CN219703668U - Solar energy aluminum frame high-efficient cutting device - Google Patents
Solar energy aluminum frame high-efficient cutting device Download PDFInfo
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- CN219703668U CN219703668U CN202320352055.3U CN202320352055U CN219703668U CN 219703668 U CN219703668 U CN 219703668U CN 202320352055 U CN202320352055 U CN 202320352055U CN 219703668 U CN219703668 U CN 219703668U
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- lifting
- discharging
- traction
- section bar
- material distributing
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Abstract
The utility model relates to a solar aluminum frame efficient cutting device which comprises a material distributing mechanism, a material feeding mechanism, a double-head sawing machine, a material discharging mechanism and a material receiving mechanism which are sequentially arranged; the material distributing mechanism comprises a material distributing conveying belt (102), an alignment baffle (103) and a grouping device, wherein the material distributing conveying belt is arranged on a material distributing rack (101); the feeding mechanism comprises a feeding roller way which consists of a plurality of rollers (201) arranged on the material distributing frame (101) and is consistent with the length direction of the long section bar; the discharging mechanism comprises a discharging cylinder (401) horizontally arranged on the double-head sawing machine body. The utility model has the advantages of simple structure, high section bar cutting efficiency, high cutting precision and good safety.
Description
Technical Field
The utility model relates to a solar aluminum frame efficient cutting device, and belongs to the technical field of section bar cutting.
Background
When the frame of the solar battery in the photovoltaic field is processed, the long section bar is firstly shortened, and two ends of the obtained section bar for producing the frame are provided with symmetrical 45-degree bevel angles.
At present, the solar aluminum frame is produced by manually feeding the profile into a double-head sawing machine for sawing to obtain a semi-finished frame with two ends at an oblique angle of 45 degrees, and only a single aluminum profile can be cut during feeding each time, so that the cutting efficiency is low; if the profile is manually controlled to be not aligned in place, the precision deviation of the cutting position is easy to occur, so that the cutting quality of the profile is unqualified and even scrapped; if the situation that the weight of a single aluminum profile is heavy is met, the operation needs to be carried out by multiple persons in a cooperative mode, the labor intensity of workers is high, fatigue is easy to generate, and great potential safety hazards exist.
Disclosure of Invention
The utility model aims to overcome the defects and provide the solar aluminum frame efficient cutting device which is simple in structure, high in section bar cutting efficiency, high in cutting precision and good in safety.
The purpose of the utility model is realized in the following way:
a solar aluminum frame efficient cutting device comprises a material distributing mechanism, a feeding mechanism, a double-head sawing machine, a discharging mechanism and a material receiving mechanism which are sequentially arranged;
the material distributing mechanism comprises a material distributing conveying belt, an alignment baffle and a grouping device which are arranged on the material distributing rack; the grouping device comprises a grouping stop block arranged on the material distributing frame in a lifting manner through an air cylinder, a lifting support arranged on the material distributing frame in a horizontal sliding manner, and a plurality of supporting and lifting seat groups arranged on the lifting support in a lifting manner; each supporting and lifting seat group comprises n lifting blocks which are controlled by independent air cylinders in a lifting mode, the top surfaces of the lifting blocks are provided with grooves for storing long sections, and the bottom surfaces of the grooves are provided with bottom grooves for storing the side edges of the long sections;
the feeding mechanism comprises a feeding roller way which consists of a plurality of rollers arranged on a material distributing frame and is consistent with the length direction of the long section bar, a traction bracket consistent with the length direction of the long section bar is arranged at the tail end of the feeding roller way, a traction seat horizontally sliding on the traction bracket, a traction platform lifting on the traction seat, and n groups of clamping parts are arranged on the traction platform; each group of clamping parts comprises a clamping cylinder, a fixed clamping block and a movable clamping block, and the clamping cylinder drives the movable clamping block and the fixed clamping block to control the clamping or releasing of the long section bar;
the discharging mechanism comprises a discharging cylinder horizontally arranged on the double-head sawing machine body, a discharging platform which is pushed by the discharging cylinder and is arranged on the double-head sawing machine body in a sliding way through a sliding rail, and a discharging frame which is arranged on the discharging platform in a lifting way through the cylinder; the two ends of the discharging frame are respectively provided with a first discharging material level and a second discharging material level; the first discharging position and the second discharging position are positioned in the middle of the short section, and n groups of lifting blocks are arranged.
Further, the minimum value of n is 2.
Further, the top of grouping dog is equipped with the step structure, and the top surface of step is higher than the conveying plane of dividing the material conveyer belt, and the bottom surface is less than the conveying plane of dividing the material conveyer belt, is equipped with the protruding portion that is used for overturning long section bar on the bottom surface of step.
Further, a nut meshed with a screw rod arranged on the material distributing frame is arranged at the bottom of the lifting support, and the screw rod is driven to rotate by a motor to control the material distributing frame to horizontally reciprocate in a direction perpendicular to the length direction of the long section bar.
Further, a gear driven by a motor is arranged on the traction seat, a horizontal sliding rail and a horizontal rack are arranged on the traction support, and the traction seat is driven to horizontally move through meshing of the gear and the horizontal rack.
Further, a vertical sliding rail and a vertical rack are arranged on the traction platform, and a gear driven by a motor is arranged on the traction seat and meshed with the vertical rack to drive the traction platform to move up and down.
Further, two saw cutting heads of the double-head saw cutting machine are sequentially arranged in the length direction of the long section bar and are in a straight line with a feeding roller way of the feeding mechanism, the distance between the two saw cutting heads is consistent with the length of the cut short section bar, saw blades of the two saw cutting heads respectively form an angle of 45 degrees to the outside, and a horizontal pushing block driven by an air cylinder and a vertical pressing block driven by n independent air cylinders are respectively arranged at the saw cutting positions of the two saw cutting heads.
Further, the material receiving mechanism comprises a material discharging conveying belt arranged at one side of the double-head sawing machine, and a transfer bracket is arranged between the material discharging conveying belt and the double-head sawing machine; the transfer bracket comprises two groups of symmetrically arranged supporting blocks, the distance between the two groups of supporting blocks is not greater than the length of the short section, and each group of supporting blocks comprises n supporting blocks.
Compared with the prior art, the utility model has the beneficial effects that:
the long section sawing device is simple in structure, and the long section is subjected to multiple pre-grouping by adopting the material distributing mechanism, the material feeding mechanism, the double-head sawing machine and the material discharging mechanism which are sequentially arranged, so that the sawing efficiency of the long section is greatly improved by sawing according to groups; the automation degree of the sawing process is high, and the sawing production safety is improved while the sawing precision is ensured.
Drawings
Fig. 1 is a plan layout view of a solar aluminum frame efficient cutting device.
Fig. 2 is a right side view of a grouping block structure of a material distributing mechanism of the solar aluminum frame efficient cutting device.
Fig. 3 is a right side view of a mounting structure of a supporting and lifting seat set of a distributing mechanism of the high-efficiency cutting device for the solar aluminum frame.
Fig. 4 is a right side view of a roller structure of a feeding mechanism of the high-efficiency cutting device for the solar aluminum frame.
Fig. 5 is a right side view of a mounting structure of a traction platform of a feeding mechanism of the high-efficiency cutting device for the solar aluminum frame.
Fig. 6 is a right side view of a sawing and clamping structure of a double-head sawing machine of the solar aluminum frame efficient cutting device.
Fig. 7 is a schematic diagram of a discharging mechanism of the efficient cutting device for the solar aluminum frame.
Wherein:
a material rack 10, a long section bar 20 and a short section bar 30;
a material distributing frame 101, a material distributing conveyer belt 102, an alignment baffle 103, a grouping stop block 104, a lifting bracket 105, a lifting seat group 106, a protruding part 107, a screw rod 108, a lifting block 109, a groove 110 and a bottom groove 111;
roller 201, traction support 202, traction seat 203, traction platform 204, horizontal sliding rail 205, horizontal rack 206, vertical sliding rail 207, vertical rack 208, clamping cylinder 209, fixed clamping block 210, movable clamping block 211, annular groove 212, annular bottom groove 213;
sawing head 301, horizontal pushing block 302 and vertical pressing block 303;
a discharge cylinder 401, a discharge platform 402, a discharge rack 403, a first discharge level 404 and a second discharge level 405;
a discharge conveyor 501 and a supporting block 502.
Description of the embodiments
Referring to fig. 1-7, the utility model relates to a solar aluminum frame efficient cutting device, which comprises a material distributing mechanism, a material feeding mechanism, a double-head sawing machine, a material discharging mechanism and a material receiving mechanism which are sequentially arranged; according to different sawing efficiency requirements, n can be set to be an integer more than 2, and in the embodiment, n is set to be 3, namely 3 long sections 20 are sawed synchronously;
the material distributing mechanism comprises a material distributing conveying belt 102, an alignment baffle 103 and a grouping device which are arranged on a material distributing frame 101; the grouping device comprises a grouping stop block 104 arranged on the material distributing frame 101 in a lifting manner through an air cylinder, a lifting bracket 105 horizontally arranged on the material distributing frame 101 in a sliding manner, and a plurality of lifting seat groups 106 arranged on the lifting bracket 105 in a lifting manner; the top of the grouping block 104 is provided with a step structure, the top surface of the step is higher than the conveying plane of the material distribution conveying belt 102, the bottom surface of the step is lower than the conveying plane of the material distribution conveying belt 102, and the bottom surface of the step is provided with a protruding part 107 for overturning the long section bar;
hoisting a bundle of long section bars onto a material frame, splitting the long section bars into single long section bars, and then using the height difference of the material frame 10 and the material distribution conveying belt 102 beside a material distribution mechanism, easily laying the long section bars 20 on the material distribution conveying belt 102 of the material distribution mechanism one by one, enabling two right-angle side edges of the long section bars 20 to be in contact with the material distribution conveying belt 102, and simultaneously pushing the long section bars 20 to an alignment baffle 103 arranged at the left end of a material distribution frame of the material distribution mechanism, so that one end of each long section bar 20 on the material distribution conveying belt 102 is aligned;
when the long section bar 20 is transported to the grouping block 104 by the grouping conveyor belt 102, the step structure of the grouping block 104 blocks the continuous movement of the long section bar 20, then the grouping block 104 is pushed by the air cylinder to ascend, the first long section bar 20 is lifted to be separated from the grouping conveyor belt 102, the first long section bar 20 is pre-overturned by the protruding part 107 on the step bottom surface of the grouping block 104, and the long section bar 20 can accurately enter the lifting groove of the lifting block 109; the material distribution conveyor belt 102 is reversed, all the long section bars 20 are moved backwards, the second long section bar 20 is moved backwards, a distance is left between the second long section bar 20 and the first long section bar 20, and the lifting block 109 can move up and down conveniently;
the bottom of the lifting bracket 105 is provided with a nut meshed with a screw rod 108 arranged on the material distributing frame 101, and the screw rod 108 is driven to rotate by a motor to control the material distributing frame 101 to horizontally reciprocate in a direction vertical to the length direction of the long section bar; each supporting and lifting seat group 106 comprises 3 lifting blocks 109 which are controlled by independent cylinders in a lifting mode, a groove 110 for storing long profiles 20 is formed in the top surface of each lifting block 109, and a bottom groove 111 for storing the side edges of the long profiles is formed in the bottom surface of each groove 110;
after the first long section bar 20 is supported by the grouping block 104, the material distributing frame 101 moves horizontally, so that a first lifting block 109 of the lifting seat group 106 is positioned right below the first long section bar 20, and then the first lifting block 109 is lifted to lift the first long section bar 20 from the grouping block 104; because the grouping block 104 has pre-turned the first long section bar 20, when the lifting block 109 lifts the long section bar 20, the single side edge of the long section bar 20 is easier to enter the bottom groove 111 to enable the long section bar 20 to be positioned quickly;
after the first lifting block 109 lifts the first long section bar 20, the grouping block 104 descends to a recovery position, the material distribution conveyor belt 102 advances to convey the second long section bar 20 to the grouping block 104, and the above process is repeated, and the second lifting block 109 lifts the second long section bar 20; repeating the above process, and the third lifting block 109 lifts the third long section bar 20, so that the three lifting blocks 109 of the lifting seat group 106 are completed to lift all 3 long section bars 20; the lifting support 105 moves horizontally to convey 3 long sections 20 to the roller 201 of the feeding roller way;
the feeding mechanism comprises a feeding roller way which consists of a plurality of rollers 201 arranged on a material distributing frame 101 and is consistent with the length direction of a long section bar, a traction bracket 202 which is consistent with the length direction of the long section bar is arranged at the tail end of the feeding roller way, a traction seat 203 which is horizontally and slidably arranged on the traction bracket 202, a traction platform 204 which is arranged on the traction seat 203 in a lifting manner, and 3 groups of clamping parts are arranged on the traction platform 204; a motor-driven gear is arranged on the traction seat 203, a horizontal sliding rail 205 and a horizontal rack 206 are arranged on the traction support 202, and the traction seat 203 is driven to move horizontally through the meshing of the gear and the horizontal rack 206; the traction platform 204 is provided with a vertical sliding rail 207 and a vertical rack 208, and the traction seat 203 is provided with a motor-driven gear which is meshed with the vertical rack 208 to drive the traction platform 204 to move up and down; each group of clamping parts on the traction platform 204 comprises a clamping cylinder 209, a fixed clamping block 210 and a movable clamping block 211, and the clamping cylinder 209 drives the movable clamping block 211 and the fixed clamping block 210 to control the clamping or releasing of the long section bar;
the lifting support 105 conveys 3 long sections 20 to a roller 201 of a feeding roller way, 3 annular grooves 212 are formed in the roller 201 and used for placing the 3 long sections 20, and annular bottom grooves 213 used for placing the side edges of the long sections 20 are formed in the bottoms of the annular grooves 212; the traction seat 203 moves to the upper part of the long section bar 20 on the feeding roller way, the traction platform 204 descends, 3 long section bars 20 are respectively positioned between the fixed clamping blocks 210 and the movable clamping blocks 211 of the 3 groups of clamping parts, the clamping cylinder 209 acts to drive the movable clamping blocks 211 to clamp the long section bars 20, and the traction platform 204 ascends; the traction seat 203 moves to enable 3 long section bars 20 to reach the sawing position of the double-head sawing machine, the traction platform 204 descends, the clamping cylinder 209 loosens the sawing position for placing 3 long section bars 20 into the double-head sawing machine, the traction platform 204 ascends, and the traction seat 203 moves to be above the long section bars 20 on the feeding roller way;
the two sawing heads 301 of the double-head sawing machine are sequentially arranged in the length direction of the long section bar and form a straight line with a feeding roller way of the feeding mechanism, the distance between the two sawing heads 301 is consistent with the length of the cut short section bar 30, saw blades of the two sawing heads 301 respectively form an angle of 45 degrees to the outside, and a horizontal pushing block 302 driven by an air cylinder and a vertical pressing block 303 driven by 3 independent air cylinders are respectively arranged at the sawing positions of the two sawing heads 301; after the feeding mechanism feeds 3 long sections 20 into the sawing position, 3 vertical pressing blocks 303 respectively press the 3 long sections 20 downwards, and meanwhile, the horizontal pushing blocks 302 laterally press the long sections 20 on the sawing position, so that the offset during sawing is prevented; then the saw blades of the two sawing heads are simultaneously pushed out outwards, and 3 short sections with two ends being symmetrically inclined at 45 degrees are sawed;
the discharging mechanism comprises a discharging cylinder 401 horizontally arranged on the double-head sawing machine body, a discharging platform 402 pushed by the discharging cylinder 401 and arranged on the double-head sawing machine body in a sliding way through a sliding rail, and a discharging frame 403 arranged on the discharging platform 402 in a lifting way through the cylinder; a first material outlet level 404 and a second material outlet level 405 are respectively arranged at two ends of the material outlet frame 403; the first material outlet position 404 and the second material outlet position 405 are positioned in the middle of the short section bar, and are respectively provided with 3 groups of lifting blocks 109, the top surface of each lifting block 109 is provided with a groove 110 for storing long section bar, and the bottom surface of each groove 110 is provided with a bottom groove 111 for storing the side edge of the long section bar;
the discharging platform 402 is horizontally moved to the position right below the short section bars 30, the discharging frame 403 is lifted, and the lifting blocks 109 on the first discharging position 404 lift the 3 cut short section bars 30 to be separated from the sawing position; the discharging platform 402 translates to the transfer bracket, so that 3 short sections 30 on the first discharging level 404 are positioned right above the transfer bracket supporting blocks 502, the discharging frame 403 descends, and two ends of the 3 short sections 30 on the first discharging level 404 span between two groups of supporting blocks 502 of the transfer bracket; the discharging platform 402 translates and resets to wait for the next discharging;
the clamping part of the traction platform 204 continuously clamps and moves the rest long section bars sawn on the rest feeding roller way to the sawing position of the double-head sawing machine; after sawing, lifting the next group of 3 short profile supports by the lifting block 109 on the first discharging position 404 of the discharging platform 402, and lifting the previous group of 3 short profile supports on the transferring bracket by the lifting block 109 on the second discharging position 405; the discharging platform 402 translates to the transferring bracket, the next group of 3 short sections on the first discharging position 404 and the previous group of 3 short sections on the second discharging position 405 are respectively placed on the transferring bracket and the discharging conveyor belt 501 along with the descending of the discharging frame 403, and the previous group of 3 short sections are translated to the receiving area by the discharging conveyor belt 501; repeating the above process until the sawing of all the 3 long sections is completed; when the feeding roller way is emptied, the feeding mechanism acts to start to execute sawing of the next group of 3 long section bars;
the material receiving mechanism comprises a material discharging conveying belt 501 arranged at one side of the double-head sawing machine, and a transfer bracket is arranged between the material discharging conveying belt 501 and the double-head sawing machine; the transfer bracket comprises two groups of symmetrically arranged supporting blocks 502, the distance between the two groups of supporting blocks 502 is not larger than the length of the short section bar, each group of supporting blocks 502 comprises n supporting blocks 109, the top surface of each supporting block 109 is provided with a groove 110 for storing the long section bar, and the bottom surface of each groove 110 is provided with a bottom groove 111 for storing the side edge of the long section bar; along with continuous sawing production, the lifting block 109 on the second material outlet position 405 of the material outlet mechanism continuously conveys the short section bars on the transit bracket lifting block 502 to the material outlet conveying belt 501, and the short section bars on the material outlet conveying belt 501 are packaged and put in storage after the angle of the short section bars is adjusted, so that sawing production is completed.
In addition: it should be noted that the above embodiment is only one of the optimization schemes of this patent, and any modification or improvement made by those skilled in the art according to the above concepts is within the scope of this patent.
Claims (8)
1. The utility model provides a high-efficient cutting device of solar energy aluminium frame, contains feed mechanism, feeding mechanism, double-end saw cuts machine, discharge mechanism and the material mechanism of receiving that sets up in proper order, its characterized in that:
the material distributing mechanism comprises a material distributing conveying belt (102), an alignment baffle (103) and a grouping device, wherein the material distributing conveying belt is arranged on a material distributing rack (101); the grouping device comprises a grouping stop block (104) arranged on the material distributing frame (101) in a lifting manner through an air cylinder, a lifting support (105) arranged on the material distributing frame (101) in a horizontal sliding manner, and a plurality of lifting seat groups (106) arranged on the lifting support (105) in a lifting manner; each supporting and lifting seat group (106) comprises n lifting blocks (109) which are controlled by independent air cylinders in a lifting mode, grooves (110) for storing long sections are formed in the top surfaces of the lifting blocks (109), and bottom grooves (111) for storing the side edges of the long sections are formed in the bottom surfaces of the grooves (110);
the feeding mechanism comprises a feeding roller way which consists of a plurality of rollers (201) arranged on a material distributing frame (101) and is consistent with the length direction of a long section bar, a traction support (202) consistent with the length direction of the long section bar is arranged at the tail end of the feeding roller way, a traction seat (203) horizontally sliding on the traction support (202), a traction platform (204) lifting on the traction seat (203), and n groups of clamping parts are arranged on the traction platform (204); each group of clamping parts comprises a clamping cylinder (209), a fixed clamping block (210) and a movable clamping block (211), and the clamping cylinder (209) drives the movable clamping block (211) and the fixed clamping block (210) to control the clamping or releasing of the long section bar;
the discharging mechanism comprises a discharging air cylinder (401) horizontally arranged on the double-head sawing machine body, a discharging platform (402) pushed by the discharging air cylinder (401) and arranged on the double-head sawing machine body in a sliding way through a sliding rail, and a discharging frame (403) arranged on the discharging platform (402) in a lifting way through the air cylinder; a first material outlet level (404) and a second material outlet level (405) are respectively arranged at two ends of the material outlet frame (403); the first material outlet position (404) and the second material outlet position (405) are positioned in the middle of the short section, and are provided with n groups of lifting blocks (109).
2. The solar aluminum frame efficient cutting device of claim 1, wherein: the minimum value of n is 2.
3. The solar aluminum frame efficient cutting device of claim 1, wherein: the top of the grouping dog (104) is provided with a step structure, the top surface of the step is higher than the conveying plane of the material distribution conveying belt (102), the bottom surface of the step is lower than the conveying plane of the material distribution conveying belt (102), and the bottom surface of the step is provided with a protruding part (107) for overturning long profiles.
4. The solar aluminum frame efficient cutting device of claim 1, wherein: the bottom of the lifting support (105) is provided with a nut meshed with a screw rod (108) arranged on the material distributing frame (101), and the screw rod (108) is driven to rotate by a motor to control the material distributing frame (101) to horizontally reciprocate in the direction perpendicular to the length direction of the long section bar.
5. The solar aluminum frame efficient cutting device of claim 1, wherein: the traction seat (203) is provided with a motor-driven gear, the traction support (202) is provided with a horizontal sliding rail (205) and a horizontal rack (206), and the traction seat (203) is driven to horizontally move through meshing of the gear and the horizontal rack (206).
6. The solar aluminum frame efficient cutting device of claim 1, wherein: the traction platform (204) is provided with a vertical sliding rail (207) and a vertical rack (208), and the traction seat (203) is provided with a motor-driven gear which is meshed with the vertical rack (208) to drive the traction platform (204) to move up and down.
7. The solar aluminum frame efficient cutting device of claim 1, wherein: the double-end sawing machine is characterized in that two sawing heads (301) of the double-end sawing machine are sequentially arranged in the length direction of a long section bar and are in a straight line with a feeding roller way of a feeding mechanism, the distance between the two sawing heads (301) is consistent with the length of a short section bar after cutting, saw blades of the two sawing heads (301) are respectively at an angle of 45 degrees to the outside, and a horizontal pushing block (302) driven by a cylinder and a vertical pressing block (303) driven by n independent cylinders are respectively arranged at sawing positions of the two sawing heads (301).
8. The solar aluminum frame efficient cutting device of claim 1, wherein: the material receiving mechanism comprises a material discharging conveying belt (501) arranged at one side of the double-head sawing machine, and a transfer bracket is arranged between the material discharging conveying belt (501) and the double-head sawing machine; the transfer bracket comprises two groups of symmetrically arranged supporting blocks (502), the distance between the two groups of supporting blocks (502) is not greater than the length of the short section, and each group of supporting blocks (502) comprises n supporting blocks (109).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202320352055.3U CN219703668U (en) | 2023-03-01 | 2023-03-01 | Solar energy aluminum frame high-efficient cutting device |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202320352055.3U CN219703668U (en) | 2023-03-01 | 2023-03-01 | Solar energy aluminum frame high-efficient cutting device |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN219703668U true CN219703668U (en) | 2023-09-19 |
Family
ID=87981266
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202320352055.3U Expired - Fee Related CN219703668U (en) | 2023-03-01 | 2023-03-01 | Solar energy aluminum frame high-efficient cutting device |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN219703668U (en) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN116275276A (en) * | 2023-03-01 | 2023-06-23 | 江阴市余润光伏材料有限公司 | A high-efficiency cutting process of solar aluminum frame |
| CN118083552A (en) * | 2024-04-25 | 2024-05-28 | 江阴世信氧化设备有限公司 | Photovoltaic solar frame upper-row method and device |
-
2023
- 2023-03-01 CN CN202320352055.3U patent/CN219703668U/en not_active Expired - Fee Related
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN116275276A (en) * | 2023-03-01 | 2023-06-23 | 江阴市余润光伏材料有限公司 | A high-efficiency cutting process of solar aluminum frame |
| CN118083552A (en) * | 2024-04-25 | 2024-05-28 | 江阴世信氧化设备有限公司 | Photovoltaic solar frame upper-row method and device |
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| CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20230919 |
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| CF01 | Termination of patent right due to non-payment of annual fee |