Hot press gluing apparatus with roller discharge
By using a roller discharge method in the hot press gluing equipment, and utilizing the cooperation of the pad shaft and the telescopic component, the door panel can be rolled and transported, which solves the problem of severe wear on the door panel and the conveying platform, and improves the service life and transportation efficiency of the equipment.
Patent Information
- Application Number
- CN202410053932.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-12
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2044-01-12
AI Technical Summary
In existing hot press gluing equipment, the door panels and conveyor platforms suffer from severe wear, resulting in high maintenance costs and a decline in door panel quality.
The hot press gluing equipment with roller discharge method uses the cooperation of the pad shaft in the feeding mechanism and the telescopic component to realize the door panel is transported in a rolling manner, reducing direct contact with the platform and reducing wear.
It effectively protects the door panels and conveyor platform, reduces wear and tear, and improves the service life of the equipment and the transportation efficiency of the door panels.
Smart Images

Figure CN117681535B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to a hot-pressing gluing device with a roller discharging mode. BACKGROUND
[0002] A hot-pressing gluing machine is a special device that can hot-press composite fabrics and door panels to quickly glue the composite fabrics or multi-layer door panels. The traditional hot-pressing gluing machine mainly includes a frame, a heating system, a pressure system, a temperature control system, and a conveying system. The frame is the support structure of the entire device, the heating system and the temperature control system are used to control the temperature, the pressure system is used to apply pressure, and the conveying system is responsible for the conveying of materials. The working principle of this hot-pressing gluing machine mainly involves three processes of heating, pressing, and conveying. First, the heating system heats the frame to a preset temperature, then the temperature control system maintains the temperature stable. Next, the pressure system applies pressure on the heated frame to make the materials tightly bonded together. Finally, the conveying system sends out the bonded multi-layer door panels.
[0003] The Chinese invention patent document with the publication number "CN106113169B" discloses a full-automatic hot-pressing gluing device, which includes a machine body, pressing plates, and a driving mechanism. There is a pressing space between each pressing plate. The machine body is provided with a heat generator. The two sides of the machine body are respectively and symmetrically provided with a to-be-glued object input device and a completed gluing object output device. The to-be-glued object input device includes a frame, a conveying platform arranged on the frame, a feeding mechanism arranged on the conveying platform, and a lifting mechanism a capable of lifting the conveying platform. The completed gluing object output device includes a frame body, an output platform arranged on the frame body, a feeding mechanism arranged on the output platform, and a lifting mechanism b arranged on the frame body.
[0004] According to the content of paragraph 0007 of the specification of the document, it can be clearly known that the working mode of the completed gluing object output device is in the form of pushing. Therefore, there is a large friction between the door panel and the conveying platform during the transportation process. Not only the door panel is easily worn and damaged, but also the conveying platform is also worn and damaged, which needs to be frequently replaced. This undoubtedly increases the maintenance cost and downtime, and the quality of the door panel also suddenly decreases.
[0005] Therefore, it is necessary to improve the existing hot-pressing gluing device to solve the problem of "serious wear of the door panel and the conveying platform in the prior art". SUMMARY
[0006] The technical problem to be solved by the present application is to solve the problem of "serious wear of the door panel and the conveying platform in the prior art" by providing a hot-pressing gluing device with a roller discharging mode.
[0007] In order to achieve the above object, the application provides the following technical scheme: hot pressing and gluing equipment with roller discharging mode, comprising a rack, a hot pressing and gluing module, and a material conveying module; the hot pressing and gluing module comprises a plurality of sets of pressing plates installed on the rack, a driving mechanism for driving the pressing plates to press or separate, and a heat generator capable of adding heat energy to the inside of the pressing plate; the material conveying module comprises a conveying platform arranged at the end of the hot pressing and gluing module and a feeding mechanism distributed between the conveying platform and the hot pressing and gluing module, characterized in that: the feeding mechanism comprises a plurality of sets of parallel spacer shafts and a telescopic assembly linked with the spacer shafts, and the plurality of sets of spacer shafts are driven by the telescopic assembly to move back and forth along the material conveying direction; a material lifting mechanism is further arranged between the hot pressing and gluing module and the material conveying module.
[0008] By adopting the above technical scheme, after the door plate is completed by the hot pressing and gluing module, the material lifting mechanism in the material conveying module lifts the door plate, and then the telescopic assembly drives the spacer shaft to move towards the door plate; after the door plate is placed on the spacer shaft, the telescopic assembly drives the spacer shaft to push out of the hot pressing and gluing module; the door plate is always on the spacer shaft during the taking process, and then moves to the conveying platform, so that the wear is greatly reduced; further, the contact area of each set of spacer shafts with the door plate is linear, not large-area planar contact, and the wear is negligible. Therefore, the hot pressing and gluing equipment provided by the application not only can realize hot pressing and gluing of the door plate, but also can well protect the door plate and the hot pressing and gluing equipment, and solve the problem of serious wear of the door plate and the conveying platform in the prior art. The feeding work can be realized by using manual feeding or the feeding mode in the prior art, or by using the material conveying module provided by the application, that is, the door plate to be hot pressed and glued is conveyed into the hot pressing and gluing module.
[0009] The hot pressing and gluing equipment with roller discharging mode described above can be further provided as follows: the telescopic assembly comprises a plurality of sets of parallel connection plate groups, each set of connection plate group is linked with a set of spacer shaft; each set of connection plate group is provided with a first connection plate and a second connection plate arranged in cross, the middle part of the first connection plate is hinged with the middle part of the second connection plate, one end of the first connection plate is hinged with the end part of the adjacent second connection plate, and the other end is hinged with the end part of the other adjacent second connection plate, one end of the second connection plate is hinged with the end part of the adjacent first connection plate, and the other end is hinged with the end part of the other adjacent first connection plate; the connection plate group at the end of the telescopic assembly is linked with a telescopic driving mechanism.
[0010] With the technical scheme, the telescopic assembly is no longer simply used to drive the pad shaft to reciprocate along the door plate conveying direction, and the pad shafts in the plurality of groups can also be close to or separated from each other, and the pad shafts as a whole can also move along the door plate conveying direction, so that the overall size of the roller feeding mechanism can be reduced, and compared with the conventional front-back movement driving mode, the telescopic mechanism as a whole can be retracted in the non-working state, and the floor space is small. Further, when the pad shafts in the plurality of groups are separated from each other, the overall size of the telescopic assembly is lengthened, that is, the telescopic assembly moves towards the door plate direction until the door plate is supported; and then when the pad shafts in the plurality of groups are close to each other, the door plate moves on the telescopic assembly towards the moving direction of the pad shafts to perform feeding or discharging work. The telescopic driving mechanism is connected with the end plates in the groups through linkage, and the connection relationship of the end plates in the groups and the connection relationship between the end plates in the groups can realize the close or separation of the pad shafts in the plurality of groups.
[0011] The hot pressing and gluing equipment with the roller discharging mode can be further provided with the following technical scheme: the telescopic driving mechanism comprises a mounting plate hinged with the end of the first connecting plate, a linear bearing hinged and linked with the end of the second connecting plate, and a linear bearing sliding guide linked with the linear bearing, and the end of the linear bearing sliding guide is hinged to the mounting plate.
[0012] With the technical scheme, the end of the linear bearing sliding guide can be linked with the belt pulley group, and the belt pulley group is linked with the motor, so that the linear bearing sliding guide can work, and then the linear bearing can move along the axis of the linear sliding guide, the end of the second connecting plate follows the movement of the linear bearing, the first connecting plate is hinged to the mounting plate, so that the first connecting plate and the second connecting plate rotate around the hinge point between the two and swing respectively, and the two are like scissors, and because the pad shafts are connected with the other end of the first connecting plate or the other end of the second connecting plate, the pad shafts finally move along the door plate conveying direction, and further, the pad shafts in the plurality of groups can be close to or separated from each other.
[0013] The hot pressing and gluing equipment with the roller discharging mode can be further provided with the following technical scheme: a telescopic frame supporting plate is arranged below the connecting plate group, one end of the telescopic frame supporting plate is connected with the mounting plate, and the other end of the telescopic frame supporting plate is provided with a guide surface inclined towards the side away from the connecting plate group.
[0014] With the technical scheme, the telescopic frame supporting plate supports the telescopic assembly to avoid collapse, and the guide surface is arranged to improve the smoothness of the work of the telescopic assembly.
[0015] The hot pressing and gluing equipment with the roller discharging mode can be further provided with a hinged mechanism between the base plate shaft and the telescopic assembly, the hinged mechanism comprising a main connecting piece, a rotating shaft being arranged at the lower end of the main connecting piece and hinged to the end of the first connecting plate or the end of the second connecting plate, and a connecting plate being arranged at the upper end of the main connecting piece and having a shaft hole arranged in parallel to the direction of the base plate shaft axis, the base plate shaft being hinged to the main connecting piece through the shaft hole.
[0016] With the above technical solution, the base plate shaft can rotate around itself, and when the several groups of base plate shafts are close to each other, the door plate moves on the telescopic assembly towards the moving direction of the base plate shaft in a rolling manner, which further reduces the wear of the base plate shaft on the door plate, minimizes the wear, and speeds up the transportation of the door plate, and the door plate slides relative to the telescopic assembly. The main connecting piece can be hinged to the end of the first connecting plate (the second connecting plate) and the end of the adjacent second connecting plate (the adjacent first connecting plate), and can also be hinged to the telescopic assembly.
[0017] The hot pressing and gluing equipment with the roller discharging mode can be further provided with a hinged mechanism between the base plate shaft and the telescopic assembly, the hinged mechanism comprising a main connecting piece, a rotating shaft being arranged at the lower end of the main connecting piece and hinged to the end of the first connecting plate or the end of the second connecting plate, and a connecting plate being arranged at the upper end of the main connecting piece and having a shaft hole arranged in parallel to the direction of the base plate shaft axis, the base plate shaft being hinged to the main connecting piece through the shaft hole.
[0018] With the above technical solution, the telescopic assembly works in a rolling connection with other components of the hot pressing and gluing equipment, avoiding scratching between the connecting plate group and other components, and improving the working stability and smoothness of the telescopic assembly.
[0019] The hot pressing and gluing equipment with the roller discharging mode can be further provided with a hinged mechanism between the base plate shaft and the telescopic assembly, the hinged mechanism comprising a main connecting piece, a rotating shaft being arranged at the lower end of the main connecting piece and hinged to the end of the first connecting plate or the end of the second connecting plate, and a connecting plate being arranged at the upper end of the main connecting piece and having a shaft hole arranged in parallel to the direction of the base plate shaft axis, the base plate shaft being hinged to the main connecting piece through the shaft hole.
[0020] With the above technical solution, the telescopic assembly works in a rolling connection with other components of the hot pressing and gluing equipment, avoiding scratching between the connecting plate group and other components, and improving the working stability and smoothness of the telescopic assembly.
[0021] The hot pressing and gluing equipment with the roller discharging mode can be further provided with a hinged mechanism between the base plate shaft and the telescopic assembly, the hinged mechanism comprising a main connecting piece, a rotating shaft being arranged at the lower end of the main connecting piece and hinged to the end of the first connecting plate or the end of the second connecting plate, and a connecting plate being arranged at the upper end of the main connecting piece and having a shaft hole arranged in parallel to the direction of the base plate shaft axis, the base plate shaft being hinged to the main connecting piece through the shaft hole.
[0022] According to the technical scheme, the material lifting part can lift the end of the door plate under the cooperation of the first cylinder and the second cylinder, so that the telescopic assembly can control the pad shaft to enter the lower part of the door plate, and the door plate can be taken out.
[0023] The hot pressing and gluing equipment with the roller discharging mode can be further provided with a material lifting part including a material lifting plate, the end of the material lifting plate being linked with the output end of the first cylinder, and the two sides of the material lifting plate being respectively bent to form support plates.
[0024] According to the technical scheme, the structural strength of the material lifting plate is enhanced, and the material lifting plate is not easy to deform.
[0025] The hot pressing and gluing equipment with the roller discharging mode can be further provided with a conveying platform including a conveying belt and a chain wheel transmission mechanism linked with the conveying belt.
[0026] According to the technical scheme, the door plate can be automatically transported.
[0027] The present application will be further described in detail below in combination with the drawings and examples. BRIEF DESCRIPTION OF DRAWINGS
[0028] Fig. 1 The figure is a schematic diagram of the overall structure of the embodiment of the present application.
[0029] Fig. 2 The figure is a schematic diagram of the hot pressing and gluing module of the embodiment of the present application.
[0030] Fig. 3 The figure is a schematic diagram of the material lifting mechanism of the embodiment of the present application.
[0031] Fig. 4 The figure is a schematic diagram of the material conveying module of the embodiment of the present application.
[0032] Fig. 5 The figure is a schematic diagram of the material feeding mechanism of the embodiment of the present application.
[0033] Fig. 6 The figure is a top view of the material feeding mechanism of the embodiment of the present application.
[0034] Fig. 7 The figure is a schematic diagram of the hinged mechanism of the embodiment of the present application.
[0035] Labeling Notes: Hot Press Bonding Module 1, Pressing Plate 11, Drive Mechanism 12, Heat Generator 13; Material Lifting Mechanism 2, First Cylinder 21, Lifting Component 22, Lifting Plate 221, Support Plate 222, Second Cylinder 23; Material Transport Module 3, Conveyor Belt 31, Feeding Mechanism 32, Pad Shaft 321, Telescopic Assembly 322, First Connecting Plate 3221, Second Connecting Plate 3222, Mounting Plate 323, Linear Bearing 324, Linear Bearing Sliding Guide Rail 325, Guide Rod 326, Telescopic Frame Support Plate 327, Guide Surface 3271, Hinge Mechanism 328, Main Connector 3281, Rotating Shaft 3282, Adapter Plate 3283, Shaft Hole 3284, Sub-Connector 3285, Roller 3286. Implementation
[0036] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0037] like Figs. 1 to 7 The hot press bonding equipment with roller discharge shown includes a frame, a hot press bonding module 1, a material lifting mechanism 2, and a material transport module 3.
[0038] The hot-press bonding module 1 includes multiple sets of pressing plates 11 mounted on a frame, a drive mechanism 12 for pressing or separating the pressing plates 11, and a heat generator 13 capable of adding heat energy to the interior of the pressing plates 11. The specific structures of the drive mechanism 12, the pressing plates 11, and the heat generator 13 have been fully disclosed in the prior art and can be learned by those skilled in the art without creative effort; therefore, they will not be described in detail in this embodiment.
[0039] The lifting mechanism 2 includes a first cylinder 21 and a lifting component 22 linked to the output end of the first cylinder 21. One end of the first cylinder 21 is hinged to the frame, and the other end is hinged to a second cylinder 23. The output end of the second cylinder 23 is hinged to the first cylinder 21, and the other end is hinged to the frame. With the cooperation of the first cylinder 21 and the second cylinder 23, the lifting component 22 can lift the end of the door panel, so that the telescopic assembly 322 can control the pad shaft 321 to enter under the door panel, thereby removing the door panel.
[0040] The lifting component 22 includes a lifting plate 221, the end of which is linked to the output end of the first cylinder 21. Support plates 222 are formed by bending the lifting plate 221 on both sides. This strengthens the structural strength of the lifting plate 221 and prevents deformation.
[0041] The material conveying module 3 comprises a conveying platform arranged at the end of the hot pressing and gluing module 1, and a feeding mechanism 32 arranged between the conveying platform and the hot pressing and gluing module 1.
[0042] The feeding mechanism 32 comprises five groups of parallel spacer shafts 321 and two groups of telescopic assemblies 322 connected with the spacer shafts 321, and the five groups of spacer shafts 321 are driven to move reciprocally along the material conveying direction by the two groups of telescopic assemblies 322.
[0043] The telescopic assembly 322 comprises five groups of parallel connecting plates, each group of connecting plates being connected with a group of spacer shafts 321; each group of connecting plates is provided with first connecting plates 3221 and second connecting plates 3222 arranged in cross, the middle part of the first connecting plate 3221 is hinged to the middle part of the second connecting plate 3222, one end of the first connecting plate 3221 is hinged to the end of the adjacent second connecting plate 3222, and the other end is hinged to the end of the other adjacent second connecting plate 3222, one end of the second connecting plate 3222 is hinged to the end of the adjacent first connecting plate 3221, and the other end is hinged to the end of the other adjacent first connecting plate 3221; the connecting plate group at the end of the telescopic assembly 322 is connected with a telescopic driving mechanism. The telescopic assembly 322 is no longer simply driven to move reciprocally along the door plate conveying direction, and the groups of spacer shafts 321 can also move closer to or away from each other, while the spacer shafts 321 as a whole can move along the door plate conveying direction, so that the overall size of the roller feeding mechanism 32 can be reduced, and compared with the conventional front and rear movement driving mode, the telescopic mechanism as a whole can be tightened in the non-working state, and the floor area is small. Further, when the groups of spacer shafts 321 move away from each other, the overall size of the telescopic assembly 322 is lengthened, i.e. moves towards the door plate direction until the door plate is supported; and then when the groups of spacer shafts 321 move closer to each other, the door plate moves on the telescopic assembly 322 towards the moving direction of the spacer shafts 321 to perform feeding or discharging work. The telescopic driving mechanism is connected with the connecting plate group at the end through the connection relationship of the connecting plate group itself and the connection relationship between the connecting plate groups, so as to realize the mutual approach or separation of the groups of spacer shafts 321.
[0044] The telescopic driving mechanism comprises a mounting plate 323 hingedly connected to the end of the first connecting plate 3221, a linear bearing 324 hingedly connected to the end of the second connecting plate 3222, a linear bearing sliding guide 325 hingedly connected to the end of the linear bearing 324, and a belt pulley set hingedly connected to the end of the linear bearing sliding guide 325. The belt pulley set is hingedly connected to the motor, so that the linear bearing sliding guide 325 works, the linear bearing 324 moves along the axis of the linear bearing sliding guide, the end of the second connecting plate 3222 moves along with the linear bearing, the first connecting plate 3221 rotates around the hinge between the first connecting plate 3221 and the second connecting plate 3222, and the first connecting plate 3221 and the second connecting plate 3222 swing respectively, like scissors opening and closing. Since the spacer shaft 321 is connected to the other end of the first connecting plate 3221 or the other end of the second connecting plate 3222, the spacer shaft 321 moves along the conveying direction of the door plate. Further, the spacer shafts 321 in the groups can move closer to or away from each other.
[0045] The feeding mechanism 32 comprises two groups of guide rods 326, which are arranged parallel to the linear bearing sliding guide 325. The guide rods 326 are provided with two groups of telescopic assemblies 322 arranged parallel to each other. One group of telescopic assemblies 322 is fixedly installed on one end of the guide rod 326, and the other group of telescopic assemblies 322 is fixedly installed on the other end of the guide rod 326. The guide rod 326 is also provided with two groups of sliding blocks. One group of sliding blocks is hingedly connected to the linear bearing 324 in one group of telescopic assemblies 322, and the other group of sliding blocks is hingedly connected to the linear bearing 324 in the other group of telescopic assemblies 322. The guide rods 326 and the mounting plates 323 are added to facilitate the installation of the two groups of telescopic assemblies 322, improve the overall structural stability of the drum feeding mechanism 32, make the work more reliable, and prolong the service life.
[0046] The connecting plate group is provided below with a telescopic frame supporting plate 327, one end of which is connected to the mounting plate 323, and the other end of which is provided with a guide surface 3271 inclined away from the side of the connecting plate group. The telescopic frame supporting plate 327 supports the telescopic assembly 322 to prevent it from collapsing, and the guide surface 3271 improves the smoothness of the work of the telescopic assembly 322.
[0047] The hinge mechanism 328 is arranged between the base plate shaft 321 and the telescopic assembly 322, and comprises a main connecting piece 3281, the lower end of the main connecting piece 3281 is provided with a rotating shaft 3282 hingedly connected with the end of the first connecting plate 3221 or the end of the second connecting plate 3222, and the upper end of the main connecting piece 3281 is provided with a connecting plate 3283, the connecting plate 3283 is provided with a shaft hole 3284 arranged in parallel to the axis direction of the base plate shaft 321, and the base plate shaft 321 is hingedly connected with the main connecting piece 3281 through the shaft hole 3284. The base plate shaft 321 can rotate around itself, when the five base plate shafts 321 move close to each other, the door plate moves on the telescopic assembly 322 towards the moving direction of the base plate shaft 321, and the base plate shaft 321 rolls relative to the door plate, which further reduces the abrasion of the base plate shaft 321 on the door plate, reduces the abrasion to the minimum, and accelerates the transportation of the door plate, and the door plate slides relative to the telescopic assembly 322. The main connecting piece 3281 can realize the hinging of the end of the first connecting plate 3221 (the end of the second connecting plate 3222) and the end of the adjacent second connecting plate 3222 (the end of the adjacent first connecting plate 3221), and can also realize the hinging linkage of the base plate shaft 321 and the telescopic assembly 322.
[0048] The hinge mechanism 328 further comprises a sub-connecting piece 3285, one end of the sub-connecting piece 3285 is connected with the main connecting piece 3281 through the first shaft hole 3284, and the other end is hingedly connected with a roller 3286. When the telescopic assembly 322 works, the roller 3286 is in rolling connection with other parts of the hot pressing and gluing equipment, so as to avoid scratching between the connecting plate group and other parts, and improve the working stability and smoothness of the telescopic assembly 322.
[0049] The working principle of the embodiment is as follows: after the door plate completes the hot pressing and gluing work in the hot pressing and gluing module 1, the lifting mechanism 2 lifts the end of the door plate, the telescopic assembly 322 drives the base plate shaft 321 to move forward until it is located below the door plate, the lifting mechanism 2 pushes out the door plate, the door plate is placed on the base plate shaft 321, and then the base plate shaft 321 moves towards the conveying platform under the drive of the telescopic assembly 322, until the door plate is transported to the conveying platform, and then the conveying belt 31 on the conveying platform moves the door plate to the next process. It should be noted that the base plate shaft 321 rolls relative to the door plate during the movement of the base plate shaft 321 driving the door plate.
[0050] The hot pressing and gluing equipment provided by the embodiment not only can realize the hot pressing and gluing of the door plate, but also can well protect the door plate and the hot pressing and gluing equipment, and solve the problem of serious abrasion of the door plate and the conveying platform in the prior art.
Claims
1. A hot press bonding equipment with roller discharge, comprising a frame, a hot press bonding module, and a material conveying module; the hot press bonding module includes several sets of pressing plates mounted on the frame, a drive mechanism for pressing or separating the pressing plates, and a heat generator capable of adding heat energy to the inside of the pressing plates; the material conveying module includes a conveying platform disposed at the end of the hot press bonding module and a feeding mechanism distributed between the conveying platform and the hot press bonding module, characterized in that: The feeding mechanism comprises a plurality of groups of parallel spacer shafts, and a telescopic assembly connected with the spacer shafts; the plurality of groups of spacer shafts are driven by the telescopic assembly to move reciprocally along the material conveying direction; a material lifting mechanism is further arranged between the hot-pressing glue module and the material conveying module; the telescopic assembly comprises a plurality of groups of parallel connection plate groups, each group of connection plate groups being connected with a group of spacer shafts; each group of connection plate groups is provided with first connection plates and second connection plates arranged in a cross manner; the middle part of the first connection plate is hingedly connected with the middle part of the second connection plate; one end of the first connection plate is hingedly connected with the end part of the adjacent second connection plate, and the other end thereof is hingedly connected with the end part of the other adjacent second connection plate; one end of the second connection plate is hingedly connected with the end part of the adjacent first connection plate, and the other end thereof is hingedly connected with the end part of the other adjacent first connection plate; the connection plate groups located at the end part of the telescopic assembly are connected with a telescopic driving mechanism; the telescopic driving mechanism comprises a mounting plate hingedly connected with the end part of the first connection plate, and a linear bearing connected with the end part of the second connection plate; the linear bearing is connected with a linear bearing sliding guide; and the end part of the linear bearing sliding guide is hingedly connected with the mounting plate.
2. The hot press lamination apparatus with a drum outfeed according to claim 1, characterized in that: A telescopic frame supporting plate is arranged below the connection plate group; one end of the telescopic frame supporting plate is connected with the mounting plate; and the other end of the telescopic frame supporting plate is provided with a guide surface arranged in a slope manner away from the connection plate group.
3. The hot press gluing apparatus with a belt drum outfeed according to claim 1 or 2, characterized in that: A hinge mechanism is arranged between the spacer shaft and the telescopic assembly; the hinge mechanism comprises a main connecting piece; the lower end of the main connecting piece is provided with a rotating shaft hingedly connected with the end part of the first connection plate or the second connection plate; the upper end of the main connecting piece is provided with a connecting plate; the connecting plate is provided with a shaft hole arranged in a direction parallel to the axis of the spacer shaft; and the spacer shaft is hingedly connected with the main connecting piece through the shaft hole.
4. The hot press lamination apparatus with a drum outfeed according to claim 3, characterized in that: The hinge mechanism further comprises a sub-connecting piece; one end of the sub-connecting piece is connected with the main connecting piece through a first shaft hole; and the other end of the sub-connecting piece is hingedly connected with a roller.
5. The hot press lamination apparatus with a drum outfeed according to claim 2, characterized in that: The feeding mechanism further comprises at least one group of guide rods; the guide rods are arranged in parallel to the linear bearing sliding guide; the guide rods are provided with two groups of parallel telescopic assemblies; the mounting plates in one group of telescopic assemblies are fixedly arranged at one end of the guide rod; the mounting plates in the other group of telescopic assemblies are fixedly arranged at the other end of the guide rod; the guide rods are further provided with two groups of sliders; one group of sliders is connected with the linear bearing in one group of telescopic assemblies; and the other group of sliders is connected with the linear bearing in the other group of telescopic assemblies.
6. The hot press gluing apparatus with a belt roller discharge method according to claim 1 or 2, characterized in that: The material lifting mechanism comprises a first air cylinder and a lifting piece connected with the output end of the first air cylinder; one end of the first air cylinder is hingedly connected with the frame; the other end of the first air cylinder is hingedly connected with a second air cylinder; the output end of the second air cylinder is hingedly connected with the first air cylinder; and the other end of the second air cylinder is hingedly connected with the frame.
7. The hot press lamination apparatus with a drum outfeed according to claim 6, characterized in that: The lifting piece comprises a lifting plate; the end part of the lifting plate is connected with the output end of the first air cylinder; and the two sides of the lifting plate are respectively bent to form supporting plates.
8. The hot press gluing apparatus with a belt cylinder discharge according to claim 1 or 2, characterized in that: The conveying platform comprises a conveying belt and a chain wheel transmission mechanism connected with the conveying belt.
Citation Information
Patent Citations
Full-automatic hot pressing and gluing equipment
CN106113169B
Intelligent hot-press gluing machine with edge pressing mechanism
CN218505432U