CN210596790U - Textile processing manufacturing and decoration equipment - Google Patents

Textile processing manufacturing and decoration equipment Download PDF

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Publication number
CN210596790U
CN210596790U CN201921632405.1U CN201921632405U CN210596790U CN 210596790 U CN210596790 U CN 210596790U CN 201921632405 U CN201921632405 U CN 201921632405U CN 210596790 U CN210596790 U CN 210596790U
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China
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box
cold air
recovery
positioning
conveyer belt
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CN201921632405.1U
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Chinese (zh)
Inventor
黄景铁
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Cangnan Yiyun Textile Co Ltd
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Cangnan Yiyun Textile Co Ltd
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Priority to CN201921632405.1U priority Critical patent/CN210596790U/en
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Abstract

The utility model discloses a fabrics manufacturing and decoration equipment thereof, retrieve the subassembly including conveyer belt, finished product bearing box, flexible bearing pad, scald pressure cooling module and drawing paper, flexible bearing pad is located on the conveyer belt, scald pressure cooling module and locate the both sides of conveyer belt, the one end of conveyer belt is located to the finished product bearing box, drawing paper retrieves the subassembly and locates one side of conveyer belt and finished product bearing box and scald pressure between the cooling module. The utility model relates to a fabrics processing technology field specifically indicates a practicality is high, easy operation, utilizes the electrostatic adsorption effect to realize the fabrics manufacturing and the decoration equipment that drawing paper retrieved after the hot pressing pyrography is accomplished.

Description

Textile processing manufacturing and decoration equipment
Technical Field
The utility model relates to a fabrics processing technology field specifically indicates a fabrics manufacturing and decoration equipment.
Background
In order to meet the requirement of modern people on the diversity of textiles, various pyrographs can be hot-stamped on fabrics such as cotton, hemp, chemical fiber and the like, the method is economical and practical, the patterns are exquisite, and the method replaces the traditional embroidery and silk screen printing. However, the traditional manual pyrograph machine is simple in structure, needs manual pyrograph pressing operation and drawing paper recovery operation, is low in efficiency, needs a large amount of manual work, and increases the product cost.
SUMMERY OF THE UTILITY MODEL
In order to solve the existing difficult problem, the utility model provides a textile manufacturing and decoration equipment that practicality is high, easy operation, utilizes the electrostatic adsorption effect to realize drawing paper recovery after the hot pressing pyrography is accomplished.
The utility model adopts the following technical scheme: the utility model relates to a textile processing manufacturing and decoration equipment, including conveyer belt, finished product bearing box, flexible bearing pad, scald and press cooling module and drawing paper recovery module, flexible bearing pad locates on the conveyer belt, scald and press cooling module locates the both sides of conveyer belt, finished product bearing box locates one end of conveyer belt, drawing paper recovery module locates one side of conveyer belt and between finished product bearing box and the scald and press cooling module; the drawing paper recovery assembly comprises a recovery motor box, a drawing paper recovery box, an electrostatic generator, a positioning driving motor, a positioning driving shaft, a positioning driving gear, a positioning driven driving shaft, a positioning driven driving gear, a rotating arm fixing part, a rotating part driving shaft, a rotating part driving motor, a recovery rotating arm and an electrostatic adsorption disc, wherein the recovery motor box is arranged on one side of a conveying belt, the drawing paper recovery box is arranged on one side of the recovery motor box, the positioning driving motor is arranged in the recovery motor box, the positioning driving shaft is rotatably arranged on the recovery motor box, the positioning driving shaft penetrates through the top wall of the recovery motor box and is connected with the output end of the positioning driving motor, the positioning driving gear is arranged on the positioning driving shaft, the positioning driven driving shaft is rotatably arranged on the recovery motor box, and the positioning driven driving gear is arranged, the driven drive gear meshes with location initiative drive gear mutually in location, the swinging boom mounting is located on the driven drive gear in location, but the rotating member drive shaft is rotatable to be located on the swinging boom mounting, rotating member driving motor locates on the swinging boom mounting, the rotating member drive shaft runs through the swinging boom mounting and is connected with rotating member driving motor's output, retrieve the swinging boom and locate on the rotating drive shaft, the electrostatic absorption dish is located and is retrieved on the swinging boom and locate the top of conveyer belt, electrostatic generator locates on the recovery motor case.
Further, the hot-pressing cooling component comprises a hot-pressing fixed bracket, a hot-pressing driving hydraulic rod, a heating hot-pressing piece, a cold air blower, a cold air pipeline, a cold air box bracket and a cold air box, the hot-pressing fixing bracket is arranged at one side of the conveyor belt, the hot-pressing driving hydraulic rod is arranged on the hot-pressing fixing bracket, the heating ironing part is arranged on the ironing driving hydraulic rod and above the conveying belt, and can generate high temperature after being started, the cold air box brackets are symmetrically arranged at two sides of the conveyor belt, the cold air boxes are arranged on the cold air box brackets, the cold air box is arranged in the annular space formed by the conveyor belt and close to the top of the conveyor belt, the cold air blower is arranged on one side of the conveyor belt and can generate cold air with lower temperature after being started, one end of the cold air pipeline is arranged on the air cooler, and the other end of the cold air pipeline is communicated with the cold air box.
Furthermore, the electrostatic generator is electrically connected with the electrostatic adsorption plate, the electrostatic generator can generate static electricity, the static electricity is conducted to the electrostatic adsorption plate, and the electrostatic adsorption plate can adsorb the drawing paper after carrying the static electricity.
Further, the swinging boom mounting is the slope setting, and the slope of swinging boom mounting is provided with the activity radius that does benefit to increasing the swinging boom mounting.
Furthermore, the flexible bearing pads are provided with a plurality of groups, and the flexible bearing pads are uniformly arranged on the conveyor belt at intervals.
Further, the flexible bearing pad is an elastic bearing pad, and preferably, the flexible bearing pad is a silica gel bearing pad.
Further, be equipped with the guide plate on the finished product bears the weight of the case, the guide plate is the slope setting, the expansion end of guide plate is close to the conveyer belt, and being provided with of guide plate does benefit to and carries out the water conservancy diversion to the fabrics and accept.
Furthermore, the positioning driving motor and the rotating part driving motor are forward and reverse rotating motors.
Adopt above-mentioned structure the utility model discloses the beneficial effect who gains as follows: according to the scheme, the drawing paper recovery assembly realizes automatic recovery of drawing paper by utilizing electrostatic adsorption; the ironed textile is cooled in an accelerated manner, so that the solidification time of the ironed painting can be shortened, and the quality of the ironed painting is improved.
Drawings
FIG. 1 is a schematic view of the overall structure of a textile manufacturing and decorating apparatus of the present invention;
fig. 2 is the utility model relates to a textile manufacturing and decoration equipment drawing paper recovery subassembly schematic diagram.
Wherein, 1, the conveyer belt, 2, the finished product bears the weight of the case, 3, flexible bearing pad, 4, scald and press cooling module, 5, drawing paper recovery subassembly, 6, the recovery motor case, 7, drawing paper recovery case, 8, electrostatic generator, 9, location driving motor, 10, location initiative drive shaft, 11, location initiative drive gear, 12, location driven drive shaft, 13, location driven drive gear, 14, the swinging boom mounting, 15, the revolving member drive shaft, 16, the revolving member driving motor, 17, retrieve the swinging boom, 18, the electrostatic absorption dish, 19, scald and press fixed bolster, 20, scald and press drive hydraulic stem, 21, heat and press spare, 22, the air-cooler, 23, the cold air duct, 24, the cold air box support, 25, the cold air box, 26, the guide plate.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
As shown in fig. 1-2, the utility model relates to a textile manufacturing and decoration device, which comprises a conveyor belt 1, a finished product bearing box 2, a flexible bearing pad 3, a hot pressing cooling assembly 4 and a drawing paper recovery assembly 5, wherein the flexible bearing pad 3 is arranged on the conveyor belt 1, the hot pressing cooling assembly 4 is arranged on two sides of the conveyor belt 1, the finished product bearing box 2 is arranged at one end of the conveyor belt 1, and the drawing paper recovery assembly 5 is arranged at one side of the conveyor belt 1 and is arranged between the finished product bearing box 2 and the hot pressing cooling assembly 4; the drawing paper recovery assembly 5 comprises a recovery motor box 6, a drawing paper recovery box 7, an electrostatic generator 8, a positioning driving motor 9, a positioning driving shaft 10, a positioning driving gear 11, a positioning driven driving shaft 12, a positioning driven driving gear 13, a rotating arm fixing part 14, a rotating part driving shaft 15, a rotating part driving motor 16, a recovery rotating arm 17 and an electrostatic adsorption disc 18, wherein the recovery motor box 6 is arranged on one side of the conveying belt 1, the drawing paper recovery box 7 is arranged on one side of the recovery motor box 6, the positioning driving motor 9 is arranged in the recovery motor box 6, the positioning driving shaft 10 is rotatably arranged on the recovery motor box 6, the positioning driving shaft 10 penetrates through the top wall of the recovery motor box 6 and is connected with the output end of the positioning driving motor 9, the positioning driving gear 11 is arranged on the positioning driving shaft 10, and the positioning driven driving shaft 12 is rotatably arranged on the recovery motor box, the driven drive gear 13 in location is located on the driven drive shaft 12 in location, the swinging boom mounting 14 is located on the driven drive gear 13 in location, the rotatable swinging boom mounting 14 of locating of rotating member drive shaft 15, rotating member driving motor 16 is located on the swinging boom mounting 14, the rotating member drive shaft 15 runs through the swinging boom mounting 14 and is connected with the output of rotating member driving motor 16, retrieve on the swinging boom 17 locates the rotation drive shaft, electrostatic absorption dish 18 is located and is retrieved on the swinging boom 17 and locate the top of conveyer belt 1, electrostatic generator 8 is located on retrieving motor case 6.
Wherein, scald and press cooling module 4 including scalding and press fixed bolster 19, scalding and press drive hydraulic stem 20, heat and scald casting die 21, air-cooler 22, cold air duct 23, cold air box support 24 and cold air box 25, scald and press fixed bolster 19 and locate one side of conveyer belt 1, scald and press drive hydraulic stem 20 and locate to scald and press fixed bolster 19 on, heat and scald casting die 21 and locate on scalding drive hydraulic stem 20 and locate the top of conveyer belt 1, cold air box support 24 symmetry is located conveyer belt 1 both sides, cold air box 25 is located on cold air box support 24, cold air box 25 locates in the annular space that conveyer belt 1 formed and is close to the top of conveyer belt 1, cold air fan 22 is located conveyer belt 1 one side, 23 one end of cold air duct is located on cold air fan 22, the other end intercommunication of cold air duct 23 is located on cold air box 25. The electrostatic generator 8 is electrically connected to an electrostatic chuck 18. The rotating arm fixing member 14 is disposed in an inclined manner. The flexible bearing pads 3 are provided with a plurality of groups, and the flexible bearing pads 3 are uniformly arranged on the conveyor belt 1 at intervals. The flexible bearing pad 3 is an elastic bearing pad. A guide plate 26 is arranged on the finished product bearing box 2, the guide plate 26 is arranged in an inclined mode, and the movable end of the guide plate 26 is close to the conveyor belt 1. The positioning driving motor 9 and the rotating member driving motor 16 are forward and reverse rotating motors.
When the device is used, a textile to be ironed and drawn is placed on the flexible supporting pad 3, an ironing picture is placed on the textile, the textile and the ironing picture are moved to the position below the heating ironing and pressing piece 21 along with the rotation of the conveyor belt 1, the ironing and pressing driving hydraulic rod 20 is driven to move downwards to drive the heating ironing and pressing piece 21 to iron and press the ironing picture and the textile, the ironing picture is pressed on the textile, the ironed textile and drawing paper move to the position above the cold air box 25 along with the conveyor belt 1, cold air generated by the cold air fan 22 enters the cold air box 25 through the cold air pipeline 23 to cool the textile above the cold air box 25, the cooled textile is separated from the drawing paper, then the positioning driving motor 9 is driven to rotate, the positioning driving shaft 10 drives the movable end of the rotating arm 14 to swing towards one side close to the conveyor belt 1 through the positioning driving gear 11 and the positioning driven driving gear 13, then, the rotating member driving motor 16 is driven to rotate forwards, the rotating member driving motor 16 drives the electrostatic adsorption disc 18 to move towards the direction of drawing paper which is just below the electrostatic adsorption disc 18 through the rotating member driving shaft 15 and the recovery rotating arm 17, meanwhile, the electrostatic generator 8 generates static electricity and conducts the static electricity to the electrostatic adsorption disc 18, at the moment, the electrostatic adsorption disc 18 contacts the drawing paper, the drawing paper is adsorbed by the electrostatic adsorption disc 18, then the rotating member driving motor 16 is driven to rotate backwards, the rotating member driving motor 16 drives the electrostatic adsorption disc 18 to be far away from the conveyor belt 1 through the rotating member driving shaft 15 and the recovery rotating arm 17, simultaneously, the positioning driving motor 9 is driven to rotate backwards, the positioning driving motor 9 drives the positioning driving shaft 10 to rotate, the positioning driving shaft 10 drives the movable end of the rotating arm fixing member 14 to swing to the upper part of the drawing paper recovery box 7 through the positioning driving gear, at this time, the electrostatic generator 8 is turned off, the drawing paper is separated from the electrostatic adsorption disc 18 and falls into the drawing paper recovery box 7, and the textile with the drawing paper removed continuously moves along with the conveyor belt 1 until the textile falls onto the guide plate 26 and enters the finished product bearing box 2.
The present invention and the embodiments thereof have been described above, but the description is not limited thereto, and the embodiment shown in the drawings is only one of the embodiments of the present invention, and the actual structure is not limited thereto. In summary, those skilled in the art should understand that they should not be limited to the embodiments described above, and that they can design the similar structure and embodiments without departing from the spirit of the invention.

Claims (7)

1. The utility model provides a textile processing manufacturing and decorate equipment which characterized in that: the automatic drawing and hot pressing device comprises a conveying belt, a finished product bearing box, a flexible bearing pad, a hot pressing cooling assembly and a drawing paper recovery assembly, wherein the flexible bearing pad is arranged on the conveying belt, the hot pressing cooling assembly is arranged on two sides of the conveying belt, the finished product bearing box is arranged at one end of the conveying belt, and the drawing paper recovery assembly is arranged on one side of the conveying belt and is arranged between the finished product bearing box and the hot pressing cooling assembly; the drawing paper recovery assembly comprises a recovery motor box, a drawing paper recovery box, an electrostatic generator, a positioning driving motor, a positioning driving shaft, a positioning driving gear, a positioning driven driving shaft, a positioning driven driving gear, a rotating arm fixing part, a rotating part driving shaft, a rotating part driving motor, a recovery rotating arm and an electrostatic adsorption disc, wherein the recovery motor box is arranged on one side of a conveying belt, the drawing paper recovery box is arranged on one side of the recovery motor box, the positioning driving motor is arranged in the recovery motor box, the positioning driving shaft is rotatably arranged on the recovery motor box, the positioning driving shaft penetrates through the top wall of the recovery motor box and is connected with the output end of the positioning driving motor, the positioning driving gear is arranged on the positioning driving shaft, the positioning driven driving shaft is rotatably arranged on the recovery motor box, and the positioning driven driving gear is arranged, the swinging boom mounting is located on the driven drive gear of location, the rotating member drive shaft is rotatable to be located on the swinging boom mounting, rotating member driving motor is located on the swinging boom mounting, the rotating member drive shaft runs through the swinging boom mounting and is connected with rotating member driving motor's output, retrieve on the swinging boom locates the rotating drive shaft, the electrostatic absorption dish is located on retrieving the swinging boom and is located the top of conveyer belt, electrostatic generator locates on retrieving the motor case.
2. A textile manufacturing and finishing apparatus as in claim 1 further comprising: scald and press cooling module including scalding the fixed bolster, scalding and press drive hydraulic stem, heat and scald casting die, air-cooler, cold air duct, cold air box support and cold air box, scald and press one side that the fixed bolster located the conveyer belt, scald and press drive hydraulic stem and locate to scald and press on the fixed bolster, heat and scald casting die and locate to scald and press on the drive hydraulic stem and locate the top of conveyer belt, the both sides of conveyer belt are located to cold air box support symmetry, the cold air box is located on the cold air box support, the cold air box is located in the annular space of conveyer belt formation and is close to the top of conveyer belt, conveyer belt one side is located to the air-cooler, cold air duct one end is located on the air-cooler, the other end intercommunication of cold air duct is located on the cold air box.
3. A textile manufacturing and finishing apparatus as in claim 1 further comprising: the electrostatic generator is electrically connected with the electrostatic adsorption disc.
4. A textile manufacturing and finishing apparatus as in claim 1 further comprising: the rotating arm fixing piece is arranged in an inclined mode.
5. A textile manufacturing and finishing apparatus as in claim 1 further comprising: the flexible bearing pads are provided with a plurality of groups and are uniformly arranged on the conveyor belt at intervals.
6. A textile manufacturing and finishing apparatus as claimed in claim 5, wherein: the flexible bearing pad is an elastic bearing pad.
7. A textile manufacturing and finishing apparatus as in claim 1 further comprising: the positioning driving motor and the rotating part driving motor are forward and reverse rotating motors.
CN201921632405.1U 2019-09-28 2019-09-28 Textile processing manufacturing and decoration equipment Active CN210596790U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921632405.1U CN210596790U (en) 2019-09-28 2019-09-28 Textile processing manufacturing and decoration equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921632405.1U CN210596790U (en) 2019-09-28 2019-09-28 Textile processing manufacturing and decoration equipment

Publications (1)

Publication Number Publication Date
CN210596790U true CN210596790U (en) 2020-05-22

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ID=70688064

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921632405.1U Active CN210596790U (en) 2019-09-28 2019-09-28 Textile processing manufacturing and decoration equipment

Country Status (1)

Country Link
CN (1) CN210596790U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111845041A (en) * 2020-07-13 2020-10-30 周平香 Automatic printing and dyeing printing device for textile fabric processing

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111845041A (en) * 2020-07-13 2020-10-30 周平香 Automatic printing and dyeing printing device for textile fabric processing

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