CN224011371U - Edging device of no A face frame - Google Patents

Edging device of no A face frame

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Publication number
CN224011371U
CN224011371U CN202520635959.6U CN202520635959U CN224011371U CN 224011371 U CN224011371 U CN 224011371U CN 202520635959 U CN202520635959 U CN 202520635959U CN 224011371 U CN224011371 U CN 224011371U
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CN
China
Prior art keywords
edging device
cutting head
cutting
base
air
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202520635959.6U
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Chinese (zh)
Inventor
叶帅
郭亚军
张桂平
郑伟子
王余祥
陈魏
聂德宽
谈剑豪
赵正生
宋琬若
孙金荣
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Wuxi Yuncheng Power Technology Co ltd
Original Assignee
Wuxi Yuncheng Power Technology Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by Wuxi Yuncheng Power Technology Co ltd filed Critical Wuxi Yuncheng Power Technology Co ltd
Priority to CN202520635959.6U priority Critical patent/CN224011371U/en
Application granted granted Critical
Publication of CN224011371U publication Critical patent/CN224011371U/en
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Abstract

The utility model discloses an edge cutting device without an A-plane frame, which comprises a mounting frame, a moving assembly and a cutting assembly, wherein a bearing platform is arranged on the mounting frame, the moving assembly comprises a horizontal moving part and a vertical moving part, the horizontal moving part is movably arranged on the mounting frame, the vertical moving part is movably arranged on the horizontal moving part, the cutting assembly comprises a base, a driving part, a cutting head and an air blast part, the base is arranged at the moving end of the vertical moving part, the fixed end of the driving part is arranged on the base, the cutting head is arranged at the driving end of the driving part, a nano hydrophobic coating is arranged on the cutting head, the air blast part is arranged on the base, and the air blast part is configured to blow off waste materials on the cutting head. According to the edging device, the nano hydrophobic coating is arranged on the cutting head, so that adhesion of waste materials in the cutting process is reduced, cleaning frequency is reduced, meanwhile, the waste materials on the cutting head are cleaned by being matched with the air blowing piece, the manual cleaning process is omitted, and cleaning efficiency is improved.

Description

Edging device of no A face frame
Technical Field
The utility model relates to the technical field of manufacturing of photovoltaic module frames, in particular to an edge cutting device without an A-face frame.
Background
At present, the installation quantities of large-scale ground power stations and distributed power stations rise year by year, the installation component types and installation methods are various, the large-scale ground power stations and most distributed power stations all solve the problems that the water vapor and the load which are handled after the components are installed reach the service life of 25 years or longer through the technologies such as anodic oxidation, hot galvanizing, UV resistance and the like through the traditional frame scheme, the large-scale photovoltaic power stations are generally installed with more quantities, the installation workload is large, the operation and maintenance are complex, compared with the distributed photovoltaic scheme, the distributed power stations are favored by users, and the distributed power stations are more harsh to the appearance, the electrical performance and the like of the components than the conventional components.
When the existing light Fu Biankuang component is processed, flying scraps are easy to adhere to the cutting head, the existing light Fu Biankuang component needs to be cleaned manually, time and labor are wasted, and potential safety hazards exist.
Disclosure of utility model
In order to solve the related technical problems, the utility model aims to provide an edge cutting device without an A-face frame, so as to solve the problem that the labor and time are wasted when a cutting head is cleaned by manpower.
In order to achieve the above purpose, the embodiment of the present utility model adopts the following technical scheme:
An edging device of no a face frame, it includes mounting bracket, removal subassembly and cutting assembly, wherein:
The mounting frame is provided with a bearing platform which is configured to bear a frame to be processed,
The moving assembly comprises a horizontal moving member and a vertical moving member, the horizontal moving member is arranged on the mounting frame in a reciprocating manner along a first direction, the vertical moving member is arranged on the horizontal moving member in a reciprocating manner along a vertical direction,
The cutting assembly comprises a base, a driving piece, a cutting head and an air blowing piece, wherein the base is arranged at the moving end of the vertical moving piece, the fixed end of the driving piece is arranged on the base, the cutting head is arranged at the driving end of the driving piece, a nanometer hydrophobic coating is arranged on the cutting head, the air blowing piece is arranged on the base, a plurality of air blowing openings are arranged on the air blowing piece, and the air blowing piece is configured to blow off waste materials on the cutting head.
Optionally, a polyurethane damping block is arranged on the bearing platform, and a pressure sensor is arranged in the polyurethane damping block.
Optionally, the carrying platform is further provided with a negative pressure adsorption component, and the negative pressure adsorption component is configured to adsorb flying scraps during processing on the carrying platform.
Optionally, the negative pressure adsorption component comprises at least two adsorption pieces, and the at least two adsorption pieces are arranged at two sides of the bearing platform along the first direction at intervals.
Optionally, the adsorbing member includes adsorbing head and air duct, the adsorbing head detachably installs the first end of air duct, air duct's second end is connected air exhaust device, air duct with be provided with the blocking member between the air exhaust device, the blocking member is configured to block the adsorbing head adsorbs the flying chip of the work piece of loading platform processing.
Optionally, the vent pipe is provided with a discharge port, the discharge port is located below the blocking member, the discharge port is connected with a discharge pipe, and the discharge port is configured to receive the flying chips blocked by the blocking member.
Optionally, the blocking member includes a first screen and a second screen, and the first screen and the second screen are sequentially disposed at intervals at the second end of the ventilation pipe.
Optionally, the air blowing port is provided with a miniature high-pressure airflow nozzle.
Compared with the prior art, the edge cutting device without the A-side frame has the following beneficial effects:
1. By arranging the nano hydrophobic coating on the cutting head, the adhesion of waste materials in the cutting process is reduced, the cleaning frequency is reduced, meanwhile, the waste materials on the cutting head are cleaned by matching with the air blast part, the manual cleaning process is omitted, and the cleaning efficiency is improved;
2. Through setting up the negative pressure and adsorbing the subassembly, adsorb the flying chip that produces of processing through the air current, prevent flying chip scattering pollution environment or influence cutting accuracy;
3. Through setting up the barrier to through first screen cloth and the second screen cloth in the barrier, form multistage filtration, intercept the flying chip of different particle diameters respectively, improve filtration efficiency.
Drawings
For a clearer description and understanding of the technical solutions of the embodiments of the present utility model, the following description will make a brief introduction to the drawings required for the description of the embodiments of the present utility model, and it is obvious that the drawings in the following description are only some embodiments of the present utility model, and other drawings may be obtained according to the contents of the embodiments of the present utility model and the drawings without inventive effort for those skilled in the art.
FIG. 1 is a schematic structural diagram of a edging device without an A-side frame according to an embodiment of the present utility model;
Fig. 2 is a schematic structural diagram of a cutting head of a edging device without an a-side frame according to an embodiment of the present utility model;
FIG. 3 is a schematic diagram of the position relationship between a negative pressure adsorption component and a bearing platform of an edge trimming device without an A-side frame according to an embodiment of the present utility model;
FIG. 4 is a schematic structural diagram of a cutting head and a nano hydrophobic coating of an edge cutting device without an A-side frame according to an embodiment of the present utility model;
FIG. 5 is a schematic diagram of a polyurethane damping block and a pressure sensor of an edge trimming device without an A-side frame according to an embodiment of the present utility model;
Fig. 6 is a schematic structural diagram of a negative pressure adsorption component of a edging device without an a-side frame according to an embodiment of the utility model.
Detailed Description
The present utility model will be described in further detail with reference to the accompanying drawings.
In order that the utility model may be readily understood, a more complete description of the utility model will be rendered by reference to the appended drawings. Preferred embodiments of the present utility model are shown in the drawings. This utility model may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete. It will be understood that when an element is referred to as being "fixed to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "vertical," "horizontal," "left," "right," and the like are used herein for illustrative purposes only and are not meant to be the only embodiment. Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this utility model belongs. The terminology used herein in the description of the utility model is for the purpose of describing particular embodiments only and is not intended to be limiting of the utility model. The term "and/or" as used herein includes any and all combinations of one or more of the associated listed items.
Referring to fig. 1 to 6, the present embodiment provides an edge trimming device without an a-plane edge frame, which includes a mounting frame 10, a moving assembly 20 and a cutting assembly 30, wherein a carrying platform 40 is disposed on the mounting frame 10, the carrying platform 40 is configured to carry an edge frame to be processed, the moving assembly 20 includes a horizontal moving member 21 and a vertical moving member 22, the horizontal moving member 21 is disposed on the mounting frame 10 in a reciprocating manner along a first direction, the vertical moving member 22 is disposed on the horizontal moving member 21 in a reciprocating manner along a vertical direction, the cutting assembly 30 includes a base 31, a driving member 32, a cutting head 33 and a blast member 34, the base 31 is disposed at a moving end of the vertical moving member 22, a fixed end of the driving member 32 is disposed on the base 31, the cutting head 33 is disposed at a driving end of the driving member 32, the cutting head 33 is disposed with a nano hydrophobic coating 50, the blast member 34 is disposed on the base 31, the blast member 34 is disposed with a plurality of blast ports along the first direction, and the blast member 34 is configured to blow waste materials on the cutting head 33.
Specifically, the base 31 is further provided with a fixing frame 70, and the fixing frame 70 is configured to mount the air outlet.
Specifically, the air blowing member 34 includes a high-pressure air pump and a plurality of air delivery pipes, the high-pressure air pump is disposed at the bottom of the mounting frame 10, one end of each air delivery pipe is connected to the high-pressure air pump, the other end of each air delivery pipe is provided with an air blowing port, and the other end of each air delivery pipe is disposed on the mounting frame 70.
Specifically, the horizontal moving member 21 includes a first cylinder, the fixed end of which is provided on the mounting frame 10, and a moving seat movably mounted at the moving end of the first cylinder.
Specifically, the vertical moving member 22 includes a second cylinder and a mount, the fixed end of the second cylinder is disposed on the moving seat, and the mount is disposed at the moving end of the second cylinder.
Specifically, a visual sensor 220 is further disposed on the mounting base, and the visual sensor 220 is configured to detect and position the edge key points of the frame.
Specifically, the vision sensor 220 is an industrial binocular camera.
Therefore, by arranging the nano hydrophobic coating 50 on the cutting head 33, adhesion of waste materials in the cutting process is reduced, cleaning frequency is reduced, meanwhile, the waste materials on the cutting head 33 are cleaned by matching with the air blowing piece 34, a manual cleaning process is omitted, and cleaning efficiency is improved.
As an embodiment, a polyurethane damping block 41 is provided on the bearing platform 40, and a pressure sensor 42 is provided inside the polyurethane damping block 41.
Specifically, the carrying platform 40 is further provided with a traversing assembly 43, the traversing assembly 43 is disposed below the polyurethane damping block 41, and the traversing assembly 43 is configured to drive the polyurethane damping block 41 to reciprocate along the second direction, so as to drive the frame on the polyurethane damping block 41 to reciprocate along the second direction.
Specifically, the first direction is the x direction in fig. 1, the second direction is the y direction in fig. 1, and the first direction and the second direction are perpendicular to each other.
It can be seen that the polyurethane damping block 41 of the bearing platform 40 absorbs cutting vibration, reduces impact to the frame, protects the surface quality of the workpiece, monitors the bearing pressure in real time by the internal pressure sensor 42, and triggers an alarm or stops when the pressure is abnormal, thereby preventing equipment from being damaged.
As an embodiment, the carrying platform 40 is further provided with a negative pressure adsorption assembly 60, and the negative pressure adsorption assembly 60 is configured to adsorb flying chips during processing on the carrying platform 40.
It can be seen that the negative pressure adsorption assembly 60 adsorbs flying chips generated by the machining by the air flow, preventing the flying chips from scattering to pollute the environment or affecting the cutting accuracy.
As one embodiment, the negative pressure adsorption assembly 60 includes at least two adsorption members 61, and the at least two adsorption members 61 are disposed at intervals on both sides of the carrying platform 40 along the first direction.
Specifically, the negative pressure adsorption assembly 60 includes four adsorption members 61, and the four adsorption members 61 are symmetrically disposed on four sides of the carrying platform 40 along the first direction and the second direction.
It can be seen that at least two adsorbing members 61 are disposed at two sides of the carrying platform 40 along the first direction at intervals to form symmetrical or uniform adsorbing areas, which cover the whole length of the frame processing, and ensure that flying scraps at different positions are effectively adsorbed.
As an embodiment, the adsorbing member 61 includes an adsorbing head 62 and a ventilation pipe 63, the adsorbing head 62 is detachably mounted at a first end of the ventilation pipe 63, a second end of the ventilation pipe 63 is connected to an air extracting device, a blocking member 64 is disposed between the ventilation pipe 63 and the air extracting device, and the blocking member 64 is configured to block flying chips of a workpiece processed on the carrying platform 40, which are adsorbed by the adsorbing head 62.
It can be seen that the adsorption head 62 is detachably mounted to facilitate cleaning of the blocked flying chips, and the blocking member 64 of the air duct 63 blocks the flying chips to prevent the flying chips from entering the air extractor to cause blocking.
As an embodiment, the vent pipe 63 is provided with a discharge opening 65, the discharge opening 65 is located below the blocking member 64, the discharge opening 65 is connected with the discharge pipe, and the discharge opening 65 is configured to receive the flying chips blocked by the blocking member 64.
Specifically, a material receiving member is disposed below the discharge opening 65, and is configured to collect flying chips from the discharge opening 65 blocked by the blocking member 64.
In particular, the carrier is a waste collection bucket or a waste collection bin.
It can be seen that the discharge opening 65 is located below the blocking member 64 and is connected to a discharge conduit for directing the captured fly ash directly into the collection means.
As one embodiment, the blocking member 64 includes a first screen 640 and a second screen 641, the first screen 640 and the second screen 641 being sequentially spaced apart at a second end of the vent conduit 63.
Specifically, the top end of the first screen 640 is disposed on the vent duct 63, the bottom of the first screen 640 is provided with a first vent gap 642, the bottom of the second screen 641 is disposed on the vent duct 63, the top of the second screen 641 is provided with a second vent gap 643, and the first vent gap 642 and the second vent gap 643 are configured to pass the air flow in the vent duct 63.
It can be seen that the first screen 640 and the second screen 641 of the blocking member 64 are disposed at intervals to form a multi-stage filtering structure, which intercepts flying scraps of different particle sizes, respectively, and improves filtering efficiency.
As an embodiment, the blow port is provided with a micro high pressure air stream nozzle 80.
It can be seen that the miniature high-pressure air flow nozzle 80 of the air blowing port generates high-speed air flow, enhances the sweeping force on the cutting head 33, and effectively eliminates stubborn and attached waste.
In the embodiments disclosed herein, the terms "mounted," "connected," "secured," and the like are to be construed broadly, and they may be, for example, fixedly connected, detachably connected, or integrally connected, or they may be directly connected or indirectly connected via an intermediate medium. The specific meaning of the above terms in the embodiments of the present disclosure will be understood by those of ordinary skill in the art according to the specific circumstances.
The above embodiments merely illustrate the basic principles and features of the present utility model, and the present utility model is not limited to the above examples, but can be variously changed and modified without departing from the spirit and scope of the present utility model, which is within the scope of the present utility model as claimed. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (8)

1. The utility model provides a do not have edging device of A face frame, its characterized in that, do not have edging device of A face frame includes mounting bracket, removal subassembly and cutting element, wherein:
The mounting frame is provided with a bearing platform which is configured to bear a frame to be processed,
The moving assembly comprises a horizontal moving member and a vertical moving member, the horizontal moving member is arranged on the mounting frame in a reciprocating manner along a first direction, the vertical moving member is arranged on the horizontal moving member in a reciprocating manner along a vertical direction,
The cutting assembly comprises a base, a driving piece, a cutting head and an air blowing piece, wherein the base is arranged at the moving end of the vertical moving piece, the fixed end of the driving piece is arranged on the base, the cutting head is arranged at the driving end of the driving piece, a nanometer hydrophobic coating is arranged on the cutting head, the air blowing piece is arranged on the base, a plurality of air blowing openings are arranged on the air blowing piece, and the air blowing piece is configured to blow off waste materials on the cutting head.
2. The edging device without an A-side frame according to claim 1, wherein the bearing platform is provided with a polyurethane damping block, and a pressure sensor is arranged inside the polyurethane damping block.
3. The edging device without an a-side frame of claim 1, wherein the load-bearing platform is further provided with a negative pressure suction assembly configured to suction flying chips during processing on the load-bearing platform.
4. A edging device without an a-side frame according to claim 3, wherein the negative pressure suction assembly comprises at least two suction members disposed on opposite sides of the load-bearing platform at intervals along the first direction.
5. The edging device without an a-side frame according to claim 4, wherein the adsorbing member comprises an adsorbing head and a vent pipe, the adsorbing head is detachably mounted at a first end of the vent pipe, a second end of the vent pipe is connected with an air extracting device, a blocking member is disposed between the vent pipe and the air extracting device, and the blocking member is configured to block flying chips of a workpiece processed on the carrying platform, which are adsorbed by the adsorbing head.
6. The a-plane borderless edging device of claim 5, wherein said vent conduit is provided with a discharge port located below a discourager, said discharge port being connected with a discharge conduit, said discharge port being configured to receive said fly ash arrested by said discourager.
7. The edging device without an a-side frame of claim 5, wherein the blocking member comprises a first screen and a second screen sequentially spaced apart from the second end of the vent conduit.
8. The edging device without an a-side frame of claim 1, wherein the air blast opening is provided with a miniature high pressure air flow nozzle.
CN202520635959.6U 2025-04-07 2025-04-07 Edging device of no A face frame Active CN224011371U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202520635959.6U CN224011371U (en) 2025-04-07 2025-04-07 Edging device of no A face frame

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202520635959.6U CN224011371U (en) 2025-04-07 2025-04-07 Edging device of no A face frame

Publications (1)

Publication Number Publication Date
CN224011371U true CN224011371U (en) 2026-03-20

Family

ID=99084515

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202520635959.6U Active CN224011371U (en) 2025-04-07 2025-04-07 Edging device of no A face frame

Country Status (1)

Country Link
CN (1) CN224011371U (en)

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