WO2019227484A1 - 连续式平幅冷堆染色/漂白轧车的高效双带液机构 - Google Patents

连续式平幅冷堆染色/漂白轧车的高效双带液机构 Download PDF

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Publication number
WO2019227484A1
WO2019227484A1 PCT/CN2018/089626 CN2018089626W WO2019227484A1 WO 2019227484 A1 WO2019227484 A1 WO 2019227484A1 CN 2018089626 W CN2018089626 W CN 2018089626W WO 2019227484 A1 WO2019227484 A1 WO 2019227484A1
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Prior art keywords
roller
liquid
immersion tank
working fluid
driving
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PCT/CN2018/089626
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English (en)
French (fr)
Inventor
洪子铭
张旺笋
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立信染整机械(深圳)有限公司
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Priority to PCT/CN2018/089626 priority Critical patent/WO2019227484A1/zh
Priority to KR1020207036023A priority patent/KR102418012B1/ko
Publication of WO2019227484A1 publication Critical patent/WO2019227484A1/zh

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    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06BTREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
    • D06B21/00Successive treatments of textile materials by liquids, gases or vapours
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06BTREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
    • D06B23/00Component parts, details, or accessories of apparatus or machines, specially adapted for the treating of textile materials, not restricted to a particular kind of apparatus, provided for in groups D06B1/00 - D06B21/00
    • D06B23/04Carriers or supports for textile materials to be treated
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06BTREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
    • D06B3/00Passing of textile materials through liquids, gases or vapours to effect treatment, e.g. washing, dyeing, bleaching, sizing, impregnating
    • D06B3/10Passing of textile materials through liquids, gases or vapours to effect treatment, e.g. washing, dyeing, bleaching, sizing, impregnating of fabrics
    • D06B3/18Passing of textile materials through liquids, gases or vapours to effect treatment, e.g. washing, dyeing, bleaching, sizing, impregnating of fabrics combined with squeezing, e.g. in padding machines

Definitions

  • the invention relates to the technical field of continuous open-width cold reactor dyeing / bleaching equipment, and in particular, to the aspects of improvement of the structure of the slot dyeing operation mode and the pinch dyeing operation mode.
  • the comb fabric structure is compact, so the dip dyeing operation method is used; the comb fabric has a longer length when passing through one or more guide rollers in the dip tank.
  • Time allows the fabric to absorb the working fluid in the immersion tank, pass through the uniform roll from bottom to top to carry out the rolling solution, and then roll out the cloth.
  • the disadvantage is that the more guide rollers pass, the greater the running tension.
  • the number of guide rollers directly affects the volume of the working fluid in the immersion tank. When the volume of the working fluid in the immersion tank is too high, it will directly increase the circulation time of the working fluid, affect the stability of the working fluid, and easily cause head and tail color differences. .
  • the disadvantages are that the time for the fabric to contact the working fluid is very short.
  • the fabric does not have enough time for sufficient fluid to pass through the uniform roll to carry out the rolling solution, which easily leads to color differences and color problems.
  • needle comb fabrics can be treated with the same type of liquid-liquid operation when performing open-cold cold-bundle dyeing / bleaching; also include; 1) under conditions of controllable tension; 2) under sufficient liquid-liquid effects; 3) in Low working fluid capacity; the best solution is reached under these three conditions.
  • the purpose of the present invention is to provide a technical problem of how to ensure a sufficient liquid-carrying effect under the condition of controllable tension, and how to avoid the problem of uneven rolling liquid caused by insufficient liquid-carrying in the fabric in the dip tank.
  • the high-efficiency double-liquid mechanism of the continuous open-width cold-stack dyeing / bleaching car includes a working liquid immersion tank, which is characterized in that: the working liquid immersion tank is provided with a driving roller and a passive roller above the water level line; The roller of the driving roller is connected with a roller motor, and the driving roller and the passive roller are arranged side by side to form a pre-rolling liquid roller group for uniformly pressing the prepreg fabric in the working fluid immersion tank from bottom to top; There are baffles, driving rolls, passive rolls and baffles to form V-shaped dipping tanks for liquid storage; above the V-shaped dipping tanks are provided for fabric direction and bottom direction of the fabric in the V-shaped dipping tanks. Dosing tube with working fluid.
  • the working fluid immersion tank is further provided with a driving widening roller, and a roller shaft of the driving widening roller is connected with a widening motor; the driving widening roller is arranged in front of the driving roller and is close to driving the fabric through the driving. After the expansion roller opens the bead, it can evenly and closely drive the working fluid into the working fluid immersion tank to drive the roll into the working fluid immersion tank for the first time with liquid pre-wetting.
  • the roller shaft of the passive roller is connected with a lever system for horizontally adjusting and driving the rolling pressure between the driving rollers.
  • the lever system includes a cylinder driving mechanism which is connected to push the passive roller and applies a pushing force in a horizontal direction to drive the roller.
  • the front part and the rear part of the working liquid immersion tank are respectively provided with at least one set of cleaning nozzles.
  • the driving widening roller includes a threaded roller.
  • the two ends of the roller shaft of the threaded roller are sealed and movably connected to the working fluid immersion tank through bearings, respectively.
  • the widening motor is provided outside the working fluid immersion tank to be drivingly connected to the roller shaft of the threaded roller.
  • the driving roller and the passive roller both include rubber-coated cylinders.
  • the two ends of the roller shaft of the driving roller and the passive roller are sealed and connected to the working fluid immersion tank through bearings, respectively.
  • the roller motor is provided outside the working fluid immersion tank and the driving roller.
  • the transmission of the roller shaft is connected; the lever system is set outside the working fluid immersion tank to support and connect the two ends of the roller shaft of the passive roller.
  • a liquid guide plate is provided in the liquid discharge direction of the dosing tube.
  • the beneficial effect of the present invention is that the fabric is run next to the driving roller and enters into the working fluid immersion tank for the first liquid pre-wetting, and then the driving roller and the passive roller are arranged side by side to form a pre-rolling liquid roller group for pre-rolling liquid. Finally, it passes through the V-shaped immersion tank for the second time to carry liquid, so that the needle combed fabric can fully absorb the working fluid before the roll is evenly rolled.
  • the fabric is pre-wetted with dyeing solution / chemicals in a low-fluid working fluid immersion tank. After pre-wetting, the fabric is rolled by a pre-rolling liquid roller group, and the fabric's yarn and its fibers are squeezed at the rolling point. After being compressed, the yarn and fiber of the fabric will naturally return to the original state after passing through the rolling point, and the liquid feeding rate will be increased due to the expansion of the yarn and fiber of the fabric when it returns to the original state.
  • the excess air in the fabric structure is replaced by the working fluid in the working fluid immersion tank during pre-wetting, and then pressed by the pre-rolling liquid roller group, and the moisture in the fabric structure after rolling is During extrusion, a negative pressure is also generated between the fabric's yarn and its fibers, which helps to supply liquid.
  • the surface of the fabric contains working fluid because it has been pre-wet, and its surface tension has also changed, which helps the capillary phenomenon to be effectively strengthened, so as to achieve the best liquid rate.
  • the volume of the working fluid immersion tank is limitedly reduced.
  • FIG. 1 is a schematic structural diagram of the present invention
  • FIG. 3 is a schematic side structural diagram in the application process of the present invention.
  • the high-efficiency dual-liquid mechanism of the continuous open-width cold-reactor dyeing / bleaching rolling car of the present invention includes a working fluid immersion tank 1, and the working fluid immersion tank 1 is provided with a high
  • the drive roller 5 and the passive roller 6 are provided with a water shield made of a wear-resistant sealing material on both sides, and the drive roller 5, the passive roller 6 and the water shield form a liquid storage V Type immersion tank 8.
  • the fabric 9 first enters the working liquid immersion tank 1 for pre-liquid, and then passes through the driving roller 5 and the passive roller 6 to perform the pre-rolling liquid.
  • the driving roll 5 and the passive roll 6 are pressed tightly in the horizontal direction to form a pressure jaw.
  • Above the pressure jaw is a V-shaped low-capacity V-shaped immersion tank 8.
  • the fabric 9 passes the liquid for the first time earlier. After pre-wetting and the newly completed rolling liquid, it enters the V-shaped dipping tank 8 for the second-time liquid-liquid application. With this double-liquid-liquid process, the excess air in the fabric 9 structure is immersed in the working liquid in the working liquid during pre-wetting.
  • the pre-rolling liquid roller group it is then rolled by the pre-rolling liquid roller group, and the moisture in the fabric structure is squeezed out after the rolling.
  • a negative pressure is also generated between the fabric's yarn and its fibers, which helps to supply liquid.
  • the surface of the fabric contains working fluid because it has been pre-wet, and its surface tension has also changed, which helps the capillary phenomenon to be effectively strengthened, so as to achieve the best liquid rate.
  • a dosing tube 2 is provided above the V-shaped immersion tank 8; the preferred solution is in the direction of the fabric surface and the bottom direction of the fabric surface.
  • a dosing tube 2 filled with working fluid is provided.
  • a liquid guide plate is provided in the liquid discharge direction of the dosing tube 2. 21.
  • the working fluid is introduced into the V-shaped immersion tank 8 by the liquid guide plate 21.
  • the working fluid immersion tank 1 is provided with water level control, and is used for controlling the working fluid capacity of the working fluid immersion tank 1. After the working fluid overflows the V-shaped immersion tank 8, it will overflow to the working fluid immersion tank 1, and at the same time, the working fluid immersion tank 1 is used for dispensing the working fluid.
  • the working fluid immersion tank 1 is further provided with a driving widening roller 4, and a roller shaft of the driving widening roller 4 is connected with a widening motor 41; the driving widening roller 4 is disposed in front of the driving roller 5, and The working fluid entering the working fluid immersion tank 1 for the first time is pre-wetted to make the fabric 9 flat and close to the driving roll 5 after being opened by the driving widening roll 4 to open the curling edge, so as to drive the rolling roll 5 Drive the fabric 9 while reducing the tension on the fabric 9 during transmission.
  • the driving widening roller 4 includes a threaded roller. The two ends of the roller shaft of the threaded roller are sealed and movably connected to the working fluid immersion tank 1 through bearings.
  • the expansion motor is provided outside the working fluid immersion tank 1 and the roller shaft of the threaded roller. Drive connection.
  • the roller shaft of the driving roller 5 is connected with a roller motor 51.
  • the driving roller 5 and the passive roller 6 each include a rubber-coated cylinder. Both ends of the roller shaft of the driving roller 5 and the passive roller 6 pass through the bearing and the working liquid immersion tank respectively. 1 sealed and movable connection, the roll motor is provided outside the working fluid immersion tank 1 and is drivingly connected with the roller shaft driving the roll 5.
  • the roll shaft of the passive roll 6 is connected with a lever system 7 for horizontally adjusting and driving the rolling pressure between the rolls 5; the lever system 7 is provided outside the working fluid immersion tank 1 and is supported and connected to both ends of the roll shaft of the passive roll 6.
  • the lever system 7 includes a cylinder driving mechanism connected to push the passive roll 6.
  • the lever system 7 is connected with a cylinder driving mechanism to push the passive roll 6 and applies a thrust force in a horizontal direction to the driven roll 5 to generate a rolling solution.
  • the rolling solution is applied to the fabric, and the yarn and the fiber of the fabric are squeezed at the rolling point. After being compressed, the yarn and fabric of the fabric 9 will naturally return to the original state after passing through the rolling point, and the liquid feeding rate will be increased due to the expansion of the fabric's yarn and its fiber when returning to the original state.
  • the front part and the rear part of the working fluid immersion tank 1 are respectively provided with at least one set of cleaning nozzles 3 for water spray cleaning before the working fluid immersion tank 1 is replaced with the working fluid.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Materials Engineering (AREA)
  • Treatment Of Fiber Materials (AREA)

Abstract

连续式平幅冷堆染色/漂白轧车的高效双带液机构,涉及到连续式平幅冷堆染色/漂白设备技术领域,目的在于如何在可控制张力的条件下,保证充足带液效果;包括有工作液浸槽,工作液浸槽中设有驱动轧辊和被动轧辊;驱动轧辊与被动轧辊的两侧设有挡水板,驱动轧辊、被动轧辊及挡水板形成储液用途的V型浸槽;在V型浸槽的上方设有配料管。织物结构中的多余空气于预湿时被工作液浸槽中工作液取代,其后再被预轧液辊组轧压,轧压后织物结构中的水分被挤压出,过程中织物的纱线及其纤维之间也产生了负压,有助给液。同时织物表面因已预湿而带含工作液,其表面张力也改变了,有助毛细现象有效地加强,从而达致最佳带液率。

Description

连续式平幅冷堆染色/漂白轧车的高效双带液机构 技术领域
本发明涉及到连续式平幅冷堆染色/漂白设备技术领域,具体涉及到槽染操作方式及夹染操作方式结构改进方面。
背景技术
在连续式的平幅冷堆染色/漂白设备上,织物一般会由槽染操作方式或夹染操作方式进行带液,其后再由均匀轧辊完成轧液。就平幅冷堆染色/漂白设备而言,除了均匀轧辊轧液线性压力及平均度为之重要外,于均匀轧辊轧液之前的带液效果非常重要; 在同一线性压力的均匀轧辊下,如织物带液不充分会引致多项问题: 染色时如织物左中右带液量不充分会容易引致经均匀轧辊轧液偏差而引致左中右色差或色花; 冷堆漂白时如织物带液不充分会容易引致经均匀轧辊轧液偏差而引致左中右毛效不一致; 染色时如织物前后段带液量不稳定会容易引致经均匀轧辊轧液偏差而引致布卷头尾色差; 冷堆漂白时如织物带液不稳定会容易引致经均匀轧辊轧液偏差而引致布卷头尾毛效不一致。因此,织物于平幅冷堆染色/漂白的质量很大程度取决于均匀轧辊轧液前的带液效果。
在一般情况下,梳织物在进行平幅冷堆染色/漂白时由于梳织物结构较紧密,故会使用浸染操作方式; 使梳织物于通过浸槽内的一个或多个导辊时有较长时间让织物吸收浸槽内的工作液,由下而上穿过均匀轧辊进行轧液,然后出布打卷。但带来的缺点是; 所经过的导辊越多,运行张力则越大。同时,因导辊数量多少也直接影响到浸槽内工作液的容量,浸槽内工作液容量太高时会直接影增加了工作液的循环时间,影响工作液稳定性,容易引致头尾色差。
由于使用浸染操作方式有张力偏大的缺点,故在在一般情况下,针织物在进行平幅冷堆染色/漂白时,由于针织物结构较容易因张力而变化,影响质量,故大多会使用夹染操作方式; 针织物由上而下先经过开边板把针织物常有的卷边翻开,再进入V型夹槽内进行带液; V型夹槽是由两根均匀轧辊轧合后顶上产生的V型空间于两则密封下而产生,V型夹槽内工作液容量极少,针织物经过V型夹槽带液后直接经过均匀轧辊后进行打卷。但带来的缺点是; 织物接触工作液的时间非常短,以现今高枝数针织物而言,织物没有足够时间作充分带液便经过均匀轧辊进行轧液,容易引致色差及色花问题。
假设针梳织物都能在进行平幅冷堆染色/漂白时以同一型式的带液操作方式; 同时包括; 1) 在可控制张力的条件下; 2) 在充足带液效果下; 3) 在低工作液容量下; 在这三个条件下达到最充分的带液,便成为最佳方案。
技术问题
综上所述,本发明的目的在于如何在可控制张力的条件下,保证充足带液效果,如何避免出现织物于浸染槽因带液不足而引致轧液不均的现象的技术问题,而提出连续式平幅冷堆染色/漂白轧车的高效双带液机构。
技术解决方案
为解决本发明所提出的技术问题,采用的技术方案为:
连续式平幅冷堆染色/漂白轧车的高效双带液机构,包括有工作液浸槽,其特征在于:所述的工作液浸槽中设有高于水位线的驱动轧辊和被动轧辊;驱动轧辊的辊轴连接有轧辊马达,驱动轧辊与被动轧辊并排构成用于将工作液浸槽中预浸织物由下向上均匀轧压的预轧液辊组;驱动轧辊与被动轧辊的两侧设有挡水板,驱动轧辊、被动轧辊及挡水板形成储液用途的V型浸槽;在V型浸槽的上方设有用于为V型浸槽中织物布面方向及织物布面底方向配注工作液的配料管。
作为对本发明作进一步限定的技术方案包括有:
所述的工作液浸槽中还设有驱动扩幅辊,驱动扩幅辊的辊轴连接有扩幅马达;所述的驱动扩幅辊设置于驱动轧辊前方,紧靠着使织物于经过驱动扩幅辊打开卷边后能平整的紧贴着驱动轧辊运行进入工作液浸槽内的工作液作首度带液预湿的位置。
所述的被动轧辊的辊轴连接有用于水平调节与驱动轧辊间轧压力度的杠杆系统。
所述的杠杆系统包括有连接推动被动轧辊,以水平方向施加推力压向驱动轧辊的气缸驱动机构。
所述的工作液浸槽的前部份及后部份分别至少设有一套清洗喷管。
所述的驱动扩幅辊包括有螺纹辊,螺纹辊的辊轴两端分别通过轴承与工作液浸槽密封活动连接,扩幅马达设于工作液浸槽外部与螺纹辊的辊轴传动连接。
所述的驱动轧辊和被动轧辊均包括有包胶筒体,驱动轧辊和被动轧辊的辊轴两端分别通过轴承与工作液浸槽密封活动连接,轧辊马达设于工作液浸槽外部与驱动轧辊的辊轴传动连接;杠杆系统设于工作液浸槽外部与被动轧辊的辊轴两端支撑连接。
所述的配料管的出液方向上设有导液板。
有益效果
本发明的有益效果为:织物紧贴着驱动轧辊运行进入工作液浸槽内的工作液作首度带液预湿,之后在驱动轧辊与被动轧辊并排构成预轧液辊组进行预轧液,最后再经过V型浸槽进行第二度带液,以便无论针梳织物都能于均匀轧辊轧液前充分吸收工作液。
织物于低液量的工作液浸槽内进行染液/化学品预湿,预湿后织物再被预轧液辊组轧压,织物的纱线及其纤维会于轧压点被挤压而被压缩,经过轧压点后织物的纱线及其纤维会自然回复原状态,期间会因织物的纱线及其纤维于回复原状态时的膨胀而提高给液率。运用本发明这双带液工艺,织物结构中的多余空气于预湿时被工作液浸槽中工作液取代,其后再被预轧液辊组轧压,轧压后织物结构中的水分被挤压出,过程中织物的纱线及其纤维之间也产生了负压,有助给液。同时织物表面因已预湿而带含工作液,其表面张力也改变了,有助毛细现象有效地加强,从而达致最佳带液率。工作液浸槽的体积得到有限缩减。
附图说明
图1为本发明的结构原理示意图;
图2为本发明应用过程中的结构示意图;
图3为本发明应用过程中的侧面结构示意图。
本发明的最佳实施方式
以下结合附图和本发明优选的具体实施例对本发明的结构作进一步地说明。
参照图1至图3中所示,本发明连续式平幅冷堆染色/漂白轧车的高效双带液机构,包括有工作液浸槽1,所述的工作液浸槽1中设有高于水位线的驱动轧辊5和被动轧辊6;驱动轧辊5与被动轧辊6并排构成预轧液辊组,预轧液辊组用于将工作液浸槽1中已预浸的织物9由下向上均匀轧压,产生轧液作用;驱动轧辊5与被动轧辊6的两侧设有由耐磨密封材料制成的挡水板,驱动轧辊5、被动轧辊6及挡水板形成储液用途的V型浸槽8。
也即是织物9首先进入工作液浸槽1进行预带液,再经过驱动轧辊5与被动轧辊6配合进行预轧液。所述的驱动轧辊5及被动轧辊6以水平方向紧压下形成加压钳口,该加压钳口上方为V型低容量的V型浸槽8,织物9经过较早前首度带液预湿及刚完成的轧液后在此进入V型浸槽8作第二度带液,运用这双带液工艺,织物9结构中的多余空气于预湿时被工作液浸槽中工作液取代,其后再被预轧液辊组轧压,轧压后织物结构中的水分被挤压出,过程中织物的纱线及其纤维之间也产生了负压,有助给液。同时织物表面因已预湿而带含工作液,其表面张力也改变了,有助毛细现象有效地加强,从而达致最佳带液率。
为了保证V型低容量的V型浸槽8持续保持有所需的工作液,在V型浸槽8的上方设有配料管2;优先方案在位于织物布面方向及织物布面底方向各设有一条配注工作液的配料管2,为了避免配料管2排出的工作液直接作用于织物9上,从而导致浸染不均,所述的配料管2的出液方向上设有导液板21,由导液板21将工作液导入到V型浸槽8中。所述的工作液浸槽 1 配有水位控制,为工作液浸槽 1 作工作液容量的控制用途。工作液溢满V型浸槽8后会溢流至工作液浸槽 1,同时为工作液浸槽 1作配注工作液用途。
所述的工作液浸槽1中还设有驱动扩幅辊4,驱动扩幅辊4的辊轴连接有扩幅马达41;所述的驱动扩幅辊4设置于驱动轧辊5前方位置,且紧靠着使织物9于经过驱动扩幅辊4打开卷边后能平整的紧贴着驱动轧辊5运行进入工作液浸槽1内的工作液作首度带液预湿,以便于驱动轧辊5传动织物9,同时减小传动过程中对织物9的张力。所述的驱动扩幅辊4包括有螺纹辊,螺纹辊的辊轴两端分别通过轴承与工作液浸槽1密封活动连接,扩幅马达设于工作液浸槽1外部与螺纹辊的辊轴传动连接。
驱动轧辊5的辊轴连接有轧辊马达51,所述的驱动轧辊5和被动轧辊6均包括有包胶筒体,驱动轧辊5和被动轧辊6的辊轴两端分别通过轴承与工作液浸槽1密封活动连接,轧辊马达设于工作液浸槽1外部与驱动轧辊5的辊轴传动连接。所述的被动轧辊6的辊轴连接有用于水平调节与驱动轧辊5间轧压力度的杠杆系统7;杠杆系统7设于工作液浸槽1外部与被动轧辊6的辊轴两端支撑连接。杠杆系统7包括有连接推动被动轧辊6的气缸驱动机构。杠杆系统7以气缸驱动机构连接推动被动轧辊6,以水平方向施加推力压向驱动轧辊5,产生轧液作用,为织物进行轧液,织物的纱线及其纤维会于轧压点被挤压而被压缩,经过轧压点后织物9的纱线及其纤维会自然回复原状态,期间会因织物的纱线及其纤维于回复原状态时的膨胀而提高给液率。
所述的工作液浸槽1的前部份及后部份分别至少设有一套清洗喷管3,为工作液浸槽1更换工作液前作喷水清洗用途。

Claims (8)

  1. 连续式平幅冷堆染色/漂白轧车的高效双带液机构,包括有工作液浸槽,其特征在于:所述的工作液浸槽中设有高于水位线的驱动轧辊和被动轧辊;驱动轧辊的辊轴连接有轧辊马达,驱动轧辊与被动轧辊并排构成用于将工作液浸槽中预浸织物由下向上均匀轧压的预轧液辊组;驱动轧辊与被动轧辊的两侧设有挡水板,驱动轧辊、被动轧辊及挡水板形成储液用途的V型浸槽;在V型浸槽的上方设有用于为V型浸槽中织物布面方向及织物布面底方向配注工作液的配料管。
  2. 根据权利要求1所述的连续式平幅冷堆染色/漂白轧车的高效双带液机构,其特征在于:所述的工作液浸槽中还设有驱动扩幅辊,驱动扩幅辊的辊轴连接有扩幅马达;所述的驱动扩幅辊设置于驱动轧辊前方,紧靠着使织物于经过驱动扩幅辊打开卷边后能平整的紧贴着驱动轧辊运行进入工作液浸槽内的工作液作首度带液预湿的位置。
  3. 根据权利要求1所述的连续式平幅冷堆染色/漂白轧车的高效双带液机构,其特征在于:所述的被动轧辊的辊轴连接有用于水平调节与驱动轧辊间轧压力度的杠杆系统。
  4. 根据权利要求3所述的连续式平幅冷堆染色/漂白轧车的高效双带液机构,其特征在于:所述的杠杆系统包括有连接推动被动轧辊,以水平方向施加推力压向驱动轧辊的气缸驱动机构。
  5. 根据权利要求1所述的连续式平幅冷堆染色/漂白轧车的高效双带液机构,其特征在于:所述的工作液浸槽的前部份及后部份分别至少设有一套清洗喷管。
  6. 根据权利要求2所述的连续式平幅冷堆染色/漂白轧车的高效双带液机构,其特征在于:所述的驱动扩幅辊包括有螺纹辊,螺纹辊的辊轴两端分别通过轴承与工作液浸槽密封活动连接,扩幅马达设于工作液浸槽外部与螺纹辊的辊轴传动连接。
  7. 根据权利要求3所述的连续式平幅冷堆染色/漂白轧车的高效双带液机构,其特征在于:所述的驱动轧辊和被动轧辊均包括有包胶筒体,驱动轧辊和被动轧辊的辊轴两端分别通过轴承与工作液浸槽密封活动连接,轧辊马达设于工作液浸槽外部与驱动轧辊的辊轴传动连接;杠杆系统设于工作液浸槽外部与被动轧辊的辊轴两端支撑连接。
  8. 根据权利要求1所述的连续式平幅冷堆染色/漂白轧车的高效双带液机构,其特征在于:所述的配料管的出液方向上设有导液板。
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