CN101597851B - Feed-in fabric preprocessing device of continuous pigment dyeing padding mangle - Google Patents

Feed-in fabric preprocessing device of continuous pigment dyeing padding mangle Download PDF

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Publication number
CN101597851B
CN101597851B CN2009103006812A CN200910300681A CN101597851B CN 101597851 B CN101597851 B CN 101597851B CN 2009103006812 A CN2009103006812 A CN 2009103006812A CN 200910300681 A CN200910300681 A CN 200910300681A CN 101597851 B CN101597851 B CN 101597851B
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China
Prior art keywords
bristle
gear
fixed
bearing
fabric
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Expired - Fee Related
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CN2009103006812A
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CN101597851A (en
Inventor
赵仲兴
胡亚一
周双英
赵协
戴旭
徐和平
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CHANGZHOU DONGGAO DYEING AND FINISHING Co Ltd
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CHANGZHOU DONGGAO DYEING AND FINISHING Co Ltd
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Abstract

The invention relates to a feed-in fabric preprocessing device of a continuous pigment dyeing padding mangle, which comprises a manual tension adjusting device, a preprocessing fabric guiding roller group and a brushing suction device which are arranged on a first mangle frame, wherein each guide roller in the preprocessing fabric guiding roller group is connected with the first mangle frame rotationally. The feed-in fabric preprocessing device of the continuous pigment dyeing padding mangle is structurally characterized in that the feed-in fabric preprocessing device also comprises a traction rolling cart arranged in the first mangle frame; and the manual tension adjusting device, the brushing suction device and the traction rolling cart are arranged sequentially in the advancing direction of a fabric. The feed-in fabric preprocessing device has the advantages of compact structure and stable tension during the conveying of the fabric to a latter process.

Description

Continuous pigment dyeing pad dyer advance fabric preprocessing device
Technical field
The present invention relates to a kind of parts of equipment for dyeing and finishing of fabric.
Background technology
Fabric finishing processing is that textile material or fabric are carried out process physics and processing chemistry.Dyeing and finishing processing can reduce four types of preliminary treatment, dyeing, stamp and arrangements.Preliminary treatment wherein is meant that adopting chemical method to remove on the fabric hinders the impurity (like fiber commensal, slurry, finish, pollutant etc.) that carries out following process, and fabric face is clean, wettability improves thereby make, and demonstrates the process of the true qualities gloss of fabric.Dyeing then is meant paints to textiles; Dyeing wherein is to adopt dye bath (dyestuff+auxiliary agent+solvent) to handle to textiles; With fiber chemistry or physicochemical the combination take place through dyestuff; Make dye transfer in the dye bath to fiber and generate the process of insoluble coloring matter, it is even that dyeing product not only should color and luster, also should have good dye fastness and dye.But this dyeing also be included as make dyestuff fully " color development " the dyeing last handling process that must carry out, comprise such as colour developing soap, operation such as washing.The equipment that carries out dyeing has dye jigger, continuous pad-dyeing range and rope dyeing machine etc.; A kind of continuous knot dyeing combination machine is arranged in the continuous pad-dyeing range, and this continuous knot dyeing combination machine comprises that the entering arrangment, evenness calender, infrared drying machine, transverse guide roller airflow dryer, cylinder drying machine, reduction steam box, flat wash trough, the soap that set gradually according to process sequence steam groove, long steam box, flat wash trough, cylinder drying machine, plaiting apparatus etc.This shows that not only equipment investment is big for this colouring method and equipment, production process is long, and energy-consuming consumptive material is many, discharge of wastewater is also many, thereby the cost of environment protection treating is very high.
Along with the development of dyeing and finishing technique, textile dyeing not only comprises dyeing, also comprises pigment dyeing.Pigment dyeing mainly is to lean on adhesive at a certain temperature, forms the layer of transparent epithelium at fiber surface, makes the discrete particles of coating be anchored on fiber surface by the epithelium parcel, reaches " dyeing " purpose.Not only adaptability is strong, chromatogram is also comparatively complete to adopt dyeing, be particularly suitable for the needs of small lot, many variety production, and technological process is lacked, has significantly reduced pollution, has practiced thrift the energy, reduced cost.But, because have that depth is poor, COLOR FASTNESS is poor, the problem of Boardy Feeling, roll banding tube, often can't produce continuously.
For addressing the above problem, the report of degenerative treatments has appearred when fabric is carried out pigment dyeing, carrying out.For example; Chinese patent document CN1936148 discloses a kind of fabric coating dyeing process; The used dye liquor of this technology is made up of pigment printing paste, cation modifier, surfactant, pH regulator agent, adhesive and water, after mixing, directly fabric is padded; Dry then and fixation treatment, obtain the pigment dyeing product.But this technology because with pigment printing paste with cation modifier mixes and the concentration of cation modifier is also higher, though comprise pH value conditioning agent and surfactant in the dye bath, still can produce cohesion, feasible dyeing is difficult to carry out.In addition, also unexposed which kind of equipment of employing of the document is implemented described technology.
Aspect the equipment that fabric is carried out continuous pigment dyeing; Chinese patent document CN 20097835Y discloses a kind of " coating padding mangles continuously "; This continuous coating padding mangles comprises the A cabinet frame uncoil-stand that sets gradually according to process sequence, advances fabric preprocessing device, coating pads preceding fibre modification treating apparatus, coating squeeze device, far infrared predrying device, bakes device and plaiting apparatus, also comprises electrical control cabinet.Fabric is when advancing fabric preprocessing device and carry out preliminary treatment; By the removal of impurities of hair brush beating removal of impurities cleaning mechanism; Through permanent tension self control governor motion and after manually governing mechanism of tension is regulated fabric tension; Carry out centering by automatic centering mechanism, carry out dust suction by dust collection mechanism again, carry out the back road of the equipment of sending into again after the processing such as expanding again through expanding mechanism and handle.Though the effect that this pretreated mode can reach the removal of impurities dust suction, steadily carry, its structure are comparatively complicated, and when again fabric being delivered to later process, because the unstability of conveyance tension can make the printing quality in road, back be affected.
Summary of the invention
The purpose of this invention is to provide a kind ofly have compact conformation, when the road is carried backward with fabric tension stability continuous pigment dyeing pad dyer advance fabric preprocessing device.
The technical scheme that realizes the object of the invention is: the fabric preprocessing device that advances of continuous pigment dyeing pad dyer of the present invention comprises manual tension-adjusting gear, preliminary treatment fabric guide roll group and the brushing suction device that is arranged on first frame; Each the root deflector roll and first frame of preliminary treatment fabric guide roll group are rotationally connected; Its design feature is: also comprise the traction padding machine that is arranged on first frame; The sequencing that manual tension-adjusting gear, brushing suction device and traction padding machine are advanced by fabric sets gradually.
Above-mentioned manual tension-adjusting gear comprises handle, worm couple, pedestal and first swing span; Pedestal is fixed on first frame; Worm gear and worm screw all are rotationally connected with pedestal, and the upper end bar head of handle is fixedly connected with worm screw, and worm and wheel is meshed; First swing span and first frame are rotationally connected, and the left end head of first swing span is fixedly connected in the centre bore of worm gear.
Above-mentioned brushing suction device comprises bristle casing, 2 bearing mountings, 2 bearing blocks, 4 bearings, 2 bristle rollers, bristle transmission mechanism, dust absorbing air passage, blower fan and dust sucting motors;
2 bearing mountings of brushing suction device, 2 bearing blocks, 4 bearings and 2 bristle rollers all are arranged in the bristle casing; And 2 bearing mountings are fixed on the left and right sides of bristle casing; About 2 bearing blocks are rotatably connected on respectively and are positioned to the corresponding bearing mounting in the outside on; Each bearing block respectively is equipped with 2 bearings; And one end of end is fixedly connected about the inner ring of each bearing and a corresponding bristle roller, and the outer ring of each bearing then is fixed on the corresponding bearing block, thereby the bristle roller is rotationally connected through the bearing block of corresponding bearing and right ends; The right-hand member of two bristle rollers all passes bearing block and the bearing mounting that is positioned at the right side successively;
The bristle transmission mechanism of brushing suction device comprises bristle motor, decelerator, chain, driven sprocket, gear shaft, driving gear, rear side driven gear and front side driven gear; Driving gear, rear side driven gear and front side driven gear all are arranged in the bristle casing; The rear side driven gear is fixed on the right-hand member head of bristle roller of rear side, and the front side driven gear is fixed on the right-hand member head of bristle roller of front side; Gear shaft is rotationally connected through bearing and the bristle casing that is arranged on the bearing block that is fixed on the bristle casing; Driving gear is fixed on the left end head of gear shaft, and driving gear is meshed with rear side driven gear and front side driven gear simultaneously; The right-hand member head of gear shaft is fixed with driven sprocket, and the output shaft of bristle motor is fixedly connected with the power input component of decelerator, and chain is meshed with the output chain gear and the driven sprocket of decelerator;
Have the dedusting mouth on the left plate of the bristle casing of brushing suction device, the air inlet of the bottom of dust absorbing air passage is connected with the dedusting mouth of bristle casing; Blower fan is fixed on first frame, and its air inlet links to each other with the air outlet of dust absorbing air passage, and the air outlet of blower fan links to each other with blast pipe; Blower fan is driven by dust sucting motor during use.
Above-mentioned brushing suction device also comprises angle controller; Angle controller is installed in a side of the left and right sides of first frame; Angle controller comprises control lever, swing arm, worm gear, worm screw, handle and holder; The rear end of control lever and the front portion of bearing block are rotationally connected; The front end of control lever and the upper end of swing arm are rotationally connected, and the lower end of swing arm is fixedly connected with worm-wheel shaft, and worm-wheel shaft is rotatably connected on the holder; Worm gear is fixed on the worm-wheel shaft; Worm screw is rotatably connected on the holder and with worm gear and is meshed, and the lower end of worm screw is fixedly connected with handle, and holder is fixed on first frame.
Above-mentioned traction padding machine comprise 2 fixed mounts, 2 cursors, on roll rod, bottom roll, 2 cylinders and padding machine motor; 2 fixed mounts are fixed on first frame by the left and right sides respectively; The rear end of 2 cursors is rotatably connected on respectively on the corresponding fixed mount, and the piston rod of the front end of each cursor and a corresponding cylinder is rotationally connected; Each cylinder is fixed on the corresponding fixed mount by its cylinder block, and cylinder block and cylinder block are rotationally connected; About topping roll is rotatably connected on two cursors, about bottom roll is rotatably connected on two fixed mounts; The output shaft of padding machine motor axially is connected with bottom roll through decelerator.
The present invention has positive effect: padding mangles of the present invention advances the layout advantages of simple of fabric preprocessing device, fabric before dyeing earlier through the removal of impurities of brushing suction device with dedusting, leave this device after the tension force isolation through the traction padding machine again.Removal of impurities and dedusting are carried out in a device, have saved equipment investment and occupied ground.The traction padding machine to the tension force buffer action of fabric of process; Make fabric its tension force in the processing in preceding road not receive the influence of road, back processing; And the influence that its tension force is not handled by in preceding road in the road, back is handled, making the operating steadily of fabric provides one of guaranteed conditions to improving dyeing and finishing quality.
Description of drawings
Fig. 1 is the structural representation that advances fabric preprocessing device of the present invention; In the description that content of the present invention is carried out with the left side among Fig. 1 as the rear, with the right side among Fig. 1 as the place ahead, with the upside among Fig. 2 as left, with the downside among Fig. 2 as right-hand.
Fig. 2 is the schematic top plan view of brushing suction device among Fig. 1, and bristle casing wherein removes loam cake.
Fig. 3 is the A-A cross-sectional schematic of Fig. 2.
Fig. 4 is the schematic top plan view of the traction padding machine among Fig. 1.
Mark in the accompanying drawing is following:
First deposits cloth car 10,
Manual tension-adjusting gear 11, handle 11-1, the first swing span 11-3, preliminary treatment fabric guide roll group 12,
Brushing suction device 13, bristle casing 13-1, dedusting mouth 13-1-1, bearing mounting 13-2, bearing block 13-3, bearing 13-4; Bristle roller 13-5, bristle transmission mechanism 13-6, bristle motor 13-6-1, chain 13-6-2, driven sprocket 13-6-3, gear shaft 13-6-4; Driving gear 13-6-5, rear side driven gear 13-6-6, front side driven gear 13-6-7, dust absorbing air passage 13-7, blower fan 13-8, dust sucting motor 13-9; Angle controller 13-10, control lever 13-11, swing arm 13-12, holder 13-13
The traction padding machine 14, fixed mount 14-1, cursor 14-2, follower head 14-2-1, on roll rod 14-3, bottom roll 14-4, cylinder 14-5, padding machine motor 14-6,
Electric cabinet 81,
First frame 91,
Fabric 100.
The specific embodiment
(embodiment 1)
See Fig. 1, the fabric preprocessing device that advances of present embodiment comprises first frame 91, manually tension-adjusting gear 11, preliminary treatment fabric guide roll group 12, brushing suction device 13 and traction padding machine 14.Also comprise electric cabinet 81.
Still see Fig. 1, manually tension-adjusting gear 11 comprises handle 11-1, worm couple, pedestal and the first swing span 11-3; Pedestal is fixed on first frame 91; Worm gear and worm screw all are rotationally connected with pedestal; The upper end bar head of handle 11-1 is fixedly connected with worm screw; Worm and wheel is meshed, and the first swing span 11-3 and first frame 91 are rotationally connected, and the left end head of the first swing span 11-3 is fixedly connected in the centre bore of worm gear.
Each root deflector roll of preliminary treatment fabric guide roll group 12 is rotationally connected with first frame 91 by end about separately.
See Fig. 1 to Fig. 3, brushing suction device 13 comprises bristle casing 13-1,2 bearing mounting 13-2,2 bearing block 13-3,4 bearing 13-4,2 bristle roller 13-5, bristle transmission mechanism 13-6, dust absorbing air passage 13-7, blower fan 13-8 and dust sucting motor 13-9.Bristle transmission mechanism 13-6 comprises bristle motor 13-6-1, decelerator, chain 13-6-2, driven sprocket 13-6-3, gear shaft 13-6-4, driving gear 13-6-5, rear side driven gear 13-6-6 and front side driven gear 13-6-7.
See Fig. 2; 2 bearing mounting 13-2,2 bearing block 13-3,4 bearing 13-4 and 2 bristle roller 13-5 all are arranged among the bristle casing 13-1; And 2 bearing mounting 13-2 are fixed on the left and right sides of bristle casing 13-1; About 2 bearing block 13-3 are rotatably connected on respectively and are positioned on laterally the corresponding bearing mounting 13-2; Each bearing block 13-3 respectively is equipped with 2 bearing 13-4; And one end of end is fixedly connected about the inner ring of each bearing 13-4 and a corresponding bristle roller 13-5, and the outer ring of each bearing 13-4 then is fixed on the corresponding bearing block 13-3, thereby bristle roller 13-5 is rotationally connected through the bearing block 13-3 of corresponding bearing 13-4 and right ends; The right-hand member of two bristle roller 13-5 all passes bearing block 13-3 and the bearing mounting 13-2 that is positioned at the right side successively.
Still see Fig. 2, the driving gear 13-6-5 of bristle transmission mechanism 13-6, rear side driven gear 13-6-6 and front side driven gear 13-6-7 all are arranged among the bristle casing 13-1.Rear side driven gear 13-6-6 is fixed on the right-hand member head of bristle roller 13-5 of rear side, and front side driven gear 13-6-7 is fixed on the right-hand member head of bristle roller 13-5 of front side.Gear shaft 13-6-4 is rotationally connected through bearing and the bristle casing 13-1 that is arranged on the bearing block that is fixed on the bristle casing 13-1.Driving gear 13-6-5 is fixed on the left end head of gear shaft 13-6-4, and driving gear 13-6-5 is meshed with rear side driven gear 13-6-6 and front side driven gear 13-6-7 simultaneously.The right-hand member head of gear shaft 13-6-4 is fixed with driven sprocket 13-6-3, and the output shaft of bristle motor 13-6-1 is fixedly connected with the power input component of decelerator, and chain 13-6-2 is meshed with the output chain gear and the driven sprocket 13-6-3 of decelerator.
See Fig. 1 and Fig. 3, brushing suction device 13 also comprises 1 angle controller 13-10.Angle controller 13-10 is installed in the left side of first frame 91.Angle controller 13-10 comprises control lever 13-11, swing arm 13-12, worm gear, worm screw, handle and holder 13-13.The front portion of the rear end of control lever 13-11 and bearing block 13-3 is rotationally connected; The upper end of the front end of control lever 13-11 and swing arm 13-12 is rotationally connected, and the lower end of swing arm 13-12 is fixedly connected with worm-wheel shaft, and worm-wheel shaft is rotatably connected on the holder 13-13; Worm gear is fixed on the worm-wheel shaft; Worm screw is rotatably connected on holder 13-13 and upward and with worm gear is meshed, and the lower end of worm screw is fixedly connected with handle, and holder 13-13 is fixed on first frame 91.Handle through rotational angle controller 13-10; Can so that worm screw together rotate; And then the drive worm gear rotates; Worm gear rotates and then to make swing arm 13-12 drive control lever 13-11 to move upward in front and back, thereby makes bearing block 13-3 adjust with respect to the position of bearing mounting 13-2 and obtain bristle effect preferably.
See Fig. 1 and Fig. 2, have dedusting mouth 13-1-1 on the left plate of bristle casing 13-1, the air inlet of the bottom of dust absorbing air passage 13-7 is connected with the dedusting mouth 13-1-1 of bristle casing 13-1.Blower fan 13-8 is fixed on first frame 91, and its air inlet links to each other with the air outlet of dust absorbing air passage 13-7, and the air outlet of blower fan 13-8 links to each other with blast pipe.Blower fan 13-8 is driven by dust sucting motor 13-9 during use.
See Fig. 1 and Fig. 4, traction padding machine 14 comprise 2 fixed mount 14-1,2 cursor 14-2, on roll rod 14-3, bottom roll 14-4,2 cylinder 14-5 and padding machine motor 14-6.2 fixed mount 14-1 are fixed on first frame 91 by the left and right sides respectively.The rear end of 2 cursor 14-2 is rotatably connected on respectively on the corresponding fixed mount 14-1, and the piston rod of the front end of each cursor 14-2 and a corresponding cylinder 14-5 is rotationally connected.Each cylinder 14-5 is fixed on the corresponding fixed mount 14-1 by its cylinder block, and cylinder block and cylinder block are rotationally connected.About topping roll 14-3 is rotatably connected on two cursor 14-2, about bottom roll 14-4 is rotatably connected on two fixed mount 14-1.The output shaft of padding machine motor 14-6 axially is connected with bottom roll 14-4 through decelerator.
Electric cabinet 81 comprises Programmable Logic Controller, 2 on-off circuits and 1 frequency converter.Programmable Logic Controller comprises 2 on-off circuit control signal outputs and 1 frequency change control signal output.Each on-off circuit control signal output of Programmable Logic Controller is electrically connected with the control end of corresponding on-off circuit; The power output end of an on-off circuit is electrically connected with the power end of bristle motor 13-6-1, and the power output end of another on-off circuit is electrically connected with the power end of dust sucting motor 13-9; The frequency change control signal output of Programmable Logic Controller is electrically connected with the frequency change control signal port of frequency converter, and the power output end of frequency converter is electrically connected with the power end of padding machine motor 14-6.
The fabric preprocessing device 1 that advances of present embodiment moves along with the operation of continuous pigment dyeing pad dyer.When padding mangles moved, bristle motor 13-6-1, padding machine motor 14-6 and dust sucting motor 13-9 together rotated under the control of the Programmable Logic Controller of electric cabinet 81.Each of the rotation of padding machine motor 14-6 wherein and complete machine is used for the rotation synchronised of the driving motor of selvage guide.
Rotation along with bristle motor 13-6-1; Drive decelerator by motor 13-6-1; Output chain gear by decelerator drives driven sprocket 13-6-3 rotation through chain again; The rotation of driven sprocket 13-6-3 then drives the driving gear 13-6-5 that is fixed on simultaneously on the gear shaft 13-6-4 and rotates; The rotation of driving gear 13-6-5 then drives two driven gear 13-6-6,13-6-7 with its engagement and rotates according to same direction, thereby drives 2 bristle roller 13-5 according to rotating with the direction of fabric 100 traffic direction contraries, and can brush 100 two lip-deep dusts of fabric and foreign material more fully.Meanwhile; The rotation of dust sucting motor 13-9 then drives blower fan 13-8 and together rotates; And then make and form air-flow from bottom to top among the dust absorbing air passage 13-7; Dust under fabric 100 brushes then gets into dust absorbing air passage 13-7 from the dedusting mouth 13-1-1 of bristle casing 13-1 with air-flow, discharges outdoor by exhaust duct at last.
To traction padding machine 14 equipment debuggings such as grade the time; Air pressure control cabinet (not drawing among the figure) by traction padding machine 14 is carried the gas that has certain pressure to cylinder 14-5; And cause the piston rod of cylinder 14-5 to move upward at upper and lower, thereby driving cursor 14-2 turns to corresponding position by termination 14-2-1 thereafter with respect to fixed mount 14-1; The air pressure size of the cylinder 14-5 of traction padding machine 14 promptly is fixed after adjusting, and generally no longer changes.When padding mangles moves; The rotation of the padding machine motor 14-6 of traction padding machine 14 is then rotated through the bottom roll 14-4 that corresponding transmission mechanism drives as king roller, thereby makes fabric 100 obtain the power of advancing and the resistance that overcomes the first swing span 11-3, each deflector roll 12 and bristle roller 13-5 and deposit cloth car 10 by first and move to traction padding machine 14.
Since 14 pairs of padding machines of traction the fabric 100 of the process extruding and the tractive force that are applied be certain value, so on fabric tension, cut off the operation of preceding road to the influence in road afterwards.Should be appreciated that specific embodiment described above only is used to explain the present invention, and be not used in qualification the present invention.Conspicuous variation of being extended out by spirit of the present invention or change still are among protection scope of the present invention.

Claims (4)

  1. A continuous pigment dyeing pad dyer advance fabric preprocessing device, comprise the manual tension-adjusting gear (11), preliminary treatment fabric guide roll group (12) and the brushing suction device (13) that are arranged on first frame (91); Each the root deflector roll and first frame (91) of preliminary treatment fabric guide roll group (12) are rotationally connected; It is characterized in that: also comprise the traction padding machine (14) that is arranged on first frame (91); The sequencing that manual tension-adjusting gear (11), brushing suction device (13) and traction padding machine (14) are advanced by fabric sets gradually;
    Brushing suction device (13) comprises bristle casing (13-1), 2 bearing mountings (13-2), 2 bearing blocks (13-3), 4 bearings (13-4), 2 bristle rollers (13-5), bristle transmission mechanism (13-6), dust absorbing air passage (13-7), blower fan (13-8) and dust sucting motor (13-9);
    2 bearing mountings (13-2) of brushing suction device (13), 2 bearing blocks (13-3), 4 bearings (13-4) and 2 bristle rollers (13-5) all are arranged in the bristle casing (13-1); And 2 bearing mountings (13-2) are fixed on the left and right sides of bristle casing (13-1); About 2 bearing blocks (13-3) are rotatably connected on respectively and are positioned to the corresponding bearing mounting (13-2) in the outside on; Each bearing block (13-3) respectively is equipped with 2 bearings (13-4); And an end of end is fixedly connected about the inner ring of each bearing (13-4) and a corresponding bristle roller (13-5); The outer ring of each bearing (13-4) then is fixed on the corresponding bearing block (13-3), thereby bristle roller (13-5) is rotationally connected through the bearing block (13-3) of corresponding bearing (13-4) with right ends; The right-hand member of two bristle rollers (13-5) all passes bearing block (13-3) and the bearing mounting (13-2) that is positioned at the right side successively;
    The bristle transmission mechanism (13-6) of brushing suction device (13) comprises bristle motor (13-6-1), decelerator, chain (13-6-2), driven sprocket (13-6-3), gear shaft (13-6-4), driving gear (13-6-5), rear side driven gear (13-6-6) and front side driven gear (13-6-7); Driving gear (13-6-5), rear side driven gear (13-6-6) and front side driven gear (13-6-7) all are arranged in the bristle casing (13-1); Rear side driven gear (13-6-6) is fixed on the right-hand member head of bristle roller (13-5) of rear side, and front side driven gear (13-6-7) is fixed on the right-hand member head of bristle roller (13-5) of front side; Gear shaft (13-6-4) is rotationally connected through bearing and the bristle casing (13-1) that is arranged on the bearing block that is fixed on the bristle casing (13-1); Driving gear (13-6-5) is fixed on the left end head of gear shaft (13-6-4), and driving gear (13-6-5) is meshed with rear side driven gear (13-6-6) and front side driven gear (13-6-7) simultaneously; The right-hand member head of gear shaft (13-6-4) is fixed with driven sprocket (13-6-3); The output shaft of bristle motor (13-6-1) is fixedly connected with the power input component of decelerator, and chain (13-6-2) is meshed with the output chain gear and the driven sprocket (13-6-3) of decelerator;
    Have dedusting mouth (13-1-1) on the left plate of the bristle casing (13-1) of brushing suction device (13), the air inlet of the bottom of dust absorbing air passage (13-7) is connected with the dedusting mouth (13-1-1) of bristle casing (13-1); Blower fan (13-8) is fixed on first frame (91), and its air inlet links to each other with the air outlet of dust absorbing air passage (13-7), and the air outlet of blower fan (13-8) links to each other with blast pipe; Blower fan during use (13-8) is driven by dust sucting motor (13-9).
  2. Continuous pigment dyeing pad dyer according to claim 1 advance fabric preprocessing device, it is characterized in that: manually tension-adjusting gear (11) comprises handle (11-1), worm couple, pedestal and first swing span (11-3); Pedestal is fixed on first frame (91); Worm gear and worm screw all are rotationally connected with pedestal; The upper end bar head of handle (11-1) is fixedly connected with worm screw; Worm and wheel is meshed, and first swing span (11-3) is rotationally connected with first frame (91), and the left end head of first swing span (11-3) is fixedly connected in the centre bore of worm gear.
  3. Continuous pigment dyeing pad dyer according to claim 1 advance fabric preprocessing device, it is characterized in that: brushing suction device (13) also comprises angle controller (13-10); Angle controller (13-10) is installed in a side of the left and right sides of first frame (91); Angle controller (13-10) comprises control lever (13-11), swing arm (13-12), worm gear, worm screw, handle and holder (13-13); The front portion of the rear end of control lever (13-11) and bearing block (13-3) is rotationally connected; The upper end of the front end of control lever (13-11) and swing arm (13-12) is rotationally connected; The lower end of swing arm (13-12) is fixedly connected with worm-wheel shaft; Worm-wheel shaft is rotatably connected on the holder (13-13), and worm gear is fixed on the worm-wheel shaft, and worm screw is rotatably connected on holder (13-13) and upward and with worm gear is meshed; The lower end of worm screw is fixedly connected with handle, and holder (13-13) is fixed on first frame (91).
  4. 4. according to the fabric preprocessing device that advances of the described continuous pigment dyeing pad dyer of one of claim 1 to 3, it is characterized in that: traction padding machine (14) comprise 2 fixed mounts (14-1), 2 cursors (14-2), on roll rod (14-3), bottom roll (14-4), 2 cylinders (14-5) and padding machine motor (14-6); 2 fixed mounts (14-1) are fixed on first frame (91) by the left and right sides respectively; The rear end of 2 cursors (14-2) is rotatably connected on respectively on the corresponding fixed mount (14-1), and the piston rod of a front end of each cursor (14-2) and a corresponding cylinder (14-5) is rotationally connected; Each cylinder (14-5) is fixed on the corresponding fixed mount (14-1) by its cylinder block, and cylinder block and cylinder block are rotationally connected; About topping roll (14-3) is rotatably connected on two cursors (14-2), about bottom roll (14-4) is rotatably connected on two fixed mounts (14-1); The output shaft of padding machine motor (14-6) axially is connected with bottom roll (14-4) through decelerator.
CN2009103006812A 2009-03-04 2009-03-04 Feed-in fabric preprocessing device of continuous pigment dyeing padding mangle Expired - Fee Related CN101597851B (en)

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CN2009103006812A CN101597851B (en) 2009-03-04 2009-03-04 Feed-in fabric preprocessing device of continuous pigment dyeing padding mangle

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CN101597851B true CN101597851B (en) 2012-03-28

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CN103696109A (en) * 2013-12-30 2014-04-02 苏州尤盛纺织有限公司 Loom flying processing structure
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