Clothing heat sealing device and heat sealing method
Through the combination of the positioning seat and the intake machine, the intake machine is used to locate the joints of the clothing and absorb harmful gases, the problem of position deviation of the sealing film is solved, and the bonding quality and waterproof sealing treatment efficiency are improved at the joints of the clothing.
Patent Information
- Application Number
- CN202310573320.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-20
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2043-05-20
AI Technical Summary
When existing high-frequency machines are waterproof and sealed at the joints of clothing, the position of the sealing film and clothing is easily deviated due to inertia or external factors, which affects the bonding quality.
The positioning seat and the suction machine are used to cooperate, and the suction force generated by the suction machine causes the bending and deformation of the garment joints to abut the groove wall of the give way to position the sealing film; and the position is maintained through the elastic belt and the winding assembly, and the suction machine absorbs harmful gases.
It improves the bonding quality of sealing film and clothing, reduces the probability of position deviation, and improves the efficiency and product quality of waterproof sealing.
Smart Images

Figure CN116834293B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of heat sealing equipment, and in particular to a clothing heat sealing equipment and a heat sealing method. Background Art
[0002] Heat-sealing equipment used in the apparel industry typically refers to high-frequency heat sealers. These induction heating devices offer the highest efficiency and fastest heating speed for both metal and non-metallic materials, while also being energy-efficient and environmentally friendly. They have a wide range of applications. Within the apparel industry, high-frequency heat sealers are also used in numerous apparel processing steps, such as waterproofing seams, surface printing, and nameplate bonding.
[0003] An existing high-frequency machine for waterproofing and sealing clothing seams, such as Figure 1 As shown, the high-frequency machine body 101, a workbench 1, and a storage base 3 are included. The high-frequency machine body 101 is mounted on the workbench 1, and the storage base 3 is slidably connected to the workbench 1. After the storage base 3 is controlled to slide to a standby position away from the high-frequency machine body 101, the garment to be processed is first placed on the storage base 3, and then a sealing film is stacked above the seam of the garment. Then, the storage base 3 is controlled to slide to a working position close to the high-frequency machine body 101, and the high-frequency machine body 101 is controlled to bond the sealing film to the garment.
[0004] When placing clothing on the storage seat, the position of the clothing seams needs to be adjusted so that when the storage seat slides to the working position, the high-frequency machine body can align the clothing seams and adhere the sealing film to the clothing. However, during the process of sliding the storage seat from the standby position to the working position, the clothing seams and the position of the sealing film are easily shifted due to inertia or other external factors, thus affecting the final adhesion quality of the sealing film and clothing, and further affecting the waterproof sealing effect of the clothing seams. Summary of the Invention
[0005] Based on the above problems, the present application provides a clothing heat sealing device and a heat sealing method, which can effectively ensure the bonding quality of the sealing film at the seams of clothing.
[0006] On the one hand, the present application provides a clothing heat-sealing device, which adopts the following technical solutions:
[0007] A clothing heat-sealing device comprises a high-frequency machine body and a workbench, and is characterized in that it also comprises a plurality of storage seats and a plurality of positioning seats, wherein the storage seat is provided with a first installation groove for installing the positioning seat, and the top of the positioning seat is flush with the top of the storage seat after installation; a clearance groove is provided on the top of the positioning seat; and an air suction machine is also included, wherein the air suction machine is arranged inside the positioning seat, and the positioning seat is provided with a plurality of air suction holes, one end of the air suction hole is communicated with the clearance groove, and the other end of the air suction hole leads to the air suction machine.
[0008] By adopting the above technical solution, after placing the clothing on the storage seat and positioning the seam of the clothing above the clearance groove, the suction machine is controlled to start, and the suction force generated by the suction machine can cause the seam of the clothing to bend and deform so as to resist the groove wall of the clearance groove, so that the seam of the clothing is adsorbed and positioned on the elastic band; at this time, if the clothing is made of airtight material, a concave area will be formed around the seam of the clothing, and after the sealing film is stacked above the seam of the clothing, the concave area can play a positioning role for the sealing film; if the clothing is made of airtight material, in addition to the area formed around the seam of the clothing, the sealing film can play a positioning role for the sealing film; In addition to the recessed area, the suction force of the vacuum machine can also play a positioning role for the sealing film; so that after the clothing and the sealing film are placed on the storage seat, the clothing and the sealing film have a high position stability on the storage seat during the process of moving the storage seat from the preparation position to the working position, thereby effectively ensuring the bonding quality of the sealing film and the clothing; in addition, the harmful gas generated in the process of the high-frequency machine body bonding the sealing film to the clothing can also be sucked away by the vacuum machine and discharged after treatment, reducing the harm to the staff and the pollution to the air caused by the spread of harmful gases.
[0009] Optionally, it further comprises an elastic belt with air permeability and a plurality of winding components, wherein two winding components are provided in each positioning seat, and the two winding components are respectively located on both sides of the width direction of the clearance groove;
[0010] The winding assembly includes a rotating member and a winding member, the rotating member is connected to the positioning seat, and the winding member is sleeved on the rotating member and rotatably connected to the rotating member; the elastic belt is partially located in the give way groove, and the two ends of the elastic belt are respectively wound on the two winding members and connected to the winding members; the winding assembly also includes an elastic member, and the two elastic members respectively drive the two winding members to rotate so that the part of the elastic belt located in the give way groove remains horizontal and tight; when the suction machine is started, the elastic belt is deformed by the suction force and presses against the groove wall of the give way groove.
[0011] By adopting the above technical solution, when the vacuum machine is turned off, the elastic belt on the positioning seat remains horizontally taut under the winding force of the two winding components. At this time, the surface of the elastic belt is almost flush with the end surface of the top of the positioning seat, which makes it easy to lay the clothes flat on the storage seat and adjust the placement of the clothes by aligning the seams of the clothes with the elastic belt; after the vacuum machine is turned on, the suction force generated by the vacuum machine will make the two ends of the elastic belt stretch to overcome the force of the elastic member, so that the elastic belt bends and deforms to offset the groove wall of the give way groove, so that the clothes and sealing film placed on the storage seat can be positioned; after the vacuum machine is turned off again, the elastic belt will resume horizontal tautness under the action of the elastic member, so that it is easy to reuse.
[0012] Optionally, the winding assembly also includes a first driving member, which is arranged inside the positioning seat and connected to the rotating member. The first driving member is used to drive the rotating member to rotate, and the rotation axis of the rotating member coincides with the rotation axis of the winding member.
[0013] By adopting the above technical solution, during the process of bonding the sealing film to the clothing, the high-frequency machine body will squeeze the elastic belt through the sealing film and the clothing. At this time, the high temperature will be transferred to the elastic belt, causing the elastic belt to be affected. When the elastic belt is damaged by the high temperature multiple times, the first driving member can be controlled to rotate to reel the damaged elastic belt onto one reeling member and take out a new elastic belt from the other reeling member for use, thereby reducing the time for replacing the elastic belt and improving the efficiency of using the high-frequency machine to perform waterproof sealing treatment on the seams of clothing.
[0014] Optionally, it further comprises a plurality of stretching and leveling components, with one stretching and leveling component being provided at each end of each of the storage seats;
[0015] The stretching assembly includes a connecting member, a stretching member, and a second driving member. The second driving member is disposed inside the storage seat. The second driving member is connected to one end of the connecting member, and the other end of the connecting member is connected to the stretching member. The second driving member is used to drive the connecting member to rotate. The length direction of the stretching member and the rotation axis of the connecting member are both horizontal and parallel to each other.
[0016] Both ends of the storage seat have an arc-shaped surface. When the second driving member drives the connecting member to rotate to a vertical state, there is a distance between the flattening member and the top end surface of the storage seat; thereafter, when the second driving member drives the connecting member to rotate in a direction away from the other connecting member, the distance between the flattening member and the arc-shaped surface gradually decreases.
[0017] By adopting the above technical solution, when the second driving member drives the connecting member to rotate to a vertical state, the staff can place the clothing and the sealing film on the placement seat in turn. After the suction machine is started to adsorb and position the clothing on the placement seat, the second driving member is controlled to drive the connecting member to rotate. The rotation of the connecting member drives the stretching member to move and contact the end of the clothing. The end of the clothing can be clamped and positioned on the placement seat, and the wrinkles of the clothing can be eliminated during the clamping process, thereby reducing the probability of wrinkles near the seams of the clothing when the sealing film is bonded to the clothing, thereby improving the bonding quality of the sealing film and the clothing.
[0018] Optionally, the stretching component further includes an anti-slip member, which is arranged on a side of the stretching component close to the storage seat.
[0019] By adopting the above technical solution, the anti-slip part can increase the friction between the stretching part and the clothing, so that when the stretching part contacts the end of the clothing through the anti-slip part, the stretching part continues to move and can drive the clothing to move, thereby achieving the effect of eliminating wrinkles and improving the reliability of the stretching component.
[0020] Optionally, it also includes several positioning lights, the light emitted by the positioning lights is long and strip-shaped; when the connecting member is in a vertical state, the positioning lights illuminate the middle position of the elastic band, and the length direction of the long strip light of the positioning lights is parallel to the length direction of the give way groove.
[0021] By adopting the above technical solution, after the clothes are placed on the storage seat, the long strip of light emitted by the positioning lamp can shine on the clothes. The long strip of light can serve as a reference for the staff to determine the position of the seam of the clothes on the elastic band. Just align the long strip of light with the seam of the clothes, which can further facilitate the staff to determine the placement position of the clothes on the storage seat.
[0022] Optionally, it also includes a plurality of trigger switches, which correspond one-to-one to a plurality of positioning lights, and the trigger switches are arranged on one side of the storage seat; the trigger switches control the opening and closing of the positioning lights, and when the connecting member is in a vertical state, the connecting member contacts the trigger switch, and the trigger switch controls the positioning lights to turn on.
[0023] By adopting the above technical solution, the positioning lamp can only emit light when the connecting member is in a vertical state, which makes it easier for the staff to place the clothing on the placement seat; after the clothing is positioned on the placement seat, the second driving member will drive the connecting member to rotate, and the positioning lamp will be turned off at this time, saving energy consumption and reducing the probability of the positioning lamp shining upward to cause damage to the staff's eyes.
[0024] Optionally, a replacement component is further included, wherein a second installation slot for installing the replacement component is opened on the workbench, and the replacement component includes two third driving members and two conveyor belts, the two third driving members are both arranged on the workbench, and the two conveyor belts are respectively located on both sides of the second installation slot, and the two conveyor belts are driven by the third driving members to move synchronously;
[0025] There are two storage seats, both of which are located between the two conveyor belts, and both ends of the storage seat are connected to the two conveyor belts respectively; the movement of the conveyor belt drives the storage seat to move in the horizontal direction, and the movement paths of the two storage seats are staggered up and down;
[0026] When the storage seat moves to the extreme position toward the high-frequency machine body, the storage seat is located in the working position; when the storage seat moves to the extreme position away from the high-frequency machine body, the storage seat is located in the preparation position; when one storage seat is in the working position, the other storage seat is located in the preparation position.
[0027] By adopting the above technical solution, after the clothing and the sealing film are placed on a storage seat, it can be moved to the working position by replacing the components, and the high-frequency machine body can be controlled to perform a bonding process on the clothing and the sealing film at the working position; while the high-frequency machine body is bonding the clothing and the sealing film on the storage seat at the working position, the staff can place the clothing and the sealing film on another storage seat at the preparation position, thereby improving the efficiency of the high-frequency machine in performing a waterproof sealing process on the seams of the clothing.
[0028] Optionally, it further includes a cover body, the interior of which has a cavity, the cover body is arranged on the workbench, and the high-frequency machine body is located in the cavity; an operation port is opened on the cover body, and the operation port is communicated with the cavity, and when the storage seat is moved to the preparation position, the storage seat is exposed through the operation port.
[0029] By adopting the above technical solution, the staff can place the clothing and the sealing film on the storage seat through the operation port at the preparation position. The cover covers the high-frequency machine body, which can effectively prevent the high-frequency machine body from direct contact with the outside world and reduce the situation where dust accumulates on the high-frequency machine body and affects its normal operation; in addition, the cover can protect the staff. When the high-frequency machine body is gluing the clothing and the sealing film, it can prevent the staff from getting close to it and being injured by high temperature, and can also prevent other objects from interfering with the normal operation of the high-frequency machine body.
[0030] On the other hand, the present application also provides a heat sealing method, which adopts the following technical solution:
[0031] A heat sealing method, based on the above-mentioned clothing heat sealing equipment, has the following specific steps:
[0032] S1, controlling the storage seat to move to a ready position;
[0033] S2, placing the garment to be processed on the storage seat;
[0034] S3, starting the air intake machine;
[0035] S4, placing the sealing film on the garment to be processed;
[0036] S5, controlling the storage seat to move to a working position;
[0037] S6. Start the high-frequency machine body.
[0038] By adopting the above technical solution, the suction machine can fix the position of the garment to be processed on the storage seat after it is started, and the suction of the suction machine will form a recessed area around the seam of the garment to be processed. The recessed area is convenient for the sealing film to be placed on the garment to be processed and fixed in position. Therefore, in the process of moving the storage seat from the preparation position to the working position, the probability of the garment to be processed being displaced on the storage seat and the sealing film being displaced relative to the garment to be processed can be reduced, thereby improving the heat sealing effect and the quality of the heat-sealed product.
[0039] In summary, this application has at least one of the following beneficial effects:
[0040] 1. It can facilitate the staff to accurately position the clothing and sealing film on the storage seat, and can keep the clothing and sealing film in a stable position during the process of moving the storage seat to the working position, ensuring the final bonding quality of the sealing film and clothing, thereby improving the waterproof sealing effect of the high-frequency machine on the seams of clothing;
[0041] 2. After the clothing and the sealing film are accurately positioned on the storage seat, the clothing can be stretched flat, reducing the probability of wrinkles at the seams of the clothing, thereby further improving the bonding quality of the sealing film and the clothing;
[0042] 3. When the high-frequency machine body is bonding the clothing and the sealing film on the storage seat at the working position, the staff can place the clothing and the sealing film on the storage seat at the preparation position, thereby improving the efficiency of the high-frequency machine in waterproofing and sealing the seams of the clothing. BRIEF DESCRIPTION OF THE DRAWINGS
[0043] Figure 1 This is a structural diagram of an existing clothing heat sealing device;
[0044] Figure 2 This is a schematic structural diagram of a clothing heat-sealing device according to an embodiment of the present application;
[0045] Figure 3 This is a structural diagram of a clothing heat-sealing device according to an embodiment of the present application, with the cover omitted;
[0046] Figure 4 yes Figure 3 Partial cross-sectional view from the medium AA perspective;
[0047] Figure 5 yes Figure 4 Enlarged view of point B in the middle;
[0048] Figure 6 This is a schematic diagram of the structure of the storage seat in the embodiment of the present application;
[0049] Figure 7 This is a structural diagram of the storage seat from another perspective in the embodiment of the present application.
[0050] Explanation of the accompanying drawings: 1. Workbench; 11. Second mounting slot; 2. Replacement assembly; 21. Third driving member; 22. Conveyor belt; 23. Transmission member; 3. Storage seat; 31. First mounting slot; 32. Arc-shaped surface; 4. Positioning seat; 41. Give way slot; 42. Suction hole; 5. Cover body; 51. Cavity; 52. Operation port; 6. Winding assembly; 61. Rotating member; 62. Winding member; 63. First driving member; 64. Elastic member; 7. Suction machine; 8. Stretching assembly; 81. Second driving member; 82. Connecting member; 83. Stretching member; 84. Anti-slip member; 9. Positioning light; 101. High-frequency machine body; 102. Button; 103. Elastic belt; 104. Trigger switch. DETAILED DESCRIPTION
[0051] The following is combined with Figure 2-7 This application is described in further detail.
[0052] The embodiment of the present application discloses a clothing heat-sealing device.
[0053] Reference Figure 2 and Figure 3The high-frequency machine includes a high-frequency machine body 101, a workbench 1, a replacement component 2, two storage seats 3 and two positioning seats 4. The high-frequency machine body 101 is fixedly mounted on the workbench 1, and the replacement component 2 is also fixedly mounted on the workbench 1 and is located on one side of the high-frequency machine body 101; the positioning seat 4 is installed on the storage seat 3, and the replacement component 2 can control the two storage seats 3 to move back and forth. When the storage seat 3 moves to the extreme position in the direction close to the high-frequency machine body 101, the storage seat 3 is in the working position, and the high-frequency machine body 101 can bond the clothing and sealing film placed above the storage seat 3; when the storage seat 3 moves to the extreme position in the direction away from the high-frequency machine body 101, the storage seat 3 is in the preparation position, which is convenient for the staff to place the clothing and sealing film on the storage seat; when the staff places the clothing on the storage seat 3, the seam of the clothing is positioned on the positioning seat 4, thereby ensuring the final bonding quality of the sealing film and the clothing.
[0054] In this embodiment, the heating element of the high-frequency machine body 101 is preferably able to move up and down in the vertical direction to bond the clothing and the sealing film. Since the high-frequency machine body 101 is a common existing technology in this field, it will not be described here.
[0055] Reference Figure 3 and Figure 4 The workbench 1 is provided with a second mounting slot 11 for mounting the replacement assembly 2. The replacement assembly 2 includes two third drive members 21, two conveyor belts 22, and a plurality of transmission members 23. The two third drive members 21 are mounted inside the workbench 1 and are located on either side of the second mounting slot 11. The plurality of transmission members 23 are rotatably connected to the two side walls of the second mounting slot 11, and the rotation axes of the plurality of transmission members 23 are horizontal and parallel to each other. The two conveyor belts 22 are respectively wound around the plurality of transmission members 23 located on different side walls of the second mounting slot 11. The third drive member 21 is connected to an adjacent transmission member 23 and can drive it to rotate. The rotation of the transmission member 23 will drive the plurality of transmission members 23 on the same side to rotate through the conveyor belt 22, and the conveyor belt 22 will also move with the rotation of the plurality of transmission members 23. In this embodiment, the third drive member 21 is preferably a servo motor.
[0056] The two storage seats 3 are both located in the second mounting groove 11 and between the two conveyor belts 22. The two ends of the storage seat 3 are fixedly connected to the two conveyor belts 22, and the two storage seats 3 are offset in the vertical direction. The replacement component 2 drives the storage seat 3 to move back and forth in the horizontal direction through the movement of the conveyor belt 22. When one storage seat 3 moves to the working position, the other storage seat 3 will be in the preparation position. A button 102 for controlling the replacement component 2 is installed on the workbench 1 near the preparation position. After pressing the button 102, the replacement component 2 can control the movement and switching of the position states of the two storage seats 3.
[0057] Reference Figure 2 The high-frequency machine also includes a cover 5, which is installed on the workbench 1. The cover 5 is detachably connected to the workbench 1. In this embodiment, the cover 5 is preferably detachably connected to the workbench 1 by a screw, which is not shown in the accompanying drawings. The cover 5 has a cavity 51 inside. After the cover 5 is installed on the workbench 1, the high-frequency machine body 101 is located in the cavity 51, and the cover 5 covers the top of the replacement component 2. The cavity 51 is connected to the second mounting groove 11. The end of the cover 5 close to the second mounting groove 11 is provided with an operating port 52 that is connected to the cavity 51. When the storage seat 3 moves to the preparation position, it can pass through the operating port 52, which is convenient for the staff to place the clothing and sealing film on the storage seat 3 in the preparation position.
[0058] Reference Figure 4 and Figure 5 The storage base 3 has a first mounting groove 31 at the middle of its top end surface for mounting the positioning base 4. The positioning base 4 is detachably connected to the storage base 3. In this embodiment, the positioning base 4 is preferably detachably connected to the storage base 3 by plugging into the first mounting groove 31. After the positioning base 4 is installed in the first mounting groove 31, the top end surface of the positioning base 4 is flush with the top end surface of the storage base 3.
[0059] The positioning seat 4 is provided with a clearance groove 41 in the middle of its top end surface. The groove wall of the clearance groove 41 is arc-shaped. When the storage seat 3 moves to the working position, the heating element of the high-frequency machine body 101 is aligned with the clearance groove 41 in the vertical direction.
[0060] Reference Figure 5 and Figure 6The high frequency machine further includes two elastic bands 103 and four winding assemblies 6, and each positioning seat 4 is provided with an elastic band 103 and two winding assemblies 6. The winding assembly 6 is installed inside the positioning seat 4, and the two winding assemblies 6 are respectively located on both sides of the width direction of the clearance groove 41. The winding assembly 6 includes a rotating member 61, a winding member 62, a first driving member 63 and an elastic member 64. The rotating member 61 is horizontally installed inside the positioning seat 4. The first driving member 63 is also installed inside the positioning seat 4, and the first driving member 63 is connected to one end of the rotating member 61. The first driving member 63 can drive the rotating member 61 to rotate, and the rotation axis of the rotating member 61 is parallel to the length direction of the give way groove 41; the winding member 62 is sleeved on the rotating member 61, and the winding member 62 is rotatably connected to the rotating member 61, and the rotation axis of the winding member 62 coincides with the rotation axis of the rotating member 61; the two ends of the elastic band 103 are respectively fixedly connected to the two winding members 62 and are partially wound on the winding member 62, and the two ends of the elastic member 64 are respectively connected to the rotating member 61 and the winding member 62. The elastic member 64 enables the winding member 62 to maintain a rotational position relative to the rotating member 61, so that the elastic band 103 between the two winding members 62 remains taut. The elastic band 103 is partially located in the clearance groove 41. The heating element of the high-frequency machine body 101 applies force to the elastic band 103 when bonding the garment to the sealing film. The elastic band 103 remains horizontal in the taut state, and only a small gap exists between the upper end surface of the elastic band 103 and the end surface of the top of the positioning seat 4. In this embodiment, the elastic band 103 is preferably made of a heat-resistant material and has good air permeability. The first driving member 63 is preferably a servo motor, and the elastic member 64 is preferably a torsion spring.
[0061] Reference Figure 3 、 Figure 5 and Figure 6 A button 102 for controlling the two first driving members 63 is also installed on the workbench 1. After pressing the button 102, the two first driving members 63 will synchronously drive the rotating member 61 to rotate in the same direction, so that the part of the elastic band 103 originally located in the give way groove 41 can be wound on one winding member 62, and at the same time, the part of the elastic band 103 wound on the other winding member 62 can extend out and be located in the give way groove 41.
[0062] Reference Figure 4 and Figure 5 The high-frequency machine also includes an air suction machine 7, which is fixedly installed inside the positioning seat 4 and is located below the clearance groove 41. A plurality of air suction holes 42 are provided on the positioning seat 4, one end of the air suction hole 42 is communicated with the clearance groove 41, and the other end of the air suction hole 42 leads to the air suction machine 7. The air suction machine 7 inhales external air through the plurality of air suction holes 42 and the clearance groove 41. The air inhaled by the air suction machine 7 enters the interior of the air suction machine 7 and can be discharged after purification. In this embodiment, since the air suction machine 7 is a common existing technology, it will not be described here.
[0063] When the suction machine 7 draws air, the suction force causes the elastic band 103 to extend and bend, overcoming the force of the elastic members 64 on both sides. This causes the portion of the elastic band 103 located in the clearance groove 41 to abut against the walls of the clearance groove 41. If clothing is placed on the storage seat 3, the suction force generated by the suction machine 7 can penetrate the elastic band 103 and affect the portion of the clothing stacked on the elastic band 103, causing it to be adsorbed on the elastic band 103. At this point, a depression forms on the clothing, which is the location where the sealing film is stacked on the clothing, making it easier for staff to determine the location of the sealing film.
[0064] A button 102 for controlling the opening and closing of the suction machine 7 is also installed at the bottom of the storage seat 3. After the seam of the clothing is placed above the elastic band 103, the button 102 is pressed, the suction machine 7 is started, and the elastic band 103 can be bent and deformed by suction. The seam of the clothing will also be adsorbed and positioned on the elastic band 103 under the action of the suction force. The harmful gas generated in the process of the high-frequency machine body 101 bonding the sealing film to the clothing can also be sucked in by the suction machine 7, purified and then discharged; after the sealing film and the clothing are bonded, the button 102 is pressed again, the suction machine 7 is turned off, the winding member 62 rotates and resets under the action of the elastic member 64, and the elastic band 103 returns to a horizontally taut state, and the staff can remove the bonded clothing.
[0065] Reference Figure 6 and Figure 7 The high-frequency machine also includes four stretching components 8, which are installed on the storage seat 3. Two stretching components 8 are installed on each storage seat 3, and the two stretching components 8 are respectively located at the two ends of the storage seat 3. The stretching component 8 includes a second driving member 81, a connecting member 82 and a stretching member 83. The second driving member 81 is fixedly installed inside the end of the storage seat 3, and the connecting member 82 is located on the side of the storage seat 3 close to the conveyor belt 22. One end of the connecting member 82 is connected to the second driving member 81, and the second driving member 81 drives the connecting member 82 to rotate. The rotation axis of the connecting member 82 is parallel to the length direction of the clearance groove 41; one end of the stretching member 83 is fixedly connected to the end of the connecting member 82 away from the second driving member 81. The length direction of the stretching member 83 is parallel to the rotation axis of the connecting member 82, and the stretching member 83 remains above the bottom end surface of the storage seat 3. In this embodiment, the second driving member 81 is preferably a servo motor.
[0066] The stretching and leveling component 8 further includes an anti-slip component 84 , which is fixedly mounted on a side of the stretching and leveling component 83 close to the storage seat 3 . In this embodiment, the anti-slip component 84 is preferably made of rubber.
[0067] Both ends of the storage seat 3 have smooth arc-shaped surfaces 32 . After the clothing is placed on the storage seat 3 , the two end portions of the clothing can be placed on the two arc-shaped surfaces 32 respectively.
[0068] When the second driving member 81 drives the connecting member 82 to rotate in the direction close to the other connecting member 82 to the extreme position, the connecting member 82 is in a vertical state, and there is space for clothing to be placed between the anti-slip member 84 and the storage seat 3. After the clothing is placed on the storage seat 3, there is still a distance between the anti-slip member 84 and the clothing; when the second driving member 81 drives the connecting member 82 to rotate in the direction away from the other connecting member 82 to the extreme position, the anti-slip member 84 is against the curved surface 32; and in the process of the connecting member 82 starting to rotate from the vertical state, the distance between the anti-slip member 84 and the curved surface 32 gradually decreases. When clothing is placed on the storage seat 3 and the seam of the clothing is positioned on the elastic band 103, after the connecting member 82 rotates until the anti-slip member 84 is against the end of the clothing, the connecting member 82 continues to rotate to drive the end of the clothing to move, thereby achieving a stretching effect and reducing wrinkles on the clothing after it is placed on the storage seat 3.
[0069] A button 102 for controlling the opening and closing of the two second driving members 81 is also installed at the bottom of the storage seat 3, and the two second driving members 81 are opened and closed synchronously.
[0070] Reference Figure 6 and Figure 7 The high-frequency machine also includes four positioning lights 9, which correspond one-to-one to the four stretching members 83. The positioning lights 9 are fixedly mounted on the stretching members 83. The positioning lights 9 can emit long strips of light, and after the positioning lights 9 are mounted on the stretching members 83, the illumination angle of the positioning lights 9 can be adjusted. After the positioning lights 9 are positioned, the light emitted by the positioning lights 9 is directed onto the elastic band 103, and the length direction of the projection of the positioning lights 9 on the elastic band 103 is parallel to the length direction of the clearance groove 41, and the projection is located in the center of the elastic band 103. The projections of the two positioning lights 9 mounted on the same storage seat 3 on the elastic band 103 overlap. After placing the clothing on the storage seat 3, the projection of the positioning lights 9 can be used as a reference. After aligning the seam of the clothing with the projection of the positioning lights 9, the position of the seam of the clothing on the elastic band 103 can also be determined. In this embodiment, since the positioning lights 9 are common existing technology, they will not be described in detail here.
[0071] The high-frequency machine also includes four trigger switches 104, which correspond one-to-one to the four positioning lights 9. The trigger switches 104 are fixedly mounted on one side of the storage seat 3 and are located on the same side of the storage seat 3 as the connector 82. The trigger switches 104 can control the positioning lights 9 to turn on and off according to the position of the connector 82. When the connector 82 is in a vertical state, the connector 82 contacts the trigger switches 104, and the trigger switches 104 can control the positioning lights 9 to turn on. When the connector 82 is not in a vertical state, there is a gap between the connector 82 and the trigger switches 104, and the trigger switches 104 control the positioning lights 9 to turn off. In this embodiment, the trigger switches 104 are preferably contact sensors.
[0072] The implementation principle of a clothing heat sealing device in the embodiment of the present application is as follows:
[0073] After the clothing is placed on the storage seat 3 and the seam of the clothing is located on the elastic band 103, the clothing can be sucked and positioned on the storage seat 3 by the suction machine 7, and a depression will be formed at the seam of the clothing, which is convenient for stacking and positioning the sealing film, so that the relative positions of the clothing and the sealing film on the storage seat 3 can be fixed during the movement of the storage seat 3; and the flattening component 8 can flatten the clothing placed on the storage seat 3 to reduce wrinkles, and can effectively avoid the occurrence of wrinkles during the movement of the storage seat 3, thereby ensuring the final bonding quality of the sealing film and the clothing, and further improving the effect of the high-frequency machine on the waterproof sealing treatment of the seams of the clothing.
[0074] The present application also discloses a heat-sealing method based on the above-mentioned clothing heat-sealing device, and the specific steps are as follows:
[0075] S1, control the storage seat 3 to move to the ready position;
[0076] The control replacement component 2 drives a storage seat 3 to move to a preparation position along with the corresponding positioning seat 4 and maintain it, that is, the storage seat 3 moves in a direction away from the high-frequency machine body 101 to an extreme position and maintains it;
[0077] S2, placing the garment to be processed on the storage seat 3;
[0078] After stretching the garment to be processed, lay it on the end surface of the top of the storage seat 3, and use the projection formed by the positioning light 9 on the elastic band 103 as a reference to make the seam of the garment coincide with the projection on the positioning light 9;
[0079] S3, start the suction machine 7;
[0080] After the suction machine 7 is started, the suction effect of the suction machine 7 will directly act on the garment through the elastic band 103, so that a concave area is formed at the seam of the garment and maintained, and then the stretching component 8 is controlled to fix the two end edges of the garment to be processed on the positioning seat 4;
[0081] S4, placing the sealing film on the garment to be processed;
[0082] Placing the sealing film in the recessed area formed at the seam of the garment so that the relative position of the sealing film and the garment to be processed is fixed;
[0083] S5, controlling the storage seat 3 to move to the working position;
[0084] Control the replacement component 2 to drive the storage seat 3 on which the garments to be processed and the sealing strips are placed to move to the working position along with the corresponding positioning seat 4 and maintain it;
[0085] S6. Start the high frequency machine body 101.
[0086] The high frequency machine body 101 is controlled to start, and the high frequency machine body 101 heat-seals the seam between the sealing strip and the clothing.
[0087] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. A clothing heat-sealing device, comprising a high-frequency machine body (101) and a workbench (1), characterized in that: It also includes a plurality of storage seats (3) and a plurality of positioning seats (4), wherein the storage seat (3) is provided with a first installation groove (31) for installing the positioning seat (4), and the top of the positioning seat (4) is flush with the top of the storage seat (3) after installation; the top of the positioning seat (4) is provided with a clearance groove (41); and it also includes an air suction machine (7), wherein the air suction machine (7) is arranged inside the positioning seat (4), and the positioning seat (4) is provided with a plurality of air suction holes (42), one end of the air suction hole (42) is communicated with the clearance groove (41), and the other end of the air suction hole (42) leads to the air suction machine (7); It also includes an elastic belt (103) with air permeability and a plurality of winding assemblies (6), two of the winding assemblies (6) are provided in each positioning seat (4), and the two winding assemblies (6) are respectively located on both sides of the width direction of the clearance groove (41); The winding assembly (6) includes a rotating member (61) and a winding member (62), the rotating member (61) is connected to the positioning seat (4), and the winding member (62) is sleeved on the rotating member (61) and is rotatably connected to the rotating member (61); the elastic band (103) is partially located in the clearance groove (41), and the two ends of the elastic band (103) are respectively wound on the two winding members (62) and connected to the winding members (62); the winding assembly (6) also includes an elastic member (64), the two elastic members (64) respectively drive the two winding members (62) to rotate so that the portion of the elastic band (103) located in the clearance groove (41) remains horizontal and tight; when the suction machine (7) is started, the elastic band (103) is deformed by the suction force and abuts against the groove wall of the clearance groove (41).
2. The clothing heat sealing device according to claim 1, characterized in that: The winding assembly (6) further includes a first driving member (63), which is disposed inside the positioning seat (4). The first driving member (63) is connected to the rotating member (61). The first driving member (63) is used to drive the rotating member (61) to rotate, and the rotation axis of the rotating member (61) coincides with the rotation axis of the winding member (62).
3. The clothing heat sealing device according to claim 1, characterized in that: It also includes a plurality of stretching and leveling components (8), with one stretching and leveling component (8) correspondingly provided at each of the two ends of the storage seat (3); The stretching assembly (8) includes a connecting member (82), a stretching member (83) and a second driving member (81), wherein the second driving member (81) is arranged inside the storage seat (3), the second driving member (81) is connected to one end of the connecting member (82), and the other end of the connecting member (82) is connected to the stretching member (83), and the second driving member (81) is used to drive the connecting member (82) to rotate, and the length direction of the stretching member (83) and the rotation axis of the connecting member (82) are both horizontal and parallel to each other; Both ends of the storage seat (3) have an arcuate surface (32); when the second driving member (81) drives the connecting member (82) to rotate to a vertical state, there is a distance between the stretching member (83) and the top end surface of the storage seat (3); thereafter, when the second driving member (81) drives the connecting member (82) to rotate in a direction away from the other connecting member (82), the distance between the stretching member (83) and the arcuate surface (32) gradually decreases.
4. The clothing heat sealing device according to claim 3, characterized in that: The stretching and flattening component (8) further comprises an anti-slip member (84), and the anti-slip member (84) is arranged on a side of the stretching and flattening member (83) close to the storage seat (3).
5. The clothing heat sealing device according to claim 3, characterized in that: It also includes a plurality of positioning lamps (9), wherein the light emitted by the positioning lamps (9) is in the shape of a long strip; when the connecting member (82) is in a vertical state, the positioning lamps (9) illuminate the middle position of the elastic band (103), and the length direction of the long strip light of the positioning lamps (9) is parallel to the length direction of the clearance groove (41).
6. The clothing heat sealing device according to claim 5, characterized in that: The invention also includes a plurality of trigger switches (104), wherein the plurality of trigger switches (104) correspond to the plurality of positioning lights (9) on a one-to-one basis, and the trigger switches (104) are arranged on one side of the storage seat (3); the trigger switches (104) control the opening and closing of the positioning lights (9); when the connecting member (82) is in a vertical state, the connecting member (82) contacts the trigger switches (104), and the trigger switches (104) control the opening of the positioning lights (9).
7. The clothing heat sealing device according to claim 1, characterized in that: It also includes a replacement component (2), wherein a second installation groove (11) for installing the replacement component (2) is provided on the workbench (1), and the replacement component (2) includes two third driving members (21) and two conveyor belts (22), wherein the two third driving members (21) are both arranged on the workbench (1), and the two conveyor belts (22) are respectively located on both sides of the second installation groove (11), and the two conveyor belts (22) are synchronously moved under the drive of the third driving members (21); Two storage seats (3) are provided, and both storage seats (3) are located between the two conveyor belts (22). Both ends of the storage seat (3) are connected to the two conveyor belts (22) respectively; the conveyor belt (22) moves to drive the storage seat (3) to move in the horizontal direction, and the movement paths of the two storage seats (3) are staggered up and down; When the storage seat (3) moves toward the high-frequency machine body (101) to the extreme position, the storage seat (3) is located in the working position; when the storage seat (3) moves toward the extreme position away from the high-frequency machine body (101), the storage seat (3) is located in the preparation position; when one storage seat (3) is located in the working position, the other storage seat (3) is located in the preparation position.
8. The clothing heat sealing device according to claim 7, characterized in that: The invention also includes a cover body (5), wherein the cover body (5) has a cavity (51) inside, the cover body (5) is arranged on the workbench (1), and the high-frequency machine body (101) is located in the cavity (51); an operation port (52) is opened on the cover body (5), and the operation port (52) is communicated with the cavity (51); when the storage seat (3) moves to the preparation position, the storage seat (3) is exposed through the operation port (52).
9. A heat sealing method, characterized in that: Based on the clothing heat sealing device according to any one of claims 1 to 8, the specific steps are as follows: S1, controlling the storage seat (3) to move to a ready position; S2, placing the garment to be processed on the storage seat (3); S3, starting the air intake machine (7); S4, placing the sealing film on the garment to be processed; S5, controlling the storage seat (3) to move to a working position; S6, starting the high-frequency machine body (101).
Citation Information
Patent Citations
Heat sealing machine for mask processing
CN114953477A
Mask ear band welding device
CN217373503U