CN201824490U - Multi-cyclone separating and cooling device for anhydrous hot-cutting of polyethylene cable material - Google Patents

Multi-cyclone separating and cooling device for anhydrous hot-cutting of polyethylene cable material Download PDF

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Publication number
CN201824490U
CN201824490U CN2010205167268U CN201020516726U CN201824490U CN 201824490 U CN201824490 U CN 201824490U CN 2010205167268 U CN2010205167268 U CN 2010205167268U CN 201020516726 U CN201020516726 U CN 201020516726U CN 201824490 U CN201824490 U CN 201824490U
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CN
China
Prior art keywords
cooling
cyclone separating
cyclone
cyclonic separation
cable material
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Expired - Lifetime
Application number
CN2010205167268U
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Chinese (zh)
Inventor
李亚平
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HANGZHOU GAOXIN RUBBER MATERIAL CO., LTD.
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HANGZHOU GAOXIN INSULATION MATERIAL CO Ltd
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Priority to CN2010205167268U priority Critical patent/CN201824490U/en
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Publication of CN201824490U publication Critical patent/CN201824490U/en
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Abstract

The utility model relates to a multi-cyclone separating and cooling device for anhydrous hot-cutting of polyethylene cable material, which does not use water to cool, saves water resources, and can cool sufficiently without water residue. The multi-cyclone separating and cooling device includes a twin screw main engine which is connected with a single screw main engine; the single screw main engine is connected with a primary cyclone separating and cooling cabin, a secondary cyclone separating and cooling cabin, a third cyclone separating and cooling cabin, a fourth cyclone separating and cooling cabin and a cabin for fine product of cyclone separating. The multi-cyclone separating and cooling device has the advantages of 1. cooling without water, which saves the water resources; 2. no water residue, which guarantees product quality; 3. sufficient cooling, which meets the requirements of packaging technique on temperature; 4. simple structure and low manufacture cost; 5. simple technique and convenient operation; and 6. convenient maintenance and low maintenance rate.

Description

The anhydrous fervent multistage cyclone of poly-ethylene cable material separates cooling device
Technical field
The utility model relates to a kind ofly can fully cool off poly-ethylene cable material, and utilizing anhydrous fervent technology to separate cooling technology with multistage cyclone is that the anhydrous fervent multistage cyclone of the poly-ethylene cable material of one separates cooling device.
Background technology
Present domestic PE cable material manufacturing technique is to cross water cooling by the twin-screw tie rod, blots or dry up lines, pelletizing, sends into the oven dry of freeze-day with constant temperature machine again, natural again cooling packing after the oven dry.This production technology can unavoidably cause moisture entrapment in the product, because oven dry back finished product material temperature is too high, thereby influences product quality, and need the nature cooling before the packing, so just greatly reduce production efficiency, and need utilize water resource, improved production cost.
The utility model content
Purpose of design: avoid the weak point in the background technology, design a kind of water cooling that need not to use, the conserve water resource, and cooling is fully, and the anhydrous fervent multistage cyclone of poly-ethylene cable material that does not have moisture entrapment separates cooling device.
Design: to achieve these goals, the utility model has been done following design: 1, the design of single screw host is one of technical characterictic of the present utility model.The purpose of doing like this is: utilize single screw host can carry out anhydrous fervent granulation, avoided utilizing cooling water to cool off granulation again.2, single screw host is connecting the design that the one, two, three, four cyclonic separation is cooled off the storehouse successively by conveyance conduit, is two of technical characterictic of the present utility model.The purpose of doing like this is: the classification cooling can be carried out to product in one, two, three, four cyclonic separation cooling storehouse, thereby abundant cooling products makes product temperature reach the technology of the package requirement.3, Category Four cyclone separates the design that bottom, cooling storehouse is provided with open air-cooled automatic go-no-go vibratory sieve, is three of technical characterictic of the present utility model.The purpose of doing like this is: open air-cooled automatic go-no-go vibratory sieve is the qualified product of go-on-go automatically, thereby has guaranteed the steady quality of product.4, Category Four cyclone separates bottom, cooling storehouse and the design that is provided with cooling blower that open air-cooled automatic go-no-go vibratory sieve is equipped with mutually, is four of technical characterictic of the present utility model.The purpose of doing like this is: the qualified products that cooling blower can detect branch finally cool off, and guarantee that the temperature of qualified products reaches the technology of the package requirement.
Technical scheme: the anhydrous fervent multistage cyclone of poly-ethylene cable material separates cooling device, it comprises the twin-screw main frame, described twin-screw main frame is connected with single screw host, and single screw host is connecting one-level cyclonic separation cooling storehouse, secondary cyclonic separation cooling storehouse, three grades of cyclonic separation cooling storehouses, Category Four cyclones separation cooling storehouse and cyclonic separation finished product bins successively by conveyance conduit.
The utility model is compared with background technology, and the one, need not to use water cooling, the conserve water resource; The 2nd, make the PE cable material manufacturing technique can effectively avoid moisture entrapment in the CABLE MATERIALS production process, guaranteed the quality of product; The 3rd, separate the cooling storehouse by multistage cyclone and fully cooled off, the automatic qualified finished product of the automatic go-no-go of go-no-go vibratory sieve, the finished product material need not just to cool off again and can directly pack; The 4th, technology is simple, and is easy to operate.
Description of drawings
Fig. 1 is the main TV structure figure that the anhydrous fervent multistage cyclone of poly-ethylene cable material separates cooling device.
The specific embodiment
Embodiment 1: with reference to accompanying drawing 1.The anhydrous fervent multistage cyclone of poly-ethylene cable material separates cooling device and comprises twin-screw main frame 1, described twin-screw main frame 1 is connected with single screw host 2, single screw host 2 by conveyance conduit 8 connecting one-level cyclonic separation cooling storehouse 4, secondary cyclonic separation cooling storehouse 5 successively, three grades of cyclonic separation cooling storehouses 6, Category Four cyclones separate cooling storehouse 11 and cyclonic separation finished product bin 9; Described single screw host 2, one-level cyclonic separation cooling storehouse 4, secondary cyclonic separation cooling storehouse 5, three grades of cyclonic separation cooling storehouses 6 are separated with Category Four cyclone to cool off on the storehouse 11 and are equipped with high pressure positive blower 3; Described Category Four cyclone separates cooling 11 bottoms, storehouse and is provided with open air-cooled automatic go-no-go vibratory sieve 10; Described Category Four cyclone separates that cooling 11 bottoms, storehouse and open air-cooled automatic go-no-go vibratory sieve 10 be equipped with mutually is provided with cooling blower 7.
The manufacture craft of above-mentioned each parts and installation method all adopt existing feasible technology.Earlier poly-ethylene cable material being put into twin-screw main frame 1 fully plastifies, carry out anhydrous fervent granulation with single screw host 2 then, following high pressure positive blower 3 on single screw host 2 is transported to one-level cyclonic separation cooling storehouse 4 with particle by conveyance conduit 8 and carries out the one-level cooling, and then utilize high pressure positive blower 3 that the cooled particle of one-level is transported to secondary cyclonic separation cooling storehouse 5 successively, three grades of cyclonic separation cooling storehouses 6 are separated with Category Four cyclone and are carried out classification in the cooling storehouse 11 and cool off, the particle of cooling detected qualified products in 10 minutes through open air-cooled automatic go-no-go vibratory sieve in Category Four cyclone separates cooling storehouse 11, qualified product utilization cooling blower 7 finally cools off, utilize high pressure positive blower 3 to be transported in the cyclonic separation finished product bin 9 then, just can directly pack at last.
Principle: PE cable material manufacturing technique, be fully to plastify by the twin-screw main frame, the anhydrous fervent granulation of single screw host, high pressure positive blower is sent into one-level, secondary, three grades, Category Four cyclone by conveyance conduit and is separated process cooling in the cooling storehouse, again by the open air-cooled automatic go-no-go vibratory sieve qualified finished product that sieves, after sending into finished product cyclonic separation feed bin once more and fully cool off by high pressure positive blower, direct finished product packing.
It will be appreciated that: though the foregoing description has been done more detailed description to mentality of designing of the present utility model, but mentality of designing of the present utility model is not limited only to foregoing description, any combination, increase or modification that does not exceed the utility model mentality of designing all falls in the scope of the present utility model.

Claims (4)

1. the anhydrous fervent multistage cyclone of poly-ethylene cable material separates cooling device, it comprises twin-screw main frame (1), it is characterized in that: described twin-screw main frame (1) is connected with single screw host (2), and single screw host (2) is connecting one-level cyclonic separation cooling storehouse (4), secondary cyclonic separation cooling storehouse (5), three grades of cyclonic separation cooling storehouses (6), Category Four cyclones separation cooling storehouse (11) and cyclonic separation finished product bins (9) successively by conveyance conduit (8).
2. the anhydrous fervent multistage cyclone of poly-ethylene cable material according to claim 1 separates cooling device, it is characterized in that: described single screw host (2), one-level cyclonic separation cooling storehouse (4), secondary cyclonic separation cooling storehouse (5), three grades of cyclonic separation cooling storehouses (6) are separated with Category Four cyclone to cool off on the storehouse (11) and are equipped with high pressure positive blower (3).
3. the anhydrous fervent multistage cyclone of poly-ethylene cable material according to claim 1 separates cooling device, it is characterized in that: described Category Four cyclone separates bottom, cooling storehouse (11) and is provided with open air-cooled automatic go-no-go vibratory sieve (10).
4. the anhydrous fervent multistage cyclone of poly-ethylene cable material according to claim 1 separates cooling device, it is characterized in that: described Category Four cyclone separates that bottom, cooling storehouse (11) and open air-cooled automatic go-no-go vibratory sieve (10) be equipped with mutually is provided with cooling blower (7).
CN2010205167268U 2010-08-30 2010-08-30 Multi-cyclone separating and cooling device for anhydrous hot-cutting of polyethylene cable material Expired - Lifetime CN201824490U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010205167268U CN201824490U (en) 2010-08-30 2010-08-30 Multi-cyclone separating and cooling device for anhydrous hot-cutting of polyethylene cable material

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010205167268U CN201824490U (en) 2010-08-30 2010-08-30 Multi-cyclone separating and cooling device for anhydrous hot-cutting of polyethylene cable material

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CN201824490U true CN201824490U (en) 2011-05-11

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CN2010205167268U Expired - Lifetime CN201824490U (en) 2010-08-30 2010-08-30 Multi-cyclone separating and cooling device for anhydrous hot-cutting of polyethylene cable material

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104441316A (en) * 2014-11-07 2015-03-25 宜兴市华龙塑木新材料有限公司 Plastic-wood particle three-level air conveying cooling system
CN106956380A (en) * 2017-04-06 2017-07-18 湖州市澳蓝电力科技有限责任公司 A kind of power cable multistage cooling device of polyvinyl resin material

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104441316A (en) * 2014-11-07 2015-03-25 宜兴市华龙塑木新材料有限公司 Plastic-wood particle three-level air conveying cooling system
CN106956380A (en) * 2017-04-06 2017-07-18 湖州市澳蓝电力科技有限责任公司 A kind of power cable multistage cooling device of polyvinyl resin material
CN106956380B (en) * 2017-04-06 2023-11-21 国网冀北电力有限公司廊坊供电公司 Multi-stage cooling device for polyethylene resin material for power cable

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C56 Change in the name or address of the patentee

Owner name: HANGZHOU GAOXIN RUBBER + PLASTIC MATERIALS CO., LT

Free format text: FORMER NAME: HANGZHOU GAOXIN INSULATION MATERIAL CO., LTD.

CP03 Change of name, title or address

Address after: Yuhang District of Hangzhou City, Zhejiang province 311116 Jingshan Town Dragon No. 10 Huang Lu

Patentee after: HANGZHOU GAOXIN RUBBER MATERIAL CO., LTD.

Address before: 311116, No. 1, Jingshan Road, Jingshan Town, Yuhang District, Zhejiang, Hangzhou

Patentee before: Hangzhou Gaoxin Insulation Material Co., Ltd.

CX01 Expiry of patent term

Granted publication date: 20110511

CX01 Expiry of patent term