Multi-color synchronous braid dyeing machine
By introducing a No. 1 insert plate, a No. 2 insert plate, and a guide wheel design into the ribbon dyeing machine, combined with absorbent sponge and squeeze roller, the problem of synchronous dyeing in the ribbon dyeing machine is solved, realizing multi-color synchronous dyeing and preventing color bleeding, thus improving dyeing efficiency and practicality.
Patent Information
- Application Number
- CN202520257599.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-02-18
AI Technical Summary
Existing ribbon dyeing machines cannot achieve simultaneous dyeing of different colors, and frequent changes of dye in the dye box are time-consuming and labor-intensive. Dyed ribbons are also prone to color bleeding when moved.
The design employs a No. 1 insert plate, a No. 2 insert plate, and a No. 1 guide roller to separate different dyes. The No. 1 motor drives the guide roller to dye different colors on the webbing at the same time. A water absorption mechanism and a squeezing roller are set up to absorb and centrally discharge excess dye to avoid color mixing.
This technology enables simultaneous multi-color dyeing of webbing, improving dyeing efficiency, preventing color mixing, and enhancing practicality.
Smart Images

Figure CN223753043U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of braid dyeing, and particularly to a multi-color synchronous braid dyeing machine. BACKGROUND
[0002] The braid dyeing machine is used for synchronously dyeing multiple braids, the currently used braid dyeing machine cannot synchronously dye braids of different colors, and it is time-consuming and laborious to frequently replace the dyes in the dye tank, and the dyed braids are prone to color mixing when moving, therefore, the multi-color synchronous braid dyeing machine is proposed. SUMMARY
[0003] The utility model discloses to the defects and insufficiency of prior art, provide a multi-color synchronous braid dyeing machine, can divide different dyes, realize the same time to braid dye different colors, according to the quantity of different colors required, place different dyes, according to the kind and quantity of the color required by braid and carry out multi-color synchronous dyeing, can suck, squeeze out and carry out concentrated discharge to the excess dye on the dyed braid, avoid the color mixing of braids of different colors, improve practicality.
[0004] To achieve the above object, the utility model adopts the following technical scheme: it contains frame, guide roller and no.
[0005] It also contains:
[0006] Dye tank, the dye tank is located below the guide roller left, a plurality of first insertion slots are formed in the bottom of the dye tank, a second insertion slot is formed in the front inner side wall of the dye tank, and a first insertion strip is integrally formed on the rear inner side wall of the dye tank.
[0007] The first insertion plate is integrally formed with a second insertion strip on the front side wall, and the second insertion strip of the foremost first insertion plate is movably inserted into the second insertion slot of the dye tank.
[0008] The second insertion plate is integrally formed with a second insertion strip on the front side wall, and the second insertion strip of the foremost first insertion plate is movably inserted into the second insertion slot of the dye tank.
[0009] A plurality of first guide wheels are rotatably connected between the first insert plate and the second insert plate through shafts and bearings;
[0010] A plurality of second guide wheels are arranged corresponding to the first guide wheels, and are rotatably connected between the second guide wheels through a first rotating shaft.
[0011] A water absorbing mechanism is arranged above the right of the dye box.
[0012] Preferably, the water absorbing mechanism comprises:
[0013] A second rotating shaft is rotatably connected between the rear frame and the front frame through bearings at the rear end and the front end, and is connected to the output shaft of a third motor.
[0014] A plurality of fixed wheels are movably sleeved on the second rotating shaft, and are arranged corresponding to the first guide wheels and the second guide wheels.
[0015] A plurality of water absorbing sponges are sleeved on the second rotating shaft and arranged between the fixed wheels.
[0016] Preferably, a plurality of fixed bolts are rotatably connected to the second rotating shaft through the ring walls of the fixed wheels.
[0017] Preferably, the height of the second rotating shaft is lower than that of the first rotating shaft, and the height of the water absorbing sponge is higher than that of the second guide wheel.
[0018] Preferably, a plurality of extrusion rollers are arranged at the bottom of the water absorbing sponges, and a third rotating shaft is arranged between the extrusion rollers.
[0019] Preferably, a collecting groove is arranged below the extrusion rollers, and is fixed between the rear frame and the front frame.
[0020] Compared with the prior art, the present application has the advantages of:
[0021] 1, the first plugboard, the second plugboard and the first guide wheel can distinguish different dyes, and realize dyeing different colors on the same time;
[0022] 2, according to the number of different colors required, different dyes are placed, and multi-color synchronous dyeing is carried out according to the type and number of colors required by the belt;
[0023] 3, the excess dye on the dyed belt can be sucked, squeezed and discharged, so that the color mixing of different colored belts is avoided, and the practicability is improved. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 is a structural schematic view of the utility model.
[0025] Figure 2 is a southwest isometric view of the utility model.
[0026] Figure 3 is Figure 2 A part of the enlarged view in
[0027] Figure 4 is a structural schematic view of the first plugboard, the second plugboard, the second plugboard and the first guide wheel in the utility model.
[0028] Figure 5 is a structural schematic view of the dye box in the utility model.
[0029] BRIEF DESCRIPTION OF DRAWINGS
[0030] frame 1, guide roller 2, first motor 3, dye box 4, first slot 4-1, second slot 4-2, first plug 5, first plugboard 6, second plug 7, second plugboard 8, third slot 8-1, first guide wheel 9, second guide wheel 10, first shaft 11, second motor 12, water suction mechanism 13, second shaft 13-1, third motor 13-2, fixed wheel 13-3, fixed bolt 13-4, water suction sponge 13-5, extrusion roller 13-6, third shaft 13-7, fourth motor 13-8, collection groove 13-9, drain pipe 13-10. DETAILED DESCRIPTION
[0031] The technical scheme in the utility model will be described clearly and completely in combination with the drawings, and the preferred embodiments in the description are only as examples, and all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.
[0032] The specific embodiment adopts the following technical scheme:
[0033] Please refer to Figures 1-5The embodiment comprises a rack 1, a guide roller 2 and a first motor 3; the guide roller 2 is arranged between the front and rear racks 1 and is driven by the first motor 3; the first motor 3 is arranged on the front rack 1 and is connected with an external power supply;
[0034] It also comprises:
[0035] A dye box 4 is arranged below and left of the guide roller 2; a plurality of first insertion slots 4-1 are arranged on the bottom of the dye box 4; a second insertion slot 4-2 is arranged on the front inner side wall of the dye box 4; and a first insertion strip 5 is integrally formed on the rear inner side wall of the dye box 4;
[0036] A plurality of first insertion plates 6 are respectively inserted into the first insertion slots 4-1 on the bottom of the dye box 4; a second insertion strip 7 is integrally formed on the front side wall of the first insertion plate 6; and the second insertion strip 7 of the foremost first insertion plate 6 is movably inserted into the second insertion slot 4-2 of the dye box 4;
[0037] A plurality of second insertion plates 8 are respectively inserted into the first insertion slots 4-1 on the bottom of the dye box 4; a third insertion slot 8-1 is arranged on the rear side wall of the second insertion plate 8; the first insertion plate 6 and the second insertion plate 8 are arranged in front of and behind each other; the second insertion strip 7 on the first insertion plate 6 is movably inserted into the third insertion slot 8-1 of the second insertion plate 8; and the third insertion slot 8-1 on the last second insertion plate 8 is movably sleeved on the first insertion strip 5 on the rear inner side wall of the dye box 4;
[0038] A plurality of first guide wheels 9 are respectively rotatably connected between the first insertion plate 6 and the second insertion plate 8 through a shaft and a bearing;
[0039] A plurality of second guide wheels 10 are respectively arranged corresponding to the first guide wheels 9; the second guide wheels 10 are movably connected through a first rotating shaft 11; the rear end of the first rotating shaft 11 is rotatably connected to the rear rack 1 through a bearing; the front end of the first rotating shaft 11 is rotatably connected through a bearing and is connected with an output shaft of a second motor 12; the second motor 12 is fixed to the front rack 1 through a support; the second motor 12 is connected with an external power supply; and the specific model of the second motor 12 is directly purchased, installed and used according to actual use requirements;
[0040] A water absorption mechanism 13 is arranged above and right of the dye box 4; the water absorption mechanism 13 comprises:
[0041] The second rotating shaft 13-1 is rotatably connected to the rear frame 1 through a bearing at the rear end thereof, and rotatably connected to the front frame 1 through a bearing at the front end thereof, and connected to the output shaft of the third motor 13-2, which is fixed to the front frame 1 through a support, and connected to an external power source, and the specific model of the third motor 13-2 is directly purchased from the market according to actual use requirements;
[0042] The fixed wheels 13-3 are a plurality of fixed wheels, and are movably sleeved on the second rotating shaft 13-1, and are arranged in pairs corresponding to the first guide wheel 9 and the second guide wheel 10;
[0043] The fixed bolts 13-4 are a plurality of fixed bolts, and are rotatably connected to the second rotating shaft 13-1 through the ring wall of the fixed wheel 13-3 in pairs;
[0044] The water-absorbing sponges 13-5 are a plurality of water-absorbing sponges, and are sleeved on the second rotating shaft 13-1, and are arranged between the two fixed wheels 13-3; and the height of the water-absorbing sponges 13-5 is higher than the height of the second guide wheel 10;
[0045] The extrusion rollers 13-6 are a plurality of extrusion rollers, and are arranged at the bottom of the plurality of water-absorbing sponges 13-5, and the third rotating shaft 13-7 is rotatably connected to the extrusion rollers 13-6 through a bearing at the rear end thereof, and rotatably connected to the output shaft of the fourth motor 13-8 through a bearing at the front end thereof, which is fixed to the front frame 1 through a support, and connected to an external power source, and the specific model of the fourth motor 13-8 is directly purchased from the market according to actual use requirements;
[0046] The collecting groove 13-9 is arranged below the extrusion rollers 13-6, and is fixed between the front and rear frames 1, and the bottom of the collecting groove 13-9 is connected to the drain pipe 13-10.
[0047] In use of the utility model, according to the quantity of different colors required, the proper number of the first guide wheel 9 is selected, the first plug-in plate 6 and the second plug-in plate 8 are inserted in the corresponding first insertion slot 4-1, the second insertion strip 7 of the first plug-in plate 6 at the front side is movably inserted in the second insertion slot 4-2 of the dye box 4, the second insertion strip 7 on the first plug-in plate 6 at the middle is movably inserted in the third insertion slot 8-1 of the second plug-in plate 8 at the middle, and the third insertion slot 8-1 on the second plug-in plate 8 at the last side is movably sleeved on the first insertion strip 5 on the inner rear wall of the dye box 4, so that several spaces can be separated between the opposite first plug-in plate 6 and second plug-in plate 8, and different dyes are placed between the opposite first plug-in plate 6 and second plug-in plate 8.
[0048] The several ribbons are introduced into the dye box 4 through the guide roller 2, the ribbons of the same color are wound on the first guide wheel 9 in the same space, the ribbons are passed between the water absorption sponge 13-5 and the extrusion roller 13-6, and then are wound out through the second guide wheel 10.
[0049] The first motor 3, the second motor 12, the third motor 13-2 and the fourth motor 13-8 are started, so that the ribbons move in the dye box 4 to carry out dyeing, the excess dye can be extruded when the ribbons pass through the water absorption sponge 13-5 and the extrusion roller 13-6, falls on the collecting groove 13-9 and is discharged through the drain pipe 13-10, and the second guide wheel 10 guides the ribbons to enter the next processing procedure.
[0050] Compared with the prior art, the utility model has the beneficial effects that:
[0051] 1, the first plug-in plate 6, the second plug-in plate 8 and the first guide wheel 9 between the first plug-in plate 6 and the second plug-in plate 8 can distinguish different dyes, realize that the ribbons are dyed with different colors at the same time;
[0052] 2, according to the quantity of different colors required, the proper number of the first guide wheel 9 is selected, the first plug-in plate 6 and the second plug-in plate 8 are inserted in the corresponding first insertion slot 4-1, different dyes are placed between the opposite first plug-in plate 6 and second plug-in plate 8, and the multicolor synchronous dyeing can be carried out according to the type and quantity of the required color of the ribbons;
[0053] 3, the water absorption sponge 13-5 is arranged, excess dye on the dyed ribbon can be absorbed, and different color ribbons are avoided from color mixing;
[0054] 4, the extrusion roller 13-6 is arranged, the dye absorbed on the water absorption sponge 13-5 can be extruded and discharged, and practicability is improved.
[0055] For those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, and equivalent replacement of part of the technical features, any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application should be included in the protection scope of the present application.
Claims
1. A multi-color synchronous ribbon dyeing machine, comprising a frame (1), a guide roller (2) and a first motor (3); the guide roller (2) is arranged between the front and rear frames (1) and is driven by the first motor (3), the first motor (3) is arranged on the front frame (1), and the first motor (3) is connected with an external power supply; characterized in that It also comprises: a dye tank (4), the dye tank (4) is arranged below and left of the guide roller (2); a plurality of first insertion slots (4-1) are formed in the bottom of the dye tank (4), a second insertion slot (4-2) is formed in the front inner side wall of the dye tank (4), and a first insertion strip (5) is integrally formed on the rear inner side wall of the dye tank (4); a first insertion plate (6), the number of the first insertion plate (6) is several, and the first insertion plate (6) is respectively inserted into the first insertion slot (4-1) outside the last side of the bottom of the dye tank (4); a second insertion strip (7) is integrally formed on the front side wall of the first insertion plate (6), and the second insertion strip (7) of the first insertion plate (6) on the most front side is movably inserted into the second insertion slot (4-2) of the dye tank (4); a second insertion plate (8), the number of the second insertion plate (8) is several, and the second insertion plate (8) is respectively inserted into the first insertion slot (4-1) outside the most front side of the bottom of the dye tank (4), a third insertion slot (8-1) is formed in the rear side wall of the second insertion plate (8), the first insertion plate (6) and the second insertion plate (8) are arranged in front of and behind each other, the second insertion strip (7) on the first insertion plate (6) is movably inserted into the third insertion slot (8-1) of the second insertion plate (8) in the middle, and the third insertion slot (8-1) on the last side of the second insertion plate (8) is movably sleeved on the first insertion strip (5) on the rear inner side wall of the dye tank (4); a first guide wheel (9), the number of the first guide wheel (9) is several, and the first guide wheel (9) is respectively rotatably connected between the first insertion plate (6) and the second insertion plate (8) through a shaft and a bearing; a second guide wheel (10), the number of the second guide wheel (10) is several, and the second guide wheel (10) is respectively arranged in one-to-one correspondence with the second guide wheel (10), the second guide wheel (10) is connected by being movably inserted through a first rotating shaft (11), the rear end of the first rotating shaft (11) is rotatably connected to the rear frame (1) through a bearing, the front end of the first rotating shaft (11) is rotatably connected through a bearing and is connected with the output shaft of a second motor (12) after penetrating through the front frame (1), the second motor (12) is fixed to the front frame (1) through a support, and the second motor (12) is connected with an external power supply; a water absorption mechanism (13), the water absorption mechanism (13) is arranged above and right of the dye tank (4).
2. A multi-color simultaneous fabric dyeing machine according to claim 1, characterized in that: The water absorption mechanism (13) comprises: a second rotating shaft (13-1), the rear end of the second rotating shaft (13-1) is rotatably connected to the rear frame (1) through a bearing, the front end of the second rotating shaft (13-1) is rotatably connected through a bearing and is connected with the output shaft of a third motor (13-2) after penetrating through the front frame (1), the third motor (13-2) is fixed to the front frame (1) through a support, and the third motor (13-2) is connected with an external power supply; A plurality of fixed wheels (13-3) are movably sleeved on the second rotating shaft (13-1), and the fixed wheels (13-3) are arranged in pairs corresponding to the first guide wheel (9) and the second guide wheel (10); A plurality of water-absorbing sponges (13-5) are movably sleeved on the second rotating shaft (13-1), and the water-absorbing sponges (13-5) are arranged between the two fixed wheels (13-3).
3. A multi-colour simultaneous fabric dyeing machine as claimed in claim 2, wherein: A plurality of fixed bolts (13-4) are threadedly connected through the ring wall of the fixed wheel (13-3) in pairs and are threadedly connected with the second rotating shaft (13-1).
4. A multi-colour simultaneous fabric dyeing machine as claimed in claim 3, wherein: The height of the second rotating shaft (13-1) is lower than the height of the first rotating shaft (11), and the height of the water-absorbing sponge (13-5) is higher than the height of the second guide wheel (10).
5. A multi-colour simultaneous fabric dyeing machine as claimed in claim 3, wherein: A plurality of extrusion rollers (13-6) are arranged at the bottom of the plurality of water-absorbing sponges (13-5), the third rotating shaft (13-7) is arranged between the extrusion rollers (13-6), the rear end of the third rotating shaft (13-7) is rotatably connected to the rear rack (1) through a bearing, the front end of the third rotating shaft (13-7) is rotatably connected to the front rack (1) through a bearing and is connected with the output shaft of the fourth motor (13-8), the fourth motor (13-8) is fixed to the front rack (1) through a support, and the fourth motor (13-8) is connected with an external power supply.
6. A multi-colour simultaneous fabric dyeing machine as claimed in claim 5, wherein: A collecting groove (13-9) is arranged below the extrusion roller (13-6), the collecting groove (13-9) is fixed between the front and rear racks (1), and a drain pipe (13-10) is connected to the bottom of the collecting groove (13-9).