Ironing plate gluing machine
By setting an alternately moving feeding mechanism and liftable feeding plate in the pearl cotton bonding machine, efficient heating and preheating of pearl cotton is achieved, and the problems of long heating time and large loss of pearl cotton in the prior art are solved, and the bonding quality and production efficiency are improved.
Patent Information
- Application Number
- CN202421382845.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-17
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-06-17
AI Technical Summary
During the processing process, there are two pieces of pearl cotton to be bonded. Only one piece of pearl cotton to be bonded is heated and melted. When the other piece is not preheated, the heating time is extended and the pearl cotton quilt is severely burned, which affects the bonding quality, and the feeding mechanism is low, making it suitable for mass production.
A hot plate bonding machine is designed to achieve continuous work by setting up an alternately moving feeding mechanism, and the feeding plate is set into a liftable structure, allowing alternating heating and preheating of the upper and lower pearl cotton to shorten the heating time and reduce material loss.
It improves the processing efficiency of the pearl cotton bonding machine, shortens the heating time, reduces the loss of pearl cotton, improves the bonding quality, and is suitable for mass production.
Smart Images

Figure CN222946231U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of packaging material bonding equipment, in particular to a hot plate bonding machine. Background Art
[0002] With the development of the times, the application of packaging materials is becoming more and more extensive, and pearl cotton, as an ideal substitute for traditional packaging materials, is widely used in the packaging of mobile phones, instruments, hardware lighting, and handicrafts to protect the products from damage during transportation.
[0003] During the processing, pearl cotton usually needs to bond two pieces of pearl cotton together by bonding. At present, in the processing of pearl cotton, one of the pearl cotton is usually partially heated and melted by electric heating blowing and electric heating plate ironing, and then the heated and melted pearl cotton and the unheated pearl cotton are bonded. No matter whether the above bonding method uses an automatic bonding machine or manual bonding, there are the following problems: only one of the two pearl cottons to be bonded is in a heated and melted state, and the other is in a conventional state without preheating. In this state, the heated pearl cotton needs to melt more materials to bond the two firmly, which not only increases the heating time, but also more of the pearl cotton is burned, which seriously affects the bonding quality and effect. In addition, in the existing pearl cotton bonding machine, the feeding mechanism is usually set to one, and after a product is bonded, it returns to the origin and unloads the material before the next round of loading. The above working method has low processing efficiency and is not conducive to mass production. Utility Model Content
[0004] In order to solve the problems in the above-mentioned background technology, the utility model provides a hot plate bonding machine. By setting an alternately moving feeding mechanism, the bonding machine can work continuously. At the same time, the feeding plate of the feeding mechanism is set to a liftable structure, which can realize heating of the lower sheet and preheating of the upper sheet or heating of the upper sheet and preheating of the lower sheet, so as to shorten the heating, melting and softening time of the pearl cotton and reduce the melting depth, save materials, and improve the bonding quality of the packaging material.
[0005] The utility model adopts the following technical solutions:
[0006] A hot plate bonding machine comprises a frame and a feeding mechanism, a material taking mechanism and a hot plate mechanism arranged on the frame, wherein:
[0007] The material taking mechanism comprises a material taking plate, which is arranged on the frame to move up and down;
[0008] There are at least two feeding mechanisms, which can be moved alternately to the bottom of the material taking mechanism. The feeding mechanism includes a transverse moving base and a feeding plate arranged on the transverse moving base through a lifting assembly;
[0009] The ironing plate mechanism is located between the material taking mechanism and the material feeding mechanism in the vertical direction, and the ironing plate mechanism can be moved to the bottom of the material taking mechanism.
[0010] Furthermore, at least two feeding mechanisms are arranged in sequence in the vertical direction and move alternately to the bottom of the taking mechanism.
[0011] Furthermore, there are two feeding mechanisms, namely a first feeding mechanism and a second feeding mechanism; when feeding, the first feeding mechanism moves horizontally above the second feeding mechanism, or the second feeding mechanism moves horizontally below the first feeding mechanism; when the first feeding mechanism feeds to the processing station, the feeding plate of the first feeding mechanism rises, or when the second feeding mechanism feeds to the processing station, the feeding plate of the second feeding mechanism rises.
[0012] Furthermore, the first feeding mechanism includes a first transverse moving base arranged in parallel and at intervals, a first lifting assembly arranged on the first transverse moving base, and a first feeding plate fixed at the lifting ends of the two first lifting assemblies.
[0013] Furthermore, the second feeding mechanism is located between the two first transverse moving bases, and the second feeding mechanism includes a second transverse moving base, a second lifting assembly and a second feeding plate. The second feeding plate is arranged at the lifting end of the second lifting assembly, and the size of the second feeding plate is smaller than that of the first feeding plate.
[0014] Furthermore, the lifting assembly includes a nut seat rotatably arranged on the transverse moving base, a screw rod threadedly connected to the nut seat, and a driving assembly driving the nut seat to rotate; the lower end of the screw rod passes through the transverse moving base and extends downward, and the upper end of the screw rod is connected to the feeding plate.
[0015] Furthermore, a guide cylinder is fixed on the upper surface of the transverse moving base, and a guide column is arranged in the guide cylinder. The lower end of the guide column passes through the transverse moving base and extends downward, and the upper end of the guide column is fixedly connected to the feeding plate.
[0016] Furthermore, the ironing plate mechanism includes an ironing plate, which is a double-sided ironing plate. The ironing plate moves between the material taking plate and the material feeding plate and contacts the material on the material taking plate or contacts the material on the material feeding plate.
[0017] Furthermore, the hot plate is horizontally movably arranged on the frame through a transmission assembly, the transmission assembly includes a power assembly, a gear connected to the power assembly, and a rack meshing with the gear. The hot plate is connected to the rack and reciprocates with the rack.
[0018] Furthermore, the horizontal moving direction of the feeding mechanism is the same as the horizontal moving direction of the ironing plate mechanism.
[0019] Compared with the prior art, the beneficial effects of the utility model are:
[0020] The present application realizes uninterrupted processing of the bonding machine by setting up multiple feeding mechanisms working alternately, thereby greatly improving the production efficiency of the packaging products; at the same time, by setting the feeding plate as a liftable structure, the vertical distance between the feeding plate and the ironing plate mechanism is adjustable, so that the lower piece of pearl cotton can be preheated while the upper piece of pearl cotton is heated, or the upper piece of pearl cotton can be preheated while the lower piece of pearl cotton is heated, which can not only shorten the hot melting time, but also reduce the melting thickness of the hot-melted pearl cotton, thereby saving materials and improving the bonding quality of the packaging material. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0022] Figure 1 This is the overall structure diagram of the ironing board bonding machine;
[0023] Figure 2 It is an overall structural layout diagram of the first feeding mechanism and the second feeding mechanism of the ironing board bonding machine;
[0024] Figure 3 It is a structural diagram of the second feeding mechanism of the ironing board bonding machine;
[0025] Figure 4 This is a structural diagram of the ironing board mechanism of the ironing board bonding machine;
[0026] Wherein: 1-frame, 2-first feeding mechanism, 21-first transverse base, 22-first lifting assembly, 221-first nut seat, 222-first screw, 223-first driving assembly, 2231-first motor, 2232-first driving wheel, 2233-first driven wheel, 2234-first conveyor belt, 224-first guide cylinder, 225-first guide column, 23-first feeding plate, 3-second feeding mechanism, 31-second transverse base, 32-second lifting assembly, 321-second screw Mother seat, 322-second screw, 323-second driving assembly, 3231-second motor, 3232-second driving wheel, 3233-second driven wheel, 3234-second conveyor belt, 324-second guide cylinder, 325-second guide column, 33-second feeding plate, 4-feeding mechanism, 5-ironing plate mechanism, 51-ironing plate, 52-power assembly, 521-third motor, 522-driving synchronous pulley, 523-driven synchronous pulley, 524-connecting shaft, 53-gear, 54-rack. DETAILED DESCRIPTION
[0027] The following will be combined with the drawings in the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work belong to the protection scope of the utility model.
[0028] The following is combined with Figure 1 To Attachment Figure 4 And specific embodiments describe the present invention in detail.
[0029] like Figure 1-4 As shown, the utility model provides an ironing board bonding machine, comprising a frame 1 and a feeding mechanism, a picking mechanism 4 and an ironing board mechanism 5 arranged on the frame 1, wherein: the picking mechanism 4 comprises a picking plate, which is movably arranged on the frame 1, and the picking plate is used to lift the upper piece of pearl cotton on the feeding mechanism to a certain height, and place it on the ironing board mechanism 5 to heat the lower surface of the upper piece of pearl cotton; there are at least two feeding mechanisms, and they can be alternately moved to the bottom of the picking mechanism 4 to realize uninterrupted operation of the bonding machine and improve the processing efficiency of the equipment. The feeding mechanism comprises a transverse moving base and a feeding plate arranged on the transverse moving base through a lifting component The material to be processed is placed on the feeding plate, and moves to the bottom of the feeding mechanism 4 with the lateral displacement base, and then the feeding plate is raised by the lifting assembly to shorten the distance with the feeding plate, and after the feeding plate takes away the upper piece of pearl cotton, the ironing plate mechanism 5 moves between the feeding mechanism 4 and the feeding mechanism, and the feeding plate drives the upper piece of pearl cotton to descend and contact the upper surface of the ironing plate mechanism 5, and the feeding plate rises to keep the lower piece of pearl cotton and the ironing plate mechanism 5 within a preset distance, so that the upper piece of pearl cotton is heated and the lower piece of pearl cotton is preheated, and the ironing plate mechanism 5 is removed after a certain period of preheating, and the feeding plate descends to bond the upper piece of pearl cotton and the lower piece of pearl cotton together. It can be understood that the feeding plate of the feeding mechanism 4 in the present application can absorb the upper piece of pearl cotton by adsorption, or can pierce the upper piece of pearl cotton by needle plate, and no specific limitation is made to this.
[0030] The present application realizes uninterrupted processing of the bonding machine by setting up multiple feeding mechanisms working alternately, thereby greatly improving the production efficiency of the packaging products; at the same time, by setting the feeding plate as a liftable structure, the vertical distance between the feeding plate and the ironing plate mechanism 5 is adjustable, thereby achieving the heating and melting of the upper piece of pearl cotton while preheating the lower piece of pearl cotton, or heating the lower piece of pearl cotton while preheating the upper piece of pearl cotton, which can not only shorten the hot melting time, but also reduce the melting thickness of the hot-melted pearl cotton, thereby saving materials and improving the bonding quality of the packaging material.
[0031] Specifically, at least two feeding mechanisms are arranged in sequence in the vertical direction and are moved alternately to the bottom of the material taking mechanism. The present application arranges the feeding mechanisms in a vertical arrangement, which can minimize the overall size of the bonding machine, making the entire device more compact, occupying a smaller area, and having greater market promotion value. In addition, the starting loading positions of multiple feeding mechanisms are located on the same side of the bonding machine, realizing a single-person operation mode. One bonding machine is equipped with one staff member to achieve continuous production, thereby reducing production costs.
[0032] In some embodiments of the present application, there are two feeding mechanisms, namely a first feeding mechanism 2 and a second feeding mechanism 3, and the first feeding mechanism 2 is located above the second feeding mechanism 3; the process of alternating feeding by the first feeding mechanism 2 and the second feeding mechanism 3 is: manually place the material to be processed on the first feeding mechanism 2, start the first feeding mechanism 2, and make the first feeding mechanism 2 move horizontally in the direction of the material taking mechanism 4 above the second feeding mechanism 3. When it moves to the processing station, the feeding plate of the first feeding mechanism 2 rises a certain distance, and the material taking plate of the material taking mechanism 4 descends to take up the upper piece of pearl cotton. After that, the ironing plate mechanism 5 moves to the first feeding mechanism 2 and the feeding mechanism 4, the upper and lower pearl cotton are heated at the same time. After heating for a certain period of time, the ironing plate mechanism 5 is removed, and the feeding mechanism 4 presses the upper pearl cotton onto the lower pearl cotton to finally form a finished product. The feeding plate of the first feeding mechanism 2 drives the finished product to drop a certain distance and then moves to the starting loading position; during the working process of the first feeding mechanism 2, the material to be processed is manually placed on the second feeding mechanism 3. During the process of the first feeding mechanism 2 moving back, the second feeding mechanism 3 begins to move horizontally in the direction of the feeding mechanism 4. The working process of the second feeding mechanism 3 is the same as that of the first feeding mechanism 2, which will not be repeated here. It should be noted that the first feeding mechanism 2 and the second feeding mechanism 3 are both located at the starting loading position when not in operation. The staff standing at the starting loading position can load multiple feeding mechanisms and unload the processed products.
[0033] Specifically, Figure 2 As shown, the first feeding mechanism 2 includes first transverse moving bases 21 arranged in parallel and at intervals, each first transverse moving base 21 is provided with a first lifting assembly 22, and both ends of the first feeding plate 23 are fixedly connected to the lifting ends of the two first lifting assemblies 22 respectively; in the present application, since the second feeding mechanism 3 moves horizontally below the first feeding mechanism 2, there must be enough space below the first feeding mechanism 2 for the second feeding mechanism to move 3. The present application provides avoidance space for the second feeding mechanism 3 by arranging two first transverse moving bases 21 and two first lifting assemblies 22, thereby further making the structure of the entire bonding machine more compact.
[0034] In some embodiments, the first lifting assembly 22 includes a first nut seat 221 rotatably arranged on the corresponding first transverse base 21, a first screw rod 222 screwed to the first nut seat 221, and a first driving assembly 223 driving the first nut seat 221 to rotate, the lower end of the first screw rod 222 penetrates the first transverse base 21 and extends downward, and the upper end of the first screw rod 222 is connected to the first feed plate 23; the first driving assembly 223 drives the first nut seat 221 to rotate, and the rotation of the first nut seat 221 drives the first screw rod 222 to move vertically up and down, thereby realizing the vertical up and down movement of the first feed plate 23. In this embodiment, the cooperation of the nut seat and the screw rod is used to realize the lifting of the first feed plate 23, which has the advantages of high precision and high efficiency. It can be understood that all first lifting assemblies 22 that can realize the lifting function of the first feed plate 23 in this application belong to the protection scope of this application, and the illustrated first lifting assembly 22 is only one embodiment, but is not limited to this.
[0035] Specifically, in some embodiments of the present application, the first driving assembly 223 includes a first motor 2231, a first driving wheel 2232 mounted on the motor shaft of the first motor 2231, a first driven wheel 2233 fixedly mounted on the lower end of the first nut seat 221, and a first conveyor belt 2234 mounted on the first driving wheel 2232 and the first driven wheel 2233. The first motor 2231 drives the first driving wheel 2232 to rotate, and the first driving wheel 2232 drives the first driven wheel 2233 to rotate through the first conveyor belt 2234. The first driven wheel 2233 rotates to drive the first nut seat 221 to rotate, and then drives all the first screw rods 222 to move up and down. It can be understood that the function of the first driving assembly 223 is to drive the first nut seat 221 to rotate. Therefore, the structure of the first driving assembly 223 is not specifically limited. The above is only one embodiment, but other first driving assemblies 223 that can realize the rotation of the first nut seat 221 also belong to the protection scope of the present application.
[0036] In some embodiments, a first guide cylinder 224 is also fixed to the upper surface of the first transverse base 21, a first guide column 225 is arranged inside the first guide cylinder 224, the lower end of the first guide column 225 penetrates through the first transverse base 21 and then extends downward, and the upper end of the first guide column 225 is fixedly connected to the first feed plate 23. Preferably, a first guide cylinder 224 is fixed to the side of each first nut seat 221, and the first guide cylinder 224 and the first guide column 225 guide the lifting and lowering of the first feed plate 23, so as to avoid the first nut seat 221 being deflected by force during the rotation process, resulting in the deflection of the first feed plate 23, which ultimately affects the horizontality of the upper end surface of the first feed plate 23 and indirectly affects the bonding quality.
[0037] Specifically, Figure 2 , Figure 3As shown, the second feeding mechanism 3 is located between the two first transverse shifting bases 21, and the second feeding mechanism 3 includes a second transverse shifting base 31, a second lifting assembly 32 and a second feeding plate 33. The second feeding plate 33 is arranged at the lifting end of the second lifting assembly 32, and the size of the second feeding plate 33 is smaller than the size of the first feeding plate 23. In the embodiment of the present application, since only two feeding mechanisms are arranged, the second feeding mechanism 3 does not need to be provided with an escape space, so the second transverse shifting base 31 can be a whole transverse shifting plate. It can be understood that if three or more feeding mechanisms are arranged, then in order to achieve a compact structure of the bonding machine, except for the feeding mechanism located at the bottom, which does not need to be provided with an escape space, the other feeding mechanisms need to be provided with an escape space to facilitate the lateral horizontal movement of the feeding mechanism below it.
[0038] In some embodiments, the second lifting assembly 32 includes a second nut seat 321 rotatably arranged on the corresponding second transverse base 31, a second screw rod 322 screwed to the second nut seat 321, and a second driving assembly 323 driving the second nut seat 321 to rotate, the lower end of the second screw rod 322 penetrates the second transverse base 31 and extends downward, and the upper end of the second screw rod 322 is connected to the second feed plate 33; the second driving assembly 323 drives the second nut seat 321 to rotate, and the rotation of the second nut seat 321 drives the second screw rod 322 to move vertically up and down, thereby realizing the vertical up and down movement of the second feed plate 33. In this embodiment, the lifting and lowering of the second feed plate 33 is realized by the cooperation of the nut seat and the screw rod, which has the advantages of high precision and high efficiency. It can be understood that all second lifting assemblies 32 that can realize the lifting function of the second feed plate 33 in this application belong to the protection scope of this application, and the second lifting assembly 32 shown in the figure is only one embodiment, but is not limited to this.
[0039] Specifically, the second drive assembly 32 in the embodiment of the present application includes a second motor 3231, a second driving wheel 3232 sleeved on the motor shaft of the second motor 3231, a second driven wheel 3233 fixedly sleeved on the lower end of the second nut seat 321, and a second conveyor belt 3234 sleeved on the second driving wheel 3232 and the second driven wheel 3233. The second motor 3231 drives the second driving wheel 3232 to rotate, and the second driving wheel 3232 drives the second driven wheel 3233 to rotate through the second conveyor belt 3234. The rotation of the second driven wheel 3233 drives the second nut seat 321 to rotate, and then drives all the second screw rods 322 to move up and down. It can be understood that the function of the second drive assembly 323 is to drive the second nut seat 321 to rotate. Therefore, the structure of the second drive assembly 323 is not specifically limited. The above is only one embodiment, but other second drive assemblies 323 that can realize the rotation of the second nut seat 321 also belong to the protection scope of the present application.
[0040] Specifically, in some embodiments, a plurality of second guide cylinders 324 are fixed to the upper surface of the second transverse base 31, and a second guide column 325 is arranged inside the second guide cylinder 324. The lower end of the second guide column 325 extends downward after penetrating the second transverse base 31, and the upper end of the second guide column 325 is fixedly connected to the second feed plate 33. Preferably, a second guide cylinder 324 is fixed to the side of each second nut seat 321, and the second guide cylinder 324 and the second guide column 325 guide the lifting and lowering of the second feed plate 33, so as to avoid the second nut seat 321 being deflected by force during the rotation process, resulting in the deflection of the second feed plate 33, which ultimately affects the horizontality of the upper end surface of the second feed plate 33 and indirectly affects the bonding quality.
[0041] It is worth mentioning that the second screw 322 and the second guide column 325 of the present application are circumferentially arranged on the outer edge of the second feed plate 33 to evenly support the second feed plate 33. Preferably, there are four second screws 322 and four second guide columns 325, which are arranged at the four corners of the second feed plate 33.
[0042] Specifically, in the embodiment of the present application, the ironing plate mechanism 5 includes a heating plate 51, which is a double-sided heating plate. The heating plate 51 can be moved between the material taking plate and the feeding plate. The heating plate 51 can contact the material to be processed on the material taking plate to heat the upper piece of pearl cotton, and at the same time, the heating plate 51 and the feeding plate are kept within a preset distance to preheat the lower piece of pearl cotton; or the heating plate 51 contacts the material to be processed on the feeding plate to heat the lower piece of pearl cotton, and at the same time, the heating plate 51 and the material taking plate are kept within a preset distance to preheat the upper piece of pearl cotton.
[0043] In some optional embodiments, the hot plate 51 is horizontally movably arranged on the frame 1 through a transmission assembly, and the transmission assembly includes a power assembly 52, a gear 53 connected to the power assembly 52, and a rack 54 meshing with the gear 53. The hot plate 51 is connected to the rack 54 and reciprocates with the rack 54. The present application does not specifically limit the structure of the power assembly 52. For example, the power assembly 52 includes a third motor 521, an active synchronous pulley 522, a driven synchronous pulley 523, and a connecting shaft 524; the connecting shaft 524 is rotatably arranged above the hot plate 51, and a gear 53 is respectively mounted on both ends of the connecting shaft 524, and a driven synchronous pulley 523 is fixedly mounted on one end of the connecting shaft 524, and the driven synchronous pulley 523 and the active synchronous pulley 522 are connected by a synchronous belt, and a rack 54 is meshed below each gear 53. The third motor 521 is started, and the third motor 521 drives the active synchronous pulley 522 to rotate. The active synchronous pulley 522 drives the driven synchronous pulley 523 to rotate through the synchronous belt. The driven synchronous pulley 523 drives the connecting shaft 524 to rotate. The connecting shaft 524 drives the two gears 53 to rotate. The two gears 53 drive the rack 54 to reciprocate, thereby driving the hot plate 51 to reciprocate.
[0044] In a preferred embodiment, the horizontal movement direction of the feeding mechanism is the same as that of the ironing plate mechanism 5, thereby reducing the width of the bonding machine without significantly increasing its length, making the overall structure of the bonding machine more compact and reducing equipment costs.
[0045] The utility model is further described above with the help of specific embodiments, but it should be understood that the specific description here should not be construed as limiting the essence and scope of the utility model. Various modifications made to the above embodiments by ordinary technicians in this field after reading this specification are all within the scope of protection of the utility model.
Claims
1. A hot plate bonding machine, characterized in that: It includes a frame and a feeding mechanism, a material taking mechanism and an ironing plate mechanism arranged on the frame, wherein: The material taking mechanism comprises a material taking plate, and the material taking plate is arranged on the frame so as to move up and down; There are at least two feeding mechanisms, which can be moved alternately to the bottom of the material taking mechanism. The feeding mechanism includes a transverse moving base and a feeding plate arranged on the transverse moving base through a lifting component; The ironing mechanism is located between the material taking mechanism and the material feeding mechanism in the vertical direction, and the ironing mechanism can be moved below the material taking mechanism.
2. The ironing board bonding machine according to claim 1, characterized in that: At least two of the feeding mechanisms are arranged in sequence in the vertical direction and move alternately to the bottom of the taking mechanism.
3. The ironing board bonding machine according to claim 2, characterized in that: There are two feeding mechanisms, namely the first feeding mechanism and the second feeding mechanism; when feeding, the first feeding mechanism moves horizontally above the second feeding mechanism, or the second feeding mechanism moves horizontally below the first feeding mechanism; when the first feeding mechanism feeds to the processing station, the feeding plate of the first feeding mechanism rises, or when the second feeding mechanism feeds to the processing station, the feeding plate of the second feeding mechanism rises.
4. The ironing board bonding machine according to claim 3, characterized in that: The first feeding mechanism includes first transverse moving bases arranged in parallel and at intervals, a first lifting assembly arranged on the first transverse moving base, and a first feeding plate fixed to the lifting ends of two first lifting assemblies.
5. The ironing board bonding machine according to claim 4, characterized in that: The second feeding mechanism is located between the two first transverse bases, and the second feeding mechanism includes a second transverse base, a second lifting assembly and a second feeding plate. The second feeding plate is arranged at the lifting end of the second lifting assembly, and the size of the second feeding plate is smaller than that of the first feeding plate.
6. The ironing board bonding machine according to claim 1, characterized in that: The lifting assembly includes a nut seat rotatably arranged on the transverse base, a screw rod threadedly connected to the nut seat, and a driving assembly driving the nut seat to rotate; the lower end of the screw rod passes through the transverse base and extends downward, and the upper end of the screw rod is connected to the feeding plate.
7. The ironing board bonding machine according to claim 6, characterized in that: A guide cylinder is also fixed on the upper surface of the transverse moving base, and a guide column is arranged in the guide cylinder. The lower end of the guide column passes through the transverse moving base and extends downward, and the upper end of the guide column is fixedly connected to the feeding plate.
8. The ironing board bonding machine according to claim 1, characterized in that: The ironing plate mechanism comprises an ironing plate, which is a double-sided ironing plate. The ironing plate moves between the material taking plate and the material feeding plate and contacts the material on the material taking plate or contacts the material on the material feeding plate.
9. The ironing board bonding machine according to claim 8, characterized in that: The hot plate is horizontally movably arranged on the frame through a transmission assembly. The transmission assembly includes a power assembly, a gear connected to the power assembly, and a rack meshing with the gear. The hot plate is connected to the rack and reciprocates with the rack.
10. The ironing board bonding machine according to claim 1, characterized in that: The horizontal moving direction of the feeding mechanism is the same as the horizontal moving direction of the ironing plate mechanism.