Tin dispensing tray for photovoltaic module

By designing the coordination of the cross-trough point tin pallet and the photovoltaic module turnover tube, the problem of inconvenience in loading and unloading during the photovoltaic module is solved, and automatic loading and unloading is realized, and the efficiency of point tin is improved.

CN222941156UActive Publication Date: 2025-06-03NANTONG GAOXIN SCI & TECH DEVCO
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Patent Information

Application Number
CN202420578571.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-03-25
Publication Date
2025-06-03
Estimated Expiration
2034-03-25

AI Technical Summary

Technical Problem

During the tinning process of existing photovoltaic modules, the loading and unloading of photovoltaic modules is inconvenient, time-consuming and labor-intensive, and inefficient.

Method used

A horizontal groove point tin pallet is designed to realize automatic loading and unloading of the photovoltaic module through the coordination of the horizontal groove and the photovoltaic module turnover tube. When loading, the photovoltaic module circulating tube is placed above the transverse groove, at an angle of 45°, so that the photovoltaic module slides into the transverse groove; when loading, the photovoltaic module circulating tube is placed horizontally, communicating with the opening at the left end of the transverse groove, and then pushing it to send the photovoltaic module into the transverse groove.

Benefits of technology

It realizes the rapid and convenient loading and unloading of photovoltaic modules, improves the efficiency of tin, and saves time and manpower.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222941156U_ABST
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Abstract

The utility model relates to a tin dispensing tray for a photovoltaic module. The tin dispensing tray comprises a tray main body, a plurality of transverse grooves are arranged on the tray main body, and the left end of each transverse groove is opened; a photovoltaic module turnover pipe is transversely arranged, a pipe opening of the photovoltaic module turnover pipe is aligned with and communicated with an opening in the left end of a transverse groove, and photovoltaic modules arranged in the transverse groove move along the transverse groove and enter the photovoltaic module turnover pipe. And the operation is convenient, fast, time-saving and labor-saving.
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Description

Technical Field

[0001] The utility model relates to a diode, in particular to a tin - dotting tray for photovoltaic modules. Background Art

[0002] In the past, when tin - dotting photovoltaic modules (photovoltaic bypass diodes of photovoltaic modules), workers manually placed the photovoltaic modules one - by - one into the respective grooves on the tin - dotting tray (the grooves match the photovoltaic modules). The loading and unloading of photovoltaic modules were very inconvenient, time - consuming, laborious, and inefficient. Summary of the Invention

[0003] To solve the above problems, the utility model provides a tin - dotting tray for photovoltaic modules, which adopts a horizontal - groove design. When loading, place the photovoltaic - module turnover tube full of photovoltaic modules above the horizontal groove at an angle of 45°, with its tube orifice located at the right end of the horizontal groove, and move it along the horizontal groove. The photovoltaic modules in the photovoltaic - module turnover tube slide down along the tube and fall into the horizontal groove. After a little arrangement, the loading of photovoltaic modules is completed. The left end of the horizontal groove is open. When unloading, place the empty photovoltaic - module turnover tube horizontally, with its tube orifice aligned with and communicating with the left - end opening of the horizontal groove, and gently push to move the photovoltaic modules in the horizontal groove along the horizontal groove and send them into the photovoltaic - module turnover tube, completing the unloading of photovoltaic modules. The operation is convenient, fast, time - saving, and labor - saving.

[0004] The technical solution of the utility model is as follows:

[0005] A tin - dotting tray for photovoltaic modules, the tin - dotting tray includes a tray body; a number of horizontal grooves are arranged in an array on the tray body, and the left end of each horizontal groove is open;

[0006] An empty photovoltaic - module turnover tube is placed horizontally, with its tube orifice aligned with and communicating with the left - end opening of a horizontal groove, and the photovoltaic modules arranged in the horizontal groove move along the horizontal groove and enter the photovoltaic - module turnover tube.

[0007] The tin - dotting tray further includes a stop block, and the stop block is installed on the tray body to block the left - end opening of each horizontal groove; of course, the stop block is installed after the loading and unloading of photovoltaic modules are completed. During tin - dotting, the photovoltaic modules in each horizontal groove are released.

[0008] A number of adjusting bolts are installed on the stop block, and each adjusting bolt extends into each horizontal groove and presses against the photovoltaic modules arranged in each horizontal groove; when the tin - dotting tray full of photovoltaic modules is installed on the tin - dotting machine for automatic tin - dotting, in order to prevent the photovoltaic modules from shifting due to thermal expansion and contraction during tin - dotting, the adjusting bolts are designed to restrict this.

[0009] A section is reserved at the left end of the tray body, and a number of clamping platforms are distributed on this section to position and clamp the photovoltaic - module turnover tube through the clamping platforms;

[0010] The turnover pipe of the photovoltaic module has a transverse groove penetrating through both ends of the turnover pipe of the photovoltaic module, and the clamping platform is embedded in the transverse groove on the turnover pipe of the photovoltaic module; this facilitates the alignment of the turnover pipe of the photovoltaic module. Description of the Drawings

[0011] Figure 1 It is a schematic diagram of the structure of the tin - spot - welding tray for photovoltaic modules (1).

[0012] Figure 2 It is a schematic diagram of the structure of the tin - spot - welding tray for photovoltaic modules (2).

[0013] Figure 3 It is a schematic diagram of the structure of the tin - spot - welding tray for photovoltaic modules (fully loaded with photovoltaic modules).

[0014] Figure 4 It is a schematic diagram of the structure of the tin - spot - welding tray for photovoltaic modules (unloading).

[0015] In the figure, the tin - spot - welding tray 1, the tray main body 1 - 1, the transverse groove 1 - 2, the stop block 1 - 3, the adjusting bolt 1 - 4, the clamping platform 1 - 5, the photovoltaic module 2, the turnover pipe 3 of the photovoltaic module, and the transverse groove 3 - 1 on the turnover pipe of the photovoltaic module. Detailed Embodiment

[0016] As Figures 1 - 3 shown, a tin - spot - welding tray for photovoltaic modules, the tin - spot - welding tray 1 includes a tray main body 1 - 1; a number of transverse grooves 1 - 2 are arranged in a row on the tray main body 1 - 1, and the left - hand ends of each transverse groove 1 - 1 are open; the tin - spot - welding tray 1 further includes a stop block 1 - 3, the stop block 1 - 3 is installed on the tray main body 1 - 1 to block the left - hand openings of each transverse groove 1 - 2; a number of adjusting bolts 1 - 4 are installed on the stop block 1 - 3, and each adjusting bolt 1 - 4 extends into each transverse groove 1 - 2 respectively and presses against the photovoltaic module 2 arranged in each transverse groove 1 - 2; a section is reserved at the left - hand end of the tray main body 1 - 1, and a number of clamping platforms 1 - 5 are distributed on this section to position and clamp the turnover pipe 3 of the photovoltaic module through each clamping platform 1 - 5; the turnover pipe 3 of the photovoltaic module has a transverse groove 3 - 1 penetrating through both ends of the turnover pipe 3 of the photovoltaic module, and the clamping platform 1 - 5 is embedded in the transverse groove 3 - 1 on the turnover pipe of the photovoltaic module.

[0017] As Figure 4 shown, for the above - mentioned feeding of the tin - spot - welding tray for photovoltaic modules, at this time, the stop block 1 - 3 is removed, the turnover pipe 3 of the photovoltaic module is placed horizontally, and its pipe orifice is aligned with and communicated with the left - hand opening of a transverse groove 1 - 2.

[0018] The above is only a preferred detailed embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.

Claims

1. A photovoltaic module tinning tray, the tinning tray comprising a tray body; characterized in that: The tray body is provided with a plurality of transverse grooves arranged in an array, and the left end of each transverse groove is open; A photovoltaic module turnover tube is placed horizontally, with its tube mouth aligned with and connected to the left end opening of a transverse groove, and the photovoltaic modules arranged in the transverse groove move along the transverse groove and enter the photovoltaic module turnover tube.

2. A photovoltaic module tinning tray according to claim 1, characterized in that: The tinning tray also includes a stopper, which is installed on the tray body and blocks the left end opening of each transverse groove.

3. A photovoltaic module tinning tray according to claim 2, characterized in that: A plurality of adjusting bolts are installed on the stopper, and each adjusting bolt extends into each transverse groove and tightens the photovoltaic modules arranged in each transverse groove.

4. A photovoltaic module tinning tray according to claim 1, characterized in that: A section is reserved at the left end of the tray body, and a plurality of clamping platforms are distributed in the section, and each clamping platform is used to position and clamp the photovoltaic module turnover tube; The photovoltaic module turnover tube is provided with a transverse groove which runs through both ends of the photovoltaic module turnover tube, and the clamping platform is embedded in the transverse groove on the photovoltaic module turnover tube.