CN120331013A - A high color fastness dyeing machine - Google Patents
A high color fastness dyeing machineInfo
- Publication number
- CN120331013A CN120331013A CN202510718549.2A CN202510718549A CN120331013A CN 120331013 A CN120331013 A CN 120331013A CN 202510718549 A CN202510718549 A CN 202510718549A CN 120331013 A CN120331013 A CN 120331013A
- Authority
- CN
- China
- Prior art keywords
- fixedly connected
- plates
- plate
- guide
- dyeing machine
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
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Classifications
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06G—MECHANICAL OR PRESSURE CLEANING OF CARPETS, RUGS, SACKS, HIDES, OR OTHER SKIN OR TEXTILE ARTICLES OR FABRICS; TURNING INSIDE-OUT FLEXIBLE TUBULAR OR OTHER HOLLOW ARTICLES
- D06G1/00—Beating, brushing, or otherwise mechanically cleaning or pressure cleaning carpets, rugs, sacks, hides, or other skin or textile articles or fabrics
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06B—TREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
- D06B15/00—Removing liquids, gases or vapours from textile materials in association with treatment of the materials by liquids, gases or vapours
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06B—TREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
- D06B23/00—Component parts, details, or accessories of apparatus or machines, specially adapted for the treating of textile materials, not restricted to a particular kind of apparatus, provided for in groups D06B1/00 - D06B21/00
- D06B23/04—Carriers or supports for textile materials to be treated
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- Engineering & Computer Science (AREA)
- Textile Engineering (AREA)
- Mechanical Engineering (AREA)
- Treatment Of Fiber Materials (AREA)
Abstract
The invention relates to the field of textile machinery and discloses a high-color fastness dyeing machine which comprises a storage box, wherein the front side and the rear side of the storage box are fixedly connected with side plates through T-shaped plates, the rear side of one side plate is fixedly connected with a driving mechanism, the right ends of the two T-shaped plates are fixedly connected with a drying mechanism, the left ends of the two side plates are fixedly connected with a guiding mechanism, the far sides of the two T-shaped plates are fixedly connected with an adjusting mechanism, the driving mechanism comprises a protective box, the protective box is fixedly connected with the rear side of one side plate, and the inside of the protective box is fixedly connected with a driving wheel through a driving assembly. According to the invention, the two ring bodies are driven to slide and the driving column is provided to cause that the distance between the two cleaning rollers can be adjusted, so that cloth with different thicknesses can be cleaned, and the flexibility of the device is improved.
Description
Technical Field
The invention relates to the field of textile machinery, in particular to a high-color-fastness dyeing machine.
Background
The polyester woven cloth is a fabric which is made of polyester (polyester fiber) serving as a main raw material and is prepared from polyethylene terephthalate (PET) through melt spinning, belongs to synthetic fibers, and is special dyeing equipment which has higher requirements on color fastness (such as washing fastness, friction resistance, light resistance and the like) when a textile is dyed, and outdoor articles (such as curtains and outdoor clothing) need to be resistant to ultraviolet irradiation for a long time, and dye photolysis and fading can be caused by a common dyeing process. The high-color fastness dyeing machine can be matched with special dyes (such as reactive dyes and disperse dyes) and processes (such as high-temperature high-pressure dyeing), so that the combination stability of the dyes and the fibers is enhanced, and the photo-aging and fading are delayed.
When the high-color fastness dyeing machine is used, firstly singeing, desizing and boiling textiles, removing impurities and improving the dyeing performance of fibers, then flattening the textiles into a cylinder, setting parameters according to the characteristics of the textiles in a PLC system, accurately preparing dye liquor according to a formula, injecting the dye liquor into the dye cylinder and uniformly distributing the dye liquor through a circulation system, regulating and controlling the parameters such as temperature, time and the like according to a preset curve by the PLC system during dyeing, for example, the temperature of the high-temperature high-pressure dyed polyester is required to be increased to 130-135 ℃, and simultaneously carrying out on-line monitoring to ensure the process stability.
In the prior art, part of the high-color-fastness dyeing machine can use the roller brush to clean raw materials in the use process, however, for thinner cloth, the roller brush has overlarge pressure to cause cloth breakage and fuzzing, and when the cloth faces thicker cloth, the contact is insufficient, surface impurities and fiber fragments are difficult to thoroughly remove, so that the high-color-fastness dyeing machine cannot flexibly adapt to cloth with different thicknesses, and therefore, the problem is solved by the high-color-fastness dyeing machine aiming at the defects.
Disclosure of Invention
The invention aims to provide a high-color-fastness dyeing machine, which solves the problem that part of high-color-fastness dyeing machines in the prior art cannot be suitable for cleaning different fabrics.
In order to achieve the above purpose, the invention is realized by the following technical scheme:
The utility model provides a high color fastness dyeing machine, includes the storage case, both sides all pass through T shaped plate fixedly connected with curb plate around the storage case, one of them the rear side fixedly connected with actuating mechanism of curb plate, two the right-hand member fixedly connected with drying mechanism of T shaped plate, two the left end fixedly connected with guiding mechanism of curb plate, two the equal fixedly connected with adjustment mechanism in looks far away side of T shaped plate, actuating mechanism includes the protection case, protection case fixedly connected with is in one of them the rear side of curb plate, the inside of protection case is through actuating assembly fixedly connected with action wheel, the top side fixedly connected with arc of curb plate, two the top side of arc is through mount fixedly connected with power pack, two ring bodies rotate and are connected with the drive post in the bottom of power pack, the drive post with the equal fixedly connected with cleaning roller in outside of drive pack, the drive post with the equal fixedly connected with gear in front of drive pack
Preferably, the drying mechanism comprises a drying box, the left side fixedly connected with of drying box is two the T shaped plate, both ends all rotate around the drying box and be connected with the rotor, one of them the outside fixedly connected with of rotor follows the driving wheel, the outside cover of following the driving wheel is equipped with the belt, two the equal fixedly connected with of nearly one side of rotor changes the board, two the nearly one side fixedly connected with transmission shaft of rotor, the outside sliding connection of transmission shaft has the sliding frame, both sides all fixedly connected with supporting shoe around the sliding frame, the inside sliding connection of supporting shoe has the guiding axle, the bottom side fixedly connected with stoving board of sliding frame, the bottom side fixedly connected with a plurality of heater strips of stoving board.
Preferably, the guiding mechanism comprises a guiding rod, the outside fixed connection of guiding rod is in two the inside of curb plate, the outside fixedly connected with guide roll of guiding rod, the bottom fixedly connected with deflector of guide roll, the outside sliding connection of guide roll has two guide rings, the equal fixedly connected with spring of the inner wall left and right sides of guide ring, two the equal fixedly connected with arc post of the nearly one end of spring.
Preferably, two adjustment mechanism all includes the side piece, two near one side of side piece is two respectively fixed connection is in the far away one side of T shaped plate, the bottom side fixedly connected with electric putter of side piece, electric putter's drive end fixedly connected with worker shaped plate, two the inside fixedly connected with sliding column of worker shaped plate, both ends all rotate and are connected with the rotor plate about the worker shaped plate, the outside sliding connection of rotor plate is in two the inside of T shaped plate, the top rotation of rotor plate is connected with the opening plate, two the inside fixedly connected with spacing post of opening plate, two the outside sliding connection of spacing post is in two the inside of T shaped plate, the outside rotation of spacing post is connected with the auxiliary roller, both sides all fixedly connected with two sensors around the inner wall of storage box, the front side fixedly connected with observation table of storage box, both sides all fixedly connected with bottom plate about the storage box, both sides all fixedly connected with supporting leg around the bottom plate, the inside sliding connection of drying box is in two the top side of supporting leg fixedly connected with.
Preferably, the driving assembly comprises a motor, the rear side of the motor is fixedly connected with the rear side of the inner wall of the protective box, and the driving end of the motor is fixedly connected with a rotating shaft.
Preferably, the outside fixed connection of pivot is in one of them the inside of cleaning roller, the front end fixed connection of pivot is in one of them the inside of gear, two for meshing connection between the gear, the rear end fixed connection of pivot is in the inside of action wheel.
Preferably, the power assembly comprises a cylinder, the outside of the cylinder is fixedly connected with the inside of the fixing frame, the driving end of the cylinder is fixedly connected with a pushing frame, and the bottom ends of the pushing frames are fixedly connected with the outside of the two ring bodies.
Preferably, a plurality of arc openings are formed in the left side and the right side of the guide plate, and the outer parts of the arc columns are slidably connected to the inner parts of the arc openings.
Preferably, the outside of action wheel overlaps to be established in the inside of belt, two the outside of guiding axle is fixed connection respectively in the front and back both ends of stoving case are inside.
Preferably, the outer part of the transmission column is slidably connected to the inner parts of the two arc-shaped plates, and the outer part of the rotating shaft is rotatably connected to the inner parts of the two side plates.
In summary, the present invention includes at least one of the following beneficial technical effects:
1. According to the invention, the transmission column is driven to rotate, so that the external cleaning rollers are driven to rotate, the two cleaning rollers relatively rotate to clean two sides of cloth, so that the quality of the cloth is improved, and meanwhile, the two ring bodies are driven to slide and the transmission column is driven to provide the result, so that the distance between the two cleaning rollers can be adjusted, and the cloth with different thicknesses can be cleaned.
2. According to the invention, the driven wheel is driven to rotate, then the internal rotating roller is driven to rotate, and then the transmission shaft is connected with the other rotating roller, so that the transmission shaft can drive the sliding frame to slide in a left-right reciprocating manner, then the drying plate is driven to slide continuously, and then the heating wires are driven to slide in a reciprocating manner, thereby improving the heating and drying effects.
3. According to the invention, the arc-shaped column can slide under force and squeeze the spring by propping against the guide plate, so that the spring can store elastic potential energy, then the arc-shaped column is clamped in the arc-shaped opening in the opposite direction, and then cloth with different widths is guided by the distance between the two guide rings, so that the cloth deflection is avoided.
Drawings
FIG. 1 is a perspective view of a high-color fastness dyeing machine according to the present invention;
FIG. 2 is a schematic view of the structure of a rotating plate of a high-color fastness dyeing machine according to the present invention;
FIG. 3 is a schematic diagram of a side plate of a high-color fastness dyeing machine according to the present invention;
FIG. 4 is a schematic view of the guide shaft of the high-color fastness dyeing machine according to the present invention;
FIG. 5 is an enlarged view of FIG. 4 at A;
FIG. 6 is a schematic view of a guide ring of a high color fastness dyeing machine according to the present invention;
FIG. 7 is an enlarged view of FIG. 6 at B;
Fig. 8 is a schematic structural diagram of an i-shaped plate of a high-color fastness dyeing machine according to the present invention.
Wherein, 1, a storage box, 2, a T-shaped plate, 3, a side plate, 4, a driving mechanism, 41, a protective box, 42, a driving component, 4201, a motor, 4202, a rotating shaft, 43, an arc-shaped plate, 44, a fixed frame, 45, a power component, 4501, a cylinder, 4502, a pushing frame, 46, a ring body, 47, a transmission column, 48, a cleaning roller, 49, a driving wheel, 410, a gear, 5, a drying mechanism, 51, a drying box, 52, a rotating roller, 53, a driven wheel, 54, a belt, 55, a transmission shaft, 56, a sliding frame, 57, a supporting block, 58, a guide shaft, 59, a drying plate, 510, a rotating plate, 6, a supporting leg, 7, a guide mechanism, 71, a guide rod, 72, a guide roller, 73, a guide plate, 74, a guide ring, 75, a spring, 76, an arc-shaped column, 8, an observation table, 9, an adjusting mechanism, 91, a side block, 92, an electric push rod, 93, a worker-shaped plate, 94, a sliding column, 95, a rotating plate, 96, an opening plate, 97, a limit column, 98, an auxiliary roller, a bottom plate, a sensor, 10, and a sensor.
Detailed Description
Referring to fig. 1 to 3, the high-color fastness dyeing machine according to one embodiment of the present invention includes a storage tank 1, wherein the storage tank 1 is used for storing hot fuel. Both sides all are through T shaped plate 2 fixedly connected with curb plate 3 around storage box 1, fix through the screw thread between storage box 1 and the T shaped plate 2, and fix through the bolt between T shaped plate 2 and the curb plate 3. The rear side of one of the side plates 3 is fixedly connected with a driving mechanism 4, and the driving mechanism 4 comprises a protective box 41, wherein the protective box 41 is used for protection. The guard box 41 is fixedly connected to the rear side of one of the side plates 3, and is fixed by a welding process, thereby providing support for the guard box 41. The inside of the protective box 41 is fixedly connected with a driving wheel 49 through a driving component 42, the driving component 42 comprises a motor 4201, and the motor 4201 is used for providing a driving source;
The rear side of the motor 4201 is fixedly coupled to the rear side of the inner wall of the protection box 41, and is fixed by a welding process, so that the motor 4201 can stably operate. The driving end of the motor 4201 is fixedly connected with a rotating shaft 4202, and the rotating shaft 4202 is driven to rotate by starting the motor 4201. The rear end of the rotary shaft 4202 is fixedly connected to the inside of the driving wheel 49, and the rotary force is transmitted to the driving wheel 49 through the rotary shaft 4202 to rotate. The outer portion of the rotation shaft 4202 is rotatably connected to the inner portions of the two side plates 3, so that the rotation shaft 4202 can stably operate by the restriction of the side plates 3. The top side of the side plate 3 is fixedly connected with an arc plate 43, and is fixed through a welding process, so that the arc plate 43 can be stably supported. The top sides of the two arc plates 43 are fixedly connected with a power assembly 45 through a fixing frame 44, the bottom end of the power assembly 45 is rotationally connected with a transmission column 47 through two ring bodies 46, the outer parts of the transmission columns 47 are slidably connected inside the two arc plates 43, and the transmission columns 47 provide guidance through openings on the front side and the rear side of the arc plates 43;
The power assembly 45 includes a cylinder 4501, the cylinder 4501 being used to provide a driving source. The outside of the air cylinder 4501 is fixedly connected to the inside of the fixing frame 44, and is fixed through a welding process, so that the air cylinder 4501 can stably operate. The driving end of the air cylinder 4501 is fixedly connected with a pushing frame 4502, and the pushing frame 4502 is driven to slide by the starting air cylinder 4501. The bottom ends of the pushing frames 4502 are fixedly connected to the outer portions of the two ring bodies 46, and are fixed through a welding process, so that support is provided for the ring bodies 46. The driving column 47 and the driving assembly 42 are fixedly connected with the cleaning rollers 48, the outer part of the rotating shaft 4202 is fixedly connected with the inner part of one of the cleaning rollers 48, and the rotating force is transmitted to the cleaning rollers 48 through the rotating shaft 4202, so that the cleaning rollers 48 can be driven to synchronously rotate. The front end of the rotating shaft 4202 is fixedly connected to the inside of one of the gears 410, the two gears 410 are in meshed connection, the gears 410 are fixedly connected to the front ends of the driving columns 47 and the driving assembly 42, and the two gears 410 are meshed, so that the rotating shaft 4202 drives the externally fixed gears 410 to rotate and then drives the other gear 410 to rotate, and the driving columns 47 are driven to rotate, so that the two cleaning rollers 48 rotate relatively.
Referring to fig. 2, 4 and 5, the right ends of the two T-shaped plates 2 are fixedly connected with a drying mechanism 5, and the drying mechanism 5 is used for drying cloth. The drying mechanism 5 includes a drying box 51, and the drying box 51 provides a space for cloth drying. The left side of the drying box 51 is fixedly connected to the two T-shaped plates 2, and is fixed through a welding process, thereby providing support for the drying box 51. The front and rear ends of the drying box 51 are rotatably connected with the rotating rollers 52, and the two rotating rollers 52 are rotated by the restriction of the drying box 51. A driven wheel 53 is fixedly connected to the outside of one of the rotating rollers 52, and a rotating force is transmitted to the rotating roller 52 through the driven wheel 53. The belt 54 is sleeved outside the driven wheel 53, the driving wheel 49 is sleeved inside the belt 54, the belt 54 is driven to rotate by friction force through rotation of the driving wheel 49, and then the driven wheel 53 is driven to rotate;
The rotating plates 510 are fixedly connected to the adjacent sides of the two rotating rollers 52, and are fixed through a welding process, thereby providing support for the drying box 51. A transmission shaft 55 is fixedly connected to one side of the two rotating plates 510, and the two rotating plates 510 are connected through the transmission shaft 55, so that the rotating plates 510 are driven to rotate. The sliding frame 56 is slidably connected to the outside of the transmission shaft 55, and the sliding frame 56 is pushed to slide back and forth by the transmission shaft 55. The front side and the rear side of the sliding frame 56 are fixedly connected with supporting blocks 57, and the two supporting blocks 57 are driven to synchronously slide through the sliding frame 56. The inside of the support block 57 is slidably connected with a guide shaft 58, and the guide shaft 58 provides a guide for the sliding of the support block 57, so that the support block 57 can stably slide. The outer portions of the two guide shafts 58 are fixedly connected to the inside of the front and rear ends of the drying box 51, respectively, and are fixed by a welding process, so that the two guide shafts 58 can stably provide the guide. The bottom side of the sliding frame 56 is fixedly connected with a drying plate 59, and the sliding force is transmitted to the drying plate 59 through the sliding frame 56, so that the drying plate 59 can slide synchronously. A plurality of heating wires are fixedly connected to the bottom side of the drying plate 59, and the cloth is heated by the plurality of heating wires.
Referring to fig. 2,6 and 7, the left ends of the two side plates 3 are fixedly connected with a guide mechanism 7, the guide mechanism 7 includes a guide bar 71, the outside of the guide bar 71 is fixedly connected inside the two side plates 3, and the guide bar 71 is fixed through a welding process so that the guide bar 71 can provide guide. The outside fixedly connected with guide roll 72 of guide bar 71, transport the material loading through the guide roll 72 guide cloth. The bottom end of the guide roller 72 is fixedly connected with a guide plate 73, and is fixed through a welding process, thereby providing support for the guide plate 73. Two guide rings 74 are slidably connected to the outside of the guide roller 72, and the guide roller 72 provides a guide for the sliding of the guide rings 74. The left side and the right side of the inner wall of the guide ring 74 are fixedly connected with springs 75, and the springs 75 can be uniformly stressed by fixing the springs 75. The two springs 75 are fixedly connected with the arc-shaped columns 76 at the similar ends, and the springs 75 can be extruded through the arc-shaped columns 76 in the sliding process, so that the springs 75 can store elastic potential energy, and then the arc-shaped columns 76 are reset by the force in the opposite direction. The guide plate 73 has a plurality of arc openings formed on both left and right sides thereof, and the arc openings are adapted to the arc posts 76. The outer portions of the plurality of arcuate posts 76 are slidably coupled within the plurality of arcuate openings to provide space for the engagement of the arcuate posts 76 through the arcuate openings.
Referring to fig. 1,2 and 8, the far sides of the two T-shaped plates 2 are fixedly connected with an adjusting mechanism 9, and the adjusting mechanism 9 is used for adjusting the tension of cloth. The two adjusting mechanisms 9 each comprise a side block 91, wherein the adjacent sides of the two side blocks 91 are respectively fixedly connected to the distant sides of the two T-shaped plates 2, and are fixed through a welding process, so that support is provided for the side blocks 91. The bottom side of the side block 91 is fixedly connected with an electric push rod 92, and the electric push rod 92 is used for providing a driving source. The driving end of the electric push rod 92 is fixedly connected with the working plate 93, and the working plate 93 is driven to slide by starting the electric push rod 92. The two I-shaped plates 93 are fixedly connected with sliding columns 94, and the sliding columns 94 are driven to synchronously slide through the sliding of the I-shaped plates 93. The left and right ends of the i-shaped plate 93 are both rotatably connected with a rotating plate 95, and the sliding force is transmitted to the rotating plate 95 through the i-shaped plate 93, so that the rotating plate 95 can rotate. The outer parts of the rotating plates 95 are connected with the inner parts of the two T-shaped plates 2 in a sliding way, and openings are formed in the inner parts of the T-shaped plates 2, so that guiding and space are provided for sliding of the rotating plates 95;
The opening plate 96 is rotatably connected to the tip of the rotation plate 95, and the rotation force is transmitted to the opening plate 96 through the rotation plate 95 so that the opening plate 96 can slide. The two opening plates 96 are fixedly connected with a limit post 97 inside, and the sliding force is transmitted to the limit post 97 through the opening plates 96. The outside sliding connection of two spacing posts 97 is in the inside of two T shaped plates 2, through seting up square opening at the top of T shaped plate 2 to provide the direction for the slip of spacing post 97. The outside rotation of spacing post 97 is connected with auxiliary roller 98, through the restriction of spacing post 97 for auxiliary roller 98 can rotate. Two sensors 99 are fixedly connected to the front side and the rear side of the inner wall of the storage box 1, and the sensors 99 are temperature sensors 99, so that the temperature of fuel can be monitored at any time, and the prior art is omitted. An observation table 8 is fixedly connected to the front side of the storage tank 1, and the observation table 8 is used for observing the temperature of fuel. The left side and the right side of the storage box 1 are fixedly connected with a bottom plate 10, and are fixed through a welding process, so that support is provided for the bottom plate 10. The front side and the rear side of the bottom plate 10 are fixedly connected with the supporting legs 6, and are fixed through a welding process, so that the supporting legs 6 are supported. The bottom side of the drying box 51 is fixedly connected to the top sides of the two support legs 6, and is fixed through a welding process, thereby providing support for the drying box 51.
The working principle is that the cloth is transported along the guide roller 72 of the guide rod 71, then the cloth has the width, the guide rod 71 is pushed to slide, then the arc-shaped column 76 can bear the force to slide and press the spring 75 by propping against the guide plate 73, so that the spring 75 can store elastic potential energy, then the arc-shaped column 76 is clamped in the arc-shaped opening in the opposite direction, and then the cloth with different widths is guided by the distance between the two guide rings 74;
then, cloth passes through between the two cleaning rollers 48, then the motor 4201 is started to drive the rotating shaft 4202 to rotate, then the outer cleaning rollers 48 are driven to rotate, the rotating shaft 4202 also drives the outer gear 410 to rotate, at the moment, the engaged other gear 410 is driven to rotate, so that the transmission column 47 is driven to rotate, the outer cleaning rollers 48 are driven to rotate, the two cleaning rollers 48 are driven to rotate relatively to clean two sides of the cloth, so that the quality of the cloth is improved, meanwhile, the driving frame 4502 is driven to slide by the starting air cylinder 4501, then the two rings 46 are driven to slide and guide the transmission column 47, and the distance between the two cleaning rollers 48 can be adjusted, so that the cloth with different thicknesses can be cleaned;
then the cloth sequentially passes through the auxiliary roller 98 at the left end and the feeding roller outside the sliding column 94, finally passes through the auxiliary roller 98 at the right end, simultaneously, fuel is poured into the storage box 1, meanwhile, the requirement is met, the electric push rod 92 is driven to push the I-shaped plate 93 to slide continuously, then the rotating plate 95 is driven to rotate, the opening plate 96 is driven to slide, the limiting column 97 is driven to slide through the opening plate 96, the two auxiliary rollers 98 slide towards the similar side, so that the tension of the cloth is always kept tight, and the tension is kept loose, so that the tension adjusting effect is achieved;
The cleaned cloth enters the drying box 51, the cloth is dried through a plurality of heating wires, the rotating shaft 4202 drives the driving wheel 49 to rotate, the driven wheel 53 is driven to rotate, the inner rotating roller 52 is driven to rotate, the other rotating roller 52 is connected through the transmission shaft 55, the transmission shaft 55 can drive the sliding frame 56 to slide in a left-right reciprocating manner, the drying plate 59 is driven to slide continuously, and the heating wires are driven to slide in a reciprocating manner, so that the heating and drying effects are improved.
Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (10)
1. The high-color fastness dyeing machine comprises a storage box (1), and is characterized in that the front side and the rear side of the storage box (1) are fixedly connected with side plates (3) through T-shaped plates (2), the rear side of one side plate (3) is fixedly connected with a driving mechanism (4), the right ends of the two T-shaped plates (2) are fixedly connected with a drying mechanism (5), the left ends of the two side plates (3) are fixedly connected with a guide mechanism (7), and the far sides of the two T-shaped plates (2) are fixedly connected with an adjusting mechanism (9);
The driving mechanism (4) comprises a protection box (41), the protection box (41) is fixedly connected to the rear side of one side plate (3), a driving wheel (49) is fixedly connected to the inside of the protection box (41) through a driving component (42), an arc plate (43) is fixedly connected to the top side of the side plate (3), a power component (45) is fixedly connected to the top side of the arc plate (43) through a fixing frame (44), a transmission column (47) is rotatably connected to the bottom end of the power component (45) through two ring bodies (46), a cleaning roller (48) is fixedly connected to the outside of the transmission column (47) and the driving component (42), and a gear (410) is fixedly connected to the front end of the transmission column (47) and the driving component (42).
2. The high-color fastness dyeing machine according to claim 1, wherein the drying mechanism (5) comprises a drying box (51), the left side of the drying box (51) is fixedly connected with two T-shaped plates (2), the front end and the rear end of the drying box (51) are rotatably connected with rotating rollers (52), one of the rotating rollers (52) is fixedly connected with a driven wheel (53), a belt (54) is sleeved outside the driven wheel (53), two rotating rollers (52) are fixedly connected with rotating plates (510) on the similar side, two rotating plates (510) are fixedly connected with transmission shafts (55) on the similar side, sliding frames (56) are fixedly connected to the outer sides of the transmission shafts (55), guide shafts (58) are fixedly connected to the front side and the rear side of the sliding frames (56), a plate (59) is fixedly connected to the bottom side of the sliding frames (56), and a plurality of drying wires are fixedly connected to the bottom side of the drying plate (59).
3. The high-color fastness dyeing machine according to claim 1, wherein the guide mechanism (7) comprises guide rods (71), the outer parts of the guide rods (71) are fixedly connected with the inner parts of the two side plates (3), guide rollers (72) are fixedly connected with the outer parts of the guide rods (71), guide plates (73) are fixedly connected with the bottom ends of the guide rollers (72), two guide rings (74) are slidably connected with the outer parts of the guide rollers (72), springs (75) are fixedly connected with the left side and the right side of the inner wall of each guide ring (74), and arc-shaped columns (76) are fixedly connected with the similar ends of the two springs (75).
4. The high-color fastness dyeing machine according to claim 2, wherein the two adjusting mechanisms (9) comprise side blocks (91), one side of each side block (91) is fixedly connected with the far side of the two T-shaped plates (2), the bottom side of each side block (91) is fixedly connected with an electric push rod (92), the driving end of each electric push rod (92) is fixedly connected with a working plate (93), the inner parts of the two working plates (93) are fixedly connected with sliding columns (94), the left end and the right end of each working plate (93) are respectively connected with a rotating plate (95) in a rotating mode, the outer parts of the rotating plates (95) are respectively connected with the inner parts of the two T-shaped plates (2) in a sliding mode, the top ends of the rotating plates (95) are respectively connected with an opening plate (96), the inner parts of the two opening plates (96) are fixedly connected with limit columns (97), the outer parts of the two limit columns (97) are respectively connected with the inner parts of the two T-shaped plates (2) in a sliding mode, the two limit columns (97) are respectively connected with the inner sides of the two T-shaped plates (1), the two sensor boxes (1) are respectively connected with the two sensor boxes (1) in a sliding mode, the two sensor boxes (1) are fixedly connected with the two sensor boxes (1) respectively, the front side and the rear side of the bottom plate (10) are fixedly connected with supporting legs (6), and the bottom side of the drying box (51) is fixedly connected with the top sides of the two supporting legs (6).
5. The high color fastness dyeing machine according to claim 1, wherein the driving component (42) comprises a motor (4201), the rear side of the motor (4201) is fixedly connected to the rear side of the inner wall of the protective box (41), and the driving end of the motor (4201) is fixedly connected to a rotating shaft (4202).
6. The high color fastness dyeing machine according to claim 5, wherein the outer part of the rotating shaft (4202) is fixedly connected to the inside of one of the cleaning rollers (48), the front end of the rotating shaft (4202) is fixedly connected to the inside of one of the gears (410), the two gears (410) are in meshed connection, and the rear end of the rotating shaft (4202) is fixedly connected to the inside of the driving wheel (49).
7. The high-color-fastness dyeing machine according to claim 1, wherein the power assembly (45) comprises an air cylinder (4501), the outer portion of the air cylinder (4501) is fixedly connected to the inner portion of the fixing frame (44), the driving end of the air cylinder (4501) is fixedly connected with a pushing frame (4502), and the bottom end of the pushing frame (4502) is fixedly connected to the outer portions of the two ring bodies (46).
8. A high color fastness dyeing machine according to claim 3, wherein a plurality of arc openings are formed on the left side and the right side of the guide plate (73), and the outer parts of the arc columns (76) are connected with the inner parts of the arc openings in a sliding manner.
9. The high-color fastness dyeing machine according to claim 2, wherein the driving wheel (49) is sleeved inside the belt (54), and the outer parts of the two guide shafts (58) are fixedly connected inside the front end and the rear end of the drying box (51) respectively.
10. A high-fastness dyeing machine according to claim 6, characterized in that the outer part of the transmission column (47) is slidingly connected inside the two curved plates (43), and the outer part of the rotating shaft (4202) is rotatably connected inside the two side plates (3).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202510718549.2A CN120331013A (en) | 2025-05-30 | 2025-05-30 | A high color fastness dyeing machine |
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| Application Number | Priority Date | Filing Date | Title |
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| CN202510718549.2A CN120331013A (en) | 2025-05-30 | 2025-05-30 | A high color fastness dyeing machine |
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| CN120331013A true CN120331013A (en) | 2025-07-18 |
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| CN202510718549.2A Pending CN120331013A (en) | 2025-05-30 | 2025-05-30 | A high color fastness dyeing machine |
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN120967617A (en) * | 2025-10-21 | 2025-11-18 | 江苏唐盛纺织科技有限公司 | Singeing machine for textile fabric production and use method thereof |
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN120967617A (en) * | 2025-10-21 | 2025-11-18 | 江苏唐盛纺织科技有限公司 | Singeing machine for textile fabric production and use method thereof |
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