CN205688200U - A kind of Flocked fabric chiller - Google Patents
A kind of Flocked fabric chiller Download PDFInfo
- Publication number
- CN205688200U CN205688200U CN201620607472.8U CN201620607472U CN205688200U CN 205688200 U CN205688200 U CN 205688200U CN 201620607472 U CN201620607472 U CN 201620607472U CN 205688200 U CN205688200 U CN 205688200U
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- China
- Prior art keywords
- chill roll
- flocked fabric
- main
- water storage
- storage cavity
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Abstract
The utility model discloses a kind of Flocked fabric chiller, its drip irrigation device is: include frame, rotate in described frame and be provided with main chill roll, the rotation direction of described main chill roll moves towards tangent with Flocked fabric, the first cooling element for reducing main chill roll surface temperature it is provided with in described main chill roll, described frame is provided with the driver part driving main chill roll to rotate, during work, Flocked fabric is during transmitting, contact with the outer circumference surface of main chill roll, owing to being provided with the first cooling element in main chill roll, therefore, Flocked fabric can be cooled down by the outer circumference surface of main chill roll, Flocked fabric is cooled down by the cooling means using contact, need not the surface sprinkling tap water to Flocked fabric, save water resource, very environmental protection.
Description
Technical field
This utility model relates to a kind of Flocked fabric and produces equipment, more specifically, it relates to a kind of Flocked fabric chiller.
Background technology
Current existing Flocked fabric cooling procedure mostly is after being sprayed water by special spray appliance after overbaking and carries out
Cooling, then, common cooling device volume is relatively big, houses after sprinkling again, and shower nozzle uses fixed position water spray, nothing
Method moves, operation inconvenience.
Use the above-mentioned type of cooling, need directly to be sprayed onto on Flocked fabric by tap water, by the evaporation endothermic of tap water
Mode, Flocked fabric is dispelled the heat, owing to Flocked fabric is batch production when, yield is the highest, thus needs to use big
The tap water of amount, could realize the cooling of Flocked fabric, and the waste to water resource is extremely serious, and production process is not environmentally.
Utility model content
For the deficiencies in the prior art, the purpose of this utility model is to provide a kind of Flocked fabric chiller, can save
The usage amount of water resource ensures the environmental protection of production process.
Above-mentioned technical purpose of the present utility model has the technical scheme that a kind of Flocked fabric cooling dress
Putting, including frame, described frame rotates and is provided with main chill roll, the rotation direction of described main chill roll moves towards phase with Flocked fabric
Cutting, be provided with the first cooling element for reducing main chill roll surface temperature in described main chill roll, described frame is provided with drives
The driver part that dynamic main chill roll rotates.
By using technique scheme: operationally, Flocked fabric is during transmitting, with the excircle of main chill roll
Face contacts, and owing to being provided with the first cooling element in main chill roll, therefore, the outer circumference surface of main chill roll can be to Flocked fabric
Cool down, use the cooling means of contact that Flocked fabric is cooled down, it is not necessary to the surface sprinkling tap water of Flocked fabric,
Save water resource, very environmental protection, compared to using the mode spraying tap water, use chill roll cooling, chill roll and flocking
Contact area between cloth is big, can play the best cooling effect, and driver part can drive main chill roll and Flocked fabric
It is synchronized with the movement, so can ensure that the outer circumference surface of main chill roll all can contact with Flocked fabric, can play the best cold
But effect, is additionally, since between main chill roll and Flocked fabric and does not has relative motion, it is also possible to reduce main chill roll and Flocked fabric it
Between frictional force avoid Flocked fabric to wear and tear.
It is also preferred that the left be parallel to the rotation of main chill roll in described frame to be provided with secondary chill roll, in described secondary chill roll, it is provided with use
In the second cooling element reducing secondary chill roll surface temperature.
By using technique scheme: operationally, Flocked fabric walks around main chill roll and secondary chill roll, flocking successively
The one side of cloth is fitted with main chill roll, then the another side of Flocked fabric just can be with secondary chill roll laminating, so can be to flocking
The tow sides of cloth all cool down, and further improve the cooling effect of Flocked fabric.
It is also preferred that the left described first cooling element includes the first water storage cavity being arranged in main chill roll, described first water storage
Chamber ringwise and is coaxially disposed with the rotating shaft of main chill roll.
By using technique scheme: during work, be filled with tap water in the first water storage cavity, the specific heat capacity of tap water
Greatly, can adsorb more heat, the outer circumference surface of main chill roll is played cooling effect, the first water storage cavity is same with main chill roll
Axle is arranged, it is ensured that the uniform quality of main chill roll, it is to avoid the rotating shaft of main chill roll occurs phenomenon of rupture in rotation process.
It is also preferred that the left described second cooling element includes the second water storage cavity being arranged in main chill roll, described second water storage
Chamber ringwise and is coaxially disposed with the rotating shaft of secondary chill roll.
By using technique scheme: during work, be filled with tap water in the second water storage cavity, the specific heat capacity of tap water
Greatly, can adsorb more heat, the outer circumference surface of secondary chill roll is played cooling effect, the second water storage cavity is same with secondary chill roll
Axle is arranged, it is ensured that the uniform quality of secondary chill roll, it is to avoid the rotating shaft of secondary chill roll occurs phenomenon of rupture in rotation process.
It is also preferred that the left be provided with the first demarcation strip that the inwall with the first water storage cavity abuts in described first water storage cavity, described
Axially arranged in the shape of a spiral and along main chill roll of one demarcation strip, the both ends of the surface of described main chill roll is respectively equipped with and first
The first water inlet pipe that water storage cavity communicates and the first outlet pipe.
By using technique scheme: arrange the first demarcation strip, be i.e. provided with a spiral pipeline in the first water storage cavity,
By spiral pipeline, the first water inlet pipe and the first outlet pipe, the tap water of circulation can be carried in main water storage cavity, it is ensured that
The cooling-down effect of cooling element, extends the cool time of main chill roll, is arranged to spiral pipeline, can extend tap water
The time of staying in one water storage cavity, it is ensured that cooling effect.
It is also preferred that the left be provided with the second demarcation strip that the inwall with the second water storage cavity abuts in described second water storage cavity, described
Axially arranged in the shape of a spiral and along main chill roll of two compartment plate, the both ends of the surface of described main chill roll is respectively equipped with and second
The second water inlet pipe that water storage cavity communicates and the second outlet pipe.
By using technique scheme: arrange the second demarcation strip, be i.e. provided with a spiral pipeline in the second water storage cavity,
By spiral pipeline, the second water inlet pipe and the second outlet pipe, the tap water of circulation can be carried in secondary water storage cavity, it is ensured that
The cooling-down effect of cooling element, extends the cool time of secondary chill roll, is arranged to spiral pipeline, can extend tap water the
The time of staying in two water storage cavities, it is ensured that cooling effect.
It is also preferred that the left described driver part includes the motor being arranged in frame, the output shaft of described motor and main chill roll
Rotating shaft be connected.
By using technique scheme: select motor as driver part, install simple, low cost, during work, open
Motor, motor can drive main chill roll to rotate, and result is simple, reliable operation.
It is also preferred that the left described driver part includes the motor being arranged in frame, the output shaft of described motor and main chill roll
Rotating shaft be connected, the rotating shaft of described main chill roll is provided with driving gear, and the rotating shaft of described secondary chill roll is provided with and driving tooth
The driven gear of wheel engagement.
By using technique scheme: select motor as driver part, install simple, low cost, during work, open
Motor, motor can drive main chill roll to rotate, simple in construction, and reliable operation, by driving gear and driven gear, i.e. carries
Dynamic secondary chill roll synchronous axial system, secondary chill roll need not arrange extra motor again, reduces the cost of equipment.
In sum, this utility model has the advantages that
1, during work, Flocked fabric, during transmitting, contacts with the outer circumference surface of main chill roll, due in main cooling
Being provided with the first cooling element in roller, therefore, Flocked fabric can be cooled down by the outer circumference surface of main chill roll, uses contact
Flocked fabric is cooled down by cooling means, it is not necessary to the surface sprinkling tap water of Flocked fabric, saved water resource, very ring
Protect;
2, operationally, Flocked fabric walks around main chill roll and secondary chill roll, the one side of Flocked fabric and main chill roll successively
Laminating, then the tow sides of Flocked fabric just so can all can be carried out by the another side of Flocked fabric with secondary chill roll laminating
Cooling, further improves the cooling effect of Flocked fabric.
Accompanying drawing explanation
Fig. 1 is the assembled view one of the present embodiment;
Fig. 2 is the assembled view two of the present embodiment;
Fig. 3 is the sectional arrangement drawing of the present embodiment.
In figure: 1, frame;2, main chill roll;21, the first rotating shaft;211, bearing;3, secondary chill roll;31, the second rotating shaft;4、
First cooling element;41, the first water storage cavity;42, the first demarcation strip;43, the first water inlet pipe;44, the first outlet pipe;5, the second fall
Temperature parts;51, the second water storage cavity;52, the second demarcation strip;53, the second water inlet pipe;54, the second outlet pipe;6, driving gear;7、
Driven gear;8, motor;9, the first cooling water pump;10, the second cooling water pump.
Detailed description of the invention
Below in conjunction with accompanying drawing 1-3, this utility model is described in further detail.
A kind of Flocked fabric chiller, with reference to you Fig. 1 and Fig. 2, including frame 1, rotates in frame 1 and is provided with main cooling
Roller 2, the both ends of the surface of main chill roll 2 are provided with the first rotating shaft 21, and the first rotating shaft 21 is rotationally connected with frame 1, the first rotating shaft 21
Be axially perpendicular to Flocked fabric moves towards setting, is arranged with bearing 211 in the first rotating shaft 21, and bearing 211 is solid by 211, bearing
It is scheduled in frame 1, by bearing 211 and 211, bearing, being rotationally connected, at machine of main chill roll 2 and frame 1 can be realized
Frame 1 is provided with the driver part driving main chill roll 2 to rotate, and driver part includes the motor 8 being arranged in frame 1, motor 8
Output shaft and the first rotating shaft 21 are connected, and can realize the rotation of main chill roll 2.
With reference to 2 and Fig. 3, in main chill roll 2, it is provided with the first cooling element for reducing main chill roll 2 surface temperature
4, the first cooling element 4 includes the first water storage cavity 41 being arranged in main chill roll 2, and the first water storage cavity 41 is arranged ringwise, the
One water storage cavity 41 is coaxially disposed with main chill roll 2, is provided with spiral helicine first demarcation strip 42 in the first water storage cavity 41, first point
The two ends of dividing plate 42 extend respectively to the two ends of the first water storage cavity 41, the height of the first demarcation strip 42 and the thickness of the first water storage cavity 41
Spending equal, the first water storage cavity 41 can be separated into a spiral pipeline by the first demarcation strip 42, when cooling when, and the first water inlet
Pipe 43 pours tap water in spiral pipeline, after tap water enters in spiral pipeline, moves, from being provided with first in water storage cavity
One end of water inlet pipe 43, moves to be provided with one end of the first outlet pipe 44, and then discharges in the first outlet pipe 44, pacify in reality
The when of dress, the first outlet pipe 44 can be linked together by the first circulation line with the second outlet pipe 54, follow first
It is provided with the first cooling water pump 9 in endless tube road, so can recycle tap water and carry out the cooling of main cooling tube, further keep away
Exempt from the waste of water resource.
Being parallel to main chill roll 2 in frame 1 and be provided with secondary chill roll 3, secondary chill roll 3 is arranged less than main chill roll 2, in order to
Saving space, the diameter of secondary chill roll 3 is less than main chill roll 2, the half of a diameter of main chill roll 2 of secondary chill roll 3, secondary cooling
Roller 3 is rotated by the second rotating shaft 31 and is arranged in frame 1, is provided with the second cooling element 5, the second cooling portion in secondary chill roll 3
Part 5 includes being arranged on the second water storage cavity 51 in secondary chill roll 3, and the second water storage cavity 51 is arranged ringwise, the second water storage cavity 51 with
Secondary chill roll 3 is coaxially disposed, and is provided with spiral helicine second demarcation strip 52, the two ends of the second demarcation strip 52 in the second water storage cavity 51
Extending respectively to the two ends of the second water storage cavity 51, the height of the second demarcation strip 52 and the thickness of the second water storage cavity 51 are equal, and second
Second water storage cavity 51 can be separated into a spiral pipeline by demarcation strip 52, and when cooling when, the second water inlet pipe 53 is to spiral
Pour tap water in pipeline, after tap water enters in spiral pipeline, move in water storage cavity, from being provided with the second water inlet pipe 53
One end, moves to be provided with one end of the second outlet pipe 54, and then discharges in the second outlet pipe 54, actual installation when,
Second outlet pipe 54 can be linked together by the second circulation line with the second outlet pipe 54, set in the second circulation line
There is the second cooling water pump 10, so can recycle tap water and carry out the cooling of secondary cooling tube, further avoid water money
The waste in source.
In order to avoid main cooling tube is when rotating, water inlet and water outlet to the first water storage cavity 41 impact, and first enters
Water pipe 43 and the first outlet pipe 44, all stretch into the first water storage cavity 41 in the rotating shaft of main chill roll 2, accordingly even when main chill roll
First water inlet pipe 43, when rotating, also will not be interfered by 2 with the first outlet pipe 44.Same, the second water inlet pipe 53 and
Second outlet pipe 54, is also disposed in the rotating shaft of secondary chill roll 3.
Being provided with driving gear 6 in the first rotating shaft 21 of main chill roll 2, driving gear 6 is coaxially disposed with main chill roll 2,
Being provided with driven gear 7 in the second rotating shaft 32, driving gear 6 intermeshes with driven gear 7, driving gear 6 and driven gear 7
Gear ratio be 1:1, so can realize the synchronous axial system of driving gear 6 and driven gear 7.
The above is only preferred implementation of the present utility model, and protection domain of the present utility model is not limited merely to
Above-described embodiment, all technical schemes belonged under this utility model thinking belong to protection domain of the present utility model.Should refer to
Go out, for those skilled in the art, without departing from the some improvement under this utility model principle premise and
Retouching, these improvements and modifications also should be regarded as protection domain of the present utility model.
Claims (8)
1. a Flocked fabric chiller, including frame (1), it is characterised in that: the upper rotation of described frame (1) is provided with main chill roll
(2), the rotation direction of described main chill roll (2) moves towards tangent with Flocked fabric, is provided with for reducing in described main chill roll (2)
First cooling element (4) of main chill roll (2) surface temperature, described frame (1) is provided with and drives main chill roll (2) driving of rotating
Dynamic component.
Flocked fabric chiller the most according to claim 1, it is characterised in that: described frame is parallel to main cooling on (1)
Roller (2) rotates and is provided with secondary chill roll (3), be provided with in described secondary chill roll (3) for reduce secondary chill roll (3) surface temperature the
Two cooling element (5).
Flocked fabric chiller the most according to claim 1, it is characterised in that: described first cooling element (4) includes setting
Put the first water storage cavity (41) in main chill roll (2), described first water storage cavity (41) ringwise and with main chill roll (2)
Rotating shaft is coaxially disposed.
Flocked fabric chiller the most according to claim 2, it is characterised in that: described second cooling element (5) includes setting
Put the second water storage cavity (51) in main chill roll (2), described second water storage cavity (51) ringwise and with secondary chill roll (3)
Rotating shaft is coaxially disposed.
Flocked fabric chiller the most according to claim 3, it is characterised in that: be provided with in described first water storage cavity (41) with
The first demarcation strip (42) that the inwall of the first water storage cavity (41) abuts, described first demarcation strip (42) is in the shape of a spiral and edge is main cold
But roller (2) is axially arranged, and the both ends of the surface of described main chill roll (2) are respectively equipped with first communicated with the first water storage cavity (41)
Water inlet pipe (43) and the first outlet pipe (44).
Flocked fabric chiller the most according to claim 4, it is characterised in that: be provided with in described second water storage cavity (51) with
The second demarcation strip (52) that the inwall of the second water storage cavity (51) abuts, described second demarcation strip (52) is in the shape of a spiral and edge is main cold
But roller (2) is axially arranged, and the both ends of the surface of described main chill roll (2) are respectively equipped with second communicated with the second water storage cavity (51)
Water inlet pipe (53) and the second outlet pipe (54).
Flocked fabric chiller the most according to claim 1, it is characterised in that: described driver part includes being arranged on frame
(1) motor (8) on, the output shaft of described motor (8) is connected with the rotating shaft of main chill roll (2).
Flocked fabric chiller the most according to claim 2, it is characterised in that: described driver part includes being arranged on frame
(1) motor (8) on, the output shaft of described motor (8) is connected with the rotating shaft of main chill roll (2), turning of described main chill roll (2)
Axle is provided with driving gear (6), and the rotating shaft of described secondary chill roll (3) is provided with the driven gear engaged with driving gear (6)
(7)。
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620607472.8U CN205688200U (en) | 2016-06-20 | 2016-06-20 | A kind of Flocked fabric chiller |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620607472.8U CN205688200U (en) | 2016-06-20 | 2016-06-20 | A kind of Flocked fabric chiller |
Publications (1)
Publication Number | Publication Date |
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CN205688200U true CN205688200U (en) | 2016-11-16 |
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ID=57415985
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Application Number | Title | Priority Date | Filing Date |
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CN201620607472.8U Expired - Fee Related CN205688200U (en) | 2016-06-20 | 2016-06-20 | A kind of Flocked fabric chiller |
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CN (1) | CN205688200U (en) |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107504845A (en) * | 2017-09-30 | 2017-12-22 | 浙江唐艺织物整理有限公司 | A kind of Flocked fabric cooling device |
CN107617546A (en) * | 2017-10-26 | 2018-01-23 | 浙江永和纺织植绒有限公司 | A kind of Flocked fabric cooling body |
CN111748891A (en) * | 2020-06-03 | 2020-10-09 | 安徽东锦环保科技有限公司 | Production method of antibacterial environment-friendly fabric |
-
2016
- 2016-06-20 CN CN201620607472.8U patent/CN205688200U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107504845A (en) * | 2017-09-30 | 2017-12-22 | 浙江唐艺织物整理有限公司 | A kind of Flocked fabric cooling device |
CN107617546A (en) * | 2017-10-26 | 2018-01-23 | 浙江永和纺织植绒有限公司 | A kind of Flocked fabric cooling body |
CN111748891A (en) * | 2020-06-03 | 2020-10-09 | 安徽东锦环保科技有限公司 | Production method of antibacterial environment-friendly fabric |
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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: 20161116 Termination date: 20190620 |
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CF01 | Termination of patent right due to non-payment of annual fee |