CN218173615U - Insulating strip feeding device - Google Patents
Insulating strip feeding device Download PDFInfo
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- CN218173615U CN218173615U CN202222093401.9U CN202222093401U CN218173615U CN 218173615 U CN218173615 U CN 218173615U CN 202222093401 U CN202222093401 U CN 202222093401U CN 218173615 U CN218173615 U CN 218173615U
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- bottom plate
- plate
- guide rail
- strip
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Abstract
The utility model discloses an insulated strip feeding device, including guide rail set spare, feed box subassembly, the subassembly and the PMKD of blowing, install guide rail set spare directly over the PMKD, guide rail set spare includes movable bottom plate and linear guide rail, but movable bottom plate reciprocating motion on linear guide rail top, detachable feed box subassembly is installed to movable bottom plate top, at least a set of lifting unit is still installed to movable bottom plate top, is provided with the holding tank that contains the bar and place the board in the feed box subassembly, and lifting unit drives the bar and places the lift of board, and the bar is placed the lift and is driven the insulated strip lift in the holding tank. The combination of board, curb plate and baffle is placed to the feed box subassembly, the bar, has formed the holding tank, has realized the large capacity storage insulated strip of feed box, has effectively improved and has supplied membrane efficiency, and lifting unit has driven the rising of insulated strip, has realized the quick supply of insulated strip, and the sucking disc of deuterogamy top realizes supplying the membrane fast.
Description
Technical Field
The utility model relates to a photovoltaic product production facility technical field specifically is an insulating strip feeding device.
Background
The tile-stacked solar module is prepared by slicing the traditional cell (single crystal cell, polycrystalline cell, etc.), connecting each small piece in a front-back lamination mode, wherein the arrangement mode is generally horizontal or vertical, connecting the small pieces in series/parallel by using a special conductive adhesive material, and laminating and packaging. An insulating strip needs to be placed below the bus bar on the laminated solar module, so that the insulation level of the packaging material at the bus bar position is improved, and the packaging layer is prevented from being broken down due to overlarge current of the bus bar.
Current insulated strip is cut by the membrane book and is formed, then lay on the workstation by the manual work, and the manual work provides the insulated strip, and efficiency is too low to when the insulated strip adhesion, the manual separation is inconvenient, whole process manual operation, degree of automation is lower. Therefore, an insulation bar feeding apparatus is required to solve the technical problem.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an insulating strip feeding device to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides an insulating strip feeding device, includes guide rail set spare, feed box subassembly, the subassembly and the PMKD of blowing, install guide rail set spare directly over the PMKD, guide rail set spare is including activity bottom plate and linear guide rail, but activity bottom plate reciprocating motion on linear guide rail, detachable feed box subassembly is installed to activity bottom plate top, at least a set of lifting unit is still installed to activity bottom plate top, is provided with the holding tank that contains the bar and place the board in the feed box subassembly, and lifting unit drives the lift that the board was placed to the bar, and the insulating strip that the board was placed in the lift drive holding tank of bar goes up and down.
Preferably, at least one set of spacing subassembly is still installed to the movable bottom plate top, the feed box subassembly passes through the spacing subassembly and slides and get into the movable bottom plate top, and the feed box subassembly is through at least two sets of hasp fixed mounting in the movable bottom plate top, the last lift recess that has seted up of movable bottom plate, the installation in the movable bottom plate top of lift recess run-through formula of lift subassembly, it is provided with the link to keep away from lift recess side on the movable bottom plate, the cylinder is installed to the below of movable bottom plate, the output of cylinder with the link is connected, photoelectric detection equipment is still installed to the movable bottom plate afterbody, the subassembly of movable bottom plate top installation all carries out reciprocating motion with the movable bottom plate together.
Preferably, the feeding box assembly comprises a feeding box bottom plate, a side plate, a baffle and a strip-shaped placing plate, the strip-shaped placing plate is installed between the side plate and the baffle to form a containing groove, the strip-shaped placing plate is movably connected between the side plate and the baffle, an insulating strip is placed between the side plate and the baffle and above the strip-shaped placing plate, the bottom of the side plate and the bottom of the baffle are fixedly installed at the top of the feeding box bottom plate, the feeding box bottom plate is directly connected with the top of the movable bottom plate, and a handle is further installed on the side, away from the photoelectric detection equipment, of the feeding box assembly.
Preferably, the distance between the side plates and the baffle plate is adjustable, so that the insulating strips with different widths are adapted.
Preferably, the lifting assembly comprises a lifting plate, a driving structure and a transmission assembly, the lifting plate is driven by the driving structure to vertically move, and the strip-shaped plate is placed above the top of the lifting plate.
Preferably, the blowing assembly comprises a blowing block, the blowing assembly is fixedly mounted above the movable bottom plate through a supporting seat, the supporting seat is fixedly mounted above the movable bottom plate, and the blowing block and a detection rod in the photoelectric detection device are located on the same horizontal line.
Preferably, the guide rail assembly further comprises a limiting block, the limiting block is installed at the front end of the linear guide rail, and the limiting block is fixedly installed above the fixed bottom plate.
Preferably, the material grabbing mechanism is further arranged above the material supply box assembly, at least one group of suckers are arranged in the material grabbing mechanism, and when the suckers adsorb the insulating strips, the blowing blocks can blow the insulating strips to enable the insulating strips to be layered.
Preferably, the photoelectric detection device adopts a diffuse reflection photoelectric detection device, and is used for detecting whether the insulating strip reaches a preset position.
Compared with the prior art, the beneficial effects of the utility model are that: a device for supplying insulating strips is characterized in that a movable bottom plate, a linear guide rail and an air cylinder are arranged in a guide rail assembly, the movable bottom plate is driven to linearly reciprocate on the linear guide rail through the output of the air cylinder, a feeding box assembly on the movable bottom plate is matched with the movable bottom plate to be integrally popped out, the feeding box assembly and the movable bottom plate are of a detachable structure, the feeding box assembly slides out of the movable bottom plate through opening a fixed lock catch, the feeding box assembly can be replaced subsequently, the movable bottom plate is reset through the air cylinder, the insulating strips can be quickly supplemented through the replaced feeding box assembly, and non-stop material change is realized, so that the supply efficiency of the insulating strips is improved, the feeding box assembly is adopted, a strip placing plate, a combination of side plates and baffle plates form a holding tank, the large-capacity storage insulating strips of the feeding box are realized, the film supply efficiency is effectively improved, a lifting assembly drives the rising of the insulating strips to realize the quick supply of the insulating strips, the insulating strips are matched with suckers above to realize the quick film supply, a blowing assembly is adopted, the insulating strips are layered through a blowing block, and the insulating strips are prevented from being adhered when the suckers above the insulating strips are adsorbed,
drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the provided drawings without creative efforts.
FIG. 1 is a schematic view of the axial measurement structure of the film supply device of the present invention;
fig. 2 is a schematic view of the axial measurement structure of the guide rail assembly of the present invention;
FIG. 3 is a schematic cross-sectional structural view of the guide rail assembly of the present invention;
FIG. 4 is a schematic view of the structure of the feeding box assembly of the present invention;
fig. 5 is a schematic side sectional structural view of the feeding box assembly of the machine body of the present invention;
fig. 6 is a schematic view of the axial structure of the feeding box assembly of the machine body of the present invention;
fig. 7 is the schematic view of the combined structure of the film supplying device and the material grabbing mechanism of the present invention.
In the figure: 1. a guide rail assembly; 101. a linear guide rail; 102. a limiting component; 103. a movable base plate; 104. A lifting groove; 105. a connecting end; 106. a cylinder; 107. an output end; 108. a limiting block; 2. a feed box assembly; 201. a handle; 202. a baffle plate; 203. a side plate; 204. a feeding box bottom plate; 205. a strip-shaped placing plate; 3. a blowing assembly; 301. an air blowing block; 4. a lifting assembly; 401. a lifting plate; 402. a drive structure; 403. a transmission assembly; 5. a photodetecting device; 6. fixing a bottom plate; 7. a material grabbing mechanism; 701. And (4) sucking discs.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts all belong to the protection scope of the present invention.
The utility model provides an insulating strip feeding device please refer to 1-4, include guide rail set spare 1, feed box subassembly 2, blow subassembly 3 and PMKD 6, install guide rail set spare 1 directly over PMKD 6, guide rail set spare 1 includes movable bottom plate 103 and linear guide rail 101, detachable feed box subassembly 2 is installed to movable bottom plate 103 top to both carry out reciprocating motion in linear guide rail 101 top together, live still install an at least set of lifting unit 4 in movable bottom plate 103 top, be provided with the holding tank that contains the bar and place board 205 in the feed box subassembly 2, lifting unit 4 drives the bar and places the lift of board 205, and the bar is placed the lift of board 205 and is driven the insulating strip lift in the holding tank.
In this embodiment: adopted PMKD 6, PMKD 6 is the trompil, the fluting board, the fixed mounting of the partial structure of guide rail assembly 1 has been satisfied, linear guide rail 101 and activity bottom plate 103 cooperation in the guide rail assembly 1, activity bottom plate 103 passes through the output of cylinder 106 at linear guide rail 101, activity bottom plate 103 is at linear guide rail 101 top reciprocating motion, the reciprocating motion of feed box has been satisfied, thereby be convenient for the dismantlement and the change of feed box, it goes up and down to drive lifter plate 401 through lifting unit 4, the lift of board 205 is placed in lifter plate 401's lift drive strip, the lift that the lift of board 205 was placed in the strip drives the lift of insulating strip, the actual membrane demand that supplies has been satisfied.
Referring to fig. 1-3, at least one group of limiting assemblies 102 is further installed above the movable bottom plate 103, the feeding box assembly 2 slides into the upper portion of the movable bottom plate 103 through the limiting assemblies 102, the feeding box assembly 2 is fixedly installed above the movable bottom plate 103 through at least two groups of latches, a lifting groove 104 is formed in the movable bottom plate 103, the lifting assembly 4 is installed above the movable bottom plate 103 in a penetrating manner through the lifting groove 104, a connecting end 105 is arranged on the side, far away from the lifting groove 104, of the movable bottom plate 103, an air cylinder 106 is installed below the movable bottom plate 103, an output end 107 of the air cylinder 106 is connected with the connecting end 105, a photoelectric detection device 5 is further installed at the tail portion of the movable bottom plate 103, and the assemblies installed above the movable bottom plate 103 and the movable bottom plate 103 perform reciprocating movement together.
In this implementation: spacing subassembly 102 forms spacing interval with movable bottom plate 103, feeding box subassembly 2 gets into movable bottom plate 103 top through spacing interval, lift recess 104 satisfies that drive assembly 403 part is located the top of movable bottom plate 103, the part is located the below of movable bottom plate 103, thereby it rises to movable bottom plate 103 top from movable bottom plate 103 below to have satisfied lifter plate 401 at drive assembly 403, satisfy the in-service use demand, link 105 and movable bottom plate 103 formula structure as an organic whole, the output 107 of cylinder 106 exports link 105, make movable bottom plate 103 pop out on linear guide rail 101, the reciprocating motion of cylinder 106 makes movable bottom plate 103 carry out reciprocating motion, thereby drive the feeding box subassembly 2 of top and move to suitable position, be convenient for take out feeding box subassembly 2, the lifting assembly 4 of movable bottom plate 103 top, spacing subassembly 102, feeding box subassembly 2, blowing subassembly 3 and photoelectric detection equipment 5 all can pop out along with movable bottom plate 103.
Referring to fig. 4-6, the supply box assembly 2 includes a supply box bottom plate 204, a side plate 203, a baffle plate 202, and a strip-shaped placing plate 205, the strip-shaped placing plate 205 is installed between the side plate 203 and the baffle plate 202, the strip-shaped placing plate 205 is movably connected between the side plate 203 and the baffle plate 202, and an insulating strip is placed between the side plate 203 and the baffle plate 202 and above the strip-shaped placing plate 205, the lower portions of the side plate 203 and the baffle plate 202 are fixedly installed above the supply box bottom plate 204, and the supply box bottom plate 204 is directly connected with the upper portion of the movable bottom plate 103, and the side of the supply box assembly 2 away from the photodetecting device 5 is installed with a handle 201.
In the implementation: offer the recess that suits with lifter plate 401 position on feed box bottom plate 204, lifter plate 401 can place the board 205 through this recess and bar when rising and be connected, the board 205 is used for placing the insulated strip to the bar, curb plate 203 is whole board, baffle 202 is solitary platelet, feed box bottom plate 204 is sliding connection with activity bottom plate 103, feed box bottom plate 204 is fixed through the hasp with activity bottom plate 103, when dismantling feed box subassembly 2, only need open the hasp, can dismantle feed box subassembly 2, handle 201 is convenient for artifically takes feed box subassembly 2 out from activity bottom plate 103 top, make change efficiency higher.
Referring to fig. 4, the distance between the side plate 203 and the baffle 202 is adjustable to adapt to insulating strips with different widths.
In this implementation: the bottom plate 204 of the feeding box is provided with a plurality of groups of through holes, the baffle 202 can select the installation through holes according to the insulation strips with different widths, and the distance between the baffle 202 and the side plate 203 is selected, so that the feeding requirement of the insulation strips with different widths is met.
Referring to fig. 5-6, the lifting assembly 4 includes a lifting plate 401, a driving structure 402 and a transmission assembly 403, the lifting plate 401 is driven by the driving structure 402 to move vertically, and a strip-shaped placing plate 205 is disposed above the top of the lifting plate 401.
In the implementation: the driving structure 402 is internally provided with a servo motor, a speed reducing motor, a coupler and a transmission shaft, the output of the servo motor drives the transmission shaft to output, the transmission shaft drives belt wheels in the transmission assembly 403 to rotate, the lifting plate 401 lifts on the linear guide rail, the lifting of the lifting plate 401 drives the bars to lift the plate 205, and therefore the lifting of the insulating bars is realized.
Referring to fig. 1, 4 and 6, the blowing assembly 3 includes a blowing block 301, the blowing assembly 3 is fixedly mounted above the movable bottom plate 103 through a supporting seat, the supporting seat is fixedly mounted above the movable bottom plate 103, and the blowing block 301 and the detecting rod in the photoelectric detecting device 5 are located on the same horizontal line.
In the implementation: the air blowing block 301 blows air to the insulating strips to enable the insulating strips to be layered, and the situation that the insulating strips are adhered when the suckers 701 above adsorb the insulating strips is avoided.
Referring to fig. 3, the guide rail assembly 1 further includes a limiting block 108, the limiting block 108 is installed at the front end of the linear guide rail 101, and the limiting block 108 is fixedly installed above the fixed base plate 6.
In this implementation, the limiting block 108 limits the movable bottom plate 103 during reciprocating movement, and prevents the movable bottom plate 103 from popping up and damaging.
Referring to fig. 7, a material grabbing mechanism 7 is further disposed above the material supplying box assembly 2, at least one set of suction cups 701 is disposed in the material grabbing mechanism 7, and when the suction cups 701 suck the insulating strips, the air blowing block 301 blows air to the insulating strips to layer the insulating strips.
The utility model discloses still provide a set of embodiment: the material grabbing mechanism 7 and the feeding device can suck the insulating strips through the suckers 701 of the material grabbing mechanism 7, and the insulating strips are sent to corresponding positions through the internal structure of the material grabbing mechanism 7.
The side edge of the bottom of the guide rail component 1 is provided with a drag chain structure, and cables and air pipes in the film supply device are uniformly arranged in the drag chain structure.
In the implementation: due to the existence of the reciprocating movement, the lines, air pipes and the like connected with the reciprocating movement need to be protected, and then a drag chain is needed, and the cables and the air pipes are arranged in the drag chain, so that the reciprocating movement is realized.
Referring to fig. 1, the photoelectric detection device 5 employs a diffuse reflection photoelectric detection device 5 to detect whether the insulation strip is lifted to a predetermined position.
In this implementation: the photoelectric detection device 5 detects the height of the insulating strip through the internal detection rod, and when the insulating strip reaches a specified position, a signal is sent to the lifting assembly 4, so that the lifting plate 401 in the lifting assembly 4 stops, and the sucking disc 701 above the insulating strip is enabled to adsorb.
In the embodiment, the insulating strip supply device drives the movable bottom plate 103 to linearly reciprocate on the linear guide rail 101 through the movable bottom plate 103 in the guide rail assembly 1, the linear guide rail 101 and the air cylinder 106 through the output of the air cylinder 106, the feeding box assembly 2 on the movable bottom plate 103 is matched with the movable bottom plate 103 to be integrally popped out, the feeding box assembly 2 and the movable bottom plate 103 are of a detachable structure, the feeding box assembly 2 is slid out from the movable bottom plate 103 by opening a fixed lock catch, the feeding box assembly 2 can be replaced later, the movable bottom plate 103 is reset through the air cylinder 106, the replaced feeding box assembly 2 can quickly supplement the insulating strips, and the non-stop material replacement is realized, so that the supply efficiency of the insulating strips is improved, the feeding box assembly 2 is adopted, the strip placement plate 205, the combination of the side plate 203 and the baffle 202 is formed, an accommodating groove is formed, the large-capacity storage insulating strips of the feeding box are realized, the film supply efficiency is effectively improved, the lifting assembly 4 drives the insulating strips to ascend, the insulating strips are quickly supplied, the insulating strips are matched with the sucking disc 701 above the sucking disc 701, the film is quickly supplied, the air blowing assembly 3 is adopted, and the insulating strips are prevented from adhering to the sucking disc 701,
although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (9)
1. The utility model provides an insulating strip feeding device, includes guide rail set spare (1), feed box subassembly (2), blows subassembly (3) and PMKD (6), its characterized in that: install guide rail set spare (1) directly over PMKD (6), guide rail set spare (1) is including activity bottom plate (103) and linear guide rail (101), but activity bottom plate (103) is at linear guide rail (101) top reciprocating motion, detachable feed box subassembly (2) are installed to activity bottom plate (103) top, at least a set of lifting unit (4) are still installed to activity bottom plate (103) top, are provided with the holding tank that contains the bar and place board (205) in feed box subassembly (2), and lifting unit (4) drive the bar and place the lift of board (205), and the insulating strip that the inslot was held is held in the lift drive that the bar was placed board (205) goes up and down.
2. The insulating strip supplying apparatus of claim 1, wherein: at least one set of spacing subassembly (102) is still installed to activity bottom plate (103) top, feed box subassembly (2) slide through spacing subassembly (102) and get into activity bottom plate (103) top, and feed box subassembly (2) are through at least two sets of hasp fixed mounting in activity bottom plate (103) top, lift recess (104) have been seted up on activity bottom plate (103), lift subassembly (4) through lift recess (104) run-through install in activity bottom plate (103) top, it is provided with link (105) to keep away from lift recess (104) side on activity bottom plate (103), cylinder (106) are installed to the below of activity bottom plate (103), output (107) of cylinder (106) with link (105) are connected, photoelectric detection equipment (5) are still installed to activity bottom plate (103) afterbody, the subassembly of activity bottom plate (103) top installation all carries out reciprocating motion with activity bottom plate (103) together.
3. The insulating tape supplying apparatus of claim 1, wherein: the feeding box assembly (2) comprises a feeding box bottom plate (204), side plates (203), a baffle plate (202) and a strip-shaped placing plate (205), the strip-shaped placing plate (205) is installed between the side plates (203) and the baffle plate (202) to form an accommodating groove, the strip-shaped placing plate (205) is movably connected between the side plates (203) and the baffle plate (202), an insulating strip is placed between the side plates (203) and the baffle plate (202) and above the strip-shaped placing plate (205), the bottoms of the side plates (203) and the baffle plate (202) are fixedly installed at the top of the feeding box bottom plate (204), the feeding box bottom plate (204) is directly connected with the top of the movable bottom plate (103), and a handle (201) is further installed on the side, away from the photoelectric detection equipment (5), of the feeding box assembly (2).
4. An insulating tape supplying apparatus according to claim 3, wherein: the distance between the side plate (203) and the baffle (202) is adjustable, and the insulating strips with different widths are adapted.
5. The insulating tape supplying apparatus of claim 1, wherein: the lifting assembly (4) comprises a lifting plate (401), a driving structure (402) and a transmission assembly (403), the lifting plate (401) is driven by the driving structure (402) to vertically move, and a strip-shaped placing plate (205) is arranged above the top of the lifting plate (401).
6. The insulating tape supplying apparatus of claim 1, wherein: the blowing assembly (3) comprises a blowing block (301), the blowing assembly (3) is fixedly installed above the movable bottom plate (103) through a supporting seat, the supporting seat is fixedly installed above the movable bottom plate (103), and the blowing block (301) and a detection rod in the photoelectric detection device (5) are located on the same horizontal line.
7. The insulating tape supplying apparatus of claim 1, wherein: the guide rail assembly (1) further comprises a limiting block (108), the limiting block (108) is installed at the front end of the linear guide rail (101), and the limiting block (108) is fixedly installed above the fixed bottom plate (6).
8. An insulating tape supplying apparatus according to claim 6, wherein: the feeding box is characterized in that a material grabbing mechanism (7) is further arranged above the feeding box component (2), at least one group of suckers (701) is arranged in the material grabbing mechanism (7), and when the suckers (701) adsorb the insulating strips, the air blowing block (301) can blow air to the insulating strips to enable the insulating strips to be layered.
9. An insulating tape supplying apparatus according to claim 2, wherein: the photoelectric detection device (5) adopts a diffuse reflection photoelectric detection device (5) and is used for detecting whether the insulating strip reaches a preset position.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222093401.9U CN218173615U (en) | 2022-08-10 | 2022-08-10 | Insulating strip feeding device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202222093401.9U CN218173615U (en) | 2022-08-10 | 2022-08-10 | Insulating strip feeding device |
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Publication Number | Publication Date |
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CN218173615U true CN218173615U (en) | 2022-12-30 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202222093401.9U Active CN218173615U (en) | 2022-08-10 | 2022-08-10 | Insulating strip feeding device |
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CN (1) | CN218173615U (en) |
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2022
- 2022-08-10 CN CN202222093401.9U patent/CN218173615U/en active Active
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