Edge covered board lamination positioning device
By using a combination of a pusher unit and a bonding and positioning unit, the problem of unstable positioning at the welding point of the edge plate in laser welding is solved, thereby improving welding quality and product performance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 佛山市智焱激光科技有限公司
- Filing Date
- 2025-07-16
- Publication Date
- 2026-07-21
AI Technical Summary
In the laser welding process of the metal processing industry, the positioning stability of the edge plate welding joint is poor, which affects the welding quality.
An edge-sealing plate bonding and positioning device is adopted, including a first bracket, a second bracket, a pushing unit, and a bonding and positioning unit. The pushing force drives the bonding and positioning unit to abut against the edge-sealing plate, so that the edge-sealing plate is stably bonded to the metal plate to be welded. The first and second bonding components are used to ensure the positioning stability of the welding point of the laser unit.
It improves the positioning accuracy and welding quality of the edge banding weld, reduces welding defects, enhances the mechanical properties and durability of the welded joint, and ensures the overall performance and safety of the product.
Smart Images

Figure CN224526225U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of welding equipment technology, and in particular to a edging plate bonding and positioning device. Background Technology
[0002] In the field of laser welding edging in the metal processing industry, although laser welding technology is highly favored for its high precision, high efficiency, and good welding quality, the positioning problem at the welding point of the edging plate is a key factor restricting the improvement of welding quality in the actual operation of laser welding between metal plates and edging plates. During the laser welding edging process, the welding point of the edging plate must maintain extremely high positioning accuracy and stability to ensure that the laser beam can accurately and uniformly act on the welding interface, thereby achieving a high-quality welded connection.
[0003] However, before welding the metal plate and the edge banding plate using the laser unit, the laser head of the laser unit is positioned close to the bonding unit. The bonding unit only attaches the edge banding plate portion corresponding to the bonding unit to the metal plate to be welded. The positioning stability of the edge banding plate welding point corresponding to the laser unit is poor, which can easily affect the positioning accuracy of the edge banding plate welding point and thus affect the welding quality of the product. Utility Model Content
[0004] The purpose of this utility model is to overcome the defects of the existing technology and provide a edging board bonding and positioning device.
[0005] The objective of this utility model can be achieved through the following technical solutions:
[0006] According to the present invention, a edging board bonding and positioning device includes a first bracket, a second bracket, a pushing unit, and a bonding and positioning unit.
[0007] The pushing unit's fixed part is mounted on the first bracket, and the pushing movable part of the pushing unit is movably configured on the fixed part towards the surface of the edge plate. The second bracket is mounted on the pushing movable part, and the fitting and positioning unit is mounted on the second bracket and positioned towards the surface of the edge plate, so that the pushing unit uses pushing force to drive the fitting and positioning unit to abut against the edge plate, thus fitting the edge plate to the metal plate to be welded.
[0008] The bonding and positioning unit includes a first bonding component and a second bonding component arranged along the welding direction of the edge-sealing plate. The laser unit is used to weld the edge-sealing plate, and the welding point of the edge-sealing plate corresponding to the laser unit is located in the area between the part of the first bonding component that abuts against the edge-sealing plate and the part of the second bonding component that abuts against the edge-sealing plate.
[0009] Compared with the prior art, the pushing unit of this utility model uses pushing force to drive the bonding and positioning unit to abut against the edge-sealing plate, bonding the edge-sealing plate to the metal plate to be welded, and the laser unit welds the edge-sealing plate; the first bonding component and the second bonding component are arranged along the welding direction of the edge-sealing plate, and the edge-sealing plate welding point corresponding to the laser unit is located in the area between the part of the first bonding component abutting against the edge-sealing plate and the part of the second bonding component abutting against the edge-sealing plate. The first bonding unit and the second bonding unit ensure that the edge-sealing plate welding point corresponding to the laser unit is completely and stably bonded, ensuring that the edge-sealing plate remains stationary before the weld seam between the metal plate and the edge-sealing plate is formed, reducing the impact on the edge-sealing plate welding point corresponding to the laser unit, improving the positioning stability of the edge-sealing plate welding point corresponding to the laser unit, thereby improving the positioning accuracy of the edge-sealing plate welding point and improving the welding quality of the product.
[0010] Preferably, the second bonding component includes a fixed mounting base, an elastic element, a bonding mounting portion, and a bonding member; the fixed mounting base is fixed to the second bracket, one end of the elastic element is connected to the fixed mounting base, the other end of the elastic element is connected to the bonding mounting portion, and the bonding member is mounted on the bonding mounting portion and facing the surface of the edge banding plate, so that the elastic element uses elastic force to push the bonding member against the edge banding plate.
[0011] Compared with the prior art, this utility model uses elastic elements to push the bonding component against the edge banding plate with elastic force, which can protect the edge banding plate while bonding it to the metal plate, thus ensuring the quality of the product.
[0012] Preferably, the second fitting component further includes a guide rod and a limiting block; the fixed mounting base includes a fixed mounting plate and a guide member;
[0013] The fixed mounting plate is installed on the second bracket, the sleeve portion of the guide member passes through the fixed mounting plate, the abutting portion of the guide member is fixedly surrounded on the outside of the sleeve portion, and the abutting portion is installed on the plate surface of the fixed mounting plate facing the fitting mounting portion;
[0014] One end of the guide rod is fixedly connected to the fitting and mounting part, and the other end of the guide rod can slide through the sleeve part; the elastic element is sleeved on the guide rod, and the limiting block is arranged around the guide rod, and the limiting block is located on the side of the sleeve part away from the fitting and mounting part, so as to keep the elastic element in a compressed state.
[0015] Compared with the prior art, this utility model ensures stable contact between the bonding component and the edge-sealing plate by adapting the guide rod to slide with the sleeve part and keeping the elastic element in a compressed state. This maintains the bonding effect and stability between the edge-sealing plate and the metal plate, further improves the positioning stability of the edge-sealing plate welding point corresponding to the laser unit, and thus improves the positioning accuracy of the edge-sealing plate welding point and improves the welding quality of the product.
[0016] Preferably, the bonding and mounting part includes a bonding and mounting plate and two support plates disposed on the bonding and mounting plate. A support rotation shaft is disposed between the support plates. The bonding component is configured as a bonding roller and rotates on the support rotation shaft with its tangential direction along the welding direction of the edge plate. A limiting guide plate is disposed on the fixed mounting plate, and the surface of the limiting guide plate is slidably configured to be bonded to the side of the bonding and mounting plate.
[0017] Compared with the prior art, this utility model can ensure the stability of the contact between the bonding roller and the edge plate by restricting the sliding of the guide plate and the bonding mounting plate, further maintaining the bonding effect and stability between the edge plate and the metal plate, further improving the positioning stability of the edge plate welding point corresponding to the laser unit, thereby improving the positioning accuracy of the edge plate welding point and improving the welding quality of the product.
[0018] Preferably, the push-top movable part is provided with a push plate, and a plurality of guide posts are slidably passed through the push plate around the push-top movable part. One end of the guide post is fixedly connected to the second bracket, and the other end of the guide post is provided with a baffle. The baffle is located on the side of the push plate away from the second bracket. Elastic members are respectively sleeved on the guide posts. One end of the elastic member abuts against the push plate, and the other end of the elastic member abuts against the second bracket.
[0019] Compared with the prior art, this utility model sets multiple guide columns with elastic elements around the pushing movable part, which can stably make the first fitting part abut against the edge plate, and can protect the edge plate while fitting the metal plate, thus ensuring the quality of the product.
[0020] Preferably, the laser head of the laser unit is positioned near the part of the first bonding component that abuts against the edge plate.
[0021] Compared with the prior art, the laser head of this utility model is set close to the part of the first bonding component that abuts against the edge plate, which can improve the welding accuracy of the laser unit.
[0022] Preferably, the first bonding component includes a pressing mounting base and a pressing roller disposed on the pressing mounting base. The pressing mounting base is mounted on the second bracket, and the rotation tangent direction of the pressing roller is parallel to the welding direction of the edge banding plate.
[0023] Compared with the prior art, this utility model improves the bonding stability and bonding effect between the edge banding plate and the metal plate by using a pressing roller to contact the edge banding plate.
[0024] Preferably, the positioning device further includes a first clamping component, the clamping portion of the first clamping component is located on the upper and lower sides of the edge banding plate, and the first fitting component and the second fitting component are respectively located on both sides of the first clamping component.
[0025] Compared with the prior art, this utility model, through the first bonding component, the second bonding component, and the first clamping component, can form a surrounding positioning of the welding point of the edge plate corresponding to the laser unit. This further ensures that the edge plate remains stationary before the weld between the metal plate and the edge plate is formed, reducing the impact on the welding point of the edge plate corresponding to the laser unit, improving the positioning stability of the welding point of the edge plate corresponding to the laser unit, thereby improving the positioning accuracy of the welding point of the edge plate and improving the welding quality of the product.
[0026] Preferably, the first clamping component includes rotatably arranged clamping rollers, and multiple clamping rollers are arranged along the welding direction of the edge banding plate. The clamping rollers are used to clamp the upper and lower sides of the edge banding plate, and the rotation tangent direction of the clamping rollers is parallel to the welding direction of the edge banding plate.
[0027] Compared with the prior art, the present invention uses multiple clamping rollers to clamp the same edge banding plate, which can improve the clamping effect and clamping stability of the edge banding plate, and improve the welding accuracy and welding quality of the laser unit on the edge banding plate.
[0028] Preferably, the first bracket is movably disposed along the welding direction of the edge banding plate, and the laser unit is mounted on the second bracket so that the laser unit moves with the first bracket to weld the edge banding plate.
[0029] Compared with the prior art, the laser unit of this utility model can weld the edge plate and the metal plate by means of the positioning function of the fitting positioning unit when the first support moves, thereby improving the stability and effect of welding. Attached Figure Description
[0030] Figure 1 This is a first schematic diagram of the overall structure of the edge-sealing plate positioning and welding integrated device in this utility model;
[0031] Figure 2 This is a second schematic diagram of the overall structure of the edge-sealing plate positioning and welding integrated device in this utility model;
[0032] Figure 3 This is a structural diagram to highlight the second clamping component;
[0033] Figure 4This is a structural diagram to highlight the first clamping component and the second mating component;
[0034] Figure 5 This is a structural diagram to highlight the first slide bar and the first slide block;
[0035] Figure 6 This is a structural diagram to highlight the second slide bar and the second slide block.
[0036] Reference numerals: 1. First bracket; 2. Second bracket; 201. Bracket base plate; 202. Second bracket body; 203. Bracket mounting part; 3. Pushing unit; 4. Fitting and positioning unit; 401. First fitting component; 402. Second fitting component; 40201. Fixed mounting plate; 40202. Elastic element; 40203. Fitting and mounting part; 402031. Fitting and mounting plate; 402032. Support plate; 40204. Fitting component; 40205. Guide rod; 40206. Restricting block; 40207. Guide component; 402071. Sleeve part; 402072. Abutting part; 40208. Restricting guide plate; 5. Lifting unit; 6. Clamping and positioning unit; 601. First clamping component; 60101. First mounting plate; 60102. Second mounting plate; 6010 3. Fixed clamping component; 60104. Limiting block; 602. Second clamping component; 60201. Clamping drive component; 60202. Support clamping component; 60203. First fixing component; 602031. Lifting plate part; 602032. First fixing plate part; 60204. Second fixing component; 602041. Second fixing plate part; 7. Laser unit; 8. Mounting base plate; 9. Spacing adjustment unit; 10. Fixing base plate; 11. Laser mounting plate; 12. Lifting adjustment unit; 13. First slide rod; 14. First sliding groove block; 15. First protrusion; 16. First groove; 17. Bracket fixing plate; 18. Second slide rod; 19. Second sliding groove block; 20. Baffle; 21. Second protrusion; 22. Second groove; 23. Reinforcing plate; 24. Push plate; 25. Elastic component; 26. Guide post. Detailed Implementation
[0037] The present invention will now be described in detail with reference to the accompanying drawings and specific embodiments. This embodiment is based on the technical solution of the present invention and provides detailed implementation methods and specific operating procedures; however, the scope of protection of the present invention is not limited to the following embodiments.
[0038] Through in-depth research and improvement exploration of the positioning of the edge banding plate, the applicant discovered that the movement of edge banding plates not corresponding to the bonding unit has a significant impact on the welding joint. Deviations in the positioning of the welding joint can easily affect the product's appearance quality. More importantly, it can cause welding defects such as incomplete fusion, porosity, and cracks, thus significantly reducing the mechanical properties and durability of the weld joint. These quality issues not only increase the difficulty of subsequent processing and rework but may also seriously affect the overall performance and safety of the product.
[0039] Based on this, the technical solutions provided by the various embodiments of this utility model will be described below with reference to the accompanying drawings.
[0040] This specification provides an integrated device for positioning and welding edge banding plates, as illustrated in the embodiments. Figure 1 and Figure 2 As shown, it includes a first support 1, a second support 2, a pushing unit 3, a fitting and positioning unit 4, a lifting unit 5, a clamping and positioning unit 6, and a laser unit 7.
[0041] The pushing unit 3 has its fixed pushing part mounted on the flat plate of the first bracket 1. The movable pushing part of the pushing unit 3 is movably configured on the fixed pushing part towards the surface of the edge-sealing plate. The second bracket 2 is mounted on the movable pushing part, and the fitting and positioning unit 4 is mounted on the second bracket 2 facing the surface of the edge-sealing plate. This allows the pushing unit 3 to use its pushing force to drive the fitting and positioning unit 4 to abut against the edge-sealing plate, thus fitting the edge-sealing plate to the metal plate to be welded. The pushing unit 3 can be cylinder-driven.
[0042] The lifting unit 5 has a fixed lifting section mounted on the second bracket 2. The movable lifting section of the lifting unit 5 is vertically and movably configured on the fixed lifting section. The movable lifting section is mounted on a mounting base plate 8. The clamping and positioning unit 6 has clamping sections located on the upper and lower sides of the edge banding plate. The clamping and positioning unit 6 includes a first clamping component 601 mounted on the mounting base plate 8, so that the lifting unit 5 uses its lifting action to drive the first clamping component 601, clamping and positioning the edge banding plate. The clamping section and the edge banding plate can have surface contact, line contact, or point contact. The lifting unit 5 can be cylinder-driven.
[0043] The laser unit 7 is mounted on the mounting base plate 8 to maintain the distance between the laser unit 7 and the first clamping member 601 in the lifting direction of the lifting movable part, and the position of the laser unit 7 in the lifting direction of the lifting movable part is determined according to the position of the first clamping member 601; the lifting direction of the lifting movable part is perpendicular to the moving direction of the pushing movable part to maintain the distance between the laser unit 7 and the bonding positioning unit 4 in the moving direction of the pushing movable part, and the position of the laser unit 7 in the moving direction of the pushing movable part is determined according to the position of the bonding positioning unit 4. The laser unit 7 is, for example, a laser generator with a laser welding head. The laser unit 7 is used to weld the edge-sealing plate.
[0044] In one embodiment, such as Figure 1 and Figure 2 As shown, the first bracket 1 is movable along the welding direction of the edge banding plate so that the laser unit 7 moves with the first bracket 1 to weld the edge banding plate and weld the edge banding plate to the metal plate to be welded.
[0045] In one embodiment, such as Figure 1 and Figure 2 As shown, the clamping and positioning unit 6 further includes a second clamping component 602 mounted on the mounting base plate 8. The second clamping component 602 and the first clamping component 601 are located in the welding direction of the edge banding plate, and the first clamping component 601 and the second clamping component 602 are respectively located on both sides of the laser unit 7. The clamping part of the first clamping component 601 is used to clamp the unwelded edge banding plate, and the clamping part of the second clamping component 602 is used to clamp the welded edge banding plate, so that when the first clamping component 601 is disengaged from the edge banding plate, the edge banding plate is clamped by the second clamping component 602 to maintain the position of the laser unit 7.
[0046] In one embodiment, such as Figure 2 and Figure 3 As shown, the welded surface of the edge banding plate is an inclined plane. The second clamping component 602 includes a clamping drive component 60201 and a support clamping component 60202. The clamping fixing part of the clamping drive component 60201 is mounted on the mounting base plate 8. The clamping movable part of the clamping drive component 60201 is movably configured on the clamping fixing part toward the plate surface of the edge banding plate. The support clamping component 60202 is mounted on the clamping movable part, and the clamping part of the support clamping component 60202 is arranged toward the welded surface, so that the clamping drive component 60201 uses a pushing force to drive the clamping part of the support clamping component 60202 to abut against the welded surface.
[0047] In one embodiment, such as Figure 2 and Figure 3As shown, the support clamping member 60202 is formed as a support roller and is rotatably connected to the clamping movable part along the tangential direction which is the welding direction of the edge plate. The clamping part of the support clamping member 60202 is used to fit against the welded surface and is located on the side of the support roller so that the clamping part of the support clamping member 60202 fits against the welded surface and rolls.
[0048] In one embodiment, such as Figure 1 , Figure 2 as well as Figure 3 As shown, the second clamping component 602 also includes a first fixing member 60203 and a second fixing member 60204. The first fixing member 60203 includes a lifting plate portion 602031 and a first fixing plate portion 602032 vertically installed below the lifting plate portion 602031. The lifting plate portion 602031 can be lifted and lowered on the mounting base plate 8, and the clamping fixing part is installed below the first fixing plate portion 602032. For example, the lifting plate portion 602031 is provided with a plurality of oblong holes along the lifting direction. These oblong holes cooperate with bolts installed on the mounting base plate 8 to achieve lifting and locking.
[0049] The second fixing member 60204 includes a second fixing plate portion 602041 parallel to the first fixing plate portion 602032 and a rotating shaft portion installed under the second fixing plate portion 602041. The clamping movable portion is installed above the second fixing plate portion 602041, and the supporting clamping member 60202 is rotatably installed on the rotating shaft portion.
[0050] In one embodiment, such as Figure 1 , Figure 2 as well as Figure 4 As shown, the first clamping component 601 includes a first mounting plate 60101, a second mounting plate 60102, and a fixing clamping member 60103. The first mounting plate 60101 is movably disposed on the mounting base plate 8 in a direction perpendicular to the lifting direction of the lifting unit 5, and the second mounting plate 60102 is movably mounted on the first mounting plate 60101. The fixing clamping member 60103 is mounted on the second mounting plate 60102 to adjust the relative position of the first clamping component 601 and the laser unit 7. The moving direction of the first mounting plate is parallel to the welding direction of the edge banding plate.
[0051] The first mounting plate 60101 has multiple oblong holes along the welding direction of the edging plate. These oblong holes cooperate with bolts mounted on the mounting base plate 8 to achieve movement and locking. The second mounting plate 60102 has oblong holes along the lifting direction. These oblong holes cooperate with bolts mounted on the first mounting plate 60101 to achieve movement and locking. The fixing clamp 60103 is configured as a clamping roller and is a rotating shaft rotatably mounted on the first mounting plate 60101 along the welding direction of the edging plate.
[0052] In one embodiment, such as Figure 1 , Figure 2 as well as Figure 4 As shown, multiple fixing clamps 60103 are provided along the welding direction of the edge plate. The first mounting plate 60101 is provided with a lifting slide for sliding in accordance with the lifting direction of the second mounting plate 60102. The mounting base plate 8 is also provided with a limiting block 60104 that abuts against the upper end of the first mounting plate 60101.
[0053] In one embodiment, such as Figure 1 , Figure 2 as well as Figure 5 As shown, a spacing adjustment unit 9 is installed on the second bracket 2. The movable part of the spacing adjustment unit 9 is movably arranged along the pushing direction of the pushing unit 3. A fixed base plate 10 is installed on the movable part of the spacing adjustment unit 9. The lifting and fixing part is installed on the fixed base plate 10, and the fixed base plate 10 is parallel to the mounting base plate 8. A laser mounting plate 11 is movably installed on the mounting base plate 8 along the direction perpendicular to the lifting direction of the lifting unit 5. The laser unit 7 is installed on the laser mounting plate 11.
[0054] The spacing adjustment unit 9 can be a handle screw mechanism, with the lifting and fixing part attached to the fixed base plate 10 and the lifting and moving part attached to the mounting base plate 8. The laser mounting plate 11 is provided with an oblong hole along the welding direction of the edge plate. This oblong hole cooperates with the bolts mounted on the mounting base plate 8 to achieve movement and locking.
[0055] In one embodiment, such as Figure 1 , Figure 2 as well as Figure 5 As shown, the spacing adjustment unit 9 is also equipped with a lifting adjustment unit 12 that moves up and down along the lifting direction of the lifting unit 5, so that the lifting adjustment unit 12 can adjust the initial lifting of the mounting base plate 8 through the spacing adjustment unit 9; the lifting adjustment unit 12 is, for example, a motor-driven lead screw mechanism.
[0056] A first slide bar 13 is formed on the mounting base plate 8, which moves along the lifting direction of the lifting unit 5. The first slide bar 13 is located on both sides of the lifting unit 5. A first sliding groove block 14 is formed on the fixing base plate 10, which is adapted to slide with the first slide bar 13. A first protrusion 15 is formed on the groove side of the first sliding groove block 14, which slides in the first groove 16 on the side of the first slide bar 13 to prevent the first slide bar 13 from disengaging from the first sliding groove block 14. Multiple first sliding groove blocks 14 are provided on one side along the sliding direction of the first slide bar 13, for example, two.
[0057] In one embodiment, such as Figure 1 and Figure 3As shown, two lifting units 5 are set on the second bracket 2 and are respectively located on the upper and lower sides of the edge banding plate, so that the first clamping component 601 is clamped on the upper and lower sides of the edge banding plate respectively, and the laser direction angle between the upper and lower laser units 7 is greater than 90 degrees and less than 180 degrees. For example, the laser direction of the upper laser unit is vertically downward and the angle is 135 degrees.
[0058] In one embodiment, such as Figure 1 and Figure 2 As shown, the second support 2 includes a support base plate 201 and a second support body 202. The support base plate 201 is connected to the push-up movable part. The length direction of the second support body 202 is arranged along the lifting direction of the lifting unit 5. Support mounting parts 203 extend from both sides of the second support body 202 and are fixed to the support base plate 201. The second support bodies 202 on both sides of the support mounting parts 203 are attached to the support base plate 201. The support mounting parts 203 may be cross-shaped. The second support bodies 202 are installed on both sides of the support mounting parts 203 in the length direction by bolts.
[0059] In one embodiment, such as Figure 1 , Figure 2 as well as Figure 6 As shown, bracket fixing plates 17 are vertically mounted on both sides of the bottom of the bracket base plate 201. A second slide rod 18 is provided under the bracket fixing plate 17 and slides along the pushing direction of the pushing movable part. A second sliding groove block 19 is formed on the first bracket 1 to be adapted to and slide with the second slide rod 18. A second protrusion 21 is formed on the groove side of the second sliding groove block 19 and slides in the second groove 22 of the second slide rod 18 to prevent the second slide rod 18 from disengaging from the second sliding groove block 19. Multiple second slide blocks are provided on one side along the sliding direction of the second slide rod 18, and three can be provided.
[0060] In one embodiment, such as Figure 1 and Figure 6 As shown, a reinforcing plate 23 is provided on the bracket fixing plate 17, which is vertically connected to the bracket base plate 201, and the width of the reinforcing plate 23 gradually increases in the direction toward the bracket base plate 201.
[0061] In one embodiment, such as Figure 1 and Figure 4 As shown, the bonding and positioning unit 4 includes a first bonding component 401 and a second bonding component 402 arranged along the welding direction of the edge banding plate, and the edge banding plate welding point corresponding to the laser unit 7 is located in the area between the part of the first bonding component 401 that abuts against the edge banding plate and the part of the second bonding component 402 that abuts against the edge banding plate. For example, the first bonding component 401 and the second bonding component 402 are located on both sides of the first clamping component 601.
[0062] The first bonding component 401 includes a pressing mounting base and pressing rollers disposed on the pressing mounting base. The pressing mounting base is vertically and flexibly mounted on the second bracket 2 via a guide rail assembly. The laser head of the laser unit 7 is located between the part of the first bonding component 401 that abuts against the edge banding plate and the clamping part of the first clamping component 601, and the laser head of the laser unit 7 is positioned as close as possible to the first bonding component 401.
[0063] In one embodiment, such as Figure 1 and Figure 4 As shown, the second bonding component 402 includes a fixed mounting base, an elastic element 40202, a bonding mounting portion 40203, and a bonding member 40204. The fixed mounting base is fixed to the second bracket 2. One end of the elastic element 40202 is connected to the fixed mounting base, and the other end of the elastic element 40202 is connected to the bonding mounting portion 40203. The bonding member 40204 is mounted on the bonding mounting portion 40203 and faces the surface of the edge banding plate. The elastic direction of the elastic element 40202 is parallel to the pushing direction of the pushing unit 3, so that the elastic element 40202 uses elastic force to push the bonding member 40204 against the edge banding plate. The elastic element 40202 is, for example, a spring.
[0064] In one embodiment, such as Figure 1 and Figure 4 As shown, the second fitting component 402 also includes a guide rod 40205 and a limiting block 40206; the fixed mounting base includes a fixed mounting plate 40201 and a guide member 40207. A fixed mounting plate 40201 is mounted on the second bracket 2. The sleeve portion 402071 of the guide member 40207 passes through the fixed mounting plate 40201. The abutting portion 402072 of the guide member 40207 is fixedly surrounded on the outside of the sleeve portion 402071, and the abutting portion 402072 is mounted on the plate surface of the fixed mounting plate 40201 facing the fitting mounting portion 40203. One end of the guide rod 40205 is fixedly connected to the fitting mounting portion 40203, and the other end of the guide rod 40205 can slide through the sleeve portion 402071. An elastic element 40202 is sleeved on the guide rod 40205, and a limiting block 40206 is arranged around the guide rod 40205. The limiting block 40206 is located on the side of the sleeve portion 402071 away from the fitting mounting portion 40203 to keep the elastic element 40202 in a compressed state.
[0065] In one embodiment, such as Figure 1 and Figure 4As shown, the bonding and mounting part 40203 includes a bonding and mounting plate 402031 and two support plates 402032 disposed on the bonding and mounting plate 402031. A support rotation shaft is disposed between the support plates 402032. The bonding member 40204 is configured as a bonding roller and rotates on the support rotation shaft with its tangential direction along the welding direction of the edge plate. A limiting guide plate 40208 is disposed on the fixed mounting plate 40201. The surface of the limiting guide plate 40208 is slidably configured to be bonded to the side of the bonding and mounting plate 402031.
[0066] In one embodiment, such as Figure 1 and Figure 6 As shown, the push-up movable part is provided with a push plate 24, and multiple guide posts 26 are slidably passed through the push plate 24 around the push-up movable part. One end of the guide post 26 is fixedly connected to the second bracket 2, and the other end of the guide post 26 is provided with a baffle 20. The baffle 20 is located on the side of the push plate 24 away from the second bracket 2. Elastic elements 25 are respectively sleeved on the guide posts 26. One end of the elastic element 25 abuts against the push plate 24, and the other end of the elastic element 25 abuts against the second bracket 2, so that the first fitting component 401 elastically buffers and abuts against the edge plate. The elastic element 25 is, for example, a spring, and there are, for example, four guide posts 26.
[0067] The edge-sealing plate positioning and welding integrated device of this utility model can ensure that the actual positioning position of the edge-sealing plate corresponds accurately with the actual welding position, thereby ensuring welding accuracy, ensuring the appearance quality of the product, reducing welding defects, and thus significantly improving the mechanical properties and durability of the welded joint, ensuring the overall performance and safety of the product.
[0068] This specification also provides an edge-sealing panel bonding and positioning device, such as... Figure 1 and 4 As shown, it includes a first bracket 1, a second bracket 2, a pushing unit 3, and a bonding and positioning unit 4. The pushing and fixing part of the pushing unit 3 is installed on the first bracket 1, and the pushing and moving part of the pushing unit 3 is movably configured on the pushing and fixing part toward the surface of the edge plate. The second bracket 2 is installed on the pushing and moving part, and the bonding and positioning unit 4 is installed on the second bracket 2 and is positioned toward the surface of the edge plate, so that the pushing unit 3 uses the pushing force to drive the bonding and positioning unit 4 to abut against the edge plate, and bonding the edge plate to the metal plate to be welded.
[0069] The bonding and positioning unit 4 includes a first bonding component 401 and a second bonding component 402 arranged along the welding direction of the edge banding plate. The laser unit is used to weld the edge banding plate, and the edge banding plate welding point corresponding to the laser unit 7 is located in the area between the part of the first bonding component 401 that abuts against the edge banding plate and the part of the second bonding component 402 that abuts against the edge banding plate.
[0070] In one embodiment, such as Figure 1 and Figure 4As shown, the second bonding component 402 includes a fixed mounting base, an elastic element 40202, a bonding mounting portion 40203, and a bonding member 40204. The fixed mounting base is fixed to the second bracket 2. One end of the elastic element 40202 is connected to the fixed mounting base, and the other end of the elastic element 40202 is connected to the bonding mounting portion 40203. The bonding member 40204 is mounted on the bonding mounting portion 40203 and is disposed facing the surface of the edge banding plate, so that the elastic element 40202 uses elastic force to push the bonding member 40204 against the edge banding plate.
[0071] In one embodiment, such as Figure 1 and Figure 4 As shown, the second fitting component 402 further includes a guide rod 40205 and a limiting block 40206; the fixed mounting base includes a fixed mounting plate 40201 and a guide member 40207; the fixed mounting plate 40201 is mounted on the second bracket 2, the sleeve portion 402071 of the guide member 40207 passes through the fixed mounting plate 40201, the abutting portion 402072 of the guide member 40207 is fixedly surrounded on the outside of the sleeve portion 402071, and the abutting portion 402072 is mounted on the plate surface of the fixed mounting plate 40201 facing the fitting mounting portion 40203. One end of the guide rod 40205 is fixedly connected to the fitting mounting portion 40203, and the other end of the guide rod 40205 can slide through the sleeve portion 402071. The elastic element 40202 is sleeved on the guide rod 40205, and the limiting block 40206 is disposed around the guide rod 40205. The limiting block 40206 is located on the side of the sleeve portion 402071 away from the fitting mounting portion 40203, so as to keep the elastic element 40202 in a compressed state.
[0072] In one embodiment, such as Figure 1 and Figure 4 As shown, the bonding and mounting part 40203 includes a bonding and mounting plate 402031 and two support plates 402032 disposed on the bonding and mounting plate 402031. A support rotation shaft is disposed between the support plates 402032. The bonding member 40204 is configured as a bonding roller and rotates on the support rotation shaft with its tangential direction along the welding direction of the edge plate. A limiting guide plate 40208 is disposed on the fixed mounting plate 40201. The surface of the limiting guide plate 40208 is slidably configured to be bonded to the side of the bonding and mounting plate 402031.
[0073] In one embodiment, such as Figure 1 and Figure 6As shown, the push-top movable part is provided with a push plate 24, and multiple guide posts 26 are slidably passed through the push plate 24 around the push-top movable part. One end of the guide post 26 is fixedly connected to the second bracket 2, and the other end of the guide post 26 is provided with a baffle 20. The baffle 20 is located on the side of the push plate 24 away from the second bracket 2. Elastic members 25 are respectively sleeved on the guide posts 26. One end of the elastic member 25 abuts against the push plate 24, and the other end of the elastic member 25 abuts against the second bracket 2.
[0074] In one embodiment, such as Figure 1 and Figure 3 As shown, the laser head of the laser unit 7 is positioned near the part of the first bonding component 401 that abuts against the edge plate.
[0075] In one embodiment, such as Figure 1 and Figure 3 As shown, the first bonding component 401 includes a pressing mounting base and a pressing roller disposed on the pressing mounting base, which is mounted on the second bracket 2. The rotational tangent direction of the pressing roller is parallel to the welding direction of the edge banding plate.
[0076] In one embodiment, such as Figure 1 and Figure 3 As shown, the positioning device also includes a first clamping component. The clamping part of the first clamping component 601 is located on the upper and lower sides of the edge banding plate, and the first fitting component 401 and the second fitting component 402 are located on both sides of the first clamping component 601.
[0077] In one embodiment, such as Figure 1 and Figure 3 As shown, the first clamping component 601 includes a rotatably arranged clamping roller. Multiple clamping rollers are arranged along the welding direction of the edge banding plate. The clamping rollers are used to clamp the upper and lower sides of the edge banding plate, and the rotation tangent direction of the clamping rollers is parallel to the welding direction of the edge banding plate.
[0078] In one embodiment, such as Figure 1 and Figure 2 As shown, the first bracket 1 is movable along the welding direction of the edge banding plate, and the laser unit 7 is installed on the second bracket 2 so that the laser unit 7 moves with the first bracket 1 to weld the edge banding plate.
[0079] The edge-sealing plate positioning device of this utility model can ensure the positioning stability and positioning accuracy of the edge-sealing plate, thereby ensuring accurate welding, ensuring the appearance quality of the product, reducing welding defects, and thus significantly improving the mechanical properties and durability of the welded joint, ensuring the overall performance and safety of the product.
[0080] The preferred embodiments of this utility model have been described in detail above. It should be understood that those skilled in the art can make numerous modifications and variations based on the concept of this utility model without creative effort. Therefore, all technical solutions that can be obtained by those skilled in the art based on the concept of this utility model through logical analysis, reasoning, or limited experimentation on the basis of existing technology should be within the scope of protection defined by the claims.
Claims
1. A device for bonding and positioning edge banding panels, characterized in that, It includes a first support (1), a second support (2), a pushing unit (3), and a fitting and positioning unit (4); The pushing unit (3) has its pushing fixed part installed on the first bracket (1), and the pushing movable part of the pushing unit (3) is movably configured on the pushing fixed part toward the surface of the edge plate. The second bracket (2) is installed on the pushing movable part, and the fitting positioning unit (4) is installed on the second bracket (2) and is positioned toward the surface of the edge plate, so that the pushing unit (3) uses pushing force to drive the fitting positioning unit (4) to abut against the edge plate and fit the edge plate to the metal plate to be welded. The bonding and positioning unit (4) includes a first bonding component (401) and a second bonding component (402) arranged along the welding direction of the edge plate. The laser unit (7) is used to weld the edge plate, and the edge plate welding point corresponding to the laser unit (7) is located in the area between the part of the first bonding component (401) that abuts against the edge plate and the part of the second bonding component (402) that abuts against the edge plate.
2. The edge-sealing board bonding and positioning device according to claim 1, characterized in that, The second bonding component (402) includes a fixed mounting base, an elastic element (40202), a bonding mounting part (40203), and a bonding member (40204); the fixed mounting base is fixed to the second bracket (2), one end of the elastic element (40202) is connected to the fixed mounting base, and the other end of the elastic element (40202) is connected to the bonding mounting part (40203). The bonding member (40204) is mounted on the bonding mounting part (40203) and is disposed facing the surface of the edge banding plate, so that the elastic element (40202) uses elastic force to push the bonding member (40204) against the edge banding plate.
3. The edge-sealing plate bonding and positioning device according to claim 2, characterized in that, The second fitting component (402) further includes a guide rod (40205) and a limiting block (40206); the fixed mounting base includes a fixed mounting plate (40201) and a guide member (40207); The fixed mounting plate (40201) is mounted on the second bracket (2), the sleeve portion (402071) of the guide member (40207) passes through the fixed mounting plate (40201), the abutting portion (402072) of the guide member (40207) is fixedly surrounded on the outside of the sleeve portion (402071), and the abutting portion (402072) is mounted on the plate surface of the fixed mounting plate (40201) facing the fitting mounting portion (40203); One end of the guide rod (40205) is fixedly connected to the fitting and mounting part (40203), and the other end of the guide rod (40205) can slide through the sleeve part (402071); the elastic element (40202) is sleeved on the guide rod (40205), and the limiting block (40206) is arranged around the guide rod (40205), and the limiting block (40206) is located on the side of the sleeve part (402071) away from the fitting and mounting part (40203) to keep the elastic element (40202) in a compressed state.
4. The edge-sealing board bonding and positioning device according to claim 3, characterized in that, The bonding and mounting part (40203) includes a bonding and mounting plate (402031) and two support plates (402032) disposed on the bonding and mounting plate (402031). A support rotation shaft is disposed between the support plates (402032). The bonding component (40204) is configured as a bonding roller and rotates on the support rotation shaft with its tangential direction along the welding direction of the edge plate. A limiting guide plate (40208) is disposed on the fixed mounting plate (40201). The surface of the limiting guide plate (40208) is slidably configured to be bonded to the side of the bonding and mounting plate (402031).
5. The edge-sealing plate bonding and positioning device according to any one of claims 1 to 4, characterized in that, The push-top movable part is provided with a push plate (24), and multiple guide posts (26) are slidably passed through the push plate (24) around the push-top movable part. One end of the guide post (26) is fixedly connected to the second bracket (2), and the other end of the guide post (26) is provided with a baffle (20). The baffle (20) is located on the side of the push plate (24) away from the second bracket (2). Elastic members (25) are respectively sleeved on the guide post (26). One end of the elastic member (25) abuts against the push plate (24), and the other end of the elastic member (25) abuts against the second bracket (2).
6. The edge-binding board bonding and positioning device according to any one of claims 1 to 4, characterized in that, The laser head of the laser unit (7) is positioned near the first bonding component (401) and abuts against the edge plate.
7. The edge-binding board bonding and positioning device according to any one of claims 1 to 4, characterized in that, The first bonding component (401) includes a pressing mounting base and a pressing roller disposed on the pressing mounting base. The pressing mounting base is mounted on the second bracket (2), and the rotation tangent direction of the pressing roller is parallel to the welding direction of the edge banding plate.
8. The edge-binding board bonding and positioning device according to any one of claims 1 to 4, characterized in that, The positioning device also includes a first clamping component (601), the clamping part of the first clamping component (601) is located on the upper and lower sides of the edge banding plate, and the first fitting component (401) and the second fitting component (402) are respectively located on both sides of the first clamping component (601).
9. The edge-sealing plate bonding and positioning device according to claim 8, characterized in that, The first clamping component (601) includes a rotatably arranged clamping roller. Multiple clamping rollers are arranged along the welding direction of the edge banding plate. The clamping rollers are used to clamp the upper and lower sides of the edge banding plate, and the rotation tangent direction of the clamping rollers is parallel to the welding direction of the edge banding plate.
10. The edge-binding board bonding and positioning device according to any one of claims 1 to 4, characterized in that, The first bracket (1) is movably disposed along the welding direction of the edge banding plate, and the laser unit (7) is mounted on the second bracket (2) so that the laser unit (7) moves with the first bracket (1) to weld the edge banding plate.