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Fully automatic photovoltaic module aluminum frame production system

A photovoltaic module and production system technology, applied in the direction of manufacturing tools, other manufacturing equipment/tools, etc., can solve the problems of increasing production line workload and running time, reducing production efficiency, etc., to reduce workload and equipment running time, and improve production Efficiency, reduction of maintenance rate and accident rate effect

Active Publication Date: 2019-02-15
JIANGSU KAILUN ALUMINUM
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The technical problem to be solved by the present invention is: in order to solve the problem that the existing production line is to make the photovoltaic frame and then select the qualified ones, which greatly increases the workload of the entire production line and the running time of the equipment on the production line, and reduces the production efficiency. A fully automatic photovoltaic module aluminum frame production system is provided, by setting the first detection device between the cutting device and the punching device, and setting the second detection device after the punching device, to select out the unqualified blanks, Let the qualified blanks continue to be processed, which greatly reduces the workload of the production line and the running time of the equipment, greatly improves the production efficiency, and greatly improves the qualified rate of the blanks after production

Method used

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  • Fully automatic photovoltaic module aluminum frame production system
  • Fully automatic photovoltaic module aluminum frame production system
  • Fully automatic photovoltaic module aluminum frame production system

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0025] like figure 1 and image 3 As shown in the figure, a fully automatic photovoltaic module aluminum frame production system includes a control device 7, a first feeding device 2, a second feeding device 16, and a cutting device 3 arranged in sequence, a first for detecting whether the cut blank is qualified or not. Detection device 4, punching device 6 for punching qualified blanks, punching equipment 13 for punching blanks after punching, and second detection device 8 for detecting whether the blanks after punching are qualified, the first The feeding device 2 sends the blank into the cutting device 3 for cutting, and the second feeding device 16 passes the cut blank through the first detection device 4, the punching device 6, the punching device 13 and the second detection device 8 in turn, and the control device 7 respectively. It is controlled and connected with the first feeding device 2 , the cutting device 3 , the first detection device 4 , the punching device 6 ,...

Embodiment 2

[0035] Basically the same as the technical solution of Embodiment 1, the difference is: figure 1 and image 3 As shown, it also includes a blank selection device for removing unqualified blanks. The blank selection device includes a first blank selection device and a second blank selection device. The first blank selection device is arranged between the first detection device 4 and the punching device 6. ; The second blank selection device is arranged after the second detection device 8, and the control device 7 is respectively connected with the first blank selection device and the second blank selection device for control.

[0036]The first blank selection device includes a first cylinder 5 , a first conveyor belt 14 and a first unqualified collection device 15 . The first cylinder 5 pushes unqualified blanks onto the first conveyor belt 14 , and the The unqualified blanks are transferred to the first unqualified collection device 15 for collection; the second blank selecti...

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PUM

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Abstract

The invention relates to the technical field of photovoltaic module machining, in particular to a full-automatic photovoltaic module aluminum frame production system comprising a control device, a first feed device, a second feed device, a cut-off device, a first detection device used for detecting whether blanks which are cut off are qualified or not, a stamping device used for conducting stamping on the qualified blanks, a punching device used for conducting punching on the blanks subjected to stamping, and a second detection device used for detecting whether the blanks subjected to punching are qualified or not. The cut-off device, the first detection device, the stamping device, the punching device and the second detection device are sequentially arranged. By arranging the first detection device between the cut-off device and the stamping device and arranging the second detection device behind the stamping device, the blanks detected to be unqualified are selected out, the qualified blanks continue to be machined, and therefore workloads of a production line are greatly reduced, the device operation time is greatly shortened, the production efficiency is greatly improved, and the percent of pass of the manufactured blanks is greatly increased.

Description

technical field [0001] The invention relates to the technical field of photovoltaic component processing, in particular to a fully automatic photovoltaic component aluminum frame production system. Background technique [0002] The photovoltaic frame is the main component of the structural support and appearance of the photovoltaic module. For a long time, frame production efficiency is low, automation is low, and many personnel and production processes are involved, resulting in low precision frame products, serious surface scratches, and high actual production costs. [0003] A fully automatic photovoltaic frame production line with application number 201320283156.6 is disclosed in the prior art. Although the automation problem of photovoltaic frame production is realized, this production line is to select qualified photovoltaic frames after the production is completed, which not only greatly increases the entire production line The workload of the production line and the...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B23P23/06
CPCB23P23/06
Inventor 赵彦玲薛健韦利行鲍玉冬张元
Owner JIANGSU KAILUN ALUMINUM