Sensing monitoring metal part coating device

By designing a sensing monitoring metal parts coating device, the automatic loading, combination and coating of the workpiece is realized, solving the problem of single functions of the existing device and achieving a fully automated coating process.

CN120421187APending Publication Date: 2025-08-05ANHUI OCCUPATIONAL COLLEGE OF CITY MANAGEMENT
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Patent Information

Application Number
CN202510659489.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-21
Publication Date
2025-08-05

AI Technical Summary

Technical Problem

The existing sensing monitoring metal parts coating devices only have a single coating function, and cannot achieve assembly and connection of workpieces at the same time, and are not very functional.

Method used

A sensing monitoring metal parts coating device is designed, including components such as base plate, fixing plate, assembly box, motor, drive shaft and turntable. By automatically loading, assembling, coating preservatives and connecting agents, the workpieces can be automatically combined and evenly coated.

Benefits of technology

Automatic loading, combination of workpieces, coating and uniform coating of preservatives and connecting agents is realized, and the entire process is fully automated, improving the functionality and efficiency of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a sensing monitoring metal part coating device, and particularly relates to the technical field of metal part coating, the sensing monitoring metal part coating device comprises a bottom plate, the upper end of the bottom plate is fixedly connected with a second fixing plate, and one side of the second fixing plate is fixedly connected with a first assembly box; a second assembling box is fixedly connected to the side, communicated with the first assembling box, of the second fixing plate, a first fixing plate is fixedly connected to the upper end of the bottom plate, a motor is fixedly connected to one side of the first fixing plate, a driving shaft is arranged at one end of the motor in an extending mode, and a rotating disc is fixedly connected to the cylindrical outer surface of the driving shaft. According to the device, automatic feeding of a first workpiece and a second workpiece, automatic coating of a connecting agent and automatic combination of the first workpiece and the second workpiece can be achieved at the same time, the second workpiece is rotated to complete coating of a preservative and uniform smearing of the connecting agent, the sliding seat can be pulled away, automatic discharging can be achieved after the first workpiece and the second workpiece are assembled and coated, and the working efficiency is improved. The whole device is full-automatic.
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Description

Technical Field

[0001] The present invention relates to the technical field of metal part coating, and more particularly to a sensing and monitoring device for metal part coating. Background Art

[0002] To extend the service life of sensing and monitoring metal parts, they often need to be coated with anti-corrosion agents. Existing coating devices for sensing and monitoring metal parts only have a single coating function and cannot simultaneously achieve assembly and connection of the workpiece, resulting in low functionality. Summary of the Invention

[0003] In order to overcome the above-mentioned defects of the prior art, an embodiment of the present invention provides a sensing and monitoring metal parts coating device. The technical problem to be solved by the present invention is that the existing sensing and monitoring metal parts coating device only has a single coating function, and cannot simultaneously realize the assembly and connection of workpieces, and its functionality is not strong.

[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a sensing and monitoring device for coating metal parts, comprising a base plate, the upper end of the base plate is fixedly connected to a second fixed plate, one side of the second fixed plate is fixedly connected to a first assembly box, the side of the second fixed plate communicating with the first assembly box is fixedly connected to a second assembly box, the upper end of the base plate is fixedly connected to the first fixed plate, one side of the first fixed plate is fixedly connected to a motor, one end of the motor is extended with a drive shaft, the cylindrical outer surface of the drive shaft is fixedly connected to a turntable, the bottom surface of the turntable is egg-shaped with a large upper ellipse and a small lower ellipse, and the turntable The disc is provided with an inclined track, and the second assembly box is provided with a sliding hole. One side of the second assembly box is fixedly connected to a first spring, one end of the first spring is fixedly connected to a sliding plate, one side of the sliding plate is fixedly connected to a circular fixing rod, and the circular fixing rod is slidably connected to the sliding hole, one end of the circular fixing rod is fixedly connected to a second cross cutter head, one side of the sliding plate is rotatably connected to a rotating connecting rod, and the rotating connecting rod contacts the upper surface of the turntable, one side of the sliding plate is fixedly connected to an L-shaped fixing rod, one end of the L-shaped fixing rod is fixedly connected to a columnar rod, and the columnar rod contacts the inclined track on the turntable.

[0005] In a preferred embodiment, a sliding limit groove is provided on the first assembly box, an inclined groove is provided on one side of the sliding limit groove, a plug-in hole is provided on the first assembly box, and the plug-in hole is communicated with the sliding limit groove, a bevel groove is provided at the lower end of the sliding limit groove, a sliding seat is provided at the lower end of the first assembly box, and the sliding seat is adapted to the bevel groove, a placement groove is provided on the sliding seat, and there is a step between the placement groove in the bevel groove and the sliding limit groove.

[0006] In a preferred embodiment, the lower end of the sliding seat is fixedly connected to a square rod, one side of the second fixed plate is fixedly connected to a fixed sleeve, a T-shaped slide is slidably connected in the fixed sleeve, and the square rod and the T-shaped slide are connected through, a second spring is fixedly connected between the sliding seat and the T-shaped slide, the lower end of the first assembly box is fixedly connected to a fixed vertical plate, a third spring is fixedly connected between the fixed vertical plate and the T-shaped slide, and one side of the sliding plate is fixedly connected to an L-shaped pull rod.

[0007] In a preferred embodiment, one end of the drive shaft is fixedly connected to a fixed square rod, the outer surface of the fixed square rod is slidably connected to a sliding sleeve, a fourth spring is fixedly connected between the sliding sleeve and the drive shaft, and one end of the sliding sleeve is fixedly connected to a first cross cutter head.

[0008] In a preferred embodiment, the upper end of the first assembly box is fixedly connected to the second blanking frame, the second blanking frame is provided with a first fixed groove, and the rotating connecting rod is slidably connected to the first fixed groove, the first assembly box is provided with a second fixed groove, one side of the rotating connecting rod is fixedly connected to a baffle, and the baffle is adapted to the second fixed groove, the upper end of the first assembly box is fixedly connected to the preservative box, the upper end of the inner wall of the sliding limit groove is fixedly connected to a sponge brush, and the sponge brush is connected to the preservative box through a pipe.

[0009] In a preferred embodiment, the upper end of the second assembly box is fixedly connected to the first blanking frame, and the first blanking frame is communicated with the sliding hole, the upper end of the second assembly box is fixedly connected to the connecting agent box, one side of the connecting agent box is fixedly connected to the discharge pipe, one end of the discharge pipe is fixedly connected to the annular tube, and the annular tube is fixedly connected to the second assembly box, and the inner wall of the annular tube is fixedly connected to multiple groups of nozzles.

[0010] In a preferred embodiment, the first blanking frame is equipped with multiple groups of first workpieces, and a first Pozigzag groove is provided on one side of each group of first workpieces; the second blanking frame is equipped with multiple groups of second workpieces, and the second workpieces are adapted to the first workpieces, and a second Pozigzag groove is provided on one side of each group of second workpieces.

[0011] The technical effects and advantages of the present invention are as follows:

[0012] 1. The device can simultaneously realize automatic loading of the first workpiece and the second workpiece, automatic coating of the connecting agent, automatic completion of the combination of the first workpiece and the second workpiece, and rotation of the second workpiece to complete the coating of the preservative and the even spreading of the connecting agent. The sliding seat can be withdrawn, and the first workpiece and the second workpiece can be automatically blanked after assembly and coating. The entire device is fully automatic. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1This is the first stereogram of the present invention.

[0014] Figure 2 This is a second perspective view of the present invention.

[0015] Figure 3 This is a first perspective stereoscopic view of the first assembly box of the present invention.

[0016] Figure 4 This is a second perspective view of the first assembly box of the present invention.

[0017] Figure 5 for Figure 4 A magnified view of center.

[0018] Figure 6 This is a perspective view of the second state of the first assembly box of the present invention.

[0019] Figure 7 This is a third perspective view of the first assembly box of the present invention.

[0020] Figure 8 It is a partial perspective view of the present invention.

[0021] Figure 9 for Figure 8 Magnified view of B.

[0022] Figure 10 It is a three-dimensional diagram of the L-shaped fixing rod of the present invention.

[0023] Figure 11 for Figure 10 Enlarged view of C in the middle.

[0024] Figure 12 It is a three-dimensional diagram of the sliding plate of the present invention.

[0025] Figure 13 It is a plan view of the turntable of the present invention.

[0026] Figure 14 This is a first stereoscopic view of the first workpiece and the second workpiece of the present invention.

[0027] Figure 15 This is a second stereoscopic view of the first workpiece and the second workpiece of the present invention.

[0028] Figure 16 It is a three-dimensional diagram of the placement table of the present invention.

[0029] Figure 17 It is a three-dimensional diagram of the turntable of the present invention.

[0030] Figure 18 This is a three-dimensional diagram of the first assembly of the box and the sliding seat of the present invention.

[0031] The accompanying drawings are:

[0032] 1. Bottom plate; 2. First fixed plate; 3. Motor; 4. Drive shaft; 5. First assembly box; 6. Preservative box; 7. Second assembly box; 8. First blanking frame; 9. Second fixed plate; 10. Sliding sleeve; 11. First cross cutter head; 12. Rotating connecting rod; 13. Sliding plate; 14. L-shaped pull rod; 15. L-shaped fixing rod; 16. Second blanking frame; 17. Turntable; 18. Round fixing rod; 19. First spring; 20. Fixed sleeve; 21. Sliding seat; 22. Baffle; 23. First fixing slot; 24. Second fixing slot; 25. Square shaped rod; 26. second spring; 27. second cross cutter head; 28. placement slot; 29. fixed vertical plate; 30. sponge brush; 31. sliding limit slot; 32. bevel slot; 33. inclined slot; 34. plug-in hole; 35. connector box; 36. discharge pipe; 37. annular pipe; 38. nozzle; 39. sliding hole; 40. third spring; 41. columnar rod; 42. inclined track; 43. fixed square rod; 44. fourth spring; 45. first workpiece; 46. second workpiece; 47. first M-shaped slot; 48. second M-shaped slot; 49. T-shaped slide. DETAILED DESCRIPTION

[0033] Depend on Figure 1-18 The present invention provides a sensing and monitoring device for coating metal parts, comprising a base plate 1, wherein the upper end of the base plate 1 is fixedly connected to a second fixing plate 9, one side of the second fixing plate 9 is fixedly connected to a first assembly box 5, and the side of the second fixing plate 9 communicating with the first assembly box 5 is fixedly connected to a second assembly box 7, the upper end of the base plate 1 is fixedly connected to a first fixing plate 2, one side of the first fixing plate 2 is fixedly connected to a motor 3, one end of the motor 3 is extended with a drive shaft 4, a cylindrical outer surface of the drive shaft 4 is fixedly connected to a turntable 17, and the bottom surface of the turntable 17 is in an egg-shaped design with a large ellipse on the upper side and a small ellipse on the lower side ( Figure 13 and Figure 17 As shown), the turntable 17 is provided with an inclined track 42, the second assembly box 7 is provided with a sliding hole 39, one side of the second assembly box 7 is fixedly connected to the first spring 19, one end of the first spring 19 is fixedly connected to the sliding plate 13, one side of the sliding plate 13 is fixedly connected to a circular fixing rod 18, and the circular fixing rod 18 is slidably connected to the sliding hole 39, one end of the circular fixing rod 18 is fixedly connected to the second cross cutter head 27, and one side of the sliding plate 13 is rotatably connected to the rotating connecting rod 12 ( Figure 10 As shown), and the rotating link 12 contacts the upper surface of the turntable 17 ( Figure 11As shown), one side of the sliding plate 13 is fixedly connected to an L-shaped fixing rod 15, one end of the L-shaped fixing rod 15 is fixedly connected to a columnar rod 41, and the columnar rod 41 is in contact with the inclined track 42 on the turntable 17; start the motor 3, and the motor 3 drives the turntable 17 to rotate clockwise through the drive shaft 4 (the turntable 17 contacts the rotating connecting rod 12 in the order of points acbda), and the turntable 17 first rotates to the position corresponding to point e and contacts the columnar rod 41 (the columnar rod 41 slides to the inclined surface of the inclined track 42), and then in the process of the columnar rod 41 rotating to the position of point e and point g on the turntable 17, under the action of the inclined track 42, the sliding plate 13 will be driven to move left through the columnar rod 41 and the L-shaped fixing rod 15.

[0034] The first assembly box 5 is provided with a sliding limit groove 31, and a side of the sliding limit groove 31 is provided with an inclined groove 33. The first assembly box 5 is provided with a plug hole 34, and the plug hole 34 is communicated with the sliding limit groove 31. The lower end of the sliding limit groove 31 is provided with an oblique groove 32. The lower end of the first assembly box 5 is provided with a sliding seat 21, and the sliding seat 21 is adapted to the oblique groove 32 ( Figure 5 、 Figure 6 and Figure 18 As shown), a placement groove 28 is provided on the sliding seat 21, and the placement groove 28 in the oblique groove 32 and the sliding limit groove 31 are stepped; the lower end of the sliding seat 21 is fixedly connected to a square rod 25, and one side of the second fixed plate 9 is fixedly connected to a fixed sleeve 20, and a T-shaped slide 49 is slidably connected in the fixed sleeve 20, and the square rod 25 is connected to the T-shaped slide 49 through the connection, and a second spring 26 is fixedly connected between the sliding seat 21 and the T-shaped slide 49, and the lower end of the first assembly box 5 is fixed A fixed vertical plate 29 is fixedly connected, and a third spring 40 is fixedly connected between the fixed vertical plate 29 and the T-shaped slide 49 (the third spring 40 is used to reset the T-shaped slide 49). An L-shaped pull rod 14 is fixedly connected to one side of the sliding plate 13; when the sliding plate 13 moves left, it will drive the L-shaped pull rod 14 to move left. Under the pulling force of the third spring 40, the T-shaped slide 49 will move left. During the left movement of the T-shaped slide 49, the sliding seat 21 will slide into the oblique groove 32 (movement to the left) under the elastic force of the second spring 26. Figure 6 In the state shown, the T-shaped slide 49 is blocked by the fixed sleeve 20 and will not move further to the left. If the L-shaped pull rod 14 continues to move left, it will separate from the T-shaped slide 49. At this time, there is a step between the sliding limit groove 31 and the placement groove 28.

[0035] One end of the drive shaft 4 is fixedly connected to a fixed square rod 43, and the outer surface of the fixed square rod 43 is slidably connected to a sliding sleeve 10. A fourth spring 44 is fixedly connected between the sliding sleeve 10 and the drive shaft 4, and one end of the sliding sleeve 10 is fixedly connected to a first cross cutter head 11; (the second workpiece 46 will first contact the first cross cutter head 11 after falling into the placement groove 28. When the second cross cutter head 48 is misaligned with the first cross cutter head 11, as the drive shaft 4 rotates (the fixed square rod 43 ensures that the sliding sleeve 10 has a certain avoidance space, ensuring that the first cross cutter head 11 can rotate to a sufficient angle to fit into the second cross cutter head 48).

[0036] The upper end of the first assembly box 5 is fixedly connected to the second blanking frame 16, and the second blanking frame 16 is provided with a first fixed groove 23, and the rotating connecting rod 12 is slidably connected to the first fixed groove 23. The first assembly box 5 is provided with a second fixed groove 24, and one side of the rotating connecting rod 12 is fixedly connected to the baffle 22, and the baffle 22 is adapted to the second fixed groove 24; when point b on the turntable 17 rotates to contact the rotating connecting rod 12, the rotating connecting rod 12 tilts downward to the limit, and the rotating connecting rod 12 moves down to the limit in the first fixed groove 23, and a group of second workpieces 46 in the second blanking frame 16 slides into the inclined groove 33 (the second blanking frame 16 has a notch on one side close to the inclined groove 33. When the rotating connecting rod 12 drops to the limit, the second workpiece 46 can enter the inclined groove 33 from the notch. Figure 7 As shown in FIG2 , at this time, the baffle 22 is in the second fixed groove 24 (the baffle 22 drops to the limit along with the rotating link 12), which blocks the second workpiece 46 in the inclined groove 33 from sliding down to the sliding limit groove 31. When the baffle 22 rotates to contact the rotating link 12 at point a, the baffle 22 is lifted up to the limit, and the second workpiece 46 in the inclined groove 33 slides down to the sliding limit groove 31 (the baffle 22 releases the blockage of the second workpiece 46 in the inclined groove 33), ensuring that only one set of second workpieces 46 falls in each cycle. ; The upper end of the first assembly box 5 is fixedly connected to the preservative box 6, and the upper end of the inner wall of the sliding limit groove 31 is fixedly connected to the sponge brush 30, and the sponge brush 30 is connected to the preservative box 6 through a pipe; the preservative box 6 can intermittently soak the sponge brush 30 with anti-corrosion liquid. After the first cross cutter head 11 is inserted into the second M-shaped slot 48, the sliding sleeve 10 will drive the second workpiece 46 to rotate, and the outer surface of the second workpiece 46 will contact the sponge brush 30, and the preservative will be applied to the outer surface of the second workpiece 46.

[0037] The upper end of the second assembly box 7 is fixedly connected to the first blanking frame 8, and the first blanking frame 8 is communicated with the sliding hole 39. The upper end of the second assembly box 7 is fixedly connected to the connecting agent box 35, and one side of the connecting agent box 35 is fixedly connected to the discharge pipe 36. One end of the discharge pipe 36 is fixedly connected to the annular tube 37, and the annular tube 37 is fixedly connected to the second assembly box 7. The inner wall of the annular tube 37 is fixedly connected to multiple groups of nozzles 38; when the first workpiece 45 moves to the annular tube 37, the pump in the connecting agent box 35 is fixedly connected to the annular tube 37. After a short start, the connecting agent is squeezed out from the nozzle 38 through the discharge pipe 36 and the annular pipe 37 and applied to the surface of the first workpiece 45. The second workpiece 46 can drive the first workpiece 45 inserted into the second workpiece 46 to rotate (the first workpiece 45 and the second workpiece 46 are in transition fit). When the first cross-shaped groove 47 is aligned with the second cross-shaped cutter head 27, the second cross-shaped cutter head 27 will be stuck in the first cross-shaped groove 47 to limit the rotation of the first workpiece 45. When the columnar rod 41 moves relatively to the gh section, the L-shaped fixing rod 15 stops moving left and right ( Figure 1 As a reference), the driving shaft 4 continues to rotate, and the first workpiece 45 and the second workpiece 46 rotate relative to each other, and the long strip connecting agent applied on the surface of the first workpiece 45 is evenly applied between the inner walls of the first workpiece 45 and the second workpiece 46.

[0038] The first blanking frame 8 is equipped with multiple groups of first workpieces 45, and a first Pozigzag groove 47 is provided on one side of each group of the first workpieces 45. The second blanking frame 16 is equipped with multiple groups of second workpieces 46, and the second workpieces 46 are adapted to the first workpieces 45, and a second Pozigzag groove 48 is provided on one side of each group of the second workpieces 46.

[0039] The device is used for coating sensor metal parts. The device is placed on the placement table ( Figure 16 )superior.

[0040] During the specific operation, firstly, multiple groups of second workpieces 46 are added to the second blanking frame 16, multiple groups of first workpieces 45 are added to the first blanking frame 8, and a group of second workpieces 46 is added to the sliding limit groove 31. The antiseptic box 6 can intermittently soak the sponge brush 30 with the antiseptic liquid to prevent the sponge brush 30 from being damaged. Figure 1The state is the initial state, at this time the rotating connecting rod 12 is at point a, the columnar rod 41 is also at the position corresponding to point a, at this time the sliding plate 13 is at the far right, a group of second workpieces 46 in the second blanking frame 16 fall into the sliding hole 39, the motor 3 is started, and the motor 3 drives the turntable 17 to rotate clockwise through the drive shaft 4 (the turntable 17 contacts the rotating connecting rod 12 in the order of points acbda), the turntable 17 first rotates to the position corresponding to point e and contacts the columnar rod 41 (the columnar rod 41 slides to the inclined surface of the inclined track 42), and then in the process of the columnar rod 41 rotating to the position of point e and point g on the turntable 17, under the action of the inclined track 42, the sliding plate 13 will be driven to move left through the columnar rod 41 and the L-shaped fixed rod 15;

[0041] When the sliding plate 13 moves to the left, the L-shaped pull rod 14 moves to the left. Under the pulling force of the third spring 40, the T-shaped slide plate 49 moves to the left. During the movement of the T-shaped slide plate 49 to the left, the sliding seat 21 slides into the oblique groove 32 (by the elastic force of the second spring 26). Figure 18 The state shown moves to Figure 6 In the state shown, the T-shaped slide 49 is blocked by the fixed sleeve 20 and will not move further to the left. If the L-shaped pull rod 14 continues to move left, it will separate from the T-shaped slide 49. At this time, there is a step between the sliding limit groove 31 and the placement groove 28.

[0042] At the same time, the leftward movement of the sliding plate 13 drives the circular fixing rod 18 to be inserted into the sliding hole 39, pushing the first workpiece 45 from the insertion hole 34 to be inserted into the sliding limit groove 31. When the first workpiece 45 moves to the annular tube 37, the pump in the connecting agent box 35 is briefly started, so that the connecting agent is squeezed out from the nozzle 38 through the discharge pipe 36 and the annular tube 37 and applied to the surface of the first workpiece 45. (Initially, the first workpiece 45 and the second workpiece 46 are not coaxial, until the second workpiece 46 falls onto the placement groove 28 ( Figure 6 As shown in the state), the first workpiece 45 is coaxial with the second workpiece 46, and then the first workpiece 45 can be inserted into the second workpiece 46. When the first workpiece 45 is pushed by the circular fixing rod 18, it pushes the second workpiece 46 in the sliding limit groove 31 to move to Figure 6Above the placement slot 28 in the state shown (the second workpiece 46 will first contact the first cross cutter head 11 after falling into the placement slot 28. When the second cross cutter head 48 and the first cross cutter head 11 are misaligned, as the drive shaft 4 rotates (the fixed square rod 43 ensures that the sliding sleeve 10 has a certain avoidance space to ensure that the first cross cutter head 11 can rotate to a sufficient angle to be stuck in the second cross cutter head 48), the first cross cutter head 11 will be stuck in the second cross cutter head 48. After being stuck, the sliding sleeve 10 will drive the second workpiece 46 to rotate The outer surface of the second workpiece 46 will contact the sponge brush 30, and the antiseptic will be applied to the outer surface of the second workpiece 46. The second workpiece 46 can drive the first workpiece 45 inserted into the second workpiece 46 to rotate (the first workpiece 45 and the second workpiece 46 are transition fit). When the first cross-shaped groove 47 is aligned with the second cross-shaped cutter head 27, the second cross-shaped cutter head 27 will be stuck in the first cross-shaped groove 47 to limit the rotation of the first workpiece 45). When the columnar rod 41 moves relatively to the gh section, the L-shaped fixing rod 15 stops moving left and right ( Figure 1 As the driving shaft 4 continues to rotate, the first workpiece 45 and the second workpiece 46 rotate relative to each other, and the long strip of connecting agent applied to the surface of the first workpiece 45 is evenly applied between the inner walls of the first workpiece 45 and the second workpiece 46;

[0043] At the same time, when point b on the turntable 17 rotates to contact with the rotating link 12, the rotating link 12 tilts downward to the limit, and the rotating link 12 moves down to the limit in the first fixed groove 23. A group of second workpieces 46 in the second blanking frame 16 slides into the inclined groove 33. At this time, the baffle 22 is in the second fixed groove 24, which will prevent the second workpiece 46 in the inclined groove 33 from sliding down to the sliding limit groove 31. When it rotates to contact with the rotating link 12 at point a, the baffle 22 is lifted up to the limit, and the second workpiece 46 in the inclined groove 33 slides down to the sliding limit groove 31, ensuring that only one group of second workpieces 46 falls in each cycle.

[0044] When the hf section on the turntable 17 rotates to contact the columnar rod 41, the sliding plate 13 will move to the left under the elastic force of the first spring 19. During this process, the sliding plate 13 will drive the L-shaped pulling rod 14 to move left, thereby pulling the T-shaped slide plate 49 to move left, and the sliding seat 21 will be pulled to the left. Under the action of the inclined surface of the bevel groove 32, the sliding seat 21 will disengage from under the bevel groove 32. In this process, due to the height difference between the placement groove 28 and the sliding limit groove 31, the combination of the first workpiece 45 and the second workpiece 46 assembled above the placement groove 28 will be blocked and cannot return to the sliding limit groove 31. When the sliding seat 21 disengages from under the bevel groove 32, the assembled first workpiece 45 and the second workpiece 46 will fall and can be collected with a collection frame.

[0045] Finally: The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A sensing and monitoring device for coating metal parts, comprising a base plate (1), characterized in that: The upper end of the bottom plate (1) is fixedly connected to a second fixed plate (9), one side of the second fixed plate (9) is fixedly connected to a first assembly box (5), and the side of the second fixed plate (9) communicating with the first assembly box (5) is fixedly connected to a second assembly box (7), the upper end of the bottom plate (1) is fixedly connected to a first fixed plate (2), one side of the first fixed plate (2) is fixedly connected to a motor (3), one end of the motor (3) is extended with a drive shaft (4), the cylindrical outer surface of the drive shaft (4) is fixedly connected to a turntable (17), the bottom surface of the turntable (17) is in an egg-shaped design with a large ellipse on the top and a small ellipse on the bottom, an inclined track (42) is provided on the turntable (17), a sliding hole (39) is provided on the second assembly box (7), and the second One side of the assembly box (7) is fixedly connected to a first spring (19), one end of the first spring (19) is fixedly connected to a sliding plate (13), one side of the sliding plate (13) is fixedly connected to a circular fixed rod (18), and the circular fixed rod (18) is slidably connected to the sliding hole (39), one end of the circular fixed rod (18) is fixedly connected to a second cross cutter head (27), one side of the sliding plate (13) is rotatably connected to a rotating connecting rod (12), and the rotating connecting rod (12) contacts the upper surface of the turntable (17), one side of the sliding plate (13) is fixedly connected to an L-shaped fixed rod (15), one end of the L-shaped fixed rod (15) is fixedly connected to a columnar rod (41), and the columnar rod (41) contacts the inclined track (42) on the turntable (17).

2. The sensing and monitoring metal coating device according to claim 1, characterized in that: The first assembly box (5) is provided with a sliding limit groove (31), one side of the sliding limit groove (31) is provided with an inclined groove (33), the first assembly box (5) is provided with a plug hole (34), and the plug hole (34) is communicated with the sliding limit groove (31), the lower end of the sliding limit groove (31) is provided with an oblique groove (32), the lower end of the first assembly box (5) is provided with a sliding seat (21), and the sliding seat (21) is adapted to the oblique groove (32), the sliding seat (21) is provided with a placement groove (28), and there is a step between the placement groove (28) in the oblique groove (32) and the sliding limit groove (31).

3. The sensing and monitoring metal coating device according to claim 2, characterized in that: The lower end of the sliding seat (21) is fixedly connected to a square rod (25), one side of the second fixed plate (9) is fixedly connected to a fixed sliding sleeve (20), a T-shaped slide (49) is slidably connected in the fixed sliding sleeve (20), and the square rod (25) and the T-shaped slide (49) are connected through, a second spring (26) is fixedly connected between the sliding seat (21) and the T-shaped slide (49), the lower end of the first assembly box (5) is fixedly connected to a fixed vertical plate (29), a third spring (40) is fixedly connected between the fixed vertical plate (29) and the T-shaped slide (49), and one side of the sliding plate (13) is fixedly connected to an L-shaped pulling rod (14).

4. The sensing and monitoring metal coating device according to claim 1, characterized in that: One end of the drive shaft (4) is fixedly connected to a fixed square rod (43), the outer surface of the fixed square rod (43) is slidably connected to a sliding sleeve (10), a fourth spring (44) is fixedly connected between the sliding sleeve (10) and the drive shaft (4), and one end of the sliding sleeve (10) is fixedly connected to a first cross cutter head (11).

5. The sensing and monitoring metal coating device according to claim 1, characterized in that: The upper end of the first assembly box (5) is fixedly connected to the second blanking frame (16), the second blanking frame (16) is provided with a first fixed groove (23), and the rotating connecting rod (12) is slidably connected to the first fixed groove (23), the first assembly box (5) is provided with a second fixed groove (24), one side of the rotating connecting rod (12) is fixedly connected to a baffle (22), and the baffle (22) is adapted to the second fixed groove (24), the upper end of the first assembly box (5) is fixedly connected to the preservative box (6), the upper end of the inner wall of the sliding limit groove (31) is fixedly connected to a sponge brush (30), and the sponge brush (30) is connected to the preservative box (6) through a pipeline.

6. The sensing and monitoring device for metal coating according to claim 5, characterized in that: The upper end of the second assembly box (7) is fixedly connected to the first blanking frame (8), and the first blanking frame (8) is communicated with the sliding hole (39). The upper end of the second assembly box (7) is fixedly connected to the connecting agent box (35), and one side of the connecting agent box (35) is fixedly connected to the discharge pipe (36). One end of the discharge pipe (36) is fixedly connected to the annular tube (37), and the annular tube (37) is fixedly connected to the second assembly box (7). The inner wall of the annular tube (37) is fixedly connected to multiple groups of nozzles (38).

7. The sensing and monitoring device for metal coating according to claim 6, characterized in that: The first blanking frame (8) contains a plurality of first workpieces (45), and a first '-shaped groove (47) is provided on one side of each group of the first workpieces (45). The second blanking frame (16) contains a plurality of second workpieces (46), and the second workpieces (46) are adapted to the first workpieces (45), and a second '-shaped groove (48) is provided on one side of each group of the second workpieces (46).