Vehicle logo machining equipment

By designing car logo processing equipment and using cutting and clamping devices to automatically remove injection molding residue and quickly apply adhesives, the problem of low efficiency in existing technology that relies on manual operation is solved, and efficient car logo processing is achieved.

CN223326509UActive Publication Date: 2025-09-12NINGBO SWELL IND CO LTD
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Patent Information

Application Number
CN202422375618.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-28
Publication Date
2025-09-12
Estimated Expiration
2034-09-28

AI Technical Summary

Technical Problem

The adhesive coating step in existing car logo processing equipment relies heavily on the workers' proficiency, resulting in low production efficiency.

Method used

A car logo processing equipment is designed, which includes a processing table, a cutting device, a clamping device and a positioning column. It automatically removes injection molding residue and quickly applies adhesive. The car logo is fixed with a cutting tool and a clamping device, and the positioning column is used to determine the pasting position of the adhesive film.

Benefits of technology

The automation of car logo processing has been realized, production efficiency has been improved, the quality of the car logo has been ensured to meet the design requirements, and processing efficiency has been improved.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The vehicle logo machining equipment comprises a machining table used for fixing a vehicle logo to be machined, a cutting device arranged on one side of the machining table and a clamping device arranged above the machining table, and the vehicle logo to be machined comprises a vehicle logo body and an injection molding excess material located on the back face of the vehicle logo body; a fixing groove is formed in the machining table, and the shape of the fixing groove is matched with the shape of the car marker body. The processing table further comprises a positioning column used for positioning the adhesive film, and the positioning column is arranged at the top of the processing table in a lifting mode. The cutting device comprises a cutting tool mounted on the tool machining table and a cutting mechanism for driving the cutting tool to translate in the horizontal direction; and the clamping device comprises a clamp for clamping the injection molding excess material and a driving mechanism for driving the clamping device to translate along the vertical direction. The automobile logo processing device has the effects that the adhesive can be rapidly and accurately added to the back face of the automobile logo body while redundant injection molding excess materials on the automobile logo to be processed are removed, and the production efficiency is improved.
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Description

Technical Field

[0001] The present application relates to the technical field of automobile parts processing, and in particular to a vehicle logo processing device. Background Art

[0002] A car logo is a logo or trademark used by a car manufacturer or brand on its vehicles. It is affixed to the vehicle with adhesive. Since the material used for car logos is generally plastic, they are usually made using the injection molding process.

[0003] Related Technology: After the injection-molded logo is processed, the excess molding material must be removed and adhesive applied to the back of the logo. The logo processing equipment is equipped with a processing table and a cutting device. After the logo is fixed to the processing table, the cutting device removes the molding material. Next, adhesive is manually applied to the back of the logo, and a layer of plastic film is applied to the back of the logo. When the manufacturer needs to affix the logo to the vehicle, the plastic film is removed, but the adhesive remains on the back of the logo, allowing the logo to be affixed to the designated location on the vehicle using the adhesive.

[0004] With respect to the above-mentioned related technologies, the inventor believes that the step of applying the adhesive is highly dependent on the operator's operational proficiency, resulting in low production efficiency. Utility Model Content

[0005] In order to remove excess injection molding residue on the car logo to be processed, and to quickly and accurately add adhesive to the back of the car logo body to improve production efficiency, the present application provides a car logo processing equipment.

[0006] The vehicle logo processing equipment provided in this application adopts the following technical solutions:

[0007] A vehicle logo processing device includes a processing table for fixing the vehicle logo to be processed, a cutting device arranged on one side of the processing table, and a clamping device arranged above the processing table. The vehicle logo to be processed includes a vehicle logo body and injection molding residue located on the back of the vehicle logo body; a fixing groove is provided on the processing table, and the shape of the fixing groove matches the shape of the vehicle logo body; the processing table also includes a positioning column for positioning an adhesive film, and the positioning column can be raised and lowered on the top of the processing table; the cutting device includes a cutting tool mounted on the tool processing table and a cutting mechanism for driving the cutting tool to translate in a horizontal direction; the clamping device includes a clamp for clamping the injection molding residue and a driving mechanism for driving the clamping device to translate in a vertical direction.

[0008] By adopting the above technical solution, when processing the logo, the logo itself is fixed in a fixed groove on the processing table, and the residual injection molding material is fixed using a clamping device. After the residual injection molding material is removed by a cutting device, the adhesive film is positioned using a positioning column to determine the application position, thereby applying the adhesive to the back of the logo body. Using this logo processing equipment, after the residual injection molding material is automatically removed, the positioning column can quickly apply the adhesive to the back of the logo body, eliminating the need for manual application and effectively improving processing efficiency.

[0009] Optionally, when the vehicle logo body is embedded in the fixing groove, the injection molding residue is exposed from the processing table; the top shape of the processing table matches the shape of the fixing frame; the injection molding residue includes a fixing frame and an injection molding strip; the injection molding strip is perpendicular to the vehicle logo body and the fixing frame; the vehicle logo body and the fixing frame are located on the same plane, and the fixing frame surrounds the vehicle logo body.

[0010] By adopting the above technical solution, the vehicle logo to be processed can be stably fixed on the processing table, preventing the vehicle logo to be processed from moving during the processing, and ensuring that the quality of the vehicle logo meets the design requirements.

[0011] Optionally, the cutting tool has a first station and a second station after being driven by the cutting mechanism; the sliding direction of the cutting mechanism is parallel to the line connecting the cutting tool and the injection molding strip; when the cutting tool is located at the first station, the cutting tool is located in the internal cavity of the car logo processing equipment; when the cutting tool is located at the second station, the cutting tool is located above the processing table and the cutting tool is aligned with the root of the injection molding strip.

[0012] By adopting the above technical solution, the cutting tool can quickly remove the injection molding residue on the vehicle logo to be processed, and the cutting tool is aligned with the root of the injection molding strip to completely remove the injection molding residue.

[0013] Optionally, a receiving groove is provided at the bottom of the clamp, and the receiving groove is aligned with the injection molding strip; the depth of the receiving groove is greater than the length of the injection molding strip; the clamp is provided with a feed edge facing the cutting device; the clamp has a third workstation and a fourth workstation after being driven by the driving structure, and when the clamp is located at the third workstation, the clamp is located at a preset length above the processing table; when the clamp is located at the fourth workstation, the injection molding strip is located in the receiving groove.

[0014] By adopting the above technical solution, the clamping device can limit the position of the injection molding strip during the processing, thereby preventing the vehicle logo to be processed from moving during the processing, and ensuring that the quality of the vehicle logo meets the design requirements.

[0015] Optionally, a first groove is provided on the fixture, the position of the first groove corresponds to the position of the positioning column, and the shape of the first groove corresponds to the shape of the positioning column; when the fixture is located at the fourth workstation and the cutting tool is away from the second workstation, the positioning column is exposed from the processing table.

[0016] By adopting the above technical solution, after the positioning column is exposed to the processing table, it will be accommodated by the first groove to prevent the positioning column from damaging the fixture. Moreover, it can ensure that the positioning column is exposed to the processing table in time.

[0017] Optionally, the driving mechanism includes a driving member for driving the movement of the clamp, a connecting frame for connecting the driving member and the clamp, and a limiting rod for limiting the movement direction of the clamp; the driving rod of the driving member is arranged in a vertical direction; the connecting frame is horizontally installed at the bottom of the driving rod; the limiting rod is vertically arranged at the top of the connecting frame, the limiting rod passes through the limiting block, and the limiting block is fixed on the car logo processing equipment.

[0018] By adopting the above technical solution, the driving mechanism can ensure that the moving direction will not deviate when driving the clamp in the vertical direction, so that the clamping device can clamp the injection molding residue, avoid the movement of the car logo to be processed during the processing, and ensure that the quality of the car logo meets the design requirements.

[0019] Optionally, the processing table further includes a cylinder for controlling the lifting and lowering of the positioning column; the cylinder is located at the bottom of the positioning column; and the piston rod of the cylinder is connected to the positioning column.

[0020] By adopting the above technical solution, the lifting and lowering of the positioning column is controlled by the cylinder at the bottom of the positioning column to ensure that the positioning column will rise and fall at the appropriate time.

[0021] Optionally, the vehicle logo processing equipment further includes a safety device for controlling the opening or closing of the vehicle logo processing equipment, and the safety device is relatively arranged on two sides of the vehicle logo processing equipment; an infrared sensor is provided on the safety device.

[0022] By adopting the above technical solution, when the infrared sensor detects that an object extends into the working vehicle logo processing equipment, the vehicle logo processing equipment will be shut down to ensure the health and safety of personnel.

[0023] Optionally, a rotatable movable rod is vertically provided on the side of the processing table; one end of the movable rod is hinged to the top area of ​​the processing table; when the vehicle logo body is embedded in the fixing groove, the hinge point between the movable rod and the processing table is higher than the fixing frame.

[0024] By adopting the above technical solution, the leftover injection molding material can be quickly removed from the processing table by utilizing the rotation of the movable rod, thereby improving the processing efficiency.

[0025] Optionally, the movable rod has a fifth working position and a sixth working position after rotation; when the movable rod is located at the fifth working position, the movable rod is located in the second groove on the side wall of the processing table; when the movable rod is located at the sixth working position, the movable rod is exposed from the processing table and the movable rod is tilted upward.

[0026] By adopting this technical solution, when the movable rod is in the fifth station, it does not affect the overall operation of the car logo processing equipment; when the movable rod is in the sixth station, the injection molding residue can be quickly removed from the processing table. This improves the efficiency of the car logo processing equipment, thereby further improving production efficiency.

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

[0028] 1. When processing the logo, secure the logo body in the fixed groove of the processing table and use a clamping device to fix the injection molding residue. After the injection molding residue is removed by the cutting device, the adhesive film is fixed to the back of the logo body using the positioning column to determine the affixation position. The above-mentioned logo processing equipment can automatically remove the injection molding residue and then quickly apply the adhesive to the back of the logo body using the positioning column, eliminating the need for manual application and effectively improving processing efficiency.

[0029] 2. Through the structure of the clamping device and the workbench, the logo to be processed can be stably fixed on the processing table to prevent the logo from moving during the processing, thus ensuring that the quality of the logo meets the design requirements;

[0030] 3. The rotation of the movable rod can be used to quickly remove the injection molding residue from the processing table, thereby improving processing efficiency; when the movable rod is at the fifth station, it will not affect the overall operation of the car logo processing equipment; when the movable rod is at the sixth station, the injection molding residue can be quickly removed from the processing table, thereby improving the efficiency of the car logo processing equipment, thereby further improving production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Figure 1 It is a structural schematic diagram of a vehicle logo processing equipment provided in an embodiment of the present application.

[0032] Figure 2 This is a structural schematic diagram of a vehicle logo to be processed provided in an embodiment of the present application.

[0033] Figure 3 It is a structural schematic diagram of a vehicle logo processing equipment provided in an embodiment of the present application.

[0034] Figure 4 This is a cross-sectional view of a processing table provided in an embodiment of the present application.

[0035] Figure 5 It is a structural diagram of a safety device provided in an embodiment of the present application.

[0036] Figure 6 It is a structural schematic diagram of another optional processing table provided in an embodiment of the present application.

[0037] Explanation of the accompanying symbols: 1. Processing table; 2. Cutting device; 3. Clamping device; 4. Safety device; 5. Car logo to be processed; 6. Limiting block; 11. Positioning column; 12. Movable rod; 13. Fixed groove; 14. Cylinder; 15. Second groove; 141. Piston rod; 21. Cutting tool; 22. Cutting mechanism; 31. Clamp; 311. Accommodating groove; 312. First groove; 32. Driving mechanism; 321. Driving member; 322. Connecting frame; 323. Limiting rod; 41. Infrared sensor; 51. Car logo body; 52. Injection molding residue; 521. Injection molding strip; 522. Fixed frame. DETAILED DESCRIPTION

[0038] The following is combined with Figure 1-6 This application is described in further detail.

[0039] The embodiment of the present application discloses a vehicle logo processing device. Figure 1 The car logo processing equipment includes a processing table 1 for fixing the car logo 5 to be processed, a cutting device 2 arranged on one side of the processing table 1, and a clamping device 3 arranged above the processing table 1. The car logo 5 to be processed includes a car logo body 51 and an injection molding residue 52 located on the back of the car logo body 51. A fixing groove 13 is provided on the processing table 1, and the shape of the fixing groove 13 matches the shape of the car logo body 51. The processing table 1 also includes a positioning column 11 for positioning the adhesive film, and the positioning column 11 can be raised and lowered on the top of the processing table 1. The cutting device 2 includes a cutting tool 21 mounted on the tool processing table 1 and a cutting mechanism 22 for driving the cutting tool 21 to translate in the horizontal direction. The clamping device 3 includes a clamp 31 for clamping the injection molding residue 52 and a driving mechanism 32 for driving the clamping device 3 to translate in the vertical direction.

[0040] In this application, the adhesive film refers to a film layer having an adhesive on one side, and the coverage of the adhesive is consistent with the shape of the vehicle logo body 51. Optionally, the film layer used for the adhesive film is a plastic film.

[0041] Therefore, when processing the logo 5, the logo body 51 is fixed in the fixing groove 13 of the processing table 1, and the injection molding residue 52 is fixed using the clamping device 3. After the injection molding residue 52 is removed by the cutting device 2, the adhesive film is positioned using the positioning column 11 to determine the adhesive application position, thereby applying the adhesive to the back of the logo body 51. The above-described logo processing equipment allows the adhesive to be quickly applied to the back of the logo body 51 using the positioning column 11 after the injection molding residue 52 is automatically removed, eliminating the need for manual application and effectively improving processing efficiency.

[0042] Please refer to Figure 2 When the car logo body 51 is embedded in the fixing groove 13, the injection molding residue 52 is exposed on the processing table 1. The top shape of the processing table 1 matches the shape of the fixing frame 522. The injection molding residue 52 includes a fixing frame 522 and an injection molding strip 521. The injection molding strip 521 is perpendicular to the car logo body 51 and the fixing frame 522. The car logo body 51 and the fixing frame 522 are located on the same plane, and the fixing frame 522 surrounds the car logo body 51. Among them, when the car logo 5 to be processed is placed on the processing table 1, the size of the inner side of the fixing frame 522 matches the side wall of the processing table 1, so that the fixing frame 522 can frame the processing table 1, so that the car logo 5 to be processed can be stably fixed on the processing table 1, avoiding the movement of the car logo 5 to be processed during the processing process, and ensuring that the quality of the car logo meets the design requirements.

[0043] Please refer to Figure 1 and Figure 3 , the cutting tool 21 has a first station and a second station after being driven by the cutting mechanism 22. The sliding direction of the cutting mechanism 22 is parallel to the line connecting the cutting tool 21 and the injection molding strip 521. When the cutting tool 21 is at the first station, the cutting tool 21 is located in the internal cavity of the car logo processing equipment. When the cutting tool 21 is at the second station, the cutting tool 21 is located above the processing table 1 and the cutting tool 21 is aligned with the root of the injection molding strip 521. Among them, the cutting mechanism 22 can drive the cutting tool 21 to move between the first station and the second station, as shown in FIG. Figure 1 As shown, the cutting tool 21 is located at the first station, as shown in FIG. Figure 3 As shown, the cutting tool 21 is located at the second station. When the cutting tool 21 moves from the first station to the second station, it indicates that the injection molding residue 52 on the vehicle logo 5 to be processed has begun to be cut, so that the injection molding residue 52 is separated from the vehicle logo body 51; after the above two are separated, the cutting tool 21 moves from the second station to the first station. Specifically, the cutting mechanism 22 is driven by a motor. Therefore, the cutting tool 21 can quickly remove the injection molding residue 52 on the vehicle logo 5 to be processed, and the cutting tool 21 is aligned with the root of the injection molding strip 521 to completely remove the injection molding residue 52.

[0044] Please refer to Figure 1 and Figure 3, a receiving groove 311 is provided at the bottom of the clamp 31, and the receiving groove 311 is aligned with the injection molding strip 521. The depth of the receiving groove 311 is greater than the length of the injection molding strip 521. After being driven by the driving structure, the clamp 31 has a third station and a fourth station. When the clamp 31 is located at the third station, the clamp 31 is located at a preset length above the processing table 1. When the clamp 31 is located at the fourth station, the injection molding strip 521 is located in the receiving groove 311. The driving structure can drive the clamp 31 to move between the third station and the fourth station, as shown in FIG. Figure 1 As shown, the fixture 31 is located at the third station, as shown in FIG. Figure 3 As shown, the fixture 31 is located at the fourth station. Before cutting the logo 5, the fixture 31 needs to be moved from the third station to the fourth station, positioning the injection molding strip 521 within the receiving groove 311 to prevent the logo 5 from moving during processing. After cutting the logo 5, the fixture 31 is moved from the fourth station to the third station. Thus, the clamping device 3 can restrict the position of the injection molding strip 521 during processing, preventing the logo 5 from moving during processing and ensuring that the logo's quality meets design requirements.

[0045] Please refer to Figure 1 and Figure 3 , a first groove 312 is provided on the fixture 31. The position of the first groove 312 corresponds to the position of the positioning post 11, and the shape of the first groove 312 corresponds to the shape of the positioning post 11. When the fixture 31 is located at the fourth station and the cutting tool 21 is away from the second station, the positioning post 11 is exposed from the processing table 1. For example, after the cutting tool 21 completes cutting of the vehicle logo 5 to be processed, the positioning post 11 will be exposed from the processing table 1. At the same time, since the first groove 312 corresponding to the shape of the positioning post 11 is provided on the fixture 31, the positioning post 11 will enter the first groove 312 without colliding with the fixture 31.

[0046] Please refer to Figure 1 and Figure 3 The driving mechanism 32 includes a driving member 321 for driving the clamp 31 to move, a connecting frame 322 for connecting the driving member 321 and the clamp 31, and a limiting rod 323 for limiting the moving direction of the clamp 31. The driving rod of the driving member 321 is arranged in the vertical direction. The connecting frame 322 is horizontally installed at the bottom of the driving rod. The limiting rod 323 is vertically arranged on the top of the connecting frame 322, and the limiting rod 323 passes through the limiting block 6, and the limiting block 6 is fixed on the car logo processing equipment. Furthermore, a through hole is provided on the limiting block 6 for the limiting rod 323 to pass through the limiting block 6. Therefore, when the driving mechanism 32 drives the clamp 31 in the vertical direction, it can ensure that the moving direction will not be offset, so that the clamping device 3 can clamp the injection molding residue 52, prevent the car logo 5 to be processed from moving during the processing process, and ensure that the quality of the processed car logo meets the design requirements.

[0047] Please refer to Figure 4 The processing table 1 also includes a cylinder 14 for controlling the raising and lowering of the positioning column 11. The cylinder 14 is located at the bottom of the positioning column 11. The piston rod 141 of the cylinder 14 is connected to the positioning column 11. Therefore, the raising and lowering of the positioning column 11 can be controlled by the cylinder 14 at the bottom of the positioning column 11 to ensure that the positioning column 11 rises and falls at the appropriate time. For example, after the cutting tool 21 completes cutting of the logo 5 to be processed, the cylinder 14 will drive the positioning column 11 so that the positioning column 11 is exposed from the processing table 1.

[0048] Please refer to Figure 5 The vehicle logo processing equipment also includes a safety device 4 for controlling the opening and closing of the vehicle logo processing equipment. The safety devices 4 are disposed on opposite sides of the vehicle logo processing equipment. Infrared sensors 41 are disposed on the safety devices 4. For example, the infrared sensors 41 on the safety devices 4 are disposed opposite each other. When the vehicle logo processing equipment is processing the vehicle logo 5 to be processed, if the infrared sensors 41 detect an object, the vehicle logo processing equipment will be shut down. This prevents any body parts other than human body parts from entering the vehicle logo processing equipment, thereby ensuring the health and safety of personnel.

[0049] Please refer to Figure 6 A rotatable movable rod 12 is vertically provided on the side of the processing table 1. One end of the movable rod 12 is hinged to the top area of ​​the processing table 1. When the vehicle logo body 51 is inserted into the fixing groove 13, the hinge point of the movable rod 12 and the processing table 1 is higher than the fixing frame 522.

[0050] Please refer to Figure 6 , the movable rod 12 has a fifth station and a sixth station after rotation. When the movable rod 12 is at the fifth station, the movable rod 12 is located in the second groove 15 on the side wall of the processing table 1. When the movable rod 12 is at the sixth station, the movable rod 12 is exposed from the processing table 1 and the movable rod 12 is inclined upward. For example, when the movable rod 12 is at the fifth station, the movable rod 12 will not affect the processing of the car logo 5 to be processed by the car logo processing equipment; the movable rod 12 will rotate from the fifth station to the sixth station. During the rotation of the movable rod 12, the movable rod 12 will lift the fixed frame 522, so that the fixed frame 522 leaves the side wall of the processing table 1, and at the same time, the fixed frame 522 will drive the injection molding strip 521 to move, thereby realizing the injection molding residue 52 leaving the processing table 1. Therefore, when the movable rod 12 is at the fifth station, it will not affect the overall operation of the car logo processing equipment; when the movable rod 12 is at the sixth station, the injection molding residue 52 can be quickly removed from the processing table 1. The efficiency of the car logo processing equipment is improved, thereby further improving production efficiency.

[0051] The implementation principle of a vehicle logo processing device in the embodiment of the present application is as follows:

[0052] 1. Place the logo 5 to be processed on the processing table 1, so that the logo body 51 is embedded in the fixing groove 13 on the processing table 1 and the injection molding strip 521 is exposed from the processing table 1. At the same time, the fixing frame 522 of the injection molding residue 52 will surround the side wall of the processing table 1;

[0053] 2. The driving mechanism 32 drives the fixture 31 to move vertically downward. The fixture 31 moves from the third station to the fourth station. The injection molding strip 521 enters the receiving groove 311 at the bottom of the fixture 31.

[0054] 3. Under the action of the cutting mechanism 22, the cutting tool 21 moves from the first station to the second station. The cutting tool 21 is aligned with the root of the injection molding strip 521 and cuts, separating the car logo body 51 and the injection molding residue 52;

[0055] 3. Under the action of the cutting mechanism 22, the cutting tool 21 moves from the second station to the first station. Under the action of the driving mechanism 32, the clamp 31 moves from the fourth station to the third station. At the same time, the positioning column 11 on the processing table 1 will be exposed from the processing table 1;

[0056] 4. Removing the separated injection molding residue 52;

[0057] 5. Use the positioning posts 11 to position the adhesive film on the back of the vehicle logo body 51;

[0058] 6. Under the action of the cylinder 14, the positioning column 11 will fall;

[0059] 7. Remove the vehicle logo body 51 with the adhesive film, and complete the processing of the vehicle logo.

[0060] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. A car logo processing equipment, characterized in that, The invention comprises a processing table (1) for fixing a vehicle logo (5) to be processed, a cutting device (2) arranged on one side of the processing table (1), and a clamping device (3) arranged above the processing table (1), wherein the vehicle logo (5) to be processed comprises a vehicle logo body (51) and an injection molding residue (52) located on the back of the vehicle logo body (51); a fixing groove (13) is provided on the processing table (1), and the shape of the fixing groove (13) matches the shape of the vehicle logo body (51); the processing table (1) also comprises a fixing groove (13) for fixing the vehicle logo body (51); and a fixing groove (13) for fixing the vehicle logo body (51) is provided on the processing table (1). A positioning column (11) for positioning the adhesive film, wherein the positioning column (11) is arranged on the top of the processing table (1) in a liftable manner; the cutting device (2) includes a cutting tool (21) installed on the tool processing table (1) and a cutting mechanism (22) for driving the cutting tool (21) to move horizontally; the clamping device (3) includes a clamp (31) for clamping the injection molding residue (52) and a driving mechanism (32) for driving the clamping device (3) to move vertically.

2. The vehicle logo processing equipment according to claim 1, characterized in that: When the vehicle logo body (51) is embedded in the fixing groove (13), the injection molding residue (52) is exposed from the processing table (1); the top shape of the processing table (1) matches the shape of the fixing frame (522); the injection molding residue (52) includes the fixing frame (522) and an injection molding strip (521); the injection molding strip (521) is perpendicular to the vehicle logo body (51) and the fixing frame (522); the vehicle logo body (51) and the fixing frame (522) are located on the same plane, and the fixing frame (522) surrounds the vehicle logo body (51).

3. The vehicle logo processing equipment according to claim 2, characterized in that: The cutting tool (21) has a first station and a second station after being driven by the cutting mechanism (22); the sliding direction of the cutting mechanism (22) is parallel to the connecting line between the cutting tool (21) and the injection molding strip (521); when the cutting tool (21) is located at the first station, the cutting tool (21) is located in the internal cavity of the vehicle logo processing equipment; when the cutting tool (21) is located at the second station, the cutting tool (21) is located above the processing table (1) and the cutting tool (21) is aligned with the root of the injection molding strip (521).

4. The vehicle logo processing equipment according to claim 2, characterized in that: The bottom of the clamp (31) is provided with a receiving groove (311), and the receiving groove (311) is aligned with the injection molding strip (521); the clamp (31) is provided with a cutting edge facing the cutting device (2); the depth of the receiving groove (311) is greater than the length of the injection molding strip (521); the clamp (31) has a third station and a fourth station after being driven by the driving structure, and when the clamp (31) is located at the third station, the clamp (31) is located at a preset length above the processing table (1); when the clamp (31) is located at the fourth station, the injection molding strip (521) is located in the receiving groove (311).

5. The vehicle logo processing equipment according to claim 4, characterized in that: The fixture (31) is provided with a first groove (312), the position of the first groove (312) corresponds to the position of the positioning column (11), and the shape of the first groove (312) corresponds to the shape of the positioning column (11); when the fixture (31) is located at the fourth station and the cutting tool (21) is away from the second station, the positioning column (11) is exposed from the processing table (1).

6. The vehicle logo processing equipment according to claim 1, characterized in that: The driving mechanism (32) comprises a driving member (321) for driving the clamp (31) to move, a connecting frame (322) for connecting the driving member (321) and the clamp (31), and a limiting rod (323) for limiting the moving direction of the clamp (31); the driving rod of the driving member (321) is arranged in a vertical direction; the connecting frame (322) is horizontally installed at the bottom of the driving rod; the limiting rod (323) is vertically arranged at the top of the connecting frame (322), the limiting rod (323) passes through a limiting block (6), and the limiting block (6) is fixed to the vehicle logo processing equipment.

7. The vehicle logo processing equipment according to claim 1, characterized in that: The processing table (1) further comprises a cylinder (14) for controlling the lifting and lowering of the positioning column (11); the cylinder (14) is located at the bottom of the positioning column (11); and the piston rod (141) of the cylinder (14) is connected to the positioning column (11).

8. The vehicle logo processing equipment according to claim 1, characterized in that: The vehicle logo processing equipment further comprises a safety device (4) for controlling the opening or closing of the vehicle logo processing equipment, wherein the safety device (4) is relatively arranged on two sides of the vehicle logo processing equipment; an infrared sensor (41) is arranged on the safety device (4).

9. The vehicle logo processing equipment according to claim 2, characterized in that: A rotatable movable rod (12) is also vertically provided on the side of the processing table (1); one end of the movable rod (12) is hinged to the top area of ​​the processing table (1); when the vehicle logo body (51) is embedded in the fixing groove (13), the hinge point between the movable rod (12) and the processing table (1) is higher than the fixing frame (522).

10. The vehicle logo processing equipment according to claim 9, characterized in that: The movable rod (12) has a fifth working position and a sixth working position after being rotated; when the movable rod (12) is located at the fifth working position, the movable rod (12) is located in the second groove (15) on the side wall of the processing table (1); when the movable rod (12) is located at the sixth working position, the movable rod (12) is exposed from the processing table (1) and the movable rod (12) is inclined upward.