Energy-saving filtering structure for paint spray booth

By introducing a cyclone separator and solar power generation system into the paint room, combined with a multi-stage filter structure, the problems of easy blockage and high energy consumption in the paint room filter structure is solved, and energy saving and efficient production are achieved.

CN223145052UActive Publication Date: 2025-07-25TAIZHOU BAODI COATING MASCH CO LTD
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Patent Information

Application Number
CN202421896588.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-07-25
Estimated Expiration
2034-08-07

AI Technical Summary

Technical Problem

The existing spray paint room has a relatively single filter structure, which can easily block the cyclone separator, resulting in high energy consumption and relying on electric power to waste energy.

Method used

The combined design of cyclone separator, transmission motor, processor, filter mechanism, chute, mesh plate, secondary filter mechanism, filter cartridge, outlet pipe, vertical pipe, energy-saving mechanism, motor rotary arms, solar power generation panel and energy storage battery is adopted. The cyclone separator is driven by solar power generation, combined with a multi-stage filter structure to reduce energy consumption.

Benefits of technology

The energy-saving effect of the paint spray room is achieved, production efficiency is improved, the load of the cyclone separator is reduced, and energy consumption is reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an energy-saving filtering structure for a paint spray booth, which relates to the technical field of paint spray booths, and comprises a paint spray booth body and a room door rotationally connected to the front surface of the paint spray booth body, and an energy-saving filtering mechanism is designed on the rear side of the paint spray booth body. The energy-saving filtering mechanism comprises a cyclone separator arranged on the rear surface of the paint spraying room body, a transmission motor is fixedly connected to the upper surface of the cyclone separator, and the output end of the cyclone separator is connected with a processor through a pipeline. An impurity filtering mechanism is arranged at the position, extending to the input end of the cyclone separator, of the inner bottom of the paint spraying room body. Compared with an existing energy-saving filtering structure for a common paint spray booth, the energy-saving filtering structure for the paint spray booth has the advantages that solar energy can be absorbed through the solar power generation panel to generate power, the cyclone separator is driven to work, waste gas can be treated by the cyclone separator and the processor to be discharged when cleaning is not carried out, and the energy-saving filtering structure is energy-saving and environment-friendly through the solar energy and multi-stage filtering mode. And the energy-saving effect is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of spray booths, in particular to an energy-saving filtering structure for a spray booth. Background Technique

[0002] A spray booth, as the name implies, is a room where the spray painting object is spray painted and colored. It is also called a baking booth. A spray booth is a device that provides a special environment for painting operations, and can meet the requirements for temperature, humidity, illuminance, air cleanliness, etc. in painting operations; it can limit and treat the paint mist and organic waste gas generated during the spray painting operation and then discharge them, and it is an environment-friendly painting device. Most of the existing spray booths use electricity for transmission to maintain the treatment function, which is relatively wasteful of electricity. In addition, the existing filtering structure of the spray booth is relatively single, and larger sundries are likely to block the air inlet end of the cyclone separator, resulting in an excessive load on the cyclone separator and relatively high energy consumption.

[0003] Therefore, in view of this, in view of the deficiencies of the existing structure, research and improvement are carried out, and an energy-saving filtering structure for a spray booth is proposed. Content of the Utility Model

[0004] The purpose of the utility model is to provide an energy-saving filtering structure for a spray booth to solve the problems proposed in the above background technique.

[0005] To achieve the above purpose, the utility model provides the following technical solution: an energy-saving filtering structure for a spray booth, including a spray booth body and a door rotatably connected to the front surface of the spray booth body. An energy-saving filtering mechanism is designed at the rear side of the spray booth body. The energy-saving filtering mechanism includes a cyclone separator arranged on the rear surface of the spray booth body. A driving motor is fixedly connected to the upper surface of the cyclone separator. The output end of the cyclone separator is connected to a processor through a pipeline. A miscellaneous filtering mechanism is arranged at the input end of the cyclone separator extending from the inner bottom of the spray booth body. An energy-saving mechanism is arranged above the cyclone separator.

[0006] Preferably, the miscellaneous filtering mechanism includes an inclined groove opened on the inner bottom of the spray booth body. A mesh plate is fixedly connected to the upper surface of the inclined groove. A return pipe is fixedly connected to the outer surface of the right side of the spray booth body. A secondary filtering mechanism is arranged at one end of the return pipe.

[0007] Preferably, the secondary filtering mechanism includes a filter cylinder fixedly connected to one end of the return pipe. A water outlet pipe is fixedly connected to the outer surface of the rear end of the filter cylinder. A vertical pipe is fixedly connected to the rear end of the water outlet pipe.

[0008] Preferably, the energy-saving mechanism includes a motor rotating arm arranged above the cyclone separator. A solar power generation panel is fixedly connected to the output end of the motor rotating arm. An energy storage battery is arranged on the left side of the motor rotating arm.

[0009] Preferably, a sliding frame is provided outside the main body of the spray booth, and a hanging rack is suspended at the sliding rail end of the sliding frame.

[0010] Preferably, feeding holes are formed through the left and right outer surfaces of the main body of the spray booth, and the sliding frame can slide inside the feeding holes.

[0011] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0012] 1. Through the settings of the main body of the spray booth, the door, the energy-saving filtering mechanism, the cyclone separator, the driving motor, the processor, the impurity filtering mechanism, the inclined chute, the mesh plate, the secondary filtering mechanism, the filter cylinder, the water outlet pipe, the vertical pipe, the return pipe, the energy-saving mechanism, the motor swing arm, the solar power generation panel, and the energy storage battery, the main body of the spray booth achieves the energy-saving effect through the forms of solar energy and multi-stage filtration;

[0013] 2. Through the settings of the sliding frame, the hanging rack, and the feeding holes, the production efficiency can be improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a schematic three-dimensional structure diagram of the whole of the present utility model;

[0015] Figure 2 is of the present utility model Figure 1 partial front view and partial sectional structure diagram;

[0016] Figure 3 is of the present utility model Figure 1 amplified structure diagram of the energy-saving mechanism 35 in the present utility model;

[0017] Figure 4 is of the present utility model Figure 1 amplified structure diagram of A in the present utility model.

[0018] In the figure: 1, main body of the spray booth; 2, door; 3, energy-saving filtering mechanism; 31, cyclone separator; 32, driving motor; 33, processor; 34, impurity filtering mechanism; 341, inclined chute; 342, mesh plate; 343, secondary filtering mechanism; 3431, filter cylinder; 3432, water outlet pipe; 3433, vertical pipe; 344, return pipe; 35, energy-saving mechanism; 351, motor swing arm; 352, solar power generation panel; 353, energy storage battery; 4, sliding frame; 5, hanging rack; 6, feeding holes. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0020] As Figures 1-4 shown, an energy-saving filtering structure for a spray painting booth includes a spray painting booth body 1 and a door 2 rotatably connected to the front surface of the spray painting booth body 1. An energy-saving filtering mechanism 3 is designed at the rear side of the spray painting booth body 1. The energy-saving filtering mechanism 3 includes a cyclone separator 31 arranged on the rear surface of the spray painting booth body 1. A driving motor 32 is fixedly connected to the upper surface of the cyclone separator 31. The output end of the cyclone separator 31 is connected to a processor 33 through a pipeline. A impurity filtering mechanism 34 is arranged at the input end of the cyclone separator 31 extending from the inner bottom of the spray painting booth body 1. An energy-saving mechanism 35 is arranged above the cyclone separator 31. The impurity filtering mechanism 34 includes an inclined groove 341 opened on the inner bottom of the spray painting booth body 1. A mesh plate 342 is fixedly connected to the upper surface of the inclined groove 341. A return pipe 344 is fixedly connected to the outer surface on the right side of the spray painting booth body 1. A secondary filtering mechanism 343 is arranged at one end of the return pipe 344. The secondary filtering mechanism 343 includes a filtering cylinder 3431 fixedly connected to one end of the return pipe 344. A water outlet pipe 3432 is fixedly connected to the outer surface at the rear end of the filtering cylinder 3431. The rear end of the water outlet pipe 3432 is fixedly connected to a vertical pipe 3433. The water outlet pipe 3432 can be connected to a water pumping device to improve the water outlet efficiency. The filtering cylinder 3431 is fixedly connected to one end of the return pipe 344 and the vertical pipe 3433 through screws. The energy-saving mechanism 35 includes a motor rotating arm 351 arranged above the cyclone separator 31. A solar power generation panel 352 is fixedly connected to the output end of the motor rotating arm 351. A storage battery 353 is arranged on the left side of the motor rotating arm 351.

[0021] By adopting the above technical solutions, water can be sprayed into the spray painting booth body 1 for scrubbing. The waste water can flow out through the return pipe 344, be filtered by the filtering cylinder 3431, and finally flow out through the water outlet pipe 3432. The solar power generation panel 352 can absorb solar energy for power generation. The motor rotating arm 351 can rotate according to the solar irradiation angle. The storage battery 353 stores energy for power supply, can supply power to the driving motor 32, and drive the cyclone separator 31 to work. When not cleaning, the cyclone separator 31 can perform an air suction operation. When sucking air, the water outlet pipe 3432 needs to be closed, and the air suction operation is performed by the mesh plate 342. The mesh plate 342 can filter larger sundries. The waste gas is finally processed and discharged by the processor 33.

[0022] As Figure 1As shown, a carriage 4 is arranged outside the paint spraying booth body 1, and a hanging rack 5 is suspended at the slide rail end of the carriage 4. The carriage 4 can be spliced according to the length of the production line.

[0023] Furthermore, feeding holes 6 are formed through the left and right outer surfaces of the paint spraying booth body 1, and the inside of the feeding holes 6 allows the carriage 4 to slide.

[0024] Working principle: When using the energy-saving filtering structure for the paint spraying booth, first, when the inside of the paint spraying booth body 1 is cleaned, water can be sprayed into the paint spraying booth body 1 for scrubbing. The waste water can flow out through the return pipe 344, be filtered by the filter cartridge 3431, and finally flow out through the water outlet pipe 3432. The solar power generation panel 352 can absorb solar energy for power generation. The motor swing arm 351 can rotate according to the solar irradiation angle, and the energy storage battery 353 stores energy for power supply, which can supply power to the drive motor 32 to drive the cyclone separator 31 to work. When not cleaning, the cyclone separator 31 can perform an air suction operation. When sucking air, the water outlet pipe 3432 needs to be closed, and the air suction operation is performed by the net plate 342. The net plate 342 can filter larger sundries, and the waste gas is finally discharged after being processed by the processor 33. The spraying parts can be hung on the hanging rack 5, and the hanging rack 5 can slide on the carriage 4 and be sprayed inside the paint spraying booth body 1 through the feeding holes 6. This is the working principle of the energy-saving filtering structure for the paint spraying booth.

Claims

1. An energy-saving filtering structure for a spray painting booth, comprising a spray painting booth body (1) and a door (2) rotatably connected to the front surface of the spray painting booth body (1), characterized in that, An energy-saving filtering mechanism (3) is designed at the rear side of the paint spraying booth body (1). The energy-saving filtering mechanism (3) includes a cyclone separator (31) arranged on the rear surface of the paint spraying booth body (1). A driving motor (32) is fixedly connected to the upper surface of the cyclone separator (31). The output end of the cyclone separator (31) is connected to a processor (33) through a pipeline. A impurity filtering mechanism (34) is arranged at the input end of the cyclone separator (31) where the inner bottom of the paint spraying booth body (1) extends. An energy-saving mechanism (35) is arranged above the cyclone separator (31).

2. The energy-saving filtering structure for a spray booth according to claim 1, wherein The impurity filtering mechanism (34) includes an inclined groove (341) opened on the inner bottom of the paint spraying booth body (1). A mesh plate (342) is fixedly connected to the upper surface of the inclined groove (341). A return pipe (344) is fixedly connected to the outer surface on the right side of the paint spraying booth body (1). A secondary filtering mechanism (343) is arranged at one end of the return pipe (344).

3. The energy-saving filtering structure for a spray booth according to claim 2, wherein, The secondary filtering mechanism (343) includes a filter cylinder (3431) fixedly connected to one end of the return pipe (344). A water outlet pipe (3432) is fixedly connected to the outer surface at the rear end of the filter cylinder (3431). The rear end of the water outlet pipe (3432) is fixedly connected to a vertical pipe (3433).

4. The energy-saving filtering structure for a spray booth according to claim 1, wherein, The energy-saving mechanism (35) includes a motor rotating arm (351) arranged above the cyclone separator (31). A solar power generation panel (352) is fixedly connected to the output end of the motor rotating arm (351). An energy storage battery (353) is arranged on the left side of the motor rotating arm (351).

5. An energy-saving filtering structure for a spray booth according to claim 1, characterized in that, A sliding frame (4) is arranged outside the paint spraying booth body (1). A hanging frame (5) is suspended at the sliding rail end of the sliding frame (4).

6. The energy-saving filtering structure for a spray booth according to claim 1, characterized in that, Feeding holes (6) are penetrated and opened on the left and right outer surfaces of the paint spraying booth body (1), and the sliding frame (4) can slide inside the feeding holes (6).