Gluing and pressing equipment for fender assembly

By using automated glue application and pressing equipment, the problem of instability in manual glue application is solved through the cooperation of drive components and contouring suction cups. This improves glue application uniformity and pressing firmness, thereby increasing production efficiency and equipment adaptability.

CN224087159UActive Publication Date: 2026-04-07NINGBO SWELL IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

In the existing technology, the glue application process of the fender assembly relies on manual operation, which leads to unstable glue output, affects the fixing effect between the light-transmitting decorative panel and the inner lining panel, and results in low production efficiency.

Method used

The automated glue dispensing and pressing equipment uses a drive component to precisely control the position and movement of the glue gun. Combined with a contour base and suction cups to fix the board, it ensures uniform glue dispensing and firm pressing. This includes the coordinated work of the lower mold component, upper mold component, glue gun, first drive component, second drive component, and third drive component.

Benefits of technology

It achieves uniform glue application and secure fixation between the translucent decorative panel and the inner lining panel, improving production efficiency and equipment stability, reducing failure rate and maintenance costs, and adapting to the production needs of different models and specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of automobile parts, in particular to gluing and pressing equipment for a fender assembly. The device comprises a lower mold assembly used for fixing a lining panel, an upper mold assembly used for fixing a light-transmitting veneer, a glue gun, a first driving assembly used for driving the lower mold assembly to move front and back, and a second driving assembly used for driving the glue gun to lift and move left and right so as to be aligned with the lining panel on the lower mold assembly, the third driving assembly is used for driving the upper die assembly to ascend and descend so as to press the light-transmitting veneer on the lining panel; and the cabinet and the bedplate are used for mounting all parts. The wheel fender assembly gluing device has the advantages that the situation that the glue output amount is unstable when manual gluing is conducted is improved, the gluing uniformity is improved, and therefore the pressing firmness of a wheel fender assembly is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of automobile accessories, in particular to a fender assembly gluing and pressing equipment. BACKGROUND

[0002] The fender assembly is an important part of the automobile body, mainly used for covering the wheels to improve driving safety and aerodynamic performance.

[0003] In the related art, a fender assembly is provided in Chinese Utility Model Patent No. CN222522741U, which includes an inner lining plate, a light-emitting lamp box mounted on the inner lining plate, and a light-transmitting trim panel covering the front surface of the inner lining plate and covering the light-emitting lamp box illumination port. The front surface of the inner lining plate is provided with a gluing flow channel. When assembling the light-transmitting trim panel, special glue is first injected into the gluing flow channel, and then the light-transmitting trim panel is pressed onto the inner lining plate. The glue in the gluing flow channel adheres to the light-transmitting trim panel and solidifies, thereby achieving the fixation between the light-transmitting trim panel and the inner lining plate.

[0004] In view of the related art described above, the gluing of the inner lining plate and the pressing of the light-transmitting trim panel are both completed manually by human labor. Manual gluing has unstable factors in controlling the amount of glue, and the amount of glue may be excessive or insufficient during the gluing process, resulting in uneven amount of glue on the inner lining plate, thereby affecting the pressing and fixing effect of the light-transmitting trim panel. Utility Model Content

[0005] In order to improve the instability of the amount of glue in manual gluing, improve the uniformity of gluing, and thus improve the pressing firmness of the fender assembly, the present application provides a fender assembly gluing and pressing equipment.

[0006] The fender assembly gluing and pressing equipment provided by the present application adopts the following technical solution:

[0007] A fender assembly gluing and pressing equipment, comprising a lower die assembly for fixing an inner lining plate, an upper die assembly for fixing a light-transmitting trim panel, a glue gun, a first driving assembly for driving the lower die assembly to move forward and backward, a second driving assembly for driving the glue gun to move up and down and left and right so as to align with the inner lining plate on the lower die assembly, a third driving assembly for driving the upper die assembly to move up and down so as to press the light-transmitting trim panel onto the inner lining plate, and a cabinet and a table plate for mounting various components.

[0008] Compared with manual glueing, the first driving assembly drives the lower mold assembly to move forward and backward, the second driving assembly drives the glue gun to move up and down and left and right to align with the inner lining plate on the lower mold assembly, so that the glue gun can more accurately glue the glue flow channel on the inner lining plate, avoiding the situation of excessive glue or insufficient glue caused by unstable glue output when manually gluing, improving the problem of uneven glue amount on the inner lining plate, and improving the uniformity of glueing. The third driving assembly drives the upper mold assembly to move up and down to press the light-transmitting decorative panel on the inner lining plate, so that the light-transmitting decorative panel can be more firmly fixed with the inner lining plate, improving the pressing firmness of the fender assembly. The first driving assembly can drive the lower mold assembly to move forward and backward, the second driving assembly can drive the glue gun to move, and the third driving assembly can drive the upper mold assembly to move up and down. The entire glueing and pressing process can be automatically operated, which improves the production efficiency compared with manual operation.

[0009] Further, the lower mold assembly comprises an inner lining plate profiling seat and a plurality of inner lining plate suction cups arranged on the inner lining plate profiling seat.

[0010] The first driving assembly comprises a sliding table, a first motor lead screw and a sliding guide rail. The sliding table is arranged above the table plate and is used to install the inner lining plate profiling seat. The first motor lead screw is arranged between the table plate and the sliding table. The lower side of the sliding table is fixedly connected with a first driving block for threadedly cooperating with the lead screw. The sliding guide rail is arranged on the table plate and is arranged in parallel at the adjacent position of the first motor lead screw.

[0011] By adopting the above technical scheme, in the lower mold assembly, the inner lining plate profiling seat can be well fitted according to the shape of the inner lining plate, providing support and positioning basis for the inner lining plate. The plurality of inner lining plate suction cups can fix the inner lining plate through suction force to prevent displacement of the inner lining plate during glueing and pressing, ensuring the position accuracy of the inner lining plate during the entire operation process. In the first driving assembly, the sliding table is used to install the inner lining plate profiling seat, bearing the lower mold assembly and providing a moving platform. The first motor lead screw serves as a power transmission component. The rotation of the lead screw drives the sliding table to move and accurately controls the forward and backward movement distance of the sliding table, thereby realizing the accurate forward and backward movement of the lower mold assembly, so that the inner lining plate can be accurately moved to the corresponding position of the glue gun or the upper mold assembly, ensuring the accuracy of glueing and pressing operation.

[0012] Further, the second driving assembly comprises a portal frame, a second motor lead screw and a third motor lead screw, the portal frame is installed on the table plate and located above the first driving assembly and the sliding table, the second motor lead screw is arranged along the length direction of the portal frame and perpendicular to the length direction of the first motor lead screw, a second driving block is arranged on the second motor lead screw, the second driving block is provided with a mounting plate on one side for fixing the third motor lead screw, the third motor lead screw is arranged on the side wall of the mounting plate and perpendicular to the table plate.

[0013] A third driving block is arranged on the third motor lead screw, and a glue gun seat is arranged on the third driving block.

[0014] By adopting the above technical scheme, the portal frame is installed on the table plate and located above the first driving assembly and the sliding table, thereby providing a mounting basis for the second motor lead screw and the third motor lead screw. The second motor lead screw is arranged along the length direction of the portal frame and perpendicular to the length direction of the first motor lead screw, so that the glue gun can be accurately moved in the horizontal plane. The third motor lead screw is arranged perpendicular to the table plate, so that the glue gun can be accurately lifted in the vertical direction. The second motor lead screw and the third motor lead screw accurately control the moving distance of the second driving block and the third driving block, thereby accurately controlling the position of the glue gun, ensuring that the glue gun accurately aims at the glue injection channel on the inner lining plate, avoiding problems such as uneven glue injection or incorrect glue injection position caused by position deviation, improving the position accuracy of glue injection, and thereby improving the glue injection quality of the fender assembly.

[0015] Further, the glue gun seat comprises a mounting vertical plate fixedly connected to the third driving block and a fixing block vertically arranged on the side of the mounting vertical plate away from the third driving block, the glue gun comprises a glue outlet and a glue chamber, and the glue chamber is vertically arranged in the fixing block and used for accommodating glue.

[0016] By adopting the above technical scheme, the glue gun seat is provided with the mounting vertical plate and fixedly connected to the third driving block, so that the glue gun is stably installed on the third driving block, the third driving block is driven by the third motor lead screw to realize vertical movement, thereby ensuring that the glue gun does not easily shake or fall off during movement and providing a reliable mounting basis for the glue gun. The glue chamber vertically arranged in the fixing block and used for accommodating glue facilitates the storage of glue, so that the glue gun can continuously obtain glue supply, thereby ensuring the continuity of glue injection operation, the vertical arrangement of the glue chamber conforms to the characteristics of natural glue flow, which is conducive to the smooth flow of glue into the glue gun and reduces problems such as glue injection interruption or uneven glue injection caused by poor glue supply.

[0017] Further, the glue gun seat further comprises a controller for heating and pressurizing the glue chamber, an installation beam for installing the controller is arranged on the outer wall of the glue chamber close to the lower end, and the controller is electrically connected with the glue gun.

[0018] By adopting the technical scheme, the controller can warm the glue bin, the viscosity of the glue will decrease and the flowability will increase at a proper temperature, the glue can flow more smoothly from the glue bin into the glue gun and be extruded during the glue dispensing process, and the continuity and stability of the glue dispensing are ensured. The controller provides a certain pressure to the glue bin to make the glue flow more stably out of the glue head, effectively overcome the resistance in the glue flow process, ensure the uniformity of the glue dispensing amount, avoid the situation of excessive glue dispensing or insufficient glue dispensing amount, further improve the uniformity and consistency of the glue dispensing, and help to improve the pressing firmness of the fender assembly.

[0019] Further, a top plate for mounting the third driving assembly is arranged above the table plate, and vertical columns for fixedly connecting the top plate are arranged at each corner position on the upper side of the table plate.

[0020] By adopting the technical scheme, the top plate is arranged above the table plate to provide a stable mounting basis for the third driving assembly, the third driving assembly is used to drive the upper die assembly to ascend and descend to press the light-transmitting veneer to the inner lining plate, the force generated during the pressing process can be received by the top plate to ensure the stability of the third driving assembly during operation, and then the stability and accuracy of the ascending and descending action of the upper die assembly are ensured, which is beneficial to improve the pressing quality of the fender assembly.

[0021] Further, the third driving assembly comprises a lifting plate for mounting the upper die assembly, a pressing cylinder mounted on the top plate and used to drive the lifting plate, and a guide column arranged between the table plate and the top plate and used for sliding movement of the lifting plate, and the lifting plate is fixedly connected with a sliding connection block used for cooperation with the guide column at the edge position.

[0022] By adopting the technical scheme, the pressing cylinder of the third driving assembly provides stable power to drive the lifting plate, the lifting plate is used to mount the upper die assembly, the pressing cylinder drives the lifting plate to ascend and descend, so that the upper die assembly can press the light-transmitting veneer to the inner lining plate. The cylinder driving has the characteristics of fast response speed and stable thrust, and can ensure the stability and consistency of the pressing process. The guide column is arranged between the table plate and the top plate, and the lifting plate cooperates with the guide column through the sliding connection block to provide accurate guidance for the ascending and descending movement of the lifting plate, limit the deviation and shaking of the lifting plate during the movement, so that the upper die assembly can be accurately aligned with the inner lining plate during pressing, improve the pressing accuracy, and the accurate pressing position helps to ensure the fitting effect between the light-transmitting veneer and the inner lining plate.

[0023] Further, the upper die assembly comprises a light-transmitting veneer profiling seat and a plurality of light-transmitting veneer suction cups arranged on the light-transmitting veneer profiling seat, and the light-transmitting veneer profiling seat is fixedly connected to the lower side of the lifting plate and corresponds to the upper and lower sides of the inner lining plate profiling seat.

[0024] By adopting the technical scheme, the light-transmitting trim panel profiling seat of the upper die assembly is matched with the light-transmitting trim panel, and accurate positioning is provided for the light-transmitting trim panel. When the light-transmitting trim panel is placed on the profiling seat, the light-transmitting trim panel can accurately correspond to the inner lining plate profiling seat up and down, so that the relative position accuracy of the light-transmitting trim panel and the inner lining plate during pressing is ensured. The plurality of light-transmitting trim panel suction cups are arranged on the light-transmitting trim panel profiling seat, and the light-transmitting trim panel is fixed by the suction force of the suction cups, so that displacement or shaking of the light-transmitting trim panel during pressing is prevented, the smooth pressing operation is ensured, and poor pressing caused by movement of the light-transmitting trim panel is avoided.

[0025] Further, the base plate is further provided with a preheating bin matched with the glue bin and used for preheating glue.

[0026] By adopting the technical scheme, the preheating bin preheats the glue, so that the glue reaches a certain temperature before entering the glue bin, the viscosity of the glue is further reduced, and when the glue enters the glue bin, the glue flowability is better guaranteed by cooperating with the glue bin heating and pressurizing controller, so that the glue is more smooth when being extruded from the glue gun, problems such as uneven glue coating and intermittent glue extrusion caused by poor glue flowability are avoided, and the glue coating quality and effect are significantly improved.

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

[0028] 1. By cooperation of each driving assembly and related components, the first driving assembly and the second driving assembly accurately position the glue gun for glue coating, avoid unstable glue coating amount caused by manual glue coating, improve glue coating uniformity, the third driving assembly and the upper and lower die assemblies ensure accurate alignment and pressing of the light-transmitting trim panel and the inner lining plate, and improve pressing firmness and assembly quality;

[0029] 2. The column and the top plate ensure stable installation of the third driving assembly, the guide column and the sliding connection block cooperate to make the lifting plate move stably, the inner lining plate, the light-transmitting trim panel profiling seat and the suction cup reliable fixing component prevent displacement, each component has reasonable structure, the overall structural strength and stability of the equipment are enhanced, equipment failure and maintenance cost are reduced, and service life is prolonged;

[0030] 3. The equipment realizes automatic glue coating and pressing operation, greatly improves production efficiency compared with manual operation, and can adapt to different characteristics of glue by setting the controller and the preheating bin. By replacing the profiling seat, different specifications of wing panel assemblies can be produced, the versatility and flexibility of the equipment are improved, and equipment investment cost is saved. BRIEF DESCRIPTION OF DRAWINGS

[0031] Figure 1 is a schematic diagram of the overall structure of a glue coating and pressing equipment for a wing panel assembly according to an embodiment of the present application.

[0032] Figure 2is an overall structural schematic diagram of the cabinet, the table plate, the first driving assembly and the lower die assembly of the embodiment of the present application.

[0033] Figure 3 is an overall structural schematic diagram of the lower die assembly of the embodiment of the present application.

[0034] Figure 4 is an overall structural schematic diagram of the glue gun and the second driving assembly of the embodiment of the present application. Figure 1 .

[0035] Figure 5 is an overall structural schematic diagram of the glue gun and the second driving assembly of the embodiment of the present application. Figure 2 .

[0036] Figure 6 is an overall structural schematic diagram of the top plate and the third driving assembly of the embodiment of the present application.

[0037] Figure 7 is an overall structural schematic diagram of the top plate and the third driving assembly of the embodiment of the present application.

[0038] Figure 8 is an overall structural schematic diagram of the upper die assembly of the embodiment of the present application.

[0039] Mark 1, cabinet; 11, table plate; 12, top plate; 13, stand column; 2, upper die assembly; 21, light-transmitting veneer profiling seat; 22, light-transmitting veneer suction cup; 3, lower die assembly; 31, inner lining profiling seat; 32, inner lining suction cup; 4, glue gun; 41, glue outlet head; 42, glue compartment; 5, preheating compartment; 6, first driving assembly; 61, sliding table; 62, first motor lead screw; 63, sliding guide rail; 64, first driving block; 7, second driving assembly; 71, gantry frame; 72, second motor lead screw; 73, third motor lead screw; 74, second driving block; 75, mounting plate; 76, third driving block; 77, glue gun seat; 771, mounting stand plate; 772, fixing block; 773, mounting cross beam; 774, controller; 8, third driving assembly; 81, lifting plate; 82, pressing air cylinder; 83, guide column; 84, sliding connection block. DETAILED DESCRIPTION

[0040] In order to make the purpose, technical scheme and advantages of the present application more clear, the present application is further described in detail below with reference to the accompanying drawings and embodiments. Figures 1-8

[0041] The embodiment of the present application discloses a wing assembly assembly glue pressing device. Referring to Figure 1 ​, the wing assembly gluing and pressing equipment comprises a cabinet 1, an upper mold assembly 2, a lower mold assembly 3, a glue gun 4, a preheating bin 5, a first driving assembly 6, a second driving assembly 7 and a third driving assembly 8. A table plate 11 is arranged on the top side of the cabinet 1 to support and install other components in the equipment, the upper mold assembly 2 is used for fixing the light-transmitting veneer, and the lower mold assembly 3 is used for fixing the inner lining plate. The first driving assembly 6 can drive the lower mold assembly 3 to move back and forth, the second driving assembly 7 can drive the glue gun 4 to move up and down and left and right, so that the glue gun 4 is aligned with the inner lining plate on the lower mold assembly 3 and glues is applied. The third driving assembly 8 is used for driving the upper mold assembly 2 to move up and down, so as to press the light-transmitting veneer on the inner lining plate.

[0042] Referring to Figure 2 and Figure 3 , the top side of the cabinet 1 forms a table plate 11 for installing other components, the first driving assembly 6 is installed on the table plate 11, and the first driving assembly 6 comprises a sliding table 61, a first motor lead screw 62 and a sliding guide rail 63. The sliding table 61 is located above the table plate 11 and is used for installing the lower mold assembly 3, and the first motor lead screw 62 is installed between the table plate 11 and the sliding table 61. The first driving block 64 for the lead screw is fixedly connected to the lower side of the sliding table 61 and is threadedly connected to the lead screw. The number of the sliding guide rails 63 is two, both of the two sliding guide rails 63 are fixedly connected to the table plate 11, and the two sliding guide rails 63 are symmetrically and parallelly arranged at the adjacent positions on both sides of the first motor lead screw 62. The preheating bin 5 is arranged on the table plate 11 and is used for preheating the glue, so that the glue reaches a certain temperature, the viscosity is reduced, and the flowability of the glue is ensured.

[0043] The lower mold assembly 3 comprises an inner lining plate profiling seat 31 and a plurality of inner lining plate suction cups 32 embedded on the inner lining plate profiling seat 31, and the inner lining plate profiling seat 31 is fixedly connected to the upper side of the sliding table 61. The inner lining plate profiling seat 31 can be well fitted according to the shape of the inner lining plate, and provides a support and positioning basis for the inner lining plate. The plurality of inner lining plate suction cups 32 can fix the inner lining plate through adsorption force, prevent the inner lining plate from being displaced during gluing and pressing, and ensure the positional accuracy of the inner lining plate during the entire operation process.

[0044] Referring to Figure 4 and Figure 5 , the second driving assembly 7 comprises a gantry 71, a second motor lead screw 72 and a third motor lead screw 73. The gantry 71 is fixedly connected to the table plate 11 and spans above the first driving assembly 6 and the sliding table 61, the second motor lead screw 72 is arranged along the length direction of the gantry 71 and perpendicular to the length direction of the first motor lead screw 62.

[0045] The second motor screw rod 72 is threadedly matched with a second driving block 74, and the second driving block 74 is fixedly connected with a mounting plate 75 on one side. The third motor screw rod 73 is perpendicular to the table plate 11 and is mounted on the side wall of the mounting plate 75. The third motor screw rod 73 is threadedly matched with a third driving block 76, and the third driving block 76 is provided with a glue gun 4 seat on the side away from the mounting plate 75.

[0046] The glue gun 4 comprises a glue bin 42 and a glue outlet 41 mounted at the lower end of the glue bin 42. The glue gun 4 seat comprises a mounting vertical plate 771 fixedly connected with the third driving block 76, and a fixed block 772 vertically arranged and fixedly connected with the mounting vertical plate 771 away from the third driving block 76. The glue bin 42 is vertically arranged and detachably connected with the fixed block 772. An installation beam 773 is arranged on the outer wall of the glue bin 42 close to the lower end position. A controller 774 is mounted on the installation beam 773 adjacent to the glue bin 42. The controller 774 is electrically connected with the glue gun 4, so as to warm and pressurize the glue bin 42.

[0047] The tube containing glue is first heated in the preheating bin 5 and then taken out and loaded into the glue bin 42. The controller 774 warms the glue bin 42. At a proper temperature, the viscosity of the glue is reduced and the flowability is enhanced. During the glue dispensing process, the glue can flow more smoothly from the glue bin 42 into the glue gun 4 and be extruded. The controller 774 provides a certain pressure to the glue bin 42, so as to extrude the glue more stably from the glue outlet 41, effectively overcome the resistance during the glue flow process, and ensure the uniformity of the glue dispensing amount.

[0048] Referring to Figure 6 and Figure 7 , the third driving assembly 8 comprises a lifting plate 81, a pressing cylinder 82 and guide columns 83. The lifting plate 81 is fixedly connected with sliding connection blocks 84 for cooperating with the guide columns 83 at the edge positions. Figure 1 The table plate 11 is provided with a top plate 12 for mounting the third driving assembly 8 above. The table plate 11 is vertically provided and fixedly connected with vertical columns 13 at the corner positions on the upper side. The top plate 12 is fixedly connected with the top ends of the vertical columns 13.

[0049] The pressing cylinder 82 is mounted on the upper side of the top plate 12. The piston rod of the pressing cylinder 82 penetrates through the top plate 12 for connecting and driving the lifting plate 81. The number of the guide columns 83 is four and they are dispersedly arranged on the table plate 11. Each guide column 83 is vertically arranged and fixedly connected between the table plate 11 and the top plate 12. The number of the sliding connection blocks 84 corresponds to four, and each sliding connection block is correspondingly and slidingly mounted on each guide column 83.

[0050] Referring to Figure 7 and Figure 8The upper mold assembly 2 includes a light-transmitting veneer profiling seat 21 and a plurality of light-transmitting veneer suction cups 22 arranged on the light-transmitting veneer profiling seat 21. The light-transmitting veneer profiling seat 21 is fixedly connected to the lower side of the lifting plate 81 and corresponds to the inner lining profiling seat 31 in a vertical direction. The upper mold assembly 2 provides accurate positioning for the light-transmitting veneer. When the light-transmitting veneer is placed on the profiling seat, it can accurately correspond to the inner lining profiling seat 31 in a vertical direction, thereby ensuring the relative position accuracy of the light-transmitting veneer and the inner lining when they are pressed together. The plurality of light-transmitting veneer suction cups 22 are arranged on the light-transmitting veneer profiling seat 21. The light-transmitting veneer is fixed by the suction force of the suction cups to prevent displacement or shaking of the light-transmitting veneer during pressing, thereby ensuring the smooth pressing operation and avoiding poor pressing caused by movement of the light-transmitting veneer.

[0051] The implementation principle of the wing assembly assembly gluing and pressing equipment according to the embodiment of the application is as follows: the inner lining profiling seat 31 and the inner lining suction cup 32 of the lower mold assembly 3 cooperate to fit according to the shape of the inner lining, and the inner lining is fixed by the suction force of the suction cup to ensure the position accuracy; the light-transmitting veneer profiling seat 21 and the light-transmitting veneer suction cup 22 of the upper mold assembly 2 cooperate to provide accurate positioning for the light-transmitting veneer, and the light-transmitting veneer is fixed by the suction force of the suction cup to ensure the relative position accuracy of the light-transmitting veneer and the inner lining when they are pressed together.

[0052] In the first driving assembly 6, the first motor lead screw 62 rotates to drive the sliding table 61 and the lower mold assembly 3 fixed thereon to move back and forth, so that the inner lining reaches a suitable position. In the second driving assembly 7, the second motor lead screw 72 and the third motor lead screw 73 drive the glue gun 4 to move in the horizontal and vertical directions, respectively, to realize accurate alignment of the glue gun 4 with the glue injection channel on the inner lining. The glue is first preheated in the preheating bin 5 to reduce the viscosity, and then is loaded into the glue bin 42 of the glue gun 4. The controller 774 of the glue bin 42 warms and pressurizes the glue to further reduce the viscosity of the glue, overcome the flow resistance, and ensure that the glue is smoothly and stably extruded from the glue gun 4 and uniformly injected onto the inner lining. During the glue injection process, the first driving assembly 6 continues to drive the lower mold assembly 3 to move back and forth, so that the glue injection channel of the inner lining is aligned with the glue outlet of the glue gun 4.

[0053] In the third driving assembly 8, the pressing cylinder 82 is installed on the top plate 12. The piston rod of the pressing cylinder 82 drives the lifting plate 81 to slide up and down along the guide column 83, and drives the upper mold assembly 2 fixed to the lower side of the lifting plate 81 to descend, so as to press the light-transmitting veneer onto the inner lining. The guide column 83 provides accurate guidance for the lifting plate 81 to ensure accurate pressing position. During the pressing process of the light-transmitting veneer and the inner lining, the pressing cylinder 82 needs to be pressed down and last for at least 1 min, so as to ensure that the light-transmitting veneer and the inner lining are firmly pressed together.

[0054] The above are preferred embodiments of the application, which do not limit the protection scope of the application. Any equivalent changes made according to the structure, shape and principle of the application should be covered by the protection scope of the application.

Claims

1. A glue-applying and pressing device for a fender assembly, characterized in that: It includes a lower mold assembly (3) for fixing the inner lining panel, an upper mold assembly (2) for fixing the light-transmitting decorative panel, a glue gun (4), a first drive assembly (6) for driving the lower mold assembly (3) to move back and forth, a second drive assembly (7) for driving the glue gun (4) to move up and down and left and right to align with the inner lining panel on the lower mold assembly (3), a third drive assembly (8) for driving the upper mold assembly (2) to move up and down to press the light-transmitting decorative panel onto the inner lining panel, and a cabinet (1) and a platform (11) for installing the various components.

2. The adhesive bonding equipment for a fender assembly according to claim 1, characterized in that: The lower mold assembly (3) includes an inner lining plate contour seat (31) and a plurality of inner lining plate suction cups (32) disposed on the inner lining plate contour seat (31); The first drive assembly (6) includes a slide table (61), a first motor lead screw (62), and a sliding guide rail (63). The slide table (61) is located above the platform (11) and is used to install the inner lining plate contour seat (31). The first motor lead screw (62) is located between the platform (11) and the slide table (61). A first drive block (64) for the lead screw to pass through and threadedly engages is fixedly connected to the lower side of the slide table (61). The sliding guide rail (63) is located on the platform (11) and is arranged parallel to the first motor lead screw (62) at an adjacent position.

3. The adhesive bonding equipment for a fender assembly according to claim 2, characterized in that: The second drive assembly (7) includes a gantry frame (71), a second motor lead screw (72), and a third motor lead screw (73). The gantry frame (71) is mounted on the platform (11) and located above the first drive assembly (6) and the slide table (61). The second motor lead screw (72) is arranged along the length direction of the gantry frame (71) and is perpendicular to the length direction of the first motor lead screw (62). The second motor lead screw (72) is provided with a second drive block (74). The second drive block (74) is provided with a mounting plate (75) on one side for fixing the third motor lead screw (73). The third motor lead screw (73) is located on the side wall of the mounting plate (75) and is perpendicular to the platform (11). The third motor lead screw (73) is provided with a third drive block (76), and the third drive block (76) is provided with a glue gun (4) seat.

4. The adhesive bonding equipment for a fender assembly according to claim 3, characterized in that: The glue gun (4) base includes a mounting plate (771) fixedly connected to the third drive block (76) and a fixing block (772) vertically disposed on the side of the mounting plate (771) away from the third drive block (76). The glue gun (4) includes a glue nozzle (41) and a glue tank (42). The glue tank (42) is vertically disposed through the fixing block (772) and is used to hold glue.

5. The adhesive bonding equipment for a fender assembly according to claim 4, characterized in that: The glue gun (4) base also includes a controller (774) for heating and pressurizing the glue tank (42). The glue tank (42) has an installation beam (773) fitted on its outer wall near the lower end for mounting the controller (774). The controller (774) is electrically connected to the glue gun (4).

6. The adhesive bonding equipment for a fender assembly according to claim 1, characterized in that: The platform (11) is provided with a top plate (12) for installing the third drive assembly (8) and the platform (11) is provided with vertical columns (13) at each corner position for fixing and connecting the top plate (12).

7. The adhesive bonding equipment for a fender assembly according to claim 6, characterized in that: The third drive assembly (8) includes a lifting plate (81) for mounting the upper mold assembly (2), a pressing cylinder (82) mounted on the top plate (12) for driving the lifting plate (81), and a guide post (83) disposed between the platform (11) and the top plate (12) for sliding the lifting plate (81). The lifting plate (81) has a sliding connecting block (84) fixedly connected at its edge for cooperating with the guide post (83).

8. The adhesive bonding equipment for a fender assembly according to claim 7, characterized in that: The upper mold assembly (2) includes a light-transmitting decorative panel shaping seat (21) and a plurality of light-transmitting decorative panel suction cups (22) disposed on the light-transmitting decorative panel shaping seat (21). The light-transmitting decorative panel shaping seat (21) is fixedly connected to the lower side of the lifting plate (81) and corresponds vertically to the inner lining plate shaping seat (31).

9. The adhesive bonding equipment for a fender assembly according to claim 4, characterized in that: The platform (11) is also provided with a preheating chamber (5) that cooperates with the glue tank (42) and is used to preheat the glue.

Citation Information

Patent Citations

  • Fender assembly

    CN222522741U