WO2019140773A1 - 浸液装置 - Google Patents
浸液装置 Download PDFInfo
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- WO2019140773A1 WO2019140773A1 PCT/CN2018/079401 CN2018079401W WO2019140773A1 WO 2019140773 A1 WO2019140773 A1 WO 2019140773A1 CN 2018079401 W CN2018079401 W CN 2018079401W WO 2019140773 A1 WO2019140773 A1 WO 2019140773A1
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- mesh belt
- immersion
- roller
- liquid
- tank
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06B—TREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
- D06B3/00—Passing of textile materials through liquids, gases or vapours to effect treatment, e.g. washing, dyeing, bleaching, sizing, impregnating
- D06B3/02—Passing of textile materials through liquids, gases or vapours to effect treatment, e.g. washing, dyeing, bleaching, sizing, impregnating of fibres, slivers or rovings
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06B—TREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
- D06B15/00—Removing liquids, gases or vapours from textile materials in association with treatment of the materials by liquids, gases or vapours
- D06B15/02—Removing liquids, gases or vapours from textile materials in association with treatment of the materials by liquids, gases or vapours by squeezing rollers
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06B—TREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
- D06B23/00—Component 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
- D06B23/02—Rollers
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06B—TREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
- D06B23/00—Component 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
- D06B23/04—Carriers or supports for textile materials to be treated
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06B—TREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
- D06B23/00—Component 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
- D06B23/20—Arrangements of apparatus for treating processing-liquids, -gases or -vapours, e.g. purification, filtration or distillation
Definitions
- the present application relates to a liquid immersion device and belongs to the technical field of liquid processing of textile materials.
- Fiber or the like is often immersed in the fiber treatment process.
- immersion There are two common methods of immersion: one is in the form of a immersion tank, which is sufficient for immersion, but it must be separated from other front and back processes, and continuous production cannot be achieved, and different batches of fibers are being carried out.
- immersion treatment chromatic aberration and uneven dyeing may occur due to the difference in immersion composition; there is also a method, such as patent 201210139796X, which realizes continuous production, but must be fiber-formed before immersion treatment.
- Figure 1 and Figure 6 of the application it can be seen that the fiber entering the immersion tank is actually a continuous whole to achieve its immersion and transfer. In other words, the prerequisite for the treatment is that the fiber must be reticulated.
- the present application provides an immersion device capable of achieving continuous immersion of the bulk fibers and uniform controllable immersion liquid.
- the immersion device comprises a immersion tank, a mesh belt transport unit and a pressure roller, wherein the mesh belt transport unit comprises a mesh belt, the pressure roller is located above the mesh belt, and the mesh belt near the corresponding position is maintained in the immersion tank The liquid immersion liquid is below the liquid level, and the pressure roller and the mesh belt perform synchronous movement.
- the shape of the mesh belt corresponding to the immersion tank is the same or similar to the shape of the immersion tank.
- the mesh belt located below the liquid level of the immersion liquid is the main part of the fiber transport, and is set to have the same or similar structure as the immersion tank, which is beneficial to increase the processing amount of the fiber and fully improve the immersion liquid and the net in a limited space. Bring contact with loose fibers.
- the mesh belt transport unit further includes at least one driving roller that drives the mesh belt into the immersion tank to complete the immersion liquid and then exit the immersion tank.
- At least one driving roller is provided to ensure that the mesh belt is dynamic, and the mesh belt and the pressure roller move with each other, thereby strengthening the interaction between the two, and improving the processing efficiency of the loose fibers. More preferably, the driving roller is disposed on the rear side of the traveling direction of the mesh belt, and the mesh belt is inserted from one end of the liquid immersion tank under the pulling of the driving roller, and after the immersion liquid is completed with the pressing roller, the other end of the immersion liquid tank is discharged. .
- the scheme can adopt a non-closed structure, which is composed only of a mesh belt and a driving roller, wherein the mesh belt serves as a transmission action, and the driving roller is a power source for moving the mesh belt.
- the mesh belt transport unit further includes at least one driving roller and a plurality of rollers.
- the mesh belt is tensioned and installed between the driving roller and the idler roller, and cooperates with the pressing roller to complete the immersion liquid.
- a closed loop structure may be employed in which the support of the mesh belt loop is formed by at least one drive roller and a plurality of rollers.
- a deviation correcting roller is disposed on the mesh belt loop. More preferably, the correcting roller is located on a mesh belt loop near the end of the incoming fiber. In the process of conveying fibers, webs or the like, as the rollers rotate, the offset phenomenon is apt to occur. In order to avoid transmission errors, a rectifying roller is disposed in the mesh belt loop, and the rectifying roller is preferably disposed in the front portion of the loop. Near the end of the incoming fiber, the front setting ensures the accuracy of subsequent transfers.
- a tension roller is disposed on the mesh belt loop for adjusting the pressure on the mesh belt.
- the pressure roller can be set in two forms: the top of the pressure roller is not lower than the groove of the liquid immersion tank, and the fiber to be treated, the fiber web or the like is transported on the mesh belt and the dip is completed. liquid.
- the top of the pressing roller is lower than the notch of the immersion tank, and a plurality of rollers are disposed at a position corresponding to the pressing roller, and the upper belt is tensioned between the idler roller and the pressure roller, and the upper belt and the mesh belt are formed.
- the double mesh structure, the fiber to be treated, the fiber web or the like is sandwiched and transported between the twin mesh structures and the immersion liquid is completed.
- a scraper is arranged above the net to avoid splashing of the immersion liquid.
- the present application is applied to the treatment of loose fibers, loose fiber webs or the like, and is fed from one end of the mesh belt, and the mesh belt is carried or the mesh belt is matched with the net on the pressure roller to place the fibers in a certain space.
- Fixed when it enters the immersion liquid in the immersion tank, it can realize the immersion of the immersion liquid, complete the immersion treatment such as dyeing, and ensure that the fiber is in a state of non-dispersion, so that it realizes the immersion liquid at the same time. Transfer.
- Figure 1 is a schematic view showing the first structure of the present application
- Figure 2 is a schematic view showing the second structure of the present application.
- Figure 3 is a schematic view showing the third structure of the present application.
- the label 1. immersion tank; 1a. immersion liquid; 11. immersion liquid inner wall; 2. mesh belt transfer unit; 21. mesh belt; 22. drive roller one; 23. roller one; 24. lower deviation roller ; 25; lower tension roller; 3. pressure roller; 31. upper belt; 32. roller 2; 33. upper deflection roller; 34. upper tension roller; 4. scraper.
- the liquid immersion device of the present embodiment in conjunction with FIG. 1, includes a liquid immersion tank 1, a mesh belt transport unit 2, and a press roller 3.
- the mesh belt transport unit 2 includes a mesh belt 21, and the pressure roller 3 is located above the mesh belt 21, and The mesh belt 21 near the corresponding position is kept below the liquid level of the immersion liquid 1a in the immersion tank 1, and the pressure roller 3 and the mesh belt 21 move synchronously, and when the fiber enters the immersion tank 3 with the mesh belt 21, the pressure is pressed.
- the roller 3 presses the loose fibers on the surface of the mesh belt 21 to impart a surface pressure of 1-2 kg to the fiber, thereby ensuring the dyeing.
- the positional shape of the mesh belt 21 corresponding to the immersion tank 1 is the same as or similar to the shape of the immersion tank 1, that is, the immersion liquid inner wall 11 of FIG.
- the mesh belt 21 located below the level of the immersion liquid 1a is the main part of the fiber transport, and is set to have the same or similar shape as the immersion tank 1, which is advantageous for increasing the processing amount of the fiber and sufficiently improving the immersion in a limited space.
- the liquid 1a is in contact with the loose fibers on the mesh belt 21.
- the mesh belt transport unit 2 can adopt the structure shown in FIG. 1, that is, includes a mesh belt 21 and at least one driving roller 22, and the driving roller 22 drives the mesh belt 21 into the immersion tank 1 to complete the immersion liquid and then leave the immersion.
- Tank 1 At least one driving roller 22 is provided to ensure that the mesh belt 21 is dynamic, and the mesh belt 21 and the pressure roller 3 move relative to each other, thereby enhancing the interaction between the two, and improving the processing efficiency of the loose fibers.
- the driving roller 21 is disposed on the rear side of the traveling direction of the mesh belt 21, and the mesh belt 21 is inserted from one end of the immersion tank 1 under the pulling of the driving roller 22, and is immersed in the immersion liquid after the pressing roller 3 is immersed. The other end of the liquid tank 1 is discharged.
- the scheme can adopt a non-closed structure, and is composed only of the mesh belt 21 and the driving roller 22, wherein the mesh belt 21 serves as a conveying action, and the driving roller 22 is a mesh belt 21 The source of power for the move.
- the mesh belt transport unit 3 can also adopt a structure as shown in FIG. 2, that is, a mesh belt 21, at least one driving roller 22 and a plurality of rollers 23, and the mesh belt 21 is tensioned and mounted on the driving roller 22 and the roller. Between 23 and 30, and with the pressure roller 3 to complete the immersion.
- a closed loop structure can be employed, and the support of the mesh belt loop is formed by at least one of the drive rollers 22 and the plurality of rollers #23.
- the mesh belt 21 is provided with a correcting roller, that is, a lower correcting roller 24. More preferably, the lower correcting roller 24 is located on the loop of the mesh belt 21 near the end where the fibers are introduced. In the process of conveying fibers, webs or the like, as the rollers rotate, the offset phenomenon is apt to occur.
- a rectifying roller is disposed in the loop of the mesh belt 21, and the rectifying roller is preferably disposed in the front portion of the loop. That is, near the end of the incoming fiber, the front setting ensures the accuracy of subsequent transmission.
- the mesh belt 21 is provided with a tension roller, that is, the lower tension roller 25 in Fig. 3, for adjusting the pressure on the mesh belt 21.
- the pressure roller 3 can be set in two forms: (1) In combination with Fig. 1, the top of the pressure roller 3 is not lower than the notch of the immersion tank 1, the fiber to be treated, the fiber web or the like. The immersion liquid is transported and completed on the mesh belt 21. (2) In combination with FIG. 2 and FIG. 3, the top of the pressure roller 3 is lower than the notch of the immersion tank 1, and a plurality of rollers 2 are disposed at positions corresponding to the pressure roller 3, and between the roller two 32 and the pressure roller 3 The upper belt 31 is tensioned, and the upper belt 31 and the mesh belt 21 form a double mesh structure, and the fiber to be treated, the fiber web or the like is transported between the double mesh structures and the immersion liquid is completed;
- a correcting roller for example, an upper correcting roller 33 and a lower correcting roller 24
- the correcting roller is preferably disposed at The front section of the loop is near the end of the incoming fiber, and the front setting ensures the accuracy of the subsequent conveyance; it is also possible to add a tensioning roller in the double-grid structure, such as the upper tensioning roller 34 and the lower tensioning roller 25 in FIG. It is used to adjust the pressure on the net 31 and the mesh belt 21.
- the pressure on the fiber is given at 1-2 kg, to avoid the pressure being too large, the immersion liquid can not enter the fiber, or the pressure is too small, dip
- the liquid is too easy to pass the immersion liquid passage formed by the mesh belt 21 and the pressure roller 3 or the mesh belt 21 and the pressure roller 3 and the upper belt 31, and the immersion liquid rapidly passes through the loose fiber, the fiber mesh or the like.
- the contact time with fibers, fiber webs or the like is too short, and the dyeing rate is actually poor.
- the squeegee 4 can also be disposed on the Internet 31 to avoid splashing of the immersion liquid 1a with the mesh belt 21 and the Internet 31.
- the present application is applied to the treatment of loose fibers, loose fiber webs or the like, which is fed from one end of the mesh belt 21, and the carrier or mesh belt 21 of the mesh belt 21 is matched with the net 31 on the pressure roller 3 to bond the fibers.
- Fixed in a certain space when it enters the immersion liquid in the immersion tank 1, the immersion of the immersion liquid 1a can be realized, the immersion liquid treatment such as dyeing is completed, and the fiber is kept in a state of being dispersed, so that it is The transfer is achieved while the immersion is completed.
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- Engineering & Computer Science (AREA)
- Textile Engineering (AREA)
- Treatment Of Fiber Materials (AREA)
Abstract
一种浸液装置,属于纺织材料的液体处理技术领域,该浸液装置包括浸液槽(1)、网带传输单元(2)、压辊(3),所述的网带传输单元(2)包括有网带(21),压辊(3)位于网带(21)上方,并将与其对应位置附近的网带(21)保持在浸液槽(1)中浸液液面以下,且压辊(3)与网带(21)做同步运动;将该浸液装置应用于纤维、纤维网或者类似物的浸液处理,具有连续性好、浸液稳定等优点。
Description
本申请涉及一种浸液装置,属于纺织材料的液体处理技术领域。
在纤维处理过程中,经常会对纤维或者类似物做浸液处理。常见的浸液方式有两种:一种是采用浸液缸的形式,这种方式浸液充分,然而其必须要与其他前后工序脱离,无法实现连续化生产,且不同批次的纤维在进行浸液处理时,会因浸液构成上的差别造成色差和染色不匀;还有一种方式,如专利201210139796X,该方式虽然实现了连续化生产,但在进行浸液处理前,必须进行纤维成网,结合该申请的图1以及图6可以看出,进入浸液箱的纤维实际是作为一个连续整体,才能实现其浸液和传送,换言之,是处理实现的前提条件是纤维必须是网状的连续结构,对于散纤维而言,采用这种方式,会因纤维相互之间的牵连作用过低造成纤维遗落在浸液箱中,导致纤维在浸液箱中的堆积,因而该方案并不能实现散纤维或类似物的连续化浸液处理。
基于此,做出本申请。
发明内容
针对现有散纤维或类似物的浸液处理所存在的上述缺陷,本申请提供一种可实现散纤维连续浸液、浸液均匀可控的浸液装置。
为实现上述目的,本申请采取的技术方案如下:
浸液装置,包括浸液槽、网带传输单元、压辊,所述的网带传输单元包括有网带,压辊位于网带上方,并将与其对应位置附近的网带保持在浸液槽中浸液液面以下,且压辊与网带做同步运动。
进一步的,作为优选:
所述网带与浸液槽相对应的位置形状与浸液槽形状相同或类似。位于浸液液位以下的网带是纤维传送的主要部位,将其设置为与浸液槽形状相同或类似的结构,有利于提高纤维的处理量,并在有限空间内充分提高浸液与网带上散纤维的接触。
所述的网带传输单元还包括至少一个驱动辊,该驱动辊带动网带进入浸液槽完成浸液后再离开浸液槽。驱动辊至少设置一个,确保网带处于动态,网带与压辊相互运动,强化了两者之间的作用,可提高散纤维的处理效率。更优选的,所述的驱动辊设置于网带行进方向后侧,网带在该驱动辊的拉动下由浸液槽一端入,与压辊配合完成浸液后, 经浸液槽另一端出。该方案作为网带传输单元的第一种结构,可采用非封闭式结构,仅由网带和驱动辊构成,其中网带作为传送作用场合,驱动辊为网带移动的动力源。
所述的网带传输单元还包括至少一个驱动辊和若干个托辊,网带张紧安装于驱动辊与托辊之间,并与压辊配合完成浸液。作为网带传输单元的第二种结构,可采用封闭式回路结构,由至少一个驱动辊和若干个托辊形成网带回路的支撑。
所述的网带回路上设置有纠偏辊。更优选的,所述的纠偏辊位于靠近纤维传入的一端的网带回路上。在纤维、纤维网或类似物传送过程中,随着各辊轴的转动,容易出现偏移现象,为避免传送失误,在网带回路中设置纠偏辊,该纠偏辊优选设置在回路的前段即靠近纤维传入的一端,靠前设置确保后续传送的准确性。
所述的网带回路上设置有张紧辊,用于调节网带上的压力。
根据压辊的尺寸大小,可将压辊设置为两种形式:所述的压辊顶部不低于浸液槽槽口以上,待处理纤维、纤维网或类似物在网带上传输并完成浸液。或者,所述的压辊顶部低于浸液槽槽口,与该压辊对应位置还设置有若干个托辊,托辊与压辊之间张紧安装有上带,上带与网带形成双网结构,待处理纤维、纤维网或类似物在该双网结构之间夹持传输并完成浸液。所述的双网结构中,上网上方设置刮板,以避免浸液的飞溅。
将本申请应用于散纤维、散纤维网或类似物的处理,将其自网带的一端送入,在网带的携带或者网带与压辊上的上网配合,将纤维在一定的空间内固定,当其进入浸液槽中的浸液时,既可实现浸液的浸入,完成上染等浸液处理,又确保了纤维处于不散的状态,使之在完成浸液的同时实现了传送。
图1为本申请的第一种结构示意图;
图2为本申请的第二种结构示意图;
图3为本申请的第三种结构示意图。
图中标号:1.浸液槽;1a.浸液;11.浸液内壁;2.网带传输单元;21.网带;22.驱动辊一;23.托辊一;24.下纠偏辊;25.下张紧辊;3.压辊;31.上带;32.托辊二;33.上纠偏辊;34.上张紧辊;4.刮板。
实施例1
本实施例的浸液装置,结合图1,包括浸液槽1、网带传输单元2、压辊3,网带传输单元2包括有网带21,压辊3位于网带21上方,并将与其对应位置附近的网带21保 持在浸液槽1中浸液1a的液面以下,且压辊3与网带21做同步运动,当纤维随着网带21进入浸液槽3时,压辊3挤压网带21表面的散纤维,赋予纤维1-2公斤的表面压力,即可确保上染。
为实现更多的使用效果,上述方案还可以按照如下方式增设:
网带21与浸液槽1相对应的位置形状与浸液槽1形状即图1中的浸液内壁11相同或类似。位于浸液1a液位以下的网带21是纤维传送的主要部位,将其设置为与浸液槽1形状相同或类似的结构,有利于提高纤维的处理量,并在有限空间内充分提高浸液1a与网带21上散纤维的接触。
为实现更多的使用效果,上述方案还可以按照如下方式增设:
网带传输单元2可以采用如图1所示的结构,即包括一个网带21和至少一个驱动辊一22,该驱动辊一22带动网带21进入浸液槽1完成浸液后再离开浸液槽1。驱动辊一22至少设置一个,确保网带21处于动态,网带21与压辊3相互运动,强化了两者之间的作用,可提高散纤维的处理效率。更优选的,驱动辊一21设置于网带21行进方向后侧,网带21在该驱动辊一22的拉动下由浸液槽1一端入,与压辊3配合完成浸液后,经浸液槽1另一端出。该方案作为网带传输单元2的第一种结构,可采用非封闭式结构,仅由网带21和驱动辊一22构成,其中网带21作为传送作用场合,驱动辊一22为网带21移动的动力源。
为实现更多的使用效果,上述方案还可以按照如下方式增设:
网带传输单元3还可以采用如图2所示的结构,即包括网带21、至少一个驱动辊一22和若干个托辊一23,网带21张紧安装于驱动辊一22与托辊一23之间,并与压辊3配合完成浸液。作为网带传输单元2的第二种结构,可采用封闭式回路结构,由至少一个驱动辊一22和若干个托辊一23形成网带回路的支撑。
为实现更多的使用效果,上述方案还可以按照如下方式增设:
结合图3(图3为原理说明示意图,该图中仅标示了核心部件,对于起定位和支撑的配合性部件未显示出来),网带21回路上设置有纠偏辊,即下纠偏辊24。更优选的,该下纠偏辊24位于靠近纤维传入的一端的网带21回路上。在纤维、纤维网或类似物传送过程中,随着各辊轴的转动,容易出现偏移现象,为避免传送失误,在网带21回路中设置纠偏辊,该纠偏辊优选设置在回路的前段即靠近纤维传入的一端,靠前设置确保后续传送的准确性。
为实现更多的使用效果,上述方案还可以按照如下方式增设:网带21回路上设置有 张紧辊,即图3中的下张紧辊25,用于调节网带21上的压力。
根据压辊3的尺寸大小,可将压辊3设置为两种形式:(1)结合图1,压辊3顶部不低于浸液槽1槽口以上,待处理纤维、纤维网或类似物在网带21上传输并完成浸液。(2)结合图2和图3,压辊3顶部低于浸液槽1槽口,与该压辊3对应位置还设置有若干个托辊二32,托辊二32与压辊3之间张紧安装有上带31,上带31与网带21形成双网结构,待处理纤维、纤维网或类似物在该双网结构之间传输并完成浸液;
在上述结构中,以图2与图3为例,图3所提供的方案中,可以在双网结构中增设纠偏辊(如:上纠偏辊33和下纠偏辊24),纠偏辊优选设置在回路的前段即靠近纤维传入的一端,靠前设置确保后续传送的准确性;还可以在双网结构中增设张紧辊,如图3中的上张紧辊34和下张紧辊25,用于调节上网31、网带21上的压力,在浸液过程中,如上染时,赋予纤维上压力在1-2公斤,避免压力太大造成浸液无法进入纤维,或者压力太小时,浸液太过轻松的越出网带21与压辊3或者网带21与压辊3、上带31所形成的浸液流通通道,浸液迅速的经过了散纤维、纤维网或者类似物,其与纤维、纤维网或者类似物的接触时间太短,实际上染率不佳。在上述双网结构中,还可以在上网31上设置刮板4,避免避免浸液1a随网带21、上网31的运行飞溅。
将本申请应用于散纤维、散纤维网或类似物的处理,将其自网带21的一端送入,在网带21的携带或者网带21与压辊3上的上网31配合,将纤维在一定的空间内固定,当其进入浸液槽1中的浸液时,既可实现浸液1a的浸入,完成上染等浸液处理,又确保了纤维处于不散的状态,使之在完成浸液的同时实现了传送。
Claims (10)
- 浸液装置,其特征在于:包括浸液槽、网带传输单元、压辊,所述的网带传输单元包括有网带,压辊位于网带上方,并将与其对应位置网带保持在浸液槽中浸液液面以下,且压辊与网带做同步运动。
- 如权利要求1所述的浸液装置,其特征在于:所述的网带与浸液槽对应的位置的形状与浸液槽的形状相同或类似。
- 如权利要求1所述的浸液装置,其特征在于:所述的网带传输单元还包括至少一个驱动辊,该驱动辊带动网带进入浸液槽完成浸液后再离开浸液槽。
- 如权利要求3所述的浸液装置,其特征在于:所述的驱动辊设置于网带行进方向后侧,网带在该驱动辊的拉动下由浸液槽一端入,与压辊配合完成浸液后,经浸液槽另一端出。
- 如权利要求1所述的浸液装置,其特征在于:所述的网带传输单元还包括至少一个驱动辊和若干个托辊,网带张紧安装于驱动辊与托辊之间,并与压辊配合完成浸液。
- 如权利要求1所述的浸液装置,其特征在于:所述的网带回路上设置有纠偏辊。
- 如权利要求6所述的浸液装置,其特征在于:所述的纠偏辊位于靠近纤维传入的一端的网带回路上。
- 如权利要求1所述的浸液装置,其特征在于:所述的网带回路上设置有张紧辊,用于调节网带上的压力。
- 如权利要求1-8任一项所述的浸液装置,其特征在于:所述的压辊顶部不低于浸液槽槽口以上,待处理纤维、纤维网或类似物在网带上传输并完成浸液。
- 如权利要求1-8任一项所述的浸液装置,其特征在于:所述的压辊顶部低于浸液槽槽口,与该压辊对应位置还设置有若干个托辊,托辊与压辊之间张紧安装有上带,上带与网带形成双网结构,待处理纤维、纤维网或类似物在该双网结构之间夹持传输并完成浸液。
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| CN108166195A (zh) * | 2018-01-16 | 2018-06-15 | 绍兴国周控股集团有限公司 | 浸液装置 |
| CN111575950A (zh) * | 2020-06-12 | 2020-08-25 | 苏州中纺学面料产业研究院 | 一种用于散纤维平幅连续染色工艺的染色设备 |
| CN118516821B (zh) * | 2024-07-24 | 2024-11-12 | 南通郎氏纺织科技有限公司 | 一种防纠缠的纺织品浸渍装置 |
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| CN109594267A (zh) | 2019-04-09 |
| CN109281085A (zh) | 2019-01-29 |
| CN209481977U (zh) | 2019-10-11 |
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