Pushing mechanism for photovoltaic aluminum profile machining
By designing a material pushing mechanism for photovoltaic aluminum profile processing, the problem of time-consuming and labor-intensive feeding is solved, and the stable push and efficient utilization of the profile is achieved.
Patent Information
- Application Number
- CN202422559107.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-22
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-10-22
AI Technical Summary
In the prior art, photovoltaic aluminum profiles are time-consuming and labor-intensive to feed materials before sawing, and the distance between the roller conveying system and the cutting position causes the profile to be unable to be effectively pushed, affecting the material utilization rate.
A material pushing mechanism for processing photovoltaic aluminum profiles is designed, including feeding wheels, guide components, position adjustment components and drive parts. By adjusting the position and height of the feeding wheel, stable push of the profile is achieved.
It realizes efficient feeding of photovoltaic profiles, improves material utilization, and ensures smooth push of profiles during the cutting stage.
Smart Images

Figure CN223277263U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of mechanical equipment, in particular to a material pushing mechanism for processing photovoltaic aluminum profiles. Background Art
[0002] Stretching and feeding the aluminum alloy profiles before sawing photovoltaic aluminum profiles is time-consuming and laborious. If roller conveying is used, the distance between the roller conveyor system and the cutting position is usually considerable, which prevents the profiles from being effectively pushed during the final cutting stage. Therefore, the technical problem to be solved in this application is how to effectively push the photovoltaic aluminum profiles to increase material utilization. Utility Model Content
[0003] In order to solve the above-mentioned technical problems, the present utility model proposes a pushing mechanism for processing photovoltaic aluminum profiles. The feeding wheel of this solution can realize the feeding of photovoltaic profiles. Under the action of the first driving member, the feeding wheel rotates continuously, thereby achieving the purpose of feeding. Among them, the position of the feeding wheel in the horizontal direction is adjustable, and the position of the feeding wheel is adjusted by pushing and pulling the mounting arm through the position adjustment component. When the profile is longer, the distance between the feeding wheel and the guide component is farther, and the pushing process of the profile is smoother. When the profile is shorter, the distance between the feeding wheel and the guide component is closer, so as to facilitate the effective pushing of the remaining profile.
[0004] Specifically, the utility model proposes a pushing mechanism for photovoltaic aluminum profile processing, comprising a support platform, a guide assembly and a pushing assembly, wherein the guide assembly and the pushing assembly are respectively mounted on the support platform, and the pushing assembly comprises:
[0005] a vertical arm, the vertical arm being fixed on the supporting platform;
[0006] a horizontal slide rail assembly, the horizontal slide rail assembly being mounted on the vertical arm via a lifting assembly;
[0007] A feeding wheel, the feeding wheel is arranged on the slider of the horizontal slide rail assembly through a mounting arm, and the circumference of the feeding wheel is provided with an annular groove for supporting the profile;
[0008] a first driving member, the first driving member being mounted on the vertical arm and being used for driving the feeding wheel to rotate;
[0009] A position adjustment component is installed on the vertical arm and is used to push the mounting arm to move.
[0010] Preferably, the lifting assembly includes a cylinder, which is mounted on the vertical arm, and a piston rod of the cylinder is connected to the horizontal slide rail assembly.
[0011] Preferably, the vertical arm is provided with a vertical slide rail assembly, and the horizontal slide rail assembly is fixed on a slider of the vertical slide rail assembly.
[0012] Preferably, the horizontal slide rail assembly further comprises a support plate, the guide rail of the horizontal slide rail assembly is mounted on the support plate, and the piston rod of the cylinder is connected to the support plate via a connecting seat.
[0013] Preferably, the position adjustment component includes:
[0014] a swing arm rotatably mounted on the vertical arm;
[0015] a connecting rod, one end of which is rotatably mounted on the swing arm, and the other end of which is rotatably mounted on the mounting arm;
[0016] A second driving member is installed on the vertical arm, and the second driving member is used to drive the swing arm to rotate.
[0017] Preferably, the lower end of the swing arm is installed in the first adjustment port of the vertical arm through an adjustment seat, and a mounting shaft is provided on the adjustment seat, and the mounting shaft is arranged in the bearing mounting port at the lower end of the swing arm through a bearing.
[0018] Preferably, the length direction of the first adjustment port is parallel to the length direction of the horizontal slide rail assembly.
[0019] Preferably, the adjustment seat includes:
[0020] a first tray, the first tray being located on one side of the vertical arm;
[0021] a second disc body, the second disc body being located on the other side of the vertical arm, the end of the mounting shaft away from the swing arm passing through the first disc body and being fixedly connected to the second disc body, the first disc body and the mounting shaft being fixed by welding;
[0022] A tightening screw is installed on the first disk body or the first disk body, and is used to tighten the vertical arm.
[0023] Preferably, the swing arm is provided with a second adjustment opening, and the length direction of the second adjustment opening is parallel to the length direction of the swing arm;
[0024] The second driving member includes a driving motor, which is installed on the vertical arm. A driving arm is installed on the output shaft of the driving motor. A transmission wheel is provided on the driving arm, and the transmission wheel is located in the second adjustment port. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art.
[0026] Figure 1 3D schematic diagram of the pusher mechanism for photovoltaic aluminum profile processing proposed in this embodiment;
[0027] Figure 2 yes Figure 1 Schematic diagram of the local enlarged structure at A in the middle;
[0028] Figure 3 yes Figure 1 Schematic diagram of the local enlarged structure at B in the middle;
[0029] Figure 4 3D schematic diagram of the structure of the pusher mechanism for photovoltaic aluminum profile processing proposed in this embodiment from another perspective;
[0030] Figure 5 yes Figure 4 Schematic diagram of the local enlarged structure at point C in the middle.
[0031] The reference numerals in the accompanying drawings are as follows:
[0032] 11-support platform; 12-guide assembly; 13-push assembly; 14-vertical arm; 15-horizontal slide assembly; 16-feeding wheel; 17-first drive member; 18-position adjustment assembly; 19-mounting arm; 20-cylinder; 21-vertical slide assembly; 22-support plate; 23-swing arm; 24-connecting rod; 25-second drive member; 26-adjustment seat; 27-first adjustment port; 28-mounting shaft; 29-first disk body; 30-second disk body; 31-tightening screw; 32-second adjustment port; 33-drive motor; 34-drive arm; 35-transmission wheel; 36-guide groove. DETAILED DESCRIPTION
[0033] The technical solution of the present application is further described below in conjunction with specific embodiments, but the present application is not limited to these embodiments.
[0034] like Figures 1 to 5 As shown, this embodiment proposes a pusher mechanism for photovoltaic aluminum profile processing, including a support platform 11, a guide assembly 12 and a pusher assembly 13. The guide assembly 12 and the pusher assembly 13 are respectively installed on the support platform 11. The pusher assembly 13 includes:
[0035] A vertical arm 14 is fixed on the supporting platform 11;
[0036] A horizontal slide rail assembly 15 is mounted on the vertical arm 14 via a lifting assembly;
[0037] Feed wheel 16, which is mounted on the slider of the horizontal slide rail assembly 15 via a mounting arm 19. The circumference of the feed wheel 16 is provided with an annular groove for supporting the profile;
[0038] A first driving member 17 is mounted on the vertical arm 14 and is used to drive the feeding wheel 16 to rotate;
[0039] The position adjustment assembly 18 is installed on the vertical arm 14 and is used to push the mounting arm 19 to move.
[0040] The technical effect of this solution is that the feed wheel 16 of this solution can realize the feeding of photovoltaic profiles. Under the action of the first drive member 17, the feed wheel 16 rotates continuously, thereby achieving the purpose of feeding. The position of the feed wheel 16 in the horizontal direction is adjustable. The position adjustment component 18 pushes and pulls the mounting arm 19 to adjust the position of the feed wheel 16. When the profile is long, the distance between the feed wheel 16 and the guide component 12 is farther, and the pushing process of the profile is smoother. When the profile is short, the distance between the feed wheel 16 and the guide component 12 is closer, so as to facilitate the effective pushing of the remaining profile.
[0041] The first driving member 17 is a motor.
[0042] Furthermore, the guide assembly 12 has a guide seat, and the guide seat has a guide groove 36 for passing the installation profile.
[0043] As an implementation of this embodiment, the lifting assembly includes a cylinder 20 , which is installed on the vertical arm 14 , and a piston rod of the cylinder 20 is connected to the horizontal slide rail assembly 15 .
[0044] The technical effect of this solution is that the height of the horizontal slide rail assembly 15 can be adjusted, thereby achieving adjustment of the height of the feeding wheel 16, so that the feeding wheel 16 can effectively feed the profiles.
[0045] As an implementation of this embodiment, the vertical arm 14 is provided with a vertical slide rail assembly 21 , and a horizontal slide rail assembly 15 is fixed on a slider of the vertical slide rail assembly 21 .
[0046] The technical effect of this solution is that it is used to make the horizontal slide rail assembly 15 move more smoothly in the vertical direction.
[0047] Furthermore, the horizontal slide rail assembly 15 further includes a support plate 22 , the guide rail of the horizontal slide rail assembly 15 is mounted on the support plate 22 , and the piston rod of the cylinder 20 is connected to the support plate 22 via a connecting seat.
[0048] As an implementation of this embodiment, the position adjustment component 18 includes:
[0049] A swing arm 23 rotatably mounted on the vertical arm 14 ;
[0050] A connecting rod 24, one end of the connecting rod 24 is rotatably mounted on the swing arm 23, and the other end of the connecting rod 24 is rotatably mounted on the mounting arm 19;
[0051] The second driving member 25 is installed on the vertical arm 14 and is used to drive the swing arm 23 to rotate.
[0052] In this solution, the second driving member 25 is used to control the rotation of the swing arm 23, and then the swing arm 23 pushes and pulls the mounting arm 19 through the connecting rod 24, thereby adjusting the position of the feeding wheel 16 in the horizontal direction.
[0053] As an implementation method of this embodiment, the lower end of the swing arm 23 is installed in the first adjustment port 27 of the vertical arm 14 through the adjustment seat 26. The adjustment seat 26 is provided with a mounting shaft 28, and the mounting shaft 28 is set in the bearing mounting port at the lower end of the swing arm 23 through a bearing.
[0054] By adjusting the position of the adjusting seat 26, the swing arm 23 is placed in a suitable position to facilitate the effective operation of the swing arm 23. The position of the adjusting seat 26 changes and changes the swing angle of the swing arm 23, which also affects the maximum adjustment stroke of the feed wheel 16.
[0055] As an implementation of this embodiment, the length direction of the first adjustment opening 27 is parallel to the length direction of the horizontal slide rail assembly 15 .
[0056] As an implementation of this embodiment, the adjustment seat 26 includes:
[0057] A first plate 29, the first plate 29 is located on one side of the vertical arm 14;
[0058] The second plate 30 is located on the other side of the vertical arm 14. The end of the mounting shaft 28 away from the swing arm 23 passes through the first plate 29 and is fixedly connected to the second plate 30. The first plate 29 and the mounting shaft 28 are welded and fixed;
[0059] The tightening screw 31 is installed on the first disk body 29 or on the first disk body 29 , and the tightening screw 31 is used to tighten the vertical arm 14 .
[0060] Among them, the first disk body 29 and the second disk body 30 are respectively provided with through holes for passing the installation shaft 28. After the first disk body 29, the second disk body 30 and the installation shaft 28 are assembled and installed on the first adjustment port 27, the installation shaft 28 is fixed to the first disk body 29 and the second disk body 30 by welding.
[0061] As an implementation method of this embodiment, a second adjustment opening 32 is provided on the swing arm 23, and the length direction of the second adjustment opening 32 is parallel to the length direction of the swing arm 23;
[0062] The second driving member 25 includes a driving motor 33 , which is mounted on the vertical arm 14 . A driving arm 34 is mounted on the output shaft of the driving motor 33 . The driving arm 34 is provided with a transmission wheel 35 , which is located in the second adjustment port 32 .
[0063] In this solution, when the drive motor 33 is working, the drive arm 34 rotates to drive the swing arm 23 to rotate a corresponding angle through the transmission wheel 35, so as to control the position of the feeding wheel 16. The drive motor 33 is a servo drive motor 33.
[0064] For those skilled in the art, several modifications and improvements can be made without departing from the inventive concept of the present invention, and these modifications and improvements all fall within the scope of protection of the present invention.
Claims
1. A pushing mechanism for photovoltaic aluminum profile processing, characterized in that: The invention comprises a supporting platform (11), a guide assembly (12) and a pushing assembly (13), wherein the guide assembly (12) and the pushing assembly (13) are respectively mounted on the supporting platform (11), and the pushing assembly (13) comprises: A vertical arm (14), wherein the vertical arm (14) is fixed on the supporting platform (11); a horizontal slide rail assembly (15), the horizontal slide rail assembly (15) being mounted on the vertical arm (14) via a lifting assembly; A feeding wheel (16), the feeding wheel (16) is arranged on the slider of the horizontal slide rail assembly (15) through a mounting arm (19), and the circumference of the feeding wheel (16) is provided with an annular groove for supporting the profile; a first driving member (17), the first driving member (17) being mounted on the vertical arm (14), and the first driving member (17) being used to drive the feeding wheel (16) to rotate; A position adjustment component (18) is installed on the vertical arm (14), and the position adjustment component (18) is used to push the installation arm (19) to move.
2. The pushing mechanism for photovoltaic aluminum profile processing according to claim 1, characterized in that: The lifting assembly comprises a cylinder (20), the cylinder (20) is mounted on the vertical arm (14), and the piston rod of the cylinder (20) is connected to the horizontal slide rail assembly (15).
3. The pushing mechanism for photovoltaic aluminum profile processing according to claim 2, characterized in that: The vertical arm (14) is provided with a vertical slide rail assembly (21), and the horizontal slide rail assembly (15) is fixed on a slider of the vertical slide rail assembly (21).
4. The pushing mechanism for photovoltaic aluminum profile processing according to claim 3, characterized in that: The horizontal slide rail assembly (15) further comprises a support plate (22), the guide rail of the horizontal slide rail assembly (15) is mounted on the support plate (22), and the piston rod of the cylinder (20) is connected to the support plate (22) via a connecting seat.
5. The pushing mechanism for photovoltaic aluminum profile processing according to claim 1, characterized in that: The position adjustment component (18) comprises: a swing arm (23), the swing arm (23) being rotatably mounted on the vertical arm (14); a connecting rod (24), one end of the connecting rod (24) being rotatably mounted on the swing arm (23), and the other end of the connecting rod (24) being rotatably mounted on the mounting arm (19); A second driving member (25), the second driving member (25) is installed on the vertical arm (14), and the second driving member (25) is used to drive the swing arm (23) to rotate.
6. The pushing mechanism for photovoltaic aluminum profile processing according to claim 5, characterized in that: The lower end of the swing arm (23) is installed in the first adjustment port (27) of the vertical arm (14) through an adjustment seat (26); a mounting shaft (28) is provided on the adjustment seat (26); and the mounting shaft (28) is arranged in the bearing mounting port at the lower end of the swing arm (23) through a bearing.
7. The pushing mechanism for photovoltaic aluminum profile processing according to claim 6, characterized in that: The length direction of the first adjustment port (27) is parallel to the length direction of the horizontal slide rail assembly (15).
8. The pushing mechanism for photovoltaic aluminum profile processing according to claim 7, characterized in that: The adjustment seat (26) comprises: a first tray (29), the first tray (29) being located on one side of the vertical arm (14); a second disk (30), the second disk (30) being located on the other side of the vertical arm (14); an end of the mounting shaft (28) away from the swing arm (23) passing through the first disk (29) and being fixedly connected to the second disk (30); the first disk (29) and the mounting shaft (28) being fixed by welding; A tightening screw (31), the tightening screw (31) is installed on the first disk (29) or the first disk (29), and the tightening screw (31) is used to tighten the vertical arm (14).
9. The pushing mechanism for photovoltaic aluminum profile processing according to claim 8, characterized in that: The swing arm (23) is provided with a second adjustment opening (32), and the length direction of the second adjustment opening (32) is parallel to the length direction of the swing arm (23); The second driving member (25) includes a driving motor (33), the driving motor (33) is mounted on the vertical arm (14), and a driving arm (34) is mounted on the output shaft of the driving motor (33), a transmission wheel (35) is provided on the driving arm (34), and the transmission wheel (35) is located in the second adjustment port (32).