Dustproof blanking assembly
By designing a dust-proof material feeding component, using a dust-collecting plate and spiral groove to capture charcoal powder, and combining it with a cylinder to adjust the guide plate to control the charcoal powder falling, the problem of charcoal powder scattering after columnar charcoal forming is solved, thus achieving a clean production environment.
Patent Information
- Application Number
- CN202423137976.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-12-19
AI Technical Summary
After the columnar carbon is formed, carbon powder is easily generated during the blanking process, which will fly around and pollute the production environment.
A dustproof material feeding assembly was designed, including a dust suction plate, a spiral groove, a conveying pipe, and an adjustment section. It captures the charcoal powder by adsorbing and controlling the falling speed of the charcoal powder through the dust suction holes and spiral groove, and uses a cylinder to adjust the guide plate to control the feeding process.
It effectively reduces the diffusion of carbon powder during the feeding process, improves the air quality of the working environment, and avoids carbon powder leakage and resource waste.
Smart Images

Figure CN223467945U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the cylindrical carbon forming processing technical field, especially in a kind of dustproof blanking assembly. BACKGROUND
[0002] Cylindrical carbon is in cylindrical shape, after carbonization and activation treatment, in order to make cylindrical carbon, will adopt extrusion forming etc., active carbon material is made into cylindrical shape by the action of pressure, in air purification, cylindrical carbon can be used to make filter core of air purifier, effectively remove peculiar smell, harmful gas in air, improve indoor air quality, in water treatment, can be used as adsorbent to fill in filter tank, for removing organic matter, heavy metal ions and other pollutants in water, and it has good effect on advanced treatment of sewage.
[0003] At present, in the cylindrical carbon forming process, it is through the stop of pressure and the advancing speed of pressure, so that the cylindrical carbon is disconnected after forming, and the disconnected part presents uneven state, so that the dust and particles generated during the falling process of the cylindrical carbon after forming, and carbon powder will also fall due to the unevenness of pressure and the unevenness of fracture during extrusion forming, the falling dust will leak out from the falling port, pollute the production environment, therefore, the present application provides a dustproof blanking assembly to meet the needs. UTILITARY MODEL CONTENTS
[0004] The technical problem to be solved by the utility model is to provide a dustproof blanking assembly to solve the problem that carbon powder is scattered everywhere when cylindrical carbon after forming is discharged.
[0005] To solve the above technical problems, the utility model provides the following technical scheme.
[0006] A dustproof blanking assembly, comprising: a forming device; a blanking frame provided at a discharge port of the forming device; a first dust absorption plate inlaid on one side of the blanking frame; a falling circular frame provided at the bottom of the blanking frame; a falling column provided in the falling circular frame, and the falling column is provided in a hollow manner; a spiral groove provided on the surface of the falling column; a plurality of dust absorption holes provided in the spiral groove; a first conveying pipe communicated and provided at the bottom of the falling column; an auxiliary frame provided at the bottom of the falling circular frame; a second dust absorption plate inlaid in the auxiliary frame; and a second conveying pipe communicated and provided on the second dust absorption plate.
[0007] Further comprising: the dust absorption holes are distributed in a circumferential array or staggered distribution.
[0008] Further comprising: one side of the first conveying pipe penetrates through the auxiliary frame; one side of the second conveying pipe penetrates through the auxiliary frame and is communicated with the first conveying pipe through a shunt valve.
[0009] Further comprising: a drop plate arranged in the auxiliary frame; the drop plate is located below the discharge port of the falling circular frame.
[0010] Further comprising: the drop plate is downwardly inclined.
[0011] Further comprising: a drop hopper arranged in the falling frame; the bottom of the drop hopper is communicated with the feeding port of the falling circular frame; an adjusting part arranged in the falling frame, the adjusting part comprises: a deflector plate rotatably arranged in the falling frame; and the first dust absorption plate is located on the opposite side of the deflector plate.
[0012] Further comprising: the drop hopper is located below the deflector plate.
[0013] Further comprising: the deflector plate is downwardly inclined along the drop hopper.
[0014] Further comprising: a pneumatic cylinder arranged on the falling frame; and the output end of the pneumatic cylinder extends to the inner cavity of the falling frame and is connected with the deflector plate through a connecting block.
[0015] Further comprising: the top of the deflector plate is provided with a protective strip, and the protective strip is in L shape.
[0016] Compared with the prior art, the utility model has at least the following beneficial effects.
[0017] In the above scheme, by arranging the first dust absorption plate, when the columnar carbon falls in the falling frame, the first dust absorption plate can adsorb part of dust and carbon powder falling or raised from the columnar carbon, reduce the flying in the falling frame, and reduce the dust amount leaked from the discharge port to the environment.
[0018] By arranging the adjusting part, the falling speed of the columnar carbon during discharging can be controlled, uniform falling is realized, and accumulation and blockage are avoided; by arranging the spiral groove and the dust absorption hole, when the columnar carbon falls along the falling column, the dust and carbon powder generated are easily sucked away by the dust absorption hole, so that the dust is prevented from continuing to spread in the falling process. BRIEF DESCRIPTION OF DRAWINGS
[0019] The accompanying drawings, which are incorporated herein and constitute part of the specification, illustrate embodiments of the present disclosure and, together with the description, further serve to explain the principles of the present disclosure and to enable a person skilled in the relevant art to implement and use the present disclosure.
[0020] Figure 1 It is a three-dimensional structure schematic view of the dustproof falling component;
[0021] Figure 2 It is a deflector plate structure schematic view;
[0022] Figure 3 It is a falling frame structure sectional view;
[0023] Figure 4 is a schematic view of a second conveying pipe structure;
[0024] Figure 5 is a sectional view of a falling round frame structure.
[0025] [Reference signs]
[0026] 1, molding equipment; 2, blanking frame; 3, adjusting part; 4, falling round frame; 5, second dust absorption plate; 6, falling plate; 7, auxiliary frame; 8, first dust absorption plate; 9, falling hopper; 10, first conveying pipe; 11, second conveying pipe; 12, falling column; 13, dust absorption hole; 14, spiral groove; 31, air cylinder; 32, guide plate.
[0027] As shown in the drawings, in order to clearly realize the structure of the embodiments of the utility model, specific structures and devices are marked in the drawings, but this is only for the need of illustration, and is not intended to limit the utility model in the specific structure, device and environment, and the ordinary skilled in the art can adjust or modify these devices and environment according to specific needs, and the adjustment or modification still includes in the range of the appended claims. DETAILED DESCRIPTION
[0028] The dustproof blanking assembly provided by the utility model will be described in detail below in combination with the drawings and specific embodiments. Meanwhile, it is explained here that in order to make the embodiments more detailed, the following embodiments are the best and preferred embodiments, and other alternative ways can also be adopted by the skilled in the art to implement some known technologies; and the drawings are only used to more specifically describe the embodiments, and are not intended to specifically limit the utility model.
[0029] As Figure 1 - Figure 5 shown, the embodiment of the utility model provides a dustproof blanking assembly, which comprises: molding equipment 1; blanking frame 2, which is arranged at the discharge port of the molding equipment 1; first dust absorption plate 8, which is inlaid on one side of the blanking frame 2; falling round frame 4, which is arranged at the bottom of the blanking frame 2; falling column 12, which is arranged in the falling round frame 4, and the falling column 12 is arranged in a hollow manner; spiral groove 14, which is arranged on the surface of the falling column 12; a plurality of dust absorption holes 13, which are arranged in the spiral groove 14; first conveying pipe 10, which is communicatively arranged at the bottom of the falling column 12; auxiliary frame 7, which is arranged at the bottom of the falling round frame 4; second dust absorption plate 5, which is inlaid in the auxiliary frame 7; and second conveying pipe 11, which is communicatively arranged on the second dust absorption plate 5.
[0030] By setting the spiral groove 14, as the columnar carbon falls along the spiral groove 14, the carbon powder attached to the surface or micro cracks of the columnar carbon will gradually fall off, and the dust suction holes 13 on the surface of the spiral groove 14 can effectively capture these falling carbon powder, reducing its dispersion in the air, thereby controlling the air quality of the working environment and reducing the dust concentration.
[0031] Also includes: the dust suction holes 13 are arranged in a circumferential array or staggered distribution. The circumferential array or staggered distribution of the dust suction holes 13 can more evenly cover the surface of the spiral groove 14, ensuring that during the falling process of the columnar carbon, no matter where it is in the spiral groove 14, the falling carbon powder can be quickly captured by the nearby dust suction holes 13, which helps to improve the dust removal efficiency of the entire system and reduce the escape of carbon powder into the air to form dust.
[0032] Also includes: one side of the first conveying pipe 10 penetrates the auxiliary frame 7; one side of the second conveying pipe 11 penetrates the auxiliary frame 7 and communicates with the first conveying pipe 10 through a flow divider. The addition of the flow divider allows the air flow between the first conveying pipe 10 and the second conveying pipe 11 to be adjusted and distributed as needed, achieving precise control of dust removal efficiency and material flow direction, which can adapt to different production needs.
[0033] Also includes: the falling plate 6 is arranged in the auxiliary frame 7; the falling plate 6 is located below the discharge port of the falling circular frame 4. By setting the falling plate 6, the top of the falling plate 6 is provided with a buffer pad for buffering when the columnar carbon contacts, avoiding damage to the columnar carbon.
[0034] Also includes: the falling plate 6 is downwardly inclined. The bottom of the forming equipment 1 is provided with a transmission device for transmitting the formed columnar carbon, and the falling plate 6 is downwardly inclined so that the columnar carbon finally falls onto the transmission device for transmission. It is used in cooperation with the second dust suction plate 5 to avoid dust generated when the columnar carbon is finally discharged, and the buffer pad provided on the falling plate 6 can reduce the impact force between the columnar carbon and the falling plate 6, and the impact generated when the columnar carbon falls onto the transmission device is reduced.
[0035] Also includes: the falling hopper 9 is arranged in the falling frame 2; and the bottom of the falling hopper 9 communicates with the feed port of the falling circular frame 4; the adjusting part 3 is arranged in the falling frame 2, and the adjusting part 3 includes: a flow guide plate 32 rotatably arranged in the falling frame 2; and the first dust suction plate 8 is located on the opposite side of the flow guide plate 32.
[0036] Also includes: the falling hopper 9 is located below the flow guide plate 32. The falling hopper 9 serves as an intermediate zone for the columnar carbon or material to transition from the discharge port of the forming equipment 1 to the falling circular frame 4, and plays a role in buffering and guiding. It ensures that the material can smoothly flow from below the flow guide plate 32 into the falling circular frame 4, avoiding direct impact and reducing material damage and improving the efficiency of the falling material.
[0037] Further comprising: the guide plate 32 is inclined downward along the falling hopper 9. By setting the buffer pad on the top of the guide plate 32, the buffer pad is used to buffer after contacting with the columnar carbon, so that the impact between the columnar carbon and the guide plate 32 can be reduced, and the columnar carbon can be prevented from being damaged.
[0038] Further comprising: the cylinder 31 is arranged on the blanking frame 2; and the output end of the cylinder 31 extends to the inner cavity of the blanking frame 2 and is connected with the guide plate 32 through the connecting block. By setting the adjusting part 3, the cylinder 31 is controlled by external current, the cylinder 31 is retracted, so that the guide plate 32 rotates downward, so that the dropping gap is enlarged or the cylinder 31 is extended, so that the guide plate 32 rotates upward, so that the dropping gap is reduced, and the distance between the columnar carbon and the first dust collection plate 8 can be adjusted to a suitable interval according to specific requirements.
[0039] Further comprising: the top of the guide plate 32 is provided with a protective strip, and the protective strip is in an L shape. By setting the protective strip, the columnar carbon can be prevented from falling to the edge or the corner of the blanking frame 2, so that the resources are not wasted, and the columnar carbon falling downward can be gradually moved to the middle.
[0040] The technical scheme provided by the utility model, utilize external controller to open cylinder 31 operation, drive guide plate 32 rotation, will guide plate 32 adjust to suitable angle after;External dust collection equipment is connected with first dust collection plate 8 and first conveying pipe 10 respectively through external pipe, and the columnar carbon after forming is discharged from the discharge port of forming equipment 1, falls to guide plate 32, and the carbon powder material generated in the falling process of the columnar carbon is absorbed through first dust collection plate 8, and then falls to falling hopper 9 through guide plate 32, and then enters spiral groove 14 through falling hopper 9, and then slides downward along spiral groove 14, and the carbon powder material generated in the sliding process of the columnar carbon is absorbed through dust collection hole 13, and the carbon powder material generated in the process is absorbed through second dust collection plate 5, and finally, under the cooperation of falling plate 6, the columnar carbon falls to the transmission equipment, and then is transmitted to the next process.
[0041] The utility model covers any alternative, modification, equivalent method and scheme which is made on the essence and range of the utility model. In order to make the public have the thorough understanding of the utility model, the specific details are explained in the above preferred embodiment of the utility model, and the utility model can be completely understood without the description of these details for the person skilled in the art. In addition, in order to avoid unnecessary confusion to the essence of the utility model, the well-known method, process, flow, element and circuit are not explained in detail.
[0042] The above merely is preferred implementation manner of the present application, it should be pointed out, for ordinary skilled person in the technical field, on the premise of not departing from the principle of the present application, can make a number of improvements and refinements, these improvements and refinements also should be regarded as the protection scope of the present application.
Claims
1. A dust fall prevention assembly comprising: The molding equipment (1) is characterized in that it comprises: A blanking frame (2) is arranged at the discharge port of the molding equipment (1); A first dust absorption plate (8) is inlaid on one side of the blanking frame (2); A falling round frame (4) is arranged at the bottom of the blanking frame (2); A falling column (12) is arranged in the falling round frame (4), and the falling column (12) is hollow; A spiral groove (14) is arranged on the surface of the falling column (12); A plurality of dust absorption holes (13) are arranged in the spiral groove (14); A first conveying pipe (10) is arranged at the bottom of the falling column (12); An auxiliary frame (7) is arranged at the bottom of the falling round frame (4); A second dust absorption plate (5) is inlaid in the auxiliary frame (7); A second conveying pipe (11) is arranged on the second dust absorption plate (5).
2. The dust fall prevention assembly of claim 1, wherein, Further comprising: The dust absorption holes (13) are arranged in a circumferential array or staggered distribution.
3. The dust fall prevention assembly of claim 1, wherein, Further comprising: One side of the first conveying pipe (10) penetrates the auxiliary frame (7); One side of the second conveying pipe (11) penetrates the auxiliary frame (7) and is communicated with the first conveying pipe (10) through a shunt valve.
4. The dust fall prevention assembly of claim 1, wherein, Further comprising: A falling plate (6) is arranged in the auxiliary frame (7); The falling plate (6) is located below the discharge port of the falling round frame (4).
5. The dust fall prevention assembly of claim 4, wherein, Further comprising: The falling plate (6) is inclined downward.
6. The dust fall prevention assembly of claim 1, wherein, Further comprising: A falling hopper (9) is arranged in the blanking frame (2); The bottom of the falling hopper (9) is communicated with the feed port of the falling round frame (4); An adjusting part (3) is arranged in the blanking frame (2), and the adjusting part (3) comprises: A guide plate (32) is rotatably arranged in the blanking frame (2); The first dust absorption plate (8) is located on the opposite side of the guide plate (32).
7. The dust fall prevention assembly of claim 6, wherein, Further comprising: The falling hopper (9) is located below the guide plate (32).
8. The dust fall prevention assembly of claim 6, wherein, Further comprising: The guide plate (32) is inclined downward along the falling hopper (9).
9. The dust fall prevention assembly of claim 6, wherein, Further comprising: A gas cylinder (31) is arranged on the blanking frame (2); The output end of the gas cylinder (31) extends to the inner cavity of the blanking frame (2) and is connected with the guide plate (32) through a connecting block.
10. The dust fall prevention assembly of claim 6, wherein, Further comprising: The top of the guide plate (32) is provided with a protective strip, and the protective strip is L-shaped.