Activated carbon feeding bin assembly with impurity removal capacity
By designing an activated carbon feeding hopper assembly with impurity removal capabilities, and utilizing a material distribution mechanism and a sieve plate mechanism, the problem of existing equipment being unable to effectively remove impurities was solved, achieving efficient dispersion and clean feeding of activated carbon, and improving production quality.
Patent Information
- Application Number
- CN202423268990.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing activated carbon feeding equipment cannot effectively remove rope ends, woven bag ends, and metal impurities during the feeding process, which affects the quality of activated carbon production.
An activated carbon feeding bin assembly with impurity removal capability was designed. It adopts a material distribution mechanism, a sieve plate mechanism and a quantitative feeding mechanism. The material distribution component and the material pushing component are driven by a brake motor. The material is dispersed, pushed and filtered through the sieve plate and magnetic rod. Combined with the screw conveyor for quantitative feeding, impurity removal and uniform feeding are achieved.
This technology enables efficient dispersion, filtration, and impurity removal of activated carbon, ensuring the cleanliness of the feed material and improving the production quality of activated carbon.
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Figure CN223747755U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of activated carbon production especially to have the activated carbon feed bin subassembly of impurity removal capacity. BACKGROUND
[0002] Activated carbon has very strong adsorption capacity, and it has a wide application in the fields of air purification, water purification, food processing, pharmaceutical industry, industrial application, etc. In the production process of activated carbon, usually, a feeding device is used to complete the feeding work in the production process of activated carbon, such as the activated carbon feeder disclosed by China Patent Network (publication number CN221369606U). This type of activated carbon feeder uses a poking assembly to drive a poking rod to reciprocatingly displace, and the activated carbon on the filter plate is reciprocatingly poked and falls into a storage hopper, and then the activated carbon is quantitatively pushed and fed based on the screw feeding of a screw feeder.
[0003] However, the activated carbon feeding device adopted by the above-mentioned disclosed patent and the existing market still has some deficiencies. The existing single poking component is used to dynamically disperse the activated carbon for feeding in a uniform dispersion state. Although this has good poking and filtering performance, it cannot orderly remove the rope heads, woven bag heads, and metal impurities generated by wear in the production process, which are left over in the transfer and transportation in the production process of activated carbon. As a result, the directly fed activated carbon contains many impurities, which affects the production quality. Therefore, the technical personnel in this field provide an activated carbon feeding bin assembly with impurity removal capacity to solve the problems raised in the above-mentioned background technology. SUMMARY
[0004] In view of the deficiencies of the prior art, the utility model provides an activated carbon feeding bin assembly with impurity removal capacity to solve the problem of low feeding and impurity removal efficiency of the activated carbon feeder raised in the above-mentioned background technology.
[0005] To achieve the above-mentioned purposes, the utility model is implemented by the following technical solutions: an activated carbon feeding bin assembly with impurity removal capacity, comprising a support frame and a screening bin arranged at the top end of the support frame;
[0006] The upper end of the bin body of the screening bin is provided with a material distribution mechanism, and the bin opening of the screening bin is provided with a screen plate mechanism opposite to the material distribution mechanism;
[0007] The material distribution mechanism comprises an opening and closing cover hood covering the upper part of the screening bin, a material distribution component is arranged on the upper part of the cover body of the opening and closing cover hood in a through manner, and a poking component is arranged in the cover body of the opening and closing cover hood in a flush opposite manner with the screen plate mechanism;
[0008] The bottom end of the bin body of the screening bin is provided with a quantitative feeding mechanism.
[0009] As a further technical scheme of the utility model: the distributing component includes distributing cylinder installed in the middle part of the opening and closing cover body, the middle part of the upper end of the cylinder pipe of distributing cylinder is installed with hopper, and the lower end of the cylinder pipe of distributing cylinder is installed with multiple groups of discharging pipe orifices in array, the inside of the cylinder pipe of distributing cylinder is rotationally connected with distributing screw auger, and the propeller blades of distributing screw auger are arranged in positive and reverse directions with the middle line as boundary.
[0010] As a further technical scheme of the utility model: the distributing component includes reciprocating brake lead screws and guide sliding rails installed on the side wall of the opening and closing cover, the outer side of the shaft of reciprocating brake lead screw is provided with guide sliding table guided by the guide sliding rail, the bracket of guide sliding table is provided with supporting arm on one side, and the supporting arm is provided with multiple groups of reciprocating scraping rods opposite to the sieve plate mechanism in the direction of the arm plate.
[0011] As a further technical scheme of the utility model: the cover body of the opening and closing cover is provided with brake motor on one side, the output end of brake motor is provided with belt pulley A, one end of the screw shaft of distributing component is installed with belt pulley B, one end of the lead screw of distributing component is installed with belt pulley C, and belt pulley A, belt pulley B and belt pulley C are transmissionally connected through transmission belt.
[0012] As a further technical scheme of the utility model: the sieve plate mechanism includes sieve frame, the upper end of the frame of sieve frame is provided with first sieve plate, the lower end of the frame of sieve frame is provided with second sieve plate, and the middle part of the frame of sieve frame is provided with multiple groups of magnetic rods in array.
[0013] As a further technical scheme of the utility model: the rod body of magnetic rod is sleeved with cleaning scraper on the outer side, and the top plate of cleaning scraper is provided with hanging ears in symmetrical form.
[0014] As a further technical scheme of the utility model: the quantitative feeding mechanism includes discharging cylinder installed at the bottom of sieve bin cone, the other end of the cylinder pipe of discharging cylinder is installed with discharging pipe orifice in lead-through mode, the inside of the cylinder pipe of discharging cylinder is rotationally connected with discharging screw auger, and one end of the screw shaft of discharging screw auger is provided with discharging motor fixed on the discharging cylinder.
[0015] The utility model provides a kind of activated carbon feeding bin assembly with impurity removal capacity, compared with prior art, it has the following beneficial effects:
[0016] The active carbon feeding assembly of the design is based on the brake motor in the distributing mechanism as the driving source, which drives the distributing component to operate, uniformly feeds the active carbon to the sieve plate mechanism in a dispersed feeding mode for pre-dispersion and impurity removal and cleaning, drives the stirring component to operate, reciprocally stirs the active carbon on the sieve plate mechanism, and stirs the active carbon for dynamic dispersion to better perform the filtering and impurity removal, and then the dispersed active carbon is filtered and adsorbed by the two groups of sieve plates in the sieve plate mechanism and the magnetic rod to filter and adsorb the rope heads, woven bag heads and metal scraps entrapped in the active carbon, so as to ensure the cleanliness of the active carbon feeding, and then the active carbon is quantitatively fed for production under the quantitative pushing of the quantitative feeding mechanism, which has good dispersion and filtering and impurity removal performance and is cleaner for the active carbon feeding. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a structural schematic view of an active carbon feeding bin assembly with impurity removal capability.
[0018] Figure 2 It is a flipped open schematic view of an active carbon feeding bin assembly with impurity removal capability.
[0019] Figure 3 It is a structural schematic view of a distributing mechanism in an active carbon feeding bin assembly with impurity removal capability.
[0020] Figure 4 It is a flipped structural schematic view of a distributing mechanism in an active carbon feeding bin assembly with impurity removal capability.
[0021] Figure 5 It is a structural schematic view of a sieve plate mechanism in an active carbon feeding bin assembly with impurity removal capability.
[0022] In the figure: 1, support frame; 2, sieve bin; 3, opening and closing flip cover; 4, distributing cylinder; 5, hopper; 6, discharging pipe; 7, discharging cylinder; 8, discharging motor; 9, discharging pipe; 10, discharging screw auger; 11, sieve plate mechanism; 111, sieve frame; 112, first sieve plate; 113, second sieve plate; 114, magnetic rod; 115, cleaning scraper; 116, hanging ear; 12, distributing screw auger; 13, brake motor; 14, pulley A; 15, pulley B; 16, pulley C; 17, transmission belt; 18, reciprocating brake screw; 19, guide slide rail; 20, guide slide table; 21, support arm; 22, reciprocating scraper rod. DETAILED DESCRIPTION
[0023] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments, and based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0024] Please refer to Figures 1-5 The utility model provides a kind of activated carbon feed bin assembly with impurity removal capacity technical scheme: a kind of activated carbon feed bin assembly with impurity removal capacity, including support frame 1 and the sieve bin 2 of setting in support frame 1 support frame top end, the upper end of the bin body of sieve bin 2 is provided with distributing mechanism, distributing mechanism includes the opening and closing turnover cover 3 of covering in the upper of sieve bin 2, the cover body of opening and closing turnover cover 3 is provided with distributing component in the upper, and the cover body of opening and closing turnover cover 3 is provided with with the distributing component of the level of the opposite of sieve plate mechanism 11 inside, the cover body of opening and closing turnover cover 3 is provided with brake motor 13, the output end of brake motor 13 is provided with pulley A 14, the one end of the screw shaft of distributing component is installed with pulley B 15, the one end of the screw rod of distributing component is installed with pulley C 16, and pulley A 14, pulley B 15, pulley C 16 are driven connected by transmission belt 17, by controlling brake motor 13 work, drive pulley A 14 rotation, utilize the relay drive of transmission belt 17, drive pulley B 15, pulley C 16 synchronous transmission as driving source, push distributing component, push distributing component linkage operation, and active carbon is dispersed feeding, dynamic push work.
[0025] Distributing component includes distributing cylinder 4 installed in the middle part of the cover body of opening and closing turnover cover 3, the upper end of the cylinder tube of distributing cylinder 4 is installed with hopper 5 in the middle, and the lower end of the cylinder tube of distributing cylinder 4 is arranged and installed with multiple groups of discharge pipe orifice 6, distributing screw auger 12 is rotatably connected in the inside of the cylinder tube of distributing cylinder 4, and the propeller blade of distributing screw auger 12 is arranged in positive and negative direction with middle line as boundary, pulley B 15 is rotated simultaneously, drive distributing screw auger 12 rotation, utilize the propeller blade of positive and negative symmetry setting, with the mode of opposite push, the activated carbon in hopper 5 is dispersed and discharged to sieve plate mechanism 11 through multiple groups of discharge pipe orifice 6 along distributing cylinder 4, to improve the uniformity of activated carbon filter screening.
[0026] The distribution component comprises a reciprocating brake screw rod 18 installed on the side wall of the opening and closing cover 3, a guide sliding rail 19, and a guide sliding table 20 provided outside the shaft of the reciprocating brake screw rod 18 and guided by the guide sliding rail 19. A support arm 21 is provided on one side of the bracket of the guide sliding table 20, and a plurality of reciprocating scraping rods 22 are arranged on the support arm 21 in the direction of the arm plate and opposite the sieve plate mechanism 11. When the belt pulley C16 rotates, it drives the reciprocating brake screw rod 18 to rotate, pushes the guide sliding table 20 to reciprocate along the guide rail of the guide sliding rail 19, and then pushes the combination of the support arm 21 and the reciprocating scraping rod 22 to reciprocate, which can reciprocate and scrape the active carbon on the sieve plate mechanism 11, uniformly disperse the active carbon, avoid the accumulation and blockage caused by the agglomeration of the active carbon, and facilitate the dispersion, filtration and screening of the active carbon.
[0027] The sieve bin 2 is provided with a sieve plate mechanism 11 opposite the distribution mechanism. The sieve plate mechanism 11 comprises a sieve frame 111, a first sieve plate 112 provided on the upper end of the frame of the sieve frame 111, a second sieve plate 113 provided on the lower end of the frame of the sieve frame 111, and a plurality of magnetic rods 114 arranged in the middle of the frame of the sieve frame 111. By using the combination of the first sieve plate 112, the magnetic rod 114 and the second sieve plate 113 in the sieve plate mechanism 11, the impurities and metal scraps in the active carbon can be filtered and screened out through impurity filtering, metal adsorption and impurity filtering.
[0028] The rod body of the magnetic rod 114 is sleeved with a cleaning scraper 115, and the top plate of the cleaning scraper 115 is provided with a hanging ear 116 in a symmetrical form. By providing the cleaning scraper 115 on the magnetic rod 114, when cleaning the metal scraps on the magnetic rod 114, the hook part can be hung on the hanging ear 116, and the cleaning scraper 115 can be displaced along the magnetic rod 114 by pulling, so that the metal scraps adsorbed on the magnetic rod 114 can be scraped and cleaned.
[0029] The sieve bin 2 is provided with a quantitative feeding mechanism at the bottom end of the bin body. The quantitative feeding mechanism comprises a discharge cylinder 7 installed at the bottom of the conical hopper of the sieve bin 2, a discharge pipe 9 connected to the other end of the cylinder tube of the discharge cylinder 7, a discharge spiral auger 10 rotatably connected inside the cylinder tube of the discharge cylinder 7, and a discharge motor 8 fixed to the discharge cylinder 7 at one end of the spiral shaft of the discharge spiral auger 10. When the filtered and screened active carbon falls into the inside of the discharge cylinder 7 along the sieve bin 2, the discharge motor 8 is controlled to drive the discharge spiral auger 10 to rotate, so as to push the active carbon to spiral forward along the discharge cylinder 7, and then the active carbon is discharged quantitatively through the discharge pipe 9.
[0030] The working principle of the utility model is: when the active carbon is fed into the hopper 5, the brake motor 13 is controlled to work as a driving source, driving the synchronous transmission of the belt pulley A 14, the transmission belt 17, the belt pulley B 15 and the belt pulley C 16, while the belt pulley B 15 rotates, the distributing screw auger 12 is driven to rotate, the active carbon in the hopper 5 is pushed to the sieve plate mechanism 11 through the multiple groups of discharge pipe orifices 6 in the opposite direction, and while the belt pulley C 16 rotates, the reciprocating brake screw rod 18 is driven to rotate, the guide sliding table 20 is pushed to reciprocate along the guide rail direction of the guide sliding rail 19, and then the combination of the support arm 21 and the reciprocating scraper rod 22 is pushed to reciprocate, the active carbon falling on the sieve plate mechanism 11 is reciprocated and scraped, the active carbon is uniformly dispersed, which is beneficial to the dispersion and screening of the active carbon, and the active carbon is fully filtered and impurity-removed;
[0031] Then the combination of the first sieve plate 112, the magnetic bar 114 and the second sieve plate 113 in the sieve plate mechanism 11 is used to filter and screen the active carbon filtered and screened from the sieve plate mechanism 11 in turn, the impurities and metal scraps remaining in the active carbon are filtered and screened out, and the active carbon after being filtered and impurity-removed falls into the discharge cylinder 7 along the sieve bin 2, at this time, the discharge motor 8 is controlled to drive the discharge screw auger 10 to rotate, the active carbon is pushed to advance along the discharge cylinder 7, and the active carbon is quantitatively discharged through the discharge pipe orifice 9;
[0032] Further, after the subsequent active carbon feeding is completed, the on-off flip cover 3 can be opened and closed to open, the sieve plate mechanism 11 in the sieve bin 2 is taken out, at this time, on the one hand, the hook part is hung on the lug 116, and the cleaning scraper 115 is pulled to displace along the magnetic bar 114, the metal scraps adsorbed on the magnetic bar 114 are scraped and cleaned, on the other hand, the sieve plate mechanism 11 is turned over, the impurities filtered on the sieve plate mechanism 11 are poured out, and then the sieve plate mechanism 11 is put into the sieve bin 2 again, so that the daily cleaning work can be completed.
[0033] The above is only the preferred embodiment of the utility model, it should be pointed out that for ordinary skilled person in the art, without departing from the principle of the utility model, a number of improvements and refinements can be made, which should be regarded as the protection scope of the utility model. The structures, devices and operation methods not specifically described and explained in the utility model are implemented according to the conventional means in the field without special description and limitation.
Claims
1. An activated carbon feed bin assembly with impurity removal capability, characterized by, The utility model provides a support frame (1) and the screen bin (2) of setting in support frame (1) support frame top end, The upper end of the bin body of the screen bin (2) is provided with a distributing mechanism, and the bin opening of the screen bin (2) is provided with a screen plate mechanism (11) opposite to the distributing mechanism; The distributing mechanism comprises an opening and closing turnover cover (3) covered on the screen bin (2), a distributing component is provided on the cover body of the opening and closing turnover cover (3), and a stirring component is arranged in the cover body of the opening and closing turnover cover (3) and is flush with the screen plate mechanism (11). The bottom end of the bin body of the screen bin (2) is provided with a quantitative feeding mechanism.
2. The activated carbon feed bin assembly with impurity removal capability of claim 1, wherein, The distributing component comprises a distributing cylinder (4) installed in the middle part of the cover body of the opening and closing turnover cover (3), a hopper (5) is installed in the middle part of the upper end of the cylinder tube of the distributing cylinder (4), a plurality of discharge pipe openings (6) are arranged and installed at the lower end of the cylinder tube of the distributing cylinder (4), a distributing screw auger (12) is rotatably connected in the cylinder tube of the distributing cylinder (4), and the propeller blades of the distributing screw auger (12) are arranged in opposite directions with the middle line as the boundary.
3. The activated carbon feed bin assembly with impurity removal capability of claim 1, wherein, The distributing component comprises a reciprocating brake lead screw (18) and a guide slide rail (19) installed on the side wall of the opening and closing turnover cover (3), a guide sliding table (20) is arranged on the outer side of the shaft rod of the reciprocating brake lead screw (18) and is guided by the guide slide rail (19), a support arm (21) is arranged on one side of the table frame of the guide sliding table (20), and a plurality of reciprocating scraping rods (22) opposite to the screen plate mechanism (11) are arranged on the arm plate of the support arm (21).
4. The activated carbon feed bin assembly with impurity removal capability of claim 1, wherein, One side of the cover body of the opening and closing turnover cover (3) is provided with a brake motor (13), a belt pulley A (14) is arranged at the output end of the brake motor (13), a belt pulley B (15) is installed at one end of the screw shaft of the distributing component, a belt pulley C (16) is installed at one end of the lead screw of the distributing component, and the belt pulley A (14), the belt pulley B (15) and the belt pulley C (16) are drivingly connected through a transmission belt (17).
5. The activated carbon feed bin assembly with impurity removal capability of claim 1, wherein, The screen plate mechanism (11) comprises a screening frame (111), a first screen plate (112) is arranged at the upper end of the frame of the screening frame (111), a second screen plate (113) is arranged at the lower end of the frame of the screening frame (111), and a plurality of magnetic rods (114) are arranged in the middle part of the frame of the screening frame (111).
6. An activated carbon feed bin assembly with impurity removal capability according to claim 5, wherein, The rod body of the magnetic rod (114) is sleeved with a cleaning scraper (115), and the top plate of the cleaning scraper (115) is provided with a hanging ear (116) in a symmetrical form.
7. The activated carbon feed bin assembly with impurity removal capability of claim 1, wherein, The quantitative feeding mechanism comprises a discharge cylinder (7) installed at the bottom of the hopper of the screen bin (2), a discharge pipe opening (9) is installed at the other end of the cylinder tube of the discharge cylinder (7), a discharge screw auger (10) is rotatably connected in the cylinder tube of the discharge cylinder (7), and a discharge motor (8) is arranged at one end of the screw shaft of the discharge screw auger (10) and is fixed on the discharge cylinder (7).
Citation Information
Patent Citations
Activated carbon feeding machine
CN221369606U