CN105091530A - Chemical fiber drying mechanism - Google Patents

Chemical fiber drying mechanism Download PDF

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Publication number
CN105091530A
CN105091530A CN201510498146.8A CN201510498146A CN105091530A CN 105091530 A CN105091530 A CN 105091530A CN 201510498146 A CN201510498146 A CN 201510498146A CN 105091530 A CN105091530 A CN 105091530A
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CN
China
Prior art keywords
heated device
combined heated
chemical fiber
metal
air
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Pending
Application number
CN201510498146.8A
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Chinese (zh)
Inventor
梁枫
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Chengdu Jiameijia Science and Technology Co Ltd
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Chengdu Jiameijia Science and Technology 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.)
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Publication date
Application filed by Chengdu Jiameijia Science and Technology Co Ltd filed Critical Chengdu Jiameijia Science and Technology Co Ltd
Priority to CN201510498146.8A priority Critical patent/CN105091530A/en
Publication of CN105091530A publication Critical patent/CN105091530A/en
Pending legal-status Critical Current

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Abstract

The invention relates to a chemical fiber drying mechanism which comprises a drying chamber, a conveying belt, a first combined heating device and a second combined heating device. The bottom of an annular air pipe of the first combined heating device and the top of an annular air pipe of the second combined heating device are each provided with a plurality of air outlet holes. A first metal heating plate and a second metal heating plate are arranged on the right side of the upper portion of the drying chamber and the left side of the lower portion of the drying chamber respectively. The top wall of the drying chamber is an arc-shaped wall protruding upwards, and the bottom wall of the drying chamber is an arc-shaped wall protruding downwards. The height of the first metal heating plate is smaller than that of the first combined heating device, and the height of the second metal heating plate is smaller than that of the second combined heating device. The conveying belt is of a metal net structure, and a plurality of limiting rods are arranged on the metal net. According to the structure, it can be guaranteed that chemical fibers are evenly heated in the drying process, hot air circulation is effectively formed, and meanwhile the chemical fibers cannot be scattered or wound.

Description

Chemical fiber wire drier
Technical field
The present invention relates to a kind of chemical fiber wire drier.
Background technology
In the manufacturing and processing work of chemical fibre product, often need to adopt chemical fiber wire drier to carry out drying process to chemical fiber wire, but for existing chemical fiber wire drier, its thermal source is often only distributed in same direction or biases toward a direction, make to be placed in the chemical fiber wire on conveyer belt be heated and uneven, simultaneously, in drier, the wind direction of hot blast effectively can not form hot air circulation, thus greatly affect drying efficiency, in addition, to in the dried journey of chemical fiber wire, originally the chemical fiber wire of neat discharge also can cause becoming at random because of conveyer belt transmission and wind heating, even mutually be wound around between chemical fiber wire, this have impact on the drying efficiency of chemical fiber wire all greatly, drying effect and follow-up manufacturing procedure.
Summary of the invention
For overcoming above the deficiencies in the prior art, the technical problem to be solved in the present invention is to provide and a kind of can ensure chemical fiber wire thermally equivalent and effectively form hot air circulation in dried journey, also can not make the chemical fiber wire drier of the at random and mutual winding of chemical fiber wire simultaneously.
Technical scheme of the present invention is: a kind of chemical fiber wire drier, comprise hothouse and be located at the conveyer belt in the middle part of hothouse, wherein on the right side of the upper left-hand and bottom of hothouse, be respectively equipped with the first combined heated device and the second combined heated device, first combined heated device and the second combined heated device have included METAL HEATING PROCESS block, air-heater and the air loop duct be connected with air-heater, and the top of the METAL HEATING PROCESS block of the first combined heated device is located at by the air-heater of the first combined heated device, the below of the METAL HEATING PROCESS block of the second combined heated device is located at by the air-heater of the second combined heated device, the air loop duct of the first combined heated device and the second combined heated device is all around respective METAL HEATING PROCESS block, simultaneously also be respectively equipped with multiple exhaust vent at the top of the air loop duct of the bottom of the air loop duct of the first combined heated device and the second combined heated device, the first metal heater plate and the second metal heater plate is also respectively equipped with in the upper right of hothouse and lower left side, the roof of hothouse is arcwall protruding upward, the diapire of hothouse is the arcwall protruded downwards, and the height of the first metal heater plate is lower than the height of the first combined heated device, the height of the second metal heater plate is higher than the height of the second combined heated device, conveyer belt is metal mesh structure, and on wire netting, be also provided with multiple gag lever post perpendicular to wire netting.
Above-mentioned chemical fiber wire drier, the spacing wherein between the exhaust vent of the air loop duct bottom left of the first combined heated device is less than the spacing between the exhaust vent on right side bottom the air loop duct of the first combined heated device.
Above-mentioned chemical fiber wire drier, the spacing wherein between the exhaust vent of the air loop duct top left side of the second combined heated device is greater than the spacing between the exhaust vent of the air loop duct top right side of the second combined heated device.
Above-mentioned chemical fiber wire drier, multiple gag lever posts wherein are evenly located on multiple nodes of wire netting respectively.
Above-mentioned chemical fiber wire drier, wherein the height of gag lever post is 5cm to 10cm.
The invention has the beneficial effects as follows: by adopting said structure, the present invention not only can ensure chemical fiber wire thermally equivalent and effectively form hot air circulation in dried journey, and chemical fiber wire also can not be made to occur at random in dried journey and mutually be wound around, thus greatly ensure that the drying efficiency of chemical fiber wire, drying effect and follow-up manufacturing procedure simultaneously.
Accompanying drawing explanation
Below in conjunction with accompanying drawing, the specific embodiment of the present invention is described in further detail.
Fig. 1 is the structural representation of chemical fiber wire drier; Fig. 2 be METAL HEATING PROCESS block in the first combined heated device shown in Fig. 1 and air loop duct look up structural representation; Fig. 3 is the plan structure schematic diagram of METAL HEATING PROCESS block in the second combined heated device shown in Fig. 1 and air loop duct.
In figure: hothouse 1, conveyer belt 2, the first combined heated device 3, second combined heated device 4, METAL HEATING PROCESS block 5, air-heater 6, air loop duct 7, exhaust vent 8, the first metal heater plate 9, second metal heater plate 10, roof 11, diapire 12, gag lever post 13.
Detailed description of the invention
As shown in Figure 1 to Figure 3, a kind of chemical fiber wire drier, the conveyer belt 2 comprising hothouse 1 and be located in the middle part of hothouse 1, on the right side of the upper left-hand and bottom of hothouse 1, be wherein respectively equipped with the first combined heated device 3 and the second combined heated device 4, first combined heated device 3 and the second combined heated device 4 have included METAL HEATING PROCESS block 5, air-heater 6 and the air loop duct 7 be connected with air-heater 6, and the top of the METAL HEATING PROCESS block 5 of the first combined heated device 3 is located at by the air-heater 6 of the first combined heated device 3, the below of the METAL HEATING PROCESS block 5 of the second combined heated device 4 is located at by the air-heater 6 of the second combined heated device 4, the air loop duct 7 of the first combined heated device 3 and the second combined heated device 4 is all around respective METAL HEATING PROCESS block 5, simultaneously also be respectively equipped with multiple exhaust vent 8 at the top of the air loop duct 7 of the bottom of the air loop duct 7 of the first combined heated device 3 and the second combined heated device 4, the first metal heater plate 9 and the second metal heater plate 10 is also respectively equipped with in the upper right of hothouse 1 and lower left side, the roof 11 of hothouse 1 is arcwall protruding upward, the diapire 12 of hothouse 1 is the arcwall protruded downwards, and the height of the first metal heater plate 9 is lower than the height of the first combined heated device 3, the height of the second metal heater plate 10 is higher than the height of the second combined heated device 4, conveyer belt 2 is metal mesh structure (not shown), and on wire netting, be also provided with multiple gag lever post 13 perpendicular to wire netting.
When real work, by first, METAL HEATING PROCESS block 5 in second combined heated device, first metal heater plate 9 and the second metal heater plate 10 pairs of hothouses 1 heat, simultaneously by first, air-heater 6 in second combined heated device also carries out wind heating to hothouse 1 by air loop duct 7, and the hot blast wind direction in the first combined heated device 3 is blow to bottom from the top of hothouse 1, and the arc diapire of drying room 1 is transferred to the second combined heated device 4 place, and the hot blast wind direction in the second combined heated device 4 is blow to top from the bottom of hothouse 1, and the arc roof of drying room 1 is transferred to the first combined heated device place, therefore, said structure ensure that chemical fiber wire can be heated equably, define effective hot air circulation simultaneously, thus greatly ensure that drying efficiency and the drying effect of chemical fiber wire, in addition, the gag lever post 13 of vertical distribution on wire netting also assures that chemical fiber wire can not occur at random and mutually be wound around in dried journey, thus be greatly conducive to follow-up manufacturing procedure.
As preferably, for above-mentioned chemical fiber wire drier, spacing wherein between the exhaust vent 8 of air loop duct 7 bottom left of the first combined heated device 3 is less than the spacing between the exhaust vent 8 on right side bottom the air loop duct 7 of the first combined heated device 3, in like manner, for above-mentioned chemical fiber wire drier, the spacing wherein between the exhaust vent 8 of air loop duct 7 top left side of the second combined heated device 4 is greater than the spacing between the exhaust vent 8 of air loop duct 7 top right side of the second combined heated device 4.Like this, for whole hothouse 1, the hot blast wind-force being positioned at hothouse 1 left and right sides is larger, and be positioned at the hot blast wind-force produced by first, second combined heated device in the middle part of hothouse 1 relatively weak (so, the mutual conflict degree of the two wind direction just also can be weak), thus be more conducive to form effective hot air circulation in hothouse 1.
As further preferred, for above-mentioned chemical fiber wire drier, multiple gag lever posts 13 wherein are evenly located on multiple nodes of wire netting respectively, in addition, wherein the height of gag lever post 13 is also preferably 5cm to 10cm, like this, by being uniformly distributed on wire netting by multiple gag lever post 13 by the ranks form of multiple lines and multiple rows, just can carry out better gear to the position of the chemical fiber wire be positioned on conveyer belt to hold and limit, prevent it from occurring at random and being mutually wound around further.
In sum, by adopting said structure, the present invention not only can ensure chemical fiber wire thermally equivalent and effectively form hot air circulation in dried journey, and chemical fiber wire also can not be made to occur at random in dried journey and mutually be wound around, thus greatly ensure that the drying efficiency of chemical fiber wire, drying effect and follow-up manufacturing procedure simultaneously.
By reference to the accompanying drawings the preferred embodiments of the disclosure and embodiment are explained in detail above, but the present invention is not limited to the above-described embodiment and examples, in the ken that those skilled in the art possess, various change can also be made without departing from the inventive concept of the premise.

Claims (5)

1. a chemical fiber wire drier, comprise hothouse and be located at the conveyer belt in the middle part of hothouse, it is characterized in that: on the right side of the upper left-hand and bottom of described hothouse, be respectively equipped with the first combined heated device and the second combined heated device, described first combined heated device and the second combined heated device have included METAL HEATING PROCESS block, air-heater and the air loop duct be connected with air-heater, and the top of the METAL HEATING PROCESS block of the first combined heated device is located at by the air-heater of the first combined heated device, the below of the METAL HEATING PROCESS block of the second combined heated device is located at by the air-heater of the second combined heated device, the air loop duct of described first combined heated device and the second combined heated device is all around respective METAL HEATING PROCESS block, simultaneously also be respectively equipped with multiple exhaust vent at the top of the air loop duct of the bottom of the air loop duct of described first combined heated device and described second combined heated device, the first metal heater plate and the second metal heater plate is also respectively equipped with in the upper right of described hothouse and lower left side, the roof of described hothouse is arcwall protruding upward, the diapire of described hothouse is the arcwall protruded downwards, and the height of described first metal heater plate is lower than the height of described first combined heated device, the height of described second metal heater plate is higher than the height of described second combined heated device, described conveyer belt is metal mesh structure, and on described wire netting, be also provided with multiple gag lever post perpendicular to described wire netting.
2. chemical fiber wire drier as claimed in claim 1, is characterized in that: the spacing between the exhaust vent of the air loop duct bottom left of described first combined heated device is less than the spacing between the exhaust vent on right side bottom the air loop duct of described first combined heated device.
3. chemical fiber wire drier as claimed in claim 1, is characterized in that: the spacing between the exhaust vent of the air loop duct top left side of described second combined heated device is greater than the spacing between the exhaust vent of the air loop duct top right side of described second combined heated device.
4. chemical fiber wire drier as claimed any one in claims 1 to 3, is characterized in that: described multiple gag lever post is evenly located on multiple nodes of described wire netting respectively.
5. chemical fiber wire drier as claimed in claim 4, is characterized in that: the height of described gag lever post is 5cm to 10cm.
CN201510498146.8A 2015-08-14 2015-08-14 Chemical fiber drying mechanism Pending CN105091530A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510498146.8A CN105091530A (en) 2015-08-14 2015-08-14 Chemical fiber drying mechanism

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Application Number Priority Date Filing Date Title
CN201510498146.8A CN105091530A (en) 2015-08-14 2015-08-14 Chemical fiber drying mechanism

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CN105091530A true CN105091530A (en) 2015-11-25

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107668741A (en) * 2017-09-12 2018-02-09 梁俊 A kind of drying equipment of cleaning, drying integral type vegetables
CN108759407A (en) * 2018-07-27 2018-11-06 苏州瑞沁精密机械有限公司 A kind of textile machinery drying unit
CN108800878A (en) * 2018-06-08 2018-11-13 蒙城县傲尊电子科技有限公司 A kind of auto parts machinery dry tack free device
CN110579096A (en) * 2019-09-03 2019-12-17 张家港欣阳化纤有限公司 Polyester filament drying device

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Publication number Priority date Publication date Assignee Title
US5150534A (en) * 1990-03-30 1992-09-29 Wsp Ingenieurgesellschaft Fur Warmetechnik, Stromungstechnik Und Prozesstechnik Mit Beschrankter Haftung Apparatus for the bilateral blowing onto a web-like or sheet-like material
DE4229804A1 (en) * 1992-09-07 1994-03-10 Erich Dipl Ing Hansmann Device for generating an air flow system for the treatment of continuous sheet material
CN1134479A (en) * 1995-01-31 1996-10-30 科特·穆勒 Method and apparatus for drying and shrinking fabrics
EP0751360A1 (en) * 1995-06-30 1997-01-02 Keller GmbH Process for drying bricks, such as perforated bricks, and drying tunnel for carrying out the process
CN2351461Y (en) * 1998-05-19 1999-12-01 德州宏力(集团)有限公司 Alternating blowing system
WO2003062726A1 (en) * 2002-01-18 2003-07-31 Speedline Technologies, Inc. Compact convection drying chamber for drying printed circuit boards and other electronic assemblies by enhanced evaporation
CN205027076U (en) * 2015-08-14 2016-02-10 成都佳美嘉科技有限公司 Dry mechanism of chemical fibre silk

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5150534A (en) * 1990-03-30 1992-09-29 Wsp Ingenieurgesellschaft Fur Warmetechnik, Stromungstechnik Und Prozesstechnik Mit Beschrankter Haftung Apparatus for the bilateral blowing onto a web-like or sheet-like material
DE4229804A1 (en) * 1992-09-07 1994-03-10 Erich Dipl Ing Hansmann Device for generating an air flow system for the treatment of continuous sheet material
CN1134479A (en) * 1995-01-31 1996-10-30 科特·穆勒 Method and apparatus for drying and shrinking fabrics
EP0751360A1 (en) * 1995-06-30 1997-01-02 Keller GmbH Process for drying bricks, such as perforated bricks, and drying tunnel for carrying out the process
CN2351461Y (en) * 1998-05-19 1999-12-01 德州宏力(集团)有限公司 Alternating blowing system
WO2003062726A1 (en) * 2002-01-18 2003-07-31 Speedline Technologies, Inc. Compact convection drying chamber for drying printed circuit boards and other electronic assemblies by enhanced evaporation
CN205027076U (en) * 2015-08-14 2016-02-10 成都佳美嘉科技有限公司 Dry mechanism of chemical fibre silk

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Title
高雨声等: "《化纤设备》", 30 June 1986 *

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107668741A (en) * 2017-09-12 2018-02-09 梁俊 A kind of drying equipment of cleaning, drying integral type vegetables
CN108800878A (en) * 2018-06-08 2018-11-13 蒙城县傲尊电子科技有限公司 A kind of auto parts machinery dry tack free device
CN108759407A (en) * 2018-07-27 2018-11-06 苏州瑞沁精密机械有限公司 A kind of textile machinery drying unit
CN110579096A (en) * 2019-09-03 2019-12-17 张家港欣阳化纤有限公司 Polyester filament drying device

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Application publication date: 20151125

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