CN111845041A - Automatic printing and dyeing printing device for textile fabric processing - Google Patents
Automatic printing and dyeing printing device for textile fabric processing Download PDFInfo
- Publication number
- CN111845041A CN111845041A CN202010671419.5A CN202010671419A CN111845041A CN 111845041 A CN111845041 A CN 111845041A CN 202010671419 A CN202010671419 A CN 202010671419A CN 111845041 A CN111845041 A CN 111845041A
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- Prior art keywords
- printing
- rod
- sliding
- special
- dyeing
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41F—PRINTING MACHINES OR PRESSES
- B41F17/00—Printing apparatus or machines of special types or for particular purposes, not otherwise provided for
- B41F17/003—Special types of machines for printing textiles
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41F—PRINTING MACHINES OR PRESSES
- B41F13/00—Common details of rotary presses or machines
- B41F13/02—Conveying or guiding webs through presses or machines
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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)
- Coloring (AREA)
Abstract
The invention relates to a printing and dyeing printing device, in particular to an automatic printing and dyeing printing device for textile fabric processing. The technical problems to be solved by the invention are as follows: the automatic printing and dyeing printing device for processing the textile fabric is high in printing and dyeing printing speed and high in working efficiency. The utility model provides a textile fabric processing is with automatic printing and dyeing stamp device, including: a mounting frame; the two rolling shafts are rotatably and symmetrically arranged on the mounting frame through bearings; the conveying belt is arranged on the two rolling shafts; the clamping assembly is arranged on the conveying belt and clamps the conveying belt in a sliding mode; the printing component is installed on the installation frame and prints in a sliding mode. According to the printing and dyeing device, the clamping assembly can be used for clamping cloth to be printed and dyed, the printing assembly can be used for printing and dyeing the cloth, the clamping assembly can be used for clamping equipment, and the clamping assembly can be loosened to print and dye the cloth when needed.
Description
Technical Field
The invention relates to a printing and dyeing printing device, in particular to an automatic printing and dyeing printing device for textile fabric processing.
Background
The cloth is a material commonly used in decorative materials. Comprises various fabrics such as chemical fiber carpets, non-woven wallcoverings, linen, nylon fabrics, colored rubberized fabrics, flannel and the like. Cloth plays a considerable role in decorative displays, often a major non-negligible effort in the overall sales space.
The patent of patent publication No. CN208085244U discloses a printing, dyeing and printing device for textile fabric processing, which comprises an operation table, a working plate, a feeder, a feeding box, a servo controller, an exhaust fan, a printing and dyeing belt, a rotary table and a motor box, wherein the motor box is of a combined box structure and is internally provided with a rotary motor with a vertical rotor, the upper cavity of the motor box adopts a separated structure, the rear side of the motor box is provided with a vertical rack, the front side of the motor box is provided with the operation table which is installed in a tilting manner, and the surface of the operation table is provided with a plurality of keys. When the device is used for printing, dyeing and printing on cloth, the printing, dyeing and printing speed is slow, so that the working efficiency of people is low.
Therefore, the technical problem to be solved by the invention is how to design the automatic printing and dyeing printing device for processing the textile fabric, which has high printing and dyeing printing speed and high working efficiency.
Disclosure of Invention
In order to overcome the defects of low speed and low working efficiency when the cloth is printed, dyed and printed, the invention has the technical problems that: the automatic printing and dyeing printing device for processing the textile fabric is high in printing and dyeing printing speed and high in working efficiency.
The technical implementation scheme of the invention is as follows: the utility model provides a textile fabric processing is with automatic printing and dyeing stamp device, including: a mounting frame; the two rolling shafts are rotatably and symmetrically arranged on the mounting frame through bearings; the conveying belt is arranged on the two rolling shafts; the clamping assembly is arranged on the conveying belt and clamps the conveying belt in a sliding mode; the printing assembly is arranged on the mounting frame and prints in a sliding mode; the clamping assembly is arranged on the printing assembly and is clamped in a sliding mode; and the power assembly is arranged on the mounting frame and provides power in a rotating mode.
More preferably, the clamping assembly comprises: at least two placing plates are arranged and are mounted on the conveying belt; at least two clamping blocks are arranged on the placing plate; at least two first guide rods are arranged on the placing plate; at least two first sliding sleeves are arranged and are arranged on the first guide rod in a sliding manner; at least two first springs are arranged and are arranged between the first sliding sleeve and the placing plate; at least two pressure plates are arranged and are mounted on the first sliding sleeve; the handle, the handle is two at least, all installs on the clamp plate.
More preferably, the printing assembly comprises: the two first guide sleeves are symmetrically arranged on the mounting frame; two sliding rods are arranged and are arranged in the first guide sleeve in a sliding manner; two second springs are arranged between the sliding rod and the first guide sleeve and are in a compressed state; the material storage frame is arranged on the front sliding rod and the rear sliding rod; the printing plate is arranged on the material storage frame.
More preferably, the chucking assembly includes: two second guide sleeves are arranged on the first guide sleeve; two special-shaped rods are arranged and are arranged in the second guide sleeve in a sliding manner; two third springs are arranged and are arranged between the special-shaped rod and the second guide sleeve; two baffles are arranged and are rotatably mounted on the special-shaped rod; two torsion springs are arranged and are arranged between the baffle plate and the special-shaped rod; the push rods are at least two and are all installed on the placing plate.
More preferably, the power assembly includes: the speed reducing motor is arranged on the mounting frame; the first gear is arranged on an output shaft of the speed reducing motor; the second sliding sleeve is arranged on the rolling shaft; the fourth spring is arranged between the second sliding sleeve and the rolling shaft; the second gear is arranged on the second sliding sleeve; two chain wheels are arranged and are arranged on the rolling shaft; the chain is arranged on the two chain wheels; the first special-shaped mounting rod is mounted on the second sliding sleeve; the first wedge block is arranged on the first special-shaped mounting rod and matched with the baffle.
More preferably, the method further comprises the following steps: the second guide rod is arranged on the mounting frame; the third sliding sleeve is slidably arranged on the second guide rod; the rotating shaft is rotatably arranged on the third sliding sleeve through a bearing; the third gear is arranged on the rotating shaft and is meshed with the first gear; the second wedge-shaped block is arranged on the rotating shaft; the contact rod is arranged on the first special-shaped mounting rod and matched with the second wedge-shaped block; the second special-shaped mounting rod is mounted on the material storage frame; the fourth sliding sleeve is slidably mounted on the second special-shaped mounting rod; the fifth spring is arranged between the fourth sliding sleeve and the second special-shaped mounting rod and is in a compressed state; and the rack is arranged on the fourth sliding sleeve and is meshed with the third gear.
Compared with the prior art, the invention has the following advantages: according to the invention, the cloth to be printed and dyed can be clamped through the clamping assembly, printing and dyeing can be carried out on the cloth through the printing assembly, the equipment can be clamped through the clamping assembly, the cloth can be printed and dyed by loosening the clamping assembly when needed, power can be provided by the power assembly when the cloth is printed and dyed and the cloth is conveyed, the equipment can be driven to reset after the printing and dyeing of the cloth is finished through the rack and the third gear, a large amount of manpower is saved, and the printing and dyeing machine is more convenient for people to use.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a perspective view of the clamping assembly of the present invention.
Fig. 3 is a perspective view of the clamping assembly of the present invention.
Fig. 4 is a partial perspective view of the power module of the present invention.
Fig. 5 is a partial perspective view of the present invention.
The meaning of the reference symbols in the figures: 1. mounting rack, 2, roller, 3, conveyor belt, 4, placing plate, 5, fixture block, 6, first guide rod, 7, first sliding sleeve, 8, first spring, 9, pressing plate, 10, handle, 11, first guide sleeve, 12, sliding rod, 13, second spring, 14, storage frame, 15, printing plate, 16, second guide sleeve, 17, special-shaped rod, 18, third spring, 19, baffle, 20, torsion spring, 21, push rod, 22, speed reducing motor, 23, first gear, 24, second sliding sleeve, 25, fourth spring, 26, second gear, 27, sprocket, 28, chain, 29, first special-shaped mounting rod, 30, first wedge block, 31, second guide rod, 32, third sliding sleeve, 321, compression spring, 33, rotating shaft, 34, third gear, 35, second wedge block, 351, contact rod, 36, second mounting rod, 37, fourth sliding sleeve, 38, fifth sliding sleeve, 39. a rack.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example 1
The utility model provides an automatic printing and dyeing stamp device is used in textile fabric processing, as shown in fig. 1-5, including mounting bracket 1, roller bearing 2, conveyer belt 3, clamping component, printing components, chucking subassembly and power component, mounting bracket 1 upper portion bilateral symmetry is equipped with roller bearing 2 through the bearing rotary type, around there being conveyer belt 3 on two roller bearings 2 about, be equipped with on the conveyer belt 3 and carry out tight clamping component through the gliding mode, be equipped with the printing components that carries out the stamp through the gliding mode on mounting bracket 1, be equipped with on the printing components and carry out the chucking's chucking subassembly through the gliding mode, be equipped with the power component that provides power through the pivoted mode on mounting bracket 1.
When using this device to carry out the printing to the cloth, the staff cliies the cloth that needs the stamp through clamping unit, makes the chucking subassembly loosen no longer to fix stamp subassembly through power component afterwards, prints and dyes the cloth through stamp subassembly afterwards, prints and dyes the completion back, and staff pulling stamp subassembly resets, through the chucking subassembly with stamp subassembly chucking, the stamp is accomplished the back, and the staff closes power component, loosens the cloth after clamping unit will print and dye afterwards and takes off.
As shown in fig. 1 and 2, the clamping assembly comprises a placing plate 4, a clamping block 5, a first guide rod 6, a first sliding sleeve 7, a first spring 8, a pressing plate 9 and a handle 10, four placing plates 4 are uniformly arranged on a conveyor belt 3 at intervals, the clamping block 5 is symmetrically welded on each placing plate 4 in a front-back mode, two groups of first guide rods 6 are symmetrically welded on each placing plate 4 in a front-back mode, the first sliding sleeves 7 are arranged on the first guide rods 6 in a sliding mode, the first springs 8 are wound between the first sliding sleeves 7 and the placing plates 4, the pressing plate 9 is welded between inner side faces of the two first sliding sleeves 7 on the left side and the right side, and the handle 10 is welded in the middle of the pressing.
When using this device to carry out the printing to the cloth, staff pulling handle 10 rebound, clamp plate 9 drives first sliding sleeve 7 along with upwards slides on first guide arm 6, first spring 8 is stretched, the staff puts the cloth that needs printing and dyeing to placing board 4 on, put the back, loosen handle 10, under the effect that first spring 8 resets, first sliding sleeve 7 drives clamp plate 9 rebound thereupon and blocks the cloth with the 5 cooperation of fixture block, the printing and dyeing is accomplished the back, staff upwards stimulates handle 10 and drives clamp plate 9 rebound, the cloth after will printing and dyeing afterwards takes off, so, can fix the cloth when printing and dyeing.
As shown in fig. 1, 3, 4 and 5, the printing component comprises a first guide sleeve 11, a slide rod 12, a second spring 13, a storage frame 14 and a printing plate 15, wherein the first guide sleeve 11 is symmetrically welded in the middle of the mounting rack 1 in the front and back direction, the slide rod 12 is arranged in the first guide sleeve 11 in a sliding mode, the second spring 13 is wound between the slide rod 12 and the first guide sleeve 11, the second spring 13 is in a compression state, the storage frame 14 is welded at the bottom ends of the front slide rod 12 and the rear slide rod 12, and the printing plate 15 is arranged at the bottom of the storage frame 14.
After putting the cloth that will need printing and dyeing, the staff conveys the cloth through power component, after the cloth conveys storage frame 14 below, loosen the chucking subassembly, under the effect that second spring 13 resets, slide bar 12 slides downwards in first guide pin bushing 11 thereupon, storage frame 14 drives printing plate 15 downstream thereupon and prints and dye the cloth, accomplish the back, the staff upwards stimulates slide bar 12 to drive storage frame 14 and upwards moves and resets, through the chucking subassembly chucking afterwards, so, can print and dye the cloth.
As shown in fig. 1, 2 and 3, the clamping assembly includes a second guide sleeve 16, a special-shaped rod 17, a third spring 18, a baffle 19, a torsion spring 20 and a push rod 21, the second guide sleeve 16 is welded on the first guide sleeve 11, the special-shaped rod 17 is arranged in the second guide sleeve 16 in a sliding manner, the third spring 18 is wound between the special-shaped rod 17 and the second guide sleeve 16, the baffle 19 is arranged at the bottom end of the special-shaped rod 17 in an equal rotating manner, the torsion spring 20 is wound between the baffle 19 and the special-shaped rod 17, and the push rods 21 are symmetrically welded on the placing plate 4 in a front-back manner.
After the cloth to be printed and dyed is put, a worker conveys the cloth through the power assembly, after the cloth is conveyed to the lower portion of the storage frame 14, the push rod 21 moves along with the cloth, so that the baffle 19 drives the special-shaped rod 17 to slide rightwards in the second guide sleeve 16 without clamping the slide rod 12, the third spring 18 is compressed, then the cloth is printed, after printing is completed, the worker pulls the slide rod 12 upwards, then the cloth is conveyed through the power assembly, the push rod 21 moves rightwards along with the push rod 21 to push the baffle 19 to rotate, the torsion spring 20 is compressed, after the push rod 21 moves to be separated from the baffle 19, the baffle 19 rotates along with the torsion spring to reset, then the slide rod 12 is pulled to reset, and under the reset action of the third spring 18, the special-shaped rod 17 resets to clamp the slide rod 12.
As shown in fig. 1 and 4, the power assembly comprises a speed reducing motor 22, a first gear 23, a second sliding sleeve 24 and a fourth spring 25, the mounting bracket comprises a second gear 26, a chain wheel 27, a chain 28, a first special-shaped mounting rod 29 and a first wedge block 30, a speed reducing motor 22 is fixedly connected to the left portion of the front side of the mounting bracket 1 through bolts, a first gear 23 is connected to an output shaft of the speed reducing motor 22 in a key mode, a second sliding sleeve 24 is arranged in a sliding mode on the front portion of a left side roller shaft 2, a fourth spring 25 is connected between the second sliding sleeve 24 and the left side roller shaft 2 in a winding mode, the second gear 26 is connected to the second sliding sleeve 24 in a key mode, the second gear 26 is meshed with the first gear 23, the chain wheel 27 is connected to the front portion of the roller shaft 2 in an all-key mode, the chain 28 is wound on the left and right two chain wheels 27, the first special-shaped mounting rod 29 is welded to the second sliding sleeve 24, the.
After the cloth to be printed is put well, the worker starts the gear motor 22 to drive the first gear 23 to rotate, so that the roller 2 is driven to rotate by the second gear 26, the left side chain wheel 27 is driven to rotate by the chain 28, the right side chain wheel 27 is driven to rotate, the conveyer belt 3 is driven to move to convey the cloth, when the cloth is conveyed to the lower part of the material storage frame 14, the baffle plate 19 moves rightwards to push the first wedge-shaped block 30 to move forwards, so that the second sliding sleeve 24 is driven by the first special-shaped mounting rod 29 to slide forwards, the fourth spring 25 is compressed, the second gear 26 moves forwards along with the fourth spring to be separated from the first gear 23, when the baffle plate 19 moves leftwards to reset and does not push the first wedge block 30 any more, under the effect that fourth spring 25 resets, second sliding sleeve 24 drives second gear 26 thereupon and resets and first gear 23 meshing conveys the cloth, so, can prevent to cause the damage to the cloth when carrying out printing and dyeing.
Example 2
On the basis of embodiment 1, as shown in fig. 1, 4 and 5, the device further includes a second guide rod 31, a third sliding sleeve 32, a rotating shaft 33, a third gear 34, a second wedge block 35, a contact rod 351, a second special-shaped mounting rod 36, a fourth sliding sleeve 37, a fifth spring 38 and a rack 39, the second guide rod 31 is welded on the upper portion of the front side of the mounting frame 1, the third sliding sleeve 32 is slidably arranged on the second guide rod 31, the rotating shaft 33 is rotatably arranged on the third sliding sleeve 32 through a bearing, the third gear 34 is connected on the rotating shaft 33 in a key manner, the third gear 34 is meshed with the first gear 23, the second wedge block 35 is welded on the front portion of the rotating shaft 33, the contact rod 351 is welded on the left portion of the first special-shaped mounting rod 29, the contact rod 351 is matched with the second wedge block 35, the second special-shaped mounting rod 36 is welded on the front side of the storage frame 14, the fourth sliding sleeve 37 is slidably arranged on the front portion of the second special-shaped mounting rod 36, the fifth spring 38, the fifth spring 38 is in a compressed state, a rack 39 is welded at the left end of the fourth sliding sleeve 37, and the rack 39 is meshed with the third gear 34.
When the cloth is printed and dyed, the first special-shaped mounting rod 29 moves forwards, the contact rod 351 pushes the second wedge-shaped block 35 to move leftwards, so that the rotating shaft 33 drives the third gear 34 to move leftwards to be meshed with the first gear 23, the third sliding sleeve 32 slides leftwards on the second guide rod 31, the compression spring 321 is compressed, the fourth sliding sleeve 37 slides leftwards on the second special-shaped mounting rod 36 under the action of the reset of the fifth spring 38, the rack 39 moves leftwards to be meshed with the third gear 34, then the first gear 23 rotates to drive the rack 39 to move upwards through the third gear 34, so that the material storage frame 14 is driven to move upwards to reset, after the first special-shaped mounting rod 29 drives the contact rod 351 to reset, the third sliding sleeve 32 drives the third gear 34 to reset to be separated from the first gear 23 under the action of the reset of the compression spring 321, and then the fourth sliding sleeve 37 is driven by the rack 39 to slide rightwards to reset on the second special-shaped mounting rod 36, fifth spring 38 is compressed, so, after the cloth printing and dyeing is accomplished, need not reset through artifical pulling equipment, has saved a large amount of manpowers, more makes things convenient for people to use.
Claims (6)
1. The utility model provides a textile fabric processing is with automatic printing and dyeing stamp device which characterized in that, including:
A mounting frame (1);
the two rolling shafts (2) are rotatably and symmetrically arranged on the mounting rack (1) through bearings;
the conveying belt (3) is arranged on the two rollers (2);
the clamping assembly is arranged on the conveyor belt (3) and clamps the conveyor belt in a sliding manner;
the printing component is arranged on the mounting rack (1) and prints in a sliding mode;
the clamping assembly is arranged on the printing assembly and is clamped in a sliding mode;
the power assembly is arranged on the mounting frame (1) and provides power in a rotating mode.
2. An automatic printing and dyeing apparatus for textile fabric processing according to claim 1, wherein said clamping assembly comprises:
at least two placing plates (4) are arranged and are mounted on the conveyor belt (3);
at least two clamping blocks (5) are arranged on the placing plate (4);
at least two first guide rods (6) are arranged on the placing plate (4);
at least two first sliding sleeves (7) are arranged, and are arranged on the first guide rod (6) in a sliding manner;
at least two first springs (8) are arranged, and are arranged between the first sliding sleeve (7) and the placing plate (4);
At least two pressure plates (9) are arranged and are arranged on the first sliding sleeve (7);
at least two handles (10) are arranged on the pressure plate (9).
3. An automatic printing and dyeing apparatus for textile fabric processing according to claim 1, wherein the printing module comprises:
the two first guide sleeves (11) are symmetrically arranged on the mounting rack (1);
two sliding rods (12), wherein the two sliding rods (12) are arranged in the first guide sleeve (11) in a sliding manner;
two second springs (13) are arranged, and are respectively arranged between the sliding rod (12) and the first guide sleeve (11), and the second springs (13) are in a compressed state;
the material storage frame (14) is arranged on the front sliding rod (12) and the rear sliding rod (12);
and the printing plate (15) is arranged on the material storage frame (14).
4. An automatic printing and dyeing apparatus for textile fabric processing according to claim 3, wherein said clamping assembly comprises:
two second guide sleeves (16), wherein the two second guide sleeves (16) are arranged on the first guide sleeve (11);
two special-shaped rods (17) are arranged, and are arranged in the second guide sleeve (16) in a sliding manner;
Two third springs (18) are arranged and are respectively arranged between the special-shaped rod (17) and the second guide sleeve (16);
two baffles (19) are arranged and are rotatably mounted on the special-shaped rod (17);
two torsion springs (20) are arranged, and are respectively arranged between the baffle plate (19) and the special-shaped rod (17);
the push rods (21) are arranged on the placing plate (4), and at least two push rods (21) are arranged.
5. An automatic printing and dyeing apparatus for textile fabric processing according to claim 1, wherein the power unit comprises:
the speed reducing motor (22) is arranged on the mounting rack (1);
a first gear (23) mounted on an output shaft of the reduction motor (22);
a second sliding sleeve (24) arranged on the rolling shaft (2);
the fourth spring (25) is arranged between the second sliding sleeve (24) and the roller (2);
a second gear (26) mounted on the second runner (24);
two chain wheels (27), wherein the two chain wheels (27) are arranged on the roller (2);
a chain (28) mounted on the two sprockets (27);
the first special-shaped mounting rod (29) is mounted on the second sliding sleeve (24);
The first wedge block (30) is installed on the first special-shaped installation rod (29), and the first wedge block (30) is matched with the baffle (19).
6. An automatic printing and dyeing printing device for textile fabric processing according to claim 3, characterized in that it further comprises:
the second guide rod (31) is arranged on the mounting rack (1);
a third sliding sleeve (32) which is slidably mounted on the second guide rod (31);
the rotating shaft (33) is rotatably arranged on the third sliding sleeve (32) through a bearing;
a third gear (34) mounted on the rotating shaft (33), the third gear (34) being engaged with the first gear (23);
the second wedge-shaped block (35) is arranged on the rotating shaft (33);
the contact rod (351) is installed on the first special-shaped installation rod (29), and the contact rod (351) is matched with the second wedge-shaped block (35);
a second special-shaped mounting rod (36) mounted on the storage frame (14);
the fourth sliding sleeve (37) is slidably mounted on the second special-shaped mounting rod (36);
the fifth spring (38) is installed between the fourth sliding sleeve (37) and the second special-shaped installation rod (36), and the fifth spring (38) is in a compressed state;
and the rack (39) is arranged on the fourth sliding sleeve (37), and the rack (39) is meshed with the third gear (34).
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CN202010671419.5A CN111845041A (en) | 2020-07-13 | 2020-07-13 | Automatic printing and dyeing printing device for textile fabric processing |
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CN202010671419.5A CN111845041A (en) | 2020-07-13 | 2020-07-13 | Automatic printing and dyeing printing device for textile fabric processing |
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