WO2020155326A1 - 电池片的焊带布设机构及太阳能电池片焊接机 - Google Patents

电池片的焊带布设机构及太阳能电池片焊接机 Download PDF

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Publication number
WO2020155326A1
WO2020155326A1 PCT/CN2019/078370 CN2019078370W WO2020155326A1 WO 2020155326 A1 WO2020155326 A1 WO 2020155326A1 CN 2019078370 W CN2019078370 W CN 2019078370W WO 2020155326 A1 WO2020155326 A1 WO 2020155326A1
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WIPO (PCT)
Prior art keywords
welding
inter
clamp
tape
string
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Application number
PCT/CN2019/078370
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English (en)
French (fr)
Inventor
何成鹏
周建
黄德
汪勇超
谢文昌
吴迪
张雨军
Original Assignee
武汉三工智能装备制造有限公司
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Publication of WO2020155326A1 publication Critical patent/WO2020155326A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K37/00Auxiliary devices or processes, not specially adapted to a procedure covered by only one of the preceding main groups
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01LSEMICONDUCTOR DEVICES NOT COVERED BY CLASS H10
    • H01L31/00Semiconductor devices sensitive to infrared radiation, light, electromagnetic radiation of shorter wavelength or corpuscular radiation and specially adapted either for the conversion of the energy of such radiation into electrical energy or for the control of electrical energy by such radiation; Processes or apparatus specially adapted for the manufacture or treatment thereof or of parts thereof; Details thereof
    • H01L31/18Processes or apparatus specially adapted for the manufacture or treatment of these devices or of parts thereof
    • H01L31/1876Particular processes or apparatus for batch treatment of the devices
    • H01L31/188Apparatus specially adapted for automatic interconnection of solar cells in a module
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/50Manufacturing or production processes characterised by the final manufactured product

Definitions

  • This application relates to the technical field of solar cell welding, in particular to a welding ribbon arrangement mechanism for solar cells and a solar cell welding machine.
  • Solar energy is a renewable and clean energy.
  • the use of solar energy to generate electricity has received increasing attention and favor.
  • solar cell strings can be automatically welded by welding machines, the existing solar cell welding machines can only achieve single The automatic welding of strings of solar cells leads to low production efficiency.
  • the applicant proposes a solar cell welding machine that can weld multiple strings of solar cells at the same time, and the inter-string ribbons can be welded between the multiple strings to form an interconnection. Plate to achieve the improvement of the overall stability of solar cell products.
  • This kind of welding method needs to complete the layout of the inter-chip and inter-series welding ribbons between multiple solar cells before welding, and there is a cross and overlapping relationship between the inter-chip and inter-series welding tape and the solar cells.
  • the structure is more complicated. Therefore, the existing welding machines for solar cell strings cannot meet the production needs of interconnected solar cells.
  • the main purpose of this application is to propose a solar cell welding ribbon arrangement mechanism and a solar cell welding machine, which aims to solve the technical problem of low production efficiency of the existing solar cell welding machine and unable to meet the production needs of interconnected cell panels.
  • a welding strip arrangement mechanism for battery slices including:
  • Machine base with welding belt laying station
  • the transmission device is arranged on the base, and the transmission device has an arrangement section at the welding ribbon arrangement station, and the arrangement section is arranged to carry a battery pack, and the battery pack includes a plurality of pieces laid along a lateral interval. Battery slices, the transmission device is configured to transfer the battery slice group on the arrangement section from front to back, and can make the battery slice group stagnate in the arrangement section correspondingly;
  • the inter-chip welding tape laying device is arranged on the machine base and is configured to transport a plurality of inter-chip welding tapes extending in the forward and backward directions to the deployment section, so that the plurality of inter-chip welding tapes are along the edge of the deployment section. They are arranged at intervals in the lateral direction, and are correspondingly overlapped between the battery packs in the front and rear rows; and,
  • the inter-string welding tape laying device is arranged on the base, and is configured to transport the inter-string welding tape extending in the transverse direction to the laying section, so that the inter-string welding tape is correspondingly overlapped with the battery pack. Between multiple cells.
  • this application also proposes a welding strip arrangement mechanism for battery slices, including:
  • Machine base with welding belt laying station
  • the transmission device is arranged on the base, and the transmission device has an arrangement section at the welding ribbon arrangement station, and the arrangement section is arranged to carry a battery pack, and the battery pack includes a plurality of pieces laid along a lateral interval. Battery slices, the transmission device is configured to transfer the battery slice group on the arrangement section from front to back, and can make the battery slice group stagnate in the arrangement section correspondingly;
  • the inter-chip welding tape laying device is arranged on the machine base and is configured to transport a plurality of inter-chip welding tapes extending in the forward and backward directions to the deployment section, so that the plurality of inter-chip welding tapes are along the edge of the deployment section.
  • the inter-chip welding tape laying device is arranged on the machine base and is configured to transport a plurality of inter-chip welding tapes extending in the forward and backward directions to the deployment section, so that the plurality of inter-chip welding tapes are along the edge of the deployment section.
  • the inter-string welding tape laying device is arranged on the base, and is configured to transport the inter-string welding tape extending in the transverse direction to the laying section, so that the inter-string welding tape is correspondingly overlapped with the battery pack. Between multiple cells;
  • the inter-chip welding tape laying device includes:
  • the inter-chip welding tape clamp is set to clamp the plurality of inter-chip welding tapes, and the inter-chip welding tape clamp is movably installed on the base in the front-to-back direction so as to have a front side of the laying station The unwinding position and the working position behind the laying station; and,
  • the first driving device drives and connects the inter-chip welding tape clamp to be configured to drive the inter-chip welding tape clamp component to move between the discharge position and the working position, so that the plurality of inter-chip welding The belt is transported from the unwinding position to the laying section.
  • this application proposes a solar cell welding machine, which includes a welding strip arrangement mechanism for the battery sheet, including:
  • Machine base with welding belt laying station
  • the transmission device is arranged on the base, and the transmission device has an arrangement section at the welding ribbon arrangement station, and the arrangement section is arranged to carry a battery pack, and the battery pack includes a plurality of pieces laid along a lateral interval. Battery slices, the transmission device is configured to transfer the battery slice group on the arrangement section from front to back, and can make the battery slice group stagnate in the arrangement section correspondingly;
  • the inter-chip welding tape laying device is arranged on the machine base and is configured to transport a plurality of inter-chip welding tapes extending in the forward and backward directions to the deployment section, so that the plurality of inter-chip welding tapes are along the edge of the deployment section. They are arranged at intervals in the lateral direction, and are correspondingly overlapped between the battery packs in the front and rear rows; and,
  • the inter-string welding tape laying device is arranged on the base, and is configured to transport the inter-string welding tape extending in the transverse direction to the laying section, so that the inter-string welding tape is correspondingly overlapped with the battery pack. Between multiple cells.
  • the solar cell welding machine further includes a battery sheet discharging mechanism and a welding mechanism
  • the discharging mechanism is arranged on the front side of the welding tape laying station, and is arranged to lay the battery sheet on the transmission device
  • the welding mechanism is arranged on the rear side of the welding belt laying station, and is arranged to perform welding treatment on the battery sheet and the welding belt that are transferred to the welding station by the transmission device.
  • the solar cell welding machine includes a welding ribbon arrangement mechanism
  • the welding ribbon arrangement mechanism includes a transmission device, an inter-chip welding ribbon arrangement device, and an inter-series welding ribbon arrangement device
  • the transmission device is in the
  • the welding ribbon deployment station has a deployment section, the deployment section is set to carry a battery sheet group, the battery sheet group includes a plurality of battery sheets laid along a lateral interval, the transmission device is set to set the The battery slice group is transported from front to back, and the battery slice group can be stopped in the arrangement section correspondingly, and the inter-chip welding tape arrangement device is configured to transport a plurality of inter-chip welding tapes extending forward and backward to the arrangement section , So that the plurality of inter-piece welding tapes are arranged at intervals along the transverse direction in the arrangement section, and are correspondingly overlapped between the front and rear rows of the battery packs, and the inter-string welding tape arrangement device is set to be arranged along the transverse direction.
  • the extended inter-string welding tape is transported to the laying section, so that the inter-string welding tape is correspondingly overlapped between the plurality of battery slices of the battery slice group.
  • the welding ribbon arrangement mechanism provided by the present application can automatically complete the laying of the inter-chip welding tape and the inter-string welding tape between a plurality of solar cells, improve the production efficiency of producing interconnected plates, and meet the production needs of interconnected solar cells.
  • the cells in the interconnection plate can easily achieve a very small stable repeatability gap, such as 0.5mm, to achieve a very compact arrangement of cells and improve the overall conversion efficiency of the module.
  • Figure 1 is a schematic plan view of the battery interconnection plate produced by the solar cell welding machine provided by this application;
  • Fig. 2 is a partial schematic side view of the battery string in Fig. 1;
  • FIG. 3 is a partial three-dimensional structure diagram of an embodiment of the solar cell welding machine provided by this application.
  • FIG. 4 is a three-dimensional schematic diagram of an embodiment of the solder ribbon arrangement mechanism of the battery sheet in FIG. 3;
  • FIG. 5 is a schematic diagram of a three-dimensional structure of the inter-chip welding tape laying device in FIG. 4;
  • FIG. 6 is a schematic diagram of the three-dimensional structure of the inter-string welding ribbon arrangement device in FIG. 4;
  • FIG. 7 is a partial three-dimensional structure diagram of the welding ribbon arrangement device between strings in FIG. 6.
  • the solar cell welding machine is mainly set to weld multiple solar cells through a welding tape. Before welding, individual solar cells need to be transferred to the production line in order to arrange according to the required solar cell specifications, and at the same time corresponding layout Welding tape, and finally welding the solar cells with a welding device.
  • the existing solar cell welding machine can only realize automatic welding of a single string of solar cells, resulting in low production efficiency.
  • the present application provides a solar cell welding machine.
  • the solar cell welding machine includes a welding strip arrangement mechanism for the battery slices, which can automatically complete the laying of the inter-chip welding tape and the inter-string welding tape between a plurality of solar cells.
  • the production efficiency is high, which meets the technological needs of the solar cell interconnection plate.
  • the battery interconnection plate 300 includes a plurality of solar cells 301.
  • the inter-chip welding ribbon 400 is connected in series to form a battery string 301, and a plurality of battery strings 301 are connected in parallel by the inter-string welding ribbon 500 to form an interconnection block 300.
  • FIG. 3 is a three-dimensional structural diagram of an embodiment of the solar cell welding machine provided by this application.
  • the solar cell welding machine includes a discharging mechanism (not shown in the figure) of the cell 303 arranged in sequence from front to back ,
  • the welding strip arrangement mechanism 100 of the battery slice 303 includes a transmission device 20, which is configured to carry a battery slice group 302.
  • the battery slice group 302 includes a plurality of battery slices 303 arranged at a lateral interval. Each battery slice group
  • the number of battery slices 303 in 302 corresponds to the number of battery strings 301 in the interconnection block 300.
  • the multiple battery packs 302 are sequentially arranged in the front-rear direction to form multiple battery strings 301.
  • the battery sheet unloading mechanism is provided on the front side of the welding ribbon laying station 11, and is configured to lay the battery sheet 303 on the transmission device 20, and the welding mechanism 200 is provided on the The rear side of the welding ribbon arrangement station 11 is configured to perform welding processing on the battery sheet 303 and the welding ribbon that are transferred to the welding station 12 by the transmission device 20.
  • the battery sheet 303 blanking mechanism transports the battery sheet group 302 to the layout section 201 of the transmission device 20 in sequence when the battery sheet 303 is unloaded, and the ribbon deployment device, the transmission device 20 and the battery sheet blanking mechanism cooperate with each other.
  • the welding tape is arranged between the battery pieces 303, and then the battery piece 303 with the welding tape installed is further transferred to the welding station 12 and heated and welded by the welding mechanism 200 to form the battery interconnection plate 300.
  • FIG. 4 is a three-dimensional structural diagram of the welding ribbon arrangement mechanism 100 provided by this application.
  • the welding ribbon arrangement mechanism 100 includes a base 10, a transmission device 20, an inter-chip welding ribbon arrangement device 30, and an inter-string welding ribbon arrangement device 40.
  • the machine base 10 has a welding belt laying station 11, a transmission device 20 is arranged on the machine base 10, and the transmission device 20 has a laying section 201 at the welding belt laying station 11, and the laying section 201 is set to carry
  • the battery slice group 302 includes a plurality of battery slices 303 laid at intervals along the lateral direction, the transmission device 20 is arranged to transfer the battery slice group 302 on the arrangement section 201 from front to back, and can The battery sheet group 302 is correspondingly stagnated in the arrangement section 201.
  • the inter-chip welding tape laying device 30 is installed on the machine base 10 and is configured to transport a plurality of inter-chip welding tapes 400 extending in the forward and backward directions to the laying section 201, so that the plurality of inter-chip welding tapes 400
  • the arrangement sections 201 are arranged at intervals along the transverse direction, and are correspondingly overlapped between the front and rear rows of the battery sheet groups 302.
  • the inter-string welding tape laying device 40 is installed on the machine base 10, and is configured to transport the inter-string welding tape 500 extending in the transverse direction to the laying section 201, so that the inter-string welding tape 500 correspondingly overlaps Between a plurality of battery slices 303 of the battery slice group 302.
  • the inter-string welding tape laying device 40 transports the inter-string welding tape 500 extending in the transverse direction to the corresponding position on the laying section 201 of the transport device according to a preset time interval and/or distance interval, and then The inter-welding tape arrangement device 30 and the battery sheet unloading mechanism alternately carry out the operation of transporting the inter-sheet welding tape 400 and laying the battery sheet group 302, so that the battery sheets 303 and the inter-sheet welding tape 400 extending in the forward and backward directions are sequentially stacked. In this way, the arrangement of the welding ribbons for the multiple solar panels is completed, and the number and arrangement of the solar panels are determined according to the specifications of the solar cells produced, which is not limited here.
  • the conveying device 20 transports the solar panel with the welding ribbons to the welding station 12 on the rear side, and the welding device at the welding station 12 performs welding processing on the welding ribbons to form the battery 303 interconnection block 300.
  • the welding ribbon arrangement mechanism 100 provided in the present application can automatically complete the laying of the inter-chip welding tape 400 and the inter-string welding tape 500 between the plurality of solar cells 303, thereby improving the production efficiency of the production of interconnected solar panels and meeting the requirements of the solar cell interconnection plate. 300 production needs.
  • the inter-chip welding tape arrangement device 30 includes an inter-chip welding tape 400 clamp and a first driving device.
  • the inter-chip welding tape 400 clamp is set to clamp the plurality of inter-chip welding tapes 400.
  • the belt 400 clamp is movably arranged on the machine base 10 in the front-to-rear direction to have a discharging position 101 on the front side of the laying station 11 and a working position 103 on the other side of the laying station 11.
  • the first driving device drives and connects the clamp of the inter-chip welding tape 400 to be configured to drive the clamp component of the inter-chip welding tape 400 to move between the unwinding position 101 and the working position 103, so that the The plurality of inter-sheet welding tapes 400 are transported from the discharging position 101 to the laying section 201. In this way, a plurality of inter-chip welding tapes 400 extending in the forward and backward directions are transported to the corresponding positions of the working section each time, thereby improving the production efficiency.
  • the inter-chip welding tape 400 clamp includes a front clamp 31 and a rear clamp 32, and the unwinding position 101 also has a waiting position 102 between the working positions 103.
  • the first driving device includes a front driving part and a rear driving part.
  • the front driving part is drivingly connected to the front clamp 31 so as to be configured to drive the front clamp 31 between the unwinding position 101 and the waiting position 102.
  • the rear driving component is drivingly connected to the rear clamp 32 to be set to drive
  • the rear clamp 32 moves between the waiting position 102 and the working position 103 so that the plurality of inter-sheet welding tapes 400 are transported from the waiting position 102 to the working position 103.
  • the front clamp 31 is set to transport the finished welding tape to the waiting position 102 and then it can move forward
  • the rear clamp 32 is only set to transport the inter-chip welding tape 400 in the waiting station to the laying section. 201. In this way, by providing the waiting station, the finishing action and the conveying action of the inter-chip welding tape 400 can be performed at the same time, which improves production efficiency.
  • the inter-sheet welding tape arrangement device 30 further includes a welding tape arranging assembly 33, the welding tape arranging assembly 33 is arranged adjacent to the discharge position 101, and is arranged to draw, straighten, and bend the welding tape raw material And a cutting process to form a plurality of the inter-chip welding ribbons 400 at the discharging position 101.
  • a welding tape arranging assembly 33 is arranged adjacent to the discharge position 101, and is arranged to draw, straighten, and bend the welding tape raw material And a cutting process to form a plurality of the inter-chip welding ribbons 400 at the discharging position 101.
  • the welding ribbon material is wound on the winding drum set at the front end of the production line, and the welding ribbon material needs to be pulled out from the winding drum, straightened, and cut according to the appropriate size. , Form an inter-chip soldering band 400.
  • the inter-string welding tape arrangement device 40 includes a mounting seat 41, an inter-string welding tape pickup 42 and a second driving device 43.
  • the mounting base 41 is provided on the machine base 10
  • the inter-string welding tape pick-up piece 42 is configured to pick up the inter-string welding tape 500
  • the inter-string welding tape pick-up piece 42 can be movably mounted on the mounting base 41.
  • the second drive device 43 drives and connects the inter-string welding ribbon pick-up member 42 with a movable stroke, so as to be configured to drive the inter-string welding ribbon pick-up member 42 to move on the mounting seat 41, so that the The blanked inter-string welding tape 500 is transported to the laying section 201. In this way, the inter-string ribbon 500 is transported to the laying section 201 in a simple manner.
  • the arrangement position and interval of the inter-string ribbon 500 on the battery interconnection block 300 can be adjusted.
  • the device 40 for laying out welding ribbons between strings further includes a traction frame 44, the traction frame 44 is arranged on the mounting seat 41 and erected above the laying section 201, and the traction frame 44 is provided with an opening.
  • the upward limiting groove 441 which is elongated and extends in the transverse direction, is configured to carry the inter-string welding ribbon 500 to be cut;
  • the inter-string welding ribbon picking member 42 extends in the transverse direction and corresponds to Set above the limiting groove 441,
  • the inter-string welding tape pick-up part 42 has a movement stroke in the front and back and up and down directions, and the second driving device 43 drives the inter-string welding tape pick-up part 42 along the front and back and up and down directions.
  • the inter-string welding tape arrangement device 40 further includes a traction fixture 45, a traction drive device 46, and a cutting component 47.
  • the traction fixture 45 can be transversely
  • the traction frame 44 is movably installed to have a starting position 401 at one end of the limiting groove 441 and an end position 402 located at the other end of the limiting groove 441.
  • the cutting member 47 is arranged on the The traction frame 44 is arranged adjacent to the starting position 401, the traction clamp 45 is configured to clamp the free end of the welding ribbon material, and the traction driving device 46 is drivingly connected to the traction clamp 45 to be set as a driving station.
  • the pulling clamp 45 moves between the starting position 401 and the ending position 402, so that the free end of the welding strip material is pulled from the starting position 401 to the ending position 402, and the cutting component 47 is configured to cut the ribbon material to form the inter-string ribbon 500.
  • the through welding ribbon is formed by processing in a simple manner, and is matched with the arrangement mechanism of the inter-string welding ribbon 500 to improve production efficiency.
  • the traction drive device 46 includes a belt 46 arranged on the lower side of the limiting groove 441, and the extension direction of the belt 46 is parallel to the limiting groove 441, so
  • the belt 46 is provided with a slider, the traction clamp 45 is provided on the upper side of the limiting groove 441 and the lower part is connected to the belt 46.
  • the belt 46 is configured to drive and move to drive the sliding block to move, thereby driving the traction clamp 45 to slide along the extension direction of the limiting groove 441. In this way, the movement of the traction clamp 45 is realized in a simple manner.

Abstract

一种电池片(301)的焊带布设机构(100),电池片的焊带布设机构包括:传输装置(20)在焊带布设工位处(11)具有布设段(201)以承载电池片组(302),传输装置将电池片组由前向后传送,片间焊带布设装置(30)将多条前后向延伸的片间焊带运送至布设段,以使得多条片间焊带(400)在布设段沿横向呈间隔排布,且对应搭接于前后两排电池片组之间,串间焊带布设装置(40)将沿横向延伸的串间焊带(500)运送至布设段,以使得串间焊带对应搭接于电池片组的多个电池片(303)之间。该焊带布设机构能自动完成对多个电池片之间的片间焊带和串间焊带的铺设,提高生产互联板块的生产效率,实现紧凑的排列电池片,提升组件的整体转换效率。还涉及一种太阳能电池片焊接机。

Description

电池片的焊带布设机构及太阳能电池片焊接机
相关申请
本申请要求2019年1月31日的,申请号为201910103144.2,名称为“电池片的焊带布设机构及太阳能电池片焊接机”的中国专利申请的优先权,在此将其全文引入作为参考。
技术领域
本申请涉及太阳能电池片焊接技术领域,特别涉及一种电池片的焊带布设机构及太阳能电池片焊接机。
背景技术
太阳能是一种是可再生的清洁能源,利用太阳能来发电,已经日益受到人们的重视与青睐,虽然现在太阳能电池串已经能用焊接机自动焊接,但现有的太阳能电池焊接机只能实现单串太阳能电池片的自动焊接,导致生产效率低。
发明内容
针对所述示例性太阳能电池焊接机的缺陷,申请人提出了一种可同时实现多串太阳能电池片焊接的太阳能电池片焊接机,且多串电池片之间可以焊接串间焊带以形成互联板块,以实现对太阳能电池产品整体稳定性的提升。这种焊接方式需要在焊接前完成对多个电池片之间片间焊带和串间焊带的布设,且片间焊带和串间焊带与电池片之间存在交叉、叠设的关系,结构相对于现有的单串式的电池串较为复杂。因此,现有的太阳能电池串的焊接机已经无法满足互联式太阳能电池的生产需要。
本申请的主要目的是提出一种电池片的焊带布设机构及太阳能电池焊接机,旨在解决在现有太阳能电池片的焊接机生产效率低、无法满足互联电池板生产需要的技术问题。
为实现上述目的,本申请提出一种电池片的焊带布设机构,包括:
机座,具有焊带布设工位;
传输装置,设于所述机座,所述传输装置在所述焊带布设工位处具有布设段,所述布设段设置为承载电池片组,所述电池片组包括沿横向间隔铺设的多个电池片,所述传输装置设置为将所述布设段上的电池片组由前向后传送,且可使所述电池片组对应停滞于所述布设段;
片间焊带布设装置,设于所述机座,设置为将多条前后向延伸的片间焊带运送至所述布设段,以使得所述多条片间焊带在所述布设段沿横向呈间隔排布,且对应搭接于前后两排所述电池片组之间;以及,
串间焊带布设装置,设于所述机座,设置为将沿横向延伸的串间焊带运送至所述布设段,以使得所述串间焊带对应搭接于所述电池片组的多个电池片之间。
为实现上述目的,本申请还提出一种电池片的焊带布设机构,包括:
机座,具有焊带布设工位;
传输装置,设于所述机座,所述传输装置在所述焊带布设工位处具有布设段,所述布设段设置为承载电池片组,所述电池片组包括沿横向间隔铺设的多个电池片,所述传输装置设置为将所述布设段上的电池片组由前向后传送,且可使所述电池片组对应停滞于所述布设段;
片间焊带布设装置,设于所述机座,设置为将多条前后向延伸的片间焊带运送至所述布设段,以使得所述多条片间焊带在所述布设段沿横向呈间隔排布,且对应搭接于前后两排所述电池片组之间;
串间焊带布设装置,设于所述机座,设置为将沿横向延伸的串间焊带运送至所述布设段,以使得所述串间焊带对应搭接于所述电池片组的多个电池片之间;
其中,所述片间焊带布设装置包括:
片间焊带夹具,设置为夹持所述多条片间焊带,所述片间焊带夹具沿前后向可活动地设于所述机座,以具有位于所述布设工位前侧的放料位置、以及位于所述布设工位后侧的工作位置;以及,
第一驱动装置,驱动连接所述片间焊带夹具,以设置为驱动所述片间焊带夹具部件在所述放料位置与所述工作位置之间移动,使得所述多条片间焊带自所述放料位置被运送至所述布设段。
为实现上述目的,本申请提出一种太阳能电池焊接机,包括电池片的焊带布设机构,包括:
机座,具有焊带布设工位;
传输装置,设于所述机座,所述传输装置在所述焊带布设工位处具有布设段,所述布设段设置为承载电池片组,所述电池片组包括沿横向间隔铺设的多个电池片,所述传输装置设置为将所述布设段上的电池片组由前向后传送,且可使所述电池片组对应停滞于所述布设段;
片间焊带布设装置,设于所述机座,设置为将多条前后向延伸的片间焊带运送至所述布设段,以使得所述多条片间焊带在所述布设段沿横向呈间隔排布,且对应搭接于前后两排所述电池片组之间;以及,
串间焊带布设装置,设于所述机座,设置为将沿横向延伸的串间焊带运送至所述布设段,以使得所述串间焊带对应搭接于所述电池片组的多个电池片之间。
可选地,所述太阳能电池焊接机还包括电池片的下料机构以及焊接机构,所述下料机构设于所述焊带布设工位前侧,设置为将电池片铺设于所述传输装置上,所述焊接机构设于所述焊带布设工位后侧,设置为对由所述传输装置传送至焊接工位的电池片和焊带进行焊接处理。
本申请提供的技术方案中,太阳能电池片焊接机包括焊带布设机构,所述焊带布设机构包括传输装置、片间焊带布设装置和串间焊带布设装置,所述传输装置在所述焊带布设工位处具有布设段,所述布设段设置为承载电池片组,所述电池片组包括沿横向间隔铺设的多个电池片,所述传输装置设置为将所述布设段上的电池片组由前向后传送,且可使所述电池片组对应停滞于所述布设段,片间焊带布设装置设置为将多条前后向延伸的片间焊带运送至所述布设段,以使得所述多条片间焊带在所述布设段沿横向呈间隔排布,且对应搭接于前后两排所述电池片组之间,串间焊带布设装置设置为将沿横向延伸的串间焊带运送至所述布设段,以使得所述串间焊带对应搭接于所述电池片组的多个电池片之间。通过本申请提供的焊带布设机构能自动完成对多个电池片之间的片间焊带和串间焊带的铺设,提高生产互联板块的生产效率,满足互联式太阳能电池的生产需要。互联板块中的电池片可以很容易实现非常小的稳定重复性间隙比如0.5mm,实现非常紧凑的排列电池片,提升组件的整体转换效率。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图示出的结构获得其他的附图。
图1为本申请提供的太阳能电池片焊接机所生产的电池互联板块的平面示意图;
图2为图1中电池串的局部侧视示意图;
图3为本申请提供的太阳能电池片焊接机的一实施例的局部立体结构示意图;
图4为图3中电池片的焊带布设机构以实施例的立体结构示意图;
图5为图4中片间焊带布设装置的立体结构示意图;
图6为图4中串间焊带布设装置的立体结构示意图;
图7为图6中串间焊带布设装置的局部立体结构示意图。
附图标号说明:
标号 名称 标号 名称
100 焊带布设机构 103 工作位置
200 焊接机构 31 前夹具
300 互联板块 32 后夹具
301 电池串 33 焊带整理组件
302 电池片组 40 串间焊带布设装置
303 电池片 41 安装座
400 片间焊带 42 串间焊带拾取件
500 串间焊带 43 第二驱动装置
10 机座 44 牵引架
11 布设工位 441 限位槽
12 焊接工位 401 起始位置
20 传输装置 402 终止位置
201 布设段 45 牵引夹具
30 片间焊带布设装置 46 牵引驱动装置、皮带
101 放料位置 47 切断部件
102 等待位置
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
需要说明,若本申请实施例中有涉及方向性指示(诸如上、下、左、右、前、后……),则该方向性指示仅设置为解释在某一特定姿态(如附图所示)下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
另外,若本申请实施例中有涉及“第一”、“第二”等的描述,则该“第一”、“第二”等的描述仅设置为描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
太阳能电池焊接机主要设置为通过焊带对多个太阳能电池片进行焊接,在焊接前需要将单个的太阳能电池片依次传输到生产线上,以按照所需的太阳能电池规格进行排布,同时对应布设焊带,最后采用焊接装置对太阳能电池片进行焊接。然而现有的太阳能电池焊接机只能实现单串太阳能电池片的自动焊接,导致生产效率低。
鉴于此,本申请提供一种太阳能电池焊接机,所述太阳能电池焊接机包括电池片的焊带布设机构,能自动完成对多个电池片之间的片间焊带和串间焊带的铺设,生产效率高,满足了太阳能电池互联板块的工艺的需要。通过本申请提供的太阳能电池焊接机,能够生产出太阳能电池互联板块,所述互联板块的结构请参阅图1和图2,电池互联板块300包括多个电池片301,多个电池片301之间由片间焊带400进行串联,以形成电池串301,多条电池串301之间由串间焊带500并联,形成互联板块300。
图3为本申请提供的太阳能电池焊接机一实施例的立体结构示意图,请参阅图3,太阳能电池焊接机包括由前至后依次设置的电池片303的下料机构(图中未示出)、电池片303的焊带布设机构100以及焊接机构200。所述电池片303的焊带布设机构100包括传输装置20,传输装置20设置为承载电池片组302,电池片组302包括沿横向间隔排布的的多个电池片303,每组电池片组302中电池片303的数目与互联板块300的电池串301条数相对应。多组电池片组302沿前后方向依次排布,形成多条电池串301。
具体地在本实施例中,电池片下料机构设于所述焊带布设工位11前侧,设置为将电池片303铺设于所述传输装置20上,所述焊接机构200设于所述焊带布设工位11后侧,设置为对由所述传输装置20传送至焊接工位12的电池片303和焊带进行焊接处理。在生产时,电池片303的下料机构在下料时,将电池片组302依次运送至传输装置20的布设段201上,焊带布设装置、传输装置20与电池片下料机构的动作相互配合将焊带布设于电池片303之间,之后布设焊带完毕的电池片303被进一步传送至焊接工位12,并由焊接机构200加热焊接,形成电池互联板块300。
图4为本申请提供的焊带布设机构100的立体结构示意图,请参阅图4,焊带布设机构100包括机座10、传输装置20、片间焊带布设装置30以及串间焊带布设装置40。机座10具有焊带布设工位11,传输装置20设于所述机座10,所述传输装置20在所述焊带布设工位11处具有布设段201,所述布设段201设置为承载电池片组302,所述电池片组302包括沿横向间隔铺设的多个电池片303,所述传输装置20设置为将所述布设段201上的电池片组302由前向后传送,且可使所述电池片组302对应停滞于所述布设段201。所述片间焊带布设装置30设于所述机座10,设置为将多条前后向延伸的片间焊带400运送至所述布设段201,以使得所述多条片间焊带400在所述布设段201沿横向呈间隔排布,且对应搭接于前后两排所述电池片组302之间。所述串间焊带布设装置40设于所述机座10,设置为将沿横向延伸的串间焊带500运送至所述布设段201,以使得所述串间焊带500对应搭接于所述电池片组302的多个电池片303之间。
具体,在生产过程中,首先串间焊带布设装置40将沿横向延伸的串间焊带500按照预设时间间隔和/或距离间隔运送到运输装置的布设段201上相应的位置,之后片间焊带布设装置30与电池片下料机构交替进行对片间焊带400运送动作和对电池片组302铺设动作,使得电池片303和沿前后向延伸的片间焊带400依次叠设。如此完成对多个电池板焊带的布设工作,电池板的数目和排列按照所生产的太阳能电池的规格确定,在此不作限制。之后传输装置20将焊带布设完毕的电池板运送至后侧的焊接工位12,焊接工位12处的焊接装置对焊带进行焊接处理,形成电池片303互联板块300。通过本申请提供的焊带布设机构100能自动完成对多个电池片303之间的片间焊带400和串间焊带500的铺设,提高生产互联电池板的生产效,满足太阳能电池互联板块300的生产需要。
请参阅图5,片间焊带布设装置30包括片间焊带400夹具和第一驱动装置,片间焊带400夹具设置为夹持所述多条片间焊带400,所述片间焊带400夹具沿前后向可活动地设于所述机座10,以具有位于所述布设工位11前侧的放料位置101、以及位于所述布设工位11另一侧的工作位置103。所述第一驱动装置,驱动连接所述片间焊带400夹具,以设置为驱动所述片间焊带400夹具部件在所述放料位置101与所述工作位置103之间移动,使得所述多条片间焊带400自所述放料位置101被运送至所述布设段201。如此,每次将多条前后向延伸的片间焊带400运送至工作段的对应位置,提高生产效率。
进一步地,所述片间焊带400夹具包括前夹具31和后夹具32,所述放料位置101于所述工作位置103之间还具有等待位置102。所述第一驱动装置包括前驱动部件和后驱动部件,所述前驱动部件驱动连接所述前夹具31,以设置为驱动所述前夹具31在所述放料位置101与所述等待位置102之间移动,以使得所述多条片间焊带400自所述放料位置101运被送至所述等待位置102,所述后驱动部件驱动连接所述后夹具32,以设置为去驱动所述后夹具32在所述等待位置102和所述工作位置103之间移动,以使得所述多条片间焊带400自所述等待位置102被运送至所述工作位置103。生产时,前夹具31设置为将整理完毕的焊带运送至等待位置102后便可向前作回复运动,后夹具32只设置为将等待工位处整理完毕的片间焊带400运送至布设段201。如此,通过设置等待工位,片间焊带400的整理动作和运送动作可以同时进行,提高了生产效率。
进一步地,所述片间焊带布设装置30还包括焊带整理组件33,所述焊带整理组件33邻接于所述放料位置101设置,设置为对焊带原料进行牵引拉直、折弯及切断处理,以在所述放料位置101处形成多条所述片间焊带400。具体地,请参阅图1,焊带原料被绕设于设于生产线前端的绕线筒上,需要将焊带原料自所述绕线筒牵出、拉直、并按照合适的尺寸切断等工序,形成片间焊带400。
进一步地,请参阅图6,所述串间焊带布设装置40包括安装座41、串间焊带拾取件42以及第二驱动装置43。所述安装座41设于所述机座10,所述串间焊带拾取件42,设置为拾取串间焊带500,所述串间焊带拾取件42可活动地安装于所述安装座41,以具有活动行程、所述第二驱动装置43驱动连接所述串间焊带拾取件42,以设置为驱动所述串间焊带拾取件42在所述安装座41上活动,使得待下料的所述串间焊带500被运送至所述布设段201。如此通过简单的方式将串间焊带500运送至布设段201,通过调节运送的频率和位置,能够调整串间焊带500在电池互联板块300上的设置位置和间隔。
进一步地,所述串间焊带布设装置40还包括牵引架44,所述牵引架44设于所述安装座41并架设于所述布设段201的上方,所述牵引架44上开设有开口向上的限位槽441,所述限位槽441呈长形且沿横向延伸,以设置为承载待下料的串间焊带500;所述串间焊带拾取件42沿横向延伸,且对应设置于所述限位槽441上方,所述串间焊带拾取件42具有沿前后以及上下向的活动行程,所述第二驱动装置43驱动所述串间焊带拾取件42沿前后以及上下向移动,以设置为将所述限位槽441中的串间焊带500运送至所述布设段201。如此,能够减少运送串间焊带500的行程,以提高对所述串间焊带500的运送效率。
进一步地,为了将焊带原料加工成所述串间焊带500,所述串间焊带布设装置40还包括牵引夹具45、牵引驱动装置46和切断部件47,所述牵引夹具45沿横向可活动地安装于所述牵引架44,以具有位于所述限位槽441一端的起始位置401、以及位于所述限位槽441另一端的终止位置402,所述切断部件47设于所述牵引架44且邻接于所述起始位置401处设置,所述牵引夹具45设置为夹持焊带原料的自由端,所述牵引驱动装置46驱动连接所述牵引夹具45,以设置为驱动所述牵引夹具45在所述起始位置401和所述终止位置402之间移动,使得所述焊带原料的自由端自所述起始位置401被牵引至所述终止位置402,所述切断部件47设置为切断所述焊带原料以形成所述串间焊带500。如此,通过简单的方式加工形成穿间焊带,并且与所述串间焊带500的布设机构相配合,提高生产效率。
进一步地,为了驱动所述牵引夹具45动作,所述牵引驱动装置46包括设于所述限位槽441下侧的皮带46,所述皮带46的延伸方向与所述限位槽441平行,所述皮带46上设有滑块,所述牵引夹具45设于所述限位槽441上侧,且下部连接于所述皮带46。所述皮带46配驱动移动,以带动所述滑块移动,从而带动所述牵引夹具45沿所述限位槽441的延伸方向滑动。如此通过简单的方式实现所述牵引夹具45的移动动作。
以上所述仅为本申请的优选实施例,并非因此限制本申请的专利范围,凡是在本申请的构思下,利用本申请说明书及附图内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本申请的专利保护范围内。

Claims (20)

  1. 一种电池片的焊带布设机构,其中,包括:
    机座,具有焊带布设工位;
    传输装置,设于所述机座,所述传输装置在所述焊带布设工位处具有布设段,所述布设段设置为承载电池片组,所述电池片组包括沿横向间隔铺设的多个电池片,所述传输装置设置为将所述布设段上的电池片组由前向后传送,且可使所述电池片组对应停滞于所述布设段;
    片间焊带布设装置,设于所述机座,设置为将多条前后向延伸的片间焊带运送至所述布设段,以使得所述多条片间焊带在所述布设段沿横向呈间隔排布,且对应搭接于前后两排所述电池片组之间;以及,
    串间焊带布设装置,设于所述机座,设置为将沿横向延伸的串间焊带运送至所述布设段,以使得所述串间焊带对应搭接于所述电池片组的多个电池片之间。
  2. 如权利要求1所述的电池片的焊带布设机构,其中,所述片间焊带布设装置包括:
    片间焊带夹具,设置为夹持所述多条片间焊带,所述片间焊带夹具沿前后向可活动地设于所述机座,以具有位于所述布设工位前侧的放料位置、以及位于所述布设工位后侧的工作位置;以及,
    第一驱动装置,驱动连接所述片间焊带夹具,以设置为驱动所述片间焊带夹具部件在所述放料位置与所述工作位置之间移动,使得所述多条片间焊带自所述放料位置被运送至所述布设段。
  3. 如权利要求2所述的电池片的焊带布设机构,其中,所述片间焊带夹具包括前夹具和后夹具,所述放料位置于所述工作位置之间还具有等待位置;所述第一驱动装置包括前驱动部件和后驱动部件,所述前驱动部件驱动连接所述前夹具,以设置为驱动所述前夹具在所述放料位置与所述等待位置之间移动,以使得所述多条片间焊带自所述放料位置运被送至所述等待位置,所述后驱动部件驱动连接所述后夹具,以设置为去驱动所述后夹具在所述等待位置和所述工作位置之间移动,以使得所述多条片间焊带自所述等待位置被运送至所述工作位置。
  4. 如权利要求3所述的电池片的焊带布设机构,其中,所述片间焊带布设装置还包括焊带整理组件,所述焊带整理组件邻接于所述放料位置设置,设置为对焊带原料进行牵引拉直、折弯及切断处理,以在所述放料位置处形成多条所述片间焊带。
  5. 如权利要求1所述的电池片的焊带布设机构,其中,所述串间焊带布设装置包括:
    安装座,设于所述机座;
    串间焊带拾取件,设置为拾取串间焊带,所述串间焊带拾取件可活动地安装于所述安装座,以具有活动行程;以及,
    第二驱动装置,驱动连接所述串间焊带拾取件,以设置为驱动所述串间焊带拾取件在所述安装座上活动,使得待下料的所述串间焊带被运送至所述布设段。
  6. 如权利要求5所述的电池片的焊带布设机构,其中,所述串间焊带布设装置还包括牵引架,所述牵引架设于所述安装座并架设于所述布设段的上方,所述牵引架上开设有开口向上的限位槽,所述限位槽呈长形且沿横向延伸,以设置为承载待下料的串间焊带;所述串间焊带拾取件沿横向延伸,且对应设置于所述限位槽上方,所述串间焊带拾取件具有沿前后以及上下向的活动行程,所述第二驱动装置驱动所述串间焊带拾取件沿前后以及上下向移动,以设置为将所述限位槽中的串间焊带运送至所述布设段。
  7. 如权利要求6所述的电池片的焊带布设机构,其中,所述串间焊带布设装置还包括牵引夹具、牵引驱动装置和切断部件,所述牵引夹具沿横向可活动地安装于所述牵引架,以具有位于所述限位槽一端的起始位置、以及位于所述限位槽另一端的终止位置,所述切断部件设于所述牵引架且邻接于所述起始位置处设置,所述牵引夹具设置为夹持焊带原料的自由端,所述牵引驱动装置驱动连接所述牵引夹具,以设置为驱动所述牵引夹具在所述起始位置和所述终止位置之间移动,使得所述焊带原料的自由端自所述起始位置被牵引至所述终止位置,所述切断部件设置为切断所述焊带原料以形成所述串间焊带。
  8. 如权利要求7所述的电池片的焊带布设机构,其中,所述牵引驱动装置包括设于所述限位槽下方的皮带,所述皮带的延伸方向与所述限位槽平行,所述皮带上设有滑块,所述牵引夹具设于所述限位槽上侧,且下部连接于所述皮带。
  9. 一种电池片的焊带布设机构,其中,包括:
    机座,具有焊带布设工位;
    传输装置,设于所述机座,所述传输装置在所述焊带布设工位处具有布设段,所述布设段设置为承载电池片组,所述电池片组包括沿横向间隔铺设的多个电池片,所述传输装置设置为将所述布设段上的电池片组由前向后传送,且可使所述电池片组对应停滞于所述布设段;
    片间焊带布设装置,设于所述机座,设置为将多条前后向延伸的片间焊带运送至所述布设段,以使得所述多条片间焊带在所述布设段沿横向呈间隔排布,且对应搭接于前后两排所述电池片组之间;以及,
    串间焊带布设装置,设于所述机座,设置为将沿横向延伸的串间焊带运送至所述布设段,以使得所述串间焊带对应搭接于所述电池片组的多个电池片之间;
    其中,所述片间焊带布设装置包括:
    片间焊带夹具,设置为夹持所述多条片间焊带,所述片间焊带夹具沿前后向可活动地设于所述机座,以具有位于所述布设工位前侧的放料位置、以及位于所述布设工位后侧的工作位置;以及,
    第一驱动装置,驱动连接所述片间焊带夹具,以设置为驱动所述片间焊带夹具部件在所述放料位置与所述工作位置之间移动,使得所述多条片间焊带自所述放料位置被运送至所述布设段。
  10. 如权利要求9所述的电池片的焊带布设机构,其中,所述片间焊带夹具包括前夹具和后夹具,所述放料位置于所述工作位置之间还具有等待位置;所述第一驱动装置包括前驱动部件和后驱动部件,所述前驱动部件驱动连接所述前夹具,以设置为驱动所述前夹具在所述放料位置与所述等待位置之间移动,以使得所述多条片间焊带自所述放料位置运被送至所述等待位置,所述后驱动部件驱动连接所述后夹具,以设置为去驱动所述后夹具在所述等待位置和所述工作位置之间移动,以使得所述多条片间焊带自所述等待位置被运送至所述工作位置。
  11. 如权利要求10所述的电池片的焊带布设机构,其中,所述片间焊带布设装置还包括焊带整理组件,所述焊带整理组件邻接于所述放料位置设置,设置为对焊带原料进行牵引拉直、折弯及切断处理,以在所述放料位置处形成多条所述片间焊带。
  12. 一种太阳能电池焊接机,其中,包括电池片的焊带布设机构,所述电池片的焊带布设机构包括:
    机座,具有焊带布设工位;
    传输装置,设于所述机座,所述传输装置在所述焊带布设工位处具有布设段,所述布设段设置为承载电池片组,所述电池片组包括沿横向间隔铺设的多个电池片,所述传输装置设置为将所述布设段上的电池片组由前向后传送,且可使所述电池片组对应停滞于所述布设段;
    片间焊带布设装置,设于所述机座,设置为将多条前后向延伸的片间焊带运送至所述布设段,以使得所述多条片间焊带在所述布设段沿横向呈间隔排布,且对应搭接于前后两排所述电池片组之间;以及,
    串间焊带布设装置,设于所述机座,设置为将沿横向延伸的串间焊带运送至所述布设段,以使得所述串间焊带对应搭接于所述电池片组的多个电池片之间。
  13. 如权利要求12所述的太阳能电池焊接机,其中,所述片间焊带布设装置包括:
    片间焊带夹具,设置为夹持所述多条片间焊带,所述片间焊带夹具沿前后向可活动地设于所述机座,以具有位于所述布设工位前侧的放料位置、以及位于所述布设工位后侧的工作位置;以及,
    第一驱动装置,驱动连接所述片间焊带夹具,以设置为驱动所述片间焊带夹具部件在所述放料位置与所述工作位置之间移动,使得所述多条片间焊带自所述放料位置被运送至所述布设段。
  14. 如权利要求13所述的太阳能电池焊接机,其中,所述片间焊带夹具包括前夹具和后夹具,所述放料位置于所述工作位置之间还具有等待位置;所述第一驱动装置包括前驱动部件和后驱动部件,所述前驱动部件驱动连接所述前夹具,以设置为驱动所述前夹具在所述放料位置与所述等待位置之间移动,以使得所述多条片间焊带自所述放料位置运被送至所述等待位置,所述后驱动部件驱动连接所述后夹具,以设置为去驱动所述后夹具在所述等待位置和所述工作位置之间移动,以使得所述多条片间焊带自所述等待位置被运送至所述工作位置。
  15. 如权利要求14所述的太阳能电池焊接机,其中,所述片间焊带布设装置还包括焊带整理组件,所述焊带整理组件邻接于所述放料位置设置,设置为对焊带原料进行牵引拉直、折弯及切断处理,以在所述放料位置处形成多条所述片间焊带。
  16. 如权利要求12所述的太阳能电池焊接机,其中,所述串间焊带布设装置包括:
    安装座,设于所述机座;
    串间焊带拾取件,设置为拾取串间焊带,所述串间焊带拾取件可活动地安装于所述安装座,以具有活动行程;以及,
    第二驱动装置,驱动连接所述串间焊带拾取件,以设置为驱动所述串间焊带拾取件在所述安装座上活动,使得待下料的所述串间焊带被运送至所述布设段。
  17. 如权利要求16所述的太阳能电池焊接机,其中,所述串间焊带布设装置还包括牵引架,所述牵引架设于所述安装座并架设于所述布设段的上方,所述牵引架上开设有开口向上的限位槽,所述限位槽呈长形且沿横向延伸,以设置为承载待下料的串间焊带;所述串间焊带拾取件沿横向延伸,且对应设置于所述限位槽上方,所述串间焊带拾取件具有沿前后以及上下向的活动行程,所述第二驱动装置驱动所述串间焊带拾取件沿前后以及上下向移动,以设置为将所述限位槽中的串间焊带运送至所述布设段。
  18. 如权利要求17所述的太阳能电池焊接机,其中,所述串间焊带布设装置还包括牵引夹具、牵引驱动装置和切断部件,所述牵引夹具沿横向可活动地安装于所述牵引架,以具有位于所述限位槽一端的起始位置、以及位于所述限位槽另一端的终止位置,所述切断部件设于所述牵引架且邻接于所述起始位置处设置,所述牵引夹具设置为夹持焊带原料的自由端,所述牵引驱动装置驱动连接所述牵引夹具,以设置为驱动所述牵引夹具在所述起始位置和所述终止位置之间移动,使得所述焊带原料的自由端自所述起始位置被牵引至所述终止位置,所述切断部件设置为切断所述焊带原料以形成所述串间焊带。
  19. 如权利要求18所述的太阳能电池焊接机,其中,所述牵引驱动装置包括设于所述限位槽下方的皮带,所述皮带的延伸方向与所述限位槽平行,所述皮带上设有滑块,所述牵引夹具设于所述限位槽上侧,且下部连接于所述皮带。
  20. 如权利要求12所述的太阳能电池焊接机,其中,还包括电池片的下料机构以及焊接机构,所述下料机构设于所述焊带布设工位前侧,设置为将电池片铺设于所述传输装置上,所述焊接机构设于所述焊带布设工位后侧,设置为对由所述传输装置传送至焊接工位的电池片和焊带进行焊接处理。
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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090056784A1 (en) * 2005-12-30 2009-03-05 Hubert Reinisch Solar cell connecting apparatus, strip retaining apparatus and transport apparatus for a solar cell connecting apparatus
EP2269757A1 (de) * 2009-06-30 2011-01-05 Feintool Intellectual Property AG Vorrichtung zum Verbinden, insbesondere Löten, eines Verbinders mit einer Solarzelle mit einer Reinigungseinrichtung
CN105789359A (zh) * 2016-03-29 2016-07-20 晶澳(扬州)太阳能科技有限公司 一种双面太阳能电池组件的制作方法
CN107199383A (zh) * 2017-07-20 2017-09-26 常州天合光能有限公司 一种光伏串焊机及电池串的焊接方法
CN108687418A (zh) * 2017-04-04 2018-10-23 天合光能股份有限公司 一种太阳电池的焊带连接方法
CN108723654A (zh) * 2018-07-04 2018-11-02 无锡奥特维科技股份有限公司 电池片串焊机

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107958941A (zh) * 2016-10-17 2018-04-24 阿特斯阳光电力集团有限公司 太阳能电池片及太阳能电池组件
CN207587743U (zh) * 2017-06-07 2018-07-06 苏州携创新能源科技有限公司 太阳能电池光伏模块及太阳能电池光伏组件
CN207205618U (zh) * 2017-09-02 2018-04-10 无锡先导智能装备股份有限公司 全自动汇流条焊接机
CN207909906U (zh) * 2018-03-01 2018-09-25 无锡市正罡自动化设备有限公司 一种汇流带的搭焊装置及汇流带与电池串互联的焊接设备
CN109148631A (zh) * 2018-09-26 2019-01-04 晶科能源科技(海宁)有限公司 一种双面双玻光伏组件
CN109014691A (zh) * 2018-10-29 2018-12-18 无锡先导智能装备股份有限公司 焊接设备
CN210997130U (zh) * 2019-01-31 2020-07-14 武汉三工智能装备制造有限公司 电池片的焊带布设机构及太阳能电池片焊接机

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090056784A1 (en) * 2005-12-30 2009-03-05 Hubert Reinisch Solar cell connecting apparatus, strip retaining apparatus and transport apparatus for a solar cell connecting apparatus
EP2269757A1 (de) * 2009-06-30 2011-01-05 Feintool Intellectual Property AG Vorrichtung zum Verbinden, insbesondere Löten, eines Verbinders mit einer Solarzelle mit einer Reinigungseinrichtung
CN105789359A (zh) * 2016-03-29 2016-07-20 晶澳(扬州)太阳能科技有限公司 一种双面太阳能电池组件的制作方法
CN108687418A (zh) * 2017-04-04 2018-10-23 天合光能股份有限公司 一种太阳电池的焊带连接方法
CN107199383A (zh) * 2017-07-20 2017-09-26 常州天合光能有限公司 一种光伏串焊机及电池串的焊接方法
CN108723654A (zh) * 2018-07-04 2018-11-02 无锡奥特维科技股份有限公司 电池片串焊机

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