Alumina ball clay drying apparatus and method of use
By incorporating vibration, auxiliary, and scraping components into the alumina ceramic ball slurry drying equipment, and utilizing a motor to drive the filter frame rotation and an airbag to inject hot gas, the problem of insufficient contact between the slurry and the heating gas is solved, thereby improving drying efficiency and removing impurities, achieving highly efficient slurry drying.
Patent Information
- Application Number
- CN202310359965.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-06
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2043-04-06
AI Technical Summary
In the prior art, the alumina ceramic ball slurry is not in sufficient contact with the heated gas during the drying process, which affects the drying efficiency.
A drying device for alumina ceramic ball slurry is used. By setting up a vibration component, an auxiliary component, and a scraping component, the filter frame is driven to rotate by a motor. Combined with the reciprocating motion of the air bag and the spraying of hot gas from the nozzle, the slurry is fully tumbled and heated, avoiding filter pore blockage. The scraping component removes impurities.
It improves the drying efficiency of the mud, ensures full contact between the mud and the heating gas, enhances the drying effect, and effectively avoids filter clogging, making it easier to clean impurities later.
Smart Images

Figure CN116379723B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of drying equipment, and particularly relates to an alumina ceramic ball mud slurry drying equipment and a use method thereof. BACKGROUND
[0002] Alumina ceramic balls are widely used in the ceramic, glass, enamel, pigment, chemical and other industries, are grinding balls in various grinding equipment, have high strength, large density, small abrasion, corrosion resistance, strong applicability and high crushing efficiency, and in the preparation of alumina ceramic balls, special mud slurry needs to be used as a raw material, and the mud slurry needs to be dried before processing to avoid the influence of residual moisture inside on the quality of alumina ceramic ball products.
[0003] The patent application No. CN201810172741.6 discloses a mud processing device for building construction, which comprises a filter cylinder, a filter screen and a fixing frame arranged in the first cylinder body of the filter cylinder, a conveying device, a stirring and vibrating mechanism, a stirring mechanism, a drying module, a swing door and a heating device. The rotating blade of the stirring and vibrating mechanism is arranged on the first rotating shaft of the conveying device, the front end of the rotating blade abuts against the filter screen, the vibrating mechanism is arranged on the rotating blade, the convex column on the fixing frame can drive the vibration head of the vibrating mechanism to move, the stirring mechanism is arranged in the second cylinder body of the filter cylinder and is connected with the conveying device, the drying module is connected with the first cylinder body, the swing door enables the material to enter the corresponding drying cavity, and the heating device is arranged on the drying module. The mud slurry and the heated gas are not in sufficient contact, which may affect the drying efficiency. SUMMARY
[0004] The application aims at solving the problem that the mud slurry and the heated gas are not in sufficient contact.
[0005] In order to achieve the above-mentioned purpose, the application adopts the following technical scheme.
[0006] The utility model provides an alumina pottery ball mud drying equipment, including the base, both sides of the top of base are fixedly connected with support frame, and two support frames are fixedly connected with drying box between, the inner wall both sides of drying box are fixedly connected with fixed shaft, and two fixed shafts are fixedly connected with reciprocating lead screw between, the outer surface of reciprocating lead screw is threadedly connected with lead screw seat, the outer surface of fixed shaft is threadedly connected with lead screw seat, the both sides of lead screw seat are fixedly connected with auxiliary assembly, the other two sides of lead screw seat are fixedly connected with vibration assembly, the outer surface of fixed shaft is rotatably connected with side plate through bearing, and two filter frames are fixedly connected with between two side plates, and two filter frames are fixedly connected with between two side plates, and the top of drying box is fixedly connected with circulating heating pump, the both sides of circulating heating pump are fixedly connected with conveying pipe, the one end away from circulating heating pump of conveying pipe is connected with the side wall of drying box, and conveying pipe is connected with the inner chamber of drying box, the one side of drying box and filter frame is provided with enclosed door, the bottom of drying box is fixedly connected with discharge pipe, and is provided with valve in the discharge pipe, and the bottom of discharge pipe is provided with collection box, and the top of collection box is fixedly connected with base,
[0007] The auxiliary assembly two connecting boxes are embedded on both sides of the filter frame, two air bags are fixedly connected in the inner cavity of the connecting box, one side of the air bag is fixedly connected with one side of the inner wall of the connecting box, and the side close to the two air bags is fixedly connected with the same sliding plate, the sliding plate is slidingly connected in the inner cavity of the connecting box, a sliding groove is formed in one side of the connecting box, the sliding groove is in communication with the inner cavity of the connecting box, and the first connecting rod is slidingly connected in the sliding groove.
[0008] As a further description of the above technical solutions:
[0009] One side of the air bag is fixedly connected with the air inlet pipe, the air inlet pipe extends to the outside of the connecting box, and a one-way air inlet valve is arranged in the air inlet pipe.
[0010] As a further description of the above technical solutions:
[0011] The side away from the air inlet pipe of the air bag is fixedly connected with the connecting pipe, the top of the connecting pipe is fixedly connected with the mounting box, the connecting pipe is fixedly arranged in the mounting box, the side of the connecting pipe is fixedly connected with a plurality of spray pipes, the spray pipe is embedded in the inner wall of the mounting box and extends to the outside of the mounting box, and a one-way air outlet valve is arranged in the spray pipe.
[0012] As a further description of the above technical solutions:
[0013] The vibration assembly comprises two connecting boxes, one side of the connecting box is fixedly connected with a first connecting rod, one end of the first connecting rod is fixedly connected with one side of a lead screw base, a rotating shaft is rotatably connected in the connecting box through a bearing, a first gear is connected at the center of the rotating shaft, cams are connected on the outer surfaces of the two sides of the rotating shaft, the cams are located on the two sides of the first gear, a matching plate is matched on one side of the cam, a slide rod is fixedly connected at the end of the matching plate away from the cam, the slide rod is slidably connected with a slide hole opened on one side of the connecting box, a vibration block is fixedly connected on the side of the slide rod away from the matching plate, one side of the vibration block is matched with one side of the filter frame, the cross section of the vibration block is semicircular, and the vibration block is a flexible plastic block.
[0014] As a further description of the above technical scheme:
[0015] The surface of the slide rod is sleeved with a second spring, and the two ends of the second spring are fixedly connected with one side of the matching plate and one side of the inner wall of the connecting box cavity.
[0016] As a further description of the above technical scheme:
[0017] A groove is opened on the side of the connecting box away from the second connecting rod, and the groove is in communication with the inner cavity of the connecting box, a second gear is rotatably connected in the groove through a rotating shaft and a bearing, a rack is engaged on one side of the second gear, one side of the rack is fixedly connected with one side of the filter frame, and the side of the second gear away from the rack is engaged with the first gear.
[0018] As a further description of the above technical scheme:
[0019] The scraping assembly comprises two connecting plates, two telescopic rods are fixedly connected on one side of the connecting plate, one end of the telescopic rod away from the connecting plate is fixedly connected with one side of the side plate, the connecting plate is located above the connecting box, extrusion wheels are fixedly connected on both ends of the side of the connecting plate away from the telescopic rod, a stroke groove is opened in the inner wall of the drying box, the extrusion wheels are slidably connected in the stroke groove, a brush plate is fixedly connected on the side of the connecting plate away from the telescopic rod, and the brush plate is located between the two extrusion wheels.
[0020] As a further description of the above technical scheme:
[0021] A first spring is sleeved on the outer surface of the telescopic rod, and the two ends of the first spring are fixedly connected with one side of the connecting plate and one side of the side plate.
[0022] As a further description of the above technical scheme:
[0023] One side of the side plate is fixedly connected with a driven wheel, the driven wheel is rotatably connected with the outer surface of the fixed shaft through a rotating shaft, one side of the drying box body is fixedly installed with a motor through a mounting plate, the output shaft of the motor is fixedly connected with a rotating shaft at one end, and the rotating shaft extends into the inside of the drying box body and is fixedly connected with the driven wheel, and the driven wheel and the driving wheel are transmissionally connected with a transmission belt.
[0024] A method for using an alumina ceramic ball mud drying device, specifically comprising the following steps:
[0025] S1, the staff will open the drying box and the closed door of the filter frame side, pour the mud for preparing alumina ceramic balls into the filter frame, then the staff closes the closed door and starts the motor and the circulating heating pump;
[0026] S2, the circulating heating pump sends the heated gas into the drying box through the conveying pipe to heat and dry the mud in the filter frame, in the process, the motor drives the driving wheel to rotate, the driving wheel drives the driven wheel to rotate through the transmission belt, the driven wheel drives the side plate to rotate, the side plate drives the filter frame to rotate, the filter frame drives the mud inside to rotate, and the centrifugal force generated by rotation can dry part of the water in the mud;
[0027] S3, in the process of rotating the filter frame, the filter frame drives the screw rod seat to rotate on the outer surface of the reciprocating screw rod through the first connecting rod and the second connecting rod, so that the screw rod seat moves back and forth on the outer surface of the reciprocating screw rod, at this time, the screw rod seat drives the second connecting rod to move back and forth, the second connecting rod drives the connecting box to move back and forth, the connecting box drives the second gear to move back and forth on the rack, the second gear rotates under the drive of the rack, the second gear drives the first gear to rotate, the first gear drives the two cams on both sides to rotate through the rotating shaft, the cam drives the abutting plate to move, at the same time, the second spring drives the abutting plate to reset, the cam cooperates with the second spring to drive the slide rod to move back and forth, the slide rod drives the vibration block to knock, so as to drive the internal mud to vibrate;
[0028] S4, the screw rod seat drives the first connecting rod to move, the first connecting rod drives the sliding plate to slide in the connecting box cavity, the sliding plate drives the two air bags to expand or contract, when the air bag expands, the hot gas flow in the drying box is sucked into the air bag through the air inlet pipe, when the air bag contracts, the hot gas flow in the air bag is sprayed out through the connecting pipe and the nozzle and fully heats the mud in the filter frame;
[0029] S5, when the filter frame rotates, the side plate drives the telescopic rod to rotate, the telescopic rod drives the connecting plate to rotate, the connecting plate drives the extrusion wheel to move in the stroke groove, at this time, the brush plate sweeps the inner wall of the drying box, when the connecting plate rotates to the bottom of the drying box, the extrusion wheel slides out of the stroke groove and contacts with the inner wall of the drying box, so that the position of the connecting plate relatively rises, the height of the brush plate rises and no longer abuts with the inner wall of the drying box, so that the impurities are retained at the bottom of the inner wall of the drying box.
[0030] S6. After the drying is completed, the top layer and the circulating heating pump are turned off. Then, the staff opens the closed door and pours the finished mud out of the filter frame. After that, the staff opens the valve to allow impurities and waste water to flow out of the discharge pipe and fall into the collection box.
[0031] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:
[0032] 1. In the present invention, by arranging a vibration assembly and a filter frame, during the drying process, the motor drives the internal mud to rotate through the filter frame, and the vibration assembly vibrates the filter frame through the cam in cooperation with the second spring, so that the mud can fully roll and vibrate in the filter basket, so that the mud can fully contact with the heated gas, thereby improving the drying effect of the mud, and when the vibration block vibrates the filter frame, it can also prevent the mud from blocking the filter holes on the surface of the filter basket, so that the filter frame can remove moisture in the mud through centrifugal force, thereby improving the drying efficiency of the mud.
[0033] 2. In the present invention, by setting an auxiliary component, the filter frame drives the screw seat to move on the outer surface of the reciprocating screw seat, the screw seat drives the first connecting rod to move back and forth in the sliding groove, and the first connecting rod drives the airbag to expand and contract reciprocally through the bonding plate. The expansion and contraction of the airbag cooperates with the one-way air inlet valve and the one-way air outlet valve, so that the airbag can spray the hot air in the drying box to the mud through the nozzle, so that the heated gas can contact the mud more efficiently and fully, thereby assisting in the drying of the mud and improving the drying efficiency of the mud.
[0034] 3. In the present invention, a scraping assembly is provided, and the filter frame drives the brush plate to rotate. When the extrusion wheel enters the stroke groove, the brush plate fits against the inner wall of the drying box. The brush plate can scrape the moisture removed from the mud, so that the removed moisture and impurities will not adhere to the inner wall of the drying box. After the extrusion wheel leaves the stroke groove, the brush plate no longer fits against the inner wall of the drying box, and the brush plate will not brush the bottom of the inner wall of the drying box, so that moisture and impurities will remain at the bottom of the inner wall of the drying box, which is convenient for later cleaning and collection. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] Figure 1 This is a schematic diagram of the three-dimensional structure of an alumina ceramic ball slurry drying device proposed by the present invention;
[0036] Figure 2 This is a schematic diagram of the front cross-sectional structure of an alumina ceramic ball slurry drying device proposed by the present invention;
[0037] Figure 3 The invention provides a drying device for alumina ceramic ball slurry. Figure 2 A schematic diagram of the enlarged structure of part A;
[0038] Figure 4 A drying equipment for alumina ceramic ball slurry mud of the present application Figure 2 The enlarged structural schematic diagram of part B in the drying equipment for alumina ceramic ball slurry mud of the present application
[0039] Figure 5 The side view sectional structural schematic diagram of a vibrating assembly of the drying equipment for alumina ceramic ball slurry mud of the present application
[0040] Figure 6 The enlarged structural schematic diagram of part C in the drying equipment for alumina ceramic ball slurry mud of the present application Figure 5
[0041] Figure 7 The three-dimensional split structural schematic diagram of a filter frame and a side plate of the drying equipment for alumina ceramic ball slurry mud of the present application.
[0042] Legend:
[0043] 1, collection box; 2, base; 3, support frame; 4, drying box body; 5, conveying pipe; 6, circulating heating pump; 7, scraping assembly; 701, stroke groove; 702, telescopic rod; 703, connecting plate; 704, extrusion wheel; 705, first spring; 706, brush plate; 8, auxiliary assembly; 801, first connecting rod; 802, connecting box; 803, air inlet pipe; 804, spray pipe; 805, mounting box; 806, connecting pipe; 807, air bag; 808, sliding plate; 809, sliding groove; 9, vibrating assembly; 901, second connecting rod; 902, first gear; 903, connecting box; 904, second gear; 905, rack; 906, vibrating block; 907, sliding rod; 908, second spring; 909, fitting plate; 910, cam; 10, driven wheel; 11, fixed shaft; 12, transmission belt; 13, motor; 14, driving wheel; 15, discharge pipe; 16, reciprocating lead screw; 17, lead screw seat; 18, filter frame; 19, side plate. DETAILED DESCRIPTION
[0044] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the present application.
[0045] Please refer to Figure 1 - Figure 7 The present application provides a technical solution:
[0046] The application discloses a kind of alumina ceramic ball mud drying equipment, including base 2, base 2 top two sides are fixedly connected with support frame 3, and two support frames 3 are fixedly connected with drying box body 4 between, the inner wall of drying box body 4 two sides are fixedly connected with fixed shaft 11, and two fixed shafts 11 are fixedly connected with reciprocating screw rod 16 between, the outer surface of reciprocating screw rod 16 is threadedly connected with screw rod seat 17, the outer surface of fixed shaft 11 is threadedly connected with screw rod seat 17, screw rod seat 17 two sides are fixedly connected with auxiliary assembly 8, screw rod seat 17 other two sides are fixedly connected with vibration assembly 9, the outer surface of fixed shaft 11 is rotatably connected with side plate 19 by bearing, and two filter frames 18 are fixedly connected between two side plates 19, and two filter frames 18 are fixedly connected between two side plates 19, and scraping assembly 7 is fixedly connected between two side plates 19, circulating heating pump 6 is fixedly connected on the top of drying box body 4, circulating heating pump 6 two sides are fixedly connected with conveying pipe 5, the end of conveying pipe 5 away from circulating heating pump 6 is connected with the side wall of drying box body 4, and conveying pipe 5 is connected with the inner chamber of drying box body 4, drying box body 4 and filter frame 18 one side are provided with closed door, the bottom of drying box body 4 is fixedly connected with discharge pipe 15, and valve is arranged in discharge pipe 15, discharge pipe 15 bottom is provided with collection box 1, collection box 1 is fixedly connected with the top of base 2, side plate 19 one side is fixedly connected with driven wheel 10, driven wheel 10 is rotatably connected with the outer surface of fixed shaft 11 by rotating shaft, drying box body 4 one side is fixedly installed with motor 13 by mounting plate, the output shaft of motor 13 one end is fixedly connected with rotating shaft, and the rotating shaft one end extends to the inside of drying box body 4 and is fixedly connected with driven wheel 10, driven wheel 10 and driving wheel 14 are transmissionally connected with transmission belt 12 between.
[0047] The vibration assembly 9 comprises two connecting boxes 903, one side of the connecting box 903 is fixedly connected with a first connecting rod 801, one end of the first connecting rod 801 is fixedly connected with one side of the lead screw seat 17, a rotating shaft is rotatably connected in the connecting box 903 through a bearing, a first gear 902 is clamped at the center position of the rotating shaft, cams 910 are clamped on the outer surfaces of the two sides of the rotating shaft, the cams 910 are located on the two sides of the first gear 902, a matching plate 909 is matched on one side of the cam 910, a sliding rod 907 is fixedly connected at the end of the matching plate 909 away from the cam 910, the sliding rod 907 is slidably connected with a sliding hole formed in one side of the connecting box 903, a vibration block 906 is fixedly connected on the side of the sliding rod 907 away from the matching plate 909, the vibration block 906 is matched with one side of the filter frame 18, the vibration block 906 is semicircular in cross section, and the vibration block 906 is a flexible plastic block, a second spring 908 is sleeved on the surface of the sliding rod 907, and the two ends of the second spring 908 are fixedly connected with one side of the matching plate 909 and one side of the inner wall of the connecting box 903 respectively, a groove is formed in the side of the connecting box 903 away from the second connecting rod 901, the groove is in communication with the inner cavity of the connecting box 903, a second gear 904 is rotatably connected in the groove through a rotating shaft and a bearing, a rack 905 is engaged with one side of the second gear 904, one side of the rack 905 is fixedly connected with one side of the filter frame 18, and the side of the second gear 904 away from the rack 905 is engaged with the first gear 902.
[0048] Specifically, the vibration assembly 9 and the filter frame 18 are arranged, the second gear 904 rotates under the drive of the rack 905, the second gear 904 drives the first gear 902 to rotate, the first gear 902 drives the cams 910 on the two sides to rotate, the cams 910 cooperate with the second spring 908 to vibrate the filter frame 18, the mud can be fully rolled and vibrated in the filter basket, so that the mud can be fully contacted with the heated gas, and when the vibration block 906 vibrates the filter frame 18, the filter holes on the surface of the filter basket can also be prevented from being blocked by the mud, so that the filter frame 18 can remove the water in the mud through the centrifugal force.
[0049] The scraping assembly 7 comprises two connecting plates 703, two telescopic rods 702 are fixedly connected on one side of the connecting plate 703, one end of the telescopic rod 702 away from the connecting plate 703 is fixedly connected with one side of the side plate 19, the connecting plate 703 is located directly above the connecting box 802, extrusion wheels 704 are fixedly connected at the two ends of the side of the connecting plate 703 away from the telescopic rod 702, stroke grooves 701 are formed in the inner wall of the drying box body 4, the extrusion wheels 704 are slidably connected in the stroke grooves 701, a brush plate 706 is fixedly connected on the side of the connecting plate 703 away from the telescopic rod 702, the brush plate 706 is located between the two extrusion wheels 704, first springs 705 are sleeved on the outer surfaces of the telescopic rods 702, and the two ends of the first spring 705 are fixedly connected with one side of the connecting plate 703 and one side of the side plate 19 respectively.
[0050] The embodiment is specific: by setting the scraping assembly 7, when the extrusion wheel 704 enters the stroke groove 701, the brush plate 706 is attached to the inner wall of the drying box body 4, the brush plate 706 can scrape the water separated from the mud, and after the extrusion wheel 704 leaves the stroke groove 701, the brush plate 706 is no longer attached to the inner wall of the drying box body 4, and the brush plate 706 will not brush the bottom of the inner wall of the drying box body 4, so that the water and impurities will remain on the bottom of the inner wall of the drying box body 4.
[0051] The auxiliary assembly 8 has two connecting boxes 802, the connecting boxes 802 are embedded on both sides of the filter frame 18, two air bags 807 are fixedly connected in the inner cavities of the connecting boxes 802, one side of the air bags 807 is fixedly connected with one side of the inner walls of the connecting boxes 802, and the air bags 807 are fixedly connected with the same sliding plate 808 on the side close to each other. The sliding plate 808 is slidingly connected in the inner cavities of the connecting boxes 802, a sliding groove 809 is formed in one side of the connecting box 802, the sliding groove 809 is in communication with the inner cavities of the connecting boxes 802, the lead screw seat 17 is fixedly connected with the first connecting rods 801 on both sides, the first connecting rods 801 are slidingly connected in the sliding grooves 809, one end of the first connecting rod 801 is fixedly connected with one end of the sliding plate 808, one side of the air bag 807 is fixedly connected with the air inlet pipe 803, the air inlet pipe 803 extends to the outside of the connecting box 802, a one-way air inlet valve is arranged in the air inlet pipe 803, one side of the air bag 807 away from the air inlet pipe 803 is fixedly connected with the connecting pipe 806, the connecting pipes 806 are fixedly arranged in the mounting boxes 805, the connecting pipes 806 are fixedly connected with a plurality of spray pipes 804 on one side, the spray pipes 804 are embedded in the inner walls of the mounting boxes 805 and extend to the outside of the mounting boxes 805, and a one-way air outlet valve is arranged in the spray pipes 804.
[0052] The embodiment is specific: by setting the auxiliary assembly 8, the contraction and expansion of the air bag 807 cooperate with the one-way air inlet valve and the one-way air outlet valve, so that the air bag 807 can spray hot air in the drying box body 4 to the mud through the spray pipes 804, so that the heated gas can more efficiently and fully contact the mud, and the drying efficiency of the mud is improved.
[0053] Working principle:
[0054] S1, the worker opens the closed door on one side of the drying box body 4 and the filter frame 18, pours the mud for preparing the alumina ceramic ball into the filter frame 18, then closes the closed door and starts the motor 13 and the circulating heating pump 6;
[0055] S2, the circulating heating pump 6 sends the heated gas to the drying box 4 through the conveying pipe 5, and the mud in the filter frame 18 is heated and dried. In this process, the motor 13 drives the driving wheel 14 to rotate, the driving wheel 14 drives the driven wheel 10 to rotate through the transmission belt 12, the driven wheel 10 drives the side plate 19 to rotate, the side plate 19 drives the filter frame 18 to rotate, the filter frame 18 drives the mud inside to rotate, and the centrifugal force generated by rotation can dry part of the water in the mud;
[0056] S3, in the process of rotating the filter frame 18, the filter frame 18 drives the screw seat 17 to rotate on the outer surface of the reciprocating screw 16 through the first connecting rod 801 and the second connecting rod 901, so that the screw seat 17 reciprocates on the outer surface of the reciprocating screw 16. At this time, the screw seat 17 drives the second connecting rod 901 to reciprocate, the second connecting rod 901 drives the connecting box 903 to reciprocate, the connecting box 903 drives the second gear 904 to reciprocate on the rack 905, the second gear 904 rotates under the drive of the rack 905, the second gear 904 drives the first gear 902 to rotate, the first gear 902 drives the two cams 910 to rotate through the rotating shaft, the cam 910 drives the abutting plate 909 to move, and at the same time, the second spring 908 drives the abutting plate 909 to reset. The cam 910 cooperates with the second spring 908 to drive the slide rod 907 to reciprocate, and the slide rod 907 drives the vibration block 906 to knock, so as to drive the internal mud to vibrate;
[0057] S4, the screw seat 17 drives the first connecting rod 801 to move, the first connecting rod 801 drives the sliding plate 808 to slide in the inner cavity of the connecting box 802, the sliding plate 808 drives the two air bags 807 to dilate or contract, and when the air bag 807 dilates, the hot gas flow in the drying box 4 is sucked into the air bag 807 through the air inlet pipe 803. When the air bag 807 contracts, the hot gas flow in the air bag 807 is sprayed out through the connecting pipe 806 and the spray pipe 804, and the mud in the filter frame 18 is heated sufficiently;
[0058] S5, when the filter frame 18 rotates, the side plate 19 drives the telescopic rod 702 to rotate, the telescopic rod 702 drives the connecting plate 703 to rotate, the connecting plate 703 drives the extrusion wheel 704 to move in the stroke groove 701, and at this time the brush plate 706 brushes the inner wall of the drying box 4. When the connecting plate 703 rotates to the bottom of the drying box 4, the extrusion wheel 704 slides out of the stroke groove 701 and contacts the inner wall of the drying box 4, so that the position of the connecting plate 703 relatively rises, the height of the brush plate 706 rises and no longer abuts with the inner wall of the drying, so that the impurities are retained at the bottom of the inner wall of the drying box 4;
[0059] S6, after the drying is completed, the top and the circulating heating pump 6 are closed, then the worker opens the closed door and pours the finished product slurry out of the filter frame 18, then the worker opens the valve, and the impurities and waste water flow out of the discharge pipe 15 and fall into the collecting box 1.
[0060] The above merely describes the preferred embodiments of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can make equivalent replacements or changes according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, and all of them should be covered in the protection scope of the present application.
Claims
1. A drying device for alumina ceramic ball slurry, comprising a base (2), characterized in that: Both sides of the top of the base (2) are fixedly connected to support frames (3), and a drying box (4) is fixedly connected between the two support frames (3). Both sides of the inner wall of the drying box (4) are fixedly connected to fixed shafts (11), and a reciprocating screw (16) is fixedly connected between the two fixed shafts (11). The outer surface of the reciprocating screw (16) is threadedly connected to a screw seat (17). The outer surface of the fixed shaft (11) is threadedly connected to the screw seat (17). Auxiliary components (8) are fixedly connected to both sides of the screw seat (17). The other two sides of the screw seat (17) are fixedly connected to vibration components (9). The outer surface of the fixed shaft (11) is rotatably connected to a side plate (19) through a bearing, and the two side plates (19) are fixedly connected. There are two filter frames (18), and a scraping assembly (7) is fixedly connected between the two side plates (19). A circulating heating pump (6) is fixedly connected to the top of the drying box (4), and a delivery pipe (5) is fixedly connected to both sides of the circulating heating pump (6). The end of the delivery pipe (5) away from the circulating heating pump (6) is connected to the side wall of the drying box (4), and the delivery pipe (5) is connected to the inner cavity of the drying box (4). A closed door is provided on one side of the drying box (4) and the filter frame (18). A discharge pipe (15) is fixedly connected to the bottom of the drying box (4), and a valve is provided in the discharge pipe (15). A collecting box (1) is provided at the bottom of the discharge pipe (15), and the collecting box (1) is fixedly connected to the top of the base (2); The auxiliary component (8) comprises two connecting boxes (802), the connecting boxes (802) are embedded in both sides of the filter frame (18), two air bags (807) are fixedly connected in the inner cavity of the connecting box (802), one side of the air bags (807) is fixedly connected to one side of the inner wall of the connecting box (802), and the sides of the two air bags (807) close to each other are fixedly connected to the same sliding plate (808), the sliding plate (808) is slidably connected in the inner cavity of the connecting box (802), a sliding groove (809) is provided on one side of the connecting box (802), and the sliding groove (809) is communicated with the inner cavity of the connecting box (802), both sides of the screw seat (17) are fixedly connected with a first connecting rod (801), the first connecting rod (801) is slidably connected to the sliding groove (809), and one end of the first connecting rod (801) is fixedly connected to one end of the sliding plate (808); An air intake pipe (803) is fixedly connected to one side of the air bag (807), the air intake pipe (803) extends to the outside of the connection box (802), and a one-way air intake valve is provided in the air intake pipe (803); A connecting pipe (806) is fixedly connected to the side of the air bag (807) away from the air inlet pipe (803), and both sides of the top of the connecting box (802) are fixedly connected to the installation box (805). The connecting pipe (806) is fixedly arranged in the installation box (805), and a plurality of nozzles (804) are fixedly connected to one side of the connecting pipe (806). The nozzles (804) are embedded in the inner wall of the installation box (805) and extend to the outside of the installation box (805), and a one-way air outlet valve is provided in the nozzles (804); The vibration assembly (9) includes two connecting boxes (903), one side of the connecting box (903) is fixedly connected to a first connecting rod (801), one end of the first connecting rod (801) is fixedly connected to one side of the screw seat (17), a rotating shaft is rotatably connected to the connecting box (903) through a bearing, and a first gear (902) is clamped at the center of the rotating shaft, and cams (910) are clamped on the outer surfaces of both sides of the rotating shaft, and the cams (910) are located on both sides of the first gear (902). The side of the filter frame (18) is fitted with a fitting plate (909), and the end of the fitting plate (909) away from the cam (910) is fixedly connected to a sliding rod (907), and the sliding rod (907) is slidably connected to a sliding hole opened on one side of the connecting box (903). The side of the sliding rod (907) away from the fitting plate (909) is fixedly connected to a vibration block (906), and one side of the vibration block (906) is fitted with one side of the filter frame (18). The cross-section of the vibration block (906) is semicircular, and the vibration block (906) is a flexible plastic block. The surface of the sliding rod (907) is provided with a second spring (908), and the two ends of the second spring (908) are respectively fixedly connected to one side of the laminating plate (909) and one side of the inner wall of the inner cavity of the connection box (903); A groove is provided on a side of the connecting box (903) away from the second connecting rod (901), and the groove is in communication with the inner cavity of the connecting box (903). A second gear (904) is rotatably connected to the groove via a rotating shaft and a bearing. A rack (905) is engaged with one side of the second gear (904). One side of the rack (905) is fixedly connected to one side of the filter frame (18). The side of the second gear (904) away from the rack (905) is engaged with the first gear (902). The scraping assembly (7) comprises two connecting plates (703), one side of the connecting plate (703) is fixedly connected to two telescopic rods (702), one end of the telescopic rod (702) away from the connecting plate (703) is fixedly connected to one side of the side plate (19), the connecting plate (703) is located directly above the connecting box (802), both ends of the side of the connecting plate (703) away from the telescopic rod (702) are fixedly connected to extrusion wheels (704), the inner wall of the drying box body (4) is provided with a travel groove (701), the extrusion wheel (704) is slidably connected in the travel groove (701), the side of the connecting plate (703) away from the telescopic rod (702) is fixedly connected to a brush plate (706), and the brush plate (706) is located between the two extrusion wheels (704).
2. The drying equipment for alumina ceramic ball slurry according to claim 1, characterized in that: The outer surface of the telescopic rod (702) is sleeved with a first spring (705), and two ends of the first spring (705) are fixedly connected to one side of the connecting plate (703) and one side of the side plate (19) respectively.
3. The drying equipment for alumina ceramic ball slurry according to claim 2, characterized in that: A driven wheel (10) is fixedly connected to one side of the side plate (19), and the driven wheel (10) is rotatably connected to the outer surface of the fixed shaft (11) via a rotating shaft. A motor (13) is fixedly installed on one side of the drying box (4) via a mounting plate. One end of the output shaft of the motor (13) is fixedly connected to the rotating shaft, and one end of the rotating shaft extends into the interior of the drying box (4) and is fixedly connected to the driven wheel (10). A transmission belt (12) is connected between the driven wheel (10) and the driving wheel (14).
4. A method for using a drying device for alumina ceramic ball slurry, characterized in that: The drying equipment for alumina ceramic ball slurry according to claim 3 specifically comprises the following steps: S1. The staff opens the closed door on one side of the drying box (4) and the filter frame (18), pours the slurry for preparing alumina ceramic balls into the filter frame (18), and then closes the closed door and starts the motor (13) and the circulating heating pump (6); S2, the circulating heating pump (6) transports the heated gas to the drying box (4) through the delivery pipe (5), and heats and dries the mud in the filter frame (18). During this process, the motor (13) drives the driving wheel (14) to rotate, the driving wheel (14) drives the driven wheel (10) to rotate through the transmission belt (12), the driven wheel (10) drives the side plate (19) to rotate, the side plate (19) drives the filter frame (18) to rotate, and the filter frame (18) drives the internal mud to rotate, and the centrifugal force generated during the rotation can remove part of the water in the mud; S3. During the rotation of the filter frame (18), the filter frame (18) drives the screw seat (17) to rotate on the outer surface of the reciprocating screw (16) through the first connecting rod (801) and the second connecting rod (901), so that the screw seat (17) moves back and forth on the outer surface of the reciprocating screw (16). At this time, the screw seat (17) drives the second connecting rod (901) to make a reciprocating motion, the second connecting rod (901) drives the connecting box (903) to make a reciprocating motion, and the connecting box (903) drives the second gear (904) to reciprocate on the rack (905). The wheel (904) rotates under the drive of the rack (905), the second gear (904) drives the first gear (902) to rotate, the first gear (902) drives the cams (910) on both sides to rotate through the rotating shaft, the cams (910) drive the bonding plate (909) to move, and at the same time, the second spring (908) drives the bonding plate (909) to perform a reset movement, the cam (910) cooperates with the second spring (908) to drive the slide bar (907) to perform a reciprocating movement, and the slide bar (907) drives the vibration block (906) to knock and vibrate, thereby driving the internal mud to vibrate; S4, the screw seat (17) drives the first connecting rod (801) to move, the first connecting rod (801) drives the sliding plate (808) to slide in the inner cavity of the connecting box (802), and the sliding plate (808) drives the air bags (807) on both sides to expand or contract. When the air bags (807) expand, the hot air in the drying box (4) is sucked into the air bags (807) through the air inlet pipe (803). When the air bags (807) contract, the hot air in the air bags (807) is ejected through the connecting pipe (806) and the nozzle (804) and the slurry in the filter frame (18) is fully heated. S5. When the filter frame (18) rotates, the side plate (19) drives the telescopic rod (702) to rotate, the telescopic rod (702) drives the connecting plate (703) to rotate, and the connecting plate (703) drives the extrusion wheel (704) to move in the travel groove (701). At this time, the brush plate (706) brushes the inner wall of the drying box (4). When the connecting plate (703) rotates to the bottom of the drying box (4), the extrusion wheel (704) slides out of the travel groove (701) and contacts the inner wall of the drying box (4), so that the position of the connecting plate (703) rises relatively, so that the height of the brush plate (706) rises and no longer fits the inner wall of the drying box (4), so that impurities remain at the bottom of the inner wall of the drying box (4); S6. After the drying is completed, the top layer and the circulating heating pump (6) are turned off. Then, the staff opens the closed door and pours the finished slurry out of the filter frame (18). Then, the staff opens the valve to allow impurities and waste water to flow out of the discharge pipe (15) and fall into the collection box (1).
Citation Information
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