A solar cell slicing machine carrier table

By designing a platform with adjustable support area, the problem that the laser scribing machine platform could not adapt to different cell sizes was solved, thus reducing the breakage rate and production costs.

CN116060786BActive Publication Date: 2026-02-24TANGSHAN HAITAI NEW ENERGY TECH CO LTD
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Patent Information

Application Number
CN202310081260.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-02-07
Publication Date
2026-02-24
Estimated Expiration
2043-02-07

AI Technical Summary

Technical Problem

Existing laser scribing machine platforms cannot accommodate solar cells of different sizes and shapes, resulting in high breakage rates or wasted space and increased production costs.

Method used

Design a dicing machine platform for solar cells. By adjusting the movement of the first and second support rods through the support frame and the transmission components, the support area can be increased or decreased to adapt to the size of the solar cells.

Benefits of technology

This enables the platform to adapt to solar cells of different sizes, reducing breakage rates and space waste, and lowering production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a solar cell piece cutting machine carrier, and relates to the field of the cutting machine, which comprises a support framework, a plurality of groups of bearing components are installed on the support framework, each group of bearing components comprises a bearing first rod and a bearing second rod, a transmission component is connected to each group of bearing components, when the bearing first rod moves away from or approaches the support framework, the bearing first rod drives the bearing second rod to move in the opposite direction of the bearing first rod through the transmission component. The application has the effect that the carrier can adapt to the size of the cell piece.
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Description

Technical Field

[0001] This application relates to the field of dicing machines, and more particularly to a dicing machine platform for solar cells. Background Technology

[0002] A laser scribing machine is a mechanical device that uses a high-energy laser beam to irradiate the surface of a workpiece, causing localized melting and vaporization of the irradiated area, thereby achieving the purpose of scribing. Laser scribing machines are widely used for cutting and dicing solar panels and thin metal sheets. In the process of scribing solar panels, the stage in the laser scribing machine is used to hold the solar panels.

[0003] However, solar cells come in various shapes and sizes. If the cell size is larger than the dicing table, the breakage rate during the dicing process is high; if the cell size is much smaller than the dicing table, the dicing table occupies a large portion of the space, resulting in wasted space. Using dicing machines with dicing tables of different cell shapes also increases production costs. Therefore, a dicing table that can accommodate different cell sizes is needed. Summary of the Invention

[0004] To facilitate the adaptation of the platform to the size of the solar cells, this application provides a dicing machine platform for solar cells.

[0005] The dicing machine platform for solar cells provided in this application adopts the following technical solution:

[0006] A dicing machine platform for solar cells includes a support frame on which multiple sets of receiving components are mounted. Each set of receiving components includes a receiving rod and a receiving rod. Each set of receiving components is connected to a transmission component. When the receiving rod moves away from or towards the support frame, the receiving rod drives the receiving rod to move in the opposite direction of the receiving rod through the transmission component.

[0007] By adopting the above technical solution, when it is necessary to increase the support area of ​​the support frame, one supporting rod is moved away from the support frame. The movement of the first supporting rod drives the second supporting rod to move in the opposite direction of the first supporting rod through the transmission component. In this way, the first and second supporting rods in each set of supporting components can be adjusted to move away from each other, thereby increasing the support area of ​​the support frame. When it is necessary to reduce the support area of ​​the support frame, the first and second supporting rods are moved closer to the support frame, thus facilitating a smaller support area of ​​the support frame.

[0008] Preferably, the receiving rod includes receiving sections at both ends and a threaded section fixed between the two receiving sections, the threaded section being threadedly connected to the support skeleton.

[0009] By adopting the above technical solution, rotating the receiving rod will cause the receiving section and the threaded section to rotate, and the rotation of the threaded section will allow it to move along the support frame. By rotating the receiving rod in both directions, its movement towards or away from the support frame can be adjusted.

[0010] Preferably, a guide rod is fixedly connected to the bottom surface of each of the two supporting rods, and multiple guide grooves are opened on the upper surface of the supporting frame, with each guide rod slidably connected to the corresponding guide groove.

[0011] By adopting the above technical solution, when the two supporting rods move relative to the supporting frame, the movement of the two supporting rods drives the movement of the guide rod, which then slides along the guide groove. The guide groove provides guidance for the movement of both the guide rod and the two supporting rods.

[0012] Preferably, the transmission assembly includes a transmission rod hinged to the bottom surface of the support frame, one end of the transmission rod having an elongated hole, and a slider fixedly connected to the receiving rod in the direction close to the transmission rod. The slider is slidably inserted into the elongated hole, and the end of the transmission rod away from the guide rod abuts against the end face of one of the receiving sections near the threaded section.

[0013] By adopting the above technical solution, rotating the receiving rod moves it away from the support frame. At this time, the receiving section pushes the transmission rod to rotate. The rotation of the transmission rod can push the slider to move through the side wall of the elongated hole. The movement of the slider can push the second receiving rod to move in the opposite direction to the second receiving rod. The operation is simple and convenient, and the support area on the opposite sides of the support frame can be increased or decreased at the same time.

[0014] Preferably, the support frame is equipped with an installation assembly, which includes two sets of mounting members. The support frame is located between the two sets of mounting members. Each set of mounting members includes at least two mounting members. Each mounting member vertically supports a rod and is slidably connected to the support frame. The end of each mounting member near the supporting assembly abuts against the lower surface of one of the supporting sections.

[0015] By adopting the above technical solution, when the first and second supporting rods move towards or away from each other, the supporting area of ​​the support frame along the length of the supporting components can be increased. When it is necessary to adjust the supporting area of ​​the support frame perpendicular to the length of the supporting components, rotating the supporting section in both directions will cause the rotating section to push each mounting component away from or towards the support frame through friction, thus facilitating the simultaneous adjustment of the supporting area of ​​the support frame in multiple directions.

[0016] Preferably, the upper surface of the mounting component has several elongated grooves arranged along the length of the mounting component, and the circumferential side of the receiving section has several fixing grooves. Adjacent fixing grooves form driving blocks, and each driving block is interlocked with the corresponding elongated groove.

[0017] By adopting the above technical solution, when the receiving section rotates, the rotation of the receiving section drives multiple drive blocks to rotate around the axis of the receiving section. In this way, the drive blocks can easily push the installation parts to move away from or closer to the support frame, thereby facilitating the adjustment of the support area of ​​the support fastener in the direction perpendicular to the length of the receiving component.

[0018] Preferably, the end of the drive block away from the axis of the receiving section protrudes in an arc shape in the direction away from the receiving section, and control blocks are formed between adjacent long slots, with the upper end of each control block protruding upward in an arc shape.

[0019] By adopting the above technical solution, each drive block can be easily inserted into the corresponding long slot, so that the drive block can smoothly push the corresponding control block to move along the length direction of the mounting part during rotation.

[0020] Preferably, the support frame includes two support rods and a second support rod fixed between the two support rods. The mounting component includes a mounting rod flush with the upper surface of the support rod and a second mounting rod that passes through the support rod and is slidably inserted into it. A connecting rod is fixedly connected between the first and second mounting rods. The second mounting rod abuts against the lower surface of one of the receiving sections of the mounting component.

[0021] By adopting the above technical solution, the upper surfaces of the mounting rod and the supporting rod are flush, which facilitates better support for the battery cells from both the mounting components and the support frame. Furthermore, the mounting rod penetrates the supporting rod, allowing the supporting rod to provide effective support and guidance for the mounting rod.

[0022] In summary, this application includes at least one of the following beneficial technical effects:

[0023] 1. Move the first and second support rods away from the support frame. This makes it easier to increase and reduce the support area of ​​the support frame, and makes it easier for the platform to adapt to the size of the solar cells.

[0024] 2. The opposing sides of the supporting frame can simultaneously increase or decrease the supporting area;

[0025] 3. It facilitates simultaneous adjustment of the support area in multiple directions of the support frame. Attached Figure Description

[0026] Figure 1 This is a top view of the dicing machine platform as shown in the embodiment of this application.

[0027] Figure 2 This is a schematic diagram illustrating the structure of the transmission component in an embodiment of this application.

[0028] Figure 3 This is a schematic diagram illustrating the structure of the installation components in an embodiment of this application.

[0029] Explanation of reference numerals in the attached drawings: 1. Support frame; 11. Support rod 1; 12. Support rod 2; 121. Guide groove; 2. Receiving assembly; 21. Receiving rod 1; 211. Receiving section; 2111. Fixing groove; 2112. Drive block; 212. Threaded section; 22. Receiving rod 2; 221. Guide rod; 3. Transmission assembly; 31. Transmission rod; 311. Elongated hole; 32. Slider; 4. Mounting assembly; 41. Mounting component; 411. Mounting rod 1; 412. Mounting rod 2; 4121. Elongated groove; 4122. Control block; 413. Connecting rod. Detailed Implementation

[0030] The following is in conjunction with the appendix Figures 1-3 This application will be described in further detail.

[0031] This application discloses a dicing machine platform for solar cells. (Refer to...) Figure 1 and Figure 2 The dicing machine platform includes a support frame 1, on which multiple sets of receiving components 2 are mounted. Each set of receiving components 2 includes a receiving rod 21 and a receiving rod 22 arranged parallel to each other. The receiving rod 21 can move away from or towards the support frame 1. Multiple sets of transmission components 3 are connected to the support frame 1, with one set of receiving components 2 corresponding to one set of transmission components 3.

[0032] When the first rod 21 moves away from or towards the support frame 1, the first rod 21 drives the second rod 22 to move in the opposite direction through the transmission assembly 3, which makes it easier to increase or decrease the support area of ​​the support frame 1.

[0033] The support frame 1 includes two support rods 11 and one support rod 12. The two support rods 11 are parallel to each other, and the support rod 12 is located between the two support rods 11. The support rod 12 is set perpendicular to the support rods 11, and each end of the support rod 12 is fixedly connected to the corresponding support rod 11.

[0034] Multiple sets of receiving components 2 are arranged sequentially along the length of the two supporting rods 12, and the receiving components 2 are perpendicular to the two supporting rods 12. Each receiving rod 21 includes receiving sections 211 at both ends and a threaded section 212 fixed between the two receiving sections 211. The threaded section 212 passes through the two supporting rods 12 and is threadedly connected to the two supporting rods 12. The diameter of the receiving section 211 is larger than the diameter of the threaded section 212. Rotating the receiving rod 21 in both directions can adjust the movement of the receiving rod 21 in the direction away from or towards the supporting frame 1.

[0035] Each receiving rod 22 has a guide rod 221 fixedly connected to its lower surface, and the guide rod 221 is arranged in the same direction as the receiving rod 22. Multiple guide grooves 121 are formed on the upper surface of the supporting rod 12, and the guide grooves 121 are dovetail grooves. One guide rod 221 corresponds to one guide groove 121, and the guide rod 221 and the guide groove 121 are slidably inserted into each other.

[0036] Each transmission assembly 3 includes a transmission rod 31 hinged to the lower surface of the supporting rods 12. A cylindrical slider 32 is fixedly connected to the bottom surface of one end of the guide rod 221. An elongated hole 311 is formed on the upper surface of the transmission rod 31 near the slider 32. The elongated hole 311 is arranged along the length of the transmission rod 31, and the slider 32 is slidably inserted into the elongated hole 311. The end of the transmission rod 31 away from the elongated hole 311 abuts against the side of one of the receiving sections 211 near the threaded section 212, and the transmission rod 31 is inclined.

[0037] When the first receiving rod 21 is rotated and gradually moves away from the supporting frame 1, the receiving section 211 of the contact transmission rod 31 pushes the transmission rod 31 to rotate gradually. The rotation of the transmission rod 31 then pushes the second receiving rod 22 towards the first receiving rod 21, thus gradually increasing the supporting area of ​​the supporting frame 1. When it is necessary to reduce the supporting area of ​​the supporting frame 1, the first receiving rod 21 is rotated and moves closer to the supporting frame 1, while the second receiving rod 22 slides towards the supporting frame 1.

[0038] Reference Figure 2 and Figure 3 In order to increase the support area of ​​the support frame 1 in the length direction of the vertical support component 2, the support frame 1 is equipped with the installation component 4.

[0039] Mounting assembly 4 includes two sets of mounting members 41, with the support frame 1 located between the two sets of mounting members 41. Each set of mounting members 41 includes two mounting members 41. Each mounting member 41 includes a mounting rod 411 flush with the upper surface of the supporting rod 11, and a mounting rod 412 vertically penetrating the supporting rod 11. The mounting rod 412 is slidably inserted into the supporting rod 11. A vertically arranged connecting rod 413 is fixedly connected between the mounting rod 411 and the mounting rod 412.

[0040] Each mounting rod 412 extends to the lower surface of the receiving rod 21 near the mounting rod 411, and the upper surface of the mounting rod 412 abuts against the arcuate side of one of the receiving segments 211 of the receiving rod 21. The two threaded segments 212 located at both ends of the support frame 1 have opposite directions of rotation.

[0041] By rotating the receiving rod 21 closest to the mounting rod 411, the receiving rod 21 moves away from the supporting frame 1. At this time, each receiving segment 211 rotates and pushes the corresponding mounting part 41 away from the supporting frame 1 through friction, thus adjusting the supporting area of ​​the supporting frame 1. Moreover, the supporting frame 1 can be adjusted synchronously in both directions parallel to and perpendicular to the receiving component 2.

[0042] Each mounting rod 412 has several elongated grooves 4121 on its upper surface. A control block 4122 is formed between adjacent grooves 4121, and the upper end of the control rod protrudes upwards in an arc shape. Each receiving section 211 has several fixing grooves 2111 on its arc-shaped side. These fixing grooves 2111 are evenly distributed along the axis of the receiving section 211, and a driving block 2112 is formed between adjacent fixing grooves 2111. The end of the driving block 2112 away from the axis of the receiving section 211 protrudes in an arc shape in a direction away from the axis of the receiving section 211. Multiple driving blocks 2112 engage with multiple elongated grooves 4121.

[0043] When the receiving rod 21 rotates and moves away from or towards the supporting frame 1, multiple drive blocks 2112 rotate and push the mounting rod 412 to move away from or towards the supporting frame 1. During the lateral movement of the receiving rod 21, the drive blocks 2112 move relative to the elongated groove 4121 and the drive blocks 2112 are always engaged with the elongated groove 4121, which facilitates the receiving rod 21 to drive the mounting part 41 to move more smoothly.

[0044] The implementation principle of a dicing machine platform for solar cells according to an embodiment of this application is as follows: When it is necessary to increase the support area of ​​the support frame 1, each receiving rod 21 is rotated, causing the receiving rod 21 to gradually move away from the support frame 1. During the movement of the receiving rod 21, the receiving rod 21 pushes the receiving rod 22 to move in the opposite direction to the receiving rod 21 through the transmission rod 31. In this process, the rotation of the receiving rod 21 drives the two sets of mounting parts 41 to move away from each other, thereby increasing the support area of ​​the support frame 1.

[0045] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A dicing machine platform for solar cells, comprising a support frame (1), characterized in that: The support frame (1) is equipped with multiple sets of receiving components (2). Each set of receiving components (2) includes a receiving rod (21) and a receiving rod (22). Each set of receiving components (2) is connected to a transmission component (3). When the receiving rod (21) moves away from or closer to the support frame (1), the receiving rod (21) drives the receiving rod (22) to move in the opposite direction of the receiving rod (21) through the transmission component (3). The receiving rod (21) includes receiving sections (211) at both ends and a threaded section (212) fixed between the two receiving sections (211). The threaded section (212) is threadedly connected to the support frame (1). The transmission assembly (3) includes a transmission rod (31) hinged to the bottom surface of the support frame (1). One end of the transmission rod (31) is provided with an elongated hole (311). The receiving rod (22) is fixedly connected to a slider (32) in the direction close to the transmission rod (31). The slider (32) is slidably inserted into the elongated hole (311). The end of the transmission rod (31) away from the guide rod (221) abuts against the end face of one of the receiving sections (211) near the threaded section (212). In order to increase the support area of ​​the support frame (1) in the length direction of the vertical support component (2), the support frame (1) is equipped with an installation component (4). The installation component (4) includes two sets of installation parts (41). The support frame (1) is located between the two sets of installation parts (41). Each set of installation parts (41) includes at least two installation parts (41). Each installation part (41) vertically supports a rod (21) and is slidably connected to the support frame (1). The end of each installation part (41) near the support component (2) abuts against the lower surface of one of the support sections (211). Each of the two supporting rods (22) has a guide rod (221) fixedly connected to its bottom surface. The upper surface of the supporting frame (1) is provided with multiple guide grooves (121). Each guide rod (221) is slidably connected to the corresponding guide groove (121). The upper surface of the mounting component (41) is provided with a plurality of elongated grooves (4121) arranged along the length direction of the mounting component (41), and the circumferential side of the receiving section (211) is provided with a plurality of fixing grooves (2111). A driving block (2112) is formed between adjacent fixing grooves (2111), and each driving block (2112) is inserted and engaged with the corresponding elongated groove (4121). The drive block (2112) protrudes in an arc shape at one end away from the axis of the receiving section (211), and a control block (4122) is formed between adjacent long slots (4121). The upper end of each control block (4122) protrudes upward in an arc shape. The support frame (1) includes two support rods (11) and a second support rod (12) fixed between the two support rods (11). The mounting component (41) includes a mounting rod (411) flush with the upper surface of the support rod (11) and a second mounting rod (412) that penetrates the support rod (11) and is slidably inserted into the support rod (11). A connecting rod (413) is fixedly connected between the mounting rod (411) and the second mounting rod (412). The second mounting rod (412) abuts against the lower surface of one of the receiving sections (211) of the mounting component (41). The receiving component (2) is set vertically to support the second rod (12).

Citation Information

Patent Citations

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