CN204421526U - A kind of energy-efficient three cylinder drying machine - Google Patents
A kind of energy-efficient three cylinder drying machine Download PDFInfo
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- CN204421526U CN204421526U CN201420781084.2U CN201420781084U CN204421526U CN 204421526 U CN204421526 U CN 204421526U CN 201420781084 U CN201420781084 U CN 201420781084U CN 204421526 U CN204421526 U CN 204421526U
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- cylindrical shell
- inner core
- cylinder
- urceolus
- middle cylinder
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Abstract
The utility model discloses a kind of energy-efficient three cylinder drying machine, cylindrical shell, flight, guide plate, fuel chambers, dust cover, support system and transmission system, described cylindrical shell comprises: charging aperture, inner core, middle cylinder, urceolus and discharge port, described flight is located at the inside of inner core, middle cylinder and urceolus, the end of inner core, middle cylinder and urceolus is located at by described guide plate, described fuel chambers is located at after charging aperture, described dust cover is located on discharge port, described support system is located at the below of cylindrical shell, and described transmission system is located at the inside of cylindrical shell.Cylindrical shell in the utility model adopts the different concentric drums of diameter to be nested each other and is combined into cylindrical shell, optimize the structure of dryer, reduce the floor space of dryer, facilitate installation and the transport of dryer, charging aperture adopts vortex design simultaneously, adopt spiral flight in cylinder simultaneously, the time of contact of material and combustion chamber can be extended, substantially increase the drying effect of material.
Description
Technical field
The utility model relates to a kind of dryer, specifically a kind of energy-efficient three cylinder drying machine.
Background technology
Along with socioeconomic fast development, people are also more and more higher for the requirement of the quality of live and work, and government is also more and more tighter for the policy of environmental protection and power consumption, and industry-by-industry is all constantly seeking technical breakthrough.
Dryer field is also like this, service condition dryer according to people can be divided into two kinds: civilian dryer and industrial drier, wherein, civilian dryer is generally used for removing the moisture in clothes and other textiles after rinse dehydration, and industrial drier applies the most common and a kind of drying equipment widely in mining industry equipment; Dryer can be divided into according to its function: interior rotary dryer, three-cylinder drier, flyash dryer, sand dryer, slag drying machine etc., dryer is mainly used in the material that certain humidity or granularity are dried in the departments such as ore dressing, building materials, metallurgy, chemical industry.
At present all swinging monotubular dryer mostly for the dryer of building materials, chemical industry and metallurgy industry on the market, although also can dry material, but device length is longer, floor space is larger, especially thermal losses and the thermal efficiency low, it belongs to high-energy equipment, causes huge cost allowance to enterprise.Also be like this for dryer market, each enterprise must seeking breakthrough technically, common dryer cannot be met the need of market, although also there is three-cylinder drier on the market, be all mostly consume energy higher, and drying effect is not good, and its thermal efficiency loss is large, heat utilization is less than 3%, and the raw material that general water content is large will carry out 3-4 oven dry and just can reach standard etc. and will cause larger cost allowance to enterprise.
Utility model content
Utility model object: the purpose of this utility model is to solve the deficiencies in the prior art, provides a kind of energy-efficient three cylinder drying machine.
Technical scheme: in order to realize above object, energy-efficient three cylinder drying machine described in the utility model, comprise: cylindrical shell, flight, guide plate, fuel chambers, dust cover, support system and transmission system, wherein, described cylindrical shell comprises: charging aperture, inner core, middle cylinder, urceolus and discharge port, described flight is located at inner core, the inside of middle cylinder and urceolus, inner core is located at by described guide plate, the end of middle cylinder and urceolus, described fuel chambers is located at after charging aperture, described dust cover is located on discharge port, described inner core is located at the inside of middle cylinder, the inside of urceolus is located at by described middle cylinder, described support system is located at the below of cylindrical shell, described transmission system is located at the inside of cylindrical shell.The utility model adopts the different concentric drums of diameter to be nested each other and is combined into cylindrical shell, decrease the floor space of dryer, facilitate installation and the transport of dryer, material simultaneously in cylinder and hot blast adopt following current, adverse current, following current mode carry out reciprocating cross and realize heat exchange, extend the heat exchanger time of material, the moisture that material evaporation is discharged in inner core, is taken away by blower fan, the utilization ratio of heat energy is improved greatly.
Support system described in the utility model comprises: support roller, wheel belt and supporting station, and described support roller is located in wheel belt, and described wheel belt is located on supporting station, and described supporting station is located at ground, can ensure that cylindrical shell runs more stable.
Inner core in cylindrical shell described in the utility model, middle cylinder and urceolus are the different concentric circles of 3 diameters, and the outer surface of inner core and middle cylinder is equipped with inclination angle lifting blade, and the direction of inclination angle lifting blade and the direct of travel of material consistent, reach the time object extending drying materials, effectively raise the utilization ratio of heat energy.
The inwall of charging aperture described in the utility model adopts vortex, extends the time that material contacts with thermal source.
Flight described in the utility model adopts screw type flight, allows material be heated more even, improves the effect that it is dried.
Beneficial effect: the energy-efficient three cylinder drying machine of one described in the utility model, has the following advantages:
1, energy-efficient three cylinder drying machine described in the utility model, its cylindrical shell adopts the different concentric drums of diameter to be nested each other and is combined into cylindrical shell, optimizes the structure of dryer, reduces the volume of dryer, decrease the floor space of dryer, facilitate installation and the transport of dryer.
2, the charging aperture in the utility model adopts vortex design, the time of contact of material and combustion chamber can be extended, adopt spiral flight in cylinder simultaneously, while prolongation material heated time, also serve the effect be heated evenly, substantially increase the drying effect of material.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
Fig. 2 is front view of the present utility model.
In figure: 1-cylindrical shell, 2-flight, 3-guide plate, 4-fuel chambers, 5-dust cover, 6-support system, 7-transmission system 7, wherein, cylindrical shell 1 comprises: cylinder, 11-urceolus, 12-discharge port in 8-charging aperture, 9-inner core, 10-, support system 6 comprises: 13-support roller, 14-wheel belt, 15-supporting station, 16-inclination angle lifting blade.
Detailed description of the invention
Below in conjunction with the drawings and specific embodiments, illustrate the utility model further, these embodiments should be understood and be only not used in restriction scope of the present utility model for illustration of the utility model, after having read the utility model, the amendment of those skilled in the art to the various equivalent form of value of the present utility model has all fallen within the application's claims limited range.
Embodiment
The energy-efficient three cylinder drying machine of one as depicted in figs. 1 and 2, comprise: cylindrical shell 1, flight 2, guide plate 3, fuel chambers 4, dust cover 5, support system 6 and transmission system 7, wherein, described cylindrical shell 1 comprises: charging aperture 8, inner core 9, middle cylinder 10, urceolus 11 and discharge port 12, and described support system 6 comprises: support roller 13, wheel belt 14 and supporting station 15.
The relation of above-mentioned each parts is as follows:
Described flight 2 adopts screw type flight, it is located at inner core 9, the inside of middle cylinder 10 and urceolus 11, inner core 9 is located at by described guide plate 3, the end of middle cylinder 10 and urceolus 11, described fuel chambers 4 is located at after charging aperture 8, described dust cover 5 is located on discharge port 12, the inwall of described charging aperture 8 adopts vortex, described inner core 9 is located at the inside of middle cylinder 10, the inside of urceolus 11 is located at by described middle cylinder 10, described support system 6 is located at the below of cylindrical shell 1, described transmission system 7 is located at the inside of cylindrical shell 1, described support roller 13 is located in wheel belt 14, described wheel belt 14 is located on supporting station 15, described supporting station 15 is located at ground.
Inner core 9 in cylindrical shell 1 described in the present embodiment, middle cylinder 10 and urceolus 11 are the different concentric circles of 3 diameters, and the outer surface of inner core and middle cylinder is equipped with inclination angle lifting blade 16, and the direction of inclination angle lifting blade 16 and the direct of travel of material consistent, reach the time object extending drying materials, effectively raise the utilization ratio of heat energy.
Claims (5)
1. an energy-efficient three cylinder drying machine, it is characterized in that: comprising: cylindrical shell (1), flight (2), guide plate (3), fuel chambers (4), dust cover (5), support system (6) and transmission system (7), wherein, described cylindrical shell (1) comprising: charging aperture (8), inner core (9), middle cylinder (10), urceolus (11) and discharge port (12), described flight (2) is located at inner core (9), the inside of middle cylinder (10) and urceolus (11), inner core (9) is located at by described guide plate (3), the end of middle cylinder (10) and urceolus (11), described fuel chambers (4) is located at after charging aperture (8), described dust cover (5) is located on discharge port (12), described inner core (9) is located at the inside of middle cylinder (10), described middle cylinder (10) is located at the inside of urceolus (11), described support system (6) is located at the below of cylindrical shell (1), described transmission system (7) is located at the inside of cylindrical shell (1).
2. the energy-efficient three cylinder drying machine of one according to claim 1, it is characterized in that: described support system (6) comprising: support roller (13), wheel belt (14) and supporting station (15), described support roller (13) is located in wheel belt (14), described wheel belt (14) is located on supporting station (15), and described supporting station (15) is located at ground.
3. the energy-efficient three cylinder drying machine of one according to claim 1, it is characterized in that: the inner core (9) in described cylindrical shell (1), middle cylinder (10) and urceolus (11) are the different concentric circles of 3 diameters, and the outer surface of inner core (9) and middle cylinder (10) is equipped with inclination angle lifting blade (16), and the direction of inclination angle lifting blade (16) is consistent with the direct of travel of material.
4. the energy-efficient three cylinder drying machine of one according to claim 1, is characterized in that: the inwall of described charging aperture (8) adopts vortex.
5. the energy-efficient three cylinder drying machine of one according to claim 1, is characterized in that: described flight (2) adopts screw type flight.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420781084.2U CN204421526U (en) | 2014-12-12 | 2014-12-12 | A kind of energy-efficient three cylinder drying machine |
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CN201420781084.2U CN204421526U (en) | 2014-12-12 | 2014-12-12 | A kind of energy-efficient three cylinder drying machine |
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CN204421526U true CN204421526U (en) | 2015-06-24 |
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CN201420781084.2U Expired - Fee Related CN204421526U (en) | 2014-12-12 | 2014-12-12 | A kind of energy-efficient three cylinder drying machine |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2020029052A1 (en) * | 2018-08-06 | 2020-02-13 | 江苏荣达利机械有限公司 | Material guide structure for three-cylinder drying machine |
CN111692854A (en) * | 2020-07-01 | 2020-09-22 | 王凯丽 | Automatic drying treatment equipment for industrial-grade peat mine |
CN115597337A (en) * | 2022-09-22 | 2023-01-13 | 湖北通发新材料科技有限公司(Cn) | Three-cylinder type mineral powder burning energy-saving machine |
-
2014
- 2014-12-12 CN CN201420781084.2U patent/CN204421526U/en not_active Expired - Fee Related
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2020029052A1 (en) * | 2018-08-06 | 2020-02-13 | 江苏荣达利机械有限公司 | Material guide structure for three-cylinder drying machine |
CN111692854A (en) * | 2020-07-01 | 2020-09-22 | 王凯丽 | Automatic drying treatment equipment for industrial-grade peat mine |
CN111692854B (en) * | 2020-07-01 | 2021-11-09 | 安徽美亭环保装备制造有限公司 | Automatic drying treatment equipment for industrial-grade peat mine |
CN115597337A (en) * | 2022-09-22 | 2023-01-13 | 湖北通发新材料科技有限公司(Cn) | Three-cylinder type mineral powder burning energy-saving machine |
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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: 20150624 Termination date: 20151212 |
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EXPY | Termination of patent right or utility model |