Protective and collecting integrated structure

By using an integrated structure for protection and collection during the spraying process, the pollution problem caused by paint spillage is solved, and the effective collection and reuse of paint is achieved.

CN224586170UActive Publication Date: 2026-08-04DONGGUAN DAZU BEIJIN EQUIPMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN DAZU BEIJIN EQUIPMENT CO LTD
Filing Date
2025-08-11
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

In the existing spraying process, paint scatters onto the conveyor belt and other functional structures at the bottom of the spraying fixture, causing pollution and making it impossible to collect, which affects the environment and equipment.

Method used

The design incorporates an integrated structure for protection and collection, including a support frame, a protective plate, and a collection assembly. The protective plate is movably mounted on the support frame to shield the functional structure, while the collection assembly collects the paint. The paint is guided to the collection assembly by an inclined design and a guide plate.

Benefits of technology

It achieves protection of functional structures during the spraying process, effective collection of paint, avoidance of pollution, and promotion of reuse.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a protection and collection integrated structure relates to surface spraying technical field. Protection and collection integrated structure are used for spraying work, including support frame, fender and collection subassembly, fender activity is located in support frame, and fender is equipped with two, and two fenders are located at the opposite sides of spraying fixture and can be close to or away from each other to shield or show the function structure at the bottom of spraying fixture, and collection subassembly is located at one side of two fenders away from each other, is used for collecting the coating on fender. The utility model provides technical scheme and realizes the protection of function structure and the collection of coating in the spraying process.
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Description

Technical Field

[0001] This utility model relates to the field of surface spraying technology, and in particular to an integrated structure for protection and collection. Background Technology

[0002] Surface coating technology is widely used in modern industrial production, especially in parts manufacturing and machining. Taking battery cells as an example, in order to improve the performance and lifespan of battery cells, it is often necessary to coat their surfaces.

[0003] Current spraying methods typically involve directly spraying the battery cells onto the spraying fixture. However, during the spraying process, the paint is not completely applied to the surface of the battery cells; some paint spills around them, and this spilled paint usually retains good flowability. Therefore, in existing spraying processes, paint spills onto the conveyor belt at the bottom of the spraying fixture and other functional structures. This paint adheres to and flows on these structures, causing contamination that cannot be collected and pollutes the external environment. Utility Model Content

[0004] The main purpose of this invention is to propose an integrated structure for protection and collection, which aims to protect the functional structure and collect the paint during the spraying process.

[0005] To achieve the above objectives, this utility model proposes an integrated protection and collection structure for spraying operations, comprising:

[0006] Support frame;

[0007] A protective plate, movably mounted on the support frame, comprising two plates located on opposite sides of the spraying fixture and capable of moving closer or further apart to conceal or expose the functional structure located at the bottom of the spraying fixture; and

[0008] A collection component, located on one side of the two guard plates that are far apart from each other, is used to collect the paint on the guard plates.

[0009] In one embodiment, the two protective plates are inclined toward the bottom of the spraying fixture on the side that is far apart from each other.

[0010] In one embodiment, the integrated protection and collection structure further includes:

[0011] A guide plate connects the protective plate and the collecting assembly, wherein the tilt angle of the guide plate is greater than the tilt angle of the protective plate.

[0012] In one embodiment, both of the two guard plates are provided with a clearance position on the side that is close to each other, the clearance position being used to avoid the spraying fixture.

[0013] In one embodiment, the two guard plates are staggered, with one guard plate partially covering the other guard plate.

[0014] In one embodiment, both of the two guard plates have protrusions on their adjacent sides to restrict the flow of the coating.

[0015] In one embodiment, the integrated protection and collection structure further includes:

[0016] Baffles are provided at opposite ends of the guard plate to restrict the flow of coating at the ends of the guard plate.

[0017] In one embodiment, the collection component includes:

[0018] A collecting plate is provided on each side of the two guard plates that are far apart from each other. The collecting plate is configured as a funnel-shaped structure and has a discharge port.

[0019] A filter screen is provided over the discharge port; and

[0020] A collection bucket is located at the bottom of the collection plate and connected to the discharge port.

[0021] In one embodiment, the collection component further includes:

[0022] A vibrator is provided at the bottom of each of the collecting plates to drive the collecting plates to vibrate.

[0023] In one embodiment, the collection component further includes:

[0024] Each of the collecting plates is provided with a heating element, which is used to heat the collecting plate.

[0025] In this invention, an integrated protection and collection structure is used for spraying operations. This structure comprises a support frame, protective plates, and a collection component. Two protective plates are movably mounted on the support frame and are located on opposite sides of the spraying fixture, moving closer or further apart to conceal or expose the functional structure at the bottom of the fixture. The collection component is located on the side of the two protective plates that moves away from each other and collects the paint on these plates. Compared to the prior art method of directly spraying the workpiece, this invention uses protective plates and a collection component. When spraying is required, the two protective plates can move closer together to conceal the functional structure at the bottom of the spraying fixture, thus protecting the structure during spraying. The paint spills onto the protective plates and flows along them to the collection component, achieving paint collection. Attached Figure Description

[0026] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0027] Figure 1 A schematic diagram of an embodiment of the integrated protection and collection structure provided by this utility model;

[0028] Figure 2 for Figure 1 A schematic diagram of another embodiment;

[0029] Figure 3 for Figure 1 A schematic diagram of the structure of one embodiment of the center guard plate;

[0030] Figure 4 for Figure 1 A schematic diagram of the structure of an embodiment from another perspective;

[0031] Figure 5 for Figure 1 A schematic diagram of the structure of another embodiment from another perspective.

[0032] Explanation of icon numbers:

[0033] 110. Spraying fixture; 120. Spray gun; 130. Functional structure;

[0034] 210. Support frame; 220. Power component; 230. Limiting block; 240. Slider; 250. Guide rail;

[0035] 300. Guard plate; 310. Clearance area; 320. Protrusion; 330. Guide plate; 340. Baffle; 350. Protective cover;

[0036] 410. Collection plate; 411. Inclined part; 412. Recessed part; 420. Filter screen; 430. Collection bucket; 440. L-shaped plate; 450. Vibrator; 460. Extension plate;

[0037] 500. Workpiece.

[0038] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0039] 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 scope of protection of the present utility model.

[0040] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.

[0041] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0042] Surface coating technology is widely used in modern industrial production, especially in parts manufacturing and machining. Taking battery cells as an example, in order to improve the performance and lifespan of battery cells, it is often necessary to coat their surfaces.

[0043] Current spraying methods typically involve directly spraying the battery cells onto the spraying fixture. However, during the spraying process, the paint is not completely applied to the surface of the battery cells; some paint spills around them, and this spilled paint usually retains good flowability. Therefore, in existing spraying processes, paint spills onto the conveyor belt at the bottom of the spraying fixture and other functional structures. This paint adheres to and flows on these structures, causing contamination that cannot be collected and pollutes the external environment.

[0044] Please see Figures 1 to 3In one embodiment, the integrated protection and collection structure includes a support frame 210, a protective plate 300, and a collection component. The protective plate 300 is movably mounted on the support frame 210. There are two protective plates 300, which are located on opposite sides of the spraying fixture 110 and can move closer or further away from each other to cover or expose the functional structure 130 located at the bottom of the spraying fixture 110. The collection component is located on the side of the two protective plates 300 that is far apart from each other and is used to collect the paint on the protective plates 300.

[0045] An integrated protection and collection structure is used for spraying operations. This integrated structure is typically located on both sides of the spraying station. The spraying station is equipped with a spray gun 120, a spraying fixture 110, and a functional structure 130. The spray gun 120 is located above or to one side of the spraying fixture 110; the spraying fixture 110 is located within the functional structure 130, and the workpiece 500 is located within the spraying fixture 110; the functional structure 130 is located at the bottom of the spraying fixture 110 and below the spray gun 120, and is used to move or rotate the workpiece 500 via the spraying fixture 110. The functional structure 130 can be a conveyor belt structure or a turntable structure, etc., and the workpiece 500 can be a battery cell or a bottle, etc., without limitation.

[0046] The support frame 210 provides an installation foundation and support for the integrated protection and collection structure. In one embodiment, two sets of support frames 210 are provided, located on opposite sides of the spraying station to provide installation positions for the integrated protection and collection structure. Of course, in other embodiments, the support frame 210 can also be an integral structure, with the support frame 210 penetrating the bottom of the spraying station and extending to opposite sides of the spraying station at both ends. Here, the specific structure of the support frame 210 is not limited.

[0047] The protective plate 300 is mainly used to protect the functional structure 130 at the bottom of the spraying fixture 110. In one embodiment, each set of support frames 210 is movably provided with a protective plate 300. In one embodiment, each set of support frames 210 is provided with a power component 220, which is drivenly connected to the protective plate 300. In one embodiment, the upper surface of the support frame 210 is provided with a guide rail 250, and the protective plate 300 is slidably connected to the guide rail 250 through a slider 240. The body of the power component 220 is fixed to the support frame 210, and a limiting block 230 is provided above each slider 240. The output shaft of the power component 220 is connected to the limiting block 230 through a floating joint. The extension and retraction of the output shafts of the power components 220 on the two sets of support frames 210 drives the two protective plates 300 to move along the guide rail 250 to move closer to or further away from each other. Of course, in other embodiments, the power component 220 can also be driven to connect with the guard plate 300 through a structure such as a gear rack or worm gear. The power component 220 can be a motor or a cylinder, etc., and there is no limitation here.

[0048] When the spraying fixture 110 and the workpiece 500 arrive at the spraying station, the power unit 220 drives the two protective plates 300 to move closer together to abut against the side of the spraying fixture 110, thereby shielding the functional components. After spraying is completed, the power unit 220 drives the two protective plates 300 to move further apart, so that the spraying fixture 110 and the workpiece 500 can leave the spraying station.

[0049] The collection component is used to collect paint spilled during the spraying process. In one embodiment, the collection component has a receiving space and is connected to two guard plates 300. The movement of the guard plates 300 can drive the collection component to move, so that the paint spilled on the guard plates 300 during the spraying process can flow smoothly into the receiving space of the collection component, thereby collecting the paint, avoiding paint pollution of the functional structure and the external environment, and facilitating the recycling and reuse of the paint.

[0050] In this utility model's technical solution, an integrated protection and collection structure is used for spraying operations. This structure includes a support frame 210, protective plates 300, and a collection component. Two protective plates 300 are movably mounted on the support frame 210. These plates are located on opposite sides of the spraying fixture 110 and can move closer or further apart to conceal or expose the functional structure 130 at the bottom of the spraying fixture 110. The collection component is located on the side of the two protective plates 300 that is further apart and is used to collect the paint on the protective plates 300. Compared to the prior art method of directly spraying the workpiece 500, this utility model's solution incorporates protective plates 300 and a collection component. When the workpiece 500 needs to be sprayed, the two protective plates 300 can move closer together to conceal the functional structure 130 at the bottom of the spraying fixture 110, thus protecting the functional structure 130 during the spraying process. The paint spills onto the protective plates 300 and flows along them to the collection component, achieving paint collection.

[0051] Please see Figure 1 and Figure 2 In one embodiment, the two guard plates 300 are inclined toward the bottom of the spraying fixture 110 on the side that is far apart from each other.

[0052] In one embodiment, the side of the two guard plates 300 that is closer to each other is closer to the spraying station, i.e., closer to the spray gun 120. The height of the side of the two guard plates 300 that is closer to each other is greater than the height of the side of the two guard plates 300 that is farther apart, so that the two guard plates 300 are set at an angle to guide the paint on the guard plates 300 to flow outward to the collection assembly. In one embodiment, the two guard plates 300 have the same angle of inclination. Of course, in other embodiments, the angle of inclination of the two guard plates 300 can also be flexibly set according to the flow rate of the paint and the actual use, and there is no limitation here.

[0053] The technical solution of this utility model embodiment, by setting the guard plate 300 at an angle, can guide the flow of paint on the guard plate 300, avoid paint accumulation on the guard plate 300, and achieve rapid collection of paint.

[0054] Please see Figure 1 and Figure 2 In one embodiment, the integrated protection and collection structure further includes a guide plate 330 connecting the protective plate 300 and the collection component, wherein the tilt angle of the guide plate 330 is greater than the tilt angle of the protective plate 300.

[0055] In one embodiment, one of the guard plates 300 is positioned opposite the spray direction of the spray gun 120, allowing more paint to be dispersed onto the guard plate 300. A guide plate 330 is positioned between the guard plate 300 and the collecting assembly to guide the paint on the guard plate 300 to flow quickly to the collecting assembly, preventing excessive paint accumulation. In another embodiment, guide plates 330 are provided between both guard plates 300 and the collecting plate 410. In one embodiment, the tilt angle of the guide plate 330 is greater than or equal to 25 degrees and less than or equal to 30 degrees, to achieve rapid paint flow while preventing splashing due to excessive paint flow. Of course, in other embodiments, the tilt angle of the guide plate 330 can be flexibly set according to the tilt angle of the guard plate 300 and actual needs, and is not limited here.

[0056] In the technical solution of this utility model embodiment, by setting the guide plate 330, the paint can be guided to flow quickly from the guard plate 300 to the collection component, avoiding paint accumulation or retention, and further realizing the effective collection of paint.

[0057] Please see Figure 2 and Figure 3 In one embodiment, both guard plates 300 are provided with a clearance position 310 on the side that is close to each other, and the clearance position 310 is used to avoid the spraying fixture 110.

[0058] In one embodiment, the guard plate 300 has a notch at the clearance position 310. The spraying fixture 110 includes a fixture body and a fixture rod. The fixture body is used to support the workpiece 500, and the fixture rod is located on the side of the fixture body away from the workpiece 500 and connected to the functional structure 130. The notch is used to allow clearance from the fixture rod. When the two guard plates 300 approach each other, the inner wall of the notch is used to fit against the outer periphery of the fixture rod to shield the functional structure 130. The number of clearance positions 310 can be flexibly set according to the number of spraying fixtures 110, and is not limited here. Of course, in other embodiments, the structure of the clearance positions 310 can also be flexibly set according to the structure of the spraying fixture 110, and is not limited here.

[0059] The technical solution of this utility model embodiment provides better protection for the functional mechanism by setting a clearance position 310 on the protective plate 300, so that when the two protective plates 300 approach each other, they can avoid the spraying fixture 110 and fit against the outer peripheral surface of the spraying fixture 110.

[0060] Please see Figure 1 , Figure 2 and Figure 5 In one embodiment, the two protective plates 300 are staggered, with one protective plate 300 covering part of the other protective plate 300.

[0061] In one embodiment, there is a height difference between the two guard plates 300. When the two guard plates 300 approach each other, the clearance 310 of one guard plate 300 is located above the notch clearance 310 of the other guard plate 300, such that the end of one guard plate 300 covers the end of the other guard plate 300. In another embodiment, the higher guard plate 300 is located below the spray gun 120, and the lower guard plate 300 is located in the firing direction of the spray gun 120, so that most of the paint is scattered on the lower guard plate 300 and flows from the guide plate 330 to the collection assembly, preventing paint from being blown into the gap between the two guard plates 300. The height difference between the two guard plates 300 allows them to partially overlap but not largely overlap, and the height difference can be flexibly set according to actual needs.

[0062] The technical solution of this utility model embodiment, by setting the two protective plates 300 in a staggered manner, avoids paint from falling onto the functional structure 130 through the gap between the two protective plates 300 during the spraying process, thereby improving the protective performance of the protective plates 300.

[0063] Please see Figures 1 to 3 In one embodiment, each of the two guard plates 300 has a protrusion 320 on the side that is close to each other, for restricting the flow of paint.

[0064] In one embodiment, a protrusion 320 is provided on the edge of the two guard plates 300 that are close to each other. The protrusion 320 is used to block the flow of paint scattered on the guard plates 300, preventing paint from flowing from the edge to the functional components. In one embodiment, when the two guard plates 300 are close to each other, and the clearance position 310 of the taller guard plate 300 is located above the clearance position 310 of the shorter guard plate 300, the protrusion 320 of the shorter guard plate 300 abuts against the bottom surface of the taller guard plate 300 to further reduce the gap when the two guard plates 300 are close to each other. The height of the protrusion 320 can be set according to the height difference between the two guard plates 300, and is not limited here.

[0065] The technical solution of this utility model embodiment, by providing the protrusion 320, can restrict the flow of paint and further reduce the gap when the two guard plates 300 are close to each other, thereby improving the reliability of the guard plate 300.

[0066] Please see Figures 1 to 3 In one embodiment, the integrated protection and collection structure further includes baffles 340 disposed at opposite ends of the protective plate 300 to restrict the flow of coating at the ends of the protective plate 300.

[0067] In one embodiment, a baffle 340 is provided at each end of the two guard plates 300 along their length. A protective cover 350 is provided above each baffle 340. The protective cover 350 is located on the support frame 210 and covers part of the baffle 340. When the guard plates 300 move, they can move the baffle 340 relative to the protective cover 350. The protective cover 350 is used to prevent paint from spilling onto the power component 220, the slider 240, and the guide rail 250. In one embodiment, the protective cover 350 has a vertical surface and an inclined surface, with the inclined surface located above the vertical surface, and the vertical surface partially covering the baffle 340. Of course, in other embodiments, the baffle 340 and the protective cover 350 can also be integrally formed; this is not a limitation.

[0068] The technical solution of this utility model embodiment, by setting baffle 340, further prevents the paint scattered on the guard plate 300 from flowing down from the edge and contaminating the drive structure of the guard plate 300, thus ensuring the normal operation of the guard plate 300.

[0069] Please see Figure 1 , Figure 2 and Figure 4 In one embodiment, the collection assembly includes a collection plate 410, a filter screen 420, and a collection bucket 430. A collection plate 410 is provided on each side of the two protective plates 300 that are far apart from each other. The collection plate 410 is configured as a funnel-shaped structure and has a discharge port. The filter screen 420 is covered on the discharge port. The collection bucket 430 is provided at the bottom of the collection plate 410 and connected to the discharge port.

[0070] In one embodiment, the periphery of the upper surface of the collecting plate 410 forms an inlet. The collecting plate 410 includes multiple inclined portions 411, which extend inclinedly towards the same point, giving the collecting plate 410 a recessed portion 412. The outlet is located in the recessed portion 412 and is parallel to and opposite to the inlet, thus forming a funnel-shaped structure. A filter screen 420 is placed above the outlet, and a collecting bucket 430 is connected to the lower part of the outlet. The pores of the filter screen 420 are only for paint particles to pass through; no specific limitation is made here. In one embodiment, since the spraying direction of the spray gun 120 is towards the lower guard plate 300, more paint will fall onto the lower guard plate 300. Therefore, the structure of the collecting plate 410 connected to the higher guard plate 300 is not entirely the same as the structure of the collecting plate 410 connected to the lower guard plate 300.

[0071] In one embodiment, the collecting plate 410 connected to the taller guard plate 300 has two inlets and two recesses 412, the positions of which correspond to the two ends of the guard plate 300. Each recess 412 has an outlet, and each outlet is connected to a collecting bucket 430. An L-shaped plate 440 may be provided on the side of the taller guard plate 300 near the collecting plate 410, so that the paint flows directly from the inlets to the outlets at the recesses 412 from both ends of the L-shaped plate 440. The lower-height guard plate 300 connects to the collecting plate 410 via a guide plate 330. The collecting plate 410 has only one recess 412 and one inlet, and the distance between the recess 412 and the inlet is smaller than the distance between the recess 412 and the inlet of the other collecting plate 410. In other words, the inclination angle of the inclined portion 411 of the collecting plate 410 connected to the lower-height guard plate 300 is smaller than the inclination angle of the inclined portion 411 of the collecting plate 410 connected to the higher-height guard plate 300, making the collecting plate 410 connected to the lower-height guard plate 300 more gently sloping and preventing paint blockage at the outlet. The depth of the different recesses 412 and the inclination angle of the inclined portions 411 can be flexibly set according to actual conditions and are not limited here.

[0072] In one embodiment, an extension plate 460 is further connected to the side of the collecting plate 410 away from the protective plate 300 to further receive spilled paint. The extension plate 460 can be configured as a flat plate or a funnel-shaped structure; no limitation is made here.

[0073] The technical solution of this utility model embodiment, by setting up a collection plate 410, a filter screen 420 and a collection bucket 430, allows the collection bucket 430 to receive a large amount of paint, facilitating the temporary storage and reuse of the paint. The collection plate 410 is designed as a funnel-shaped structure, which can guide the flow of paint to the collection bucket 430, achieving efficient collection and avoiding pollution of the external environment. The filter screen 420 can ensure the quality of the collected paint, prevent other substances from flowing into the collection bucket 430, and improve the reliability of collection.

[0074] Please see Figure 4 In one embodiment, the collection assembly further includes a vibrator 450, with a vibrator 450 provided at the bottom of each collection plate 410, the vibrator 450 being used to drive the collection plate 410 to vibrate.

[0075] The vibrator 450 is used to drive the collecting plate 410 to vibrate at high frequency, thereby promoting the flow of coating on the collecting plate 410. In one embodiment, the vibrator 450 is disposed in contact with the lower surface of the collecting plate 410, thereby driving the collecting plate 410 to vibrate by direct contact. Of course, in other embodiments, the vibrator 450 may also be connected to the collecting plate 410 through a transmission structure or the like to drive the collecting plate 410 to vibrate; no limitation is made here. The vibrator 450 may be configured as a pneumatic vibrator 450, an electric vibrator 450, or an ultrasonic structure, etc.; no limitation is made here.

[0076] Please see Figure 4 In one embodiment, the collection assembly further includes a heating element (not shown in the figure), and each collection plate 410 is provided with a heating element for heating the collection plate 410.

[0077] A heating element is used to heat the collecting plate 410 to promote the flow of coating on the collecting plate 410. In one embodiment, the heating element is located at the bottom of the collecting plate 410 or embedded within the collecting plate 410. The heating element can be configured as a heating plate, a thin-film heating element, or a resistance heating wire, etc., and there is no limitation thereto.

[0078] In one embodiment, the collecting plate 410 is equipped with both a heating element and a vibrator 450 to dually promote the flow of the coating. The collecting plate 410 can be made of materials with good high-temperature resistance and high strength, such as aluminum alloy or polyimide; this is not a limitation. Of course, in other embodiments, the tilt angle of the inclined portion 411 of the collecting plate 410 can be increased to promote the flow of the coating on the collecting plate 410; this is also not a limitation.

[0079] The technical solution of this utility model embodiment, by setting a vibrator 450 and a heating element, the vibrator 450 can realize the vibration of the collecting plate 410, and the heating element can increase the temperature of the collecting plate 410, thereby increasing the temperature of the coating on the collecting plate 410, preventing the coating from adhering to the collecting plate 410, and realizing the effective collection of the coating.

[0080] The above description is merely an exemplary embodiment of the present utility model and does not limit the scope of protection of the present utility model. Any equivalent structural transformations made based on the technical concept of the present utility model and the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the scope of protection of the present utility model.

Claims

1. A protective and collecting integrated structure for a spray work, characterized by, include: Support frame; A protective plate, movably mounted on the support frame, comprising two plates located on opposite sides of the spraying fixture and capable of moving closer or further apart to conceal or expose the functional structure located at the bottom of the spraying fixture; and A collection component, located on one side of the two guard plates that are far apart from each other, is used to collect the paint on the guard plates.

2. The combination shield and collector of claim 1 wherein, The two protective plates are inclined towards the bottom of the spraying fixture on the side that is far apart from each other.

3. The combination shield and collector of claim 2, wherein, The integrated protection and collection structure also includes: A guide plate connects the protective plate and the collecting assembly, wherein the tilt angle of the guide plate is greater than the tilt angle of the protective plate.

4. The shield-and-collector integrated structure of claim 1, wherein Both of the two guard plates are provided with clearance on the side that is close to each other, and the clearance is used to avoid the spraying fixture.

5. The combination shield and collector of claim 4, wherein, The two guard plates are staggered, with one guard plate covering a portion of the other guard plate.

6. The shield-and-collect integrated structure of claim 1, wherein, Both of the guard plates have protrusions on their adjacent sides to restrict the flow of the coating.

7. The shield-and-collector integrated structure of claim 1, wherein The integrated protection and collection structure also includes: Baffles are provided at opposite ends of the guard plate to restrict the flow of coating at the ends of the guard plate.

8. The shield-and-collect integrated structure of claim 1, wherein, The collection component includes: A collecting plate is provided on each side of the two guard plates that are far apart from each other. The collecting plate is configured as a funnel-shaped structure and has a discharge port. A filter screen is provided over the discharge port; and A collection bucket is located at the bottom of the collection plate and connected to the discharge port.

9. The shield-and-collector integrated structure of claim 8, wherein, The collection component also includes: A vibrator is provided at the bottom of each of the collecting plates to drive the collecting plates to vibrate.

10. The shield-and-collector integrated structure of claim 8, wherein, The collection component also includes: Each of the collecting plates is provided with a heating element, which is used to heat the collecting plate.