CN214089014U - Cloth guide device and gas-liquid cloth dyeing machine comprising same - Google Patents

Cloth guide device and gas-liquid cloth dyeing machine comprising same Download PDF

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Publication number
CN214089014U
CN214089014U CN202023139960.6U CN202023139960U CN214089014U CN 214089014 U CN214089014 U CN 214089014U CN 202023139960 U CN202023139960 U CN 202023139960U CN 214089014 U CN214089014 U CN 214089014U
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cloth
nozzle
fabric
liquid
liquid flow
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CN202023139960.6U
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赵科俭
金立晗
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Jiangsu Bosen Machinery Manufacturing Co ltd
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Jiangsu Bosen Machinery Manufacturing Co ltd
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Abstract

The utility model belongs to the technical field of dyeing and finishing technology, especially, relate to lead cloth device and contain this gas-liquid cloth dyeing machine who leads cloth device and use. The utility model discloses cancel original cloth lifting roller, the fabric is from passing through first liquid flow nozzle, first return bend, second liquid flow nozzle, second return bend, third liquid flow nozzle and air nozzle in proper order in dyeing process, for the transportation of fabric in leading cloth device provides a plurality of potential ability, the contained angle and the radian of transition corner when furthest's increase fabric gets into the nozzle from the barrel, greatly reduce the running tension, the cloth flying, stifled cloth phenomenon that cause when avoiding cloth lifting roller as the main power supply, thereby improve the finished product quality; meanwhile, the second bent pipe realizes dip dyeing of the fabric, and the third liquid flow nozzle and the air nozzle are combined for use to atomize the dye liquor, so that the contact proportion of the dye liquor and the fabric is increased, and the dyeing efficiency is improved.

Description

Cloth guide device and gas-liquid cloth dyeing machine comprising same
Technical Field
The utility model belongs to the technical field of dyeing and finishing technology, especially, relate to lead cloth device and contain this gas-liquid cloth dyeing machine who leads cloth device.
Background
The gas-liquid dyeing machine mainly uses circulating air flow to draw the fabric to make periodic circulating movement, the circulating dyeing liquor is exchanged with the fabric to be dyed through the dyeing liquor flow nozzle combination, and the process of dyeing the fabric by the dye is completed through certain periodic circulating exchange. In the prior art, a cloth lifting roller is used as one of main power sources for the circulation of a gas-liquid dyeing machine traction fabric, and the pulling force of the cloth lifting roller to the fabric is too large, so that the following problems are easily caused: 1. the elastic limit of the fabric is easily reached, so that the fabric cannot recover; 2. the fabric is widened under the action of strong pulling force, so that the fabric is wrinkled. Moreover, the relative sliding of the fabric on the roll surface of the cloth lifting roll during cloth lifting can cause scratches on the fabric. In addition, the cloth lifting roller belongs to a rotary mechanical structure, so that the sealing performance of the gas-liquid cloth dyeing machine is influenced, and when the running speeds of the fabric and the cloth lifting roller are inconsistent, the blocked cloth is not easy to dredge.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects of the prior art, the utility model provides a cloth guide device, aiming at solving the problems that in the prior art, a cloth lifting roller is used as one of main power sources for a gas-liquid dyeing machine to pull the circulation of fabric, the pulling force of the cloth lifting roller to the fabric is too large, the fabric is easily damaged by folds and the like, and meanwhile, the fabric can be scratched when the fabric is lifted on the roller surface of the cloth lifting roller in a relative sliding manner; in addition, the cloth lifting roller belongs to a rotary mechanical structure, which influences the sealing performance of the gas-liquid cloth dyeing machine and causes the technical problem that the blocked cloth is difficult to dredge when the running speeds of the fabric and the cloth lifting roller are inconsistent. The utility model discloses still provide the gas-liquid cloth dyeing machine who contains above-mentioned cloth guide machine.
The utility model provides a lead cloth device, concrete technical scheme is as follows:
cloth guider, including first liquid flow nozzle, first return bend, second liquid flow nozzle, second return bend, third liquid flow nozzle and air jet, first liquid flow nozzle first return bend second liquid flow nozzle the second return bend third liquid flow nozzle with the air jet connects gradually, and is the S type and distributes.
In some embodiments, the first flow nozzle is aligned with the first bend, the second flow nozzle is aligned with the second bend, the third flow nozzle is aligned with the wind nozzle, and the axis of the first flow nozzle is at an angle of-8 to 16 degrees from the vertical.
In some embodiments, the third fluid flow nozzle and the air nozzle are collectively nested with a nozzle housing.
The utility model also provides a gas-liquid cloth dyeing machine, be in including barrel, built-in store up the cloth groove in the barrel and the cloth device is led to the aforesaid, it is built-in to lead the cloth device in the barrel, and fixed locate and store up cloth groove top.
In some embodiments, the cloth outlet point of the cloth storage groove is aligned with the first liquid flow nozzle, the air nozzle is movably connected with a cloth swinging hopper, and the cloth outlet of the cloth swinging hopper is aligned with the cloth falling point of the cloth storage groove.
The utility model discloses following beneficial effect has: the utility model provides a fabric guide device cancels the cloth lifting roller in the original cloth guide device, and the fabric passes through first liquid stream nozzle, first return bend, second liquid stream nozzle, second return bend, third liquid stream nozzle and air nozzle in proper order in dyeing process, provides a plurality of potential ability for the transportation of fabric in the cloth guide device, and the maximum increase fabric passes through the contained angle and the radian of corner when getting into the nozzle from the barrel, greatly reduces the running tension, avoids the cloth flying, stifled cloth phenomenon that causes when the cloth lifting roller is as the main power supply, thereby improves the finished product quality; meanwhile, the second bent pipe realizes dip dyeing of the fabric, and the third liquid flow nozzle and the air nozzle are combined for use to atomize the dye liquor, so that the contact proportion of the dye liquor and the fabric is increased, and the dyeing efficiency is improved.
Drawings
FIG. 1 is a schematic view showing the structure of a cloth guide in embodiment 1;
fig. 2 is a schematic structural view of a gas-liquid cloth dyeing machine in embodiment 2.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be described in detail with reference to the accompanying drawings 1-2 in conjunction with the following embodiments.
Example 1
The cloth guide device provided by the embodiment has the following specific scheme:
as shown in fig. 1, the cloth guide apparatus 1 includes a first fluid nozzle 11, a first bend 12, a second fluid nozzle 13, a second bend 14, a third fluid nozzle 15, and an air nozzle 16, wherein the first fluid nozzle 11, the first bend 12, the second fluid nozzle 13, the second bend 14, the third fluid nozzle 15, and the air nozzle 16 are connected in sequence and distributed in an S-shape. The fabric sequentially passes through the first liquid flow nozzle 11, the first bent pipe 12, the second liquid flow nozzle 13, the second bent pipe 14, the third liquid flow nozzle 15 and the air nozzle 16 and then enters the next mechanism, a fabric lifting roller is not needed for the fabric, a plurality of potential capacities are provided through the plurality of nozzles, low-tension fabric guiding is achieved, and damage to the fabric when the fabric lifting roller serves as a main power source is avoided. The spraying direction of the first liquid flow nozzle 11 is aligned to the first bent pipe 12, the spraying direction of the second liquid flow nozzle 13 is aligned to the second bent pipe 14, the spraying direction of the third liquid flow nozzle 15 is aligned to the air nozzle 16, and the included angle between the inclination angle of the first liquid flow nozzle 11 and the vertical line is-8-16 degrees. The first liquid flow nozzle 11, the second liquid flow nozzle 13, the third liquid flow nozzle 15 and the air nozzle 16 are powered during the running of the fabric, and the feasibility of low-tension fabric transportation is ensured. In particular, the third liquid jet nozzle 15 and the air jet nozzle 16 are jointly sheathed with a nozzle housing, so that the atomization effect is optimized. The first elbow pipe 12 and the second elbow pipe 14 take the required length of the working stroke into consideration, the overall height of the cloth guide mechanism is reduced, the installation space is saved, meanwhile, the second elbow pipe 14 realizes dip dyeing of the fabric, and the dyeing efficiency is improved.
The specific structures of the first fluid nozzle 11, the second fluid nozzle 13, and the third fluid nozzle 15 in this embodiment are all the prior art, and have been disclosed in the patent — an anti-rotation nozzle for dyeing machine (CN207347767U), and are not described here again.
Example 2
As shown in fig. 2, the present embodiment provides a gas-liquid cloth dyeing machine, which includes a cylinder 2, a cloth storage tank 3 built in the cylinder 2, and a cloth guide device 1 in embodiment 1, wherein the cloth guide device 1 is built in the cylinder 2 and is fixedly disposed above the cloth storage tank 3. In this embodiment, the cloth outlet of the cloth storage tank 3 is aligned with the first liquid flow nozzle 11, the air nozzle 16 is movably connected with the cloth swinging hopper 4, and the cloth outlet of the cloth swinging hopper 4 is aligned with the cloth falling port of the cloth storage tank 3.
In this embodiment, the fabric is now guided by a plurality of power provided by the first fluid jet 11, the second fluid jet 13, the third fluid jet 15 and the air jet 16 during a single cycle. The dye liquor sprayed by the first liquid flow nozzle 11 and the second liquid flow nozzle 13 permeates and dip-dyes the fabric, the fabric is dip-dyed in the second bent pipe 14, the fabric is combined with the atomized dye liquor through the third liquid flow nozzle 15 and the air nozzle 16, and finally the fabric and the atomized dye liquor drop into the cloth storage tank 3 in order through the cloth swinging hopper 4, so that a cycle is completed. According to the dyeing process requirement, completing the required cycle number to achieve uniform dyeing of the fabric.
In this embodiment, the device for swinging the swinging hopper 4 is disclosed in the patent-cloth dropping point adjusting device (CN211227681U) for pneumatic and hydraulic cloth dyeing machine, and is not described in detail here.
The embodiment also provides the application of the gas-liquid cloth dyeing machine, and based on the gas-liquid cloth dyeing machine, the gas-liquid cloth dyeing machine comprises the steps of preprocessing the fabric and overflow dyeing treatment, and when the fabric needs to be preprocessed, the first liquid flow nozzle 11, the third liquid flow nozzle 15 and the air nozzle 16 are opened. The pretreatment is used for bulking the fabric fibers and washing and scouring the fabric.
When the fabric needs to be overflow dyed, the first flow nozzle 11, the second flow nozzle 13 and the third flow nozzle 15 are opened. The overflow dyeing treatment is carried out through the first liquid flow nozzle, the second liquid flow nozzle and the third liquid flow nozzle, the running speed of the fabric is controlled to control the soaking time of the fabric in the fabric guide mechanism, and the dyeing effect is also controlled.
The above-mentioned only the utility model discloses the feasible embodiment of preferred is not right the utility model discloses a restriction, the utility model discloses also not be limited to the above-mentioned example, technical field's technical personnel the utility model discloses an in the essential scope, change, modification, interpolation or replacement made also should belong to the utility model discloses a protection scope.

Claims (5)

1. Cloth guider, its characterized in that includes first liquid stream nozzle (11), first return bend (12), second liquid stream nozzle (13), second return bend (14), third liquid stream nozzle (15) and air nozzle (16), first liquid stream nozzle (11) first return bend (12) second liquid stream nozzle (13) second return bend (14) third liquid stream nozzle (15) and air nozzle (16) connect gradually, and are the distribution of S type.
2. The cloth guide device according to claim 1, wherein the spraying direction of the first liquid flow nozzle (11) is aligned with the first elbow (12), the spraying direction of the second liquid flow nozzle (13) is aligned with the second elbow (14), the spraying direction of the third liquid flow nozzle (15) is aligned with the wind nozzle (16), and the axis of the first liquid flow nozzle (11) forms an angle of-8-16 degrees with the vertical line.
3. Cloth guide apparatus according to claim 1, characterised in that the third liquid jet nozzle (15) and the air jet nozzle (16) are jointly sheathed with a nozzle housing.
4. The gas-liquid cloth dyeing machine is characterized by comprising a cylinder body (2), a cloth storage groove (3) arranged in the cylinder body (2) and the cloth guide device (1) according to any one of claims 1 to 3, wherein the cloth guide device (1) is arranged in the cylinder body (2) and is fixedly arranged above the cloth storage groove (3).
5. The gas-liquid cloth dyeing machine according to claim 4, characterized in that the cloth outlet of the cloth storage tank (3) is aligned with the first liquid flow nozzle (11), the air nozzle (16) is movably connected with a cloth swinging hopper (4), and the cloth outlet of the cloth swinging hopper (4) is aligned with the cloth falling point of the cloth storage tank (3).
CN202023139960.6U 2020-12-23 2020-12-23 Cloth guide device and gas-liquid cloth dyeing machine comprising same Active CN214089014U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023139960.6U CN214089014U (en) 2020-12-23 2020-12-23 Cloth guide device and gas-liquid cloth dyeing machine comprising same

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023139960.6U CN214089014U (en) 2020-12-23 2020-12-23 Cloth guide device and gas-liquid cloth dyeing machine comprising same

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CN214089014U true CN214089014U (en) 2021-08-31

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112746415A (en) * 2020-12-23 2021-05-04 江苏博森机械制造有限公司 Cloth guide device and gas-liquid cloth dyeing machine comprising same

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112746415A (en) * 2020-12-23 2021-05-04 江苏博森机械制造有限公司 Cloth guide device and gas-liquid cloth dyeing machine comprising same

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