Gluing device for photovoltaic frame installation
By designing an automated glue coating device for photovoltaic panel frames, the problem of uneven and laborious manual glue coating is solved, and efficient and uniform glue coating of photovoltaic panel frames is achieved.
Patent Information
- Application Number
- CN202421458192.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-24
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-06-24
AI Technical Summary
In the installation of existing photovoltaic panel frames, manual glue coating is uneven and easy to deviate, which is time-consuming and labor-intensive, resulting in poor glue coating effect.
A glue coating device for photovoltaic frame installation is designed, including the main mechanism, movable seat, drive member, cylinder, glue head, extrusion, support rod and clamp. The driving member drives the movable seat to move, and the glue head moves along the photovoltaic frame to realize automatic glue coating.
Automatic glue coating of photovoltaic panel frames is realized, ensuring uniformity and accuracy of glue coating, reducing workers' labor intensity, and improving glue coating efficiency and effect.
Smart Images

Figure CN222829991U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of photovoltaic panel installation, in particular to a glue coating device for photovoltaic frame installation. Background Art
[0002] During production and processing, photovoltaic panels need to be fixed with an outer frame, and in order to keep the assembly firm and waterproof, glue is applied at the joint between the photovoltaic panel and the frame.
[0003] Currently, glue application is done manually. The glue raw material is put into a container, and then the assembled photovoltaic panels are placed on a flat surface. The worker aligns the glue application nozzle of the container with the joint position of the photovoltaic panel and the frame, and then squeezes the glue while moving. This glue injection method is prone to uneven glue injection and offset. It is also time-consuming and labor-intensive, and the gluing effect is poor. Therefore, there is an urgent need for a photovoltaic frame equipped with a glue application device. Utility Model Content
[0004] The utility model aims to solve one of the technical problems existing in the prior art or related technology.
[0005] To this end, the technical solution adopted by the utility model is: a glue coating device for installing a photovoltaic frame, comprising: a main body mechanism, the main body mechanism includes a frame, a movable seat slidably arranged in the frame, a first driving member installed on the frame and passing through the movable seat, a cylinder installed at the top of the frame, a glue head installed at the bottom of the frame and connected to the cylinder, an extrusion member installed at the top of the cylinder through a threaded connection, support rods symmetrically fixed on both sides of the frame, clamping members symmetrically arranged and movably engaged on the support rods, and a second driving member arranged through the support rods and the clamping members.
[0006] In a preferred example, the utility model can be further configured as follows: the first driving member includes a threaded rod rotatably mounted on the inner wall of the frame, and a motor mounted on one side of the frame and having a shaft fixedly connected to the end of the threaded rod.
[0007] In a preferred example, the utility model can be further configured as follows: a first threaded hole is opened on the movable seat, the threaded rod passes through the threaded hole, and the threaded rod and the first threaded hole are meshed with each other.
[0008] In a preferred example, the utility model can be further configured as follows: sliding grooves are opened on the relative inner side surfaces of the frame, sliding bars are fixed on both sides of the movable seat, the sliding bars are slidably engaged in the sliding grooves, and flow channels are symmetrically opened in the movable seat, one end of the flow channel is connected to the inner cavity of the cylinder, and the other end is connected to the rubber head.
[0009] In a preferred example, the utility model can be further configured as follows: the extrusion member includes a cover plate installed on the top of the cylinder through a threaded connection, an electric telescopic rod installed on the top of the cover plate and extending into the inner cavity of the cylinder through the cover plate, and a pressure plate fixed to the end of the electric telescopic rod.
[0010] In a preferred example, the utility model can be further configured as follows: waist-shaped holes are symmetrically opened on the support rod, and the clamping member includes a slider movably embedded in the waist-shaped hole and a column fixed at the bottom end of the slider.
[0011] In a preferred example, the utility model can be further configured as follows: protrusions are provided on the opposite inner side surfaces of the waist-shaped hole, grooves are provided on both sides of the sliding block, and the protrusions are engaged with the grooves.
[0012] In a preferred example, the utility model can be further configured as follows: the second driving member includes a double-headed screw rotatably mounted on the support rod and extending out of the support rod, and a knob fixed to the end of the double-headed screw, the slider is provided with a second threaded hole, the double-headed screw passes through the second threaded hole, and engages with the second threaded hole.
[0013] By adopting the above technical solution, the beneficial effects achieved by the utility model are as follows:
[0014] 1. In the utility model, a movable seat is slidably arranged on the frame, and a first driving member passing through the movable seat is arranged, the movable seat is driven to move by the first driving member, and a glue head is installed at the bottom end of the movable seat, a cylinder is fixed at the top end of the movable seat, and a flow channel is arranged in the inner cavity of the movable seat to connect the cylinder and the glue head, and an extrusion member is installed on the cylinder through a threaded connection, the extrusion member applies pressure to the glue in the cylinder, and the glue enters the glue head through the flow channel and is squeezed out, and the photovoltaic panel frame is glued, and the first driving member drives the movable seat to move, and the movable seat moves to achieve the movement of the glue head along the photovoltaic frame, thereby realizing the automation of the gluing operation, ensuring the gluing effect, improving the gluing efficiency, reducing the labor intensity of workers, and improving the practical performance.
[0015] 2. In the utility model, support rods are fixed on both sides of the frame, and clamping members are symmetrically arranged on the support rods, and a second driving member is also arranged. When in use, the second driving member is rotated to drive the clamping members on both sides to move toward each other, and the adjacent photovoltaic panel frames on both sides are clamped together, thereby ensuring the stability of the photovoltaic panel frames during the gluing operation, and ensuring the stability of the frame, avoiding deviation caused by shaking of the frame or photovoltaic frame during gluing, thereby ensuring the gluing effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a structural schematic diagram of the utility model;
[0017] Figure 2It is a schematic diagram of the exploded structure of the utility model;
[0018] Figure 3 It is a partial structural cross-sectional schematic diagram of the utility model;
[0019] Figure 4 It is a partial structural decomposition schematic diagram of the utility model.
[0020] Reference numerals:
[0021] 100, main body; 110, frame; 111, slide; 120, movable seat; 121, slide bar; 122, first threaded hole; 123, flow channel; 130, first driving member; 131, threaded rod; 132, motor; 140, cylinder; 150, rubber head; 160, extrusion member; 161, cover plate; 162, electric telescopic rod; 163, pressure plate; 170, support rod; 171, waist-shaped hole; 172, protrusion; 180, clamping member; 181, slider; 1811, second threaded hole; 1812, groove; 182, column; 190, second driving member; 191, double-headed screw; 192, knob. DETAILED DESCRIPTION
[0022] In order to make the purpose, technical solution and advantages of the utility model clearer, the utility model is further described in detail below in combination with specific implementation methods and with reference to the accompanying drawings. It should be noted that the embodiments of the utility model and the features in the embodiments can be combined with each other without conflict.
[0023] Some embodiments of the present invention are described below in conjunction with the accompanying drawings.
[0024] Embodiment 1:
[0025] Combination Figure 1-4 As shown, this embodiment provides a glue coating device for photovoltaic frame installation, including: a main body mechanism 100.
[0026] The main mechanism 100 includes a frame 110, a movable seat 120 slidably arranged in the frame 110, a first driving member 130 installed on the frame 110 and passing through the movable seat 120, a cylinder 140 installed at the top of the frame 110, a rubber head 150 installed at the bottom of the frame 110 and connected to the cylinder 140, an extrusion member 160 installed at the top of the cylinder 140 through a threaded connection, support rods 170 symmetrically fixed on both sides of the frame 110, clamping members 180 symmetrically arranged and movably engaged with the support rods 170, and a second driving member 190 arranged through the support rods 170 and the clamping members 180.
[0027] The frame 110 is used to install other components. The movable seat 120 is arranged in the frame 110 and is used to install the glue head 150 and the cylinder 140 and drive them to move, so as to facilitate the gluing operation of the entire photovoltaic frame. Slide grooves 111 are opened on the relative inner sides of the frame 110, and slide bars 121 are fixed on both sides of the movable seat 120. The slide bars 121 are slidably engaged in the slide grooves 111 to ensure the stability of the movable seat 120 moving in the frame 110.
[0028] The first driving member 130 is used to drive the movable seat 120 to move, including a threaded rod 131 rotatably installed on the inner wall of the frame 110 and a motor 132 installed on one side of the frame 110 and with the shaft fixedly connected to the end of the threaded rod 131. The movable seat 120 is provided with a first threaded hole 122, and the threaded rod 131 passes through the threaded hole, and the threaded rod 131 and the first threaded hole 122 are meshed with each other, so that when the motor 132 is started, the threaded rod 131 is driven to rotate, and the threaded rod 131 rotates in the first threaded hole 122, driving the movable seat 120 to move.
[0029] In addition, a flow channel 123 is symmetrically opened in the movable seat 120, one end of the flow channel 123 is connected to the inner cavity of the cylinder 140, and the other end is connected to the glue head 150, so that the glue in the cylinder 140 can enter the glue head 150 through the flow channel 123. The glue head 150 is used to deliver the glue and apply it on the surface of the photovoltaic frame, and the cylinder 140 is used to store the glue.
[0030] The extrusion piece 160 is used to press the glue in the cylinder 140 into the glue head 150 for delivery, and includes a cover plate 161 installed on the top of the cylinder 140 through a threaded connection, an electric telescopic rod 162 installed on the top of the cover plate 161 and extending into the inner cavity of the cylinder 140 through the cover plate 161, and a pressing plate 163 fixed at the end of the electric telescopic rod 162. The cover plate 161 is used to close the cylinder 140 to prevent dust and impurities from entering the cylinder 140 to contaminate the glue. The electric telescopic rod 162 is used to install the pressing plate 163 and drive the pressing plate 163 to move. The diameter of the pressing plate 163 is equal to the inner diameter of the cylinder 140. When the electric telescopic rod 162 drives the pressing plate 163 to move, the pressing plate 163 can apply pressure to the glue in the cylinder 140, so that the glue enters the glue head 150 through the flow channel 123 and is delivered.
[0031] The support rod 170 is used to install the clamping member 180. Waist-shaped holes 171 are symmetrically opened on the support rod 170. The clamping member 180 includes a slider 181 movably engaged in the waist-shaped hole 171 and a column 182 fixed at the bottom end of the slider 181. Protrusions 172 are provided on the relative inner sides of the waist-shaped hole 171. Grooves 1812 are opened on both sides of the slider 181. The protrusions 172 are engaged with the grooves 1812 to ensure the stability of the slider 181 moving in the waist-shaped hole 171. The slider 181 is used to install the column 182 and drive the column 182 to move. The relative columns 182 move toward each other, which can clamp adjacent photovoltaic frames together and ensure the stability of the photovoltaic frame during the gluing operation.
[0032] The second driving member 190 includes a double-headed screw 191 rotatably mounted on the support rod 170 and extending out of the support rod 170, and a knob 192 fixed to the end of the double-headed screw 191. A second threaded hole 1811 is opened on the slider 181. The double-headed screw 191 passes through the second threaded hole 1811 and engages with the second threaded hole 1811. When the double-headed screw 191 rotates, it can drive the sliders 181 on both sides to move toward each other, that is, drive the columns 182 to move toward each other, and clamp the adjacent photovoltaic frames. The knob 192 is used to facilitate workers to rotate the double-headed screw 191.
[0033] The working principle and use process of the utility model are as follows: when in use, the gluing device is placed between adjacent photovoltaic frames, and the knob 192 is turned to drive the double-headed screw 191 to rotate. The rotation of the double-headed screw 191 drives the sliders 181 on both sides to move toward each other, and the movement of the slider 181 drives the column 182 to move. The columns 182 on both sides move toward the middle, clamping the adjacent photovoltaic frames together and ensuring the stability of the frame 110. At this time, the electric telescopic rod 162 is started, driving the pressure plate 163 to press down, applying pressure to the glue in the cylinder 140, and the glue in the cylinder 140 enters the glue head 150 through the flow channel 123 under the action of pressure, and is squeezed out through the glue head 150 to perform gluing on the photovoltaic panel frame. At the same time, the motor 132 is started to drive the threaded rod 131 to rotate, and the rotation of the threaded rod 131 drives the movable seat 120 to move, and the movement of the movable seat 120 drives the glue head 150 to move along the photovoltaic frame, thereby realizing automatic gluing of the photovoltaic panel frame.
[0034] Although the embodiments of the present invention have been shown and described, those skilled in the art will appreciate that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and purpose of the present invention, and that the scope of the present invention is defined by the claims and their equivalents.
Claims
1. A glue coating device for photovoltaic frame installation, comprising: The main body mechanism (100) is characterized in that the main body mechanism (100) includes a frame (110), a movable seat (120) slidably arranged in the frame (110), a first driving member (130) installed on the frame (110) and passing through the movable seat (120), a cylinder (140) installed at the top end of the frame (110), a rubber head (150) installed at the bottom end of the frame (110) and connected to the cylinder (140), an extrusion member (160) installed at the top end of the cylinder (140) through a threaded connection, support rods (170) symmetrically fixed on both sides of the frame (110), clamping members (180) symmetrically arranged and movably engaged with the support rods (170), and a second driving member (190) arranged through the support rods (170) and the clamping member (180).
2. A glue coating device for photovoltaic frame installation according to claim 1, characterized in that: The first driving member (130) comprises a threaded rod (131) rotatably mounted on the inner wall of the frame (110), and a motor (132) mounted on one side of the frame (110) and having a shaft fixedly connected to the end of the threaded rod (131).
3. A glue coating device for photovoltaic frame installation according to claim 2, characterized in that: The movable seat (120) is provided with a first threaded hole (122), the threaded rod (131) passes through the threaded hole, and the threaded rod (131) and the first threaded hole (122) are meshed with each other.
4. A glue coating device for photovoltaic frame installation according to claim 1, characterized in that: The frame (110) has slide grooves (111) on the opposite inner side surfaces, and the movable seat (120) has slide bars (121) fixed on both sides. The slide bars (121) are slidably engaged in the slide grooves (111). The movable seat (120) has symmetrical flow channels (123), one end of the flow channel (123) is connected to the inner cavity of the cylinder (140), and the other end is connected to the rubber head (150).
5. The glue coating device for photovoltaic frame installation according to claim 1, characterized in that: The extrusion member (160) comprises a cover plate (161) mounted on the top end of the cylinder (140) via a threaded connection, an electric telescopic rod (162) mounted on the top end of the cover plate (161) and extending through the cover plate (161) into the inner cavity of the cylinder (140), and a pressing plate (163) fixed to the end of the electric telescopic rod (162).
6. A glue coating device for photovoltaic frame installation according to claim 1, characterized in that: The support rod (170) is symmetrically provided with waist-shaped holes (171), and the clamping member (180) comprises a sliding block (181) movably engaged in the waist-shaped hole (171) and a column (182) fixed at the bottom end of the sliding block (181).
7. A glue coating device for photovoltaic frame installation according to claim 6, characterized in that: The opposite inner side surfaces of the waist-shaped hole (171) are provided with protrusions (172), and grooves (1812) are formed on both sides of the sliding block (181), and the protrusions (172) are engaged with the grooves (1812).
8. The glue coating device for photovoltaic frame installation according to claim 6, characterized in that: The second driving member (190) comprises a double-headed screw rod (191) rotatably mounted on the support rod (170) and extending out of the support rod (170), and a knob (192) fixed to the end of the double-headed screw rod (191); a second threaded hole (1811) is formed on the slider (181); the double-headed screw rod (191) passes through the second threaded hole (1811) and meshes with the second threaded hole (1811).