CN213433014U - Vibration drying tower is used in ceramic tile production - Google Patents

Vibration drying tower is used in ceramic tile production Download PDF

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Publication number
CN213433014U
CN213433014U CN202021372621.XU CN202021372621U CN213433014U CN 213433014 U CN213433014 U CN 213433014U CN 202021372621 U CN202021372621 U CN 202021372621U CN 213433014 U CN213433014 U CN 213433014U
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China
Prior art keywords
drying tower
tower body
air
pipe
inlet pipe
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CN202021372621.XU
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Chinese (zh)
Inventor
何源
何桥平
杨远军
石雄兵
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Hubei Xingcheng Pottery Building Ltd By Share Ltd
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Hubei Xingcheng Pottery Building Ltd By Share Ltd
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Abstract

The utility model discloses a ceramic tile production is with vibration drying tower, including the drying tower body, drying tower body top is provided with inlet pipe and inlet tube, and inside is provided with annular tuber pipe, nozzle body and shale shaker dish, and both sides are provided with first air-supply line, second air-supply line, water tank, water pump, vibrator, vibrating arm, play tuber pipe, suction fan, dust collection box and air outlet respectively, and the bottom is provided with discharge gate, first solenoid valve and bracing piece. The utility model discloses a nozzle body is cylindrical, and nozzle body side symmetry is provided with a plurality of second through-holes, and the symmetry is provided with a plurality of air outlet nozzles on the annular tuber pipe, and hot-blast even diffusion after a plurality of air outlet nozzles discharge, the material is even through second through-hole blowout back dispersion, with hot-blast abundant contact, pass through three-layer vibration sieve dish again and carry out vibration drying in proper order, and is dry more abundant, and the inlet tube is connected with the inlet pipe, can not only cool down and can also rinse the drying tower, easy operation, and production efficiency is high.

Description

Vibration drying tower is used in ceramic tile production
Technical Field
The utility model relates to a pottery brick production facility field especially relates to a vibration drying tower is used in ceramic tile production.
Background
Spray drying is a drying process in which a raw material liquid is put into an atomizer to be separated into droplets, and hot air or other gases are directly contacted with the droplets to obtain a product in the shape of powder particles. The application of spray drying technology in the ceramic industry is very common, and a drying tower is an important device in the ceramic tile production process. However, the traditional spray drying tower has the problems of insufficient drying, difficult cleaning and cooling and complex operation, and fire or explosion can be generated when the temperature in the tower body is too high, thereby causing great harm.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that not enough and provide a vibration drying tower is used in ceramic tile production to above-mentioned prior art exists, this design drying efficiency is high, is convenient for wash and cool down, and easy operation can effectively avoid conflagration and explosion, and the drying of having solved existence among the prior art is not abundant, is difficult to wash and cool down, complex operation's problem.
In order to achieve the above object, the utility model provides a following technical scheme:
a vibration drying tower for ceramic tile production comprises a drying tower body, wherein an inlet pipe, a motor, a driving gear and a driven gear are arranged at the top of the drying tower body, the inlet pipe is communicated into the drying tower body and is connected with a nozzle body, the motor is connected with the driving gear, the driving gear is connected with the driven gear, the driven gear is connected with the inlet pipe, a first air inlet pipe and a second air inlet pipe are symmetrically arranged on two sides of the drying tower body respectively, the first air inlet pipe and the second air inlet pipe are connected with an annular air pipe, a plurality of air outlet nozzles are arranged on the annular air pipe, a vibration screen disc is arranged inside the drying tower body and is connected with a vibration rod, the vibration rod is connected with a vibrator, a discharge port and a support rod are arranged at the bottom of the drying tower body, and a first electromagnetic valve is arranged on the discharge port, the drying tower comprises a drying tower body and is characterized in that an air outlet pipe, a suction fan, a dust collection box and an air outlet which are connected in sequence are arranged on one side of the drying tower body, a filter screen is arranged in the dust collection box, a water tank is arranged on the other side of the drying tower body, a water pump and a water inlet pipe are arranged on the water tank, and a second electromagnetic valve is arranged on the water inlet pipe and connected with the water inlet.
Preferably, the annular air pipe surrounds the inner wall of the drying tower body, a plurality of air outlets are arranged on the inner ring of the annular air pipe at equal intervals, and the included angle between each air outlet and the inner wall of the drying tower body is 30-90 degrees.
Preferably, the nozzle body is cylindrical, and the top is provided with first through-hole, and the equidistant symmetry in side is provided with a plurality of second through-holes, first through-hole is connected with the inlet pipe.
Preferably, the number of the vibrating screen discs is 3, and the vibrating screen discs are arranged at equal intervals from top to bottom.
Preferably, the number of the vibrating screen discs is 3, and the vibrating screen discs are arranged at equal intervals from top to bottom.
Preferably, the bottom of the vibrating screen tray is provided with grids, and the aperture of the grids at the bottom of the 3-layer vibrating screen tray is reduced from top to bottom in sequence.
Compared with the prior art, the beneficial effects of the utility model are that:
first, the utility model discloses the inside annular tuber pipe that is provided with of drying tower body, annular tuber pipe bilateral symmetry are provided with first air-supply line and second air-supply line, and the symmetry is provided with a plurality of blast nozzles on the annular tuber pipe, and 30~90 ℃ contained angles become with drying tower body inner wall in the blast nozzle, make hot-blast ability evenly spread, increase material and hot-blast active area, effectively avoid the material to be heated inhomogeneously.
Second, the utility model discloses be provided with cylindrical nozzle body, the symmetry is provided with a plurality of through-holes on the nozzle body side, and the material sprays to all around through the through-hole, and with the hot-blast abundant contact of air outlet nozzle spun that encircles, drying efficiency is higher, can effectively avoid traditional nozzle to cause nozzle jam, the insufficient problem of drying because of internal pressure inequality or flow is too big.
Third, the utility model discloses be provided with the inlet tube that is linked together with the inlet pipe, through the second solenoid valve on the controller control inlet tube, can not only carry out the humidification to the material when the high temperature, prevent conflagration and explosion, can also wash the drying tower through cylindrical nozzle water spray after the drying is finished, clean efficiency is higher, easy operation.
Drawings
FIG. 1 is the overall structure diagram of the present invention
FIG. 2 is a schematic view of the nozzle structure of the present invention
FIG. 3 is a top view of the annular duct of the present invention
In the figure: 1-drying tower body, 2-feeding pipe, 3-nozzle body, 4-motor, 5-driving gear, 6-driven gear, 7-first air inlet pipe, 8-second air inlet pipe, 9-annular air pipe, 10-vibration sieve tray, 11-vibration rod, 12-vibrator, 13-discharge port, 14-first electromagnetic valve, 15-air outlet pipe, 16-suction fan, 17-dust collection box, 18-filter screen, 19-air outlet, 20-water inlet pipe, 21-second electromagnetic valve, 22-water pump, 23-water tank, 24-supporting rod, 31-first through hole, 32-second through hole and 91-air outlet nozzle.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and examples.
The first embodiment is as follows:
referring to fig. 1 to 3, a vibration drying tower for ceramic tile production comprises a drying tower body 1, wherein an inlet pipe 2, a motor 4, a driving gear 5 and a driven gear 6 are arranged at the top of the drying tower body 1, the inlet pipe 2 is introduced into the drying tower body 1 and connected with a nozzle body 3, the motor 4 is connected with the driving gear 5, the driving gear 5 is connected with the driven gear 6, the driven gear 6 is connected with the inlet pipe 2, a first air inlet pipe 7 and a second air inlet pipe 8 are symmetrically arranged on two sides of the drying tower body 1 respectively, the first air inlet pipe 7 and the second air inlet pipe 8 are connected with an annular air pipe 9, a plurality of air outlet nozzles 91 are arranged on the annular air pipe 9, a vibration sieve tray 10 is arranged in the drying tower body 1, the vibration sieve tray 10 is connected with a vibration rod 11, and the vibration rod 11 is connected with a vibrator 12, the drying tower comprises a drying tower body 1, and is characterized in that a discharge port 13 and a support rod 24 are arranged at the bottom of the drying tower body 1, a first electromagnetic valve 14 is arranged on the discharge port 13, an air outlet pipe 15, a suction fan 16, a dust collection box 17 and an air outlet 19 which are sequentially connected are arranged on one side of the drying tower body 1, a filter screen 18 is arranged in the dust collection box 17, a water tank 23 is arranged on the other side of the drying tower body 1, a water pump 22 and a water inlet pipe 20 are arranged on the water tank 23, and a second electromagnetic valve 21 is arranged on.
Annular tuber pipe 9 encircles on 1 inner wall of drying tower body, equidistant a plurality of blast nozzles 91 that are provided with on the annular tuber pipe 9 inner ring, blast nozzle 91 is 30~90 with 1 inner wall contained angle of drying tower body, and hot-blast even diffusion after the discharge of blast nozzle 91 makes the material fully dry.
Nozzle body 3 is cylindrical, and the top is provided with first through-hole 31, and the equidistant symmetry in side is provided with a plurality of second through-holes 32, first through-hole 31 is connected with inlet pipe 2, and the material is abundant the diffusion after a plurality of second through-holes 32 blowout, and is great with hot-blast area of contact, and drying efficiency is higher.
The vibrating screen discs 10 are 3 in number and are arranged at equal intervals from top to bottom.
The bottom of the vibrating screen tray 10 is provided with grids, the grid pore diameters of the bottom of the 3-layer vibrating screen tray 10 are sequentially reduced from top to bottom, and the materials are fully dried through the vibrating screen tray 10 by arranging the multiple layers of vibrating screen trays 10.
The utility model discloses a theory of operation and use flow: firstly, the material enters the nozzle body 3 through the feeding pipe 2, the motor 4 is started, the motor 4 drives the driving gear 5 to rotate, the driving gear 5 drives the driven gear 6 to rotate, the driven gear 6 drives the feeding pipe 2 to rotate rapidly, under the centrifugal action, the material is sprayed into the drying tower body 1 through the second through hole 32 on the nozzle body 3, at the moment, hot air is introduced into the first air inlet pipe 7 and the second air inlet pipe 8, the atomized material sprayed into the drying tower body 1 is dried, the material falls onto the three layers of vibrating screen discs 10 in sequence under the action of gravity, at the moment, the vibrating screen discs 10 vibrate the falling material under the action of the vibrating rod 11 and the vibrator 12, the powder fully dried by the vibrating screen discs 10 is discharged from the discharging port 13, meanwhile, the suction fan 16 recovers the hot air in the drying tower body 1, and hot air sucked by the suction fan 16 is filtered by the filter screen 18 in the dust collection box 17, then through the air outlet 19 discharge for other uses, open second solenoid valve 21, start water pump 22, the water in the water tank 23 can be discharged by inlet tube 20, gets into in the inlet pipe 2 and from the blowout of nozzle body 3, when drying tower body 1 inside high temperature, the accessible adds water and reduces the interior temperature of tower, and after the material drying was accomplished, the accessible water spray was washd drying tower body 1 inside.
The foregoing is a more detailed description of the present invention, taken in conjunction with the specific preferred embodiments thereof, and it is not intended that the invention be limited to the specific embodiments shown and described. To the utility model belongs to the technical field of ordinary technical personnel, do not deviate from the utility model discloses under the prerequisite of design, can also make a plurality of simple deductions or replacement, all should regard as belonging to the utility model discloses a protection scope.

Claims (5)

1. The utility model provides a vibration drying tower is used in ceramic tile production, its characterized in that, includes drying tower body (1), drying tower body (1) top is provided with inlet pipe (2), motor (4), driving gear (5) and driven gear (6), inlet pipe (2) let in drying tower body (1) inside and be connected with nozzle body (3), motor (4) are connected with driving gear (5), driving gear (5) are connected with driven gear (6), driven gear (6) are connected with inlet pipe (2), drying tower body (1) both sides are the symmetry respectively and are provided with first air-supply line (7) and second air-supply line (8), first air-supply line (7) and second air-supply line (8) are connected with annular (9), be provided with if dry air outlet nozzle (91) on annular tuber pipe (9), a vibrating screen tray (10) is arranged in the drying tower body (1), the vibrating screen tray (10) is connected with a vibrating rod (11), the vibrating rod (11) is connected with the vibrator (12), the bottom of the drying tower body (1) is provided with a discharge hole (13) and a support rod (24), a first electromagnetic valve (14) is arranged on the discharge port (13), an air outlet pipe (15), a suction fan (16), a dust collection box (17) and an air outlet (19) which are connected in sequence are arranged on one side of the drying tower body (1), a filter screen (18) is arranged in the dust collection box (17), a water tank (23) is arranged at the other side of the drying tower body (1), a water pump (22) and a water inlet pipe (20) are arranged on the water tank (23), the water inlet pipe (20) is provided with a second electromagnetic valve (21) which is connected with the feeding pipe (2).
2. The vibration drying tower for ceramic tile production according to claim 1, wherein the annular air pipe (9) surrounds the inner wall of the drying tower body (1), a plurality of air outlets (91) are arranged on the inner ring of the annular air pipe (9) at equal intervals, and the included angle between each air outlet (91) and the inner wall of the drying tower body (1) is 30-90 degrees.
3. The vibratory drying tower for ceramic tile production according to claim 1, characterized in that the nozzle body (3) is cylindrical, a first through hole (31) is arranged at the top, a plurality of second through holes (32) are symmetrically arranged at equal intervals on the side, and the first through hole (31) is connected with the feeding pipe (2).
4. A vibrating drying tower for ceramic tile production according to claim 1, characterized in that said vibrating sieve trays (10) are 3 in number, arranged at equal intervals from top to bottom.
5. A vibrating drying tower for ceramic tile production according to claim 1, characterized in that the bottom of the vibrating screen tray (10) is provided with grids, and the grid pore size at the bottom of the 3 layers of vibrating screen trays (10) decreases from top to bottom.
CN202021372621.XU 2020-07-14 2020-07-14 Vibration drying tower is used in ceramic tile production Active CN213433014U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021372621.XU CN213433014U (en) 2020-07-14 2020-07-14 Vibration drying tower is used in ceramic tile production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021372621.XU CN213433014U (en) 2020-07-14 2020-07-14 Vibration drying tower is used in ceramic tile production

Publications (1)

Publication Number Publication Date
CN213433014U true CN213433014U (en) 2021-06-15

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021372621.XU Active CN213433014U (en) 2020-07-14 2020-07-14 Vibration drying tower is used in ceramic tile production

Country Status (1)

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CN (1) CN213433014U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114470817A (en) * 2022-01-11 2022-05-13 长江师范学院 Spray drying process and device for biomass polymer adsorption material

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114470817A (en) * 2022-01-11 2022-05-13 长江师范学院 Spray drying process and device for biomass polymer adsorption material

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