CN213984378U - Chemical industry is with high-efficient chemical material sieve separator with drying function - Google Patents
Chemical industry is with high-efficient chemical material sieve separator with drying function Download PDFInfo
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- CN213984378U CN213984378U CN202022831383.0U CN202022831383U CN213984378U CN 213984378 U CN213984378 U CN 213984378U CN 202022831383 U CN202022831383 U CN 202022831383U CN 213984378 U CN213984378 U CN 213984378U
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Abstract
The utility model relates to a chemical industry technical field specifically is a chemical industry is with high-efficient chemical material sieve separator with drying function, including two foot rests, two the foot rest upside is all seted up flutedly, two the inside fixedly connected with sieve separator of recess, two supports of a side fixedly connected with of foot rest are kept away from to the sieve separator, two the equal fixedly connected with curved piece in one side of sieve separator, two are kept away from to the support curved piece of inside fixedly connected with drying device of piece. The utility model has the advantages that: this high-efficient chemical material sieve separator for chemical industry with drying function through letting in high temperature liquid in the liquid pipe, can make the inner wall heating to dry chemical material, through heating the inner wall, can effectively strengthen the inside temperature of cavity, through set up the liquid pipe in the inner wall outside, thereby heat the inner wall, reached the constant temperature effect of cavity and inner wall, the difference in temperature that appears when having solved current hot air drying air outlet and material contact, the dry uneven problem of being heated.
Description
Technical Field
The utility model relates to a chemical industry technical field, especially a chemical industry is with high-efficient chemical material sieve separator with drying function.
Background
With the progress of science and technology, the requirements on chemical material screening machines are higher and higher, after some chemical materials are produced, the chemical materials are required to be screened after being dried, so that workers can more conveniently classify the materials, most of the existing screening machines are provided with drying boxes, but the existing drying boxes cannot turn over the materials when being used, so that the drying effect of the chemical materials is not ideal, the screened materials need manual secondary drying, the labor cost is increased, the high-efficiency chemical material screening machine for chemical industry with the drying function, disclosed in Chinese utility model patent application publication No. CN211651067U, drives the rotary table to rotate through the mutual matching of the screw rod, the motor, the rotary table, the shovel board, the movable block, the movable rake and the movable pipe when the screw rod rotates, the scraper blade contacts with the material on the picture peg this moment, and stir the material, improve the drying efficiency of material, it drives back rectilinear movement at the screw rod to remove the harrow simultaneously, it drives the material upset to remove harrow bottom, it is more even to make the material be heated from top to bottom, drying effect is better, need not artifical secondary drying after the screening, the human cost has been reduced, however, this high-efficient chemical material sieve separator for chemical industry with drying function, the difference in temperature that appears when having hot air drying air outlet and material contact, the dry uneven problem of being heated.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome prior art's shortcoming, provide a chemical industry is with high-efficient chemical material sieve separator with drying function.
The purpose of the utility model is realized through the following technical scheme: a high-efficiency chemical material screening machine with a drying function for chemical engineering comprises two foot rests, wherein grooves are formed in the upper sides of the two foot rests, a screening machine is fixedly connected to the inner parts of the two grooves, one side surface, away from the foot rests, of the screening machine is fixedly connected with two supports, one sides, away from the screening machine, of the two supports are fixedly connected with bent blocks, and drying devices are fixedly connected to the inner parts of the two bent blocks;
a discharging hole is fixedly connected to one side of the drying device, a through hole is formed in the axis of one side, away from the discharging hole, of the drying device, a first bearing is sleeved inside the through hole, a shaft is sleeved inside the first bearing, a motor is fixedly connected to one side, away from the first bearing, of the shaft, a liquid inlet hole is fixedly connected to the curved surface, close to the discharging hole, of the drying device, a liquid outlet hole is fixedly connected to the curved surface, close to the through hole, of the drying device, and a discharge hole is fixedly connected to the curved surface, close to the curved block, of the drying device; the drying device is characterized in that a cavity is formed in the drying device, a side face fixedly connected with blade plate of the motor is far away from the shaft, the blade plate is arranged in the cavity, one end fixedly connected with second bearing of the motor is far away from the shaft, a fixed block is sleeved on the outer surface of the second bearing, one side fixedly connected with inner wall of the second bearing is far away from the fixed block, a liquid pipe is sleeved on one side, far away from the fixed block, of the inner wall, and a heat preservation layer is fixedly connected with one side, far away from.
Optionally, the liquid pipe is arranged inside the cavity formed by the heat insulation layer and the inner wall.
Optionally, the cavities of the liquid inlet hole and the liquid outlet hole are communicated with the cavity of the liquid pipe.
Optionally, a screening chamber is arranged inside the screening machine, one side of the screening chamber close to the discharge port is fixedly connected with a screen, and one side of the screening chamber far away from the discharge port is fixedly connected with an inclined plate.
Optionally, a cavity is formed inside the discharge port, and the cavity of the discharge port is communicated with the cavity and the cavity of the screening machine.
Optionally, a side fixedly connected with first feed opening of discharge gate is kept away from to the sieve separator, the other end fixedly connected with second feed opening of first feed opening is being kept away from to the sieve separator, the cavity and the screening chamber of first feed opening are linked together, the cavity and the screening chamber of second feed opening are linked together.
Optionally, the screen cloth is above the swash plate, just the one end fixed connection swash plate of discharge gate is kept away from to the screen cloth one end.
Optionally, one side of the screen, which is far away from the discharge port, is lower than the other side, one side of the screen, which is far away from the discharge port, is above the second feed opening, one side of the inclined plate, which is close to the screen, is higher than the other side, and the other side of the inclined plate is above the first feed opening.
The utility model has the advantages of it is following:
this high-efficient chemical material sieve separator is used to chemical industry with drying function, through let in high temperature liquid in the liquid pipe, can make the inner wall heating, thereby dry chemical material, through heating the inner wall, can effectively strengthen the inside temperature of cavity, through be provided with revolution mechanic in the cavity inside, and an axle, the acanthus leaf, first bearing, cooperation setting between second bearing and the fixed block, better messenger's chemical material and inner wall and the inside air contact of cavity, chemical material's drying efficiency has been guaranteed, through set up the liquid pipe in the inner wall outside, thereby heat the inner wall, the constant temperature effect of cavity and inner wall has been reached, the difference in temperature that appears when having solved current hot air drying air outlet and material contact, the dry uneven problem of being heated.
Drawings
Fig. 1 is a schematic overall structure diagram of the present invention;
FIG. 2 is a schematic structural view of a cross-section of an assembly body of the present invention;
fig. 3 is a schematic structural diagram of one side of the assembly body of the present invention.
In the figure: 1-foot rest, 2-groove, 3-screening machine, 4-bracket, 5-bent block, 6-drying device, 7-discharging hole, 8-through hole, 9-first bearing, 10-shaft, 11-motor, 12-liquid inlet hole, 13-liquid outlet hole, 14-discharging hole, 15-cavity, 16-blade plate, 17-second bearing, 18-fixed block, 19-inner wall, 20-liquid pipe, 21-heat insulation layer, 22-screening cavity, 23-screen, 24-inclined plate, 25-first discharging hole, 26-second discharging hole.
Detailed Description
The invention will be further described with reference to the accompanying drawings, but the scope of the invention is not limited to the following description.
As shown in fig. 1-3, a high-efficiency chemical material screening machine with a drying function for chemical industry comprises two foot rests 1, wherein grooves 2 are respectively formed in the upper sides of the two foot rests 1, a screening machine 3 is fixedly connected inside the two grooves 2, two supports 4 are fixedly connected to one side surfaces, away from the foot rests 1, of the screening machine 3, one sides, away from the screening machine 3, of the two supports 4 are fixedly connected with bent blocks 5, and drying devices 6 are fixedly connected inside the two bent blocks 5;
a discharging hole 7 is fixedly connected to one side of the drying device 6, a through hole 8 is formed in the axis of one side, away from the discharging hole 7, of the drying device 6, a first bearing 9 is sleeved inside the through hole 8, a shaft 10 is sleeved inside the first bearing 9, a motor 11 is fixedly connected to one side, away from the first bearing 9, of the shaft 10, a liquid inlet hole 12 is fixedly connected to the curved surface, close to the discharging hole 7, of the drying device 6, a liquid outlet hole 13 is fixedly connected to the curved surface, close to the through hole 8, of the drying device 6, and a discharge hole 14 is fixedly connected to the curved surface, close to the curved block 5, of the drying device 6; cavity 15 has been seted up to drying device 6 inside, a side fixedly connected with leaf 16 of motor 11 is kept away from to axle 10, leaf 16 is inside cavity 15, the one end fixedly connected with second bearing 17 of motor 11 is kept away from to axle 10, fixed block 18 has been cup jointed to the surface of second bearing 17, one side fixedly connected with inner wall 19 of second bearing 17 is kept away from to fixed block 18, liquid pipe 20 has been cup jointed to one side that fixed block 18 was kept away from to inner wall 19, one side fixedly connected with heat preservation 21 that fixed block 18 was kept away from to inner wall 19.
The liquid tube 20 is formed inside the cavity by the heat insulating layer 21 and the inner wall 19.
The cavities of liquid inlet hole 12 and liquid outlet hole 13 are communicated with the cavity of liquid tube 20.
In order to prevent the material from blocking, the screening chamber 22 has been seted up to sieve 3 inside, and the one side fixedly connected with screen cloth 23 that is close to discharge gate 14 of screening chamber 22, one side fixedly connected with swash plate 24 that the discharge gate is kept away from in screening chamber 22 reach the effect of the screening material of being convenient for.
A cavity is formed in the discharge port 14, and the cavity of the discharge port 14 is communicated with the cavity 15 and the cavity of the screening machine 3.
A first feed opening 25 is fixedly connected to one side face, away from the discharge opening 14, of the screening machine 3, a second feed opening 26 is fixedly connected to the other end, away from the first feed opening 25, of the screening machine 3, a cavity of the first feed opening 25 is communicated with the screening cavity 22, and a cavity of the second feed opening 26 is communicated with the screening cavity 22.
The screen 23 is arranged above the inclined plate 24, and one end of the screen 23 far away from the discharge hole 14 is fixedly connected with one end of the inclined plate 24.
In order to prevent the material from being blocked, one side of the screen 23, which is far away from the discharge hole 14, is lower than the other side, one side of the screen 23, which is far away from the discharge hole 14, is above the second feed opening 26, one side of the inclined plate 24, which is close to the screen 23, is higher than the other side, and the other side of the inclined plate 24 is above the first feed opening 25, so that the effect of facilitating material screening is achieved.
The working process of the utility model is as follows: through letting in high temperature liquid in liquid pipe 20, can make inner wall 19 heat, thereby dry chemical material, through heating inner wall 19, can effectively strengthen the inside temperature of cavity 15, through be provided with revolution mechanic in cavity 15 inside, and axle 10, leaf 16, first bearing 9, cooperation setting between second bearing 17 and the fixed block 18, better messenger chemical material and inner wall 19 and the 15 inside air contact of cavity, chemical material's drying efficiency has been guaranteed, through set up liquid pipe 20 in the 19 outside of inner wall, thereby heat inner wall 19, the constant temperature effect of cavity 15 and inner wall 19 has been reached, the difference in temperature that appears when having solved current hot air drying air outlet and material contact, the dry uneven problem of being heated.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (8)
1. The utility model provides a high-efficient chemical material sieve separator is used to chemical industry with drying function, includes two foot rests (1), its characterized in that: grooves (2) are formed in the upper sides of the two foot rests (1), screening machines (3) are fixedly connected inside the two grooves (2), two supports (4) are fixedly connected to one side faces, away from the foot rests (1), of the screening machines (3), one sides, away from the screening machines (3), of the two supports (4) are fixedly connected with bent blocks (5), and drying devices (6) are fixedly connected inside the two bent blocks (5);
a discharging hole (7) is fixedly connected to one side of the drying device (6), a through hole (8) is formed in the axis of one side, away from the discharging hole (7), of the drying device (6), a first bearing (9) is sleeved inside the through hole (8), a shaft (10) is sleeved inside the first bearing (9), a motor (11) is fixedly connected to one side, away from the first bearing (9), of the shaft (10), a liquid inlet hole (12) is fixedly connected to the curved surface, close to the discharging hole (7), of the drying device (6), a liquid outlet hole (13) is fixedly connected to the curved surface, close to the curved block (5), of the drying device (6), and a discharge hole (14) is fixedly connected to the curved surface, close to the curved block (5); cavity (15) have been seted up to drying device (6) inside, a side fixedly connected with leaf plate (16) of motor (11) are kept away from in axle (10), leaf plate (16) are inside cavity (15), the one end fixedly connected with second bearing (17) of motor (11) are kept away from in axle (10), fixed block (18) have been cup jointed to the surface of second bearing (17), one side fixedly connected with inner wall (19) of second bearing (17) are kept away from in fixed block (18), liquid pipe (20) have been cup jointed to one side that fixed block (18) were kept away from in inner wall (19), one side fixedly connected with heat preservation (21) of fixed block (18) are kept away from in inner wall (19).
2. The high-efficiency chemical material screening machine with the drying function for the chemical industry according to claim 1, is characterized in that: the liquid pipe (20) is arranged in the cavity formed by the heat insulation layer (21) and the inner wall (19).
3. The high-efficiency chemical material screening machine with the drying function for the chemical industry according to claim 1, is characterized in that: the cavities of the liquid inlet hole (12) and the liquid outlet hole (13) are communicated with the cavity of the liquid pipe (20).
4. The high-efficiency chemical material screening machine with the drying function for the chemical industry according to claim 1, is characterized in that: screening chamber (22) have been seted up to sieve separator (3) inside, one side fixedly connected with screen cloth (23) that is close to discharge gate (14) in screening chamber (22), one side fixedly connected with swash plate (24) of discharge gate are kept away from in screening chamber (22).
5. The high-efficiency chemical material screening machine with the drying function for the chemical industry according to claim 1, is characterized in that: a cavity is formed in the discharge port (14), and the cavity of the discharge port (14) is communicated with the cavity (15) and the cavity of the screening machine (3).
6. The high-efficiency chemical material screening machine with the drying function for the chemical industry according to claim 1, is characterized in that: a side fixedly connected with first feed opening (25) of discharge gate (14) is kept away from in sieve separator (3), other end fixedly connected with second feed opening (26) of first feed opening (25) are being kept away from in sieve separator (3), the cavity and the screening chamber (22) of first feed opening (25) are linked together, the cavity and the screening chamber (22) of second feed opening (26) are linked together.
7. The high-efficiency chemical material screening machine with the drying function for the chemical industry according to claim 4, is characterized in that: the screen (23) is arranged above the inclined plate (24), and one end, far away from the discharge hole (14), of the screen (23) is fixedly connected with one end of the inclined plate (24).
8. The high-efficiency chemical material screening machine with the drying function for the chemical industry according to claim 4, is characterized in that: one side that discharge gate (14) were kept away from in screen cloth (23) is less than the opposite side, just one side that discharge gate (14) were kept away from in screen cloth (23) is in the top of second feed opening (26), one side that swash plate (24) are close to screen cloth (23) is higher than the opposite side, just the opposite side of swash plate (24) is in the top of first feed opening (25).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022831383.0U CN213984378U (en) | 2020-12-01 | 2020-12-01 | Chemical industry is with high-efficient chemical material sieve separator with drying function |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022831383.0U CN213984378U (en) | 2020-12-01 | 2020-12-01 | Chemical industry is with high-efficient chemical material sieve separator with drying function |
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CN213984378U true CN213984378U (en) | 2021-08-17 |
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CN202022831383.0U Expired - Fee Related CN213984378U (en) | 2020-12-01 | 2020-12-01 | Chemical industry is with high-efficient chemical material sieve separator with drying function |
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CN (1) | CN213984378U (en) |
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2020
- 2020-12-01 CN CN202022831383.0U patent/CN213984378U/en not_active Expired - Fee Related
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20210817 Termination date: 20211201 |
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CF01 | Termination of patent right due to non-payment of annual fee |