CN210512509U - Drying equipment for textile printing and dyeing - Google Patents

Drying equipment for textile printing and dyeing Download PDF

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Publication number
CN210512509U
CN210512509U CN201921486880.2U CN201921486880U CN210512509U CN 210512509 U CN210512509 U CN 210512509U CN 201921486880 U CN201921486880 U CN 201921486880U CN 210512509 U CN210512509 U CN 210512509U
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CN
China
Prior art keywords
drying
hot
movable
waste heat
hot air
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Expired - Fee Related
Application number
CN201921486880.2U
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Chinese (zh)
Inventor
许加生
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Haiyan Yuanyang Silk Printing And Dyeing Co Ltd
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Haiyan Yuanyang Silk Printing And Dyeing Co Ltd
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Application filed by Haiyan Yuanyang Silk Printing And Dyeing Co Ltd filed Critical Haiyan Yuanyang Silk Printing And Dyeing Co Ltd
Priority to CN201921486880.2U priority Critical patent/CN210512509U/en
Application granted granted Critical
Publication of CN210512509U publication Critical patent/CN210512509U/en
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Abstract

The utility model discloses a drying equipment is used in textile printing and dyeing, including equipment principal, movable bin gate, feed inlet, discharge gate, guide mechanism, baffle, stoving mechanism, water conservancy diversion mechanism and waste heat collection device, compare with prior art, the utility model discloses simple structure, reasonable in design carries out the tensioning to the fabric through setting up guide mechanism, through setting up water conservancy diversion mechanism and waste heat collection device with the leading-in waste heat collection device of hot gas flow in, effectively utilized the waste heat in the hot gas flow, water conservancy diversion mechanism can also derive the liquid drop of condensation in addition, avoids the liquid drop to drip on the fabric, influences the stoving effect, is worth promoting.

Description

Drying equipment for textile printing and dyeing
[ technical field ] A method for producing a semiconductor device
The utility model relates to a printing and dyeing processing technology field, especially a drying equipment is used in fabrics printing and dyeing.
[ background of the invention ]
The printing and dyeing process is a textile fabric processing process, and comprises the process flows of seam placement, main scouring bleaching, sizing, mercerizing, dyeing, dehydration drying, singeing and the like, wherein drying equipment is used for drying in the textile fabric printing and dyeing, and the fabric drying is one of the most important steps, and determines the quality of the textile fabric processing and forming quality.
Present drying equipment is mostly the combination of simple drive roll and air heater, and in the stoving process, present drying equipment has following shortcoming: the fabrics are easy to overlap with each other, and wrinkles appear; when the moisture evaporated by the hot air contacts the equipment shell with lower temperature, the moisture is condensed into liquid drops again, and the liquid drops can drop on the fabric again due to gravity after being accumulated, so that the drying effect is influenced; the hot air flow exhausted from the device has a large amount of waste heat, and the heat loss is serious. Therefore, it is necessary to provide a drying apparatus for textile printing and dyeing.
[ Utility model ] content
The utility model discloses an aim at solving the problem among the prior art, provide a drying equipment is used in textile printing and dyeing, the utility model discloses simple structure, reasonable in design carries out the tensioning to the fabric through setting up guide mechanism, through setting up in guiding into waste heat collection device with the hot gas flow guide mechanism with waste heat collection device, has effectively utilized the waste heat in the hot gas flow, and guide mechanism can also derive the liquid drop of condensation in addition, avoids the liquid drop to drip on the fabric, influences the stoving effect, is worth promoting.
In order to realize the aim, the utility model provides a drying device for textile printing and dyeing, which comprises a device main body, a movable bin door, a feed inlet, a discharge outlet, a guide mechanism, a baffle plate, a drying mechanism, a flow guide mechanism and a waste heat collecting device, wherein the front side of the device main body is provided with a group of movable bin doors which are bilaterally symmetrical, the left side of the device main body is provided with the feed inlet, the right side of the device main body is provided with the discharge outlet corresponding to the feed inlet, the device main body is internally provided with a drying cavity, the drying cavity is internally provided with the guide mechanism, the baffle plate, the drying mechanism and the flow guide mechanism, the baffle plate is arranged below the guide mechanism, the drying mechanism is arranged on the baffle plate, the flow guide mechanism is arranged above the guide mechanism, the right side of the flow guide mechanism is provided with an exhaust port, the waste heat collecting device is positioned at the top of the equipment main body.
Preferably, the movable bin door is connected with the equipment main body in a hinged mode, a handle is arranged on the movable bin door, and a heat insulation sleeve is arranged on the handle.
Preferably, the material guiding mechanism includes a movable chute and a material guiding roller, a plurality of movable chutes are provided on an inner wall of the drying chamber, a material guiding roller is provided in each movable chute, and the material guiding roller can slide or be fixed up and down along the movable chute.
Preferably, the number of the movable sliding chutes is 3, the distance between each movable sliding chute is equal, and the movable sliding chutes are rectangular grooves.
Preferably, the drying mechanism comprises a through hole, a hot air main pipe, a hot air branch pipe, a hot air cavity and a hot air nozzle, the through hole is formed in the lower half portion of the inner wall of the drying cavity, the hot air main pipe is arranged on the through hole, the hot air main pipe is provided with a group of bilateral symmetry hot air branch pipes, the other end of each hot air branch pipe is provided with the hot air cavity, the top of each hot air cavity is provided with the hot air nozzle which is uniformly distributed, and the hot air nozzle is located between the movable sliding grooves.
Preferably, the partition plate is provided with a limiting groove corresponding to the hot air cavity, the hot air cavity is fixedly installed in the limiting groove, and the upper surface of the hot air cavity is flush with the upper surface of the partition plate.
As preferred, the water conservancy diversion mechanism includes guide plate, guide plate spliced pole, guide plate erection column, comdenstion water guiding gutter and first condensate pipe, be equipped with the guide plate spliced pole on the upper surface of guide plate, the top of stoving intracavity portion is equipped with the guide plate erection column corresponding with the guide plate spliced pole, guide plate left side below is equipped with the comdenstion water guiding gutter, comdenstion water guiding gutter left side is equipped with first condensate pipe, first condensate pipe runs through the left side wall of equipment principal.
Preferably, the top of the waste heat collecting device is provided with a heat medium inlet pipe and a heat medium outlet pipe, and the left side of the waste heat collecting device is provided with a second condensate pipe.
The utility model has the advantages that: the utility model has simple structure and reasonable design, and reduces the possibility of folding and overlapping of the fabric by arranging the material guiding mechanism to tension the fabric, thereby increasing the drying uniformity of the fabric and reducing the generation of folds; the hot air flow is guided into the waste heat collecting device by the guide mechanism and the waste heat collecting device, so that the waste heat in the hot air flow is effectively utilized, condensed liquid drops can be guided out by the guide mechanism, the phenomenon that the liquid drops drop on the fabric to influence the drying effect is avoided, and the drying device is worthy of popularization; through setting up the movable bin gate, make things convenient for the staff to place the fabric, also be convenient for the staff to maintain and overhaul equipment inside.
The features and advantages of the present invention will be described in detail by embodiments with reference to the accompanying drawings.
[ description of the drawings ]
Fig. 1 is the utility model relates to a textile printing and dyeing is with drying equipment's inner structure schematic diagram.
Fig. 2 is a front view of the drying device for textile printing and dyeing of the utility model.
In the figure: 1-equipment main body, 11-drying cavity, 12-exhaust port, 13-exhaust pipeline, 2-movable bin gate, 21-handle, 22-heat insulation sleeve, 3-feed inlet, 4-discharge outlet, 5-guide mechanism, 51-movable chute, 52-guide roller, 6-partition plate, 61-limit groove, 7-drying mechanism, 71-through hole, 72-hot air header pipe, 73-hot air branch pipe, 74-hot air cavity, 75-hot air nozzle, 8-guide mechanism, 81-guide plate, 82-guide plate connecting column, 83-guide plate mounting column, 84-condensate water guide groove, 85-first condensate pipe, 9-waste heat collecting device, 91-hot medium inlet pipe, 92-hot medium outlet pipe, 21-heat insulation sleeve, 3-feed inlet, 5-hot air branch pipe, 74-hot air cavity, 75-hot air nozzle, 8, 93-second condensate line.
[ detailed description ] embodiments
Referring to the attached drawings, the utility model relates to a drying device for textile printing and dyeing, which comprises a device main body 1, a movable bin door 2, a feed inlet 3, a discharge outlet 4, a guide mechanism 5, a baffle plate 6, a drying mechanism 7, a guide mechanism 8 and a waste heat collecting device 9, wherein the front side of the device main body 1 is provided with a group of movable bin doors 2, the movable bin doors 2 are bilaterally symmetrical, the left side of the device main body 1 is provided with the feed inlet 3, the right side of the device main body 1 is provided with the discharge outlet 4 corresponding to the feed inlet 3, the device main body 1 is internally provided with a drying chamber 11, the drying chamber 11 is internally provided with the guide mechanism 5, the baffle plate 6, the drying mechanism 7 and the guide mechanism 8, the baffle plate 6 is arranged below the guide mechanism 5, the drying mechanism 7 is arranged on the baffle plate 6, the guide mechanism 8 is arranged above the guide mechanism, an exhaust pipeline 13 is arranged on the exhaust port 12, a waste heat collecting device 9 is arranged on the exhaust pipeline 13, and the waste heat collecting device 9 is located at the top of the equipment main body 1.
The movable bin door 2 is connected with the equipment main body 1 in a hinged mode, a handle 21 is arranged on the movable bin door 2, and a heat insulation sleeve 22 is arranged on the handle 21.
The material guiding mechanism 5 includes a movable chute 51 and a material guiding roller 52, a plurality of movable chutes 51 are disposed on the inner wall of the drying cavity 11, a material guiding roller 52 is disposed in each movable chute 51, and the material guiding roller 52 can slide up and down or be fixed along the movable chutes 51.
The number of the movable sliding chutes 51 is 3, the distance between each movable sliding chute 51 is equal, and the movable sliding chutes 51 are rectangular chutes.
Wherein, stoving mechanism 7 includes through-hole 71, hot-blast house steward 72, hot-blast branch pipe 73, hot-blast wind chamber 74 and hot air spray 75, be equipped with through-hole 71 on the lower half of stoving chamber 11 inner wall, be equipped with hot-blast house steward 72 on the through-hole 71, be equipped with a set of bilateral symmetry's hot-blast branch pipe 73 on the hot-blast house steward 72, the other end that hot-blast branch pipe 73 was equipped with hot-blast wind chamber 74, the top of hot-blast wind chamber 74 is equipped with if even distribution's hot air spray 75, hot air spray 75 is located between each movable chute 51.
The partition plate 6 is provided with a limiting groove 61 corresponding to the hot air cavity 74, the hot air cavity 74 is fixedly mounted inside the limiting groove 61, and the upper surface of the hot air cavity 74 is flush with the upper surface of the partition plate 6.
Wherein, water conservancy diversion mechanism 8 includes guide plate 81, guide plate spliced pole 82, guide plate erection column 83, comdenstion water guiding gutter 84 and first condensate pipe 85, be equipped with guide plate spliced pole 82 on the upper surface of guide plate 81, the inside top in stoving chamber 11 is equipped with the guide plate erection column 83 corresponding with guide plate spliced pole 82, guide plate 81 left side below is equipped with comdenstion water guiding gutter 84, comdenstion water guiding gutter 84 left side is equipped with first condensate pipe 85, first condensate pipe 85 runs through the left side wall of equipment main part 1.
The top of the waste heat collecting device 9 is provided with a heat medium inlet pipe 91 and a heat medium outlet pipe 92, and the left side of the waste heat collecting device 9 is provided with a second condensate pipe 93.
The utility model discloses a working process:
the utility model relates to a textile printing and dyeing drying equipment can open the movable bin gate 2 in the working process, the woven cloth passes through the feed inlet 3, the guide kun 52 and the discharge port 4 in turn, then adjust the upper and lower position of the guide kun 52 in the movable chute 51, the woven cloth is tensioned, then the guide plate connecting post 82 of the guide plate 81 is installed on the guide plate installing post 83, the movable bin gate 2 is closed, the hot air is sent into the drying cavity 11 through the hot air header pipe 72, the woven cloth is dried, the hot air flow enters the exhaust duct 13 through the exhaust port 12, the excess heat is recovered through the waste heat collecting device 9, the water drops formed on the top wall inside the drying cavity 11 are guided into the condensed water diversion trench 84 by the guide plate 81, and is discharged through the first condensation pipe 85, compared with the prior art, the utility model has simple structure and reasonable design, the fabric is tensioned through the guide mechanism 5, the possibility of folding and overlapping of the fabric is reduced, the drying uniformity of the fabric is increased, and the generation of wrinkles is reduced; the hot air flow is guided into the waste heat collecting device by the guide mechanism 8 and the waste heat collecting device 9, so that the waste heat in the hot air flow is effectively utilized, in addition, condensed liquid drops can be guided out by the guide mechanism 8, the phenomenon that the liquid drops drop on the fabric to influence the drying effect is avoided, and the drying device is worthy of popularization; through setting up activity door 2, make things convenient for the staff to place the fabric, also be convenient for the staff to maintain and overhaul equipment inside.
The above-mentioned embodiment is right the utility model discloses an explanation, it is not right the utility model discloses a limited, any right the scheme after the simple transform of the utility model all belongs to the protection scope of the utility model.

Claims (8)

1. The utility model provides a drying equipment is used in textile printing and dyeing which characterized in that: comprises an equipment main body (1), a movable bin door (2), a feed inlet (3), a discharge port (4), a guide mechanism (5), a partition plate (6), a drying mechanism (7), a flow guide mechanism (8) and a waste heat collecting device (9), wherein the front side of the equipment main body (1) is provided with a group of movable bin doors (2), the movable bin doors (2) are bilaterally symmetrical, the left side of the equipment main body (1) is provided with the feed inlet (3), the right side of the equipment main body (1) is provided with the discharge port (4) corresponding to the feed inlet (3), a drying cavity (11) is arranged in the equipment main body (1), the inside of the drying cavity (11) is provided with the guide mechanism (5), the partition plate (6), the drying mechanism (7) and the flow guide mechanism (8), the partition plate (6) is arranged below the guide mechanism (5), and the drying mechanism (7) is, guide mechanism (5) top is equipped with water conservancy diversion mechanism (8), the right side of water conservancy diversion mechanism (8) is equipped with gas vent (12), be equipped with exhaust duct (13) on gas vent (12), be equipped with waste heat collection device (9) on exhaust duct (13), waste heat collection device (9) are located the top of equipment main part (1).
2. The drying apparatus for textile printing and dyeing according to claim 1, characterized in that: the movable bin gate (2) is connected with the equipment main body (1) in a hinged mode, a handle (21) is arranged on the movable bin gate (2), and a heat insulation sleeve (22) is arranged on the handle (21).
3. The drying apparatus for textile printing and dyeing according to claim 1, characterized in that: the material guiding mechanism (5) comprises movable chutes (51) and a material guiding roller (52), a plurality of movable chutes (51) are arranged on the inner wall of the drying cavity (11), a material guiding roller (52) is arranged in each movable chute (51), and the material guiding roller (52) can slide or be fixed up and down along the movable chutes (51).
4. The drying apparatus for textile printing and dyeing according to claim 3, characterized in that: the number of the movable sliding grooves (51) is 3, the distance between each movable sliding groove (51) is equal, and each movable sliding groove (51) is a rectangular groove.
5. The drying apparatus for textile printing and dyeing according to claim 3, characterized in that: drying mechanism (7) are including through-hole (71), hot-blast house steward (72), hot-blast branch pipe (73), hot-blast wind chamber (74) and hot air spray nozzle (75), be equipped with through-hole (71) on the lower half of stoving chamber (11) inner wall, be equipped with hot-blast house steward (72) on through-hole (71), be equipped with a set of bilateral symmetry on hot-blast house steward (72) and divide pipe (73), the other end that hot-blast was divided pipe (73) is equipped with hot-blast wind chamber (74), the top in hot-blast wind chamber (74) is equipped with if even distribution's hot air spray nozzle (75), hot air spray nozzle (75) are located between each movable sliding chute (51).
6. The drying apparatus for textile printing and dyeing according to claim 5, characterized in that: the partition board (6) is provided with a limiting groove (61) corresponding to the hot air cavity (74), the hot air cavity (74) is fixedly installed inside the limiting groove (61), and the upper surface of the hot air cavity (74) is flush with the upper surface of the partition board (6).
7. The drying apparatus for textile printing and dyeing according to claim 1, characterized in that: flow guide mechanism (8) are including guide plate (81), guide plate spliced pole (82), guide plate erection column (83), comdenstion water guiding gutter (84) and first condensate pipe (85), be equipped with guide plate spliced pole (82) on the upper surface of guide plate (81), the inside top in stoving chamber (11) is equipped with guide plate erection column (83) corresponding with guide plate spliced pole (82), guide plate (81) left side below is equipped with comdenstion water guiding gutter (84), comdenstion water guiding gutter (84) left side is equipped with first condensate pipe (85), first condensate pipe (85) run through the left side wall of equipment main part (1).
8. The drying apparatus for textile printing and dyeing according to any one of claims 1 to 7, characterized in that: the top of the waste heat collecting device (9) is provided with a heat medium inlet pipe (91) and a heat medium outlet pipe (92), and the left side of the waste heat collecting device (9) is provided with a second condensate pipe (93).
CN201921486880.2U 2019-09-09 2019-09-09 Drying equipment for textile printing and dyeing Expired - Fee Related CN210512509U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921486880.2U CN210512509U (en) 2019-09-09 2019-09-09 Drying equipment for textile printing and dyeing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921486880.2U CN210512509U (en) 2019-09-09 2019-09-09 Drying equipment for textile printing and dyeing

Publications (1)

Publication Number Publication Date
CN210512509U true CN210512509U (en) 2020-05-12

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921486880.2U Expired - Fee Related CN210512509U (en) 2019-09-09 2019-09-09 Drying equipment for textile printing and dyeing

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110455061A (en) * 2019-09-09 2019-11-15 海盐鸳鸯丝绸印染股份有限公司 Drying equipment for textile printing and dyeing
CN112393567A (en) * 2020-11-16 2021-02-23 东莞市米儿塑胶原料有限公司 Drying and stirring equipment for processing polyurethane fabric and using method thereof

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110455061A (en) * 2019-09-09 2019-11-15 海盐鸳鸯丝绸印染股份有限公司 Drying equipment for textile printing and dyeing
CN112393567A (en) * 2020-11-16 2021-02-23 东莞市米儿塑胶原料有限公司 Drying and stirring equipment for processing polyurethane fabric and using method thereof
CN112393567B (en) * 2020-11-16 2022-05-17 东莞市米儿塑胶原料有限公司 A kind of drying and winding equipment for polyurethane fabric processing and using method thereof

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Granted publication date: 20200512