Energy-saving air compression equipment for sludge power plant
By installing noise reduction and limiting components on the compressor, the noise and heat problems of the air compressor when the pressure changes in the cylinder are solved, achieving noise reduction and heat dissipation effects, while also facilitating the disassembly and adjustment of the equipment.
Patent Information
- Application Number
- CN202520097624.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-16
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2035-01-16
AI Technical Summary
Existing air compressors generate a lot of heat and noise when the pressure inside the cylinder changes, and it is difficult to effectively reduce noise and dissipate heat.
The compressor employs noise reduction and limiting components. The noise reduction components include a housing and rock wool board to absorb noise, and a cooling fan is installed inside the housing for heat dissipation. The limiting components facilitate the disassembly and adjustment of the compressor body through limiting posts and protruding post structures.
It effectively reduces noise, improves equipment efficiency, and facilitates the disassembly and replacement of the compressor body.
Smart Images

Figure CN223578143U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to compressed air equipment field especially relates to a sludge power plant energy -conserving compressed air equipment. BACKGROUND
[0002] Energy -conserving compressed air equipment refers to those in the production and use process of compressed air, can effectively reduce energy consumption, improve energy efficiency equipment, air compressor is a kind of energy -conserving compressed air equipment. By optimizing compressor controller setting, reduce the running time when no load, can significantly reduce energy consumption, energy -conserving compressed air equipment not only helps to reduce the operating costs of enterprises, also has positive influence to environmental protection and sustainable development, in sludge power plant, many equipment such as pneumatic valve, actuator etc. need compressed air as power source to control its operation, compressed air system provides stable, reliable air source for these equipment, ensures the normal operation of equipment and production efficiency, at present, sludge power plant generally uses energy -conserving compressed air equipment to compress air.
[0003] In view of the above-mentioned related technology, the inventor believes that the following defects exist in the prior art: in the prior art, due to the change of pressure in the cylinder, air enters the cylinder through the air filter by the air inlet valve, the driving motor rotates at high speed, a large amount of heat is generated, which needs to be quickly discharged, and the noise generated is large. UTILITY MODEL CONTENT
[0004] In order to improve the prior art, the air compressor in the prior art changes the pressure in the cylinder, air enters the cylinder through the air filter by the air inlet valve, the driving motor rotates at high speed, a large amount of heat is generated, which needs to be quickly discharged, and the noise generated is large, the present application provides a sludge power plant energy -conserving compressed air equipment.
[0005] The present application provides a kind of sludge power plant energy -conserving compressed air equipment using following technical scheme: a kind of sludge power plant energy -conserving compressed air equipment, including bottom plate, the top surface of the bottom plate is fixed with noise reduction assembly, and the bottom surface of bottom plate is equipped with limiting assembly, the noise reduction assembly includes the recessed plate fixed on the top surface of bottom plate, and the surface of recessed plate is fixed with sleeve, the top surface of the recessed plate is fixed with shell, and the bottom surface of shell is provided with recess, the inner wall of shell is fixedly installed with rock wool board, and the top surface of shell is fixed with heat dissipation fan, the surface of sleeve is provided with sliding groove, and the inside of sleeve is equipped with spring one, the inside of sleeve is movably connected with convex column one, and the surface of convex column one is fixed with slide column.
[0006] Further setting, the surface of slide column is attached with the inner wall of sliding groove, the convex column one is in turn through recessed plate and shell, and extend to the inside of shell.
[0007] Further settings, the top surface of the bottom plate is provided with the compressor body, and the bottom surface of the bottom plate is fixedly installed with the moving wheel at the four corner positions, and the bottom surface of the bottom plate is provided with a rectangular slot.
[0008] Further settings, the surface of the shell is attached to the inner wall of the concave plate, and the concave plate and the bottom plate are integrated.
[0009] Further settings, the limiting assembly comprises a U-shaped block fixed to the bottom surface of the bottom plate, and a bearing is fixed to the inner surface of the U-shaped block, a lead screw is fixedly installed in the bearing, a nut seat is sleeved on the surface of the lead screw, and a limiting column is fixed to the surface of the nut seat.
[0010] Further settings, the limiting assembly further comprises a connecting block fixed to the surface of the compressor body, a through hole is formed in the surface of the connecting block, a clamping groove is formed in the surface of the connecting block, a fixing block is fixed to the side surface of the connecting block, a movable column is movably connected to the inside of the fixing block, a spring No.
[0011] Further settings, the convex column two penetrates the connecting block and the limiting column in sequence and extends to the inside of the connecting block, and the surface of the connecting block is in contact with the inner wall of the clamping groove.
[0012] Compared with the related art, the energy-saving compressed air equipment for sludge power plants has the following beneficial effects:
[0013] The energy-saving compressed air equipment for sludge power plants provided by the utility model has the advantages that the noise reduction assembly is arranged on the surface of the bottom plate, the shell and the rock wool board are arranged in the noise reduction assembly, the rock wool board can be used for absorbing mechanical noise generated during the operation of the compressor body, the inner wall of the shell is provided with the rock wool board, the compressor body can be wrapped, the noise reduction effect is further improved, a cooling fan is arranged on the top surface of the shell, the compressor body can be cooled during operation, and the working efficiency is improved.
[0014] The energy-saving compressed air equipment for sludge power plants provided by the utility model has the advantages that the noise reduction assembly is arranged on the surface of the bottom plate, the shell and the rock wool board are arranged in the noise reduction assembly, the rock wool board can be used for absorbing mechanical noise generated during the operation of the compressor body, the inner wall of the shell is provided with the rock wool board, the compressor body can be wrapped, the noise reduction effect is further improved, a cooling fan is arranged on the top surface of the shell, the compressor body can be cooled during operation, and the working efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 The structure diagram of a preferred embodiment of the energy-saving compressed air equipment for sludge power plants is provided.
[0016] Figure 2 The inside view of the shell of the utility model is provided.
[0017] Figure 3 For Figure 2 A enlarged view in the middle of A in the figure;
[0018] Figure 4 It is the bottom view of the utility model.
[0019] In the figure, the label: 1, bottom plate; 2, noise reduction assembly; 201, recessed plate; 202, sleeve; 203, shell; 204, recess; 205, rock wool board; 206, cooling fan; 207, sliding groove; 208, spring one; 209, convex column one; 210, sliding column; 3, limiting assembly; 301, U-shaped block; 302, bearing; 303, screw rod; 304, nut seat; 305, convex column two; 306, limiting column; 307, connecting block; 308, through hole; 309, clamping groove; 310, fixed block; 311, movable column; 312, spring two; 4, compressor body; 5, moving wheel; 6, rectangular groove. DETAILED DESCRIPTION
[0020] In order to facilitate understanding of the utility model, the utility model will be described more fully below with reference to the relevant drawings. The drawings show the typical embodiments of the utility model.
[0021] Example one:
[0022] As Figures 1-4 shown, the utility model discloses a sludge power plant energy-saving compressed air equipment, including bottom plate 1, the top surface of bottom plate 1 is fixed with noise reduction assembly 2, and the bottom surface of bottom plate 1 is equipped with limiting assembly 3, and noise reduction assembly 2 includes the recessed plate 201 fixed on the top surface of bottom plate 1, and the surface of recessed plate 201 is fixed with sleeve 202, the top surface of recessed plate 201 is fixed with shell 203, and the bottom surface of shell 203 is provided with recess 204, and the inner wall of shell 203 is fixedly installed with rock wool board 205, and the top surface of shell 203 is fixed with cooling fan 206, the surface of sleeve 202 is provided with sliding groove 207, and the inside of sleeve 202 is equipped with spring one 208, the inside of sleeve 202 is movably connected with convex column one 209, and the surface of convex column one 209 is fixed with sliding column 210.
[0023] As Figures 1-4 shown, the surface of sliding column 210 is attached with the inner wall of sliding groove 207, and convex column one 209 penetrates recessed plate 201 and shell 203 in turn and extends to the inside of shell 203.
[0024] As Figures 1-4 shown, the top surface of bottom plate 1 is equipped with compressor body 4, and the bottom surface of bottom plate 1 is fixedly installed with moving wheel 5 at the position of four corners, and the bottom surface of bottom plate 1 is provided with rectangular groove 6.
[0025] As Figures 1-4 The surface of the shell 203 is attached to the inner wall of the concave plate 201, and the concave plate 201 is an integrated structure with the bottom plate 1.
[0026] In the implementation, the interior of the noise reduction assembly 2 is provided with a shell 203 and a rock wool board 205. The rock wool board 205 can be used to absorb mechanical noise generated when the compressor body 4 is running. The inner wall of the shell 203 is provided with the rock wool board 205, which can wrap the compressor body 4, further improving the noise reduction effect. The top surface of the shell 203 is provided with a cooling fan 206, which can cool the compressor body 4 when it is running, improving the working efficiency. When the shell 203 needs to be disassembled and replaced, the slide column 210 can drive the protruding column one 209 to slide, so that the protruding column one 209 is separated from the shell 203. The shell 203 can be disassembled by sliding the shell 203. At the same time, the bottom surface of the bottom plate 1 is provided with the moving wheel 5, which facilitates the adjustment of the position of the compressor body 4.
[0027] Embodiment two:
[0028] As Figures 1-4 shown, on the basis of embodiment one, the utility model provides a technical scheme: limiting assembly 3 including fixed in the bottom surface of bottom plate 1 U-shaped piece 301, and the inside surface of U-shaped piece 301 is fixed with bearing 302, and the inside fixed mounting of bearing 302 has lead screw 303, and the surface of lead screw 303 is equipped with nut seat 304, and the surface of nut seat 304 is fixed with limiting column 306.
[0029] As Figures 1-4 shown, limiting assembly 3 still includes fixed in the surface of compressor body 4 connecting block 307, and the surface of connecting block 307 is equipped with through-hole 308, and the surface of connecting block 307 is equipped with clamping slot 309, and the side surface of connecting block 307 is fixed with fixed block 310, and the inside movable connection of fixed block 310 has movable column 311, and the surface of movable column 311 is equipped with spring two 312, and the surface of movable column 311 is fixed with protruding column two 305.
[0030] As Figures 1-4 shown, protruding column two 305 penetrates connecting block 307 and limiting column 306 in sequence and extends to the inside of connecting block 307. The surface of connecting block 307 is in contact with the inner wall of clamping slot 309.
[0031] In the implementation, when the compressor body 4 needs to be disassembled and replaced, the movable column 311 is slid, the movable column 311 drives the convex column two 305 to slide, the convex column two 305 is separated from the limiting column 306, the compressor body 4 is slid, and the compressor body 4 drives the connecting block 307 to slide, so that the compressor body 4 is conveniently disassembled and replaced, the screw rod 303 is rotated, the screw rod 303 can drive the nut seat 304 to slide, the nut seat 304 drives the limiting column 306 to slide, so that the spacing of the limiting column 306 is conveniently adjusted, and the surface of the connecting block 307 is provided with the through hole 308, the connecting block 307 and the compressor body 4 can be fixed by using bolts or welding, and different sizes of the compressor body 4 are conveniently adjusted.
[0032] The technical scheme has the advantages in practical application including but not limited to the following points.
[0033] 1、The inside of the noise reduction assembly 2 is provided with the shell 203 and the rock wool board 205, the rock wool board 205 can be used for absorbing mechanical noise generated when the compressor body 4 operates, the inner wall of the shell 203 is provided with the rock wool board 205, the compressor body 4 can be wrapped, and the noise reduction effect is further improved, the top surface of the shell 203 is provided with the cooling fan 206, the compressor body 4 can be cooled when operating, and the working efficiency is improved.
[0034] 2、The inside of the limiting assembly 3 is provided with the limiting column 306 and the convex column two 305, so that when the convex column two 305 is operated by the staff, the convex column two 305 is separated from the limiting column 306, the compressor body 4 is slid, the compressor body 4 drives the connecting block 307 to slide, and the compressor body 4 is conveniently disassembled and replaced.
[0035] The inside of the noise reduction assembly 2 is provided with a shell 203 and rock wool board 205, the rock wool board 205 can be used for absorbing the mechanical noise generated when the compressor body 4 runs, the inner wall of the shell 203 is provided with the rock wool board 205, the compressor body 4 can be wrapped, and the noise reduction effect is further improved, the top surface of the shell 203 is provided with a cooling fan 206, the compressor body 4 can be cooled when running, and the working efficiency is improved, when the shell 203 needs to be disassembled and replaced, the slide column 210 can drive the convex column one 209 to slide, so that the convex column one 209 is separated from the shell 203, the shell 203 is slid to disassemble the shell 203, and the bottom surface of the bottom plate 1 is provided with the moving wheel 5, so that the position of the compressor body 4 is adjusted, when the compressor body 4 needs to be disassembled and replaced, the sliding movable column 311 drives the convex column two 305 to slide, so that the convex column two 305 is separated from the limiting column 306, the compressor body 4 is slid, the compressor body 4 drives the connecting block 307 to slide, so that the compressor body 4 is disassembled and replaced, the screw rod 303 is rotated, the screw rod 303 can drive the nut seat 304 to slide, the nut seat 304 drives the limiting column 306 to slide, so that the spacing of the limiting column 306 is adjusted, and the surface of the connecting block 307 is provided with the through hole 308, the connecting block 307 and the compressor body 4 can be fixed by bolts or welding, and different sizes of the compressor body 4 are adjusted.
[0036] The above merely describes exemplary embodiments of the present disclosure, and cannot limit the scope of the present disclosure. That is, any equivalent changes and modifications made according to the teachings of the present disclosure are still within the scope of the present disclosure. The present application is intended to cover any variations, uses or adaptive changes of the present disclosure, which follow the general principles of the present disclosure and include common knowledge or conventional technical means in the technical field of the present disclosure not recorded in the present disclosure.
Claims
1. An energy saving compressed air plant for sludge power plants, comprising a base plate (1), characterized in that: The top surface of the bottom plate (1) is fixed with a noise reduction assembly (2), and the bottom surface of the bottom plate (1) is provided with a limiting assembly (3); The noise reduction assembly (2) comprises a concave plate (201) fixed to the top surface of the bottom plate (1), and the surface of the concave plate (201) is fixed with a sleeve (202), the top surface of the concave plate (201) is fixed with a shell (203), and the bottom surface of the shell (203) is provided with a groove (204), the inner wall of the shell (203) is fixedly installed with a rock wool board (205), and the top surface of the shell (203) is fixed with a cooling fan (206), the surface of the sleeve (202) is provided with a sliding groove (207), and the inside of the sleeve (202) is provided with a spring (208), the inside of the sleeve (202) is movably connected with a convex column (209), and the surface of the convex column (209) is fixed with a sliding column (210).
2. The compressed air energy storage device of claim 1, wherein, The surface of the sliding column (210) is attached to the inner wall of the sliding groove (207), and the convex column (209) penetrates the concave plate (201) and the shell (203) in sequence and extends to the inside of the shell (203).
3. The compressed air energy storage device of claim 1, wherein the compressed air energy storage device is used in a sludge power plant. The top surface of the bottom plate (1) is provided with a compressor body (4), and the bottom surface of the bottom plate (1) is fixedly installed with a mobile wheel (5) at the four corner positions, and the bottom surface of the bottom plate (1) is provided with a rectangular groove (6).
4. The compressed air energy storage device of claim 1, wherein the compressed air energy storage device is used in a sludge power plant. The surface of the shell (203) is attached to the inner wall of the concave plate (201), and the concave plate (201) and the bottom plate (1) are integrated.
5. The compressed air energy storage device of claim 1, wherein the compressed air energy storage device is used in a sludge power plant. The limiting assembly (3) comprises a U-shaped block (301) fixed to the bottom surface of the bottom plate (1), and the inner surface of the U-shaped block (301) is fixed with a bearing (302), the inside of the bearing (302) is fixedly installed with a lead screw (303), and the surface of the lead screw (303) is sleeved with a nut seat (304), and the surface of the nut seat (304) is fixed with a limiting column (306).
6. The compressed air energy storage device of claim 1, wherein the compressed air energy storage device is used in a sludge power plant. The limiting assembly (3) further comprises a connecting block (307) fixed to the surface of the compressor body (4), and the surface of the connecting block (307) is provided with a through hole (308), the surface of the connecting block (307) is provided with a clamping groove (309), and the side surface of the connecting block (307) is fixed with a fixed block (310), the inside of the fixed block (310) is movably connected with a movable column (311), the surface of the movable column (311) is sleeved with a spring (312), and the surface of the movable column (311) is fixed with a convex column (305).
7. The compressed air energy storage device of claim 6, wherein the compressed air energy storage device is used in a sludge power plant. The convex column (305) penetrates the connecting block (307) and the limiting column (306) in sequence and extends to the inside of the connecting block (307), and the surface of the connecting block (307) is in contact with the inner wall of the clamping groove (309).