabric conveying direction. It passes under the reinforcing sheet discharge device and enters the storage device. The sideband welding device adjacent to the discharge side of the storage device successively welds the sidebands on the edges of the surgical gown main body fabric on both sides. Since the surgical gown main body fabric located on the feeding side of the storage device is conveyed continuously, and the surgical gown main body fabric located on the discharge side of the storage device has a short pause when the sideband is welded, it is necessary to use the storage function of the storage device to temporarily store the fabric conveyed on the other side when the welding sideband is paused. After the welding is completed, it is conveyed to the sideband welding station together for sideband welding, so that the surgical gown main body fabric conveying in front of the storage device does not need to be paused when the sideband is welded, and welding is completed. After the side band is completed, the main fabric of the surgical gown turns upward and rises to a certain height, then turns to be consistent with the processing and conveying direction of the surgical gown main fabric and turns downward from the top to enter the T-belt welding device to weld and fix the T-belt on one side of the surgical gown main fabric. After welding is completed, it turns downward and is conveyed from the bottom, and then turns upward to achieve the flipping of the processed surface. The other side of the surgical gown main fabric is welded with the T-belt, and finally conveyed to the cutting station for finished product contour cutting to obtain the finished surgical gown. When the surgical gown is worn, the side with the reinforcement plate is placed in front of the chest with the reinforcement plate facing inward to prevent liquid penetration. Then, the side band farther away from the T-belt on the side of the reinforcement plate is passed around from the back and tied together with the T-belt. Then, the other side band is passed around from the back and tied together with the T-belt on the front of the surgical gown main body to complete the wearing of the surgical gown. Through the cooperation between the above devices, the fabric conveying does not need to be paused, and the stations are automatically connected, so that the surgical gown main body can be fully automatically produced, effectively improving production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0024] Figure 1 This is a rendering of the fully automatic surgical gown production line provided by an embodiment of the present invention.
[0025] Figure 2 This is a combined effect diagram of the composite device, slicing device, reinforcement sheet discharge device and storage device of the fully automatic surgical gown main body production line provided by an embodiment of the present invention.
[0026] Figure 3 for Figure 2 A partial enlarged view of middle A.
[0027] Figure 4 This is a rendering of the side band welding device of the fully automatic surgical gown main body production line provided by an embodiment of the present invention.
[0028] Figure 5 This is a rendering of the first sideband welding device of the fully automatic surgical gown main body production line provided in an embodiment of the present invention.
[0029] Figure 6 This is a rendering of the T-belt welding device (without the T-belt welding device) of the fully automatic surgical gown body production line provided in an embodiment of the present invention.
[0030] Figure 7 This is a rendering of the T-belt welding device of the fully automatic surgical gown body production line provided in an embodiment of the present invention.
[0031] Among them, the reference numerals in the figures are:
[0032] 10—combining device 11—adsorption conveying device 12—first frame
[0033] 13 - First traction wheel group 14 - Steering wheel group 15 - Gluing device
[0034] 20 - Slicing device 21 - Second traction wheel group 22 - Slicing wheel group
[0035] 30 - Reinforcement sheet discharge device 40 - Storage device 50 - Edge band welding device
[0036] 51 - Second frame 52 - Discharging conveyor 53 - First sideband welding device
[0037] 54 - Second sideband welding device 55 - First material pulling device 56 - Second material pulling device
[0038] 57 - Welding column 60 - T-belt welding device 61 - Long belt welding device
[0039] 62 - Short strip welding device 63 - Overlap welding device 64 - Cutting and moving device
[0040] 65—T-type welding device 70—discharging rack 531—storage tray
[0041] 532 - slide rail 533 - mounting plate 534 - crimping welding device
[0042] 535 - Assembly welding device 536 - Edge belt storage assembly 537 - Fixed distance pulling device
[0043] 551—Linear motor 552—Telescopic cylinder 553—Rotary gripper
[0044] 651 - Vertical clamp 652 - Rotary welding device 653 - Mounting frame
[0045] 5371—Cutting assembly 5372—Pulling device. DETAILED DESCRIPTION
[0046] The following describes the embodiments of the present invention in detail. Figures 1 to 7 , wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the embodiments of the present invention, but should not be understood as limiting the present invention.
[0047] In the description of the embodiments of the present invention, it should be understood that the terms "length", "width", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the embodiments of the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention.
[0048] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of the technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of the embodiments of the present invention, "plurality" means two or more, unless otherwise specifically defined.
[0049] In the embodiments of the present invention, unless otherwise expressly specified or limited, the terms "installed," "connected," "connected," "fixed," etc. should be understood in a broad sense. For example, they may refer to fixed connection, detachable connection, or integration; mechanical connection or electrical connection; direct connection or indirect connection through an intermediate medium; internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in the embodiments of the present invention based on specific circumstances.
[0050] In one embodiment of the present invention, Figures 1-2 and Figure 4 As shown, a fully automatic surgical gown body production line is provided, including a compounding device 10, a slicing device 20, a reinforcing sheet discharging device 30, a storage device 40, a side band welding device 50 and a T-band welding device 60, wherein:
[0051] The composite device 10 is provided with an adsorption conveying device 11, which is used to position the reinforcement sheet during the conveying process and to compositely assemble the reinforcement sheet onto the main fabric of the surgical gown. The adsorption conveying device 11 has a conveyor belt and an exhaust cylinder combination. The conveyor belt is wrapped around the exhaust cylinder combination, and the exhaust cylinder combination is tightly attached to the bottom surface of the conveyor belt located on the upper surface, applying a suction force to the conveyor belt to adsorb the reinforcement sheet located on the upper surface of the conveyor belt, so that the position of the reinforcement sheet moves during the conveying process.
[0052] The slicing device 20 has its discharge side adjacent to the adsorption conveying device 11. The reinforcing sheet in the conveying process is cut at equal intervals and then conveyed to the adsorption conveying device 11 for further conveying and compounding with the surgical gown main body fabric. The slicing device 20 is provided with a support plate on the discharge side, and the support plate is adjacent to the feed side of the adsorption conveying device 11. At the same time, the support plate and the upper surface of the conveyor belt of the adsorption conveying device 11 are arranged horizontally. A baffle is also provided on the feed side of the adsorption conveying device 11. The two ends of the baffle extend to the top of the adsorption conveying device 11 and the top of the support sheet, respectively. At the same time, a certain distance is left between the baffle and the conveyor belt of the adsorption conveying device 11 and the support sheet for the passage of the cut reinforcing sheet.
[0053] The reinforcing sheet discharging device 30 is arranged adjacent to the feed side of the slicing device 20, and the surgical gown body assembled with the reinforcing sheet output by the composite device 10 passes from under the reinforcing sheet discharging device 30. A discharging adjustment device for adjusting the tension of the fabric is provided on the reinforcing sheet discharging device 30.
[0054] The material discharge adjustment device consists of a plurality of fixed shaft frames arranged at intervals and a plurality of rotating shaft frames arranged at intervals. The rotating shaft frames are located below the fixed shaft frames. The slack of the reinforcing sheet fabric repeatedly wound on the two shaft frames can be adjusted by adjusting the inclination of the rotating shaft frames.
[0055] The storage device 40 is arranged on both sides of the reinforcing sheet discharging device 30 opposite to the slicing device 20, and is used to receive and store the surgical gown main body fabric conveyed from below the reinforcing sheet discharging device 30. A plurality of positioning shafts are arranged at intervals on the storage device 40, and a plurality of rotating shafts that can be moved up and down at intervals are arranged below each positioning shaft. When each rotating shaft descends, the surgical gown main body fabric being conveyed is stored. After the side band welding is completed, each rotating shaft rises to discharge the stored fabric into the side band welding device 50 for processing. This operation is repeated to realize uninterrupted conveyance of the surgical gown main body fabric at the workstation in front of the storage device 40.
[0056] The sideband welding device 50 is arranged adjacent to the discharge side of the storage device 40, and simultaneously welds the sidebands on both sides of the received surgical gown main body fabric.
[0057] The T-band welding device 60 is provided with two T-band welding devices 60, and the two T-band welding devices 60 are arranged back to back. The T-band welding device 60 on one side is adjacent to the discharge side of the side band welding device 50, and is used to weld the front and back sides of the surgical gown body with the side band welded. The cloth is conveyed into the T-band welding device 60 from the top of the T-band welding device 60, and the surgical gown body cloth enters the T-band welding device 60 from the top. After that, the direction is reversed to the overall conveying direction of the surgical gown body cloth, and the direction is turned to perform T-band fixed welding on the plane. Then, it continues to move downward under the pull of the power wheel group and turns again to make the direction consistent with the conveying direction of the surgical gown body cloth, passes through the bottom of the T-band welding device 60, passes through the elastic adjustment component, turns upward to the other side T-band processing surface, and then turns towards the conveying direction of the surgical gown body cloth to perform T-band fixed processing on the other side, and then outputs it to the next process for contour cutting.
[0058] The fully automatic surgical gown body production line in the present invention is assembled by a compound device 10, a slicing device 20, a reinforcing sheet discharging device 30, a storage device 40, a side band welding device 50 and a T-band welding device 60. When the various devices are arranged and combined, they are arranged and assembled in the order of the compound device 10, the slicing device 20, the reinforcing sheet discharging device 30, the storage device 40, the side band welding device 50 and the T-band welding device 60. A discharging rack 70 is also provided adjacent to the feeding side of the compound device 10. The surgical gown body fabric roll is placed on the discharging rack 70, and two automatically rotatable lifting rods are provided on the discharging rack 70. The two lifting rods are arranged opposite to each other, and one end of the lifting rod is rotatably mounted on the discharging rack 70, and the other end rotates freely. At the same time, a groove with an opening facing upward is opened on the lifting rod, and the groove is arranged near the free end edge of the lifting rod. The two ends of the reel of the material roll are placed in the two grooves. The setting of the groove prevents the material roll from escaping from the lifting rod. The lifting rod is started. The material roll rotates along the point where it is rotated and installed, and automatically slides down and is located between the material lifting rod and the material discharge rack 70 due to the inclination of the upper surface of the material lifting rod. The cloth is output from the material discharge rack 70 and enters the composite device 10. It is turned 180 degrees above the adsorption conveying device 11 arranged on the composite device 10, so that the upper surface of the cloth being conveyed is in close contact with the upper surface of the conveyor belt of the adsorption conveying device 11. The slicing device 20 is adjacent to the adsorption conveying device 11. At the same time, the reinforcing sheet discharge device 30 is adjacent to the slicing device 20. The reinforcing sheet discharge device 30 inputs the reinforcing sheet into the slicing device 20 for slicing, and then outputs it one by one from the slicing device 20 to the adsorption conveying device 11. A plurality of through holes are provided on the conveyor belt of the adsorption conveying device 11 for cooperating with the suction pipe at the bottom of the upper conveyor belt to extract air, so that the reinforcing sheet on the conveyor belt is in close contact with the conveyor belt. During the movement of the conveyor belt, it is displaced due to contact with the fabric of the surgical gown body, affecting the composite effect.
[0059] During the conveying process, the reinforcing sheet is tightly attached to the upper surface of the surgical gown main body fabric. After the turning, the surgical gown main body fabric is turned downward and then transformed in the fabric conveying direction, passing through the bottom of the reinforcing sheet discharge device 30 and entering the storage device 40. The sideband welding device 50 adjacent to the discharge side of the storage device 40 successively welds the sidebands on the edges of the surgical gown main body fabric on both sides. Since the surgical gown main body fabric located on the feeding side of the storage device 40 is conveyed continuously and the surgical gown main body fabric located on the discharge side of the storage device 40 has a brief pause when the sideband is welded, it is necessary to use the storage function of the storage device 40 to temporarily store the fabric conveyed on the other side when the welding sideband is paused, and after the welding is completed, it is conveyed to the sideband welding station together for sideband welding, so as to achieve the conveying of the surgical gown main body fabric in front of the storage device 40 when the sideband is welded. The surgical gown needs to be paused. After the side bands are welded, the main fabric of the surgical gown turns upward and rises to a certain height. Then, it turns to be consistent with the processing and conveying direction of the surgical gown main fabric and turns downward from the top to enter the T-belt welding device 60 to weld and fix the T-belt on one side of the surgical gown main fabric. After the welding is completed, it turns downward and conveys from the bottom. Then it turns upward to achieve the flipping of the processed surface. The other side of the surgical gown main fabric is welded with the T-belt and finally conveyed to the cutting station for finished product contour cutting to obtain the finished surgical gown. When the surgical gown is worn, the side with the reinforcement plate is placed inward on the chest to prevent liquid penetration. Then, the side band farther from the T-belt on the side of the reinforcement plate is passed around the back and tied together with the T-belt. Then, the other side band is passed around the back and tied together with the T-belt on the front of the surgical gown main body to complete the wearing of the surgical gown. Through the cooperation between the above devices, the cloth conveying does not need to be paused, and the stations are automatically connected, so that the surgical gown main body can be fully automatically produced, effectively improving production efficiency.
[0060] In another embodiment of the present invention, Figures 1 to 3As shown, the composite device 10 also includes a first frame 12 and a first traction wheel group 13 fixedly mounted on the first frame 12, a steering wheel group 14 and a gluing device 15 for gluing the surgical gown main body fabric being transported at a fixed distance. The steering wheel group 14, the gluing device 15 and the adsorption conveying device 11 are all fixedly mounted on the first frame 12. The gluing device 15 is located above the steering wheel group 14, and a supporting wheel group is provided in the steering wheel group 14. The supporting wheel group is located on the surgical gown main body fabric feeding side of the gluing device 15. At the same time, the supporting wheel group is arranged near the coating device to support the plane of the surgical gown main body fabric being transported, so that the gluing device 15 can gluing the surgical gown main body fabric being transported. The surface of the surgical gown body fabric is glued at a fixed distance, the adsorption conveying device 11 is located below the rotating shaft of the steering wheel group 14, and the adsorption conveying device 11 is tightly attached to the surgical gown body fabric wrapped around the steering wheel group 14, and the conveying speed of the fabric on the steering wheel group 14 is consistent with the conveying speed of the conveyor belt on the adsorption conveying device 11, ensuring that the reinforcing sheet and the surgical gown body fabric being conveyed are relatively stationary, the first traction wheel group 13 is fixedly installed in the first frame 12, and the first traction wheel group 13 is located below the steering wheel group 14, and is used to pull the steering compounded surgical gown body fabric out from below, the first traction wheel group 13 pulls the fabric transmission, enters the first frame 12 for conveying, and effectively utilizes the internal space of the equipment.
[0061] The steering wheel group 14 is composed of a steering traction wheel group, a pressing shaft and a gluing steering shaft, and the steering traction wheel group is arranged near the feed end edge of the first frame 12. A feeding steering shaft is arranged at a position below the traction wheel group in the first frame 12. The cloth is wound from the feeding steering shaft and upwardly enters the steering traction wheel group. The steering traction wheel group pulls the cloth forward to wrap around the gluing steering shaft, and the supporting wheel group is adjacent to the gluing steering shaft. The gluing device 15 is located above the supporting wheel group and the gluing steering shaft, and glues the surgical gown main body cloth supported by the supporting wheel group. After steering, the glued part overlaps with the reinforcement sheet to realize the composite assembly of the reinforcement sheet, and then is pasted more firmly under the extrusion of the pressing shaft, and finally turns to enter the first traction wheel group 13 for transportation.
[0062] In another embodiment of the present invention, Figures 1-2 As shown, a plurality of adsorption through holes are provided on the conveyor belt of the adsorption conveying device 11, and the bottom of the conveyor belt part located above is close to the exhaust cylinder combination. The suction force of the exhaust cylinder combination makes the reinforcing sheet close to the conveyor belt for conveyance. During the process of compounding with the main fabric of the surgical gown being conveyed, no positional displacement will occur, resulting in defective products, thereby effectively improving the yield rate of the finished product.
[0063] In another embodiment of the present invention, Figures 1 to 3As shown, the slicing device 20 includes a second traction wheel group 21 and a slicing wheel group 22, a support plate is provided on the discharge side of the slicing wheel group 22, and a support plate is also provided on the feed side of the slicing wheel group 22, and two support plates are adjacently provided on one side for placing the reinforcing sheet fabric, the second traction wheel group 21 and the slicing wheel group 22 are both fixedly mounted on the first frame 12, the slicing wheel group 22 and the second traction wheel group 21 are spaced apart along the conveying direction of the surgical gown body fabric, and the second traction wheel group 21 is adjacent to the reinforcing sheet discharge device 30, and the second traction wheel group 21 pulls the reinforcing sheet fabric on the reinforcing sheet discharge device 30 to be input into the slicing wheel group 2 2 is cut and separated at a fixed distance to obtain a single piece of reinforcement sheet of the required length. The cut reinforcement sheet cloth end is placed on the support plate located on the feeding side of the slicing wheel group 22, and falls off the processing position of the slicing wheel group 22, resulting in the stopping of the cutting production of the reinforcement sheet, a composite gap period of the reinforcement sheet, and defective products. The slicing wheel group 22 is located between the second traction wheel group 21 and the adsorption conveying device 11, and the slicing wheel group 22 is closely arranged to the adsorption conveying device 11. The slicing wheel group 22 and the adsorption conveying device 11 are connected by a support plate, and then a baffle arranged above the support plate and the adsorption conveying device 11 is used to prevent the reinforcement sheet from rolling up during movement.
[0064] In another embodiment of the present invention, Figure 1 and Figure 4As shown, the sideband welding device 50 includes a second frame 51, a discharging conveying device 52, a first sideband welding device 53, a second sideband welding device 54, a first pulling device 55, a second pulling device 56 and two welding columns 57. The discharging conveying device 52 is vertically arranged on the second frame 51, and the discharging conveying device 52 is fixedly installed at the top edge of the second frame 51. The discharging conveying device 52 is composed of a mounting frame, a pulling power wheel group, a steering shaft and an adjusting steering assembly. The pulling power wheel group and the steering shaft are fixedly installed on the upper surface of the second frame 51 and are located within the projection range of the mounting frame. The adjusting steering assembly consists of three rollers. The three rollers are arranged vertically, the top and bottom two rollers are fixed and do not move, and the roller between the two rollers moves in the opposite direction of the processing direction of the surgical gown main body fabric to pull the surgical gown main body fabric wrapped on the rollers to control its tension. The discharge conveying device 52 is arranged adjacent to the T-belt welding device 60, and the first side band welding device 53 and the second side band welding device 54 are both fixedly installed at the side edge position of the discharge conveying device 52. The first side band welding device 53 and the second side band welding device 54 are fixedly installed on the mounting frame, and the first side band welding device 53 and the second side band welding device 54 are mirror images relative to each other. The pulling power wheel group is arranged adjacent to the first side band welding device 53 and the second side band welding device 54, and the surgical gown main body fabric is pulled to move for side band welding and fixing. The two welding posts 57 are fixedly installed on the second frame 51, and the two welding posts 57 are respectively located below the welding joints of the first side band welding device 53 and the second side band welding device 54. The two welding posts 57 are respectively located below the two side edges of the surgical gown main body fabric being transported. When the position to be processed of the surgical gown main body fabric moves there, the first side band welding device 53 and the second side band welding device 54 respectively cooperate with the two welding posts 57 to perform two side The first pulling device 55 and the second pulling device 56 are fixedly installed on the second frame 51, and the first pulling device 55 and the second pulling device 56 are respectively located below the first side band welding device 53 and the second side band welding device 54, and are used to pull the two side bands to the welding column 57 for welding. The strokes of the first pulling device 55 and the second pulling device 56 are respectively located between the two side edges and the two welding columns 57, and are used to move the folded and welded side bands output from the first side band welding device 53 and the second side band welding device 54 to the position of the welding column 57 for fixed welding.
[0065] In another embodiment of the present invention, Figure 1 and Figures 4-5As shown, the first pulling device 55 side band welding device 50 and the second pulling device 56 side band welding device 50 both include a storage tray 531, a slide rail 532, a mounting plate 533, a curling welding device 534, an assembly welding device 535, a side band storage component 536 and a fixed-distance pulling device 537. Two slide rails 532 are arranged side by side up and down, so that the installation and operation of the mounting plate 533 are more stable. A curling horn is provided on the curling welding device 534 for folding both sides of the side band strip inward and then welding and fixing it to increase the thickness of the side band. The storage tray 531 is fixedly installed in the middle position of the side of the discharging conveying device 52, and the two storage trays 531 are fixedly staggered and fixedly installed on the same mounting rod. The mounting rod is fixedly mounted on the mounting frame of the discharge conveying device 52, and the two storage trays 531 are respectively located on both sides of the mounting rod, the slide rail 532 is fixedly mounted on the side of the discharge conveying device 52 in the horizontal direction, and the two ends of the slide rail 532 extend to the side of the discharge conveying device 52 and the middle position of the side of the discharge conveying device 52 respectively, the mounting plate 533 is slidably mounted on the slide rail 532, and the mounting plate 533 moves on the slide rail 532 to adjust the relative positions of the first pulling device 55 side band welding device 50 and the second pulling device 56 side band welding device 50, a slider is provided on the back of the mounting plate 533, and the slider is slidably mounted on the slide rail 532, the curling welding device 534 and the assembly welding device 535 The edge band material storage assembly 536 and the fixed distance pulling device 537 are fixedly mounted on the side of the mounting plate 533, the curling and welding device 534 includes a pressing shaft, a welding roller shaft and a curling and welding head, and a curling plate is provided on the edge of the curling and welding head. One end of the mounting rod of the pressing shaft is fixedly mounted on the mounting plate 533, and the other end of the mounting rod is rotatably connected to the rotating shaft on the pressing shaft. The mounting rod is tilted so that the rotating shaft can abut against the input edge band material for folding and then welding. The curling and welding device 534 is arranged near one side edge of the mounting plate 533, and the curling and welding device 534 is arranged near one side edge. The curling and welding is achieved through the cooperation and welding between the welding roller shaft and the curling and welding head on the curling and welding device 534. The whole section of the side band is folded in half and welded, and the curling welding device 534 is arranged opposite to the storage tray 531, and is used to receive the side band on the storage tray 531 for curling welding. The side band fabric on the storage tray 531 passes through the pressing shaft and directly enters the curling plate adjacent to the curling welding head, and is folded in half and dissolved. The side band storage component 536 is arranged adjacent to the curling welding device 534, and the fixed-distance pulling device 537 is arranged adjacent to the side band storage component 536, and the fixed-distance pulling device 537 is arranged near the edge of the mounting plate 533. The fixed-distance pulling device 537 pulls the side band at a fixed distance and then cuts and outputs it. At this time, the side band conveying needs to be paused, and the side band welded during the pause is stored and output through the setting of the side band storage component 536.This ensures that the workstation in front of the webbing storage assembly 536 does not need to pause, effectively improving production efficiency. The movable end of the fixed-distance pulling device 537 moves up and down to pull and cut the webbing of fixed length. The first pulling device 55 and the second pulling device 56 are respectively located below the two fixed-distance pulling devices 537, and are used to move the webbing cut on the fixed-distance pulling device 537 to the bottom of the welding head for welding and fixing. At the same time, the movable end of the fixed-distance pulling device can be moved to the bottom of the first pulling device 55 and the second pulling device 56, and then the first pulling device 55 and the second pulling device 56 both rotate by clamping the straightened webbing, and move the end of the webbing to the side and to the bottom of the welding head for welding and fixing.
[0066] In another embodiment of the present invention, Figure 1 and Figures 4-5 As shown, the fixed-distance pulling device 537 includes a positioning and cutting component 5371 and a pulling device 5372. The positioning and cutting component 5371 fixes the position of the side band and then cuts it. After the pulling device 5372 pulls the side band to the required length, the positioning and cutting component 5371 fixes the side band and cuts it. The cutting component 5371 and the pulling device 5372 are both fixedly mounted on the mounting plate 533. The positioning and cutting component 5371 is located at one end of the pulling device 5372. The positioning and cutting component 5371 is adjacent to the side band storage component 536. The pulling device 5372 is adjacent to the cutting component 5371. The pulling device 5372 is provided with a first finger cylinder that can move up and down. The first finger cylinder is located below the cutting component 5371 and is used to pull the edge band output by the cutting component 5371. The first finger cylinder can be moved to the bottom of the first pulling device 55. After the first pulling device 55 grabs it, the first finger cylinder is released, and the upper positioning cutting component 5371 releases the cut edge band. The first pulling device 55 rotates so that the end of the excess edge band is set toward the direction of the welding joint and moved to the bottom of the welding joint for welding and fixing. The first finger cylinder returns to the position of the fixed cutting component 5371 to clamp the positioned end of the edge band and repeat the operation to complete the edge band welding.
[0067] In another embodiment of the present invention, Figure 1 and Figures 4-5As shown, the first pulling device 55 and the second pulling device 56 each include a linear motor 551, a telescopic cylinder 552 and a rotating gripper 553. The rotating gripper 553 can rotate 360 degrees, and the orientation of the clamped edge band end is changed by rotation, so that the orientation of the edge band end is conducive to welding and fixing. The linear motor 551 is fixedly installed on the second frame 51 in a horizontal direction, and one end of the linear motor 551 is located below the fixed-distance pulling device 537, and the other end of the linear motor 551 extends to the side of the welding column 57. The telescopic cylinder 552 It is fixedly mounted on the moving end of the linear motor 551, and a mounting plate 533 is provided on the moving end of the linear motor 551. The telescopic cylinder 552 is fixedly mounted on the mounting plate 533 for movement, and the telescopic end of the telescopic cylinder 552 is set opposite to the fabric conveying direction of the surgical gown body. The rotating gripper 553 is fixedly mounted on the telescopic end of the telescopic cylinder 552, and a mounting block is provided on the moving end of the telescopic cylinder 552. The rotating gripper 553 is fixedly mounted on the mounting block. By setting the mounting block, the rotating gripper 553 is located on the side of the telescopic cylinder 552.
[0068] In another embodiment of the present invention, Figure 1 and Figure 6 As shown, the T-belt welding device 60 is provided with a long belt welding device 61, a short belt welding device 62, an overlapping welding device 63, a cutting and moving device 64 and a T-shaped welding device 65. The long belt welding device 61 and the short belt welding device 62 are both provided with material shafts, and the two material shafts are respectively arranged adjacent to the coil plates on the long belt welding device 61 and the short belt welding device 62. The short belt fabric after the curling welding on the short belt welding device 62 and the long belt fabric after the curling welding on the field welding device are both conveyed to the overlapping welding device 63, and the two are welded together by the overlapping welding device 63. The overlapping welding device 63 is provided with a short belt cutting component 5371. The short belt cutting component 5371 will clamp the short belt and move it to the overlapping welding device 63, and then cut it at a fixed distance. Repeat this operation to obtain a T-belt in which the long and short belts overlap and are sewn together.
[0069] like Figures 6-7As shown, a side plate is slidably installed on the T-belt welding device 60, and the long belt welding device 61, the short belt welding device 62, the overlapping welding device 63, the cutting moving device 64 and the T-belt welding device 65 are all fixedly installed on the side of the side plate. The vertically arranged side plate allows the long belt welding device 61, the short belt welding device 62, the overlapping welding device 63, the cutting moving device 64 and the T-belt welding device 65 to be three-dimensionally installed to perform T-belt welding on the surgical gown main body fabric below, and the long belt welding device 61 and the short belt welding device 62 are arranged relative to each other, and the overlapping welding device 63 is located between the long belt welding device 61 and the short belt welding device 62, and the long belt on the long belt welding device 61 and the short belt on the short belt welding device 62 are both inserted into the overlapping welding device 63 for overlapping welding, and the overlapping welding device 63 is arranged adjacent to the long belt welding device 61, and the short belt after welding is transported to the overlapping welding device The long strip of fabric is overlapped and welded after the fixed-distance cutting and welding are completed in the connecting device 63. The cutting moving device 64 is located between the short strip welding device 62 and the overlapping welding device 63. The cutting moving device 64 cuts the long strip of the combination of the long strip and the short strip after overlapping welding to finally obtain a T-shaped finished product, and the cutting moving device 64 is located between the T-welding device 65 and the side plate. The welding head of the T-welding device 65 is fixedly installed on the T-belt welding device, and the welding head is located below the T-welding device 65. After the cutting moving device 64 pulls the fixed-length T-belt, the T-welding device 65 clamps the T-belt, and the cutting moving device 64 cuts the T-belt. The separating device arranged below the T-welding device 65 separates the long strip and the short strip at the overlapping ends of the T-belt by vacuum suction, forming a T-shape with the T-belt body, and then welds the separated long strip end and short strip end to one side of the surgical gown body fabric being conveyed.
[0070] Among them, the overlapping welding device 63 includes a positioning device, a welding assembly, an overlapping gripper and a short-strap scissors. The positioning device, the welding assembly and the short-strap scissors are all fixedly installed on the side panel, and the positioning device and the short-strap scissors are respectively located on the front and back sides of the side panel. A movable hole is provided on the side panel. The overlapping gripper is slidably installed on the back side of the side panel and is adjacent to the short-strap scissors. The short-strap scissors and the overlapping gripper both pass through the movable hole and are adjacent to the positioning device. The short strap passes through the positioning device and is grabbed at one end by the overlapping gripper, and is moved to the welding assembly for overlapping welding with the long strap that is wrapped around it. When the welding reaches a certain distance, the positioning device fixes the short strap, and the short strap scissors shorten the short strap to complete the overlapping welding of the short strap and the long strap.
[0071] In another embodiment of the present invention, Figure 7As shown, the T-shaped welding device 65 includes a vertical clamp 651, a rotary welding device 652 and a mounting frame 653. The vertical clamp 651 is used to clamp a portion of the length of the T-shaped belt to prevent the entire section of the T-shaped belt from falling after cutting. The mounting frame 653 is fixedly installed on the side panel. The rotary welding device 652 is slidably installed on the mounting frame 653 up and down. The height of the rotary welding device 652 is adjusted by sliding installation. The vertical clamp 651 is fixedly installed on the rotary welding device 652. The vertical clamp 651 is fixedly installed on the rotary welding device 652 so that the two are relatively stationary and the position between the two remains unchanged. When the rotary welding device 652 is attached to the sides of the long belt and the short belt to separate the two, there will be no damage due to the rotary welding device 652. The change in position between the vertical clamp 651 causes the long and short straps of the rotary welding device 652 to loosen and fall off, resulting in an error when welding the T-strap part. The clamping part of the vertical clamp 651 is located above the rotary clamping component of the rotary welding device 652, and the rotary clamping component of the rotary welding device 652 is located below the vertical clamp 651. It rotates to adsorb the long and short straps that overlap with the extra T-strap part below the vertical clamp 651, and then rotates to separate them so that the separated long strap part, short strap part and T-strap body form a T shape, and then the separated long strap part and short strap part are welded to the surgical gown main body fabric. The welding surface of the rotary clamping component is provided with a number of vacuum suction holes for adsorbing and separating the overlapping long and short straps.
[0072] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A fully automatic surgical gown production line, characterized by: include A composite device is provided with an adsorption conveying device for positioning the reinforcing sheet during the conveying process and compositely assembling the reinforcing sheet onto the main fabric of the surgical gown; The compounding device further includes a first frame and a first traction wheel group fixedly mounted on the first frame, a steering wheel group, and a gluing device for gluing the surgical gown main body fabric being transported at a fixed distance. The steering wheel group, the gluing device, and the adsorption conveying device are all fixedly mounted on the first frame. The gluing device is located above the steering wheel group, and the adsorption conveying device is located below the rotating shaft of the steering wheel group. The adsorption conveying device is in close contact with the surgical gown main body fabric wrapped around the steering wheel group. The first traction wheel group is fixedly mounted in the first frame and is located below the steering wheel group. The first traction wheel group is used to pull, steer, and compound the surgical gown main body fabric and output it from below. A slicing device, the discharging side of which is arranged adjacent to the adsorption conveying device, cuts the reinforcing sheet in the conveying process at equal intervals and then conveys it to the adsorption conveying device, and then conveys it to be compounded with the main fabric of the surgical gown; The slicing device includes a second traction wheel group and a slicing wheel group, the second traction wheel group and the slicing wheel group are fixedly mounted on the first frame, and the second traction wheel group is arranged adjacent to the reinforcing sheet unloading device, and the slicing wheel group is located between the second traction wheel group and the adsorption conveying device, and the slicing wheel group and the adsorption conveying device are arranged closely; a reinforcing sheet discharge device, the reinforcing sheet discharge device being arranged adjacent to the feed side of the slicing device, and the surgical gown body after being assembled with the reinforcing sheet outputted by the compounding device passing under the reinforcing sheet discharge device; A material storage device is provided on both sides of the reinforcing sheet discharging device opposite to the slicing device, and is used to receive and store the surgical gown main body fabric conveyed from below the reinforcing sheet discharging device; A sideband welding device is provided adjacent to the discharge side of the storage device, and simultaneously welds the sidebands on both sides of the received surgical gown main body fabric; T-shaped belt welding devices are provided, and two T-shaped belt welding devices are arranged back to back. One side of the T-shaped belt welding device is arranged adjacent to the discharge side of the side belt welding device, and is used to weld the T-shaped belts on the front and back sides of the surgical gown body after the side belts are welded.
2. The fully automatic surgical gown production line according to claim 1 is characterized in that: A plurality of adsorption through holes are provided on the conveyor belt of the adsorption conveying device.
3. The fully automatic surgical gown production line according to claim 1 is characterized in that: The side band welding device includes a second frame, a discharging conveying device, a first side band welding device, a second side band welding device, a first pulling device, a second pulling device and two welding columns. The discharging conveying device is fixedly installed at the top edge position of the second frame, and the discharging conveying device is arranged adjacent to the T-shaped band welding device. The first side band welding device and the second side band welding device are both fixedly installed at the side edge position of the discharging conveying device, and the first side band welding device and the second side band welding device are mirror-imaged. The two welding columns are both fixedly installed on the second frame, and the two welding columns are respectively located below the welding joints of the first side band welding device and the second side band welding device. The first pulling device and the second pulling device are both fixedly installed on the second frame, and the first pulling device and the second pulling device are respectively located below the first side band welding device and the second side band welding device, for pulling the two side bands to the welding columns for welding.
4. The fully automatic surgical gown production line according to claim 3 is characterized in that: The first pulling device and the second pulling device each include a storage tray, a slide rail, a mounting plate, a curling and welding device, an assembly welding device, a side strip storage component and a fixed-distance pulling device. The storage tray is fixedly mounted on the middle position of the side of the discharging conveying device, the slide rail is fixedly mounted on the side of the discharging conveying device laterally, and the mounting plate is slidably mounted on the slide rail. The curling and welding device, the assembly welding device, the side strip storage component and the fixed-distance pulling device are all fixedly mounted on the side of the mounting plate. The curling and welding device is arranged adjacent to one side edge of the mounting plate, and The curling and welding device is arranged opposite to the storage tray and is used to receive the edge strips on the storage tray for curling and welding. The edge strip storage assembly is arranged adjacent to the curling and welding device. The fixed-distance pulling device is arranged adjacent to the edge strip storage assembly, and the fixed-distance pulling device is arranged adjacent to the edge of the mounting plate. The movable end of the fixed-distance pulling device moves up and down to pull and cut the edge strips of fixed length. The first pulling device and the second pulling device are respectively located below the two fixed-distance pulling devices, and are used to move the edge strips cut on the fixed-distance pulling device to the bottom of the welding head for welding and fixing.
5. The fully automatic surgical gown production line according to claim 4 is characterized in that: The fixed-distance pulling device includes a positioning cutting component and a pulling device, and the cutting component and the pulling device are both fixedly mounted on the mounting plate. The positioning cutting component is adjacent to the side band storage component, and the pulling device is adjacent to the cutting component. The pulling device is provided with a first finger cylinder that can move up and down, and the first finger cylinder is located below the cutting component and is used to pull the side band output by the cutting component.
6. The fully automatic surgical gown production line according to claim 4 is characterized in that: The first pulling device and the second pulling device both include a linear motor, a telescopic cylinder and a rotary gripper. The linear motor is laterally fixedly mounted on the second frame, and one end of the linear motor is located below the fixed-distance pulling device. The other end of the linear motor extends to the side of the welding column. The telescopic cylinder is fixedly mounted on the moving end of the linear motor, and the telescopic end of the telescopic cylinder is arranged opposite to the fabric conveying direction of the surgical gown body. The rotary gripper is fixedly mounted on the telescopic end of the telescopic cylinder.
7. The fully automatic surgical gown production line according to claim 1 is characterized in that: The T-shaped strip welding device comprises two T-shaped strip devices arranged back to back, and the T-shaped strip device is provided with a long strip welding device, a short strip welding device, an overlapping welding device, a cutting moving device and a T-shaped welding device, wherein a side plate is slidably mounted on the T-shaped strip welding device, the long strip welding device, the short strip welding device, the overlapping welding device, the cutting moving device and the T-shaped welding device are all fixedly mounted on the side surfaces of the side plates, and the long strip welding device and the short strip welding device are relatively arranged, the overlapping welding device is located between the long strip welding device and the short strip welding device, the long strip on the long strip welding device and the short strip on the short strip welding device both penetrate into the overlapping welding device for overlapping welding, and the overlapping welding device is arranged adjacent to the long strip welding device, the cutting moving device is located between the short strip welding device and the overlapping welding device, and the cutting moving device is located between the T-shaped welding device and the side plate, the welding head of the T-shaped welding device is fixedly mounted on the T-shaped welding device, and the welding head is located below the T-shaped welding device.
8. The fully automatic surgical gown production line according to claim 7 is characterized in that: The T-shaped welding device includes a vertical clamp, a rotary welding device and a mounting frame. The mounting frame is fixedly installed on the side panel. The rotary welding device is slidably installed on the mounting frame. The vertical clamp is fixedly installed on the rotary welding device, and the clamping portion of the vertical clamp is located above the rotary clamping assembly of the rotary welding device. The welding surface of the rotary clamping assembly is provided with a plurality of vacuum suction holes for adsorbing and separating overlapping long and short strips.
Citation Information
Patent Citations
Automatic operating gown production line and production process
CN116831346A
Full-automatic surgical gown body production line
CN217885195U