CN211854620U - High-efficient cooling arrangement of industrial chemicals - Google Patents

High-efficient cooling arrangement of industrial chemicals Download PDF

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Publication number
CN211854620U
CN211854620U CN202020506386.4U CN202020506386U CN211854620U CN 211854620 U CN211854620 U CN 211854620U CN 202020506386 U CN202020506386 U CN 202020506386U CN 211854620 U CN211854620 U CN 211854620U
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CN
China
Prior art keywords
cooling chamber
cooling
pipe
industrial chemicals
medium
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Expired - Fee Related
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CN202020506386.4U
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Chinese (zh)
Inventor
李凤
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Xinchang Xinkai Machinery Co ltd
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Xinchang Xinkai Machinery Co ltd
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Priority to CN202020506386.4U priority Critical patent/CN211854620U/en
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Publication of CN211854620U publication Critical patent/CN211854620U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a high-efficient cooling arrangement of industrial chemicals, including cooling chamber, medium pipe, defeated flitch, pneumatic cylinder, push pedal, motor, auger and fan, its characterized in that: the cooling chamber set up on the support, the medium pipe transversely set up in the air-intake pipe, the defeated material board transversely set up in the cooling chamber, the pneumatic cylinder set up on the cooling chamber lateral wall, the push pedal set up on the piston rod, the motor cooling chamber lateral wall on, the auger set up in the cooling chamber of screen cloth top. The utility model discloses set up the ventilative hole that runs through defeated flitch from top to bottom on defeated flitch, to need refrigerated industrial chemicals in the feeding storehouse adds the cooling chamber, industrial chemicals falls to defeated flitch one and serves, and the push pedal promotes industrial chemicals and removes on defeated flitch, and on industrial chemicals fell to the screen cloth from the blanking groove, the air current upwards flows through ventilative hole, cools down the cooling to the industrial chemicals on the defeated flitch, improves industrial chemicals's cooling efficiency and cooling effect.

Description

High-efficient cooling arrangement of industrial chemicals
Technical Field
The utility model relates to a chemical raw materials technical field specifically is a high-efficient cooling arrangement of industrial chemicals.
Background
The chemical raw materials have high heat after production, and the chemical raw materials are cooled to normal temperature to facilitate the subsequent treatment of the chemical raw materials. Current industrial chemicals cooling device is generally by setting up on the cooler bin and through the cooling device of aspiration channel rather than the intercommunication, but it has work efficiency low, industrial chemicals can not fully contact with the air current, operating personnel intensity of labour is big, the not good problem of industrial chemicals cooling effect.
SUMMERY OF THE UTILITY MODEL
The utility model aims at overcoming the problem that work efficiency that current industrial chemicals cooling device exists is low, industrial chemicals can not fully contact with the air current, operating personnel intensity of labour is big, industrial chemicals cooling effect is not good, providing a structural design is reasonable, work efficiency is high, industrial chemicals can fully contact with the air current, operating personnel intensity of labour is little, industrial chemicals cooling effect is good's high-efficient cooling arrangement of industrial chemicals.
The utility model provides a technical scheme that technical problem taken does:
the utility model provides a high-efficient cooling arrangement of industrial chemicals, includes cooling chamber, medium pipe, defeated flitch, pneumatic cylinder, push pedal, motor, auger and fan, its characterized in that: the cooling chamber is arranged on a bracket, a feeding bin and an exhaust pipe are arranged at the top of the cooling chamber, an air inlet pipe is arranged at the bottom of the cooling chamber, a discharge pipe is arranged on the outer side wall of the cooling chamber, a transverse screen is arranged in the cooling chamber, one end of the screen is connected with the discharge pipe, the cooling chamber is connected with the bracket, the feeding bin, the exhaust pipe, the air inlet pipe and the discharge pipe through welding, the connection strength between the cooling chamber and the bracket, the feeding bin, the exhaust pipe, the air inlet pipe and the discharge pipe is improved, the structural strength of cooling equipment is enhanced, the stability of chemical raw materials in the cooling process is improved, the medium pipes are transversely arranged in the air inlet pipe, the medium pipes alternately penetrate out of the air inlet pipe, medium inlet pipes and medium outlet pipes are respectively arranged at two ends of the medium pipes, the medium pipes are injected into the cold medium through the medium inlet pipes, and the surfaces of the medium, the cooling device can increase the contact area of a cold medium and a medium pipe, further improve the cooling effect of the medium pipe on peripheral air flow, and enhance the cooling effect of the cooled air flow on chemical raw materials, wherein a material conveying plate is transversely arranged in a cooling chamber, one end of the material conveying plate is connected with the inner side wall of the cooling chamber, a blanking groove is arranged between the other end of the material conveying plate and the inner side wall of the cooling chamber, the chemical raw materials to be cooled are added into the cooling chamber through a feeding bin, the chemical raw materials fall onto one end of the material conveying plate, a hydraulic cylinder and a piston rod push a push plate to move, the push plate pushes the chemical raw materials to move on the material conveying plate, so that the chemical raw materials fall onto a screen mesh from the blanking groove, the air flow upwards flows through ventilation holes, the chemical raw materials on the material conveying plate are cooled, the cooling efficiency and the cooling effect of the chemical raw materials are further improved, the hydraulic cylinder is provided with a piston rod, the piston rod transversely extends into the cooling chamber above the material conveying plate, the hydraulic cylinder is arranged on the cooling chamber through a bolt, the mounting efficiency and the stability after mounting of the hydraulic cylinder are improved, the stability of the hydraulic cylinder in the working process can also be enhanced, the push plate is arranged on the piston rod, the hydraulic cylinder and the piston rod push the push plate to transversely move above the material conveying plate in the cooling chamber, the push plate drives the shift lever to move back and forth, the shift lever can shift chemical raw materials above the material conveying plate, the chemical raw materials are contacted with air flow flowing upwards through the ventilation holes, the chemical raw materials are fully cooled, the cooling efficiency and the cooling effect of the chemical raw materials are improved, the motor is arranged on the outer side wall of the motor cooling chamber through a bolt, the mounting efficiency and the stability after mounting of the motor are improved, and the stability of the motor in the working process can also be enhanced, the auger set up in the cooling chamber of screen cloth top to be connected auger one end and motor, the motor drives the auger rotatory, the auger stirs the industrial chemicals of screen cloth top, makes industrial chemicals fully contact with the air current, carries out abundant cooling processing to industrial chemicals, improves industrial chemicals's cooling effect, the fan setting in exhaust pipe, the effect of fan is discharged the air current in the cooling chamber from the exhaust pipe, produces the negative pressure in the cooling chamber, makes the outside air current of cooling chamber flow in the cooling chamber through the air-supply line, the cold medium in the air-supply line medium pipe is cooled down to the air current that enters into the cooling chamber through the air-supply line and is cooled down, has improved industrial chemicals's cooling efficiency, reinforcing industrial chemicals's cooling effect.
Preferably, the cooling chamber in the bottom be provided with the stand perpendicularly, be provided with the guide plate on the stand, set up the guide plate into arc structure, and set up the fresh air inlet that runs through the guide plate from top to bottom on the guide plate, the air current in the cooling chamber is discharged from the exhaust pipe in the effect of fan, produce the negative pressure in the cooling chamber, make the outside air current of cooling chamber flow in the cooling chamber through the air-supply line, cold medium in the medium pipe in the air-supply line cools off the air current that enters into the cooling chamber through the air-supply line, the air current after the cooling can evenly rise in the cooling chamber under the effect of fresh air inlet on guide plate and guide plate, make the air current of lower temperature evenly distributed in the cooling chamber, can improve chemical industry raw materials's cooling efficiency and cooling effect, reinforcing chemical.
Preferably, screen cloth in the cooling chamber set up to the arc structure, set up the screen cloth into the arc structure, the air current after both being convenient for get into the cooling chamber after cooling rises and cools off industrial chemicals, the auger of also being convenient for stirs the industrial chemicals above the screen cloth, carry out abundant cooling to industrial chemicals, improve industrial chemicals's cooling efficiency and cooling uniformity, on the other hand, after industrial chemicals cools off the completion, the auger promotes the industrial chemicals in the screen cloth and removes, make the industrial chemicals after the cooling discharge pipe discharge, further improve work efficiency, aperture with on the screen cloth is less than industrial chemicals's diameter, the lower air current of both being convenient for temperature flows in the industrial chemicals above the screen cloth, can avoid industrial chemicals to fall down from the screen cloth again, the waste of industrial chemicals has been reduced.
Preferably, the medium pipe is set to be any one of a circular structure, an oval structure, a wave-shaped structure, a spiral structure or a serpentine pipe, cold medium is injected into the medium pipe through the medium inlet pipe, the surface of the medium pipe is set to be a curved surface structure, the contact area between the cold medium and the medium pipe can be increased, the cooling effect of the medium pipe on peripheral air flow of the medium pipe is further improved, the cooling effect of the cooled air flow on chemical raw materials is enhanced, the cooling efficiency of the chemical raw materials is improved, and the labor intensity of operators is reduced.
Preferably, defeated flitch on set up the ventilative hole that runs through defeated flitch from top to bottom, to need refrigerated industrial chemicals in the feeding storehouse adds the cooling chamber, industrial chemicals falls to defeated flitch one serve, the pneumatic cylinder, the piston rod promotes the push pedal and removes, the push pedal promotes industrial chemicals and removes on defeated flitch, make industrial chemicals fall the screen cloth from the blanking groove on, the air current upwards flows through ventilative hole, cools down to the industrial chemicals on the defeated flitch, further improves industrial chemicals's cooling efficiency and cooling effect.
Preferably, the push pedal on be provided with the driving lever to be provided with the silo between driving lever and driving lever, pneumatic cylinder, piston rod promote the push pedal in the defeated flitch top lateral shifting of cooling chamber, the push pedal drives driving lever round trip movement, the driving lever can be stirred the industrial chemicals of defeated flitch top, make industrial chemicals and the air current contact through ventilative hole upwards flowing, carry out abundant cooling treatment to industrial chemicals, improve industrial chemicals's cooling efficiency and cooling effect.
Has the advantages that: the utility model discloses set up the screen cloth in the cooling chamber into the arc structure, set up the screen cloth into the arc structure, the air current after both being convenient for get into the cooling chamber after cooling rises and cools off industrial chemicals, the auger of also being convenient for mixs the industrial chemicals of screen cloth top, carry out abundant cooling to industrial chemicals, improve industrial chemicals's cooling efficiency and cooling homogeneity, on the other hand, after industrial chemicals cools off, the auger promotes the industrial chemicals in the screen cloth and removes, make the industrial chemicals after the cooling discharge pipe discharge, further improve work efficiency, aperture with on the screen cloth is less than industrial chemicals's diameter, the lower air current of temperature of both being convenient for flows in the industrial chemicals of screen cloth top, can avoid industrial chemicals to fall from the screen cloth again, the waste of industrial chemicals has been reduced.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic view of a part of the structure of the present invention, illustrating the connection structure of the air inlet pipe and the medium pipe.
Fig. 3 is a schematic view of a part of the structure of the present invention, illustrating the connection structure of the cooling chamber and the material conveying plate.
Fig. 4 is a schematic view of a part of the structure of the present invention, showing the connection structure of the push plate and the lever.
Fig. 5 is a schematic view of a part of the structure of the present invention, showing the connection structure of the packing auger and the screen mesh.
Fig. 6 is a schematic view of a part of the structure of the present invention, illustrating the connection structure of the guide plate and the air inlet hole.
Fig. 7 is a schematic diagram of another embodiment of the present invention.
In the figure: 1. the cooling device comprises a cooling chamber, 2 medium pipes, 3 material conveying plates, 4 hydraulic cylinders, 5 push plates, 6 motors, 7 packing augers, 8 fans, 9 supports, 10 exhaust pipes, 11 material feeding bins, 12 air inlet pipes, 13 material outlet pipes, 14 screens, 15 stand columns, 16 guide plates, 17 air inlet holes, 18 medium inlet pipes, 19 medium outlet pipes, 20 blanking tanks, 21 air permeable holes, 22 piston rods, 23 deflector rods, 24 material tanks and 25 filter screens.
Detailed Description
The present invention will be described in more detail with reference to the accompanying drawings.
The first embodiment is as follows:
as shown in the attached figures 1-6, the high-efficiency cooling equipment for the chemical raw materials comprises a cooling chamber 1, a medium pipe 2, a material conveying plate 3, a hydraulic cylinder 4, a push plate 5, a motor 6, an auger 7 and a fan 8, and is characterized in that: the cooling chamber 1 is arranged on a support 9, a feeding bin 11 and an exhaust pipe 10 are arranged at the top of the cooling chamber 1, an air inlet pipe 12 is arranged at the bottom of the cooling chamber 1, a discharge pipe 13 is arranged on the outer side wall of the cooling chamber 1, a transverse screen 14 is arranged in the cooling chamber 1, one end of the screen 14 is connected with the discharge pipe 13, the cooling chamber 1 is connected with the support 9, the feeding bin 11, the exhaust pipe 10, the air inlet pipe 12 and the discharge pipe 13 through welding, the connection strength between the cooling chamber 1 and the support 9, the feeding bin 11, the exhaust pipe 10, the air inlet pipe 12 and the discharge pipe 13 is improved, the structural strength of cooling equipment is enhanced, the stability of chemical raw materials in the cooling process is improved, the medium pipe 2 is transversely arranged in the air inlet pipe 12, the medium pipe 2 alternately penetrates out of the air inlet pipe 12, and medium inlet pipes 18 and medium outlet pipes 19 are respectively arranged at two ends of the medium pipe, the medium inlet pipe 18 is used for injecting the medium pipe 2 into the cold medium, the surface of the medium pipe 2 is set to be a curved surface structure, the contact area between the cold medium and the medium pipe 2 can be increased, the cooling effect of the medium pipe 2 on peripheral air flow is further improved, the cooling effect of the cooled air flow on chemical raw materials is enhanced, the conveying plate 3 is transversely arranged in the cooling chamber 1, one end of the conveying plate 3 is connected with the inner side wall of the cooling chamber 1, a blanking groove 20 is arranged between the other end of the conveying plate 3 and the inner side wall of the cooling chamber 1, the chemical raw materials to be cooled are added into the cooling chamber 1 through the feeding bin 11, the chemical raw materials fall onto one end of the conveying plate 3, the hydraulic cylinder 4 and the piston rod 22 push the push plate 5 to move, the push plate 5 pushes the chemical raw materials to move on the conveying plate 3, so that the chemical raw materials fall onto the screen 14 from the blanking groove 20, and the air flow upwards, the cooling device comprises a hydraulic cylinder 4, a piston rod 22, a push plate 5, a piston rod 22, a deflector rod 23, a deflector rod 3, a ventilation hole 21, a fan blade, a fan cover, a fan, improve industrial chemicals's cooling efficiency and cooling effect, motor 6 cooling chamber 1 lateral wall on, motor 6 passes through the bolt and installs on cooling chamber 1, improve the installation effectiveness and the stability after the installation of motor 6, also can strengthen the stability of motor 6 in the course of the work, auger 7 set up in cooling chamber 1 above screen cloth 14 to be connected auger 7 one end and motor 6, motor 6 drives auger 7 and rotates, auger 7 stirs the industrial chemicals above screen cloth 14, makes industrial chemicals fully contact with the air current, carries out abundant cooling treatment to industrial chemicals, improves industrial chemicals's cooling effect, fan 8 set up in exhaust pipe 10, the effect of fan 8 is discharged the air current in cooling chamber 1 from exhaust pipe 10, produces the negative pressure in cooling chamber 1, makes the air current of cooling chamber 1 outside flow in cooling chamber 1 through air-supply line 12, the cold medium in the medium pipe 2 in the air inlet pipe 12 cools the air flow entering the cooling chamber 1 through the air inlet pipe 12, so that the cooling efficiency of the chemical raw materials is improved, and the cooling effect of the chemical raw materials is enhanced.
Preferably, a vertical column 15 is vertically arranged at the bottom in the cooling chamber 1, a deflector 16 is arranged on the vertical column 15, the deflector 16 is arranged into an arc structure, an air inlet hole 17 which vertically penetrates through the guide plate 16 is formed in the guide plate 16, air flow in the cooling chamber 1 is discharged from the exhaust pipe 10 under the action of the fan 8, negative pressure is generated in the cooling chamber 1, the air flow outside the cooling chamber 1 flows into the cooling chamber 1 through the air inlet pipe 12, the air flow entering the cooling chamber 1 through the air inlet pipe 12 is cooled by cold media in the medium pipe 2 in the air inlet pipe 12, the cooled air flow can uniformly rise in the cooling chamber 1 under the action of the air inlet hole 17 in the guide plate 16 and the guide plate 16, the air flow with lower temperature is uniformly distributed in the cooling chamber 1, the cooling efficiency and the cooling effect of chemical raw materials can be improved, and the cooling uniformity of the chemical raw materials is enhanced.
Preferably, screen cloth 14 in the cooling chamber 1 set up to the arc structure, set up screen cloth 14 to the arc structure, the air current after both being convenient for get into cooling chamber 1 after the cooling rises and cools off industrial chemicals, the industrial chemicals of screen cloth 14 top is mixd to auger 7 also being convenient for, carry out abundant cooling to industrial chemicals, improve industrial chemicals's cooling efficiency and cooling uniformity, on the other hand, after industrial chemicals cools off the completion, auger 7 promotes the industrial chemicals in the screen cloth 14 and removes, make the industrial chemicals after the cooling discharge pipe 13 discharge, further improve work efficiency, be less than industrial chemicals's diameter with the aperture on the screen cloth 14, the lower air current of both being convenient for temperature flows in the industrial chemicals of screen cloth 14 top, can avoid industrial chemicals to fall from screen cloth 14 again, the waste of chemical industry has been reduced.
Preferably, medium pipe 2 set up to wave shape structure, advance pipe 18 through the medium and inject cold medium into medium pipe 2 in, set up the surface of medium pipe 2 into curved surface structure, can increase the area of contact of cold medium and medium pipe 2, and then improve medium pipe 2 to the cooling effect of its peripheral air current, the air current after the reinforcing cooling is to the cooling effect of industrial chemicals, improves industrial chemicals's cooling efficiency, reduces operating personnel's intensity of labour.
Preferably, defeated flitch 3 on set up the ventilative hole 21 that runs through defeated flitch 3 from top to bottom, to need refrigerated industrial chemicals in the cooling chamber 1 is added through feeding storehouse 11, industrial chemicals falls to defeated flitch 3 one and serves, pneumatic cylinder 4, piston rod 22 promotes push pedal 5 and removes, push pedal 5 promotes industrial chemicals and removes on defeated flitch 3, make industrial chemicals fall on screen cloth 14 from blanking groove 20, the air current upwards flows through ventilative hole 21, cool down the cooling to the industrial chemicals on defeated flitch 3, further improve industrial chemicals's cooling efficiency and cooling effect.
Preferably, push pedal 5 on be provided with driving lever 23 to be provided with silo 24 between driving lever 23 and driving lever 23, pneumatic cylinder 4, piston rod 22 promote the 3 top lateral shifting of defeated flitch of push pedal 5 in cooling chamber 1, push pedal 5 drives driving lever 23 round trip movement, driving lever 23 can stir the industrial chemicals of defeated flitch 3 tops, make industrial chemicals and the air current contact of the through ventilative hole 21 upward flow, carry out abundant cooling treatment to industrial chemicals, the cooling efficiency and the cooling effect of improvement industrial chemicals.
Example two:
as shown in the attached figure 7, the high-efficient cooling arrangement of industrial chemicals, including cooling chamber 1, medium pipe 2, defeated flitch 3, pneumatic cylinder 4, push pedal 5, motor 6, auger 7 and fan 8, its characterized in that: the cooling chamber 1 is arranged on a support 9, a feeding bin 11 and an exhaust pipe 10 are arranged at the top of the cooling chamber 1, an air inlet pipe 12 is arranged at the bottom of the cooling chamber 1, a discharge pipe 13 is arranged on the outer side wall of the cooling chamber 1, a transverse screen 14 is arranged in the cooling chamber 1, one end of the screen 14 is connected with the discharge pipe 13, the cooling chamber 1 is connected with the support 9, the feeding bin 11, the exhaust pipe 10, the air inlet pipe 12 and the discharge pipe 13 through welding, the connection strength between the cooling chamber 1 and the support 9, the feeding bin 11, the exhaust pipe 10, the air inlet pipe 12 and the discharge pipe 13 is improved, the structural strength of cooling equipment is enhanced, the stability of chemical raw materials in the cooling process is improved, the medium pipe 2 is transversely arranged in the air inlet pipe 12, the medium pipe 2 alternately penetrates out of the air inlet pipe 12, and medium inlet pipes 18 and medium outlet pipes 19 are respectively arranged at two ends of the medium pipe, the medium inlet pipe 18 is used for injecting the medium pipe 2 into the cold medium, the surface of the medium pipe 2 is set to be a curved surface structure, the contact area between the cold medium and the medium pipe 2 can be increased, the cooling effect of the medium pipe 2 on peripheral air flow is further improved, the cooling effect of the cooled air flow on chemical raw materials is enhanced, the conveying plate 3 is transversely arranged in the cooling chamber 1, one end of the conveying plate 3 is connected with the inner side wall of the cooling chamber 1, a blanking groove 20 is arranged between the other end of the conveying plate 3 and the inner side wall of the cooling chamber 1, the chemical raw materials to be cooled are added into the cooling chamber 1 through the feeding bin 11, the chemical raw materials fall onto one end of the conveying plate 3, the hydraulic cylinder 4 and the piston rod 22 push the push plate 5 to move, the push plate 5 pushes the chemical raw materials to move on the conveying plate 3, so that the chemical raw materials fall onto the screen 14 from the blanking groove 20, and the air flow upwards, the cooling device comprises a hydraulic cylinder 4, a piston rod 22, a push plate 5, a piston rod 22, a deflector rod 23, a deflector rod 3, a ventilation hole 21, a fan blade, a fan cover, a fan, improve industrial chemicals's cooling efficiency and cooling effect, motor 6 cooling chamber 1 lateral wall on, motor 6 passes through the bolt and installs on cooling chamber 1, improve the installation effectiveness and the stability after the installation of motor 6, also can strengthen the stability of motor 6 in the course of the work, auger 7 set up in cooling chamber 1 above screen cloth 14 to be connected auger 7 one end and motor 6, motor 6 drives auger 7 and rotates, auger 7 stirs the industrial chemicals above screen cloth 14, makes industrial chemicals fully contact with the air current, carries out abundant cooling treatment to industrial chemicals, improves industrial chemicals's cooling effect, fan 8 set up in exhaust pipe 10, the effect of fan 8 is discharged the air current in cooling chamber 1 from exhaust pipe 10, produces the negative pressure in cooling chamber 1, makes the air current of cooling chamber 1 outside flow in cooling chamber 1 through air-supply line 12, the cold medium in the medium pipe 2 in the air inlet pipe 12 cools the air flow entering the cooling chamber 1 through the air inlet pipe 12, so that the cooling efficiency of the chemical raw materials is improved, and the cooling effect of the chemical raw materials is enhanced.
Preferably, a vertical column 15 is vertically arranged at the bottom in the cooling chamber 1, a deflector 16 is arranged on the vertical column 15, the deflector 16 is arranged into an arc structure, an air inlet hole 17 which vertically penetrates through the guide plate 16 is formed in the guide plate 16, air flow in the cooling chamber 1 is discharged from the exhaust pipe 10 under the action of the fan 8, negative pressure is generated in the cooling chamber 1, the air flow outside the cooling chamber 1 flows into the cooling chamber 1 through the air inlet pipe 12, the air flow entering the cooling chamber 1 through the air inlet pipe 12 is cooled by cold media in the medium pipe 2 in the air inlet pipe 12, the cooled air flow can uniformly rise in the cooling chamber 1 under the action of the air inlet hole 17 in the guide plate 16 and the guide plate 16, the air flow with lower temperature is uniformly distributed in the cooling chamber 1, the cooling efficiency and the cooling effect of chemical raw materials can be improved, and the cooling uniformity of the chemical raw materials is enhanced.
Preferably, screen cloth 14 in the cooling chamber 1 set up to the arc structure, set up screen cloth 14 to the arc structure, the air current after both being convenient for get into cooling chamber 1 after the cooling rises and cools off industrial chemicals, the industrial chemicals of screen cloth 14 top is mixd to auger 7 also being convenient for, carry out abundant cooling to industrial chemicals, improve industrial chemicals's cooling efficiency and cooling uniformity, on the other hand, after industrial chemicals cools off the completion, auger 7 promotes the industrial chemicals in the screen cloth 14 and removes, make the industrial chemicals after the cooling discharge pipe 13 discharge, further improve work efficiency, be less than industrial chemicals's diameter with the aperture on the screen cloth 14, the lower air current of both being convenient for temperature flows in the industrial chemicals of screen cloth 14 top, can avoid industrial chemicals to fall from screen cloth 14 again, the waste of chemical industry has been reduced.
Preferably, medium pipe 2 set up to helical structure, advance pipe 18 through the medium and inject cold medium into medium pipe 2, set up the surface of medium pipe 2 into curved surface structure, can increase the area of contact of cold medium and medium pipe 2, and then improve medium pipe 2 to the cooling effect of its peripheral air current, the air current after the reinforcing cooling is to the cooling effect of industrial chemicals, improves industrial chemicals's cooling efficiency, reduces operating personnel's intensity of labour.
Preferably, defeated flitch 3 on set up the ventilative hole 21 that runs through defeated flitch 3 from top to bottom, to need refrigerated industrial chemicals in the cooling chamber 1 is added through feeding storehouse 11, industrial chemicals falls to defeated flitch 3 one and serves, pneumatic cylinder 4, piston rod 22 promotes push pedal 5 and removes, push pedal 5 promotes industrial chemicals and removes on defeated flitch 3, make industrial chemicals fall on screen cloth 14 from blanking groove 20, the air current upwards flows through ventilative hole 21, cool down the cooling to the industrial chemicals on defeated flitch 3, further improve industrial chemicals's cooling efficiency and cooling effect.
Preferably, push pedal 5 on be provided with driving lever 23 to be provided with silo 24 between driving lever 23 and driving lever 23, pneumatic cylinder 4, piston rod 22 promote the 3 top lateral shifting of defeated flitch of push pedal 5 in cooling chamber 1, push pedal 5 drives driving lever 23 round trip movement, driving lever 23 can stir the industrial chemicals of defeated flitch 3 tops, make industrial chemicals and the air current contact of the through ventilative hole 21 upward flow, carry out abundant cooling treatment to industrial chemicals, the cooling efficiency and the cooling effect of improvement industrial chemicals.
Preferably, be provided with the filter screen 25 in the air-supply line 12 of medium pipe 2 below to with filter screen 25 adoption activated carbon material preparation, can filter the air current that enters into cooling chamber 1 through air-supply line 12 through filter screen 25, adsorb the impurity in the air current, avoid impurity to cause the pollution to industrial chemicals in entering into cooling chamber 1, improve industrial chemicals's clean degree.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
The utility model discloses the part that does not relate to all is the same with prior art or can adopt prior art to realize.

Claims (6)

1. The utility model provides a high-efficient cooling arrangement of industrial chemicals, includes cooling chamber, medium pipe, defeated flitch, pneumatic cylinder, push pedal, motor, auger and fan, its characterized in that: the cooling chamber is arranged on a bracket, a feeding bin and an exhaust pipe are arranged at the top of the cooling chamber, an air inlet pipe is arranged at the bottom of the cooling chamber, a discharge pipe is arranged on the outer side wall of the cooling chamber, a transverse screen is arranged in the cooling chamber, one end of the screen is connected with the discharge pipe, a medium pipe is transversely arranged in the air inlet pipe, the medium pipe alternately penetrates out of the air inlet pipe, a medium inlet pipe and a medium outlet pipe are respectively arranged at two ends of the medium pipe, the material conveying plate is transversely arranged in the cooling chamber, one end of the material conveying plate is connected with the inner side wall of the cooling chamber, a blanking groove is arranged between the other end of the material conveying plate and the inner side wall of the cooling chamber, the hydraulic cylinder is arranged on the outer side wall of the cooling chamber, a piston rod is arranged on the hydraulic cylinder, the piston rod transversely extends into the cooling chamber above the material conveying plate, the push plate is arranged on the, the packing auger is arranged in the cooling chamber above the screen, one end of the packing auger is connected with the motor, and the fan is arranged in the exhaust pipe.
2. The efficient cooling equipment for chemical raw materials, according to claim 1, is characterized in that: the cooling chamber is characterized in that a vertical column is vertically arranged at the bottom in the cooling chamber, a guide plate is arranged on the vertical column, the guide plate is arranged into an arc-shaped structure, and an air inlet hole which penetrates through the guide plate from top to bottom is formed in the guide plate.
3. The efficient cooling equipment for chemical raw materials, according to claim 1, is characterized in that: the screen cloth in the cooling chamber is of an arc-shaped structure.
4. The efficient cooling equipment for chemical raw materials, according to claim 1, is characterized in that: the medium pipe is set to be any one structure of a round pipe, an oval pipe, a wave-shaped pipe, a spiral pipe or a coiled pipe.
5. The efficient cooling equipment for chemical raw materials, according to claim 1, is characterized in that: the material conveying plate is provided with ventilation holes which vertically penetrate through the material conveying plate.
6. The efficient cooling equipment for chemical raw materials, according to claim 1, is characterized in that: the push plate is provided with a shifting lever, and a trough is arranged between the shifting lever and the shifting lever.
CN202020506386.4U 2020-04-09 2020-04-09 High-efficient cooling arrangement of industrial chemicals Expired - Fee Related CN211854620U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020506386.4U CN211854620U (en) 2020-04-09 2020-04-09 High-efficient cooling arrangement of industrial chemicals

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020506386.4U CN211854620U (en) 2020-04-09 2020-04-09 High-efficient cooling arrangement of industrial chemicals

Publications (1)

Publication Number Publication Date
CN211854620U true CN211854620U (en) 2020-11-03

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020506386.4U Expired - Fee Related CN211854620U (en) 2020-04-09 2020-04-09 High-efficient cooling arrangement of industrial chemicals

Country Status (1)

Country Link
CN (1) CN211854620U (en)

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Granted publication date: 20201103