CN113602001B - Multicolor printing and dyeing equipment for cloth processing - Google Patents

Multicolor printing and dyeing equipment for cloth processing Download PDF

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Publication number
CN113602001B
CN113602001B CN202110914721.3A CN202110914721A CN113602001B CN 113602001 B CN113602001 B CN 113602001B CN 202110914721 A CN202110914721 A CN 202110914721A CN 113602001 B CN113602001 B CN 113602001B
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China
Prior art keywords
fabric
compression
lifting
drying
tensioning roller
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CN202110914721.3A
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CN113602001A (en
Inventor
刘珈岐
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Hebei Bolixin Home Textile Co ltd
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Hebei Bolixin Home Textile Co ltd
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Publication of CN113602001A publication Critical patent/CN113602001A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J3/00Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed
    • B41J3/407Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed for marking on special material
    • B41J3/4078Printing on textile
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J11/00Devices or arrangements  of selective printing mechanisms, e.g. ink-jet printers or thermal printers, for supporting or handling copy material in sheet or web form
    • B41J11/0005Curl smoothing, i.e. smoothing down corrugated printing material, e.g. by pressing means acting on wrinkled printing material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J11/00Devices or arrangements  of selective printing mechanisms, e.g. ink-jet printers or thermal printers, for supporting or handling copy material in sheet or web form
    • B41J11/0015Devices or arrangements  of selective printing mechanisms, e.g. ink-jet printers or thermal printers, for supporting or handling copy material in sheet or web form for treating before, during or after printing or for uniform coating or laminating the copy material before or after printing
    • B41J11/002Curing or drying the ink on the copy materials, e.g. by heating or irradiating
    • B41J11/0022Curing or drying the ink on the copy materials, e.g. by heating or irradiating using convection means, e.g. by using a fan for blowing or sucking air

Abstract

The invention relates to the technical field of cloth printing and dyeing, and provides multicolor printing and dyeing equipment for cloth processing, which comprises a rack, a drying rack body and a printing table, wherein the rack is provided with the printing table and a fabric conveying surface; the connecting table is arranged on the drying frame body and is flush with the fabric conveying surface; the compression-stopping pinch rollers are rotationally arranged on the drying frame body, the number of the compression-stopping pinch rollers is two, a material conveying space is formed between the compression-stopping pinch rollers and the connecting table and used for accommodating the fabric conveyed from the fabric conveying surface, the two rows of the compression-stopping pinch rollers are used for pressing the two sides of the fabric along the width direction of the fabric, the width of the fabric is not changed, and the compression-stopping pinch rollers are rotationally used for enabling the fabric to be smoothly conveyed; the warm air device is arranged on the drying rack body and is positioned above the connecting table along the vertical direction, and a warm air outlet of the warm air device faces towards the connecting table. By the technical scheme, the problem of low printing and dyeing efficiency of multicolor digital printing equipment in the related technology is solved.

Description

Multicolor printing and dyeing equipment for cloth processing
Technical Field
The invention relates to the technical field of cloth printing and dyeing, in particular to a multi-color printing and dyeing device for cloth processing.
Background
Printing and dyeing can be divided into screen printing, roller printing, thermal transfer printing, digital printing and the like, wherein screen printing and roller printing can only realize printing and dyeing of one color at one time, and multi-color printing and dyeing are required to be carried out for multiple times; thermal transfer printing can only meet the requirements of a small part of printing, so that multicolor printing and dyeing are required to be realized, digital printing is a very ideal choice, accurate multicolor printing and dyeing can be realized by digital printing, and the working principle of the digital printing and dyeing is basically the same as that of an ink-jet printer. After printing and dyeing, different post-treatments such as drying and color fixing treatment and the like are required according to the tissue components of different fabrics. However, the digital printing progress of the existing digital printing equipment is slow and the efficiency is low. After the printing is finished, a drying process needs to be carried out as soon as possible to prevent the fabric from being stained due to the fact that the dye is not dried. The drying equipment of the existing equipment occupies a large area, and can not dry some thicker fabrics sometimes, so that the quality of the fabrics is influenced.
Disclosure of Invention
The invention provides a multicolor printing and dyeing device for cloth processing, which solves the problem of low printing and dyeing efficiency of multicolor digital printing devices in the related technology.
The technical scheme of the invention is as follows:
a multicolor printing and dyeing device for processing cloth comprises a frame, a drying frame body and a printing table, wherein the frame is provided with a printing table and a fabric conveying surface, and the drying frame body is positioned on one side of the frame;
the connecting table is arranged on the drying frame body and is flush with the fabric conveying surface;
the compression-stopping pressing wheels are arranged on the drying frame body in a rotating mode, the compression-stopping pressing wheels are arranged in two rows, a material conveying space is formed between each compression-stopping pressing wheel and the connecting table and used for accommodating the fabric conveyed from the fabric conveying surface, the compression-stopping pressing wheels in the two rows are used for pressing the two sides of the fabric along the width direction of the fabric, the width of the fabric is enabled not to change, and the compression-stopping pressing wheels are used for conveying the fabric;
the warm air device is arranged on the drying rack body and is located above the connecting table along the vertical direction, and a warm air outlet of the warm air device faces towards the connecting table.
As a further technical solution, it also includes,
the lifting screw is arranged on the drying frame body, and the warm air device is arranged on the drying frame body in a lifting mode through the lifting screw;
the distance adjusting nut is arranged on the lifting screw in a threaded mode and is abutted to the lower portion of the heater, and the heater is lifted up or lowered down after the distance adjusting nut rotates.
As a further technical solution, it also includes,
a pinch roller lifting device, which comprises a pinch roller lifting device,
the compression-stopping pressure wheel is rotatably arranged on the lifting platform;
the guide rod is arranged on the connecting table along the vertical direction, and the lifting table is arranged on the guide rod in a sliding manner;
the rotating screw penetrates through the lifting platform and is in threaded connection with the lifting platform, the arrangement direction of the rotating screw is parallel to the guide rod, and the rotating screw drives the lifting platform to lift after rotating;
a first transmission gear, the first transmission gear is arranged at one end of the rotating screw rod, and the rotating screw rod follows
The first transmission gear rotates;
the transmission shaft is rotatably arranged on the drying rack body;
the second transmission gear is arranged on the transmission shaft and rotates along with the transmission shaft, and the second transmission gear is meshed with the first transmission gear;
the drying rack body comprises a supporting plate, and the supporting plate is used for supporting the rotating shaft and the rotating screw rod.
As a further technical solution, it also includes,
the first tensioning roller is arranged behind the connecting table along the fabric discharging direction;
a second and a third tensioning roller for conveying the fabric over the connecting table;
a fourth tensioning roller for feeding the fabric into the take-up device.
As a further technical solution, it also includes,
the air exhaust hole is arranged on the connecting table;
the air exhaust device is arranged on the drying frame body and is located below the connecting table along the vertical direction, and the warm air device is used for blowing warm air to the fabric and is sucked by the air exhaust device through the air exhaust hole.
As a further technical solution, it also includes,
a cooling device arranged above the warm air device, wherein an air outlet of the cooling device faces the cooled fabric between the second tensioning roller and the third tensioning roller;
and the communicating pipeline is used for communicating the air extracting device with the cooling device.
As a further technical solution, it is proposed that,
the second tensioning roller and the third tensioning roller are obliquely arranged.
The working principle and the beneficial effects of the invention are as follows:
in the application, in order to improve the working efficiency of digital printing equipment and emphatically improve the drying efficiency after digital printing, the drying equipment comprises a drying frame body, a connecting table, a compression-stopping wheel and a warm air device, wherein a printing table and a fabric conveying surface are arranged on a machine frame, the printing table is used for printing patterns on the fabric, and the printed fabric is conveyed out through the fabric conveying surface; the drying rack body is positioned on one side of the rack; the connecting platform is arranged on the drying frame body and is parallel and level to the fabric conveying surface, and the printed fabric is transferred to the connecting platform through the fabric conveying surface. The compression-stopping rollers are rotatably arranged on the drying frame body, a material conveying space is formed between the compression-stopping rollers and the connecting table and used for accommodating fabrics conveyed from the fabric conveying surface, the compression-stopping rollers are arranged in two rows, the two rows of compression-stopping rollers are used for pressing two sides of the fabrics along the width direction of the fabrics, the width of the fabrics is not changed, and the compression-stopping rollers rotate to enable the fabrics to be conveyed smoothly; the warm air device is arranged on the drying frame body in a lifting mode and is located above the connecting platform in the vertical direction, and a warm air outlet of the warm air device faces towards the connecting platform.
In the using process, two rows of compression-stopping pinch rollers which rotate continuously press two sides of the width of the fabric, and the warm air device blows warm air towards the fabric to dry the fabric; the continuous rotation of the compression wheel enables the fabric to be pressed and meanwhile can continue to move forward along the discharging direction, and the fabric can be continuously conveyed to be dried. After the fabric is dyed, the ink can wet the fabric, and after the fabric is pressed by the compression-stopping roller, the fabric cannot be greatly contracted in the drying process; and can also be with the smooth expansion of fabric, make the fabric can not have the fold, this stoving of also being convenient for can be thorough, prevents to have the stoving thoroughly twice to produce the color lapping, has reduced the rejection rate, improves drying efficiency.
Drawings
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
FIG. 1 is a schematic view of the structure of the present invention;
FIG. 2 is a cross-sectional view of the present invention;
FIG. 3 is a schematic view of a certain structure according to the present invention;
in the figure: 1. drying rack body, 2, the connection platform, 3, the pinch roller that ends, 4, pass the material space, 5, the warm braw device, 6, lifting screw, 7, the roll adjustment nut, 8, pinch roller elevating gear, 9, the elevating platform, 10, the guide bar, 11, rotate the screw rod, 12, first drive gear, 13, the transmission shaft, 14, second drive gear, 15, the backup pad, 16, first tensioning roller, 17, second tensioning roller, 18, third tensioning roller, 19, fourth tensioning roller, 20, the aspirating hole, 21, air exhaust device, 22, cooling device, 23, the intercommunication pipeline.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any inventive step, are intended to be within the scope of the present invention.
As shown in fig. 1 to fig. 3, this embodiment provides a multicolor printing and dyeing apparatus for processing cloth, which includes a frame, a printing table and a fabric conveying surface arranged on the frame, and further includes,
the drying rack body 1 is positioned on one side of the rack;
the connecting table 2 is arranged on the drying frame body 1 and is flush with the fabric conveying surface;
the compression-stopping compression wheels 3 are rotatably arranged on the drying frame body 1, the compression-stopping compression wheels 3 are arranged in two rows, a material conveying space 4 is formed between each compression-stopping compression wheel 3 and the connecting platform 2, the material conveying space 4 is used for accommodating fabrics conveyed from a fabric conveying surface, the compression-stopping compression wheels 3 in the two rows are used for pressing two sides of the fabrics along the width direction of the fabrics, the width of the fabrics is enabled not to change, and the compression-stopping compression wheels 3 rotate to enable the fabrics to be conveyed smoothly;
warm braw device 5, warm braw device 5 set up on stoving support body 1, lie in along vertical direction and connect 2 tops, and warm braw export orientation of warm braw device 5 is connected platform 2.
In the application, in order to improve the working efficiency of digital printing equipment and emphatically improve the drying efficiency after digital printing, the drying device comprises a drying frame body 1, a connecting table 2, a compression-stopping wheel 3 and a warm air device 5, wherein a printing table and a fabric conveying surface are arranged on a machine frame, the printing table is used for printing a pattern on a fabric, and the printed fabric is conveyed out through the fabric conveying surface; the drying rack body 1 is positioned on one side of the rack; the connecting table 2 is arranged on the drying frame body 1 and is flush with the fabric conveying surface, and the printed fabric is transmitted to the connecting table 2 through the fabric conveying surface. The compression-stopping compression wheels 3 are rotatably arranged on the drying frame body 1, a material conveying space 4 is formed between each compression-stopping compression wheel 3 and the connecting platform 2, the material conveying space 4 is used for accommodating fabrics conveyed from the fabric conveying surface, the compression-stopping compression wheels 3 are arranged in two rows, the two rows of compression-stopping compression wheels 3 are used for pressing two sides of the fabrics along the width direction of the fabrics, the width of the fabrics is not changed, and the compression-stopping compression wheels 3 rotate to enable the fabrics to be conveyed smoothly; the warm air device 5 is arranged on the drying rack body 1 in a lifting mode, is located above the connecting platform 2 along the vertical direction, and a warm air outlet of the warm air device 5 faces the connecting platform 2.
In the use process, the two rows of the compression-stopping pressing wheels 3 which rotate continuously press the two sides of the width of the fabric, and the warm air device 5 blows warm air towards the fabric to dry the fabric; the continuous rotation of the compression wheel 3 enables the fabric to be pressed and simultaneously can continue to move forwards along the discharging direction, and the fabric can be continuously conveyed to be dried. After the fabric is dyed, the ink can wet the fabric, and after the fabric is pressed by the compression-stopping wheel 3, the fabric cannot shrink greatly in the drying process; and can also be with the smooth expansion of fabric, make the fabric can not have the fold, this stoving of also being convenient for can be thorough, prevents to have the stoving thoroughly twice to produce the color lapping, has reduced the rejection rate, improves drying efficiency.
Further, the method also comprises the following steps of,
the lifting screw 6 is arranged on the drying frame body 1, and the warm air device 5 is arranged on the drying frame body 1 in a lifting mode through the lifting screw 6;
the pitch adjusting nut 7 is arranged on the lifting screw rod 6 in a threaded mode and located below the heating device 5, and the heating device 5 is lifted or lowered after the pitch adjusting nut 7 rotates.
In the application, the thickness of the fabric to be printed is different, so different wind gears and temperature gears are selected according to different fabrics and different door widths. For particularly thick fabrics, even though the maximum wind power gear is possibly not completely dried, if the distance between the heating device 5 and the fabrics can be adjusted, the drying time can be further shortened, therefore, a lifting screw rod 6 and a distance adjusting nut 7 are arranged, the lifting screw rod 6 is arranged on the drying frame body 1, the distance adjusting nut 7 is arranged on the lifting screw rod 6 in a threaded manner, and the heating device 5 is arranged on the drying frame body 1 in a lifting manner through the lifting screw rod 6; the distance adjusting nut 7 is positioned below the heating device 5, and the heating device 5 is lifted or lowered after the distance adjusting nut 7 rotates, so that the aim that the heating device 5 is close to the fabric is fulfilled.
Further, the method also comprises the following steps of,
a pinch roller lifting device 8, the pinch roller lifting device 8 comprises,
the compression-stopping pressure wheel 3 is rotatably arranged on the lifting platform 9;
the guide rod 10 is arranged on the connecting table 2 along the vertical direction, and the lifting table 9 is arranged on the guide rod 10 in a sliding manner;
the rotating screw 11 penetrates through the lifting platform 9 and is in threaded connection with the lifting platform 9, the arrangement direction of the rotating screw 11 is parallel to the guide rod 10, and the rotating screw 11 drives the lifting platform 9 to lift after rotating;
the first transmission gear 12 is arranged at one end of the rotating screw rod 11, and the rotating screw rod 11 rotates along with the first transmission gear 12;
the transmission shaft 13 is rotatably arranged on the drying frame body 1;
the second transmission gear 14 is arranged on the transmission shaft 13 and rotates along with the transmission shaft 13, and the second transmission gear 14 is meshed with the first transmission gear 12;
the drying rack body 1 comprises a support plate 15, and the support plate 15 is used for supporting the transmission shaft 13 and the rotating screw 11.
In this application, in order to adapt to the fabric of different thickness, prevent that the fabric from producing the indentation after being pressed by the compression wheel 3 that ends, set up and to have adjusted the pinch roller elevating gear 8 that passes 4 sizes in material space. The pinch roller lifting device 8 comprises a lifting platform 9, a guide rod 10, a rotating screw rod 11, a first transmission gear 12, a transmission shaft 13 and a second transmission gear 14, wherein the compression-stopping pinch roller 3 is rotatably arranged on the lifting platform 9 and moves along with the lifting platform 9; the guide rod 10 is arranged on the connecting table 2 along the vertical direction, and the lifting table 9 is arranged on the guide rod 10 in a sliding manner; a rotary screw 11 passes through the lifting platform 9 and is arranged in parallel with the guide rod 10; first drive gear 12 sets up in 11 one ends of rotation screw rod, and first drive gear 12 rotates back and drives rotation screw rod 11 and rotate, rotates and drives elevating platform 9 after 11 rotations of screw rod and goes up and down along guide bar 10 to drive the lift of compression wheel 3 that ends, finally make and pass material space 4 size change.
The drying rack body 1 comprises a support plate 15, and the transmission shaft 13 is rotatably arranged on the support plate 15; the second transmission gear 14 is arranged on the transmission shaft 13 and rotates along with the transmission shaft 13, and the second transmission gear 14 is meshed with the first transmission gear 12; after the transmission shaft 13 rotates, the second transmission gear 14 is driven to rotate, the second transmission gear 14 and the first transmission gear 12 are bevel gears, and an included angle of ninety degrees is formed between the two gears; the second transmission gear 14 drives the first transmission gear 12 to rotate,
further, the method also comprises the following steps of,
a first tensioning roller 16, the first tensioning roller 16 being arranged behind the connecting table 2 in the fabric discharge direction;
a second tensioning roller 17 and a third tensioning roller 18, the second tensioning roller 17 and the third tensioning roller 18 being used to convey the fabric above the joining station 2;
a fourth tension roller 19, the fourth tension roller 19 being used to feed the fabric into the windup.
In this application, first tensioning roller 16 sets up at connection platform 2 rear along fabric ejection of compact direction for conveying away the fabric, change the tensioning degree that the length direction of fabric just can be changed to first tensioning roller 16's position, with the cooperation of ending compression wheel 3, make length, the width direction of fabric all not take place to warp. The second tensioning roller 17 and the third tensioning roller 18 are used for conveying the fabric above the connecting table 2, so that the floor area of the drying equipment is reduced; the fourth tensioning roller 19 is used to feed the fabric into the take-up.
Further, the method also comprises the following steps of,
the air pumping hole 20 is formed in the connecting table 2;
the air extracting device 21 is arranged on the drying rack body 1 and located below the connecting table 2 along the vertical direction, and the warm air device 5 is used for blowing warm air to the fabric to be sucked into the drying rack body 1 through the air extracting holes 20 by the air extracting device 21.
In the application, in order to accelerate the thorough drying of the fabric, the connecting table 2 is provided with the air exhaust holes 20, the air exhaust device 21 is arranged on the drying frame body 1 and is located below the connecting table 2 along the vertical direction, and the warm air device 5 is used for sucking the warm air blowing towards the fabric through the air exhaust holes 20 by the air exhaust device 21; the air exhaust device 21 increases the circulation speed of air, and reduces the incomplete drying of the lower surface caused by the reflection of part of warm air by the upper surface of the fabric; and air with high humidity can be pumped away in time, so that the humidity is reduced, and the drying process of the fabric is quicker. And the compression wheel 3 can prevent the phenomenon that the hot air is too large to enable the fabric to be tightly attached to the air suction holes 20 to block the air suction holes 20 during drying, so that drying is influenced, and moisture is also sucked away.
Further, the method also comprises the following steps of,
a cooling device 22, wherein the cooling device 22 is arranged above the air heating device 5, and an air outlet of the cooling device 22 faces the cooled fabric between the second tensioning roller 17 and the third tensioning roller 18;
and a communication duct 23, the communication duct 23 communicating the air-extracting device 21 and the cooling device 22.
In the application, in order to further ensure that the fabric can be dried completely, a cooling device 22 for cold air drying is arranged, air in an air extracting device 21 is dehumidified by a dehumidifying device and then is sent into the cooling device 22 through a communicating pipeline 23, and at this time, although the temperature of the air is reduced, the air also has certain heat; the cooling device 22 is arranged above the heating device 5, and an air outlet of the cooling device 22 faces the cooled fabric between the second tensioning roller 17 and the third tensioning roller 18; the air blown out by the air heating device 5 is secondarily utilized, the energy utilization rate is improved, and the two air flows are dried, so that the drying is thorough.
Further, the second tension roller 17 and the third tension roller 18 are disposed obliquely.
In this application, two tensioning rollers 17 and the slope setting of third tensioning roller 18 can increase cooling area under the unchangeable circumstances of area.
The present invention is not limited to the above preferred embodiments, and any modifications, equivalent substitutions, improvements, etc. within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (5)

1. A multicolor printing and dyeing device for processing cloth comprises a frame, a printing table and a fabric conveying surface which are arranged on the frame, and is characterized by also comprising,
the drying rack body (1), the drying rack body (1) is positioned on one side of the rack;
the connecting table (2) is arranged on the drying frame body (1) and is flush with the fabric conveying surface;
the drying rack is characterized by comprising compression stopping pinch rollers (3), the compression stopping pinch rollers (3) are rotatably arranged on the drying rack body (1), the compression stopping pinch rollers (3) are arranged in two rows, a material conveying space (4) is formed between each compression stopping pinch roller (3) and the connecting table (2), the material conveying space (4) is used for accommodating fabrics conveyed from the fabric conveying surface, the compression stopping pinch rollers (3) in the two rows are used for pressing the two sides of the fabrics along the width direction of the fabrics, the width of the fabrics is not changed, and the compression stopping pinch rollers (3) rotate to convey the fabrics;
the warm air device (5) is arranged on the drying rack body (1) and is positioned above the connecting table (2) along the vertical direction, and a warm air outlet of the warm air device (5) faces the connecting table (2);
a first tensioning roller (16), the first tensioning roller (16) being arranged behind the connecting table (2) in the fabric discharge direction;
-a second tensioning roller (17) and a third tensioning roller (18), said second tensioning roller (17) and said third tensioning roller (18) being intended to convey the fabric above said connection station (2);
a fourth tensioning roller (19), said fourth tensioning roller (19) being adapted to feed the fabric into the winding-up device;
the air suction hole (20), the air suction hole (20) is arranged on the connecting table (2);
air exhaust device (21), air exhaust device (21) set up on drying support body (1), lie in along vertical direction connect platform (2) below, warm braw device (5) are used for blowing to the fabric the warm braw by air exhaust device (21) are through aspirating hole (20) are inhaled.
2. The multi-color printing apparatus for fabric processing according to claim 1, further comprising,
the lifting screw (6) is arranged on the drying frame body (1), and the warm air device (5) is arranged on the drying frame body (1) in a lifting mode through the lifting screw (6);
the pitch adjustment nut (7), pitch adjustment nut (7) screw thread setting is in on lifting screw (6), with warm braw device (5) below butt, will after pitch adjustment nut (7) rotate warm braw device (5) are raised or are reduced.
3. The multi-color printing apparatus for fabric processing according to claim 1, further comprising,
a pinch roller lifting device (8), wherein the pinch roller lifting device (8) comprises,
the compression-stopping pinch roller (3) is rotatably arranged on the lifting table (9);
the guide rod (10) is arranged on the connecting table (2) along the vertical direction, and the lifting table (9) is arranged on the guide rod (10) in a sliding mode;
the rotary screw (11) penetrates through the lifting platform (9) and is in threaded connection with the lifting platform (9), the arrangement direction of the rotary screw (11) is parallel to the guide rod (10), and the rotary screw (11) drives the lifting platform (9) to lift after rotating;
the first transmission gear (12), the first transmission gear (12) is arranged at one end of the rotating screw rod (11), and the rotating screw rod (11) rotates along with the first transmission gear (12);
the transmission shaft (13), the transmission shaft (13) is rotatably arranged on the drying rack body (1);
the second transmission gear (14) is arranged on the transmission shaft (13) and rotates along with the transmission shaft (13), and the second transmission gear (14) is meshed with the first transmission gear (12);
the drying rack body (1) comprises a supporting plate (15), and the supporting plate (15) is used for supporting the transmission shaft (13) and the rotating screw (11).
4. The multi-color printing apparatus for fabric processing according to claim 1, further comprising,
a cooling device (22), wherein the cooling device (22) is arranged above the warm air device (5), and an air outlet of the cooling device (22) faces the cooled fabric between the second tensioning roller (17) and the third tensioning roller (18);
a communication duct (23), the communication duct (23) communicating the air extraction device (21) and the cooling device (22).
5. The multi-color printing apparatus for fabric processing according to claim 1,
the second tension roller (17) and the third tension roller (18) are arranged obliquely.
CN202110914721.3A 2021-08-10 2021-08-10 Multicolor printing and dyeing equipment for cloth processing Active CN113602001B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110914721.3A CN113602001B (en) 2021-08-10 2021-08-10 Multicolor printing and dyeing equipment for cloth processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110914721.3A CN113602001B (en) 2021-08-10 2021-08-10 Multicolor printing and dyeing equipment for cloth processing

Publications (2)

Publication Number Publication Date
CN113602001A CN113602001A (en) 2021-11-05
CN113602001B true CN113602001B (en) 2022-09-23

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Application Number Title Priority Date Filing Date
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Family Cites Families (8)

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Publication number Priority date Publication date Assignee Title
JP3161436B2 (en) * 1997-01-21 2001-04-25 盛男 笠井 Printing equipment
JP5481047B2 (en) * 2008-08-29 2014-04-23 タカタ株式会社 Inkjet dyeing equipment
CN209141669U (en) * 2018-11-05 2019-07-23 浙江宝纺印染有限公司 A kind of drying unit of circular screen printer
CN209869742U (en) * 2019-04-16 2019-12-31 绍兴汇聚数码印花有限公司 Drying device of digital printing machine
CN110406252B (en) * 2019-08-07 2021-03-16 台州智子科技有限公司 Cloth drying device of circular screen printer
CN211641321U (en) * 2019-12-25 2020-10-09 浙江金典印染有限公司 Drying device of circular screen printer
CN111942002A (en) * 2020-07-23 2020-11-17 威海尼特服装有限公司 Cloth printing production line and process flow thereof
CN112297650B (en) * 2020-10-31 2021-07-30 浙江隆生数码纺织科技有限公司 Ink-jet printing machine

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