A film forming apparatus
Patent Information
- Application Number
- CN202521799263.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-22
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-08-22
AI Technical Summary
[0013]与现有技术相比本实用新型具有的有益效果有:
Smart Images

Figure CN224751886U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of product coating forming technology, specifically to a coating forming equipment. Background Technology
[0002] There is currently a product that requires wrapping a rectangular core material with a membrane material. Currently, this is generally done manually. The main production process is as follows: employees position and assemble the core material and membrane material, then fold the membrane material over the two long sides of the core material to wrap it. They then heat-press the overlapping areas of the membrane material to bond it. Next, they fold the membrane material inward at the ear-like opening formed at the base of the core material along the short side, fold the membrane material over the short side of the core material again to wrap it, and heat-press it again to complete the wrapping process.
[0003] The above-mentioned manual operation method involves too many steps, requiring a high level of employee proficiency and manual operation speed, resulting in very low output. The main reason why highly automated equipment is not currently used to complete the above operations is that the film material on the short side of the core material needs to be folded inward at the ear at the root of the core material before folding. Completing the ear fold requires a special component. However, the core material is small and the space around the product is limited. The component that completes the ear fold and the component that completes the folding of the film material on the short side of the core material are concentrated around the core material, which can easily cause mutual interference and affect the efficiency and effect of film coating. Utility Model Content
[0004] The technical problem to be solved by this utility model is to provide a coating forming equipment that can realize the coating processing of core materials and improve processing efficiency.
[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: a film forming device, including a forming table, a film forming mechanism, and a hot stamping mechanism. The film forming mechanism includes a first folding assembly and a second folding assembly. The first folding assembly includes a first folding drive and two first folding pieces. The two first folding pieces are symmetrically arranged on the two long folding sides of the forming table, and are driven by the first folding drive to fold the film material on the two long sides of the core material to wrap the core material. The second folding assembly includes a second folding drive and two second folding pieces. The two second folding pieces are symmetrically arranged on the two short folding sides of the forming table, and are driven by the second folding drive to fold the film material on the two short sides of the core material to wrap the core material. The second folding piece includes a folding ear drive and two folding ears. The folding ear drive drives the two folding ears to move and fold the ears of the film material on the short sides of the core material inward. The hot stamping mechanism hot stamps the film material folded onto the core material. The first folding assembly folds the film material from the two long sides of the core material, and the second folding assembly folds the film material from the two short sides of the core material. Before folding the film material, the second folding assembly also folds the ear part of the film material inward. The film wrapping mechanism and the hot stamping mechanism work together to make the film material wrap the core material.
[0006] As an optional solution of this utility model, the first folding driving member and the second folding driving member are a wrapping driving structure. The wrapping driving structure includes a horizontal driving member, a vertical driving member and two moving seats. The two moving seats are symmetrically arranged on both sides of the forming table and are driven by the horizontal driving member to move closer or further away from each other. Each of the two moving seats is provided with a vertical driving member, and the lifting part of the vertical driving member is connected to the first folding member or the second folding member.
[0007] As an optional solution of this utility model, a positioning platform is provided on the forming table, with two first folding components symmetrically arranged on both sides of the positioning platform, and two second folding components symmetrically arranged on both sides of the positioning platform. The platform surface of the positioning platform is higher than the platform surface of the forming table. The positioning platform facilitates the rapid positioning and placement of the composite material, and the higher platform surface of the positioning platform facilitates the first and second folding components to fold the film material.
[0008] As an optional solution of this utility model, the two long folded sides of the positioning table are provided with a film-flipping support structure, the upper edge of which is higher than the table surface of the positioning table. The film-flipping support structure facilitates the lifting of the film material on the long side of the core material, thereby making it easier for the first folding assembly to fold the film material, and can also prevent the position of the assembled material from moving during processing, which would affect the processing accuracy.
[0009] As an optional solution of this utility model, it also includes a negative pressure mechanism, wherein the platform of the positioning table is provided with a number of negative pressure suction holes, and the negative pressure mechanism is connected to each negative pressure suction hole.
[0010] As an optional solution of this utility model, the hot stamping mechanism includes a moving component, a long-side hot stamping component, and a short-side hot stamping component. The moving part of the moving component is connected to the long-side hot stamping component and the short-side hot stamping component. The long-side hot stamping component includes a first lifting drive and a first heating component. The first heating component is driven by the first lifting drive to adjust its height and is used to bond the two overlapping long sides of the film material above the core material. The short-side hot stamping component includes a second lifting drive and two second heating components. The two second heating components are driven by the second lifting drive to adjust their height and are used to bond the two short sides of the film material to the film material above the core material.
[0011] As an optional embodiment of this invention, the moving part of the moving component is connected to the second lifting drive component. The lifting part of the second lifting drive component is provided with a material gripping base. The material gripping base is provided with a material gripping drive component and two material gripping components. Two second heating elements are respectively provided on the two material gripping claws. The material gripping drive component drives the two material gripping claws to move between the standby position, the material gripping position, and the hot-pressing position. The first lifting drive component is provided on the material gripping base. In addition to hot-pressing and bonding the film material, the hot-pressing component can also be used to transport products, which helps to simplify the equipment structure.
[0012] As an optional solution of this utility model, it also includes a discharge mechanism, in which the moving component drives the long-side hot stamping component and the short-side hot stamping component to move back and forth between the hot stamping station and the discharge station, and transfers the hot-stamped product on the forming table to the discharge mechanism.
[0013] Compared with the prior art, the advantages of this utility model are as follows: 1. The coating forming device of this utility model can automatically perform coating, hot stamping and unloading processes on the composite material formed by the combination of core material and film material. The coordination between the various mechanisms is good, the processing speed is fast and the precision is high. Compared with the original processing method that relies too much on the skill and speed of manual operation, it effectively improves the production efficiency. 2. The second folding assembly of the coating mechanism is used to fold the film material from the short side of the core material to wrap the core material. The second folding component of the second folding assembly includes a folding ear drive and two folding ears. Before folding the film material on the short side of the core material, the second folding assembly can use the second folding ears to fold the ear part of the film material inward under the drive of the second folding drive to achieve a better coating effect. The folding and earing of the film material on the short side of the core material by the second folding assembly can adapt to the limited space around the chip and avoid interference of components caused by using separate folding and earing structures, which would affect the normal operation of production. 3. In addition to bonding the film material of the product by hot stamping, the hot stamping mechanism can also transfer the product, which helps to simplify the equipment structure. Attached Figure Description
[0014] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0015] Figure 1 This is a schematic diagram of the coating forming device; Figure 2 This is a schematic diagram of the coating mechanism and the forming stage; Figure 3 This is a schematic diagram of the coating mechanism; Figure 4 A schematic diagram of the long-side hot stamping assembly and the short-side hot stamping assembly; Figure 5 A schematic diagram of the product coating process; In the diagram: 1. Forming table; 11. Positioning table; 12. Film flipping support structure; 2. Film wrapping mechanism; 21. First folding edge drive component; 22. First folding edge component; 23. Second folding edge drive component; 24. Folding ear drive component; 25. Folding ear component; 3. Hot stamping mechanism; 31. Moving component; 32. First lifting drive component; 33. First heating component; 34. Second lifting drive component; 35. Material gripping base; 36. Material gripping drive component; 37. Material gripping component; 4. Discharge mechanism; 5. Combined material. Detailed Implementation
[0016] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model. Example
[0017] like Figures 1-4 As shown, a film-forming device includes a forming table 1, a film-forming mechanism 2, and a heat-pressing mechanism 3. After a composite material 5, formed by aligning and combining a film material and a core material, is placed on the forming table 1, the film-forming mechanism 2 folds the film material to wrap around the core material. The heat-pressing mechanism 3 heats the overlapping areas of the film material to bond the film, thus wrapping the core material. The film-forming mechanism 2 includes a first folding assembly and a second folding assembly. The first folding assembly folds the film material from the two long sides of the core material to above the core material. The heat-pressing mechanism 3 heats the overlapping areas of the long sides of the film material from above the core material to bond the film. The second folding assembly folds the film material from the two short sides of the core material to above the core material. The heat-pressing mechanism 3 heats the short sides of the film material to the film material above the core material from above the core material to bond the film. The film-forming mechanism 2 and the heat-pressing mechanism 3 work together to fold the film material above the core material, thus covering the core material.
[0018] Please see Figures 1-3The first folding assembly includes a first folding drive 21 and two first folding parts 22. The two first folding parts 22 are symmetrically arranged on the two long folding sides of the forming table 1. The two first folding parts 22 are driven to move by the first folding drive 21, folding the film material on the two long sides of the core material upward and wrapping the core material. The second folding assembly includes a second folding drive 23 and two second folding pieces. The two second folding pieces are symmetrically arranged on the two short folding sides of the forming table 1. The two second folding pieces are driven to move by the second folding drive 23 to fold the film material on the two short sides of the core material upward and wrap the core material. The second folding piece includes a folding ear drive 24 and two folding ear pieces 25. Before folding the film material on the two short sides of the core material, the second folding drive 23 drives the second folding piece to move to the film ear position on the short side of the core material. The folding ear drive 24 drives the two folding ear pieces 25 to move and fold the film ear on the short side of the core material inward. After folding the ear, the second folding drive 23 drives the second folding piece to fold the film material.
[0019] The first folding drive member 21 and the second folding drive member 23 constitute a wrapping drive mechanism. The wrapping drive structure includes a horizontal drive member, a vertical drive member, and two movable seats. The two movable seats are symmetrically arranged on both sides of the forming table 1 and are driven by the horizontal drive member to move closer or further apart. Each movable seat is equipped with a vertical drive member. The two first folding members 22 are respectively connected to the lifting parts of the two vertical drive members of the first folding drive member 21, and the two second folding members are respectively connected to the lifting parts of the two vertical drive members of the second folding drive member 23. For details, please refer to [link / reference]. Figure 3 A guide rail is provided on the mounting base of the forming table 1. Two movable seats are mounted on the mounting base of the forming table 1 and can move along the guide rail. A transmission rack is provided on the movable seats. The lateral drive component is a rotary drive component and is located below the mounting base of the forming table 1. The rotating part of the lateral drive component is provided with a transmission gear. The transmission gear engages with the transmission rack of the two movable seats. The lateral drive component can drive the two movable seats to move closer or further away at the same time. Of course, the lateral drive component can also be a telescopic component in the form of a cylinder, in which case the transmission rack is not provided on the movable seat, and the telescopic part of the lateral drive component is connected to the movable seat. The first vertical drive component is preferably a telescopic drive component and is vertically mounted on the movable seat.
[0020] The first folding drive 21 adjusts the height of the two first folding components 22, and moves them closer or further apart. After the composite material 5, formed by aligning and combining the film material and the core material, is placed on the forming table 1, the first folding drive 21 adjusts the height of the two first folding components 22 so that each first folding component 22 is at the height between the corresponding film material and the forming table 1. The first folding drive 21 moves the two first folding components 22 closer together, so that the front end of each first folding component 22 is inserted into the gap between the film material and the forming table 1. Then, the first folding drive 21 lifts the two first folding components 22 and moves them closer together, folding the film material on the two long sides of the core material onto the top of the core material. During the folding process of the first folding assembly, the changes in the film material are as follows: Figure 5 As shown in steps b-d. The first folding plate is preferably a plate-like structure, and the front end of the first folding plate is configured as an inclined surface to facilitate insertion into the gap below the membrane material.
[0021] The first folding drive 21, through two vertical drive components, ensures that the two first folding components 22 are always at the same height, allowing for simultaneous folding of the film material on both sides of the core material. Alternatively, one first folding component 22 can be adjusted to a suitable height to fold the film material on one long side of the core material, and then the other first folding component 22 can be adjusted to a suitable height to fold the film material on the other long side of the core material, thus achieving sequential folding of the film material on both sides of the core material. After the first folding assembly folds the film material on both long sides of the core material above the core material, the first folding drive 21 can drive the two first folding components 22 to move away from each other while pressing down on the film material, leaving space above the core material suitable for the heat setting mechanism 3 to heat set. After heat setting, the first folding components 22 return to their original positions on both sides of the forming table 1.
[0022] The second folding drive 23 adjusts the height of the two second folding components and moves them closer or further apart. The second folding drive 23 moves the two second folding components, enabling the film material to be folded not only on the short sides of the core material but also on the ears of the film material at the ends of the core material, thus achieving ear folding. After the first folding assembly folds the film material over the core material from its two long sides, the core material is rolled into a cylindrical shape and extends outwards from its two short sides, as shown below. Figure 5 As shown in step d, for ease of description, the membrane material on the short side of the core material above the core material is called the upper membrane material, the membrane material on the short side of the core material below the core material is called the lower membrane material, and the part of the membrane material on the short side of the core material that connects the upper and lower membrane materials is called the middle membrane material.
[0023] Before the second folding assembly folds the membrane material above the core material from the two short sides, the second folding drive 23 first adjusts the height of each second folding component to match the height of the intermediate membrane material. The ear drive 24 drives the two ear components 25 to move away from each other, so that the distance between the two ear components 25 is greater than the length of the short side of the core material. Then, the second folding drive 23 drives the two second folding components to move closer to each other. Each ear component 25 is located outside the intermediate membrane material at the four corners of the core material. The ear drive 24 drives the two ear components 25 to move closer to each other and folds the intermediate membrane material inward, so that the intermediate membrane material is attached to the end of the core material. At this time, the state of the composite material 5 formed by the core material and the membrane material is as follows. Figure 5 As shown in step e; then the second folding drive 23 moves each folding lug 25 to above the upper membrane material, the distance between the two folding lugs 25 is less than the length of the short side of the core material, the second folding drive 23 moves the folding lugs 25 down and makes the upper membrane material adhere to the short side end of the core material, the second folding drive 23 moves the folding lugs 25 to below the lower membrane material, the distance between the two folding lugs 25 is less than the length of the short side of the core material, the second folding drive 23 moves the folding lugs 25 up and towards the center of the core material, folding the lower membrane material up and over the core material, so that the membrane material wraps the core material. At this time, the state of the composite material 5 formed by the core material and the membrane material is as follows. Figure 5 As shown in step f.
[0024] Please see Figure 2 The folding lug 25 includes a mounting part and a folding lug. The mounting part is connected to the actuating part of the folding lug drive 24. The mounting part is vertically arranged and the folding lug is provided on the opposite side of the two mounting parts. The folding lug and the mounting part form an L-shaped structure. The end face of the folding lug that is opposite to the other folding lug is the first folding lug end face. The end face of the folding lug facing the folding lug drive 24 is the second folding lug end face. The lower end face and the upper end face of the folding lug are the third folding lug end face and the fourth folding lug end face, respectively. The folding ear drive 24 drives the two folding ear pieces 25 to move closer to each other. Using the first and second folding ear end faces of each folding ear piece 25, the middle membrane material is folded between the upper and lower membrane materials. The second folding edge drive 23 drives each folding ear piece 25 to move downward. Using the third folding ear end face of each folding ear piece 25, the upper membrane material is attached to the short side of the core material. The second folding edge drive 23 drives the folding ear piece 25 to rise and move towards the center of the core material. The lower membrane material is flipped up and folded above the core material by using the fourth, second, and third folding ear end faces of each folding ear piece 25 in sequence.
[0025] Please see Figure 1 , Figure 2A positioning platform 11 is provided on the forming table 1. The size of the positioning platform 11 is adapted to the size of the product after folding and wrapping. After the core material and film material are aligned and combined to form the composite material 5, it is placed on the positioning platform 11. Two first folding edge pieces 22 are symmetrically arranged on both sides of the positioning platform 11, and two second folding edge pieces are symmetrically arranged on the other two sides of the positioning platform 11. The core material corresponds to the positioning platform 11, while the film material extends outside the positioning platform 11. The positioning platform 11 not only facilitates the quick positioning of the composite material 5 on the wrapping forming device, but also facilitates the processing operation of the composite material 5 by the wrapping mechanism 2 and the hot stamping mechanism 3.
[0026] The platform of the positioning table 11 is higher than the platform of the forming table 1. After the composite material 5 formed by the core material and the film material is placed on the positioning table 11, there is a gap between the film material outside the core material and the platform of the forming table 1, which facilitates the insertion of the first folding member 22 and the second folding member into the gap and folding the film material upward. Furthermore, the two long folding sides of the positioning table 11 are provided with a film-folding support structure 12. The upper edge of the film-folding support structure 12 is higher than the platform of the positioning table 11. The film-folding support structure 12 is rod-shaped or plate-shaped with its upper edge higher than the platform of the positioning table 11. When the composite material 5 is placed on the positioning table 11, the film-folding support structure 12 folds the film material upward. The state of the composite material 5 before it is placed on the positioning table 11 is as follows. Figure 5 As shown in step a, the state after being placed on the positioning stage 11 is as follows. Figure 4 As shown in step b, this facilitates the first folding assembly to fold the film material upwards from the two long sides of the core material, and also prevents the core material from shifting.
[0027] The platform of the positioning table 11 is also provided with several negative pressure suction holes. The negative pressure suction holes are connected to a negative pressure mechanism in the form of a negative pressure fan. After the composite material 5 formed by the core material and the film material is placed on the positioning table 11, the negative pressure mechanism will adsorb the composite material 5 through the multiple negative pressure suction holes and fix the composite material 5.
[0028] Please see Figure 1 and Figure 4The hot stamping mechanism 3 includes a moving component 31, a long-side hot stamping component, and a short-side hot stamping component. The moving component 31 is a robotic arm or a moving module mounted above the forming table 1. The moving part of the moving component 31 is connected to the long-side hot stamping component and the short-side hot stamping component. The long-side hot stamping component includes a first lifting drive component 32 and a first heating component 33. The first heating component 33 is driven to lift and adjust by the first lifting drive component 32. The short-side hot stamping component includes a second lifting drive component 34 and two second heating components. The two second heating components are driven to lift and adjust by the second lifting drive component 34. The first lifting drive component 32 and the second lifting drive component 34 are telescopic components in the form of cylinders or the like. After the first folding assembly folds the film material on the two long sides of the core material to the top of the core material, the moving assembly 31 moves the long side heating assembly to the top of the core material. The long side heating assembly heats the overlapping part of the film material on the top of the core material to bond the overlapping area of the film material. After the second folding assembly folds the film material on the two short sides of the core material upwards, the moving assembly 31 moves the short side heating assembly to the top of the core material. The two second heating elements of the short side heating assembly heat the film material on the top of the core material to bond the film material.
[0029] In a further embodiment, the moving part of the moving component 31 is connected to the second lifting drive 34. The lifting part of the second lifting drive 34 is provided with a material gripping base 35. The material gripping base 35 is provided with a material gripping assembly. The material gripping assembly includes a material gripping drive 36 and two material gripping claws. The two second heating elements of the short side hot stamping mechanism 3 are respectively provided on the two material gripping claws. The material gripping drive 36 includes two telescopic drive elements or a telescopic drive element with a double output shaft. The material gripping drive 36 drives the two material gripping claws to move closer or further away from each other, and moves the two material gripping claws between the standby position, the material gripping position and the hot stamping position. When the two gripping claws are in the hot-pressing position, the distance between the two gripping claws is consistent with the distance between the two short-side hot-pressing points above the core material. The moving component 31 drives the short-side hot-pressing component to move and align, allowing the second heating element on the two gripping claws to hot-press the film material above the core material. When the two gripping claws are in the standby position, the distance between the two gripping claws is greater than the length of the wrapped product. The two gripping claws move from the standby position to the gripping position to grab the wrapped product located between them. A clearance hole is provided on the gripping base 35 between the two gripping claws. The first lifting drive component 32 is provided on the gripping base 35. The lifting part of the first lifting drive component 32 passes through the clearance hole and is connected to the first heating element 33. The first heating element 33 is located between the two gripping claws. When the first heating element 33 is hot-pressed, the first lifting drive component 32 drives the first heating element 33 to descend below the second heating element. When the second heating element is hot-pressed, the first heating element 33 rises above the second heating element to avoid mutual interference.
[0030] Please see Figure 1Furthermore, the film forming device also includes a discharge mechanism 4. The moving component 31 drives the long-side hot stamping component and the short-side hot stamping component to move back and forth between the hot stamping station and the discharge station. When the moving component 31 drives the long-side hot stamping component and the short-side hot stamping component to the hot stamping station, it can perform hot stamping processing on the combined material 5 on the positioning table 11, and it can also grab the film-formed product. When the long-side hot stamping component and the short-side hot stamping component are at the discharge station, they are above the discharge mechanism 4. At this time, the long-side hot stamping component and the short-side hot stamping component can place the grabbed product onto the discharge mechanism 4, which is a conveyor.
[0031] In this specification, the terms "an embodiment," "example," "specific example," etc., refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0032] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A coating forming device, characterized in that: The system includes a forming table (1), a wrapping mechanism (2), and a heat exchange mechanism (3). The wrapping mechanism (2) includes a first folding assembly and a second folding assembly. The first folding assembly includes a first folding drive (21) and two first folding pieces (22). The two first folding pieces (22) are symmetrically arranged on the two long folding sides of the forming table (1) and are driven by the first folding drive (21) to fold the film material on the two long sides of the core material to wrap the core material. The second folding assembly includes a second folding drive. The core material consists of a core material (23) and two second folding parts. The two second folding parts are symmetrically arranged on the two short folding sides of the forming table (1). The second folding drive (23) drives the film material on the two short sides of the core material to fold and wrap the core material. The second folding part includes a folding ear drive (24) and two folding ear parts (25). The folding ear drive (24) drives the two folding ear parts (25) to move and fold the film material ears on the short sides of the core material inward. The hot stamping mechanism (3) hot stamps the film material folded onto the core material.
2. The coating forming equipment according to claim 1, characterized in that: The first folding drive (21) and the second folding drive (23) are a wrapping drive structure. The wrapping drive structure includes a horizontal drive, a vertical drive and two moving seats. The two moving seats are symmetrically arranged on both sides of the forming table (1) and are driven by the horizontal drive to move closer or further away from each other. Both moving seats are provided with vertical drive, and the lifting part of the vertical drive is connected to the first folding component (22) or the second folding component.
3. The coating forming equipment according to claim 1, characterized in that: A positioning platform (11) is provided on the forming platform (1). Two first folding parts (22) are symmetrically arranged on both sides of the positioning platform (11), and two second folding parts are symmetrically arranged on both sides of the positioning platform (11). The platform surface of the positioning platform (11) is higher than the platform surface of the forming platform (1).
4. The coating forming equipment according to claim 3, characterized in that: The two long sides of the positioning platform (11) are provided with a film-flipping support structure (12), and the upper edge of the film-flipping support structure (12) is higher than the platform surface of the positioning platform (11).
5. The coating forming equipment according to claim 4, characterized in that: It also includes a negative pressure mechanism. The platform of the positioning table (11) is provided with several negative pressure suction holes, and the negative pressure mechanism is connected to each negative pressure suction hole.
6. The coating forming equipment according to claim 1, characterized in that: The spot heating mechanism (3) includes a moving component (31), a long-side spot heating component and a short-side spot heating component. The moving part of the moving component (31) is connected to the long-side spot heating component and the short-side spot heating component. The long-side spot heating component includes a first lifting drive (32) and a first heating component (33). The first heating component (33) is driven to lift and adjust by the first lifting drive (32) and bonds the two overlapping long sides of the film material above the core material. The short-side spot heating component includes a second lifting drive (34) and two second heating components. The two second heating components are driven to lift and adjust by the second lifting drive (34) and bond the two short sides of the film material to the film material above the core material respectively.
7. The coating forming equipment according to claim 6, characterized in that: The moving part of the moving component (31) is connected to the second lifting drive (34). The lifting part of the second lifting drive (34) is provided with a material gripping base (35). The material gripping base (35) is provided with a material gripping drive (36) and two material gripping parts (37). Two second heating elements are respectively provided on two material gripping claws. The material gripping drive (36) drives the two material gripping claws to move between the standby position, the material gripping position and the hot spot position. The first lifting drive (32) is provided on the material gripping base (35).
8. The coating forming equipment according to claim 7, characterized in that: It also includes a discharge mechanism (4), and a moving component (31) drives the long side hot stamping component and the short side hot stamping component to move back and forth between the hot stamping station and the discharge station, and transfers the hot stamped product on the forming table (1) to the discharge mechanism (4).