CN112048865A - Cloth pressurized water recovery device, overflow dyeing machine and control method thereof - Google Patents

Cloth pressurized water recovery device, overflow dyeing machine and control method thereof Download PDF

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Publication number
CN112048865A
CN112048865A CN202010923646.2A CN202010923646A CN112048865A CN 112048865 A CN112048865 A CN 112048865A CN 202010923646 A CN202010923646 A CN 202010923646A CN 112048865 A CN112048865 A CN 112048865A
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CN
China
Prior art keywords
cloth
water
guide
lifting
roller
Prior art date
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Pending
Application number
CN202010923646.2A
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Chinese (zh)
Inventor
曹世德
王华平
钟吉生
杨太然
杨俊杰
周佳斌
谢俊杰
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Hunan Xiansen Intelligent Technology Co ltd
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Hunan Xiansen Intelligent Technology Co ltd
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Application filed by Hunan Xiansen Intelligent Technology Co ltd filed Critical Hunan Xiansen Intelligent Technology Co ltd
Priority to CN202010923646.2A priority Critical patent/CN112048865A/en
Publication of CN112048865A publication Critical patent/CN112048865A/en
Pending legal-status Critical Current

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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
    • D06B15/00Removing liquids, gases or vapours from textile materials in association with treatment of the materials by liquids, gases or vapours
    • D06B15/02Removing liquids, gases or vapours from textile materials in association with treatment of the materials by liquids, gases or vapours by squeezing rollers
    • 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
    • D06B23/20Arrangements of apparatus for treating processing-liquids, -gases or -vapours, e.g. purification, filtration, distillation
    • 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

Abstract

The invention provides a cloth pressurized water recovery device, an overflow dyeing machine and a control method thereof, the device comprises a water recovery assembly, a supporting beam and a pressurized water device, the supporting beam level is fixed to be set up on water recovery subassembly, the pressurized-water device includes the base, the cloth guide roller, the cloth guide driving piece, the guide arm, the roof, the lift driving piece, the lifter plate, the seat that goes up and down, the pressurized-water roller, the base is fixed in on a supporting beam, the cloth guide roller rotates to be connected on the base, cloth guide driving piece fixed connection is in base one end, the output shaft of cloth guide driving piece is connected with the one end transmission of cloth guide roller, the guide arm vertical fixation is between parallel arrangement's base and roof, the lift driving piece is fixed in the roof lower surface, the lift end and the lifter plate of lift driving piece are connected, lifter plate slip cap locates on the guide arm, lift seat elastic connection is in the below of lifter plate, the pressurized-water. The invention can realize that the moisture is extruded and recovered in the process of conveying the cloth.

Description

Cloth pressurized water recovery device, overflow dyeing machine and control method thereof
Technical Field
The invention relates to the technical field of textile dyeing and finishing, in particular to a cloth pressurized water recovery device, an overflow dyeing machine with the cloth pressurized water recovery device and a control method of the overflow dyeing machine.
Background
The overflow dyeing machine is a dyeing device widely applied in current printing and dyeing factories, and comprises a dye vat, wherein a rotating wheel is arranged in the dye vat to drive cloth to rotate, dye liquor exists in the dye vat, the dyeing process of the cloth is mainly carried out in the dye vat, and the soaking time of the cloth in the dye vat is controlled by controlling the running speed of the cloth, so that the dyeing purpose is achieved.
The existing overflow dyeing machine is provided with a cloth outlet device, cloth coming out of a dye vat enters a cloth frame through the cloth outlet device, and in the motion process of continuous cloth outlet, dyed cloth can absorb a lot of water except that the dyed cloth takes out the water of the dye vat in the motion process. When the cloth is discharged along with the swinging of the cloth swinging hopper of the cloth discharging device, a large amount of water is thrown out of the cloth and splashes everywhere. The splashed water can be thrown onto nearby equipment, so that the equipment is easily corroded, and the service life of the equipment is shortened; in addition, the splashed water can be thrown to the ground in a large amount, the working environment around the machine equipment is affected, the sliding accident of workers is easy to happen, and potential safety hazards exist.
Disclosure of Invention
In view of the above, the present invention needs to provide a pressurized water recycling device for cloth, which can squeeze and recycle water during the transportation process of the cloth, so as to reduce the splashing of water during the blanking of the cloth, improve the cleanliness of the equipment site, improve the working environment of workers and equipment, and improve the safety of production.
The technical scheme of the invention is as follows:
a cloth pressurized-water recovery device comprises a water recovery assembly, a supporting beam and a pressurized-water device, wherein the supporting beam is horizontally and fixedly arranged on the water recovery assembly, the pressurized-water device comprises a base, a cloth guide roller, a cloth guide driving piece, a guide rod, a top plate, a lifting driving piece, a lifting plate, a lifting seat, a pressurized-water roller and a lifting limiting assembly, the base is fixed on the supporting beam, the cloth guide roller is rotatably connected on the base, the cloth guide driving piece is fixedly connected at one end of the base, an output shaft of the cloth guide driving piece is in transmission connection with one end of the cloth guide roller, the guide rod is vertically fixed between the base and the top plate which are arranged in parallel to form a guide space for lifting and sliding, the lifting driving piece is fixed on the lower surface of the top plate, a lifting end of the lifting driving piece is connected with the lifting plate, the lifting plate is slidably sleeved on the guide rod, the lifting, the lifting limiting assembly is used for limiting the position of the water pressing roller to descend, and the cloth in the conveying process is clamped and pressed through the water pressing roller and the cloth guide roller, so that moisture in the cloth is extruded out and falls into the water recovery assembly.
Furthermore, be equipped with guide structure and elastic component between lift seat and the lifter plate to realize through the elastic component that elasticity goes up and down for lift seat through guide structure and provide the guide effect.
Furthermore, the guide structure comprises a guide shaft, a shaft sleeve and a fixing part, the lifting plate is provided with a fixing hole for fixing the shaft sleeve, the bottom end of the guide shaft is fixed on the lifting seat, the top end of the guide shaft is supported on the shaft sleeve through the fixing part, the guide shaft is arranged in the shaft sleeve in a sliding and penetrating mode in a liftable mode, the elastic piece is arranged on the guide shaft in a sleeved mode, and two ends of the elastic piece are abutted between the lifting seat and the lifting plate.
Furthermore, the fixing piece is a bolt, the bottom end of the bolt is screwed in a screw hole at the top end of the guide shaft, and a nut at the top end of the bolt abuts against the shaft sleeve; or the fixing piece is integrally connected with the abutting part at the top end of the guide shaft, and the abutting part abuts against the shaft sleeve.
Furthermore, the supporting beam comprises two beams arranged in parallel, a plurality of supporting plates fixedly connected between the two beams and arranged at intervals along the extension direction of the beams, and vertical beams fixedly connected at two ends of the two beams, the vertical beams at two ends are respectively fixed at two ends of the water recovery assembly, and each water pressing device is correspondingly fixed on each supporting plate.
Furthermore, the two ends of the lifting seat are respectively provided with a lifting limiting assembly, the lifting limiting assembly comprises a buffer and a hard limiting part, and the buffer and the hard limiting part are arranged at one end of the lifting seat and are matched with the limiting part on the base to buffer and limit.
Furthermore, the water recovery assembly comprises a water tank part and a water drainage pipe connected to the bottom of the water tank part, the opening of the water tank part faces upwards to receive water extruded by the water pressing device, and water in the water tank part is discharged through the water drainage pipe.
Further, the bottom surface of basin spare is the inclined plane, and water piping connection is in the lower extreme on inclined plane, and the drain pipe includes vertical pipe and the pipe of bending, and vertical pipe is equipped with two, and vertical parallel fixation in the both ends of basin spare, and each vertical pipe middle part position is equipped with the pipe of bending and is connected bottom the basin spare, and the play cloth side of basin spare is equipped with the guide wall that the slope set up outwards.
The overflow dyeing machine comprises a dye vat, a cloth discharging device and a cloth pressurized water recovery device, wherein a cloth discharging pipe opening is formed in one side of the dye vat, the cloth discharging device is arranged on one side of the cloth discharging pipe opening and comprises a cloth discharging frame and a cloth swinging hopper, a cloth guide ring corresponding to the cloth discharging pipe opening is arranged on one side beam of the top of the cloth discharging frame, the cloth swinging hopper used for swinging the cloth back and forth is arranged on the other side beam of the top of the cloth discharging frame, and the cloth pressurized water recovery device is arranged on the cloth discharging frame and is positioned between the cloth guide ring and the cloth swinging hopper.
A control method of the overflow dyeing machine comprises the following steps:
after the dyeing of the dye vat is finished, the lifting driving piece is controlled to drive the water pressing roller to ascend, so that a gap for cloth to pass through is formed between the water pressing roller and the cloth guide roller;
manually taking the dyed cloth out of a cloth outlet pipe orifice of the dye vat, and sequentially penetrating through a cloth guide ring, a gap between a water pressing roller and a cloth guide roller and a cloth swinging hopper;
after confirming to place cloth, drive the drop of pressurized-water roll through control lift driving piece and compress tightly cloth, it is rotatory to drive the guide cloth roller through control guide cloth driving piece, the swing action of pendulum cloth fill is controlled simultaneously, the rotation of guide cloth roller drives the corresponding rotation of pressurized-water roll in turn, make cloth clamp press carry and extrude out water between guide cloth roller and pressurized-water roll, the basin spare of water recovery subassembly is collected earlier to the water that extrudes, flow through the drain pipe of connecting in basin spare again, cloth after the wringing is fought from pendulum cloth and is swung out cloth.
The invention has the beneficial effects that:
compared with the prior art, the cloth pressurized-water recovery device is characterized in that the pressurized-water device is fixedly arranged on the supporting beam of the water recovery assembly and is matched with the lifting limiting assembly through the arrangement of the base, the cloth guide roller, the cloth guide driving piece, the guide rod, the top plate, the lifting driving piece, the lifting plate, the lifting seat, the pressurized-water roller and the lifting limiting assembly. The lifting plate is driven to rise through the lifting driving piece to drive the lifting seat and the water pressing roller to rise together, so that a sufficient gap is formed between the water pressing roller and the cloth guide roller for cloth to pass through. After the cloth is placed, the lifting plate is driven to descend through the lifting driving piece, so that the water pressing roller is close to the cloth guide roller, and the cloth is tightly supported on the cloth guide roller by the water pressing roller under the limiting effect of the lifting limiting assembly. The cloth guide roller is driven to rotate by the cloth guide driving piece, and the lifting plate is elastically connected with the lifting seat, so that the cloth can be clamped and pressed between the cloth guide roller and the water pressing roller to be conveyed, the water in the cloth is extruded while the water pressing roller is driven to rotate, and the extruded water falls into the water recovery assembly to be recycled. So, through extruding cloth with moisture and retrieving in transportation process, moisture content splashes when having reduced cloth unloading, has improved equipment place cleanliness, has improved artifical and equipment operational environment, has improved the security of production.
Preferred embodiments of the present invention and advantageous effects thereof will be described in further detail with reference to specific embodiments.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the invention without limiting the invention. In the drawings, there is shown in the drawings,
FIG. 1 is a perspective view of a pressurized water recovery apparatus for cloth according to the present invention;
FIG. 2 is a front view of the pressurized water cloth recycling apparatus of the present invention;
FIG. 3 is a perspective view of a pressurized water device of the pressurized water cloth recycling apparatus of the present invention;
FIG. 4 is a front view of a pressurized water device of the pressurized water cloth recycling device of the present invention;
FIG. 5 is a partially exploded view of the pressurized water device of the pressurized water cloth recycling device of the present invention;
FIG. 6 is a partial cross-sectional view taken along line A-A of FIG. 4;
FIG. 7 is a perspective view of the water recovery assembly of the pressurized water recovery device for cloth according to the present invention;
FIG. 8 is a side view of the water recovery assembly of the water recovery device of the present invention;
fig. 9 is a perspective view showing a used state of an overflow dyeing machine to which the pressurized water recovering apparatus for cloth according to the present invention is applied;
fig. 10 is a front view showing a use state of an overflow dyeing machine to which the pressurized water recovering apparatus for cloth according to the present invention is applied;
fig. 11 is a side view showing a use state of an overflow dyeing machine to which the pressurized water cloth recovering apparatus of the present invention is applied.
Names and labels of the components: the water recycling assembly 1, the support beam 2, the water pressing device 3, the base 30, the cloth guide roller 31, the cloth guide driving piece 32, the guide rod 33, the top plate 34, the lifting driving piece 35, the lifting plate 36, the lifting seat 37, the water pressing roller 38, the lifting limiting assembly 39, the cross beam 21, the support plate 22, the vertical beam 23, the guide structure 631, the elastic piece 632, the guide shaft 6311, the shaft sleeve 6312, the fixing piece 6313, the connection plate 371, the end plate 372, the buffer 391, the hard limiting piece 392, the limiting part 393, the plate body 361, the guide sleeve 362, the coupling 320, the bottom plate 301, the seat plate 302, the water tank piece 11, the water discharge pipe 12, the vertical pipe 121, the bending pipe 122, the guide wall 13, the dye vat 4, the cloth discharging device 5, the cloth discharging rack 51, the cloth swinging hopper 52, the cloth guide ring 53.
Detailed Description
The following detailed description of embodiments of the invention refers to the accompanying drawings. It should be understood that the detailed description and specific examples, while indicating the present invention, are given by way of illustration and explanation only, not limitation.
Referring to fig. 1 to 4, the present invention provides a pressurized water recycling device for cloth, which includes a water recycling assembly 1, a supporting beam 2 and a pressurized water device 3. The supporting beam 2 is horizontally and fixedly arranged on the water recovery assembly 1. The water pressing device 3 comprises a base 30, a cloth guide roller 31, a cloth guide driving piece 32, a guide rod 33, a top plate 34, a lifting driving piece 35, a lifting plate 36, a lifting seat 37, a water pressing roller 38 and a lifting limiting assembly 39. The base 30 is fixed on the support beam 2, the cloth guide roller 31 is rotatably connected on the base 30, the cloth guide driving part 32 is fixedly connected at one end of the base 30, and an output shaft of the cloth guide driving part 32 is in transmission connection with one end of the cloth guide roller 31 so as to drive the cloth guide roller 31 to rotate. The guide rod 33 is vertically fixed between the base 30 and the top plate 34 which are arranged in parallel, and forms a guide space for lifting and sliding. Four guide rods 33 are arranged, and are arranged on the base 30 in a pairwise opposite manner and are positioned on two sides of the cloth guide roller 31. The bottom end of each guide rod 33 is vertically fixed on the base 30. A top plate 34 is fixed to the top end of each guide rod 33. The lifting driving member 35 is fixed on the lower surface of the top plate 34, the lifting end of the lifting driving member 35 is connected with the lifting plate 36, and the lifting plate 36 is slidably sleeved on the four guide rods 33. The lifting seat 37 is elastically connected below the lifting plate 36, and the water pressing roller 38 is rotatably connected to the lifting seat 37 and located above the cloth guide roller 31. The lifting limiting assembly 39 is used for limiting the descending position of the water pressing roller 38. The cloth in the conveying process is clamped and pressed by the water pressing roller 38 and the cloth guide roller 31, so that the moisture in the cloth is extruded out and falls into the water recovery assembly 1.
According to the cloth pressurized-water recovery device, the pressurized-water device 3 is fixedly arranged on the support beam 2 of the water recovery assembly 1, and the pressurized-water device 3 is matched with a lifting plate 36, a lifting seat 37, a pressurized-water roller 38 and a lifting limiting assembly 39 through a base 30, a cloth guide roller 31, a cloth guide driving piece 32, a guide rod 33, a top plate 34, a lifting driving piece 35, the lifting plate and the lifting limiting assembly. The lifting plate 36 is driven to rise by the lifting driving piece 35, and the lifting seat 37 and the water pressing roller 38 are driven to rise together, so that a sufficient gap is formed between the water pressing roller 38 and the cloth guide roller 31 for cloth to pass through. After the cloth is placed, the lifting plate 36 is driven to descend by the lifting driving piece 35, so that the water pressing roller 38 is close to the cloth guide roller 31, and meanwhile, under the limiting action of the lifting limiting assembly 39, the cloth is tightly pressed on the cloth guide roller 31 by the water pressing roller 38. The cloth guide roller 31 is driven to rotate by the cloth guide driving part 32, the lifting plate 36 is elastically connected with the lifting seat 37, so that the cloth can be clamped between the cloth guide roller 31 and the water pressing roller 38 to be conveyed, the water pressing roller 38 is driven to rotate, meanwhile, the water in the cloth is extruded out, and the extruded water falls into the water recovery assembly 1 for recovery and utilization. So, through extruding cloth with moisture and retrieving in transportation process, moisture content splashes when having reduced cloth unloading, has improved equipment place cleanliness, has improved artifical and equipment operational environment, has improved the security of production.
Referring to fig. 1, in actual use, the number of the water pressing devices 3 can be set according to the number of the cloth outlet pipes of the dye vat. The supporting beam 2 comprises two parallel cross beams 21, a plurality of supporting plates 22 fixedly connected between the two cross beams 21 and arranged at intervals along the extension direction of the cross beams 21, and vertical beams 23 fixedly connected to two ends of the two cross beams 21, wherein the vertical beams 23 at two ends are respectively fixed at two ends of the water recovery assembly 1. Each water pressing device 3 is fixed on each supporting plate 22 correspondingly.
Referring to fig. 5 and 6, a guiding structure 631 and an elastic element 632 are disposed between the lifting seat 37 and the lifting plate 36, so that the guiding structure 631 provides a guiding function for the lifting seat 37 to elastically lift through the elastic element 632. As a preferred embodiment, the guiding structure 631 includes a guiding shaft 6311, a shaft sleeve 6312 and a fixing member 6313, the lifting plate 36 is provided with a fixing hole for fixing the shaft sleeve 6312, the bottom end of the guiding shaft 6311 is fixed on the lifting base 37, the top end of the guiding shaft 6311 is supported on the shaft sleeve 6312 through the fixing member 6313, and the guiding shaft 6311 is slidably disposed in the shaft sleeve 6312 in a liftable manner. The elastic member 632 is preferably a spring, which is sleeved on the guide shaft 6311, and two ends of the spring are abutted between the lifting seat 37 and the lifting plate 36. The fastener 6313 is preferably a bolt, the bottom end of which is screwed into a threaded hole at the top end of the guide shaft 6311, and the top end of which abuts against the sleeve 6312. With the arrangement, the structure is simple, the realization is easy, the gravity of the lifting seat 37 can be ensured to act on the lifting plate 36 through the bolt, and the guide shaft 6311 can be ensured to slide along the shaft sleeve 6312 in a lifting manner, so that a guide effect is provided for the elastic lifting of the spring. The arrangement of the spring can ensure that the water pressing roller 38 has a certain upward moving space, so that the cloth is smoothly clamped and pressed between the water pressing roller 38 and the cloth guide roller 31 for conveying, and the cloth is prevented from being crushed due to overlarge pressure. In addition, the fixing member 6313 may also be a holding portion integrally connected to the top end of the guide shaft 6311, and the holding portion is held on the shaft sleeve 6312. Preferably, in the present embodiment, the guiding structure 631 and the elastic element 632 are respectively provided with four sets and arranged in a square shape. Therefore, stable and synchronous elastic lifting can be well realized. It is understood that the number of the guiding structures 631 and the elastic members 632 can be one or more in a proper arrangement according to actual requirements.
Referring to fig. 5, the lifting base 37 includes a connection plate 371 and end plates 372 fixed to two ends of the connection plate 371, each end plate 372 is provided with a shaft hole, and a bearing is disposed in each shaft hole for respectively rotating the pin shafts connected to two ends of the water pressing roller 38.
Referring to fig. 3, two ends of the lifting seat 37 are respectively provided with a lifting limiting component 39. The lifting limiting assembly 39 includes a buffer 391 and a hard limiting member 392, and the buffer 391 and the hard limiting member 392 are disposed on the end plate 372 at each end of the lifting base 37 for cooperating with the limiting portion 393 on the base 30 for buffering and limiting. Preferably, the hard stop 392 is a bolt threaded onto the end plate 372.
The lifting plate 36 includes a plate body 361 and guide sleeves 362 fixedly mounted at four corners of the plate body 361, and the plate body 361 is slidably disposed on the guide rods through the guide sleeves 362.
Referring to fig. 4, a coupling 320 is disposed between the output shaft of the cloth guide driving member 32 and the central shaft of one end of the cloth guide roller 31, so as to realize transmission connection. The coupler 320 is adopted for connection, so that the occupied space is small, and the installation is convenient.
Referring to fig. 3, the base 30 includes a bottom plate 301 and base plates 302 fixed to two ends of the bottom plate 301, each base plate 302 has a through hole, and a bearing is fixed in each through hole to rotatably connect with the central shafts at two ends of the cloth guide roller 31. The bottom end of each guide rod 33 is fixed to the bottom plate 301.
Preferably, the lifting driving member 35 is a cylinder, and the cloth guiding driving member 32 is a motor.
Referring to fig. 7 and 8, the water recycling assembly 1 includes a water tank 11 and a water discharging pipe 12 connected to the bottom of the water tank 11, wherein an opening of the water tank 11 faces upward for receiving water squeezed by the water pressing device 3, and water in the water tank 11 is finally discharged to a designated recycling container through the water discharging pipe 12 for recycling. Preferably, the bottom surface of the sink member 11 is an inclined surface, and the drain pipe 12 is connected to the lowest end of the inclined surface, facilitating rapid drainage of water. The drain pipe 12 comprises two vertical pipes 121 and two bending pipes 122, the vertical pipes 121 are fixed at two ends of the sink 11 in a vertical parallel mode, the middle position of each vertical pipe 121 is provided with the bending pipe 122 connected with the bottom of the sink 11, water in the sink 11 is discharged rapidly through the vertical pipes 121 and the bending pipes 122 respectively, and therefore the blockage caused drainage is prevented from being blocked. Vertical pipe 121 and bend pipe 122 set up like this and still are favorable to improving the support intensity of basin spare 11, and are convenient for cooperate out cloth device fixed mounting for compact structure. The cloth outlet side of the water tank piece 11 is provided with a guide wall 13 which is inclined outwards, and the extending edge of the guide wall 13 is bent into a smooth arc transition part for smoothly guiding the cloth to pass through, so that the cloth is not abraded.
Referring to fig. 9 to 11, the present invention further provides an overflow dyeing machine using the above-mentioned device for recovering pressurized water from cloth, including a dye vat 4 and a cloth discharging device 5, wherein one side of the dye vat 4 has a plurality of cloth discharging nozzles, and the cloth discharging device 5 is disposed at one side of the cloth discharging nozzles. The cloth discharging device 5 comprises a cloth discharging frame 51 and a cloth placing bucket 52, wherein a cloth guiding ring 53 corresponding to a cloth discharging pipe opening is arranged on one side beam at the top of the cloth discharging frame 51 so as to guide the cloth 40 coming out from the cloth discharging pipe opening to pass through. A cloth swinging hopper 52 for swinging cloth to the front and the back is arranged on the other side beam at the top of the cloth discharging frame 51, so as to guide the cloth 40 to be stacked on the cloth vehicle. The cloth pressurized-water recovery device is arranged on the cloth discharging frame 51 and is positioned between the cloth guide ring 53 and the cloth swinging hopper 52, so that water for extruding the cloth 40 guided out by the cloth guide ring 53 can be extruded out, and then the cloth is swung out by the cloth swinging hopper 52. The draw-off frame 51 has a table 54 on the side near the dye vat 4 for a worker to stand on the table 54 to pass the cloth 40 between the cloth guide roll 31 and the press roll 38.
Specifically, the vertical pipe 121 of the water recovery assembly 1 of the pressurized water recovery device for cloth 40 is fixed to the vertical rod of the cloth outlet frame 51, and the water tank 11 is fixed to the top frame of the cloth outlet frame 51. The design is convenient for upgrade and reconstruction on the existing equipment, the reconstruction cost is reduced, the overall structure is reasonable in layout, the occupied space is small, the structure is compact and stable, and the installation is convenient and fast.
The overflow dyeing machine of the present invention also comprises a control system for controlling the actions of the lifting drive 35 and the cloth guide drive 32, the control method of the control system comprises the following steps:
after the dye vat 4 finishes dyeing cloth, the lifting driving piece 35 is controlled to drive the water pressing roller 38 to ascend, so that a gap for the cloth 40 to pass through is formed between the water pressing roller 38 and the cloth guide roller 31;
manually taking the dyed cloth 40 out of the cloth outlet pipe orifice of the dye vat 4, and sequentially passing through the cloth guide ring 53, the gap between the water pressing roller 38 and the cloth guide roller 31 and the cloth swinging hopper 52;
after the cloth 40 is confirmed to be placed, the lifting driving part 35 is controlled to drive the water pressing roller 38 to descend to press the cloth 40 tightly, the cloth guiding driving part 32 is controlled to drive the cloth guiding roller 31 to rotate, meanwhile, the swinging action of the cloth swinging hopper 52 is controlled, the rotation of the cloth guiding roller 31 further drives the water pressing roller 38 to rotate correspondingly, so that the cloth 40 is clamped between the cloth guiding roller 31 and the water pressing roller 38 to convey and extrude water, the extruded water is firstly collected to the water tank part 11 of the water recovery assembly 1 and then flows out through the water discharging pipe 12 connected to the water tank part 11, and the cloth 40 after being squeezed to be dry swings out of the cloth swinging hopper 52.
Any combination of the various embodiments of the present invention should be considered as disclosed in the present invention, unless the inventive concept is contrary to the present invention; within the scope of the technical idea of the invention, any combination of various simple modifications and different embodiments of the technical solution without departing from the inventive idea of the present invention shall fall within the protection scope of the present invention.

Claims (10)

1. The utility model provides a cloth pressurized-water recovery unit, includes water recovery subassembly (1), a supporting beam (2) and pressurized-water device (3), its characterized in that: the supporting beam (2) is horizontally fixed on the water recovery assembly (1), the water pressing device (3) comprises a base (30), a cloth guide roller (31), a cloth guide driving piece (32), a guide rod (33), a top plate (34), a lifting driving piece (35), a lifting plate (36), a lifting seat (37), a water pressing roller (38) and a lifting limiting assembly (39), the base (30) is fixed on the supporting beam (2), the cloth guide roller (31) is rotatably connected on the base (30), the cloth guide driving piece (32) is fixedly connected at one end of the base (30), an output shaft of the cloth guide driving piece (32) is in transmission connection with one end of the cloth guide roller (31), the guide rod (33) is vertically fixed between the base (30) and the top plate (34) which are arranged in parallel, a guide space for lifting and sliding is formed, the lifting driving piece (35) is fixed on the lower surface of the top plate (34), and a lifting end of the lifting driving piece (35) is, the guide rod (33) is located to lifter plate (36) sliding sleeve, lift seat (37) elastic connection is in the below of lifter plate (36), squeeze water roller (38) rotate connect in lift seat (37) and be located the top of fabric guide roller (31), lift spacing subassembly (39) are used for restricting the position that squeeze water roller (38) descend, press from both sides the cloth of pressure feed in-process through squeeze water roller (38) and fabric guide roller (31), thereby extrude the moisture in the cloth and fall into water recovery subassembly (1).
2. The cloth water recovery device of claim 1, wherein: a guide structure (631) and an elastic piece (632) are arranged between the lifting seat (37) and the lifting plate (36) so as to provide a guide effect for the lifting seat (37) to elastically lift through the elastic piece (632) through the guide structure (631).
3. The cloth water recovery device of claim 2, wherein: guide structure (631) are including guide shaft (6311), axle sleeve (6312) and mounting (6313), lifter plate (36) are equipped with the fixed orifices and are in order to supply fixed axle sleeve (6312), the bottom mounting of guide shaft (6311) is on lift seat (37), the top of guide shaft (6311) is supported on axle sleeve (6312) through mounting (6313), guide shaft (6311) are slided with liftable and are worn to locate in axle sleeve (6312), on guide shaft (6311) is located in elastic component (632) cover, the both ends of elastic component (632) are supported and are held between lift seat (37) and lifter plate (36).
4. The cloth water recovery device of claim 3, wherein: the fixing piece (6313) is a bolt, the bottom end of the bolt is screwed in a screw hole at the top end of the guide shaft (6311), and a nut at the top end of the bolt abuts against the shaft sleeve (6312); or the fixing piece (6313) is integrally connected to the abutting part at the top end of the guide shaft (6311), and the abutting part abuts against the shaft sleeve (6312).
5. The cloth water recovery device of claim 1, wherein: the supporting beam (2) comprises two parallel cross beams (21), a plurality of supporting plates (22) fixedly connected between the two cross beams (21) and arranged at intervals along the extension direction of the cross beams (21), and vertical beams (23) fixedly connected to the two ends of the two cross beams (21), the vertical beams (23) at the two ends are respectively fixed at the two ends of the water recovery assembly (1), and each water pressing device (3) is correspondingly fixed on each supporting plate (22).
6. The cloth water recovery device of claim 1, wherein: the lifting limiting component (39) is arranged at each of two ends of the lifting seat (37), the lifting limiting component (39) comprises a buffer (391) and a hard limiting piece (392), and the buffer (391) and the hard limiting piece (392) are arranged at one end of the lifting seat (37) and are matched with the limiting portion (393) on the base (30) to buffer and limit.
7. The cloth water recovery device of claim 1, wherein: the water recovery assembly (1) comprises a water tank piece (11) and a drain pipe (12) connected to the bottom of the water tank piece (11), the opening of the water tank piece (11) faces upwards to receive water extruded by the water pressing device (3), and water in the water tank piece (11) is discharged through the drain pipe (12).
8. The cloth pressurized water recovery device of claim 7, wherein: the bottom surface of basin spare (11) is the inclined plane, and drain pipe (12) are connected in the lower extreme on inclined plane, and drain pipe (12) are including vertical pipe (121) and bend pipe (122), and vertical pipe (121) are equipped with two, and vertical parallel is fixed in the both ends of basin spare (11), and each vertical pipe (121) middle part position is equipped with and bends pipe (122) and is connected bottom basin spare (11), and the play cloth side of basin spare (11) is equipped with guide wall (13) that the slope set up outwards.
9. The utility model provides an overflow dyeing machine, includes dye vat (4) and goes out cloth device (5), dye vat (4) one side has a cloth outlet pipe mouth, go out cloth device (5) and set up in this cloth outlet pipe mouth one side, go out cloth device (5) including go out cloth holder (51) and pendulum cloth fill (52), be equipped with on the roof curb girder of cloth holder (51) and lead cloth ring (53) that correspond with a cloth outlet pipe mouth, be equipped with pendulum cloth fill (52) that are used for the fore-and-aft movement to go out cloth on another curb girder in the top of cloth holder (51), its characterized in that: further comprising a device for recovering water from cloth according to any of claims 1 to 8, which is arranged on the cloth discharge rack (51) between the cloth guide ring (53) and the cloth swinging bucket (52).
10. A control method of an overflow dyeing machine, as claimed in claim 9, characterized in that: the method comprises the following steps:
after the dye vat (4) finishes dyeing cloth, the lifting driving piece (35) is controlled to drive the water pressing roller (38) to ascend, so that a gap for cloth (40) to pass through is formed between the water pressing roller (38) and the cloth guide roller (31);
the dyed cloth (40) is taken out from a cloth outlet pipe opening of the dye vat (4) manually and sequentially passes through a cloth guide ring (53), a gap between a water pressing roller (38) and a cloth guide roller (31) and a cloth swinging hopper (52);
after the cloth (40) is confirmed to be placed, the lifting driving part (35) is controlled to drive the water pressing roller (38) to descend to press the cloth (40), the cloth guiding driving part (32) is controlled to drive the cloth guiding roller (31) to rotate, meanwhile, the swinging motion of the cloth swinging hopper (52) is controlled, the rotation of the cloth guiding roller (31) drives the water pressing roller (38) to rotate correspondingly, the cloth (40) is clamped between the cloth guiding roller (31) and the water pressing roller (38) to be conveyed and water is squeezed out, the squeezed water is firstly collected into the water channel part (11) of the water recovery assembly (1) and then flows out through the drain pipe (12) connected to the water channel part (11), and the cloth (40) after being squeezed out swings out of the cloth swinging hopper (52).
CN202010923646.2A 2020-09-04 2020-09-04 Cloth pressurized water recovery device, overflow dyeing machine and control method thereof Pending CN112048865A (en)

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Application publication date: 20201208