Ultrasonic cutting and strip pasting integrated equipment capable of achieving rapid circular machining

By integrating ultrasonic cutting and strip attaching equipment, the production of fabric cutting and welding and reinforcement strip attachment is automated, which solves the problem of insufficient ultrasonic welding connection strength, improves production efficiency and product quality stability, and reduces equipment and labor costs.

CN223735508UActive Publication Date: 2025-12-30FOSHAN YIBAI MASCH MFG CO LTD
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Patent Information

Application Number
CN202520077075.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2025-12-30
Estimated Expiration
2035-01-14

AI Technical Summary

Technical Problem

The existing ultrasonic welding and cutting technology in garment processing has insufficient connection strength, which makes the garments easy to break or loosen during use. In addition, the existing process equipment is numerous, has low production efficiency, is highly dependent on manual labor, and has high overall costs.

Method used

Design a rapid, cyclical ultrasonic cutting and strip attaching integrated equipment that integrates ultrasonic welding, feeding, cutting, clamping, and hot and cold pressing functions to achieve automated production of fabric cutting, welding, and reinforcing strip attachment.

Benefits of technology

Significantly shortens the processing cycle, reduces reliance on skilled workers, improves product consistency and quality stability, reduces equipment and maintenance costs, and ensures a stronger bond between the adhesive strip and the fabric.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of garment processing equipment, and discloses ultrasonic cutting and strip pasting integrated equipment for rapid circular processing, which integrates the processes of ultrasonic cutting and welding, reinforcing strip pasting, hot pressing, cold pressing and the like, and can complete all procedures of seamless garment processing in single equipment. According to the equipment, through integrated design, full-automatic operation of the machining process is achieved, repeated manual intervention is not needed, dependence on skilled workers is effectively reduced, and the machining efficiency and the product consistency are improved. The problem that connection is not firm in the prior art is solved, meanwhile, the equipment structure is simplified, purchase and maintenance cost and workshop space occupation are reduced, seamless garment processing efficiency and quality are guaranteed, comprehensive production cost is reduced, and a more efficient and economical solution is provided for garment manufacturing enterprises.
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Description

TECHNICAL FIELD

[0001] The utility model relates to clothing processing equipment technical field, especially in a kind of ultrasonic cutting and strip integrated equipment of rapid circulation processing. BACKGROUND

[0002] With the continuous development of seamless clothing technology, ultrasonic cutting technology is widely used in clothing processing, for connecting fabric edge together. However, although ultrasonic cutting can realize preliminary fabric connection, due to its low connection strength, clothing is prone to breakage or loose problem in actual use. Therefore, in order to improve the firmness of clothing connection part, it is usually necessary to further strengthen the connection through strip pasting process.

[0003] Current strip pasting process often relies on the combined use of multiple equipment. For example, it is usually necessary to use ultrasonic cutting equipment for preliminary connection, then glue strip is pasted on strip pasting machine, heated and bonded by hot pressing machine, and finally solidified by cold pressing instrument. This step-by-step processing procedure not only has complex process, but also has the following significant problems:

[0004] 1. Large number of equipment, difficult to coordinate production line: multiple equipment need to be cooperated, and the operation parameters and production rhythm of each equipment need to be strictly controlled, otherwise it is easy to cause unstable quality problem.

[0005] 2. Low processing efficiency: due to the need to frequently transfer workpiece between multiple equipment, the processing cycle is long, which is not suitable for mass production demand.

[0006] 3. Strong dependence on manual operation: existing process needs skilled workers to operate different equipment, and the steps of manual adjustment and handling are more, which increases labor intensity, and due to human factors, product quality fluctuation is easy to occur.

[0007] 4. High comprehensive cost: equipment procurement cost and labor cost are relatively high, especially under the background that seamless clothing production gradually develops towards high efficiency and low cost, this problem becomes more prominent.

[0008] Therefore, how to integrate ultrasonic cutting and strip pasting process in one, improve processing efficiency and reduce dependence on manual operation, becomes the technical problem to be solved by the utility model.

[0009] Therefore, it is necessary to make improvement. UTILITY MODEL CONTENT

[0010] The utility model solves the technical problem in view of the defects in the prior art, and provides a kind of ultrasonic cutting and strip integrated equipment of rapid circulation processing, to solve the problems raised in the above background technology.

[0011] To solve the above technical problems, the utility model adopts the technical scheme as follows: A kind of ultrasonic cutting and strip pasting integrated equipment of rapid circulation processing, it include: rack, the rack is used to install and support mechanical components, the rack has workbench on it;Ultrasonic welding device, the ultrasonic welding device is installed above the workbench, the ultrasonic welding device is used to cut and weld on the cloth of template;First linear moving device, the first linear moving device is arranged in one side of the workbench, the first linear moving device drives linear movement;Pressing device, the pressing device is more than one, the pressing device is arranged on the first linear moving device, the pressing device is used to hold template, and under the action of the first linear moving device, template linear movement is driven;Misplacement device, the misplacement device is installed in one side of the workbench, the misplacement device moves cutting and welding position on template from side to above;Feeding device, the feeding device is arranged below the workbench, the feeding device is used to pay off reinforcing strip;Cutting device, the cutting device is arranged in one side of the feeding device, the cutting device drives cutting to reinforcing strip;Second linear moving device, the second linear moving device is arranged below the workbench, the second linear moving device drives linear movement;Clamping device, the clamping device is two groups, one group of the clamping device is installed on the second linear moving device;Another clamping device is arranged opposite to the clamping device, the clamping device drives to hold cloth, and fixed strip is moved to cloth by the second linear moving device;Cold and hot pressing device, the cold and hot pressing device is installed above the workbench, the cold and hot pressing device drives hot pressing operation and cold pressing operation to the cloth of reinforcing strip placement, to make fixed strip adhere in cutting and welding position;Controller, the controller is used to receive signal and output signal.

[0012] Further, the ultrasonic welding device includes a first motor, a screw connected to the output end of the first motor, a first base plate sleeved on the screw, a first slide rail arranged in parallel with the screw, a first telescopic member installed on the first base plate, and an ultrasonic welding head arranged on the first telescopic member; wherein the first base plate is arranged on the first slide rail, when the first motor is driven, the first base plate moves on the first slide rail, and the first telescopic member drives the ultrasonic welding head to move to cut and weld the cloth on the template.

[0013] Further, the first linear movement device comprises a second motor, a first driving wheel arranged on the output end of the second motor, a first driven wheel arranged in interval with the first driving wheel, a first synchronous belt sleeved on the first driving wheel and the first driven wheel, a second slide rail arranged in parallel with the first synchronous belt, and a second base plate arranged on the second slide rail; wherein the second base plate is connected with the synchronous belt, the second motor drives the synchronous belt to rotate, and the second base plate moves along the second slide rail.

[0014] Further, the misplacement device comprises a mounting bracket arranged on the rack, a second telescopic piece arranged on the mounting bracket, guide shafts arranged on both sides of the second telescopic piece, a box body connected with the second telescopic piece and the end of the guide shaft, a third telescopic piece arranged in the box body, and a push plate connected with the third telescopic piece; the third telescopic piece drives the push plate to move to drive the cloth on the template to move and misplace.

[0015] Further, the feeding device comprises a reel arranged below the workbench, a mounting plate arranged above the reel, a guide wheel set arranged on the mounting plate, and a third motor arranged on the mounting plate; wherein the third motor is connected with the guide wheel set, and when the third motor drives the guide wheel set to rotate, the reinforcing strip is unwound from the reel.

[0016] Further, the second linear movement device comprises a fourth motor, a second driving wheel arranged on the fourth motor, a second driven wheel arranged in interval with the second driving wheel, a second synchronous belt sleeved on the second driving wheel and the second driven wheel, a third slide rail arranged in parallel with the second synchronous belt, and a third base plate arranged on the third slide rail; wherein the third base plate is arranged on the third slide rail, and the fourth motor drives the third base plate to move along the third slide rail.

[0017] Further, the clamping device comprises a fourth telescopic piece and a finger air cylinder, one of the clamping devices is arranged on the third base plate, and the other of the clamping devices is arranged at the discharging position of the guide wheel set; wherein the finger air cylinder drives the clamping of the reinforcing strip, the fourth telescopic piece drives the upward movement of the finger air cylinder, and the second linear movement device drives the movement of the cutting and welding position on the template.

[0018] Further, the cold and hot pressing device comprises a fifth telescopic piece arranged on the mounting bracket, a shell connected with the fifth telescopic piece, a fifth motor arranged in the shell, a rotating block connected with a rotating end of the fifth motor, a hot pressing plate arranged on the rotating block, and a cold pressing plate arranged on the rotating block; wherein the hot pressing plate and the cold pressing plate are arranged oppositely, the fifth motor drives the rotating block to rotate, and then the hot pressing plate and the cold pressing plate are switched by rotation.

[0019] Further, the hot pressing plate is connected with the rotating block through a spring, and the cold pressing plate is connected with the rotating block through a spring.

[0020] Compared with the prior art, the beneficial effects of the present application are as follows:

[0021] 1. The ultrasonic melting cutting, rubber strip pasting, hot pressing, cold pressing and other steps are integrated in the same equipment, all processes are completed at one time, the workpiece transfer between multiple equipment is avoided, the processing cycle is greatly shortened, and mass production is possible.

[0022] 2. Through integrated design, the equipment realizes full-automatic operation, without manual intervention in complex equipment adjustment and operation, the dependence on skilled workers is reduced, human error is reduced, product consistency and quality stability are improved.

[0023] 3. The functions of multiple independent equipment are integrated into one equipment, not only the equipment procurement and maintenance cost is reduced, but also the workshop occupied space is effectively saved, and the production comprehensive cost of the enterprise is reduced.

[0024] 4. The integrated equipment realizes seamless connection of the cutting, strip pasting and curing process by accurately controlling each process parameter, ensures that the strip and the fabric are combined more firmly, and effectively solves the problem of insufficient connection strength in the prior art. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 is a structural schematic diagram of the present application.

[0026] Figure 2 is another angle structural schematic diagram of the present application.

[0027] Figure 3 is another angle structural schematic diagram of the present application.

[0028] Figure 4 is a partial structural schematic diagram of the present application.

[0029] Figure 5 is another angle structural schematic diagram of Figure 4 .

[0030] Figure 6It is a structural schematic view of the ultrasonic welding device.

[0031] Figure 7 It is a partial structural schematic view of the utility model.

[0032] Figure 8 It is Figure 7 It is a partial enlarged structural schematic view.

[0033] Figure 9 It is a structural schematic view of the first linear moving device.

[0034] Figure 10 It is a structural schematic view of the dislocation device and the cold and hot pressing device.

[0035] Figure 11 It is a partial structural schematic view of the dislocation device.

[0036] Figure 12 It is a partial structural schematic view of the dislocation device.

[0037] Figure 13 It is a structural schematic view of the feeding device.

[0038] Figure 14 It is a structural schematic view of the second linear moving device.

[0039] Figure 15 It is a structural schematic view of the second linear moving device.

[0040] Figure 16 It is a structural schematic view of the cold and hot pressing device.

[0041] Reference signs: 1, rack; 2, workbench; 3, ultrasonic welding device; 4, first linear moving device; 5, pressure holding device; 6, dislocation device; 7, feeding device; 8, cutter device; 9, second linear moving device; 10, clamping device; 11, cold and hot pressing device; 12, first motor; 13, screw rod; 14, first base plate; 15, first sliding rail; 16, first telescopic piece; 17, ultrasonic welding head; 18, second motor; 19, first driving wheel; 20, first driven wheel; 21, second sliding rail; 22, second base plate; 23, mounting support; 24, second telescopic piece; 25, guide shaft; 26, box body; 27, third telescopic piece; 28, push plate; 29, reel; 30, mounting plate; 31, guide wheel set; 32, third motor; 33, fourth motor; 34, second driving wheel; 35, second driven wheel; 36, second synchronous belt; 37, third sliding rail; 38, third base plate; 39, fourth telescopic piece; 40, finger air cylinder; 41, fifth telescopic piece; 42, shell; 43, fifth motor; 44, rotating block; 45, hot pressing plate; 46, cold pressing plate; 47, spring. DETAILED DESCRIPTION

[0042] The utility model will be explained further in detail below in combination with the drawings.

[0043] The embodiments described with reference to the drawings are exemplary and are intended to explain the present application and cannot be understood as a limitation of the present application. In the description of the present application, it is to be understood that the orientations or positional relationships indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise" are based on the orientations or positional relationships shown in the drawings and are only for the convenience of describing the present application and simplifying the description and cannot be understood as indicating or implying that the devices or elements indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application. In addition, the terms "first" and "second" are only for the purpose of description and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features limited by "first" and "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "several" and "a plurality of" is two or more than two, unless otherwise explicitly specified and limited. In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection", "fixing" and the like should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be the communication between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances. In the present application, unless otherwise explicitly specified and limited, the "upper" or "lower" of the first feature to the second feature can include the direct contact of the first and second features, or it can include the contact of the first and second features through another feature between them. Moreover, the "upper", "upper" and "upper" of the first feature to the second feature include the first feature above and obliquely above the second feature, or only indicate that the horizontal height of the first feature is higher than that of the second feature. The "lower", "lower" and "lower" of the first feature to the second feature include the first feature above and obliquely above the second feature, or only indicate that the horizontal height of the first feature is less than that of the second feature.

[0044] In view of the technical problems described in the background art, such as Figures 1-16As shown, a rapid cycle processing ultrasonic cutting and strip integrated device is provided, comprising: a rack 1 for mounting and supporting mechanical components, the rack 1 having a workbench 2; an ultrasonic welding device 3 installed above the workbench 2, the ultrasonic welding device 3 for cutting and welding fabric on the template; a first linear movement device 4 provided on one side of the workbench 2, the first linear movement device 4 driving linear movement; a pressing device 5, the pressing device 5 is more than one, the pressing device 5 is provided on the first linear movement device 4, the pressing device 5 for clamping the template, and driving the template to move linearly under the action of the first linear movement device 4; a misalignment device 6 installed on one side of the workbench 2, the misalignment device 6 moving the cutting and welding position on the template from the side to the top; a feeding device 7 provided below the workbench 2, the feeding device 7 for unwinding the reinforcing strip; a cutting device 8 provided on one side of the feeding device 7, the cutting device 8 driving the cutting of the reinforcing strip; a second linear movement device 9 provided below the workbench 2, the second linear movement device 9 driving linear movement; a clamping device 10, the clamping device 10 is two groups, one group of the clamping device 10 is installed on the second linear movement device 9; the other clamping device 10 is provided opposite to the clamping device 10, the clamping device 10 drives the clamping of the fabric, and moves the fixed strip to the fabric through the second linear movement device 9; a cold and hot pressing device 11 installed above the workbench 2, the cold and hot pressing device 11 driving the hot pressing operation and cold pressing operation of the fabric on which the reinforcing strip is placed, so that the fixed strip is attached to the cutting and welding position; a controller for receiving signals and outputting signals.

[0045] A rapid cycle processing ultrasonic cutting and strip integrated device is provided, which integrates ultrasonic cutting, feeding, cutting, movement, clamping, cold and hot pressing and other functions, realizing the automatic production of fabric cutting and welding and reinforcing strip attachment. The following is a detailed description of the specific implementation of the device.

[0046] The device mainly includes a rack 1, an ultrasonic welding device 3, a first linear movement device 4, a pressing device 5, a misalignment device 6, a feeding device 7, a cutting device 8, a second linear movement device 9, a clamping device 10, a cold and hot pressing device 11 and a controller. These components work together to realize the cutting and welding of fabric on the template and the attachment of reinforcing strip.

[0047] In the above technical solution, the rack 1 is the support structure of the entire device, used for mounting and supporting all other mechanical components. The workbench 2 is fixed on the rack 1, providing a stable reference surface for various operations.

[0048] The template is prepared by the manufacturer according to the production of the garment effect for placing and fixing the fabric. It is prior art and is not improved by the present technical solution, so it will not be described in detail. Initially, the fabric is installed in two layers of stacked form on the template, and the template is placed on the workbench 2. The ultrasonic welding device 3 is installed above the workbench 2, used for cutting and welding the fabric on the template, forming a cutting and welding position at the edge of the fabric.

[0049] The first linear movement device 4 is arranged on one side of the workbench 2, and the first linear movement device 4 is mainly used to drive the linear movement of the pressing device 5. The pressing device 5 is designed to press the template, which can drive the template to move linearly under the action of the first linear movement device 4, and process the fabric on the template at different processing stations.

[0050] The misplacement device 6 is also installed on one side of the workbench 2. Optionally, the ultrasonic welding device 3 is on the left side of the workbench 2, and the misplacement device 6 is on the right side of the workbench 2. After the template with the fabric installed is completed by the ultrasonic welding device 3, it is moved to the misplacement device 6 under the action of the first linear movement device 4, and the misplacement device 6 drives the cutting and welding position on the template to move from the side to the top, moving the fabric to misplace, facilitating the subsequent placement of the reinforcing strip.

[0051] The combination of the feeding device 7, the cutter device 8, the second linear movement device 9, and the clamping device 10 realizes the purpose of moving the reinforcing strip to the cutting and welding position of the fabric. Specifically, the clamping device 10 clamps one end of the reinforcing strip of the feeding device 7, and under the movement of the second linear movement device 9 and the unwinding of the reinforcing strip by the feeding device 7, the reinforcing strip is moved to the cutting and welding position of the fabric, and then the cutter device 8 cuts the reinforcing strip.

[0052] The cold and hot pressing device 11 is installed above the workbench 2, used for hot and cold pressing operation on the fabric with the reinforcing strip placed. When the cutting and welding position of the fabric moves to the cold and hot pressing device 11 and the reinforcing strip is placed, the cold and hot pressing device 11 drives the reinforcing strip to be hot pressed first, so that the reinforcing strip is attached to the cutting and welding position of the fabric, and then the cold and hot pressing device 11 drives the reinforcing strip to be cold pressed, quickly cooling the reinforcing strip, improving the firmness of the reinforcing strip and the cutting and welding position of the fabric.

[0053] Controller: as the core control component of the device, responsible for receiving signals from various sensors and outputting control instructions to coordinate the cooperative work of various components. It can be selected to have a device that can receive, process and output signals, such as a PLC controller.

[0054] By adopting the technical scheme, the ultrasonic melting cutting, adhesive strip pasting, hot pressing, cold pressing and other steps are integrated in the same device, all processes are completed at one time, the workpiece transfer between multiple devices is avoided, the processing cycle is greatly shortened, mass production is possible, through integrated design, the device realizes full-automatic operation without manual intervention in complex device adjustment and operation, the dependence on skilled workers is reduced, human error is reduced, product consistency and quality stability are improved, multiple independent device functions are integrated into one device, not only the device procurement and maintenance cost is reduced, but also the workshop occupied space is effectively saved, and the enterprise production comprehensive cost is reduced, the integrated device realizes seamless connection of the cutting, strip pasting and curing processes through precise control of each process parameter, ensures that the strip is more firmly combined with the fabric, and effectively solves the problem of insufficient connection strength in the prior art.

[0055] As shown in Figure 6 The ultrasonic welding device 3 includes a first motor 12, a screw rod 13 connected to the output end of the first motor 12, a first base plate 14 sleeved on the screw rod 13, a first sliding rail 15 arranged in parallel with the screw rod 13, a first telescopic piece 16 installed on the first base plate 14, and an ultrasonic welding head 17 arranged on the first telescopic piece 16; wherein the first base plate 14 is arranged on the first sliding rail 15, when the first motor 12 is driven, the first base plate 14 moves on the first sliding rail 15, and the first telescopic piece 16 drives the ultrasonic welding head 17 to move to the cloth cutting and welding on the template.

[0056] The above provides an implementable ultrasonic welding device 3, which is composed of a first motor 12, a screw rod 13, a first base plate 14, a first sliding rail 15, a first telescopic piece 16 and an ultrasonic welding head 17. The specific movement process is as follows: the first motor 12 drives the screw rod 13 to rotate, so that the first base plate 14 moves on the first sliding rail 15, thereby adjusting the position of the ultrasonic welding head 17, for example, when one-time cutting and welding cannot be completed, the position is adjusted on the first sliding rail 15 to realize the mode of multiple cutting and welding to complete the processing process of the cloth. The ultrasonic welding head 17 is driven by the first telescopic piece 16 to accurately cut and weld the cloth on the template, and then the edge of the cloth on the template forms a cutting and welding position. The first telescopic piece 16 can be realized in the form of a pneumatic cylinder or an oil cylinder.

[0057] As shown in Figure 7 and 9As shown, the first linear moving device 4 comprises a second motor 18, a first driving wheel 19 arranged at the output end of the second motor 18, a first driven wheel 20 arranged at a distance from the first driving wheel 19, a first synchronous belt sleeved on the first driving wheel 19 and the first driven wheel 20, a second slide rail 21 arranged in parallel with the first synchronous belt, and a second base plate 22 arranged on the second slide rail 21; wherein the second base plate 22 is connected with the synchronous belt, the second motor 18 drives the synchronous belt to rotate, and the second base plate 22 moves along the second slide rail 21.

[0058] The first linear moving device 4 can be realized by using a linear motor or a linear module, and preferably, the above provides an implementable structure of the first linear moving device 4, which comprises the second motor 18, the first driving wheel 19, the first driven wheel 20, the first synchronous belt, the second slide rail 21, and the second base plate 22. Specifically, the driving process is as follows: the second motor 18 drives the first driving wheel 19 to rotate, the first synchronous belt is sleeved on the first driving wheel 19 and the first driven wheel 20, and then the first synchronous belt rotates, since the second base plate 22 is arranged on the second slide rail 21 and connected with the first synchronous belt, the second base plate 22 is driven to move along the second slide rail 21. In the implementation, the pressing device 5 is arranged on the second base plate 22, and the pressing device 5 is mainly a pneumatic cylinder or an oil cylinder, which presses the template, and under the action of the first linear moving device 4, drives the template to linearly move, so as to facilitate the completion of the processing steps at different stations.

[0059] As shown in Figures 10-12 The misalignment device 6 comprises a mounting bracket 23 arranged on the rack 1, a second telescopic member 24 arranged on the mounting bracket 23, guide shafts 25 arranged on both sides of the second telescopic member 24, a box body 26 connected with the second telescopic member 24 and the guide shafts 25 at the ends, a third telescopic member 27 arranged in the box body 26, and a push plate 28 connected with the third telescopic member 27; the third telescopic member 27 drives the push plate 28 to move and drives the cloth on the template to move and misalign.

[0060] Specifically, the above provides a dislocation device 6 that can be implemented, including a mounting bracket 23, a second telescopic piece 24, a guide shaft 25, a box body 26, a third telescopic piece 27, and a push plate 28. Optionally, the second telescopic piece 24 and the third telescopic piece 27 can be air cylinders or oil cylinders, and the driving process is as follows: under the driving of the second telescopic piece 24, the push plate 28 is pressed on the cloth, at this time the cloth on the template is after cutting and welding, the first linear moving device 4 is moved to the dislocation device 6, the edge of the cloth is the ultrasonic welding position, and then under the driving of the third telescopic piece 27, the push plate 28 pushes the cloth to move laterally, adjusts the ultrasonic welding position from the side to the top, realizes the dislocation of the cloth, and does not need manual participation in adjustment, improves the processing efficiency.

[0061] As shown in the Figure 13 , the feeding device 7 includes a reel 29 mounted below the workbench 2, a mounting plate 30 arranged above the reel 29, a guide wheel set 31 arranged on the mounting plate 30, and a third motor 32 arranged on the mounting plate 30; wherein the third motor 32 is connected with the guide wheel set 31, and when the third motor 32 drives the guide wheel set 31 to rotate, it drives the reinforcing strip to be unwound from the reel 29.

[0062] The above provides a feeding device 7 structure that can be implemented, including a reel 29, a mounting plate 30, a guide wheel set 31, and a third motor 32. The reinforcing strip is wound on the reel 29, the mounting plate 30 is used to mount the reel 29 and the guide wheel set 31, and the third motor 32 is connected with any guide wheel. Its driving process is as follows: the guide wheel set 31 on the mounting plate 30 rotates under the driving of the third motor 32, and the reinforcing strip is unwound from the reel 29. The cutting device 8 can select a scissors cylinder, and the scissors cylinder is installed at a suitable position, for example, after the reinforcing strip is unwound to a suitable length, the reinforcing strip is cut off by the scissors cylinder.

[0063] As shown in the Figures 14-15 , the second linear moving device 9 includes a fourth motor 33, a second driving wheel 34 arranged at the fourth motor 33, a second driven wheel 35 arranged in a spaced manner with the second driving wheel 34, a second synchronous belt 36 sleeved on the second driving wheel 34 and the second driven wheel 35, a third sliding rail 37 arranged in parallel with the second synchronous belt 36, and a third base plate 38 arranged on the third sliding rail 37; wherein the third base plate 38 is arranged on the third sliding rail 37, and the fourth motor 33 drives the third base plate 38 to move along the third sliding rail 37.

[0064] The second linear moving device 9 can be implemented using a linear motor or a linear module, etc. Preferably, the above-mentioned implementable second linear moving device 9 includes a fourth motor 33, a second driving wheel 34, a second driven wheel 35, a second synchronous belt 36, a third slide rail 37, and a third base plate 38. The output end of the fourth motor 33 is connected to the second driving wheel 34. The second synchronous belt 36 is sleeved on the second driving wheel 34 and the second driven wheel 35. The third base plate 38 is disposed on the third slide rail 37 and connected to the second synchronous belt 36. Thus, when the fourth motor 33 drives, it drives the third base plate 38 to move on the third slide rail 37.

[0065] like Figure 14 As shown, the clamping device 10 includes a fourth telescopic member 39 and a finger cylinder 40. One clamping device 10 is mounted on the third substrate 38, and the other clamping device 10 is disposed at the discharge position of the guide wheel assembly 31. The finger cylinder 40 drives the clamping of the reinforcing strip, and the fourth telescopic member 39 drives the finger cylinder 40 to move upward. The second linear moving device 9 moves the finger cylinder 40 to the cutting and welding position of the template.

[0066] Preferably, the clamping device 10 consists of two sets. Since the reinforcing strip needs to be conveyed, one set of clamping devices 10 is installed on the second linear moving device 9, and the other set is installed near the outlet of the feeding device 7. Simultaneously, the reinforcing strip needs to be placed on the fabric cutting and welding position. The clamping device 10 includes a fourth telescopic member 39, which can be either a pneumatic cylinder or a hydraulic cylinder. In its specific operation, the finger cylinder 40 of the second linear moving device 9 clamps one end of the reinforcing strip and moves upward under the drive of the fourth telescopic member 39, at which point it is higher than the fabric on the template. Then, after the second linear moving device 9 has reached its position, the other finger cylinder 40 clamps the reinforcing strip and moves it downward, placing the reinforcing strip on the fabric cutting and welding position. Driven by a scissor cylinder, the reinforcing strip is cut. The second linear moving device 9 then resets.

[0067] Reference Figure 16 As shown, the hot and cold pressing device 11 includes a fifth telescopic member 41 mounted on the mounting bracket 23, a housing 42 connected to the fifth telescopic member 41, a fifth motor 43 disposed inside the housing 42, a rotating block 44 connected to the rotating end of the fifth motor 43, a hot pressing plate 45 disposed on the rotating block 44, and a cold pressing plate 46 disposed on the rotating block 44; wherein the hot pressing plate 45 and the cold pressing plate 46 are disposed opposite to each other, the fifth motor 43 drives the rotating block 44 to rotate, thereby switching the rotation of the hot pressing plate 45 and the cold pressing plate 46. The hot pressing plate 45 is connected to the rotating block 44 by a spring 47, and the cold pressing plate 46 is connected to the rotating block 44 by a spring 47.

[0068] The above provides a cold and hot pressing device 11 structure that can be implemented, the fifth telescopic part 41 can adopt a form of air cylinder or oil cylinder, and the driving process is as follows: the telescopic end of the fifth telescopic part 41 moves downward, the hot pressing plate 45 is hot pressed with the cloth on which the reinforcing strip is placed, the reinforcing strip is hot pressed on the ultrasonic welding position, further, the telescopic end of the fifth telescopic part 41 moves upward, the fifth motor 43 drives the rotating block 44 to rotate, the cold pressing plate 46 faces downward, the telescopic end of the fifth telescopic part 41 moves downward, and the cold pressing plate 46 rapidly cools and press-bonds the cloth after hot pressing, so that the firmness of the reinforcing strip on the cloth is improved. The hot pressing plate 45 and the cold pressing plate 46 are connected with the rotating block 44 through the spring 47, so that the stability and uniformity in the pressing process are ensured.

[0069] The above is not any limitation on the technical range of the utility model, and any modification, equivalent change and modification of the above embodiments according to the technical essence of the utility model still belong to the range of the technical scheme of the utility model.

Claims

1. A rapid cycle processing ultrasonic cutting and taping integrated device, characterized in that, It includes: A rack for installing and supporting mechanical components, the rack has a workbench; An ultrasonic welding device mounted above the workbench, the ultrasonic welding device is used for cutting and welding fabric on the template; A first linear movement device provided on one side of the workbench, the first linear movement device drives linear movement; A plurality of pressing devices provided on the first linear movement device, the pressing devices are used for clamping the template and moving the template linearly under the action of the first linear movement device; A misalignment device mounted on one side of the workbench, the misalignment device moves the cutting and welding position on the template from the side to the top; A feeding device provided below the workbench, the feeding device is used for unwinding the reinforcing strip; A cutting device provided on one side of the feeding device, the cutting device drives the cutting of the reinforcing strip; A second linear movement device provided below the workbench, the second linear movement device drives linear movement; Two sets of clamping devices, one set of clamping devices is mounted on the second linear movement device; the other set of clamping devices is provided opposite to the clamping devices, the clamping devices drive the clamping of the fabric and move the fixed strip to the fabric via the second linear movement device; A cold and hot pressing device mounted above the workbench, the cold and hot pressing device drives the hot and cold pressing operation of the fabric on which the reinforcing strip is placed, so that the reinforcing strip is attached to the cutting and welding position; A controller for receiving signals and outputting signals.

2. The ultrasonic cutting and strip pasting integrated equipment for rapid cycle processing according to claim 1, wherein: The ultrasonic welding device comprises a first motor, a screw rod connected to the output end of the first motor, a first base plate sleeved on the screw rod, a first sliding rail provided in parallel with the screw rod, a first telescopic piece mounted on the first base plate, and an ultrasonic welding head provided on the first telescopic piece; Wherein, the first base plate is provided on the first sliding rail, when the first motor is driven, the first base plate moves on the first sliding rail, and the first telescopic piece drives the ultrasonic welding head to move to the fabric cutting and welding on the template.

3. The ultrasonic cutting and strip pasting integrated equipment for rapid cycle processing according to claim 2, wherein: The first linear movement device comprises a second motor, a first driving wheel provided on the output end of the second motor, a first driven wheel provided in parallel with the first driving wheel, a first synchronous belt sleeved on the first driving wheel and the first driven wheel, a second sliding rail provided in parallel with the first synchronous belt, and a second base plate provided on the second sliding rail; Wherein, the second base plate is connected with the synchronous belt, the second motor drives the synchronous belt to rotate, and the second base plate moves along the second sliding rail.

4. The rapid cycle processing ultrasonic cutting and strip pasting integrated device of claim 3, wherein the misalignment device comprises a mounting bracket arranged on the rack, a second telescopic member arranged on the mounting bracket, guide shafts arranged on both sides of the second telescopic member, a box body connected with the second telescopic member and the end of the guide shafts, a third telescopic member arranged in the box body, and a push plate connected with the third telescopic member; the third telescopic member drives the push plate to move and drives the cloth on the template to misalign.

5. The rapid cycle processing ultrasonic cutting and strip pasting integrated device of claim 4, wherein the feeding device comprises a reel arranged below the workbench, a mounting plate arranged above the reel, a guide wheel set arranged on the mounting plate, and a third motor arranged on the mounting plate; wherein the third motor is connected with the guide wheel set, and the third motor drives the guide wheel set to rotate, thereby driving the reinforcing strip to be unwound from the reel.

6. The rapid cycle processing ultrasonic cutting and strip pasting integrated device of claim 5, wherein the second linear movement device comprises a fourth motor, a second driving wheel arranged on the fourth motor, a second driven wheel arranged in a spaced manner with the second driving wheel, a second synchronous belt sleeved on the second driving wheel and the second driven wheel, a third sliding rail arranged in parallel with the second synchronous belt, and a third base plate arranged on the third sliding rail; wherein the third base plate is arranged on the third sliding rail, and the fourth motor drives the third base plate to move along the third sliding rail.

7. The rapid cycle processing ultrasonic cutting and strip pasting integrated device of claim 6, wherein the clamping device comprises a fourth telescopic member and a finger air cylinder; one of the clamping devices is arranged on the third base plate, and the other clamping device is arranged at the discharging position of the guide wheel set; wherein the finger air cylinder drives the clamping of the reinforcing strip, and the fourth telescopic member drives the upward movement of the finger air cylinder to the cutting and welding position on the template driven by the second linear movement device.

8. The rapid cycle processing ultrasonic cutting and strip pasting integrated device of claim 7, wherein the cold and hot pressing device comprises a fifth telescopic member arranged on the mounting bracket, a housing connected with the fifth telescopic member, a fifth motor arranged in the housing, a rotating block connected with the rotating end of the fifth motor, a hot pressing plate arranged on the rotating block, and a cold pressing plate arranged on the rotating block; wherein the hot pressing plate and the cold pressing plate are arranged in a spaced manner, the fifth motor drives the rotating block to rotate, and the hot pressing plate and the cold pressing plate are switched by rotation.

9. The rapid cycle processing ultrasonic cutting and strip pasting integrated device of claim 8, wherein the hot pressing plate is connected with the rotating block through a spring, and the cold pressing plate is connected with the rotating block through a spring. ​ ​ ​ ​ ​ ​