CN203544978U - High-temperature resistant screw conveyor - Google Patents

High-temperature resistant screw conveyor Download PDF

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Publication number
CN203544978U
CN203544978U CN201320642289.8U CN201320642289U CN203544978U CN 203544978 U CN203544978 U CN 203544978U CN 201320642289 U CN201320642289 U CN 201320642289U CN 203544978 U CN203544978 U CN 203544978U
Authority
CN
China
Prior art keywords
cooling liquid
shell
refrigerant fluid
temperature sensor
cooling pipe
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201320642289.8U
Other languages
Chinese (zh)
Inventor
孔屏
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
SHANDONG HUITONG RUBBER BELT Co Ltd
Original Assignee
SHANDONG HUITONG RUBBER BELT Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by SHANDONG HUITONG RUBBER BELT Co Ltd filed Critical SHANDONG HUITONG RUBBER BELT Co Ltd
Priority to CN201320642289.8U priority Critical patent/CN203544978U/en
Application granted granted Critical
Publication of CN203544978U publication Critical patent/CN203544978U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses a high-temperature resistant screw conveyor, and relates to the technical field of mechanical equipment. A cooling liquid tank is arranged at one end of a shell. A motor is arranged at one end of the cooling liquid tank. A rotating shaft is arranged on the inner middle parts of the shell and the cooling liquid tank, and is connected with the motor. A plurality of blades are arranged on the rotating shaft. A material inlet is formed in the upper side of the shell, and a material outlet is formed in the lower side of the shell. A first temperature sensor is arranged at the material inlet, and a second temperature sensor is arranged at the material outlet. A cooling liquid filling port and a cooling liquid reflux inlet are formed in the upper end of the cooling liquid tank, and a cooling liquid outlet is formed in the lower end of the cooling liquid tank. A cooling pipe is wound on the shell. One end of the cooling pipe is connected with the cooling liquid reflux inlet, and the other end of the cooling pipe is connected with one end of a circulating motor of which the other end is connected with the cooling liquid outlet. According to the high-temperature resistant screw conveyor, energy resources are saved, the high-temperature resistant screw conveyor is accurate in control and simple in structure, the working efficiency is improved, and the service life is prolonged.

Description

A kind of resistant to elevated temperatures auger loader
Technical field:
The utility model relates to mechanical equipment technical field, is specifically related to a kind of resistant to elevated temperatures auger loader.
Background technology:
The shortcoming of existing conveyer is as follows: while being high-temperature material as convey materials, motor can be because of the heat conduction of screw shaft and the auger loader shell damage that very easily deforms, even get out of hand effect, cause service life shorter, maintenance, installation etc. are all very difficult, and adopt cooling mechanism easily to waste energy, and complex structure, the effect that out of reach is desirable.
Utility model content:
The purpose of this utility model is to provide a kind of resistant to elevated temperatures auger loader, and it can save the energy, and precise control, increases work efficiency, and increases the service life, simple in structure.
In order to solve the existing problem of background technology, the utility model is to adopt following technical scheme: it comprises shell 1, blade 2, S. A. 3, material inlet 4, material outlet 5, electrical motor 6, refrigerant fluid storehouse 7, it also comprises temperature sensor 1, temperature sensor 29, refrigerant fluid adds entrance 10, refrigerant fluid refluxing opening 11, cooling liquid outlet 12, circulation motor 13, cooling pipe 14, one end of shell 1 is provided with refrigerant fluid storehouse 7, and electrical motor 6 is arranged on the one end in refrigerant fluid storehouse 7, and S. A. 3 is arranged on shell 1, the centre of 7 inside, refrigerant fluid storehouse, S. A. 3 is connected with electrical motor 6, and several blades 2 are arranged on S. A. 3 uniformly, and the upper and lower sides of shell 1 is respectively arranged with material inlet 4, material outlet 5, material inlet 4, on material outlet 5, be separately installed with temperature sensor 1, temperature sensor 29, the upper end in refrigerant fluid storehouse 7 is respectively arranged with refrigerant fluid and adds entrance 10, refrigerant fluid refluxing opening 11, its lower end is provided with cooling liquid outlet 12, and cooling pipe 14 is wrapped on shell 1, and one end of cooling pipe 14 is connected with refrigerant fluid refluxing opening 11, its other end is connected with one end of circulation motor 13, and the other end of circulation motor 13 is connected with cooling liquid outlet 12.
Described cooling pipe 14 is screw type cooling pipe.
The utility model is by being wrapped in cooling pipe 14 on shell 1, adopt the mode of circulation to reach cooling, save the energy, by temperature sensor 1, temperature sensor 29, measure temperature of charge and compare, when the numerical value of temperature sensor 29 is too high, 7, refrigerant fluid storehouse reduces temperature, circulation motor 13 accelerates to reach the effect of cooling, when the numerical value of temperature sensor 1 is not high, and can be by slack-off the speed of circulation motor or stop, easy to use, save energy consumption.
The utlity model has following beneficial effect: save the energy, and precise control, increase work efficiency, increase the service life, simple in structure.
Accompanying drawing explanation:
Fig. 1 is structural representation of the present utility model;
Fig. 2 is inner structure schematic diagram of the present utility model.
The specific embodiment:
Referring to Fig. 1-Fig. 2, this specific embodiment adopts following technical scheme: it comprises shell 1, blade 2, S. A. 3, material inlet 4, material outlet 5, electrical motor 6, refrigerant fluid storehouse 7, it also comprises temperature sensor 1, temperature sensor 29, refrigerant fluid adds entrance 10, refrigerant fluid refluxing opening 11, cooling liquid outlet 12, circulation motor 13, cooling pipe 14, one end of shell 1 is provided with refrigerant fluid storehouse 7, and electrical motor 6 is arranged on the one end in refrigerant fluid storehouse 7, and S. A. 3 is arranged on shell 1, the centre of 7 inside, refrigerant fluid storehouse, S. A. 3 is connected with electrical motor 6, and several blades 2 are arranged on S. A. 3 uniformly, and the upper and lower sides of shell 1 is respectively arranged with material inlet 4, material outlet 5, material inlet 4, on material outlet 5, be separately installed with temperature sensor 1, temperature sensor 29, the upper end in refrigerant fluid storehouse 7 is respectively arranged with refrigerant fluid and adds entrance 10, refrigerant fluid refluxing opening 11, its lower end is provided with cooling liquid outlet 12, and cooling pipe 14 is wrapped on shell 1, and one end of cooling pipe 14 is connected with refrigerant fluid refluxing opening 11, its other end is connected with one end of circulation motor 13, and the other end of circulation motor 13 is connected with cooling liquid outlet 12.
Described cooling pipe 14 is screw type cooling pipe.
This specific embodiment is by being wrapped in cooling pipe 14 on shell 1, adopt the mode of circulation to reach cooling, save the energy, by temperature sensor 1, temperature sensor 29, measure temperature of charge and compare, when the numerical value of temperature sensor 29 is too high, 7, refrigerant fluid storehouse reduces temperature, circulation motor 13 accelerates to reach the effect of cooling, when the numerical value of temperature sensor 1 is not high, and can be by slack-off the speed of circulation motor or stop, easy to use, save energy consumption.
This specific embodiment has following beneficial effect: save the energy, and precise control, increase work efficiency, increase the service life, simple in structure.
The foregoing is only preferred embodiment of the present utility model; not in order to limit the utility model; all within spirit of the present utility model and principle, any modification of doing, be equal to replacement, improvement etc., within all should being included in protection domain of the present utility model.

Claims (2)

1. a resistant to elevated temperatures auger loader, it comprises shell (1), blade (2), S. A. (3), material inlet (4), material outlet (5), electrical motor (6), refrigerant fluid storehouse (7), is characterized in that it also comprises temperature sensor one (8), temperature sensor two (9), refrigerant fluid adds entrance (10), refrigerant fluid refluxing opening (11), cooling liquid outlet (12), circulation motor (13), cooling pipe (14), one end of shell (1) is provided with refrigerant fluid storehouse (7), electrical motor (6) is arranged on one end of refrigerant fluid storehouse (7), and S. A. (3) is arranged on shell (1), the centre that refrigerant fluid storehouse (7) is inner, S. A. (3) is connected with electrical motor (6), it is upper that several blades (2) are arranged on S. A. (3), and the upper and lower sides of shell (1) is respectively arranged with material inlet (4), material outlet (5), material inlet (4), on material outlet (5), be separately installed with temperature sensor one (8), temperature sensor two (9), the upper end of refrigerant fluid storehouse (7) is respectively arranged with refrigerant fluid and adds entrance (10), refrigerant fluid refluxing opening (11), its lower end is provided with cooling liquid outlet (12), cooling pipe (14) is wrapped on shell (1), and one end of cooling pipe (14) is connected with refrigerant fluid refluxing opening (11), its other end is connected with the one end of circulation motor (13), and the other end of circulation motor (13) is connected with cooling liquid outlet (12).
2. the resistant to elevated temperatures auger loader of one according to claim 1, is characterized in that described cooling pipe (14) is screw type cooling pipe.
CN201320642289.8U 2013-10-16 2013-10-16 High-temperature resistant screw conveyor Expired - Fee Related CN203544978U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320642289.8U CN203544978U (en) 2013-10-16 2013-10-16 High-temperature resistant screw conveyor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320642289.8U CN203544978U (en) 2013-10-16 2013-10-16 High-temperature resistant screw conveyor

Publications (1)

Publication Number Publication Date
CN203544978U true CN203544978U (en) 2014-04-16

Family

ID=50463127

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201320642289.8U Expired - Fee Related CN203544978U (en) 2013-10-16 2013-10-16 High-temperature resistant screw conveyor

Country Status (1)

Country Link
CN (1) CN203544978U (en)

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140416

Termination date: 20141016

EXPY Termination of patent right or utility model