CN105674705A - Textile drying device - Google Patents

Textile drying device Download PDF

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Publication number
CN105674705A
CN105674705A CN201610211282.9A CN201610211282A CN105674705A CN 105674705 A CN105674705 A CN 105674705A CN 201610211282 A CN201610211282 A CN 201610211282A CN 105674705 A CN105674705 A CN 105674705A
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CN
China
Prior art keywords
fixing
framework
cross bar
horizontal
support bar
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
CN201610211282.9A
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Chinese (zh)
Inventor
陈杨
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.)
Ruian Aoya Clothing Co Ltd
Original Assignee
Ruian Aoya Clothing Co Ltd
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Filing date
Publication date
Application filed by Ruian Aoya Clothing Co Ltd filed Critical Ruian Aoya Clothing Co Ltd
Priority to CN201610211282.9A priority Critical patent/CN105674705A/en
Publication of CN105674705A publication Critical patent/CN105674705A/en
Withdrawn legal-status Critical Current

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B11/00Machines or apparatus for drying solid materials or objects with movement which is non-progressive
    • F26B11/12Machines or apparatus for drying solid materials or objects with movement which is non-progressive in stationary drums or other mainly-closed receptacles with moving stirring devices
    • F26B11/16Machines or apparatus for drying solid materials or objects with movement which is non-progressive in stationary drums or other mainly-closed receptacles with moving stirring devices the stirring device moving in a vertical or steeply-inclined plane
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B21/00Arrangements or duct systems, e.g. in combination with pallet boxes, for supplying and controlling air or gases for drying solid materials or objects
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B25/00Details of general application not covered by group F26B21/00 or F26B23/00
    • F26B25/04Agitating, stirring, or scraping devices

Abstract

The invention discloses a textile drying device which comprises a base plate, a frame body, a material feeding device, a cover plate device, an air ventilation device and a heating device, wherein a first supporting block, a first roller, a fixed frame and a power supply are arranged on the base plate; a first through hole, a filter frame, a first supporting rod, a first transverse rod, a second transverse rod and a second through hole are arranged on the frame body; the material feeding device comprises a material feeding hopper, a horizontal plate, a first bent rod, a third transverse rod and a first fixed block; the cover plate device comprises a cover plate, a holding ring, a flow division block and a first transverse plate; the air ventilation device comprises a pipeline, a fan, a fourth transverse rod, a second bent rod, an elastic rod, a first connection rod, a third bent rod and a second supporting rod; and the heating device comprises an iron net, an inclined rod, a heat dissipation frame, a heating stick, a rotating shaft, a rotating rod and a supporting ring. The textile drying device can thoroughly dry a textile and is high in drying efficiency and good in drying effect.

Description

A kind of weaving drying unit
Technical field
The present invention relates to weaving technique with the apparatus field, particularly relate to a kind of weaving drying unit.
Background technology
Dehydrator is one of requisite production equipment during yarn fabric produces, the quality of dehydrator will directly affect the quality of yarn fabric, the drying baker of existing dehydrator is generally metal shell, owing to heat dissipation metal is very fast, thus it is very fast to cause that the heat in drying baker also scatters and disappears, and existing dehydrator thermal source is single, and drying rate is slow, dry length consuming time, efficiency low, directly affect the production efficiency of yarn fabric.
Accordingly, it is desirable to provide a kind of new technical scheme solves above-mentioned technical problem.
Summary of the invention
It is an object of the invention to provide a kind of weaving drying unit that can effectively solve above-mentioned technical problem.
In order to solve above-mentioned technical problem, the present invention adopts the following technical scheme that
A kind of weaving drying unit, described weaving drying unit includes base plate, it is positioned at the framework above described base plate, it is positioned at the feed arrangement above described framework, it is positioned at the cover board arrangement of described feed arrangement, it is positioned at the air circulating device of the described framework left and right sides and is positioned at the heater of described framework, described base plate is provided with first bracer below, it is positioned at the first roller below described first bracer, it is positioned at the fixed frame above described base plate, it is positioned at the power supply of described fixed frame, described framework is provided with first through hole on surface around, filter frame on its interior, it is positioned at the first support bar below described framework, it is arranged at the first cross bar on described first support bar, second cross bar and be positioned at the second through hole of described framework lower surface, described feed arrangement includes feed hopper, it is positioned at the horizontal plate below described feed hopper, it is positioned at the first bent stick of described feed hopper side, being arranged at the 3rd cross bar in described first bent stick and the first fixed block being arranged in described feed hopper, described cover board arrangement includes cover plate, it is positioned at the gripper rings above described cover plate, being positioned at the branching block below described cover plate and be positioned at the first transverse slat of the described branching block left and right sides, described air circulating device includes pipeline, it is arranged at the blower fan on described pipeline, it is positioned at the 4th cross bar above described blower fan, it is positioned at the second bent stick below described 4th cross bar, elastic rod, it is positioned at the head rod below described elastic rod, being positioned at the 3rd bent stick below described pipeline and be positioned at the second support bar of described 3rd bent stick side, described heater includes ferrum net, it is positioned at the brace of described ferrum side off the net, it is positioned at the heat radiation frame below described brace, it is positioned at the heating rod below described heat radiation frame, it is positioned at the rotating shaft of described ferrum side on the net, it is arranged at the swingle in described rotating shaft and the pushing out ring being arranged on described swingle.
Described first bracer is cross section is the cylinder of isosceles trapezoid, described first bracer horizontal positioned, the upper surface of described first bracer is fixing with the lower surface of described base plate to be connected, the lower surface of described first bracer is provided with the first groove, described first roller is cylinder, described first roller water placing flat, described first roller is contained in described first groove and turns with described first bracer axle and is connected, described fixed frame is hollow cuboid, the cross section of described fixed frame is concave shape, the lower surface of described fixed frame is fixing with the upper surface of described base plate to be connected, described power supply is contained in described fixed frame, described power supply is fixing with the upper surface of described base plate to be connected.
Described filter frame is hollow cuboid, the side of described filter frame is fixing with the inner surface of described framework to be connected, described first support bar is cuboid, described first support bar is vertically placed, the lower end of described first support bar is fixing with the upper surface of described base plate to be connected, the upper end of described first support bar is fixing with the lower surface of described framework to be connected, described first cross bar is cuboid, described first cross bar horizontal positioned, the end of described first cross bar is fixing with the side of described first support bar to be connected.
Described second cross bar is provided with two and lays respectively at the left and right sides of described first support bar, and described second cross bar is horizontal, and one end of described second cross bar is fixing with the side of described first support bar to be connected.
Described horizontal plate is cuboid, described horizontal plate horizontal positioned, the side of described horizontal plate is fixing with the inner surface of described framework to be connected, described horizontal plate is provided with through the square hole of its upper and lower surface, the cross section of described feed hopper is hollow isosceles trapezoid, the lower end of described feed hopper is fixing with the upper surface of described horizontal plate to be connected, described first bent stick is bending, the upper end of described first bent stick is fixing with the outer surface of described feed hopper to be connected, described 3rd cross bar is horizontal, one end of described 3rd cross bar is fixing with the outer surface of described feed hopper to be connected, the other end of described 3rd cross bar is fixing with described first bent stick to be connected, described first fixed block is horizontal, one end of described first fixed block is fixing with the inner surface of described feed hopper to be connected.
Described cover plate is horizontal, the inclined shape in side of described cover plate, the side of described cover plate contacts with the inner surface of described feed hopper, the lower surface of described first fixed block and the upper surface of described cover plate, described gripper rings is semi-annular shape, the two ends of described gripper rings are fixing with the upper surface of described cover plate to be connected, the cross section of described branching block is triangular in shape, the upper surface of described branching block is fixing with the lower surface of described cover plate to be connected, described first transverse slat is horizontal, described first transverse slat is cuboid, described branching block runs through the upper and lower surface of described first transverse slat and is secured to connect, the side of described first transverse slat contacts with the inner surface of described horizontal plate.
One end of described pipeline is directed at described first through hole and fixing with the side of described framework is connected, the other end of described pipeline is directed at described second through hole and fixing with the lower surface of described framework is connected, one end of described second cross bar is fixing with described pipeline to be connected, described 4th cross bar is cuboid, described 4th cross bar horizontal positioned, one end of described 4th cross bar is fixing with the side of described framework to be connected, and described pipeline runs through the upper and lower surface of described 4th cross bar and is secured to connect.
Described second bent stick is bending, the upper end of described second bent stick is fixing with the lower surface of described 4th cross bar to be connected, the lower end of described second bent stick acts against on described pipeline, described elastic rod is semi-annular shape, the two ends of described elastic rod are fixing with the side of described framework to be connected, described head rod is horizontal, and one end of described head rod is fixing with the side of described framework to be connected, and the other end of described head rod is fixing with described blower fan to be connected.
Described 3rd bent stick is bending, the lower end of described 3rd bent stick is fixing with the upper surface of described base plate to be connected, the upper end of described 3rd bent stick is fixing with described pipeline to be connected, described second support bar is cuboid, described second support bar is vertically placed, the lower end of described second support bar is fixing with the upper surface of described base plate to be connected, and the upper end of described second support bar is fixing with described pipeline to be connected.
The cross section of described ferrum net is bending, the side of described ferrum net is fixing with the inner surface of described framework to be connected, the inclined shape of described brace, the lower end of described brace is fixing with the inner surface of described framework to be connected, the upper end of described brace is fixing with the lower surface of described ferrum net to be connected, described heat radiation frame is hollow cuboid, the lower surface of described heat radiation frame is fixing with the inner surface of described framework to be connected, described rotating shaft is cylinder, described rotating shaft horizontal positioned, described rotating shaft turns with described framework axle and is connected, one end of described swingle is fixing with described rotating shaft to be connected, described pushing out ring is circular, described swingle runs through the surfaces externally and internally of a described pushing out ring and is secured to connect.
After adopting technique scheme, present invention have the advantage that
The present invention weaves drying unit simple in construction, easy to use, yarn fabric can be dried thoroughly, drying efficiency is high, and good drying effect, it is possible to the significant time saving drying, improve the quality of yarn fabric, and it is furnished with air circulation so that drying efficiency is greatly improved, improves the production efficiency of yarn fabric.
Accompanying drawing explanation
It is described further below in conjunction with the accompanying drawing present invention the weaved detailed description of the invention of drying unit:
Fig. 1 is that the present invention weaves the structural representation of drying unit;
Detailed description of the invention
As it is shown in figure 1, the present invention weaves, drying unit includes base plate 1, is positioned at the framework 2 above described base plate 1, is positioned at the feed arrangement 3 above described framework 2, is positioned at the cover board arrangement 4 of described feed arrangement 3, is positioned at the air circulating device 5 of described framework 2 left and right sides and is positioned at the heater 6 of described framework 2.
As shown in Figure 1, described base plate 1 is in cuboid, described base plate 1 horizontal positioned, described base plate 1 is provided with first bracer 11 below, is positioned at the first roller 12 below described first bracer 11, is positioned at the fixed frame 13 above described base plate 1, is positioned at the power supply 14 of described fixed frame 13. Described first bracer 11 is provided with two and lays respectively at the left and right sides below described base plate 1, described first bracer 11 is the cylinder of isosceles trapezoid in cross section, described first bracer 11 horizontal positioned, the upper surface of described first bracer 11 is fixing with the lower surface of described base plate 1 to be connected, the lower surface of described first bracer 11 is provided with the first groove 111, and described first groove 111 is in semicylinder shape. Described first roller 12 is provided with two and lays respectively at below described first bracer 11, described first roller 12 is in cylinder, described first roller 12 horizontal positioned, described first roller 12 is contained in described first groove 111 and turns with described first bracer 11 axle and is connected so that described first roller 12 can rotate in described first groove 111. Described fixed frame 13 is in hollow cuboid, and the cross section of described fixed frame 13 is concave shape, and the lower surface of described fixed frame 13 is fixing with the upper surface of described base plate 1 to be connected. Described power supply 14 is contained in described fixed frame 13, and described power supply 14 is fixing with the upper surface of described base plate 1 to be connected.
As shown in Figure 1, described framework 2 is in hollow cuboid, described framework 2 is vertically placed, and described framework 2 is provided with Russia's first through hole 21 on surface around, filter frame 22 on its interior, is positioned at the first support bar 23 below described framework 2, first cross bar the 24, second cross bar 25 of being arranged on described first support bar 23 and the second through hole 26 being positioned at described framework 2 lower surface. Described first through hole 21 is provided with two and lays respectively on the surface, left and right of described framework 2, and described first through hole 21 is in cylindrical shape, and described first through hole 21 communicates with the inside of described framework 2. Described filter frame 22 is provided with two and lays respectively at the left and right sides within described framework 2, described filter frame 22 is in hollow cuboid, the cross section of described filter frame 22 is concave shape, the side of described filter frame 22 is fixing with the inner surface of described framework 2 to be connected, and described filter frame 22 is enclosed on described first through hole 21. Described first support bar 23 is provided with two and lays respectively at the left and right sides above described base plate 1, described first support bar 23 is in cuboid, described first support bar 23 is vertically placed, the lower end of described first support bar 23 is fixing with the upper surface of described base plate 1 to be connected, and the upper end of described first support bar 23 is fixing with the lower surface of described framework 2 to be connected. Described first cross bar 24 is in cuboid, and described first cross bar 24 horizontal positioned, the end of described first cross bar 24 is fixing with the side of described first support bar 23 to be connected. Described second cross bar 25 is provided with two and lays respectively at the left and right sides of described first support bar 23, and described second cross bar 25 is horizontal, and one end of described second cross bar 25 is fixing with the side of described first support bar 23 to be connected. Described second through hole 26 is provided with two and lays respectively at the left and right sides of described framework 2 lower surface, and described second through hole 26 is in cylindrical shape, and described second through hole 26 communicates with the inside of described framework 2.
As it is shown in figure 1, described feed arrangement 3 includes feed hopper 31, is positioned at the horizontal plate 32 below described feed hopper 31, is positioned at the first bent stick 33 of described feed hopper 31 side, the 3rd cross bar 34 being arranged in described first bent stick 33 and is arranged at the first fixed block 35 of described feed hopper 31. Described horizontal plate 32 is in cuboid, and described horizontal plate 32 horizontal positioned, the side of described horizontal plate 32 is fixing with the inner surface of described framework 2 to be connected, and described horizontal plate 32 is provided with through the square hole of its upper and lower surface, and described square hole is rectangular-shaped. The cross section of described feed hopper 31 is hollow isosceles trapezoid, and the lower end of described feed hopper 31 is fixing with the upper surface of described horizontal plate 32 to be connected so that described square hole communicates with the inside of described feed hopper 31. Described first bent stick 33 is provided with two and lays respectively at the left and right sides of described feed hopper 31, and described first bent stick 33 is in bending, and the upper end of described first bent stick 33 is fixing with the outer surface of described feed hopper 31 to be connected. Described 3rd cross bar 34 is provided with two and lays respectively at the left and right sides of described feed hopper 31, described 3rd cross bar 34 is horizontal, one end of described 3rd cross bar 34 is fixing with the outer surface of described feed hopper 31 to be connected, the other end of described 3rd cross bar 34 is fixing with described first bent stick 33 to be connected, thus described first bent stick 33 is played a supporting role. Described first fixed block 35 is horizontal, and one end of described first fixed block 35 is fixing with the inner surface of described feed hopper 31 to be connected.
As it is shown in figure 1, described cover board arrangement 4 includes cover plate 41, is positioned at the gripper rings 42 above described cover plate 41, is positioned at the branching block 44 below described cover plate 41 and is positioned at the first transverse slat 45 of described branching block 44 left and right sides. Described cover plate 41 is horizontal, the inclined shape in side of described cover plate 41, and the side of described cover plate 41 contacts with the inner surface of described feed hopper 31, the lower surface of described first fixed block 35 and the upper surface of described cover plate 41. Described gripper rings 42 is in semi-annular shape, and the two ends of described gripper rings 42 are fixing with the upper surface of described cover plate 41 to be connected, thus facilitating user to hold. The cross section of described branching block 44 is triangular in shape, and the upper surface of described branching block 44 is fixing with the lower surface of described cover plate 41 to be connected, and the air-flow flowed up from below can be divided into left and right two parts by described branching block 44. Described first transverse slat 45 is horizontal, described first transverse slat 45 is in cuboid, described branching block 44 runs through the upper and lower surface of described first transverse slat 45 and is secured to connect, the side of described first transverse slat 45 contacts with the inner surface of described horizontal plate 32, thus being possible not only to play the effect of sealing, left and right two parts can also be divided the flow into, thus conveniently entering in the first through hole 21.
As shown in Figure 1, described air circulating device 5 is provided with two and lays respectively at the left and right sides of described framework 2, and described air circulating device 5 includes pipeline 51, the blower fan 52 that is arranged on described pipeline 51, be positioned at the 4th cross bar 53 above described blower fan 52, be positioned at the second bent stick 54 below described 4th cross bar 53, elastic rod 55, be positioned at the head rod 56 below described elastic rod 55, be positioned at the 3rd bent stick 57 below described pipeline 51 and be positioned at the second support bar 58 of described 3rd bent stick 57 side. One end of described pipeline 51 is directed at described first through hole 21 and fixing with the side of described framework 2 is connected, the inside of described pipeline 51 is communicated with the inside of described framework 2, the other end of described pipeline 51 is directed at described second through hole 26 and fixing with the lower surface of described framework 2 is connected, the inside of described pipeline 51 is communicated with the inside of described framework 2, and one end of described second cross bar 25 is fixing with described pipeline 51 to be connected. Described blower fan 52 is arranged on described pipeline 51, for being pumped in described pipeline 51 by the air in framework 2. Described 4th cross bar 53 is in cuboid, described 4th cross bar 53 horizontal positioned, one end of described 4th cross bar 53 is fixing with the side of described framework 2 to be connected, and described pipeline 51 runs through the upper and lower surface of described 4th cross bar 53 and is secured to connect, thus described pipeline 51 is played fixation. Described second bent stick 54 is in bending, and the upper end of described second bent stick 54 is fixing with the lower surface of described 4th cross bar 53 to be connected, and the lower end of described second bent stick 54 acts against on described pipeline 51, is used for fixing described pipeline 51. Described elastic rod 55 is in semi-annular shape, and the two ends of described elastic rod 55 are fixing with the side of described framework 2 to be connected, and described elastic rod 55 adopts elastomeric material to make so that described pipeline 51 is when described framework 2, it is possible to described pipeline 51 is played the effect of making. Described head rod 56 is horizontal, and one end of described head rod 56 is fixing with the side of described framework 2 to be connected, and the other end of described head rod 56 is fixing with described blower fan 52 to be connected, thus described blower fan 52 is played fixation.Described 3rd bent stick 57 is in bending, and the lower end of described 3rd bent stick 57 is fixing with the upper surface of described base plate 1 to be connected, and the upper end of described 3rd bent stick 57 is fixing with described pipeline 51 to be connected, thus described pipeline 51 is played a supporting role. Described second support bar 58 is in cuboid, described second support bar 58 is vertically placed, the lower end of described second support bar 58 is fixing with the upper surface of described base plate 1 to be connected, and the upper end of described second support bar 58 is fixing with described pipeline 51 to be connected, thus described pipeline 51 is played fixation.
As it is shown in figure 1, described heater 6 includes ferrum net 61, is positioned at the brace 62 below described ferrum net 61, is positioned at the heat radiation frame 63 below described brace 62, is positioned at the heating rod 64 below described heat radiation frame 63, is positioned at the rotating shaft 65 above described ferrum net 61, the swingle 66 that is arranged in described rotating shaft 65 and the pushing out ring 67 being arranged on described swingle 66. The cross section of described ferrum net 61 is bending, and the side of described ferrum net 61 is fixing with the inner surface of described framework 2 to be connected, and described ferrum net 61 adopts iron wire material to make, thus conveniently transferring heat to top. Described brace 62 is provided with two and lays respectively at the left and right sides of described ferrum net 61, the described inclined shape of brace 62, the lower end of described brace 62 is fixing with the inner surface of described framework 2 to be connected, the upper end of described brace 62 is fixing with the lower surface of described ferrum net 61 to be connected, thus described ferrum net 61 is played a supporting role. Described heat radiation frame 63 is in hollow cuboid, the cross section of described heat radiation frame 63 is inverted concave shape, the lower surface of described heat radiation frame 63 is fixing with the inner surface of described framework 2 to be connected, and described heat radiation frame 63 adopts Heat Conduction Material to make, and described framework 2 adopts heat-barrier material to make. Described heating rod 64 is contained in described heat radiation frame 63, and described heating rod 64 is electrically connected with power supply 14 so that described heating rod 64 can heat. Described rotating shaft 65 in cylinder, described rotating shaft 65 horizontal positioned, described rotating shaft 65 turns with described framework 2 axle and is connected, described rotating shaft 65 can be rotated in described framework 2, described rotating shaft 65 is connected with motor so that described rotating shaft 65 rotates automatically, and described motor and power supply 14 are electrically connected. Described swingle 66 is provided with several and is evenly distributed in described rotating shaft 65, and one end of described swingle 66 is fixing with described rotating shaft 65 to be connected so that when described rotating shaft 65 rotates, it is possible to drive described swingle 66 to rotate. Described pushing out ring 67 is in circular, and described swingle 66 runs through the surfaces externally and internally of a described pushing out ring 67 and is secured to connect.
As shown in Figure 1, the described present invention weave drying unit use time, first gripper rings 42 is held, cover plate 41 is taken out, then motor is started, rotating shaft 65 is rotated, and then swingle 66 and a pushing out ring 67 are rotated with, then the yarn fabric dried will be needed to put in feed hopper 31, then in framework 2, owing to swingle 66 and a pushing out ring 67 rotate, yarn fabric is made to be wrapped on a pushing out ring 67 and swingle 66, then the lower end that then one end of cover plate 41 acts against described first fixed block 35 turns clockwise, the side of cover plate 41 is contacted with the inner surface of described feed hopper 31, the side of the first transverse slat 45 contacts with the inner surface of described horizontal plate 32 simultaneously, thus playing the effect of sealing. then heating rod 64 is started so that the temperature in framework 2 rises, and then heat flows up through ferrum net 61, owing to rotating shaft 65 ceaselessly rotates so that multiple continuous rotations of yarn fabric are with downward so that drying effect is better.Then blower fan 52 is started, make the gas in framework 2 enter in the first through hole 21 after the filtration of filter frame 22, then in main officer of Tibet degree noisy 51, then spray from the second through hole 26, the air-flow making heating constantly flows up, and then can constantly yarn fabric be dried. Simultaneously because the setting of the first roller 12, in that context it may be convenient to it is moved into the position needed. So far, present invention drying unit use procedure of weaving is described.
The above; being only the specific embodiment of the present invention, but protection scope of the present invention is not limited thereto, any those skilled in the art are in the technical scope that the invention discloses; change can be readily occurred in or replace, all should be encompassed within protection scope of the present invention. Therefore, protection scope of the present invention should be as the criterion with described scope of the claims.

Claims (10)

1. a weaving drying unit, it is characterised in that: described weaving drying unit includes base plate, it is positioned at the framework above described base plate, it is positioned at the feed arrangement above described framework, it is positioned at the cover board arrangement of described feed arrangement, it is positioned at the air circulating device of the described framework left and right sides and is positioned at the heater of described framework, described base plate is provided with first bracer below, it is positioned at the first roller below described first bracer, it is positioned at the fixed frame above described base plate, it is positioned at the power supply of described fixed frame, described framework is provided with first through hole on surface around, filter frame on its interior, it is positioned at the first support bar below described framework, it is arranged at the first cross bar on described first support bar, second cross bar and be positioned at the second through hole of described framework lower surface, described feed arrangement includes feed hopper, it is positioned at the horizontal plate below described feed hopper, it is positioned at the first bent stick of described feed hopper side, being arranged at the 3rd cross bar in described first bent stick and the first fixed block being arranged in described feed hopper, described cover board arrangement includes cover plate, it is positioned at the gripper rings above described cover plate, being positioned at the branching block below described cover plate and be positioned at the first transverse slat of the described branching block left and right sides, described air circulating device includes pipeline, it is arranged at the blower fan on described pipeline, it is positioned at the 4th cross bar above described blower fan, it is positioned at the second bent stick below described 4th cross bar, elastic rod, it is positioned at the head rod below described elastic rod, being positioned at the 3rd bent stick below described pipeline and be positioned at the second support bar of described 3rd bent stick side, described heater includes ferrum net, it is positioned at the brace of described ferrum side off the net, it is positioned at the heat radiation frame below described brace, it is positioned at the heating rod below described heat radiation frame, it is positioned at the rotating shaft of described ferrum side on the net, it is arranged at the swingle in described rotating shaft and the pushing out ring being arranged on described swingle.
2. weaving drying unit according to claim 1, it is characterized in that: described first bracer is cross section is the cylinder of isosceles trapezoid, described first bracer horizontal positioned, the upper surface of described first bracer is fixing with the lower surface of described base plate to be connected, the lower surface of described first bracer is provided with the first groove, described first roller is cylinder, described first roller water placing flat, described first roller is contained in described first groove and turns with described first bracer axle and is connected, described fixed frame is hollow cuboid, the cross section of described fixed frame is concave shape, the lower surface of described fixed frame is fixing with the upper surface of described base plate to be connected, described power supply is contained in described fixed frame, described power supply is fixing with the upper surface of described base plate to be connected.
3. weaving drying unit according to claim 2, it is characterized in that: described filter frame is hollow cuboid, the side of described filter frame is fixing with the inner surface of described framework to be connected, described first support bar is cuboid, described first support bar is vertically placed, the lower end of described first support bar is fixing with the upper surface of described base plate to be connected, the upper end of described first support bar is fixing with the lower surface of described framework to be connected, described first cross bar is cuboid, described first cross bar horizontal positioned, the end of described first cross bar is fixing with the side of described first support bar to be connected.
4. weaving drying unit according to claim 3, it is characterized in that: described second cross bar is provided with two and lays respectively at the left and right sides of described first support bar, described second cross bar is horizontal, and one end of described second cross bar is fixing with the side of described first support bar to be connected.
5. weaving drying unit according to claim 4, it is characterized in that: described horizontal plate is cuboid, described horizontal plate horizontal positioned, the side of described horizontal plate is fixing with the inner surface of described framework to be connected, described horizontal plate is provided with through the square hole of its upper and lower surface, the cross section of described feed hopper is hollow isosceles trapezoid, the lower end of described feed hopper is fixing with the upper surface of described horizontal plate to be connected, described first bent stick is bending, the upper end of described first bent stick is fixing with the outer surface of described feed hopper to be connected, described 3rd cross bar is horizontal, one end of described 3rd cross bar is fixing with the outer surface of described feed hopper to be connected, the other end of described 3rd cross bar is fixing with described first bent stick to be connected, described first fixed block is horizontal, one end of described first fixed block is fixing with the inner surface of described feed hopper to be connected.
6. weaving drying unit according to claim 5, it is characterized in that: described cover plate is horizontal, the inclined shape in side of described cover plate, the side of described cover plate contacts with the inner surface of described feed hopper, the lower surface of described first fixed block and the upper surface of described cover plate, described gripper rings is semi-annular shape, the two ends of described gripper rings are fixing with the upper surface of described cover plate to be connected, the cross section of described branching block is triangular in shape, the upper surface of described branching block is fixing with the lower surface of described cover plate to be connected, described first transverse slat is horizontal, described first transverse slat is cuboid, described branching block runs through the upper and lower surface of described first transverse slat and is secured to connect, the side of described first transverse slat contacts with the inner surface of described horizontal plate.
7. weaving drying unit according to claim 6, it is characterized in that: one end of described pipeline is directed at described first through hole and fixing with the side of described framework is connected, the other end of described pipeline is directed at described second through hole and fixing with the lower surface of described framework is connected, one end of described second cross bar is fixing with described pipeline to be connected, described 4th cross bar is cuboid, described 4th cross bar horizontal positioned, one end of described 4th cross bar is fixing with the side of described framework to be connected, and described pipeline runs through the upper and lower surface of described 4th cross bar and is secured to connect.
8. weaving drying unit according to claim 7, it is characterized in that: described second bent stick is bending, the upper end of described second bent stick is fixing with the lower surface of described 4th cross bar to be connected, the lower end of described second bent stick acts against on described pipeline, described elastic rod is semi-annular shape, the two ends of described elastic rod are fixing with the side of described framework to be connected, described head rod is horizontal, one end of described head rod is fixing with the side of described framework to be connected, and the other end of described head rod is fixing with described blower fan to be connected.
9. weaving drying unit according to claim 8, it is characterized in that: described 3rd bent stick is bending, the lower end of described 3rd bent stick is fixing with the upper surface of described base plate to be connected, the upper end of described 3rd bent stick is fixing with described pipeline to be connected, described second support bar is cuboid, described second support bar is vertically placed, and the lower end of described second support bar is fixing with the upper surface of described base plate to be connected, and the upper end of described second support bar is fixing with described pipeline to be connected.
10. weaving drying unit according to claim 9, it is characterized in that: the cross section of described ferrum net is bending, the side of described ferrum net is fixing with the inner surface of described framework to be connected, the inclined shape of described brace, the lower end of described brace is fixing with the inner surface of described framework to be connected, the upper end of described brace is fixing with the lower surface of described ferrum net to be connected, described heat radiation frame is hollow cuboid, the lower surface of described heat radiation frame is fixing with the inner surface of described framework to be connected, described rotating shaft is cylinder, described rotating shaft horizontal positioned, described rotating shaft turns with described framework axle and is connected, one end of described swingle is fixing with described rotating shaft to be connected, described pushing out ring is circular, described swingle runs through the surfaces externally and internally of a described pushing out ring and is secured to connect.
CN201610211282.9A 2016-04-06 2016-04-06 Textile drying device Withdrawn CN105674705A (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105953541A (en) * 2016-06-24 2016-09-21 周末 Drying device used in medical treatment sickroom
CN106273348A (en) * 2016-09-13 2017-01-04 深圳市安思科电子科技有限公司 The uniform plastic pipe cooling system of a kind of cooling
CN106766788A (en) * 2016-12-01 2017-05-31 马艳敏 A kind of portable cloth drying device
CN112923701A (en) * 2021-02-21 2021-06-08 王鹏 Textile material drying and recycling device

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105953541A (en) * 2016-06-24 2016-09-21 周末 Drying device used in medical treatment sickroom
CN106273348A (en) * 2016-09-13 2017-01-04 深圳市安思科电子科技有限公司 The uniform plastic pipe cooling system of a kind of cooling
CN106766788A (en) * 2016-12-01 2017-05-31 马艳敏 A kind of portable cloth drying device
CN106766788B (en) * 2016-12-01 2019-01-15 绍兴市欣明家居有限公司 A kind of portable cloth drying device
CN112923701A (en) * 2021-02-21 2021-06-08 王鹏 Textile material drying and recycling device

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Application publication date: 20160615