Cyclone dust remover for organic fertilizer processing and production
By designing an adjustable dust removal inlet area adjustment cover in a cyclone dust collector, the problem of small air inlet duct ports in the prior art leads to dust escape, achieving better dust removal effect and environmental protection.
Patent Information
- Application Number
- CN202421800485.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-29
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-07-29
AI Technical Summary
The air inlet port of existing cyclone dust collectors is small and cannot be adjusted, resulting in easy escape of dust, polluting the environment and increasing raw material loss.
An adjustable dust removal inlet area adjustment cover is designed. Through the adjustment cover, the dust removal inlet area can be adjusted according to the actual situation of the organic fertilizer processing and production equipment to ensure the dust removal effect and prevent dust from escaping.
By adjusting the dust removal inlet area, the dust removal effect is not only guaranteed, but also effectively prevents dust escape, protects the environment and reduces raw material losses.
Smart Images

Figure CN222943687U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of organic fertilizer processing and production equipment, in particular to a cyclone dust collector for organic fertilizer processing and production. Background Art
[0002] Organic fertilizer is also called "farmyard manure". All organic substances (compounds containing carbon) are called organic fertilizers. The application of organic fertilizers can improve soil structure, effectively coordinate water, fertilizer, air and heat in the soil, and improve soil fertility and land productivity.
[0003] In the process of organic fertilizer production, a large amount of dust is easily generated in the production process. This dust not only pollutes the environment but also causes the loss of raw materials. The current method of removing the dust generated in the process of organic fertilizer production is to fix the air inlet pipe of the cyclone dust collector on the bracket on the top side of the fertilizer processing equipment, and remove dust through the air inlet pipe of the dust collector. The air inlet of the existing air dust collector is small and cannot be adjusted, so dust is easy to escape. Utility Model Content
[0004] The purpose of the utility model is to provide a cyclone dust collector for organic fertilizer processing and production to solve the problems raised in the above background technology.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a cyclone dust collector for organic fertilizer processing and production, comprising a cyclone dust collector body, the cyclone dust collector body comprising a cylinder, an air outlet, a feed port, a connecting flange, a fixed flange and a dust removal air inlet pipe, a dust removal inlet area adjustment cover is arranged at the bottom of the dust removal air inlet pipe, the dust removal inlet area adjustment cover comprises a cover body, the cover body is arranged in a rectangular structure, adjustment plates are arranged on the outer walls at both ends of the cover body, and an adjustment drive assembly is arranged on the inner wall of the adjustment plate below the cover body.
[0006] Preferably, the cover body includes a top plate and a cover plate located below the top plate, the cover plate is arranged in a U-shaped structure, the bottom of the top plate is connected to the top of the cover plate through a connecting block, a supporting slide is arranged on the outer wall below the cover plate, the adjustment plate is slidably located between the top plate and the cover plate, and the bottom is slidably abutted against the top of the supporting slide.
[0007] Preferably, the adjustment drive assembly includes a screw guide rail, which is located on the inner walls on both sides of the cover plate, and each of the screw guide rails is symmetrically slidably provided with a first sliding block and a second sliding block, the first sliding block is positively threadedly connected to the screw on the screw guide rail, and the second sliding block is reversely threadedly connected to the screw on the screw guide rail, the first sliding block is connected to the inner wall of one of the adjustment plates, and the second sliding block is connected to the inner wall of the other adjustment plate.
[0008] Preferably, a slide groove is arranged parallel to the top of the supporting slide, and the bottom of the adjustment plate is slidably connected to the slide groove via a sliding block.
[0009] Preferably, an air intake and dust removal through hole is opened through the top of the top plate, and the bottom of the air intake and dust removal through hole passes through the connecting block and the cover plate in sequence. A fixed sleeve is connected to the top of the air intake and dust removal through hole, and the fixed sleeve is connected to the bottom of the dust removal inlet pipe.
[0010] Preferably, the air outlet through-connection is located at the top of the cylinder, the feed port through-connection is located at the bottom of the cylinder, the outer wall of one side of the cylinder is through-connected to the connecting flange, and the outlet end of the dust removal inlet pipe is connected to the connecting flange through the fixed flange.
[0011] Preferably, a sealing tape is adhered between the inner wall of the edge of the adjustment plate and the outer wall of the cover plate.
[0012] Preferably, one end of the screw guide rail is connected to a driving motor, and a dust cover is integrally provided on the outside of the screw guide rail.
[0013] Compared with the prior art, the beneficial effects of the utility model are:
[0014] In view of the problems raised in the background technology, the present application sets an adjustable dust removal inlet area adjustment cover, which can be adjusted according to the surface machine on the top of the organic fertilizer processing and production equipment through the dust removal inlet area adjustment cover, so that the dust removal inlet area adjustment cover is covered on the top of the organic fertilizer processing and production equipment, on the one hand, the dust removal effect is ensured, and on the other hand, the small air inlet pipe of the cyclone dust collector is prevented from easily escaping, thereby protecting the environment and reducing the loss of raw materials;
[0015] The dust removal inlet area adjustment cover can be adjusted according to the actual situation on the top of the organic fertilizer processing and production equipment, which can not only ensure the dust removal and air intake effect, but also effectively solve the problem of easy dust escape. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is an overall side view of the utility model.
[0017] Figure 2 It is a schematic diagram of the integral dust removal inlet area adjustment cover of the utility model.
[0018] Figure 3 This is a schematic diagram of the overall adjustment drive assembly of the utility model.
[0019] Figure 4 It is a side view of the integral dust removal inlet area adjustment cover of the utility model.
[0020] Description of the drawings: 1. Cylinder body; 2. Air outlet cylinder; 3. Feeding port; 4. Connecting flange; 5. Fixed flange; 6. Dust removal air inlet pipe; 7. Dust removal inlet area adjustment cover; 71. Cover body; 711. Top plate; 7111. Air inlet dust removal through hole; 7112. Fixed sleeve; 712. Cover plate; 713. Connecting block; 714. Support slide; 7141. Slide groove; 72. Adjusting plate; 73. Screw guide rail; 731. First sliding block; 732. Second sliding block. DETAILED DESCRIPTION Example
[0021] See also Figure 1-4 The utility model provides a technical solution: a cyclone dust collector for organic fertilizer processing and production, including a cyclone dust collector body, the cyclone dust collector body includes a cylinder 1, an air outlet 2, a feed port 3, a connecting flange 4, a fixed flange 5 and a dust removal air inlet pipe 6, a dust removal inlet area adjustment cover 7 is arranged at the bottom of the dust removal air inlet pipe 6, the air outlet 2 is connected through and located at the top of the cylinder 1, the feed port 3 is connected through and located at the bottom of the cylinder 1, the outer wall of one side of the cylinder 1 is connected through and connected to the connecting flange 4, and the outlet end of the dust removal air inlet pipe 6 is connected to the connecting flange 4 through the fixed flange 5.
[0022] It should be noted that, in the present embodiment, a cyclone dust collector is provided, and the dust generated in the production process of organic fertilizer is processed by the cyclone dust collector. The working principle of the cyclone dust collector is that under the action of the fan, a negative pressure is generated in the cyclone cylinder, and the dust-containing gas from the organic fertilizer production equipment is sucked into the cyclone cylinder under the action of pressure, and rotates downward along the cylinder, and generates centrifugal force. When it reaches the bottom, the particulate matter in the gas is separated, and large particles of dust fall into the dust collecting barrel. The filtered gas and fine dust rotate upward due to the cylinder structure and are blown into the filter cylinder. The fine dust adheres to the filter cylinder, and the clean air is discharged. The pulse device will regularly clean the dust on the filter cylinder. Since there is positive pressure in the filter cylinder and negative pressure in the cyclone cylinder, the dust in the filter cylinder will return to the cyclone cylinder under the action of pressure and be discharged into the dust collecting cylinder, and the dust removal efficiency is high.
[0023] See also Figure 1 , 24. The dust removal inlet area adjustment cover 7 includes a cover body 71, which is arranged in a rectangular parallelepiped structure. Adjustment plates 72 are arranged on the outer walls at both ends of the cover body 71, and an adjustment drive assembly is arranged on the inner wall of the adjustment plate 72 below the cover body 71; the cover body 71 includes a top plate 711 and a cover plate 712 located below the top plate 711, the cover plate 712 is arranged in a U-shaped structure, the bottom of the top plate 711 is connected to the top of the cover plate 712 through a connecting block 713, and a support slide 714 is arranged on the outer wall below the cover plate 712, the adjustment plate 72 is slidably located between the top plate 711 and the cover plate 712, and the bottom is slidably abutted against the top of the support slide 714; the adjustment drive assembly includes a screw guide rail 73, the screw guide rail 73 is located on the inner walls on both sides of the cover plate 712, and each screw guide rail 73 is symmetrically slidably provided with a first sliding block 731 and a second sliding block 732, and the first sliding block 731 and the screw guide rail 73 The screw on is positively threadedly connected, the second sliding block 732 is reversely threadedly connected to the screw on the screw guide rail 73, the first sliding block 731 is connected to the inner wall of one of the adjustment plates 72, and the second sliding block 732 is connected to the inner wall of the other adjustment plate 72; a slide groove 7141 is arranged parallel to the top of the support slide 714, and the bottom of the adjustment plate 72 is slidably connected to the slide groove 7141 through a sliding block; an air intake dust removal through hole 7111 is opened at the top of the top plate 711, and the bottom of the air intake dust removal through hole 7111 passes through the connecting block 713 and the cover plate 712 in sequence, and a fixed sleeve 7112 is connected to the top of the air intake dust removal through hole 7111, and the fixed sleeve 7112 is connected to the bottom of the dust removal inlet pipe 6; a sealing belt is pasted between the inner wall of the edge of the adjusting plate 72 and the outer wall of the cover plate 712; one end of the screw guide rail 73 is connected to a driving motor, and a dust cover is arranged on the outside of the screw guide rail 73 as a whole.
[0024] It should be noted that, in the present embodiment, an adjustable dust removal inlet area adjustment cover 7 is provided, and the dust removal inlet area adjustment cover 7 can be adjusted according to the surface machine on the top of the organic fertilizer processing and production equipment, so that the dust removal inlet area adjustment cover 7 is covered on the top of the organic fertilizer processing and production equipment, on the one hand, the dust removal effect is ensured, and on the other hand, the air inlet of the cyclone dust collector is prevented from being too small, and dust is easily escaping, thereby protecting the environment and reducing the loss of raw materials;
[0025] Furthermore, the dust removal inlet area adjustment cover 7 can be adjusted according to the actual situation of the top of the organic fertilizer processing and production equipment, which can not only ensure the dust removal and air intake effect, but also effectively solve the problem of easy dust escape;
[0026] Furthermore, when in use, the cyclone dust collector controller controls the screw guide rail 73 according to the size of the top of the organic fertilizer production equipment, and the screw guide rail 73 rotates to control the adjustment plate 72 to move to both sides, and the bottom slider of the control adjustment plate 72 slides in the slide groove 7141, so that the dust removal inlet area adjustment cover 7 matches the top area of the organic fertilizer processing and production equipment and covers the top of the organic fertilizer processing and production equipment;
[0027] Furthermore, the cyclone dust collector controller can accurately control the screw guide rail 73 according to the size of the top of the organic fertilizer production equipment. When it is necessary to adjust the matching degree between the dust removal inlet area adjustment cover 7 and the top of the equipment, the screw guide rail 73 can drive the control adjustment plate 72 to move to both sides by rotating, so that the dust removal inlet area adjustment cover 7 can achieve the best matching state with the top of the equipment, thereby maximizing the dust removal effect and preventing dust from escaping from the air inlet. It can not only improve the safety and efficiency of the production process, but also effectively protect the environment;
[0028] Furthermore, a sealing tape is pasted between the inner wall of the edge of the adjustment plate 72 and the outer wall of the cover plate 712, and dust-proof sealing is performed by the sealing tape to prevent dust generated in the production of organic fertilizer from escaping through the gaps.
[0029] The utility model workflow:
[0030] When in use, the cyclone dust collector controller controls the screw guide rail 73 according to the size of the top of the organic fertilizer production equipment. The screw guide rail 73 rotates to control the adjustment plate 72 to move to both sides, and the bottom slider of the control adjustment plate 72 slides in the slide groove 7141. The dust removal inlet area adjustment cover 7 can achieve the best matching state with the top of the equipment, so that the dust removal inlet area adjustment cover 7 matches the top area of the organic fertilizer processing and production equipment and covers the top of the organic fertilizer processing and production equipment, and starts the cyclone dust collector body for dust removal.
Claims
1. A cyclone dust collector for processing and producing organic fertilizers, comprising a cyclone dust collector body, characterized in that: The cyclone dust collector body comprises a cylinder (1), an air outlet (2), a material discharge port (3), a connecting flange (4), a fixing flange (5) and a dust removal air inlet pipe (6); a dust removal inlet area adjustment cover (7) is arranged at the bottom of the dust removal air inlet pipe (6); the dust removal inlet area adjustment cover (7) comprises a cover body (71); the cover body (71) is arranged in a rectangular parallelepiped structure; adjustment plates (72) are arranged on the outer walls at both ends of the cover body (71); and an adjustment drive assembly is arranged on the inner wall of the adjustment plate (72) below the cover body (71).
2. A cyclone dust collector for organic fertilizer processing and production according to claim 1, characterized in that: The cover body (71) comprises a top plate (711) and a cover plate (712) located below the top plate (711); the cover plate (712) is arranged in a U-shaped structure; the bottom of the top plate (711) is connected to the top of the cover plate (712) via a connecting block (713); a supporting slide (714) is arranged on the outer wall below the cover plate (712); the adjustment plate (72) is slidably located between the top plate (711) and the cover plate (712), and the bottom thereof is slidably abutted against the top of the supporting slide (714).
3. A cyclone dust collector for organic fertilizer processing and production according to claim 2, characterized in that: The adjustment drive assembly comprises a screw guide rail (73), wherein the screw guide rail (73) is located on the inner walls on both sides of the cover plate (712), and each of the screw guide rails (73) is symmetrically slidably provided with a first sliding block (731) and a second sliding block (732), wherein the first sliding block (731) is positively threadedly connected to the screw on the screw guide rail (73), and the second sliding block (732) is reversely threadedly connected to the screw on the screw guide rail (73), and the first sliding block (731) is connected to the inner wall of one of the adjustment plates (72), and the second sliding block (732) is connected to the inner wall of the other adjustment plate (72).
4. A cyclone dust collector for organic fertilizer processing and production according to claim 2, characterized in that: A slide groove (7141) is arranged parallel to the top of the support slide (714), and the bottom of the adjustment plate (72) is slidably connected to the slide groove (7141) via a sliding block.
5. The cyclone dust collector for organic fertilizer processing and production according to claim 2, characterized in that: An air intake and dust removal through hole (7111) is provided through the top of the top plate (711), and the bottom of the air intake and dust removal through hole (7111) passes through the connecting block (713) and the cover plate (712) in sequence. A fixed sleeve (7112) is connected to the top of the air intake and dust removal through hole (7111), and the fixed sleeve (7112) is connected to the bottom of the dust removal air intake pipe (6).
6. The cyclone dust collector for organic fertilizer processing and production according to claim 1, characterized in that: The air outlet tube (2) is connected through and located at the top of the cylinder (1), the feed port (3) is connected through and located at the bottom of the cylinder (1), the outer wall of one side of the cylinder (1) is connected through and connected to the connecting flange (4), and the outlet end of the dust removal air inlet pipe (6) is connected to the connecting flange (4) via the fixed flange (5).
7. The cyclone dust collector for organic fertilizer processing and production according to claim 2, characterized in that: A sealing tape is bonded between the inner wall of the edge of the adjustment plate (72) and the outer wall of the cover plate (712).
8. The cyclone dust collector for organic fertilizer processing and production according to claim 3, characterized in that: One end of the screw guide rail (73) is connected to a driving motor, and a dust cover is integrally provided on the outside of the screw guide rail (73).