CN108049087B - Flower-shaped side band weaving process and weaving equipment thereof - Google Patents

Flower-shaped side band weaving process and weaving equipment thereof Download PDF

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Publication number
CN108049087B
CN108049087B CN201711210169.XA CN201711210169A CN108049087B CN 108049087 B CN108049087 B CN 108049087B CN 201711210169 A CN201711210169 A CN 201711210169A CN 108049087 B CN108049087 B CN 108049087B
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lace
ironing
wheel
roller
preheating
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CN108049087A (en
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黄竞
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Zhejiang Siyuan New Material Technology Co ltd
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Zhejiang Siyuan New Material Technology Co ltd
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    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06CFINISHING, DRESSING, TENTERING OR STRETCHING TEXTILE FABRICS
    • D06C7/00Heating or cooling textile fabrics
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06CFINISHING, DRESSING, TENTERING OR STRETCHING TEXTILE FABRICS
    • D06C15/00Calendering, pressing, ironing, glossing or glazing textile fabrics
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/50Manufacturing or production processes characterised by the final manufactured product
    • Y02P70/62Manufacturing or production processes characterised by the final manufactured product related technologies for production or treatment of textile or flexible materials or products thereof, including footwear

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Treatment Of Fiber Materials (AREA)

Abstract

The invention discloses lace manufacturing equipment which comprises a weaving machine, wherein a discharge hole of the weaving machine outputs produced lace ribbons, and the lace ribbons sequentially pass through a preheating part, an ironing part and a cooling part and then pass through a discharge roller device to finally fall into a discharging box. The invention provides a lace weaving process and a technical scheme of weaving equipment thereof, wherein the equipment has a simple structure and high integration, overcomes the defect that lace webbing is easy to fold and fold, and can effectively overcome the phenomenon of rapid retraction of the webbing.

Description

Flower-shaped side band weaving process and weaving equipment thereof
Technical Field
The invention relates to the field of textile machinery, in particular to a pattern side band weaving process and weaving equipment thereof.
Background
Weaving machines, also called textile machines, cotton machines, etc., are ancient textile machines that rely on man power to drive. The textile machine is a whole name of a tool for processing raw materials such as threads, wires, hemp and the like into threads and then weaving the threads into cloth. Like a spinning pendant, a spinning wheel, a spindle, a pedal loom, a modern mechanical loom, a modern numerical control automatic loom and the like. The development of textile processes and equipment has been designed according to textile materials, and thus the materials have an important role in textile technology. The fibers used for spinning in all countries of the ancient world are natural fibers, and are generally three types of short fibers (wool, hemp and cotton).
The fibers used for spinning in all countries of the ancient world are natural fibers, generally wool, hemp and cotton), and the fibers used for spinning in the prior art in the Mediterranean area are only wool and flax; cotton was previously used in the peninsula region of india. In addition to the three fibers used in ancient China, a large number of long fiber-silk are utilized. Silk is the best, longest and finest textile fiber among all natural fibers, and can be used for weaving various complex pattern jacquard fabrics. The wide utilization of silk fiber greatly promotes the progress of the ancient spinning technology and spinning machinery in China, so that the silk weaving production technology becomes the most characteristic and representative spinning technology in ancient China.
The ribbon with lace produced by the existing textile machine is directly discharged on the braiding machine, and some ribbon with lace which is relatively flat, narrow and tiny is not subjected to shaping process, so that the ribbon is very easy to turn over, the quality of products leaving the factory can be directly influenced, and the reputation of enterprises can be influenced.
Moreover, the existing webbing loom generally drops webbing after production directly into a webbing box. Because the meshbelt can receive the effect of tension in the manufacturing process, after the manufacturing is accomplished, the influence of tension directly disappears, can lead to the meshbelt to retract sharply, can lead to the meshbelt to beat the phenomenon of twisting, the phenomenon of wrinkling can directly influence the quality of the product of leaving the factory when serious, can influence the reputation of enterprise.
Disclosure of Invention
Aiming at the defects in the prior art, the invention provides a lace belt weaving process and weaving equipment thereof, the equipment has simple structure and high integration, overcomes the defect that lace belts are easy to fold and fold, and can effectively overcome the phenomenon of rapid retraction of the belts.
In order to solve the technical problems, the invention is solved by the following technical scheme: the lace belt manufacturing equipment comprises a weaving machine, wherein a discharge hole of the weaving machine outputs produced lace belts, the lace belts sequentially pass through a preheating part, an ironing part and a cooling part and then pass through a discharge roller device to finally fall into a discharge box;
the preheating part comprises a support, an axle is arranged on the support, a preheating wheel is arranged on the axle in a rolling manner, a plurality of heating parts are arranged on the side wall of the preheating wheel, the heating parts are connected with heating rods and extend into the preheating wheel, an annular metal conducting ring is arranged on the axle, an L-shaped wheel frame is fixedly arranged on the heating parts, a conducting wheel is arranged on the bottom of the wheel frame in a rolling manner, and the conducting wheel is pressed on the conducting ring;
the ironing part comprises an ironing platform, an ironing flat plate is arranged above the ironing platform, a mounting frame is arranged on the side wall, close to the cooling part, of the ironing platform, a pause roller is arranged on the mounting frame in a rolling manner, a driving roller connected with a motor is arranged above the pause roller, a convex part with smooth bulges is arranged on the pause roller, a pause switch is arranged below the mounting frame, and the convex part is pressed on the pause switch, so that the driving roller stops rolling;
the cooling part is internally provided with a conveying wheel set and an upper air injection part and a lower air injection part, the conveying wheel set is used for conveying the ironed lace mesh belt from the ironing part to the space between the air injection parts, and the air injection parts inject air with lower temperature to the lace mesh belt for cooling;
the discharging roller device is used for conveying lace mesh belts out of the cooling part, guiding the lace mesh belts to the discharging box and enabling the lace mesh belts to fall down by dead weight to enter the discharging box.
The side of the conducting ring is provided with an insulating ring, the top of the support is provided with a temperature measuring head, and the preheating wheel is provided with a belt groove for placing the lace braid.
And the side wall of the ironing platform, which is close to the preheating part, is provided with a feeding roller, and the highest end of the feeding roller is flush with the ironing platform.
A lace manufacturing process using the lace manufacturing equipment,
step one, weaving lace mesh belts by using a weaving machine;
step two, the lace braid passes through a preheating part, the preheating wheel starts to rotate and starts preheating, meanwhile, the temperature measuring head detects the temperature of the preheating wheel, and when the temperature of the preheating wheel reaches a set value, the step three is entered;
step three, entering the preheated lace braid into an ironing part through a roller, placing the lace braid on an ironing platform, pressing down after the temperature of an ironing flat plate is increased, ironing the lace braid, moving the ironing flat plate upwards after ironing is finished, and entering the step four;
fourthly, the lace webbing after ironing enters between the driving roller and the pause roller, and is clamped and transported by the driving roller and the pause roller;
fifthly, when the roller is suspended to rotate, the convex part rotates along with the roller, when the convex part presses down the suspension switch, the active roller stops rolling, the ironing plate begins to press down, the lace braid in the ironing part is ironed, the ironing plate moves upwards after ironing is finished, the active roller continues rolling, and the suspension roller is driven to roll, so that the ironed lace braid is continuously conveyed;
step six, passing through the lace mesh belt between the driving roller and the pause roller, conveying the lace mesh belt into the cooling part by the conveying wheel set, and starting air injection by the air injection part in the cooling part to cool the lace mesh belt;
seventhly, the lace braid after cooling is adjusted by a discharging roller device and falls into a discharging box.
The invention provides a lace weaving process and a technical scheme of weaving equipment thereof, wherein the equipment has a simple structure and high integration, overcomes the defect that lace webbing is easy to fold and fold, and can effectively overcome the phenomenon of rapid retraction of the webbing.
Drawings
FIG. 1 is a schematic view of a lace manufacturing equipment of the present invention.
Fig. 2 is a schematic view of the preheating wheel structure of the present invention.
Detailed Description
The invention is described in further detail below with reference to fig. 1, 2 and the detailed description of the embodiments: the lace belt manufacturing equipment comprises a weaving machine 1, wherein a discharge hole 11 of the weaving machine 1 outputs a produced lace belt 10, and the lace belt 10 sequentially passes through a preheating part, an ironing part and a cooling part 5, then passes through a discharge roller device 6 and finally falls into a discharge box 7;
the preheating part comprises a support 21, an axle 8 is arranged on the support 21, a preheating wheel 2 is arranged on the axle 8 in a rolling manner, a plurality of heating parts 22 are arranged on the side wall of the preheating wheel 2, the heating parts 22 are connected with heating rods 221, the heating rods 221 extend into the preheating wheel 2, an annular metal conducting ring 81 is arranged on the axle 8, an L-shaped wheel frame 23 is fixedly arranged on the heating parts 22, a conducting wheel 24 is arranged on the bottom of the wheel frame 23 in a rolling manner, and the conducting wheel 24 is pressed on the conducting ring 81;
the ironing part comprises an ironing platform 3, an ironing flat plate 31 is arranged above the ironing platform 3, a mounting frame 33 is arranged on the side wall, close to the cooling part, of the ironing platform 3, a pause roller 4 is arranged on the mounting frame 33 in a rolling manner, a driving roller 42 connected with a motor is arranged above the pause roller 4, a smooth convex part 41 is arranged on the pause roller 4, a pause switch 34 is arranged below the mounting frame 33, and the driving roller 42 stops rolling when the convex part 41 is pressed on the pause switch 34;
the cooling part 5 is internally provided with a conveying wheel set 52 and an upper air injection part and a lower air injection part 51, the conveying wheel set 52 is used for conveying the ironed lace webbing 10 from the ironing part to the space between the air injection parts 51, and the air injection parts 51 inject air with lower temperature onto the lace webbing 10 for cooling;
the discharging roller device 6 is used for conveying the lace webbing 10 in the cooling part 5 out, guiding the lace webbing 10 to the position of the discharging box 7, and enabling the lace webbing 10 to fall down by self weight so as to enter the discharging box 7.
The side of the conducting ring 81 is provided with an insulating ring 82, the top of the bracket 21 is provided with a temperature measuring head 20, and the preheating wheel 2 is provided with a belt groove 25 for placing the lace braid 10.
The ironing platform 3 is provided with a feeding roller 32 on the side wall close to the preheating part, and the highest end of the feeding roller 32 is flush with the ironing platform 3.
A lace manufacturing process using the lace manufacturing equipment,
step one, weaving lace mesh belts by using a weaving machine;
step two, the lace braid passes through a preheating part, the preheating wheel starts to rotate and starts preheating, meanwhile, the temperature measuring head detects the temperature of the preheating wheel, and when the temperature of the preheating wheel reaches a set value, the step three is entered;
step three, entering the preheated lace braid into an ironing part through a roller, placing the lace braid on an ironing platform, pressing down after the temperature of an ironing flat plate is increased, ironing the lace braid, moving the ironing flat plate upwards after ironing is finished, and entering the step four;
fourthly, the lace webbing after ironing enters between the driving roller and the pause roller, and is clamped and transported by the driving roller and the pause roller;
fifthly, when the roller is suspended to rotate, the convex part rotates along with the roller, when the convex part presses down the suspension switch, the active roller stops rolling, the ironing plate begins to press down, the lace braid in the ironing part is ironed, the ironing plate moves upwards after ironing is finished, the active roller continues rolling, and the suspension roller is driven to roll, so that the ironed lace braid is continuously conveyed;
step six, passing through the lace mesh belt between the driving roller and the pause roller, conveying the lace mesh belt into the cooling part by the conveying wheel set, and starting air injection by the air injection part in the cooling part to cool the lace mesh belt;
seventhly, the lace braid after cooling is adjusted by a discharging roller device and falls into a discharging box.
The device preheats the lace webbing after production, and then ironing the lace webbing, so that the lace webbing can be shaped, and the defect of flanging is prevented. Then, the lace webbing after ironing is cooled by the cooling part, and the tension of the lace webbing between the conveying wheel set 52 and the discharging roller device 6 is slowly released, and then the lace webbing coming out of the discharging roller device 6 has an automatic falling process and finally enters the discharging box, so that the rapid retraction phenomenon of the webbing can be effectively overcome, and the quality of products can be ensured.
The preheating wheel of the device needs to rotate again and performs preheating operation, so an L-shaped wheel frame 23 is fixedly arranged on the heating part 22, a conductive wheel 24 is arranged at the bottom of the wheel frame 23 in a rolling way, the conductive wheel 24 is pressed on the conductive ring 81, a conductive loop is newly formed, and the conductive wheel 24 can roll on the conductive ring 81 without affecting the conductive capacity.
The scope of the present invention includes, but is not limited to, the above embodiments, and any alterations, modifications, and improvements made by those skilled in the art are intended to fall within the scope of the invention.
The invention provides a lace weaving process and a technical scheme of weaving equipment thereof, wherein the equipment has a simple structure and high integration, overcomes the defect that lace webbing is easy to fold and fold, and can effectively overcome the phenomenon of rapid retraction of the webbing.

Claims (2)

1. A flower-shaped-ribbon manufacturing apparatus, characterized in that: the production process comprises a weaving machine (1), wherein a produced lace braid (10) is output from a discharge hole (11) of the weaving machine (1), the lace braid (10) sequentially passes through a preheating part, an ironing part and a cooling part (5) and then passes through a discharge roller device (6) to finally fall into a discharge box (7);
the preheating part comprises a support (21), an axle (8) is arranged on the support (21), a preheating wheel (2) is arranged on the axle (8) in a rolling mode, a plurality of heating parts (22) are arranged on the side wall of the preheating wheel (2), the heating parts (22) are connected with heating rods (221) and the heating rods (221) extend into the preheating wheel (2), an annular metal conducting ring (81) is arranged on the axle (8), an L-shaped wheel frame (23) is fixedly arranged on the heating parts (22), a conducting wheel (24) is arranged at the bottom of the wheel frame (23) in a rolling mode, and the conducting wheel (24) is pressed on the metal conducting ring (81); ironing part includes ironing platform (3), ironing platform (3) top is provided with ironing plate (31), ironing platform (3) is close to be provided with mounting bracket (33) on the lateral wall of cooling part, roll on mounting bracket (33) and be provided with pause gyro wheel (4), pause gyro wheel (4) top is provided with initiative gyro wheel (42) that link to each other with the motor, pause gyro wheel (4) are provided with smooth bellied convex part (41), mounting bracket (33) below is provided with pause switch (34), convex part (41) are pressed when pause switch (34) can make initiative gyro wheel (42) stop rolling;
a conveying wheel set (52) and an upper air injection part and a lower air injection part (51) are arranged in the cooling part (5), the conveying wheel set (52) is used for conveying the ironed lace webbing (10) coming out of the ironing part to the space between the air injection parts (51), and the air injection parts (51) inject air with lower temperature onto the lace webbing (10) for cooling; the utility model discloses a lace ribbon (10) is used for carrying out lace ribbon (10) in cooling portion (5), then will lace ribbon (10) direction blowing case (7) department, thereby make lace ribbon (10) by dead weight whereabouts get into in blowing case (7), metal conducting ring (81) side is provided with insulating ring (82), support (21) top is provided with temperature measuring head (20), be provided with on preheating wheel (2) and be used for placing trough of belt (25) of lace ribbon (10), iron platform (3) are close to be provided with on preheating portion's the lateral wall and advance gyro wheel (32), advance gyro wheel (32) the highest end with iron platform (3) flush.
2. A lace manufacturing process which works by using the lace manufacturing apparatus as claimed in claim 1, characterized in that:
step one, weaving lace mesh belts by using a weaving machine;
step two, the lace braid passes through a preheating part, the preheating wheel starts to rotate and starts preheating, meanwhile, the temperature measuring head detects the temperature of the preheating wheel, and when the temperature of the preheating wheel reaches a set value, the step three is entered;
step three, entering the preheated lace braid into an ironing part through a roller, placing the lace braid on an ironing platform, pressing down after the temperature of an ironing flat plate is increased, ironing the lace braid, moving the ironing flat plate upwards after ironing is finished, and entering the step four;
fourthly, the lace webbing after ironing enters between the driving roller and the pause roller, and is clamped and transported by the driving roller and the pause roller;
fifthly, when the roller is suspended to rotate, the convex part rotates along with the roller, when the convex part presses to the suspension switch, the active roller stops rolling, the ironing plate begins to press downwards, the lace braid in the ironing part is ironed, the ironing plate moves upwards after ironing is finished, the active roller continues rolling, and the suspension roller is driven to roll, so that the ironed lace braid is continuously conveyed;
step six, passing through the lace mesh belt between the driving roller and the pause roller, conveying the lace mesh belt into the cooling part by the conveying wheel set, and starting air injection by the air injection part in the cooling part to cool the lace mesh belt;
seventhly, the lace braid after cooling is adjusted by a discharging roller device and falls into a discharging box.
CN201711210169.XA 2017-11-28 2017-11-28 Flower-shaped side band weaving process and weaving equipment thereof Active CN108049087B (en)

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Application Number Priority Date Filing Date Title
CN201711210169.XA CN108049087B (en) 2017-11-28 2017-11-28 Flower-shaped side band weaving process and weaving equipment thereof

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Application Number Priority Date Filing Date Title
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CN108049087B true CN108049087B (en) 2023-06-16

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2073270A (en) * 1980-04-02 1981-10-14 Monti Off Fond Spa Apparatus for ironing fabrics, in particular knitted fabrics
CN103726280A (en) * 2013-12-30 2014-04-16 上海金星拉链有限公司 Ironing machine for dual-layer zipper woven belts
CN203846323U (en) * 2014-03-21 2014-09-24 吴江久美微纤织造有限公司 Automatic ironing equipment for spinning
CN205636169U (en) * 2016-04-28 2016-10-12 嘉兴万源时装有限公司 Clothing pressure presses device
CN106319809A (en) * 2016-09-30 2017-01-11 江苏双盈纺织科技有限公司 Cloth ironing printing flow line
CN208055564U (en) * 2017-11-28 2018-11-06 浙江思源新材料科技有限公司 A kind of fillet fabric manufacture equipment

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2073270A (en) * 1980-04-02 1981-10-14 Monti Off Fond Spa Apparatus for ironing fabrics, in particular knitted fabrics
CN103726280A (en) * 2013-12-30 2014-04-16 上海金星拉链有限公司 Ironing machine for dual-layer zipper woven belts
CN203846323U (en) * 2014-03-21 2014-09-24 吴江久美微纤织造有限公司 Automatic ironing equipment for spinning
CN205636169U (en) * 2016-04-28 2016-10-12 嘉兴万源时装有限公司 Clothing pressure presses device
CN106319809A (en) * 2016-09-30 2017-01-11 江苏双盈纺织科技有限公司 Cloth ironing printing flow line
CN208055564U (en) * 2017-11-28 2018-11-06 浙江思源新材料科技有限公司 A kind of fillet fabric manufacture equipment

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