组装平台

By adopting a combination structure of four first adsorption platforms, multiple second adsorption platforms, and support columns in the photovoltaic panel assembly equipment, the problems of poor assembly accuracy and complex structure caused by uneven photovoltaic panels are solved, and the stable adsorption of photovoltaic panels and the adjustment adaptability of the simplified structure are achieved.

CN224509610UActive Publication Date: 2026-07-17SUZHOU LING AUTOMATION EQUIP

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUZHOU LING AUTOMATION EQUIP
Filing Date
2025-07-02
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing photovoltaic panel assembly equipment, the adsorption mechanism is difficult to stabilize large-area uneven photovoltaic panels, resulting in poor assembly accuracy and complex structure, which is not easy to adjust to adapt to photovoltaic panels of different sizes.

Method used

The structure employs a combination of four first adsorption platforms, multiple second adsorption platforms, and support columns. The photovoltaic panels are flattened and adsorbed by adjusting cylinders and vacuum suction cups. The position of the adsorption platforms can be adjusted by slide rail components and adjustment components to accommodate photovoltaic panels of different sizes.

Benefits of technology

It achieves stable adsorption and high-precision assembly of photovoltaic panels, simplifies the structure, facilitates adjustment to adapt to photovoltaic panels of different sizes, and improves the adaptability and stability of the assembly platform.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224509610U_ABST
    Figure CN224509610U_ABST
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Abstract

本实用新型公开了一种组装平台,包括吸附机构,吸附机构包括:第一吸附台,数量为四个,且与光伏板的四个边角一一对应,相邻两个第一吸附台之间设有第一安装区;第二吸附台,数量有多个,且分别设于不同的第一安装区,以与光伏板的各边缘相对应,第一吸附台和第二吸附台围合有第二安装区;支撑柱,数量有多个,且均设于第二安装区;第一吸附台包括第一吸盘和驱动第一吸盘升降的调节气缸,第二吸附台包括第二吸盘,支撑柱的顶部与第二吸盘相平齐。本实用新型采用上述结构,光伏板落至吸附机构后,其更为平整,确保后续精准组装外框。
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Claims

1. An assembly platform, characterized by Includes an adsorption mechanism (100), said adsorption mechanism (100) comprising: There are four first adsorption platforms (110), which correspond one-to-one with the four corners of the photovoltaic panel (200). A first installation area is provided between two adjacent first adsorption platforms (110). There are multiple second adsorption platforms (120), which are respectively located in different first installation areas to correspond to each edge of the photovoltaic panel (200). The first adsorption platform (110) and the second adsorption platform (120) enclose the second installation area. There are multiple support columns (130), all of which are located in the second installation area; The first adsorption platform (110) includes a first suction cup (111) for supporting and adsorbing the corners of the photovoltaic panel (200) and an adjusting cylinder (112) for driving the first suction cup (111) to rise and fall. The second adsorption platform (120) includes a second suction cup (121) for supporting and adsorbing the edge of the photovoltaic panel (200). The top of the support column (130) is flush with the second suction cup (121).

2. The assembly platform of claim 1, wherein, The first adsorption stage (110) includes a first stage body (113), the first stage body (113) includes a first stage plate (1131), the first stage plate (1131) has a first mounting hole (1132) extending vertically, the first suction cup (111) is received in the first mounting hole (1132), the adjusting cylinder (112) is located on the first stage body (113), and its output end is connected to the bottom of the first suction cup (111) to drive the first suction cup (111) to rise and fall.

3. The assembly platform of claim 1, wherein, The second adsorption stage (120) includes a second stage body (122), the second stage body (122) includes a second stage plate (1221), the second stage plate (1221) has a second mounting hole (1222) through it in the vertical direction, the second suction cup (121) is fixedly supported in the second mounting hole (1222), and its adsorption surface protrudes relative to the stage surface of the second stage plate (1221).

4. The assembly platform of claim 1, wherein, The adsorption surfaces of each of the second suction cups (121) are at the same height, and the support surfaces of each of the support columns (130) are at the same height.

5. The assembly platform of claim 1, wherein, The adsorption mechanism (100) includes a base (140) for mounting the first adsorption platform (110), the second adsorption platform (120) and the support column (130). A slide rail assembly (150) is provided between the first adsorption platform (110) and the base (140), and a slide rail assembly (150) is provided between the second adsorption platform (120) and the base (140). The slide rail assembly (150) is adapted to adjust the position of the first adsorption platform (110) and the second adsorption platform (120) along the length direction of the photovoltaic panel (200).

6. The assembly platform of claim 5, wherein, An adjustment component (160) is provided between the first adsorption platform (110) and the slide rail assembly (150), and an adjustment component (160) is provided between the second adsorption platform (120) corresponding to the long edge of the photovoltaic panel (200) and the slide rail assembly (150). The adjustment component (160) is adapted to adjust the position of the first adsorption platform (110) and the second adsorption platform (120) along the width direction of the photovoltaic panel (200).

7. The assembly platform of claim 6, wherein, The adjustment component (160) includes: The base plate (161) is connected to the slide rail assembly (150); A connecting plate (162) is disposed on the base plate (161) and is used to connect with the first adsorption stage (110) or the second adsorption stage (120); The base plate (161) has a plurality of connecting holes (1611) spaced apart in parallel along the width direction of the photovoltaic panel (200). The connecting plate (162) has an adjustment waist hole (1621) whose length direction is parallel to the width direction of the photovoltaic panel (200). The adjustment waist hole (1621) corresponds to the connecting hole (1611). Threaded fasteners are connected between the adjustment waist hole (1621) and the connecting hole (1611).

8. The assembly platform of claim 1, wherein, The assembly platform also includes: A conveying mechanism (300) is adapted to convey the photovoltaic panel (200) along the X-axis direction and lower the photovoltaic panel (200) down to the adsorption mechanism (100) along the Z-axis direction; The first assembly mechanism (400) consists of two sets, which are respectively located on both sides of the adsorption mechanism (100) in the X-axis direction. Each first assembly mechanism (400) is adapted to clamp different short frame strips to drive the short frame strips to move along the X-axis direction and assemble them to the two edges of the photovoltaic panel (200) in the X-axis direction. The second assembly mechanism (500) consists of two sets, which are respectively located on both sides of the adsorption mechanism (100) in the Y-axis direction. Each second assembly mechanism (500) is adapted to clamp different long frame strips to drive the long frame strips to move along the Y-axis direction and assemble them to the two edges of the photovoltaic panel (200) in the Y-axis direction. Each of the two first assembly mechanisms (400) is provided with a first positioning component (410), and each of the two second assembly mechanisms (500) is provided with a second positioning component (510). The first positioning components (410) on both sides are adapted to center the photovoltaic panel (200) on the adsorption mechanism (100) along the X-axis direction, and the second positioning components (510) on both sides are adapted to center the photovoltaic panel (200) on the adsorption mechanism (100) along the Y-axis direction.

9. The assembly platform of claim 8, wherein, The first positioning component (410) includes: The first positioning cylinder (411) is arranged along the X-axis direction; The push block (412) is connected to the output end of the first positioning cylinder (411); The pusher (412) is adapted to push the photovoltaic panel (200) under the drive of the first positioning cylinder (411).

10. The assembly platform of claim 8, wherein, The second positioning component (510) includes: The second positioning cylinder (511) is arranged along the Z-axis direction; The push roller (512) is connected to the output end of the second positioning cylinder (511); The push roller (512) is adapted to move below the photovoltaic panel (200) or rise to a position corresponding to the edge of the photovoltaic panel (200) under the drive of the second positioning cylinder (511). The push roller (512) is adapted to approach and push the edge of the photovoltaic panel (200) under the drive of the second assembly mechanism (500).