A curtain wall panel welding device

By designing a curtain wall panel welding device including feeding assembly and clamping assembly, the problem of low crushing efficiency of porcelain rings when welding studs on the curtain wall panel is solved, and the effect of automatically crushing the porcelain ring and improving welding efficiency is achieved.

CN119839412BActive Publication Date: 2025-05-27GUANGZHOU HONGKE CURTAIN WALL ENG CO LTD
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Patent Information

Application Number
CN202510330070.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2025-05-27
Estimated Expiration
2045-03-20

AI Technical Summary

Technical Problem

When welding studs on curtain wall panels, it is necessary to set up porcelain rings before welding, and manually smash the porcelain rings after welding, resulting in a decrease in working efficiency.

Method used

A curtain wall panel welding device is designed, including a feeding assembly and a clamping assembly. The feeding assembly conveys the porcelain ring below the welding assembly through gravity, and the clamping assembly drives the clamping plate to move towards the porcelain ring through the cylinder, crushing the porcelain ring.

Benefits of technology

The purpose of automatically breaking porcelain rings is achieved, the efficiency of porcelain ring crushing and stud welding efficiency is improved, and the need for manual operation is reduced.

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Abstract

This application relates to the technical field of welding equipment, and particularly to a curtain wall panel welding device, which includes a frame and a mounting frame arranged on the frame. A welding assembly for welding studs on the curtain wall panel is arranged on the mounting frame. A feeding assembly for conveying porcelain rings to the lower part of the welding assembly is arranged on the mounting frame. The feeding assembly includes a feeding tray rotatably connected to the mounting frame, a feeding pipe fixed to the mounting frame, and a plurality of material discharging grooves formed on the feeding tray. A plurality of porcelain rings are stored in the feeding pipe, and the porcelain rings in the feeding pipe fall into the material discharging grooves under the action of gravity. A clamping assembly for clamping the porcelain rings in the material discharging grooves is arranged on the feeding tray. The clamping assembly includes a clamping cylinder fixed to the feeding tray and a clamping plate fixed to the clamping cylinder. This application has the effect of facilitating the breaking of porcelain rings.
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Description

Technical Field

[0001] The present application relates to the technical field of welding equipment, and in particular to a curtain wall panel welding device. Background Art

[0002] As the exterior enclosure structure of modern buildings, curtain walls not only play the basic functions of sheltering from wind and rain, heat insulation and thermal insulation, but also play an important role in decorating and beautifying the exterior of buildings. Among various curtain wall systems, metal curtain walls are widely used in the construction field due to their advantages such as light weight, high strength, corrosion resistance, easy processing and beautiful appearance. Welding studs on curtain walls is a common connection method used to firmly connect curtain wall panels to the main structure or other related components to ensure the overall stability and safety of the curtain wall.

[0003] For example, a Chinese patent document with a publication number of CN218426140U discloses a stud welding automation device, including a work surface, a welding gun is mounted on the work surface through a bracket, a hollow tube is connected to the end of the welding gun, a nail feeder conveys the welding studs through the hollow tube to the position of the welding gun by means of air pressure blowing, the bracket is composed of two vertical uprights and a cross bar fixed between the uprights by bolts, the uprights and the cross bar are angle steels, an adapter plate is fixed on the cross bar by bolts, a welding gun is mounted on the adapter plate, a slide cylinder is fixed on the adapter plate by bolts, a vertically mounted fixed plate is provided in the middle of the slide cylinder, a stroke cylinder is mounted on the upper side of the fixed plate, and the extension rod of the stroke cylinder is connected to the tail end of the welding gun. When welding the studs, the nail feeder conveys the welding studs through the hollow tube to the position of the welding gun by means of air pressure blowing, and the welding operation is performed by the welding gun mounted on the bracket.

[0004] In the above-mentioned related technologies, the studs can be welded by a welding gun. However, when welding the studs on the curtain wall panel, it is necessary to put a ceramic ring on the stud before welding. The ceramic ring needs to abut against the surface of the curtain wall panel during welding. At this time, the put ceramic ring will form a protective area on the surface of the curtain wall panel, reducing the impact on other areas of the curtain wall panel during welding. After the stud welding is completed, since there are multiple ceramic rings welded on the curtain wall panel, it is necessary to manually break the ceramic ring on each stud, which will cause a decrease in work efficiency. Summary of the invention

[0005] The present application provides a curtain wall panel welding device, aiming to solve the problem of decreased crushing efficiency of ceramic rings in the related art.

[0006] The curtain wall panel welding device provided in this application adopts the following technical solution:

[0007] A curtain wall panel welding device comprises a frame and a mounting frame arranged on the frame, the mounting frame being provided with a welding assembly for welding studs on the curtain wall panel, the mounting frame being provided with a loading assembly for conveying ceramic rings to the bottom of the welding assembly, the loading assembly comprising a loading plate rotatably connected to the mounting frame, a loading pipe fixed on the mounting frame, and a plurality of discharge troughs provided on the loading plate, the loading pipe being used to store a plurality of ceramic rings, the ceramic rings in the loading pipe falling into the discharge trough under the action of gravity, the loading plate being provided with a clamping assembly for clamping the ceramic rings in the discharge trough, the clamping assembly comprising a clamping cylinder fixed on the loading plate and a clamping plate fixed on the clamping cylinder, the clamping plate being used to abut against the outer wall of the ceramic ring in the discharge trough and to crush the corresponding ceramic ring.

[0008] By adopting the above technical scheme, when it is necessary to weld studs on the curtain wall panel, first install the studs on the welding assembly, and at the same time, the ceramic ring in the feeding tube will fall into the discharge trough under the action of gravity, and the ceramic ring dropped into the discharge trough will not fall out of the discharge trough under the action of the clamping plate, and then the feeding plate is rotated to make the discharge trough with the ceramic ring correspond to the welding assembly with the studs, and finally the welding assembly is moved toward the surface of the curtain wall panel. During the movement, the ceramic ring will abut against the surface of the curtain wall panel, and then the clamping plate and the side of the ceramic ring will no longer abut. After the welding is completed, the clamping cylinder drives the clamping plate to move toward the ceramic ring, thereby crushing the ceramic ring mounted on the stud, which achieves the purpose of facilitating the crushing of the ceramic ring on the one hand, and the purpose of facilitating the installation of the ceramic ring on the other hand, further improving the efficiency of ceramic ring crushing and stud welding.

[0009] Optionally, a control component for driving the loading tray to rotate is provided on the mounting frame; the control component is fixed to a control gear ring on the loading tray and a gear shaft rotatably connected to the mounting frame, and a control motor fixed to the mounting frame, and the output shaft of the control motor is fixedly connected to the gear shaft.

[0010] By adopting the above technical solution, when the discharge tray needs to be rotated, the control motor directly drives the gear shaft to rotate, the gear shaft drives the control gear ring to rotate, and the control gear ring drives the loading tray to rotate on the mounting frame, thereby achieving the purpose of facilitating the adjustment of the ceramic ring position.

[0011] Optionally, a support assembly for supporting the position of the ceramic ring is provided on the clamping plate, and the support assembly includes a support cylinder fixed on the clamping plate and a support plate fixed on the support cylinder, and the support plate is used to abut against the lower end surface of the ceramic ring.

[0012] By adopting the above technical scheme, under the action of the support plate, when the ceramic ring falls from the feed pipe into the discharge trough, the end face of the ceramic ring abuts against the support plate, and then the ceramic ring in the discharge trough is prevented from falling. When the stud needs to be welded, the welding assembly and the mounting frame move downward, and then when the support plate and the surface of the curtain wall panel are abutted, the clamping cylinder drives the support plate and the support cylinder to move in the opposite direction, so that the support plate and the surface of the ceramic ring no longer abut, and then the support cylinder drives the support plate to move upward, and finally the end face of the ceramic ring abuts against the surface of the curtain wall panel. At this time, the stud is welded by the welding assembly. After the welding is completed, the clamping cylinder drives the clamping plate and the support plate to move in the direction close to the ceramic ring. At this time, the ceramic ring is squeezed by the clamping plate to break the ceramic ring, thereby achieving the purpose of automatically crushing the ceramic ring.

[0013] Optionally, a cooling component for cooling the surface of the welded curtain wall panel is provided on the mounting frame; the cooling component includes a first cooling channel provided on the mounting frame, a second cooling channel opened on the loading tray, and a cooling fan provided on the mounting frame, a plurality of second cooling channels are provided, and the plurality of cooling channels correspond to the plurality of discharge troughs one by one, and the second cooling channel is connected to the discharge trough, and when the discharge trough is rotated to the bottom of the welding component, the first cooling channel and the second cooling channel are connected; a detection component for detecting the position of the discharge trough is provided on the loading tray.

[0014] By adopting the above technical solution, when the ceramic ring rotates to the bottom of the welding assembly, the first cooling channel and the second cooling channel are connected, and then the detection assembly detects that the discharge trough has moved to the bottom of the welding assembly. At this time, the cooling fan works to blow cold air to the ceramic ring under the welding assembly through the first cooling channel and the second cooling channel, thereby achieving the purpose of cooling the ceramic ring.

[0015] Optionally, the detection component includes a plurality of first electromagnets fixed on the loading tray and a second electromagnet fixed on the mounting frame, and the plurality of first electromagnets correspond one-to-one to the plurality of discharge troughs. When the first electromagnets and the second electromagnets correspond, the first cooling channel and the second cooling channel are connected, and the cooling fan works.

[0016] By adopting the above technical solution, during welding, the loading plate rotates, and when the first electromagnet and the second electromagnet correspond, the first cooling channel and the second cooling channel also correspond. At this time, the cooling fan works to introduce cold air into the first cooling channel and the second cooling channel. When the first cooling channel and the second cooling channel do not correspond, the cooling fan does not work, thereby saving electricity.

[0017] Optionally, a rotating assembly is provided on the mounting frame for driving the ceramic ring under the welding assembly to rotate, the rotating assembly includes a rotating shaft rotating on the mounting frame, a rotating disk fixed on the rotating shaft, and a rotating motor fixed on the mounting frame, the output shaft of the rotating motor is fixedly connected to the rotating shaft, and the side of the rotating disk is used to abut against the side of the ceramic ring in the discharge trough.

[0018] By adopting the above technical solution, when the cooling fan cools the ceramic ring, the rotating disk can drive the ceramic ring to rotate, and the rotating ceramic ring is in contact with the cold air more evenly. Then, rotating the ceramic ring can help reduce the deformation caused by the welding process. At the same time, the lower temperature of the ceramic ring after welding and the change of internal stress may cause it to become more fragile.

[0019] Optionally, the rotating disk is provided with an elastic rubber friction sleeve for increasing the friction with the ceramic ring.

[0020] By adopting the above technical solution, when the elastic rubber friction sleeve is arranged on the rotating disk, the elastic rubber friction sleeve is in a stretched state, and the side surface of the elastic rubber friction sleeve abuts against the ceramic ring. Then, when the elastic rubber friction sleeve is worn to a certain extent, it can be easily removed from the rotating disk and replaced.

[0021] Optionally, each of the discharge troughs corresponds to two clamping assemblies, and the two clamping assemblies are arranged on opposite sides of the discharge trough.

[0022] By adopting the above technical solution, under the action of the two clamping components, the clamped ceramic ring and the discharge groove can be coaxially arranged, and then the stud and the ceramic ring can also be coaxially arranged.

[0023] Optionally, friction patterns are provided on the side surfaces of the elastic rubber friction sleeve.

[0024] By adopting the above technical solution, the friction force between the rotating disk and the ceramic ring can be increased under the action of the friction pattern, and then when the rotating disk rotates, the ceramic ring can be driven to rotate better.

[0025] Optionally, four discharge troughs are provided.

[0026] By adopting the above technical solution, under the action of four discharge troughs, the ceramic ring can be moved uninterruptedly to the bottom of the welding assembly, thereby improving the welding efficiency of the stud.

[0027] In summary, the present application includes at least one of the following beneficial technical effects:

[0028] 1. After welding is completed, the clamping cylinder drives the clamping plate and the supporting plate to move towards the direction close to the ceramic ring. At this time, the ceramic ring is squeezed by the clamping plate to break the ceramic ring, thereby achieving the purpose of automatically breaking the ceramic ring.

[0029] 2. When the ceramic ring rotates to the bottom of the welding assembly, the first cooling channel and the second cooling channel are connected, and then the detection assembly detects that the discharge trough has moved to the bottom of the welding assembly. At this time, the cooling fan works and blows cold air to the ceramic ring under the welding assembly through the first cooling channel and the second cooling channel to achieve the purpose of cooling the ceramic ring. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the present application.

[0031] Figure 2 It is a schematic diagram of the structure of the rotating assembly and the welding assembly of an embodiment of the present application.

[0032] Figure 3 It is a schematic diagram of the structure of the detection component of an embodiment of the present application.

[0033] Figure 4 It is a schematic diagram of the structure of the clamping assembly and the supporting assembly of an embodiment of the present application.

[0034] Figure 5 It is a cross-sectional view of the mounting frame of an embodiment of the present application.

[0035] Figure 6 yes Figure 5 Enlarged view of point A in the middle.

[0036] Figure markings: 01, frame; 02, mounting frame; 03, welding assembly; 04, driving assembly; 1, feeding assembly; 11, feeding pipe; 12, feeding plate; 13, discharge trough; 2, clamping assembly; 21, clamping cylinder; 22, clamping plate; 3, supporting assembly; 31, supporting cylinder; 32, supporting plate; 4, rotating assembly; 41, rotating shaft; 42, rotating disk; 43, elastic rubber friction sleeve; 5, control assembly; 51, control gear ring; 52, gear shaft; 6, cooling assembly; 61, first cooling channel; 62, second cooling channel; 7, detection assembly; 71, first electromagnet; 72, second electromagnet. DETAILED DESCRIPTION

[0037] The following combination Figure 1-Figure 6 This application is described in further detail.

[0038] The present application embodiment discloses a curtain wall panel welding device. Figure 1 and Figure 2A curtain wall panel welding device includes a frame 01 and a mounting frame 02 arranged on the frame 01, and the mounting frame 02 is provided with a welding assembly 03, a feeding assembly 1, a clamping assembly 2, a supporting assembly 3, a rotating assembly 4 and a control assembly 5, and a driving assembly 04 for driving the mounting frame 02 to move up and down, left and right, and forward and backward. The welding assembly 03 is used to weld the studs on the curtain wall panel. The welding assembly 03 is configured as a welding gun, and the driving assembly 04 is configured as a cylinder and a drag chain. Since the welding assembly 03 and the driving assembly 04 belong to the prior art, the specific structures of the driving assembly 04 and the welding assembly 03 are not described in detail in this embodiment. The feeding assembly 1 is used to transport the ceramic ring to the bottom of the welding assembly 03, which can be automatically sleeved on the stud during welding.

[0039] Reference Figure 2 and Figure 3 The feeding assembly 1 includes a feeding tube 11 fixed on the mounting frame 02, a feeding tray 12 arranged below the feeding tube 11, and a plurality of discharge troughs 13 opened on the feeding tray 12. Both ends of the feeding tube 11 are set to be open, and the ceramic rings are placed in the feeding tube 11 in a stacked manner. The feeding tray 12 is rotatably connected to the mounting frame 02. The discharge trough 13 is opened along the axial direction of the feeding tray 12 and passes through the feeding tray 12. The discharge trough 13 is used to place the ceramic ring. In this embodiment, the lower end surface of the feeding tube 11 and the feeding tray The disks 12 are arranged at intervals, and the height between the lower end surface of the feeding tube 11 and the upper surface of the feeding disk 12 is the height of the ceramic ring. When welding the studs, the ceramic ring in the feeding tube 11 will fall into the discharge trough 13 under the action of gravity. At the same time, the clamping component 2 is used to clamp the ceramic ring in the discharge trough 13, and the supporting component 3 is used to support the ceramic ring in the discharge trough 13. The control component 5 is used to drive the feeding disk 12 to rotate on the mounting frame 02, and then rotate the ceramic ring fallen in the discharge trough 13 to the bottom of the welding component 03.

[0040] Reference Figure 2 and Figure 3 The control component 5 includes a control gear ring 51 fixed on the loading tray 12, a gear shaft 52 rotatably connected to the mounting frame 02, and a control motor fixed on the mounting frame 02. The output shaft of the control motor and the output shaft of the gear shaft 52 are fixedly connected. The gear shaft 52 is driven to rotate by the control motor, and the control gear ring 51 is driven to rotate by the gear shaft 52. The control gear ring 51 drives the loading tray 12 to rotate, so that the position of the discharge trough 13 can be adjusted, so that the discharge trough 13 equipped with the ceramic ring is rotated to the bottom of the welding component 03.

[0041] Reference Figure 2 and Figure 4The clamping assembly 2 includes a clamping cylinder 21 fixed on the loading tray 12 and a clamping plate 22 fixed on the clamping cylinder 21. Each discharge trough 13 corresponds to two clamping assemblies 2. The two clamping assemblies 2 are arranged on opposite sides of the discharge trough 13. The two clamping cylinders 21 work to drive the two clamping plates 22 to move away from or approach each other, and then keep the ceramic ring in the discharge trough 13 coaxial with the discharge trough 13. Finally, when it is rotated to the bottom of the welding assembly 03, the ceramic ring in the discharge trough 13 and the welded stud can be kept coaxial.

[0042] When performing stud welding, the stud needs to be installed on the welding assembly 03 to ensure that the installation position of the stud on the welding assembly 03 is accurate. At the same time, the ceramic ring in the feeding tube 11 will slowly fall into the discharge trough 13 along the feeding tube 11 under the action of gravity. This gravity-based feeding method is not only simple and reliable, but also can ensure that the ceramic ring stably enters the specified position.

[0043] When the ceramic ring falls into the discharge trough 13, the clamping plate 22 provided in the discharge trough 13 will firmly fix the ceramic ring, so that it remains stable in the discharge trough 13 and will not be separated from the discharge trough 13 due to various external forces; then, the loading tray 12 starts to rotate according to the preset program and direction. The rotation of the loading tray 12 is one of the key links in the whole process, and its function is to make the discharge trough 13 with the ceramic ring and the welding assembly 03 with the studs accurately correspond;

[0044] When the discharge chute 13 and the welding assembly 03 are successfully matched, the welding assembly 03 will move smoothly towards the direction close to the surface of the curtain wall panel under the action of the driving assembly 04. During this movement, the ceramic ring will gradually abut against the surface of the curtain wall panel. The contact between the ceramic ring and the surface of the curtain wall panel needs to maintain appropriate pressure and stability to ensure that it can effectively play a protective and auxiliary role during the welding process.

[0045] With the completion of the welding work, the clamping cylinder 21 will drive the clamping plate 22 to move in the direction close to the porcelain ring. The movement of the clamping plate 22 has precise displacement control, which can ensure that the porcelain ring set on the stud is squeezed with appropriate strength. Under the squeezing action of the clamping plate 22, the porcelain ring will be crushed. This method of crushing the porcelain ring is not only efficient and fast, but also can avoid some potential safety hazards and the impact on the surrounding environment that may be caused by the traditional crushing method. Through such a complete set of processes, on the one hand, the purpose of facilitating the crushing of the porcelain ring is achieved, and the porcelain ring residue after crushing can be easily cleaned and recycled, and will not pile up at the construction site to cause chaos; on the other hand, the purpose of facilitating the installation of the porcelain ring is also achieved. Before welding, the porcelain ring can be accurately placed in the discharge trough 13 by a simple gravity feeding method, and it can play a role stably during the welding process. This design greatly improves the efficiency of porcelain ring crushing and the welding efficiency of the stud, provides strong technical support for the installation project of the curtain wall panel, and helps to ensure the quality and safety of the entire building curtain wall.

[0046] Reference Figure 2 and Figure 4 The support assembly 3 is arranged on the clamping plate 22. The support assembly 3 includes a support cylinder 31 fixed on the clamping plate 22 and a support plate 32 fixed on the support cylinder 31. The support cylinder 31 drives the support plate 32 to move in the vertical direction, and the clamping cylinder 21 drives the clamping plate 22 to move in the horizontal direction. Then the clamping cylinder 21 can drive the support plate 32 to move in the horizontal direction. In the initial state, the support plate 32 is below the ceramic ring and abuts against the lower end surface of the ceramic ring, and then supports the ceramic ring in the discharge trough 13, so as to prevent the ceramic ring that falls into the discharge trough 13 from escaping. In addition, under the action of the clamping plate 22, the ceramic ring in the discharge trough 13 is clamped, so that the ceramic ring and the discharge trough 13 are in a coaxial state.

[0047] During welding, the clamping cylinder 21 will drive the clamping plate 22 to move in the direction away from the ceramic ring, so that the support plate 32 and the ceramic ring are offset, and then the support plate 32 no longer supports the ceramic ring, and at the same time, the clamping plate 22 no longer clamps and fixes the ceramic ring. At this time, the driving component 04 drives the mounting frame 02 to move in the direction close to the curtain wall panel, so that the ceramic ring abuts against the surface of the curtain wall panel, and then welding is performed through the welding component 03. After welding is completed, the clamping cylinder 21 drives the clamping plate 22 to move in the direction close to the ceramic ring. The movement of the clamping plate 22 will drive the support plate 32 and the supporting cylinder 31 to move in the direction close to the ceramic ring at the same time. Finally, the ceramic ring is crushed by the movement of the clamping plate 22, thereby achieving the purpose of automatically crushing the ceramic ring.

[0048] Reference Figure 2 and Figure 6When the stud is welded on the aluminum sheet, there is a dense aluminum oxide film on the surface of the aluminum sheet. The aluminum oxide film is resistant to high temperature grinding, but the melting point of aluminum is not high. During normal welding, the aluminum oxide film needs to be penetrated by high temperature. Since the aluminum sheet used in the production of aluminum curtain walls is relatively thin, the high temperature during welding will cause through holes in the aluminum sheet. In order to reduce the occurrence of the above situation, a cooling component 6 is provided on the mounting frame 02. The cooling component 6 is used to cool the ceramic ring and the welding area under the welding component 03. The cooling component 6 includes a The first cooling channel 61 on the rack 02, the second cooling channel 62 opened on the loading tray 12, and the cooling fan arranged on the mounting rack 02, the second cooling channel 62 on the loading tray 12 is provided with multiple, the multiple second cooling channels 62 and the multiple discharge troughs 13 correspond one to one, and the second cooling channels 62 and the discharge troughs 13 are connected. In this embodiment, four discharge troughs 13 and four second cooling channels 62 are provided. When the discharge trough 13 rotates to the bottom of the welding assembly 03, the first cooling channel 61 and the second cooling channel 62 are connected.

[0049] Reference Figure 3 and Figure 6 A detection component 7 for detecting the position of the discharge trough 13 is provided on the loading tray 12. The detection component 7 includes a plurality of first electromagnets 71 arranged on the loading tray 12, a second electromagnet 72 fixed on the mounting frame 02, and a controller arranged on the mounting frame 02. The first electromagnet 71, the second electromagnet 72 and the controller are connected, and the controller is connected to the cooling fan. In this embodiment, four discharge troughs 13 are provided, and the four discharge troughs 13 correspond to the four first electromagnets 71 one by one. When the first electromagnet 71 on the discharge trough 13 corresponds to the second electromagnet 72 on the mounting frame 02, the controller controls the cooling fan to work, and the cold air generated by the cooling fan enters the second cooling channel 62 through the first cooling channel 61, and then cools the porcelain ring in the discharge trough 13 through the second cooling channel 62, and can also cool the welding area at the same time.

[0050] Reference Figure 3 and Figure 6 A rotating assembly 4 is provided on the mounting frame 02 for driving the ceramic ring to rotate. During the rotation of the ceramic ring, the ceramic ring can be in contact with the cold air more evenly, which can help reduce the deformation produced during the welding process. At the same time, the temperature reduction and internal stress changes of the ceramic ring after welding may cause it to become more fragile.

[0051] Reference Figure 3 and Figure 6The rotating assembly 4 includes a rotating shaft 41 rotating on the mounting frame 02, a rotating disk 42 fixed on the rotating shaft 41, and a rotating motor fixed on the mounting frame 02. The output shaft of the rotating motor is fixedly connected to the rotating shaft 41. An elastic rubber friction sleeve 43 is sleeved on the rotating disk 42. When the elastic rubber friction sleeve 43 is sleeved on the rotating disk 42, the elastic rubber friction sleeve 43 is in a stretched state, and the elastic rubber friction sleeve 43 abuts against the side of the ceramic ring in the discharge trough 13. Then, friction patterns are provided on the side of the elastic rubber friction sleeve 43. Under the action of the friction patterns, the friction force between the rotating disk 42 and the ceramic ring can be increased. Then, when the rotating disk 42 rotates, the ceramic ring can be better driven to rotate. In addition, since the elastic rubber friction sleeve 43 is sleeved on the rotating disk 42, when the elastic rubber friction sleeve 43 is worn and cannot be used, it can be easily removed from the rotating disk 42 for replacement.

[0052] The implementation principle of a curtain wall panel welding device in an embodiment of the present application is as follows: before welding, a plurality of ceramic rings are placed in a loading tube 11, and then the ceramic rings enter into a discharge trough 13 through a loading tube under the action of gravity, and are supported by a support plate 32, and then the ceramic rings are clamped by a clamping plate 22, so that the ceramic rings and the discharge trough 13 remain coaxial, and then the loading tray 12 is driven to rotate by a control motor, and then the discharge trough 13 of the ceramic rings is driven to rotate to the bottom of the welding assembly 03, at this time, the first electromagnet 71 on the discharge trough 13 corresponds to the second electromagnet 72 on the mounting frame 02, and the controller controls the cooling fan to work, and the cold air generated by the cooling fan enters into the second cooling channel 62 through the first cooling channel 61, and then the ceramic rings in the discharge trough 13 are cooled through the second cooling channel 62, and the welding area can also be cooled at the same time.

[0053] When the cooling fan is working, the clamping cylinder 21 will drive the clamping plate 22 to move in the direction away from the ceramic ring, so that the support plate 32 and the ceramic ring are offset, and then the support plate 32 no longer supports the ceramic ring, and at the same time, the clamping plate 22 no longer clamps and fixes the ceramic ring. At this time, the driving component 04 drives the mounting frame 02 to move in the direction close to the curtain wall panel, so that the ceramic ring abuts against the surface of the curtain wall panel, and then welding is performed through the welding component 03. After welding is completed, the clamping cylinder 21 drives the clamping plate 22 to move in the direction close to the ceramic ring. The movement of the clamping plate 22 will drive the support plate 32 and the supporting cylinder 31 to move in the direction close to the ceramic ring at the same time. Finally, the ceramic ring is crushed by the movement of the clamping plate 22, thereby achieving the purpose of automatically crushing the ceramic ring.

[0054] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.

Claims

1. A curtain wall panel welding device, comprising a frame and a mounting frame arranged on the frame, wherein the mounting frame is provided with a welding assembly for welding studs on the curtain wall panel, characterized in that: The mounting frame is provided with a loading assembly for conveying ceramic rings to the bottom of the welding assembly, the loading assembly includes a loading tray rotatably connected to the mounting frame, a loading pipe fixed on the mounting frame, and a plurality of discharge troughs provided on the loading tray, the loading pipe is used to store a plurality of ceramic rings, the ceramic rings in the loading pipe fall into the discharge trough under the action of gravity, the loading tray is provided with a clamping assembly for clamping the ceramic rings in the discharge trough, the clamping assembly includes a clamping cylinder fixed on the loading tray and a clamping plate fixed on the clamping cylinder, the clamping plate is used to abut against the outer wall of the ceramic ring in the discharge trough, and is used to crush the corresponding ceramic ring; A control assembly for driving the loading tray to rotate is arranged on the mounting frame; the control assembly is fixed to a control gear ring on the loading tray and a gear shaft rotatably connected to the mounting frame and a control motor fixed to the mounting frame, and the output shaft of the control motor is fixedly connected to the gear shaft; A rotating assembly for driving the ceramic ring below the welding assembly to rotate is provided on the mounting frame, the rotating assembly comprises a rotating shaft rotating on the mounting frame, a rotating disk fixed on the rotating shaft, and a rotating motor fixed on the mounting frame, the output shaft of the rotating motor is fixedly connected to the rotating shaft, and the side surface of the rotating disk is used to abut against the side surface of the ceramic ring in the discharge trough; An elastic rubber friction sleeve is sleeved on the rotating disk for increasing the friction force with the ceramic ring.

2. A curtain wall panel welding device according to claim 1, characterized in that: The clamping plate is provided with a support assembly for supporting the position of the ceramic ring. The support assembly includes a support cylinder fixed on the clamping plate and a support plate fixed on the support cylinder. The support plate is used to abut against the lower end surface of the ceramic ring.

3. A curtain wall panel welding device according to claim 1, characterized in that: The mounting frame is provided with a cooling component for cooling the surface of the welded curtain wall panel; the cooling component includes a first cooling channel arranged on the mounting frame, a second cooling channel opened on the loading tray, and a cooling fan arranged on the mounting frame, a plurality of second cooling channels are provided, and the plurality of cooling channels correspond to the plurality of discharge troughs one by one, and the second cooling channel is connected to the discharge trough, and when the discharge trough is rotated to the bottom of the welding component, the first cooling channel and the second cooling channel are connected; the loading tray is provided with a detection component for detecting the position of the discharge trough.

4. A curtain wall panel welding device according to claim 3, characterized in that: The detection component includes a plurality of first electromagnets fixed on the loading tray and a second electromagnet fixed on the mounting frame. The plurality of first electromagnets correspond one to one with the plurality of discharge troughs. When the first electromagnets and the second electromagnets correspond, the first cooling channel and the second cooling channel are connected, and the cooling fan works.

5. The curtain wall panel welding device according to claim 1, characterized in that: The elastic rubber friction sleeve is provided with friction patterns.

6. The curtain wall panel welding device according to claim 1, characterized in that: Each of the material discharging troughs corresponds to two clamping assemblies, and the two clamping assemblies are arranged on opposite sides of the material discharging trough.

7. The curtain wall panel welding device according to claim 1, characterized in that: Four discharge troughs are provided.

Citation Information

Patent Citations

  • Automatic stud welding equipment

    CN218426140U

  • Curtain wall connecting piece and manufacturing and processing method thereof

    CN112695941A

  • Efficient welding process and device for ruler blank and pin column of digital display angle ruler

    CN119589065A