CN204760410U - Novel curing equipment of full -automatic photovoltaic module production line - Google Patents
Novel curing equipment of full -automatic photovoltaic module production line Download PDFInfo
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- CN204760410U CN204760410U CN201520454164.1U CN201520454164U CN204760410U CN 204760410 U CN204760410 U CN 204760410U CN 201520454164 U CN201520454164 U CN 201520454164U CN 204760410 U CN204760410 U CN 204760410U
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- China
- Prior art keywords
- photovoltaic module
- solidification
- connecting gear
- control module
- production line
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- Y02P70/521—
Abstract
The utility model relates to a novel curing equipment of full -automatic photovoltaic module production line, the utility model discloses a curing equipment includes support, transport mechanism, solidification equipment, fan, control module, handling device, transport mechanism is fixed in the support, the fan set up in transport mechanism's solidification district, control module with transport mechanism, solidification equipment, fan electricity signal connection. The handling device transport photovoltaic module hold to transport mechanism's pan feeding, and transport mechanism conveys the solidification district to photovoltaic module, and control module stopped fan and transport mechanism after the completion was air -dried in solidification, and transport mechanism conveys photovoltaic module to discharge end, and handling device transport photovoltaic module gets into next process, the fan is air drying speed with higher speed, shortens the time of solidification technology, compares in tradition solidification mode, and the process time is shorter, has improved production efficiency, the unloading is air -dried in whole solidification process automatic feeding solidification, and the bad product that the manual work caused is avoided in automatic conveying.
Description
Technical field
The utility model relates to a kind of photovoltaic module production equipment, particularly relates to the curing apparatus of deadweight photovoltaic production line.
Background technology
Since 2010, photovoltaic module market is more strict to the requirement of outgoing quality, and cost control requires stricter.The high efficiency of photovoltaic module manufacture and low cost are following developing direction.The manufacturing cost of photovoltaic module controls mainly from the lifting of production efficiency, and production material economy is wasted, and several aspects such as the saving of production manpower and materials are set about.Traditional photovoltaic module production line transplanting efficiency is low, and causes a large amount of manpower to waste because automaticity is not high.
The shortcoming of prior art:
1, the full a dead lift of existing photovoltaic module solidification pattern folds coding mode, and production efficiency is low, and cost of labor is high, easily causes photovoltaic module to break and the dislocation of photovoltaic module silica gel.
2, existing photovoltaic module curing apparatus does not have air-dry machine, curing time long.
3, conventional photovoltaic assembly curing apparatus needs the stopping of manual operation control appliance and operation, consumes manpower, adds labour cost.
Utility model content
Long for curing time for solving photovoltaic module in prior art, a dead lift is folded code and is easily caused the technical problem that photovoltaic module is damaged, silica gel misplaces, it is fast that the utility model provides a kind of curing rate, the curing apparatus of Automatic Control, substantially reduce curing time, avoid the loss that a dead lift brings.
In order to realize above-mentioned technical purpose, the utility model by the following technical programs:
A curing apparatus for new automatic photovoltaic module production line, described curing apparatus comprises support, connecting gear, solidification equipment, blower fan, control module, Handling device;
Described connecting gear is fixed on described support, arranges feeding end, discharge end, curing area, for transmitting photovoltaic module;
Described blower fan is arranged at top or the below of the curing area of described connecting gear, the photovoltaic module on air-dry connecting gear;
Described control module is connected with described connecting gear, solidification equipment, the blower fan signal of telecommunication.
Described Handling device comprises grasping mechanism, vertically moving assembly, moves horizontally assembly, described grasping mechanism is fixed on described vertical moving assembly, for grasping photovoltaic module, describedly move horizontally vertical moving assembly described in Component driver and move horizontally, described vertical moving assembly drives grasping mechanism to do vertical movement.
Arrange the material loading inductor that is connected with the described control module signal of telecommunication, described material loading inductor arranges the feeding end of described connecting gear, enters connecting gear for induction light photovoltaic assembly.
Arrange the blanking inductor be connected with the described control module signal of telecommunication, described blanking inductor arranges the discharge end of described connecting gear, is sent to discharge end for induction light photovoltaic assembly.
Arrange and be used for the solidification inductor that induction light photovoltaic assembly enters curing area, described solidification inductor is arranged at described curing area, is connected with the described control module signal of telecommunication.
Described control module comprises PLC module.
Curing apparatus of the present utility model comprises support, connecting gear, solidification equipment, blower fan, control module, Handling device; Described connecting gear is fixed on described support, arranges feeding end, discharge end, curing area, for transmitting photovoltaic module; Described blower fan is arranged at top or the below of the curing area of described connecting gear, the photovoltaic module on air-dry connecting gear; Described control module is connected with described connecting gear, solidification equipment, the blower fan signal of telecommunication.Handling device carrying photovoltaic module is to the feeding end of connecting gear, connecting gear is sent to curing area photovoltaic module, after solidifying air-dry completing, control module stops blower fan and connecting gear, and connecting gear transmits photovoltaic module to discharge end, and Handling device carrying photovoltaic module enters subsequent processing; Blower fan accelerates air-dry speed, shortens the time of whole curing process, and compared to conventional curing mode, the time is shorter, improves production efficiency; Control module controls each mechanism and automatically cooperatively interacts, and the blanking of whole curing process automatic charging, transmits automatically, avoids the bad product manually caused.
Accompanying drawing explanation
Fig. 1 is the present embodiment structural representation.
Fig. 2 is the present embodiment curing apparatus schematic diagram
In figure, 1 is support, and 2 is connecting gear, and 3 is blower fan, 4 is control module, and 6 is solidification equipment, and 7 is Handling device, 11 for being supporting plate, and 12 is connecting rod, and 21 is sprocket wheel, 22 is sprocket shaft, and 23 is axle bed, and 24 is conveyer chain, 25 is supporting bracket, and 26 is drive motors, and 51 is material loading inductor, 52 is blanking inductor, and 53 is solidification inductor.71 is vertical moving assembly, and 72 for moving horizontally assembly, and 73 is grasping mechanism.
Embodiment
In order to make the purpose of this utility model, technical scheme and advantage clearly understand, below in conjunction with drawings and Examples, the utility model is further elaborated.Should be appreciated that specific embodiment described herein only in order to explain the utility model, and be not used in restriction the utility model.
As shown in Figure 1, a kind of curing apparatus of new automatic photovoltaic module production line, curing apparatus comprises support 1, connecting gear 2, solidification equipment 6, blower fan 3, control module 4, inductor, Handling device;
Connecting gear 2 is arranged at support 1, for transmitting photovoltaic module, comprise sprocket wheel 21, sprocket shaft 22, conveyer chain 24, axle bed 23, supporting bracket 25, drive motors 26, the initiating terminal of conveyer chain 24 terminates that end is each to be arranged 1 chain wheel set and comprise sprocket shaft 22 and be arranged at 2 sprocket wheels 21 at sprocket shaft 22 two ends, 2 sprocket wheels 21 are arranged at the two ends of supporting plate 11 respectively by axle bed 23, axle bed 23 is fixed on supporting plate 11, sprocket shaft 22 two ends are installed on axle bed 23, drive motors 26 is fixed on support, sprocket shaft 22 transmits the power of driving mechanism to sprocket wheel 21, sprocket wheel 21 drives conveyer chain 24, supporting bracket 25 is fixed on conveyer chain 24, for carrying photovoltaic module, conveyer chain 24 drives supporting bracket 25 transmission photovoltaic module.
Connecting gear 2 initiating terminal is set to feeding area, and intermediate position is curing area, and its end is set to discharging area.
Blower fan 3 is arranged at above the curing area of connecting gear 2, for the air-dry photovoltaic module being positioned at curing area.Solidification equipment 6 is arranged at above curing area, solidification photovoltaic module.In the present embodiment, blower fan 3, solidification equipment 6 also can be arranged at the below of curing area.
Inductor comprises material loading inductor 51, blanking inductor 52, solidification inductor 53, and material loading inductor 51 arranges the initiating terminal of connecting gear 2, enters the material loading inductor 51 of connecting gear 2 for induction light photovoltaic assembly; Blanking inductor 52 arranges the end end of connecting gear 2, is sent to terminates end for induction light photovoltaic assembly; Solidification inductor 53 is arranged at curing area, enters curing area for induction light photovoltaic assembly.Material loading inductor 51, blanking inductor 52 with, solidify inductor 53 and be connected with control module 4 signal of telecommunication.
Inductor can the position of accurate induction light photovoltaic assembly, be delivered to control module 4, control module makes quick response after obtaining the positional information of photovoltaic module, control relevant equipment to perform an action, inductor accelerates the speed that control module 4 obtains the positional information of photovoltaic module, decrease the response time of control module 4, curing process is coordinated more efficiently, increase the air-dry efficiency of solidification.
As shown in Figure 2, Handling device 7 is arranged at feeding area and the discharging area of connecting gear 2, for transplanting photovoltaic module to the photovoltaic module on connecting gear 2 or transplanting curing apparatus to next process.Handling device 7 comprises vertical moving assembly 71, moves horizontally assembly 72, grasping mechanism 73, grasping mechanism 73 is fixed on vertical moving assembly, with for grasping photovoltaic module, moving horizontally assembly 72 drives vertical moving assembly 71 to move horizontally, and vertical mobile group 71 drive grasping mechanism 73 to do vertical movement.Handling device 7 carries out standard mechanical carrying, by vertical moving assembly 71, move horizontally assembly 72 and grasping mechanism 73 cooperation material loading blanking is carried out to curing apparatus, make the Fully-mechanized automatic operation of each operation of curing apparatus, avoid manpower transport, transporting velocity block, efficiency is high, and photovoltaic module breakage rate is low, decreases human cost.
Control module 4 is connected with connecting gear 2, blower fan 3, solidification equipment 6, Handling device 7 signal of telecommunication.
Support 1 comprises two supporting plates be arranged in parallel 11, connects the connecting rod 12 of two stands plate 11.
Control module 4 comprises PLC module.
The course of work of the utility model curing apparatus is as follows.
Photovoltaic module is transplanted to the material loading place of curing apparatus by Handling device 7, and material loading inductor 51 induction light photovoltaic assembly puts in place, and send a signal to control module 4, control module 4 starts curing apparatus, and drive motors 26 drives connecting gear 2, transmits photovoltaic module.
When photovoltaic module is sent to curing area, solidification inductor 53 induction light photovoltaic assembly, starts solidification equipment 6, start blower fan 3, simultaneously to control drive motors 26 out of service for control module 4, and connecting gear 2 stops transmitting, and photovoltaic module is cured air-dry in the curing area of connecting gear 2.
Curing apparatus photovoltaic module is solidified air-dry while, photovoltaic module is transplanted at the material loading place of curing apparatus by the Handling device 7 at production line material loading place.
The air-dry end of 2 clock Post RDBMS, control module 4 controls drive motors 26 and starts, and connecting gear 2 transmits photovoltaic module to blanking place, also the photovoltaic module at material loading place is sent to curing area simultaneously.
Solidification inductor 53 senses next photovoltaic module, and send a signal to control module 4, control module 4 starts solidification equipment 6, starts blower fan 3, controls drive motors 26 out of service.Meanwhile, solidified air-dry photovoltaic module, by connecting gear 2, photovoltaic module has been sent to blanking place, blanking inductor 52 senses photovoltaic module, and transmission signal is to control module 4, and the Handling device that control module block 4 controls blanking place performs blanking action.
When continuing material loading, then curing apparatus continues to perform that material loading, transmission, solidification are air-dry, the action of blanking
Whole photovoltaic module solidification process is accurately controlled by control module 4, photovoltaic module is carried out to material loading, movement, solidification are accurately air-dry, blanking, realizes the full-automation of whole process and runs.
In the present embodiment, control module 4 can control air-dry time according to actual needs, ensures the quality that photovoltaic module is excellent.The present embodiment curing apparatus accurately can transmit photovoltaic module and carry out air-dry to assigned address, automatically startup blower fan 3 pairs of photovoltaic modulies, reduces the time of whole curing process.Manpower transport's pattern is changed into full-automatic mechanical and transmit carrying, every sheet photovoltaic module transport process time is short, greatly enhances productivity, avoids manpower transport, save labour cost, reduced because manpower Attended Operation carries the photovoltaic module breakage and defective products caused.
The above; be only the utility model preferably embodiment; but protection range of the present utility model is not limited thereto; anyly be familiar with those skilled in the art in the technical scope that the utility model discloses; the change that can expect easily or replacement, all should be encompassed within protection range of the present utility model.Therefore, protection range of the present utility model should be as the criterion with the protection range of claim.
Claims (6)
1. a curing apparatus for new automatic photovoltaic module production line, is characterized in that, described curing apparatus comprises support, connecting gear, solidification equipment, blower fan, control module, Handling device;
Described connecting gear is fixed on described support, arranges feeding end, discharge end, curing area, for transmitting photovoltaic module;
Described blower fan is arranged at top or the below of the curing area of described connecting gear, the photovoltaic module on air-dry connecting gear;
Described control module is connected with described connecting gear, solidification equipment, the blower fan signal of telecommunication.
2. the curing apparatus of a kind of new automatic photovoltaic module production line as claimed in claim 1, it is characterized in that, described Handling device comprises grasping mechanism, vertically moving assembly, moves horizontally assembly, described grasping mechanism is fixed on described vertical moving assembly, for grasping photovoltaic module, describedly move horizontally vertical moving assembly described in Component driver and move horizontally, described vertical moving assembly drives grasping mechanism to do vertical movement.
3. the curing apparatus of a kind of new automatic photovoltaic module production line as claimed in claim 1 or 2, it is characterized in that, the material loading inductor be connected with the described control module signal of telecommunication is set, described material loading inductor arranges the feeding end of described connecting gear, enters connecting gear for induction light photovoltaic assembly.
4. the curing apparatus of a kind of new automatic photovoltaic module production line as claimed in claim 3, it is characterized in that, arrange the blanking inductor be connected with the described control module signal of telecommunication, described blanking inductor arranges the discharge end of described connecting gear, is sent to discharge end for induction light photovoltaic assembly.
5. the curing apparatus of a kind of new automatic photovoltaic module production line as described in claim 1 or 4, it is characterized in that, arrange and be used for the solidification inductor that induction light photovoltaic assembly enters curing area, described solidification inductor is arranged at described curing area, is connected with the described control module signal of telecommunication.
6. the curing apparatus of a kind of new automatic photovoltaic module production line as claimed in claim 5, it is characterized in that, described control module comprises PLC module.
Priority Applications (1)
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CN201520454164.1U CN204760410U (en) | 2015-06-26 | 2015-06-26 | Novel curing equipment of full -automatic photovoltaic module production line |
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CN201520454164.1U CN204760410U (en) | 2015-06-26 | 2015-06-26 | Novel curing equipment of full -automatic photovoltaic module production line |
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CN201520454164.1U Expired - Fee Related CN204760410U (en) | 2015-06-26 | 2015-06-26 | Novel curing equipment of full -automatic photovoltaic module production line |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106226928A (en) * | 2016-08-29 | 2016-12-14 | 贵州晟昌科技有限公司 | Blower fan blow-dry device and liquid crystal module production system |
CN106848000A (en) * | 2017-03-17 | 2017-06-13 | 苏州腾晖光伏技术有限公司 | The curing and its device of a kind of solar components |
CN109834881A (en) * | 2017-11-26 | 2019-06-04 | 丹阳康斯特光学元件有限公司 | Baking oven is used in solidification after a kind of eyeglass |
-
2015
- 2015-06-26 CN CN201520454164.1U patent/CN204760410U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106226928A (en) * | 2016-08-29 | 2016-12-14 | 贵州晟昌科技有限公司 | Blower fan blow-dry device and liquid crystal module production system |
CN106848000A (en) * | 2017-03-17 | 2017-06-13 | 苏州腾晖光伏技术有限公司 | The curing and its device of a kind of solar components |
CN109834881A (en) * | 2017-11-26 | 2019-06-04 | 丹阳康斯特光学元件有限公司 | Baking oven is used in solidification after a kind of eyeglass |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20151111 Termination date: 20160626 |