Laminated frame backflow device
By designing a laminated frame recirculation device, parallel vertical transportation and assembly of the double-glass frame and the module were achieved, solving the problem of low space utilization in the production of double-glass modules and reducing production costs.
Patent Information
- Application Number
- CN202520323971.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-02-27
AI Technical Summary
In existing double-glass module production lines, the double-glass frame transport line and the module transport line occupy too much factory resources, resulting in low space utilization and high production costs.
Design a laminated frame return device, including a component conveying section, a frame conveying section and a clamping section. Utilize an avoidance mechanism to adjust the spacing of the conveying mechanisms, enabling the double-glass frame and the component to be transported and assembled in parallel, saving factory resources.
By transporting and assembling the equipment in parallel, space utilization is improved and production costs are reduced.
Smart Images

Figure CN223704426U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to photovoltaic laminating technical field especially relates to a laminating frame reflow device. BACKGROUND
[0002] When laminating machine produces double glass assembly and other multilayer photovoltaic products, double glass frame needs to be used to limit multilayer glass, so as to reduce the probability of misplacement of upper and lower two layers of glass in the laminating process, and simultaneously reduce the probability of causing sealing effect unqualified due to too much sealing glue flowing from all around.
[0003] In the existing double glass assembly production flow line, the double glass frame transportation flow line is located at the side of the double glass assembly transportation flow line, and the double glass frame needs to be carried to the upper side of the double glass assembly by a carrying device, and then the double glass frame is controlled to move downward to be sleeved on the periphery of the double glass assembly.
[0004] However, the double glass frame transportation line and the double glass assembly transportation line occupy too much factory resources, the space utilization rate is low, and the production cost is high.
[0005] Therefore, the above problems need to be solved. UTILITY MODEL CONTENTS
[0006] The utility model aims at providing a laminating frame reflow device to improve the space utilization rate and save the production cost.
[0007] To achieve this purpose, the utility model adopts the following technical scheme:
[0008] A laminating frame reflow device comprises:
[0009] A component conveying part is used to convey the double glass assembly to an assembly position.
[0010] A frame conveying part is arranged above the component conveying part and is used to convey the double glass frame.
[0011] A clamping part is arranged at the assembly position and is used to clamp the double glass frame conveyed by the frame conveying part and assemble the double glass frame to the double glass frame.
[0012] The frame conveying part comprises two spaced conveying mechanisms and an avoidance mechanism for adjusting the distance between the two conveying mechanisms to avoid the moving path of the double glass frame.
[0013] Preferably, the two conveying mechanisms are arranged in parallel along a first direction and abut and convey the double glass frame from both sides, and the two conveying mechanisms are used to convey the double glass frame to a position vertically aligned with the double glass assembly conveyed by the component conveying part.
[0014] As preferred, the frame conveying part further comprises a rack, the rack is arranged above the component conveying part; any of the conveying mechanisms is slidingly arranged on the rack along a first direction;
[0015] Any of the avoiding mechanisms comprises a plurality of avoiding cylinders arranged at intervals, any of the avoiding cylinders is arranged on the rack, and the piston rod end of the avoiding cylinder is connected with the conveying mechanism, wherein the piston rod of the avoiding cylinder is arranged along the first direction.
[0016] As preferred, the conveying mechanism comprises:
[0017] A conveying frame is slidingly arranged on the rack along the first direction;
[0018] A conveying wheel is rotationally arranged on the conveying frame, and a plurality of conveying wheels are uniformly arranged along a second direction, wherein the first direction and the second direction are arranged perpendicularly;
[0019] A conveying belt is tightly wound on the conveying wheel, and is used for carrying the double-glass frame;
[0020] A conveying motor is arranged on the conveying frame, and the conveying motor is at least drivingly connected with one of the conveying wheels.
[0021] As preferred, the frame conveying part further comprises two limiting mechanisms, the two limiting mechanisms are respectively arranged on the two conveying mechanisms, and the two limiting mechanisms are used for limiting the double-glass frame along the first direction.
[0022] As preferred, any of the limiting mechanisms comprises:
[0023] A limiting drive is arranged on the conveying mechanism;
[0024] A first limiting plate is arranged on the driving end of the limiting drive, and the limiting drive is used for driving the first limiting plate to abut against the side wall of the double-glass frame;
[0025] A second limiting plate is arranged perpendicularly on the side of the first limiting plate away from the limiting drive, and is above the conveying end of the conveying mechanism, the second limiting plate is used for limiting the maximum movement height of the double-glass frame.
[0026] As preferred, the clamping part comprises a plurality of clamping mechanisms, the plurality of clamping mechanisms are respectively arranged on both sides of the double-glass frame along the second direction, so as to clamp the double-glass frame.
[0027] As preferred, any of the clamping mechanisms comprises a driving member and a plurality of clamping members, the plurality of clamping members are arranged on the driving end of the driving member, the driving member is used for controlling the clamping members to move along the height direction, the first direction and the second direction, and the clamping members are used for clamping the double-glass frame.
[0028] As preferred, the clamping mechanism further comprises a plurality of positioning members, the plurality of positioning members are arranged on the driving end of the driving member, and the driving member is used for controlling the positioning members to abut against the double-glass frame.
[0029] As preferred, the conveying direction of the assembly conveying part is parallel or vertical to the conveying direction of the frame conveying part.
[0030] The beneficial effects of the present application are as follows:
[0031] The laminated frame backflow device of the present application adjusts the distance between the two conveying mechanisms by the avoiding mechanism, so as to avoid the moving path of the double-glass frame, so that the double-glass frame and the double-glass assembly can be transported and assembled vertically; the assembly conveying part and the frame conveying part arranged vertically can save the factory resources, thereby improving the space utilization and reducing the production cost. BRIEF DESCRIPTION OF DRAWINGS
[0032] Figure 1 is a structural schematic view of the laminated frame backflow device in the embodiment of the present application;
[0033] Figure 2 is a structural schematic view of the clamping part in the embodiment of the present application;
[0034] Figure 3 is a structural schematic view of the clamping member in the embodiment of the present application;
[0035] Figure 4 is a structural schematic view of the frame conveying part in the embodiment of the present application;
[0036] Figure 5 is Figure 1 is a local enlarged view of A in the figure;
[0037] Figure 6 is Figure 4 is a local enlarged view of B in the figure.
[0038] In the figure:
[0039] 100, double-glass frame;
[0040] 1, assembly conveying part;
[0041] 2, frame conveying part; 21, conveying mechanism; 211, conveying frame; 212, conveying wheel; 213, conveying belt; 214, conveying motor; 22, rack; 23, avoiding mechanism; 24, limiting mechanism; 241, limiting drive; 242, first limiting plate; 243, second limiting plate;
[0042] 3, clamping part; 31, clamping mechanism; 311, driving piece; 3111, vertical movement module; 31111, vertical sliding rail; 31112, vertical sliding seat; 31113, mounting frame; 311131, mounting guide rail; 311132, mounting sliding block; 311133, first clamping plate; 311134, second clamping plate; 3112, clamping sliding module; 31121, clamping frame; 311211, horizontal rod; 311212, vertical rod; 31122, clamping cylinder; 312, clamping piece; 3121, clamping block; 3122, finger clamping cylinder; 3123, clamping piece; 313, positioning piece. DETAILED DESCRIPTION
[0043] The utility model will be described in further detail below in combination with the drawings and examples. It can be understood that the specific examples described here are only used to explain the utility model, and not to limit the utility model. In addition, it should be noted that only the parts related to the utility model are shown in the drawings for the convenience of description, not all the structures.
[0044] In the description of the utility model, unless otherwise explicitly specified and limited, the terms "connected", "connected", "fixed" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements or the interaction relationship between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0045] In the utility model, unless otherwise explicitly specified and limited, the first feature "on" or "below" the second feature can include that the first and second features are in direct contact, or the first and second features are not in direct contact but are in contact through another feature between them. Moreover, the first feature "on", "above" and "above" the second feature includes that the first feature is directly above and obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" the second feature includes that the first feature is directly below and obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.
[0046] In the description of the present embodiment, the terms "upper", "lower", "left", "right" and the like orientation or position relationship are based on the orientation or position relationship shown in the drawings, and are only for the convenience of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present utility model. In addition, the terms "first" and "second" are only used to distinguish in the description and have no special meaning.
[0047] Referring to Figures 1 to 6 The present embodiment proposes a laminated frame reflow device for assembling a double-glass frame 100 to a double-glass assembly, thereby reducing the probability of misalignment of the upper and lower layers of glass during the laminating process, and reducing the probability of excessive leakage of sealant from all around, resulting in unqualified sealing effect. The laminated frame reflow device also utilizes the idle space above the assembly conveying part 1 or below the frame conveying part 2 to reduce the factory resources occupied by the entire laminated frame reflow device, thereby improving space utilization and reducing production costs.
[0048] Specifically, the laminated frame reflow device includes an assembly conveying part 1, a frame conveying part 2, and a clamping part 3. The assembly conveying part 1 is used to convey a double-glass assembly to an assembly position and can convey a double-glass assembly assembled with a double-glass frame 100 to a laminating machine. The frame conveying part 2 is arranged above the assembly conveying part 1 and is used to convey a double-glass frame 100. The clamping part 3 is arranged at the assembly position and is used to clamp the double-glass frame 100 conveyed by the frame conveying part 2 and assemble the double-glass frame 100 to the double-glass assembly conveyed by the assembly conveying part 1. The frame conveying part 2 includes two spaced conveying mechanisms 21 and an avoidance mechanism 23 that adjusts the distance between the two conveying mechanisms 21 to avoid the movement path of the double-glass frame 100.
[0049] It can be understood that the avoidance mechanism 23 is used to adjust the distance between the two conveying mechanisms 21 to avoid the movement path of the double-glass frame 100, so that the double-glass frame 100 and the double-glass assembly can be transported and assembled in parallel. The assembly conveying part 1 and the frame conveying part 2 arranged in an upper and lower manner can save the space utilization of the entire laminated frame reflow device, thereby saving factory resources, improving space utilization, and further reducing production costs.
[0050] Specifically, the two conveying mechanisms 21 are arranged in parallel along the first direction and abut and convey the double glass frame 100 from both sides respectively, and the two conveying mechanisms 21 are used to convey the double glass frame 100 to a position vertically aligned with the double glass assembly conveyed by the assembly conveying part 1. It can be understood that the assembly conveying part 1 conveys the double glass assembly to the assembly position, and the frame conveying part 2 can also convey the double glass frame 100 to the assembly position and be vertically opposite to the double glass assembly, and then the clamping part 3 can clamp the double glass frame 100, increase the distance between the two conveying mechanisms 21, so as to make the double glass frame 100 separate from the frame conveying part 2, and under the action of the clamping part 3, the double glass frame 100 can be directly controlled to move downward to complete the assembly of the double glass frame 100.
[0051] In actual application, the frame conveying part 2 is electrically connected with an existing visual positioning system, so as to adjust the position of the double glass frame 100, thereby ensuring that the double glass frame 100 is opposite to the double glass assembly, and further ensuring the assembly precision of the double glass frame 100.
[0052] In the embodiment, the frame conveying part 2 further comprises a rack 22, which is arranged above the assembly conveying part 1; any conveying mechanism 21 is slidingly arranged in the rack 22 along the first direction; and two avoiding mechanisms 23 are arranged in the rack 22 and correspondingly arranged with the two conveying mechanisms 21, and the avoiding mechanism 23 is used to drive the corresponding conveying mechanism 21 to move along the first direction.
[0053] In actual application, after the two conveying mechanisms 21 convey the double glass frame 100 to the assembly position, the clamping part 3 can clamp the double glass frame 100, and then under the action of the two avoiding mechanisms 23, the two conveying mechanisms 21 are controlled to move away from each other to make room for the subsequent assembly of the double glass frame 100, and after the double glass frame 100 is assembled, the two conveying mechanisms 21 can be controlled to move close to each other under the action of the two avoiding mechanisms 23, so as to convey the next double glass frame 100.
[0054] Any avoiding mechanism 23 comprises a plurality of avoiding cylinders arranged at intervals, any avoiding cylinder is arranged in the rack 22, and the piston rod end of the avoiding cylinder is connected with the conveying mechanism 21, wherein the piston rod of the avoiding cylinder is arranged along the first direction. It can be understood that the avoiding cylinder can push the corresponding conveying mechanism 21 to move along the first direction, and the plurality of avoiding cylinders are distributed on one side of the corresponding conveying mechanism 21, thereby ensuring the stability of the conveying mechanism during transportation.
[0055] In particular, the conveying direction of the component conveying part 1 is parallel or perpendicular to the conveying direction of the frame conveying part 2, that is, the conveying direction of the component conveying part 1 is consistent with the first direction or the second direction. It can be understood that the arrangement direction of the component conveying part 1 can be arranged according to actual needs to further improve the applicability of the laminated frame reflow device. The component conveying part 1 is preferably a conveying belt 213 structure in the existing conveying structure, which will not be described here.
[0056] In actual application, before assembling the double-glass frame 100, the double-glass frame 100 is first transported to the assembly position along the second direction by the frame conveying mechanism 21, and the double-glass assembly is transported to the assembly position along the second direction by the clamping part 3, and then the assembly of the double-glass frame 100 can be completed under the action of the avoiding mechanism 23 and the clamping part 3. After assembly, the component conveying part 1 can transport the double-glass assembly assembled with the double-glass frame 100 in a direction parallel to the conveying direction of the frame conveying part 2 or in a direction perpendicular thereto, thereby further improving the applicability of the laminated frame reflow device.
[0057] In the embodiment, the conveying mechanism 21 includes a conveying frame 211, conveying wheels 212, a conveying belt 213, and a conveying motor 214. The conveying frame 211 is slidingly arranged along the first direction. The conveying wheels 212 are rotationally arranged on the conveying frame 211 and are uniformly distributed along the second direction. The conveying belt 213 is tightly wound around the conveying wheels 212 and is used to carry the double-glass frame 100. The conveying motor 214 is arranged on the conveying frame 211, and the conveying motor 214 is at least drivingly connected to one of the conveying wheels 212.
[0058] In actual application, the conveying frame 211 is connected with a plurality of avoiding cylinders, and the conveying frame 211 is connected with the rack 22 through a guide rail and a sliding block structure. Under the action of the avoiding cylinders, the conveying frame 211 can slide along the first direction on the rack 22. When transporting the double-glass frame 100, the avoiding cylinders control the distance between the two conveying frames 211 to be adapted to the double-glass frame 100, so that the double-glass frame 100 can be overlapped on the two conveying belts 213. At this time, the carrying section of the conveying belt 213 as the conveying end of the conveying mechanism 21 can convey the double-glass frame 100 to the assembly position.
[0059] Further, the frame conveying part 2 further includes two limiting mechanisms 24, and the two limiting mechanisms 24 are arranged on the two conveying mechanisms 21, respectively, and are used to limit the double-glass frame 100 along the first direction. It can be understood that after the double-glass frame 100 is transported to the assembly position, the position of the double-glass frame 100 may be deviated. The two limiting mechanisms 24 can align the double-glass frame 100 from both sides of the double-glass frame 100. In this process, the visual positioning system can be used for positioning to ensure the alignment accuracy between the double-glass frame 100 and the double-glass assembly.
[0060] Specifically, any one limiting mechanism 24 comprises a limiting drive 241, a first limiting plate 242 and a second limiting plate 243, the limiting drive 241 is arranged on the conveying mechanism 21; the first limiting plate 242 is arranged on the driving end of the limiting drive 241, and the limiting drive 241 is used for driving the first limiting plate 242 to abut against the side wall of the double-glass border 100; the second limiting plate 243 is arranged vertically on the side of the first limiting plate 242 away from the limiting drive 241, and is above the conveying end of the conveying mechanism 21, and the second limiting plate 243 is used for limiting the maximum movement height of the double-glass border 100. It can be understood that the first limiting plate 242 can be driven to move close to the double-glass border 100 under the action of the limiting drive 241, and the double-glass border 100 can be limited in the first direction under the action of the first limiting plates 242 on both sides. In the process of the first limiting plate 242 moving close to the double-glass border 100, the second limiting plate 243 will move synchronously above the double-glass border 100, and since the second limiting plate 243 is used for limiting the maximum movement height of the double-glass border 100, the first limiting plate 242 can limit the double-glass border 100 while the second limiting plate 243 and the bearing section can limit the double-glass border 100 in the height direction. In this way, the alignment accuracy between the double-glass border 100 and the double-glass assembly can be further ensured.
[0061] In addition, one limiting drive 241, one first limiting plate 242 and one second limiting plate 243 form a limiting assembly, and according to actual production needs, multiple limiting assemblies are uniformly distributed along the first direction to ensure the stability during limiting. In the embodiment, two limiting assemblies are preferred.
[0062] In the embodiment, the clamping part 3 comprises multiple clamping mechanisms 31, and the multiple clamping mechanisms 31 are respectively arranged on both sides of the double-glass border 100 along the second direction to clamp different positions of the double-glass border 100. In actual application, the clamping mechanisms 31 are arranged on the rack 22, and after the double-glass border 100 is moved to the assembly position, the multiple clamping mechanisms 31 can clamp the double-glass border 100, and then the double-glass border 100 is separated from the conveying mechanism 21, and the multiple clamping mechanisms 31 can move the double-glass border 100 downward to complete the assembly of the double-glass border 100. In this way, the stability of the double-glass border 100 can be further improved.
[0063] Specifically, any one of the clamping mechanisms 31 comprises a driving member 311 and a plurality of clamping members 312 arranged on the driving end of the driving member 311, the driving member 311 is configured to control the clamping members 312 to move along the height direction, the first direction and the second direction, and the clamping members 312 are configured to clamp the double-glass border frame 100. It can be understood that after the double-glass border frame 100 is conveyed to the assembly position, the driving member 311 can drive the clamping members 312 to approach the double-glass border frame 100 and clamp the double-glass border frame 100, and then the two conveying mechanisms 21 are away from each other, the driving member 311 can drive the clamping members 312 to approach the double-glass assembly to complete the assembly of the double-glass border frame 100.
[0064] Specifically, the driving member 311 comprises a vertical movement module 3111 and a clamping sliding module 3112, the clamping sliding module 3112 is arranged on the moving end of the vertical movement module 3111, and the vertical movement module 3111 is configured to adjust the height of the clamping sliding module 3112 along the vertical direction, the clamping members 312 are arranged on the moving end of the clamping sliding module 3112, and the clamping sliding module 3112 is configured to drive the clamping members 312 to move along the second direction, so as to control the clamping members 312 to approach and move away from the double-glass border frame 100.
[0065] The vertical movement module 3111 comprises a vertical sliding rail 31111 arranged along the vertical direction, and a vertical sliding seat 31112 is slidably connected to the vertical sliding rail 31111, the clamping sliding module 3112 comprises a clamping frame 31121, the clamping frame 31121 is provided with a clamping cylinder 31122, the piston rod of the clamping cylinder 31122 is arranged along the second direction, and the clamping members 312 are arranged on the end of the piston rod.
[0066] Further, the vertical moving module 3111 further comprises a mounting frame 31113, the mounting frame 31113 is provided with at least two mounting rails 311131 arranged along the second direction, the mounting rails 311131 are slidably connected with mounting sliding blocks 311132, and one or more of the mounting sliding blocks 311132 are provided with a first clamping plate 311133 and a second clamping plate 311134. The clamping frame 31121 comprises a horizontal rod 311211 arranged along the first direction and at least two vertical rods 311212 arranged along the vertical direction, one end of all the vertical rods 311212 is connected with the horizontal rod 311211, and the other end is connected with a clamping piece 312, the horizontal rod 311211 is overlapped on all the mounting sliding blocks 311132 and is clamped by the first clamping plate 311133 and the second clamping plate 311134, so as to ensure that the clamping frame 31121 does not deviate during clamping of the double-glass frame 100, thereby improving the stability of the clamping part 3 during clamping. And the arrangement of a plurality of vertical rods 311212 can increase the clamping position between the clamping part 3 and the double-glass frame 100 during clamping, thereby further improving the stability of the clamping part 3 during clamping, and further improving the accuracy of the double-glass frame 100 during assembly.
[0067] In the embodiment, the clamping piece 312 comprises a clamping block 3121 arranged at the end of the clamping cylinder 31122 and connected with the vertical rod 311212 through a guide rail sliding block assembly, the clamping block 3121 is provided with a finger clamping cylinder 3122, and the two clamping ends of the finger clamping cylinder 3122 are provided with clamping pieces 3123, which can clamp the double-glass frame 100 under the action of the finger clamping cylinder 3122.
[0068] Further, the clamping mechanism 31 further comprises a plurality of positioning pieces 313 arranged at the driving end of the driving piece 311, and the driving piece 311 is used for controlling the positioning piece 313 to abut against the double-glass frame 100. It can be understood that the driving piece 311 on both sides can control the corresponding positioning piece 313 to approach the double-glass frame 100, so as to position the double-glass frame 100 along the second direction, so as to further ensure the positioning accuracy of the double-glass frame 100.
[0069] For example, the positioning piece 313 comprises a plurality of positioning abutting plates arranged on the clamping block 3121 and extending to the middle part of the clamping piece 3123 along the second direction, so that the double-glass frame 100 does not interfere with the finger clamping cylinder 3122, and the positioning of the double-glass frame 100 along the second direction is completed under the action of the positioning abutting plates on both sides, so as to further ensure the alignment accuracy between the double-glass frame 100 and the double-glass assembly.
[0070] In addition, the positioning stop plate is provided with a turned edge near one end of the double-glass frame 100, so that the contact area between the positioning stop plate and the double-glass frame 100 can be further increased, so as to ensure the positioning effect.
[0071] Obviously, the above embodiments of the present application are merely examples for clearly illustrating the present application, and are not intended to limit the embodiments of the present application. For those skilled in the art, various obvious changes, re-adjustments and substitutions can be made without departing from the protection scope of the present application. Here, it is not necessary and impossible to enumerate all the embodiments. Any modification, equivalent substitution and improvement within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A reflow apparatus for laminating a border, characterized by, The utility model relates to a double -glass frame assembly device, including: The component conveying part (1) is used for conveying double -glass component to the assembly position; The frame conveying part (2) is set up in the upper of the component conveying part (1), is used for conveying double -glass frame (100); The clamping part (3) is set up in the assembly position, is used for clamping the double -glass frame (100) conveyed by the frame conveying part (2), and the double -glass frame (100) is assembled to the double -glass frame (100); Wherein, the frame conveying part (2) includes two interval arrangement conveying mechanism (21), and the spacing of two is adjusted to avoid the moving path of the double -glass frame (100) and avoid mechanism (23).
2. The lamination frame reflow apparatus of claim 1, wherein, Two conveying mechanism (21) are arranged in parallel along the first direction, and the double -glass frame (100) is respectively abutted and conveyed from both sides, and two conveying mechanism (21) are used to convey the double -glass frame (100) to the position of alignment with the double -glass component conveyed by the component conveying part (1) along the vertical direction.
3. The lamination frame reflow apparatus of claim 1, wherein, The frame conveying part (2) further includes a rack (22) spanning above the component conveying part (1);Any conveying mechanism (21) is slidingly arranged in the rack (22) along the first direction; Any avoid mechanism (23) includes a plurality of interval arrangement avoid cylinder, any avoid cylinder is arranged in the rack (22), and the piston rod end of the avoid cylinder is connected with the conveying mechanism (21), wherein the piston rod of the avoid cylinder is arranged along the first direction.
4. The lamination frame reflow apparatus of claim 3, wherein, The conveying mechanism (21) includes: Conveying frame (211) is slidingly arranged in the rack (22) along the first direction; Conveying wheel (212) is rotationally arranged in the conveying frame (211), and a plurality of conveying wheels (212) are uniformly distributed along the second direction, wherein the first direction and the second direction are perpendicular; Conveying belt (213) is tightly wound around the conveying wheel (212) and is used to carry the double -glass frame (100); Conveying motor (214) is arranged in the conveying frame (211), and the conveying motor (214) is at least drivingly connected with one conveying wheel (212).
5. The lamination frame reflow apparatus of claim 1, wherein, The frame conveying part (2) further includes two limiting mechanisms (24), two limiting mechanisms (24) are respectively arranged in two conveying mechanisms (21), and two limiting mechanisms (24) are used for limiting the double -glass frame (100) along the first direction.
6. The lamination frame reflow apparatus of claim 5, wherein, Any limiting mechanism (24) includes: Limiting drive (241) is arranged in the conveying mechanism (21); First limiting plate (242) is arranged at the driving end of the limiting drive (241), and the limiting drive (241) is used to drive the first limiting plate (242) to abut against the side wall of the double -glass frame (100); Second limiting plate (243) is arranged vertically on the side, away from the limiting drive (241), of the first limiting plate (242), and is above the conveying end of the conveying mechanism (21), the second limiting plate (243) is used to limit the maximum movement height of the double -glass frame (100).
7. The lamination frame reflow apparatus of claim 1, wherein, The clamping part (3) comprises a plurality of clamping mechanisms (31), and the clamping mechanisms (31) are respectively arranged on both sides of the double-glass border frame (100) along the second direction to clamp the double-glass border frame (100).
8. The lamination frame reflow apparatus of claim 7, wherein, Any one of the clamping mechanisms (31) comprises a driving member (311) and a plurality of clamping members (312), the clamping members (312) are arranged on the driving end of the driving member (311), the driving member (311) is used for controlling the clamping members (312) to move along the height direction, the first direction and the second direction, and the clamping members (312) are used for clamping the double-glass border frame (100).
9. The lamination frame reflow apparatus of claim 8, wherein, The clamping mechanism (31) further comprises a plurality of positioning members (313), and the positioning members (313) are arranged on the driving end of the driving member (311), and the driving member (311) is used for controlling the positioning members (313) to abut against the double-glass border frame (100).
10. The lamination frame reflow apparatus of claim 1, wherein, The conveying direction of the assembly conveying part (1) is arranged in parallel or perpendicular to the conveying direction of the border frame conveying part (2).