Coating production line coating equipment monitoring device

By introducing a scanning and positioning mechanism and a detection device into the coating equipment of the coating production line, the problem of overlooked detection of the workpiece sidewalls was solved, comprehensive detection of the workpiece was achieved, and the accuracy of the detection was improved.

CN223897405UActive Publication Date: 2026-02-10JIANGSU CHUANGKE INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202423172119.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2026-02-10
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

Existing coating production line equipment has difficulty effectively inspecting the sidewalls of workpieces after coating, which makes it easy to overlook the sidewalls during the inspection process, resulting in omissions.

Method used

A monitoring device for coating equipment in a coating production line was designed, comprising a table, a scanning positioning mechanism, and a scanning detection mechanism. Through components such as a U-shaped clamp and an L-shaped positioning frame, the offset angle of the workpiece can be adjusted to ensure comprehensive detection.

Benefits of technology

This enables comprehensive inspection of the workpiece, avoids omissions of sidewalls during the inspection process, and improves the accuracy and completeness of the inspection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of coating equipment, and discloses a coating production line coating equipment monitoring device which comprises a table plate and a scanning positioning mechanism, a guide frame is arranged on the inner wall of the table plate, a positioning groove is formed in the inner wall of the guide frame, a positioning block is arranged on the inner wall of the guide frame, and the guide frame is directly connected with the positioning block in a sliding mode. And a stress rod is arranged on the outer wall of the positioning block. According to the coating equipment monitoring device for the coating production line, in the rotating process of the U-shaped clamping device, the shaft body can be driven to rotate on the inner wall of the groove, and in the rotating process of the shaft body, the shaft body can be directly buckled with the U-shaped clamping device, so that the U-shaped clamping device can limit the shaft body, and the shaft body can be conveniently clamped in the rotating process of the U-shaped clamping device; the block body can be directly driven to rotate in the guide frame, so that the L-shaped positioning frame can adjust the deviation angle of a workpiece in the workpiece detection process, and omission is not prone to occurring in the detection process.
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Description

Technical Field

[0001] This utility model relates to the field of coating equipment technology, specifically to a monitoring device for coating equipment in a coating production line. Background Technology

[0002] Coating is one of the main methods for preventing rust and beautifying the appearance in modern industrial production. Common coating equipment usually uses automatic coating equipment for spraying, thereby improving the efficiency and accuracy of spraying.

[0003] In existing coating production line equipment, when inspecting the coated parts, it is necessary to inspect the outer wall of the coated workpiece through an inspection mechanism. Since the outer wall curvature of different workpieces is different, and the monitoring device usually scans the outer wall of the workpiece directly when monitoring the workpiece, the side wall of the workpiece is often ignored during the scanning process. Therefore, a monitoring device for coating production line equipment is proposed. Utility Model Content

[0004] This utility model provides the following technical solution: a monitoring device for coating equipment in a coating production line, including a table and a scanning and positioning mechanism. The inner wall of the table is provided with a guide frame, the inner wall of the guide frame is provided with a positioning groove, the inner wall of the guide frame is provided with a positioning block, and the guide frame and the positioning block are directly slidably connected. The outer wall of the positioning block is provided with a force-bearing rod, the force-bearing rod is provided with a slider on the side away from the positioning block, the inner wall of the slider is provided with a guide rod, the outer wall of the slider is provided with a slide frame, and the slide frame and the slider are slidably connected. The outer wall of the slide frame is provided with a pump.

[0005] As a preferred technical solution of this utility model, the inner wall of the guide frame is provided with a block, the inner wall of the block is provided with a groove, the inner wall of the groove is provided with a positioning port, the inner wall of the positioning port is provided with a plurality of U-shaped clamps, and the plurality of U-shaped clamps are symmetrically distributed on the inner wall of the positioning port. The outer wall of the force rod is provided with a shaft, and the shaft is rotatably connected to the groove. The outer wall of the block is provided with an L-shaped positioning frame.

[0006] As a preferred technical solution of this utility model, the outer wall of the table is provided with a shell, the outer wall of the shell is provided with a limiting frame, the inner wall of the limiting frame is provided with a lifting frame, and the lifting frame and the limiting frame are slidably connected, the outer wall of the lifting frame is provided with an extension pad, and the outer wall of the extension pad is provided with a spring.

[0007] As a preferred embodiment of this utility model, the outer wall of the outer shell is provided with a vent plate, the vent plate is rotatably connected to the outer shell, the outer wall of the outer shell is provided with a mounting plate, the outer wall of the mounting plate is provided with a nut, and the outer wall of the outer shell is provided with a left mounting pad.

[0008] As a preferred technical solution of this utility model, the outer wall of the table is provided with multiple base frames, and the multiple base frames are symmetrically distributed at the bottom of the table.

[0009] As a preferred technical solution of this utility model, the inner wall of the outer shell is provided with a scanning detection mechanism, the outer wall of the outer shell is provided with baffles, and the baffles are symmetrically distributed on the outer wall of the outer shell. The outer wall of the outer shell is provided with screws, and the screws are fixed to the baffles by threaded connection.

[0010] As a preferred technical solution of this utility model, the outer wall of the table is provided with a scanning frame, the inner wall of the scanning frame is provided with a scanner, the outer wall of the scanner is provided with multiple detection holes, and the multiple detection holes are distributed in a linear array on the outer wall of the scanner. The outer wall of the scanner is provided with straps, and the inner wall of the straps is provided with a right mounting pad.

[0011] Compared with the prior art, the present invention has the following beneficial effects:

[0012] The coating equipment monitoring device in this coating production line allows the U-shaped clamp to rotate, causing the shaft to rotate within the groove. During the rotation of the shaft, it directly engages with the U-shaped clamp, enabling the U-shaped clamp to constrain the shaft. This allows the U-shaped clamp to directly drive the block to rotate within the guide frame, thus enabling the L-shaped positioning frame to adjust the workpiece's offset angle during inspection, reducing the likelihood of oversights during inspection. Attached Figure Description

[0013] Figure 1 A three-dimensional structural schematic diagram of a monitoring device for coating equipment in a coating production line;

[0014] Figure 2 A cross-sectional view of a monitoring device for coating equipment in a coating production line;

[0015] Figure 3 This is a schematic diagram of the scanning and detection mechanism in a monitoring device for coating equipment in a coating production line.

[0016] Figure 4 This is a schematic diagram of the scanning and positioning mechanism in a monitoring device for coating equipment in a coating production line.

[0017] Figure 5 This is a schematic diagram of the force-bearing rod in a monitoring device for coating equipment in a coating production line.

[0018] Figure 6 for Figure 5 Enlarged view of the structure at point A in the middle.

[0019] In the diagram: 1. Tabletop; 2. Base frame; 3. Outer shell; 4. Ventilation plate; 5. Mounting plate; 6. Nut; 7. Screw; 8. Left mounting pad; 9. Baffle; 10. Limiting frame; 11. Lifting frame; 12. Extension pad; 13. Spring; 14. Scanning and detection mechanism; 141. Scanning frame; 142. Strap; 143. Scanner; 144. Detection hole; 15. Right mounting pad; 16. Scanning positioning mechanism; 161. Guide frame; 162. Positioning groove; 163. Positioning block; 1631. Block; 1632. Groove; 1633. Shaft; 1634. Positioning port; 1635. U-shaped clamp; 164. L-shaped positioning frame; 165. Force rod; 166. Slide; 167. Pump; 168. Slider; 169. Guide rod. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0021] Please see Figure 1-6A monitoring device for coating equipment in a coating production line includes a table 1 and a scanning and positioning mechanism 16. The inner wall of the table 1 is provided with a guide frame 161, and the inner wall of the guide frame 161 has a positioning groove 162. A positioning block 163 is provided on the inner wall of the guide frame 161, and the guide frame 161 and the positioning block 163 are directly slidably connected. A force-bearing rod 165 is provided on the outer wall of the positioning block 163. A slider 168 is provided on the side of the force-bearing rod 165 away from the positioning block 163. A guide rod 169 is provided on the inner wall of the slider 168, and a slide 166 is provided on the outer wall of the slider 168, and the slide 166 is slidably connected to the slider 168. A pump 167 is provided on the outer wall of the slide 166. The slide 166 can limit the slider 168 during lifting and lowering. The two slides 166 are paired. All 66 are driven by different pumps 167. The inner wall of the guide frame 161 is provided with a block 1631. The inner wall of the block 1631 has a groove 1632. The inner wall of the groove 1632 has a positioning port 1634. The inner wall of the positioning port 1634 is provided with multiple U-shaped clamps 1635, which are symmetrically distributed on the inner wall of the positioning port 1634. The outer wall of the force rod 165 is provided with a shaft 1633, which is rotatably connected to the groove 1632. The outer wall of the block 1631 is provided with an L-shaped positioning frame 164. The force rod 165 and the shaft 1633 are integrated devices, and a driving mechanism is provided on the outer wall of the force rod 165 so that the force rod 165 can directly drive the shaft when it rotates. 1633 rotates within guide frame 161. The outer wall of tabletop 1 is provided with a shell 3, and the outer wall of shell 3 is provided with a limiting frame 10. The inner wall of the limiting frame 10 is provided with a lifting frame 11, and the lifting frame 11 is slidably connected to the limiting frame 10. The outer wall of the lifting frame 11 is provided with an extension pad 12, and the outer wall of the extension pad 12 is provided with a spring 13. The limiting frame 10 guides the lifting of the lifting frame 11, and the tension released by the spring 13 pushes the extension pad 12 to position the passing workpiece, thus effectively preventing the workpiece from shifting position during transport. The outer wall of shell 3 is provided with a vent plate 4, which is rotatably connected to shell 3. The outer wall of shell 3 is provided with a mounting plate 5, and the outer wall of mounting plate 5 is provided with a nut 6. The outer wall is equipped with a left mounting pad 8. Multiple holes are provided on the outer wall of the vent plate 4 to allow for thorough ventilation and drying of the workpiece after inspection within the outer casing 3. Nuts 6 secure the vent plate 4 to the mounting plate 5, facilitating subsequent sampling and maintenance by workers. The outer wall of the tabletop 1 is equipped with multiple base frames 2, symmetrically distributed at the bottom. These base frames 2 provide stable support for the equipment during operation and ensure stable operation. The inner wall of the outer casing 3 is equipped with a scanning and inspection mechanism 14. The outer wall of the outer casing 3 is equipped with baffles 9, symmetrically distributed. Screws 7 are provided on the outer wall of the outer casing 3, and are threadedly connected to the baffles 9.The threaded connection between screw 7 and baffle 9 enhances the stability of the connection between tabletop 1 and baffle 9. A scanning frame 141 is provided on the outer wall of tabletop 1, and a scanner 143 is provided on the inner wall of the scanning frame 141. Multiple detection holes 144 are arranged in a linear array on the outer wall of scanner 143. A strap 142 is provided on the outer wall of scanner 143, and a mounting pad 15 is provided on the inner wall of strap 142. The strap 142 secures scanner 143 during workpiece inspection.

[0022] Working principle: After the processed workpiece enters the outer shell 3, it is limited by the extension pad 12 and then transferred to the L-shaped positioning frame 164. It can be detected by the outer light emitted from the detection hole 144. During the detection process, the pump 167 can drive the force rod 165 to rise and fall and detect the side of the workpiece.

[0023] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A monitoring device for coating equipment in a coating production line, comprising a table (1) and a scanning and positioning mechanism (16), characterized in that: The inner wall of the tabletop (1) is provided with a guide frame (161), the inner wall of the guide frame (161) is provided with a positioning groove (162), the inner wall of the guide frame (161) is provided with a positioning block (163), and the guide frame (161) and the positioning block (163) are directly slidably connected. The outer wall of the positioning block (163) is provided with a force rod (165), and the force rod (165) is provided with a slider (168) on the side away from the positioning block (163). The inner wall of the slider (168) is provided with a guide rod (169), the outer wall of the slider (168) is provided with a slide (166), and the slide (166) is slidably connected to the slider (168). The outer wall of the slide (166) is provided with a pump (167).

2. The monitoring device for coating equipment in a coating production line according to claim 1, characterized in that: The guide frame (161) has a block (1631) on its inner wall, a groove (1632) on its inner wall, a positioning port (1634) on its inner wall, a plurality of U-shaped clamps (1635) on its inner wall, and the plurality of U-shaped clamps (1635) are symmetrically distributed on the inner wall of the positioning port (1634). The force rod (165) has a shaft (1633) on its outer wall, and the shaft (1633) is rotatably connected to the groove (1632). The block (1631) has an L-shaped positioning frame (164) on its outer wall.

3. The monitoring device for coating equipment in a coating production line according to claim 1, characterized in that: The outer wall of the tabletop (1) is provided with a shell (3), the outer wall of the shell (3) is provided with a limiting frame (10), the inner wall of the limiting frame (10) is provided with a lifting frame (11), and the lifting frame (11) and the limiting frame (10) are slidably connected. The outer wall of the lifting frame (11) is provided with an extension pad (12), and the outer wall of the extension pad (12) is provided with a spring (13).

4. The monitoring device for coating equipment in a coating production line according to claim 3, characterized in that: The outer wall of the outer shell (3) is provided with a vent plate (4), the vent plate (4) is rotatably connected to the outer shell (3), the outer wall of the outer shell (3) is provided with a mounting plate (5), the outer wall of the mounting plate (5) is provided with a nut (6), and the outer wall of the outer shell (3) is provided with a left mounting pad (8).

5. The monitoring device for coating equipment in a coating production line according to claim 1, characterized in that: The outer wall of the tabletop (1) is provided with multiple base frames (2), and the multiple base frames (2) are symmetrically distributed at the bottom of the tabletop (1).

6. The monitoring device for coating equipment in a coating production line according to claim 3, characterized in that: The inner wall of the outer shell (3) is provided with a scanning detection mechanism (14), the outer wall of the outer shell (3) is provided with a baffle (9), and the baffle (9) is symmetrically distributed on the outer wall of the outer shell (3). The outer wall of the outer shell (3) is provided with a screw (7), and the screw (7) is fixed to the baffle (9) by a threaded connection.

7. A monitoring device for coating equipment in a coating production line according to claim 6, characterized in that: The outer wall of the tabletop (1) is provided with a scanning frame (141), the inner wall of the scanning frame (141) is provided with a scanner (143), the outer wall of the scanner (143) is provided with a plurality of detection holes (144), and the plurality of detection holes (144) are distributed in a linear array on the outer wall of the scanner (143). The outer wall of the scanner (143) is provided with a strap (142), and the inner wall of the strap (142) is provided with a right mounting pad (15).