CN114959956A - Hot-blast non-woven fabrics carding unit - Google Patents

Hot-blast non-woven fabrics carding unit Download PDF

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Publication number
CN114959956A
CN114959956A CN202210596542.4A CN202210596542A CN114959956A CN 114959956 A CN114959956 A CN 114959956A CN 202210596542 A CN202210596542 A CN 202210596542A CN 114959956 A CN114959956 A CN 114959956A
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China
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rectangular
cylinder
rectangle
hot
groove
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CN202210596542.4A
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CN114959956B (en
Inventor
郭芬红
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Dayuan Nonwoven New Material Tianjin Co ltd
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Individual
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    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01GPRELIMINARY TREATMENT OF FIBRES, e.g. FOR SPINNING
    • D01G15/00Carding machines or accessories; Card clothing; Burr-crushing or removing arrangements associated with carding or other preliminary-treatment machines
    • D01G15/02Carding machines
    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01GPRELIMINARY TREATMENT OF FIBRES, e.g. FOR SPINNING
    • D01G15/00Carding machines or accessories; Card clothing; Burr-crushing or removing arrangements associated with carding or other preliminary-treatment machines
    • D01G15/02Carding machines
    • D01G15/12Details
    • 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
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/66Disintegrating fibre-containing textile articles to obtain fibres for re-use

Abstract

The invention discloses a hot air non-woven fabric carding device which comprises a frame body, wherein a rectangular cavity is formed in the frame body; the inside in rectangle chamber is provided with combs the subassembly, it includes the first drum of rectangle intracavity portion rotation installation to comb the subassembly, equidistant a plurality of dogs of installing on the first drum side surface, semicircle baffle has been placed to the side surface of first drum, semicircle baffle's both ends and the inner wall fixed connection in rectangle chamber, first conveyer belt has been placed to the lower extreme of semicircle baffle, the both ends of first conveyer belt all rotate the installation with the inner wall in rectangle chamber, the second drum has been placed to the upper surface equidistance of first conveyer belt, every the both ends of second drum rotate the installation with the inner wall in rectangle chamber, every the folded sheet has all been placed to the upper surface of second drum, every the upper end of folded sheet all with the last inner wall fixed connection in rectangle chamber. The invention can ensure that the non-woven fabric is carded for a plurality of times in the device.

Description

Hot-blast non-woven fabrics carding unit
Technical Field
The invention relates to the technical field of hot air non-woven fabric equipment, in particular to a hot air non-woven fabric carding device.
Background
The carding machine is a processing equipment commonly used in the production and manufacture of short fiber non-woven fabrics and other products, and the principle is that firstly, the bulk fibers conveyed by a bale opener, an opener and an air pressure cotton box are further mixed and processed into fasciculate fibers, then the fasciculate fibers are processed into single fibers, and finally the fasciculate fibers are laid into a fiber net to be output.
The existing hot air non-woven fabric carding device has the possibility of incomplete carding during carding, and can cause low yield and irreparable loss during later processing.
Disclosure of Invention
The invention aims to solve the following defects in the prior art, and provides a hot-air non-woven fabric carding device which can cause incomplete carding when carding is carried out and causes low yield and irrecoverable loss when later processing is carried out.
In order to achieve the purpose, the invention adopts the following technical scheme:
a hot-air non-woven fabric carding device comprises a frame body,
a rectangular cavity is formed in the frame body;
the inside in rectangle chamber is provided with combs the subassembly, it includes the first drum of rectangle intracavity rotation installation to comb the subassembly, equidistant a plurality of dogs of installing on the first drum side surface, semicircle baffle has been placed to the side surface of first drum, the both ends of semicircle baffle and the inner wall fixed connection in rectangle chamber, first conveyer belt has been placed to the lower extreme of semicircle baffle, the both ends of first conveyer belt all rotate the installation with the inner wall in rectangle chamber, the second drum has been placed to the upper surface equidistance of first conveyer belt, every the both ends of second drum rotate the installation with the inner wall in rectangle chamber, every the folded sheet has all been placed to the upper surface of second drum, every the upper end of folded sheet all with the last inner wall fixed connection in rectangle chamber, the lower extreme fixed mounting of folded sheet has the swash plate.
Preferably, first rectangle opening has been seted up to the framework upper surface, first rectangle opening communicates with each other with the rectangular cavity, first rectangle frame has been cup jointed to the inside of first rectangle opening, the inside equidistance of first rectangle frame is rotated and is installed four third drums, every second rectangle recess, every have been seted up to the equal equidistance of third drum side surface the equal fixed mounting in inside of second rectangle recess has first gasbag, every the first rectangle piece of the equal fixedly connected with of one end of first gasbag.
Preferably, four third rectangular grooves are formed in the left inner wall and the right inner wall of the first rectangular frame at equal intervals, first straight rods are placed on two sides of each third rectangular groove, a first elastic rope is fixedly connected between every two first straight rods, one end of each first straight rod is sleeved with two ends of a third cylinder, each third cylinder is in a group which is opposite from top to bottom, a T-shaped block is sleeved in the middle of each group of third cylinders, a fourth rectangular groove is formed in the opposite surface of each T-shaped block at equal intervals, each fourth rectangular groove is in a group which is opposite from left to right, a second straight rod is sleeved in each group of fourth rectangular grooves, a second rectangular block is placed between every two second straight rods, the second rectangle opening has been seted up to the second rectangle piece, the third rectangle piece has all been placed to the second rectangle opening left and right sides, two folding cone has been placed to the centre of third rectangle piece.
Preferably, the third rectangle opening, every have all been seted up to the left and right sides of first rectangle frame the inside fixed mounting of third rectangle opening has first rectangular plate, fifth rectangle recess, every have been seted up to the upper surface of first rectangular plate the inside of second rectangle recess all slides and has U type adsorption plate, every the equal fixed mounting of upper surface of U type adsorption plate has the handle.
Preferably, a sixth rectangular groove is formed in the opposite surface of each first rectangular plate, each sixth rectangular groove is communicated with a fifth rectangular groove, second air bags are fixedly mounted at the bottoms of the sixth rectangular grooves in an equidistant mode, a second rectangular plate is fixedly mounted at the upper end of each second air bag, a third rectangular plate is fixedly mounted at the upper end of each second rectangular plate, a longitudinal pulley block is rotatably mounted at the upper end of each third rectangular plate, a seventh rectangular groove is formed in the upper inner wall of each fifth rectangular groove, and each third rectangular plate is located inside the seventh rectangular groove.
Preferably, first circular recess has all been seted up to the left and right sides of framework, two first circular recess communicates with each other with the rectangle chamber, is located the rear side the both ends fixedly connected with bull stick of first conveyer belt, two the bull stick runs through first circular recess, two bull stick one end fixed mounting has the second conveyer belt, two the equal fixed mounting in upper end of second conveyer belt has L type pole, every the upper end and the laminating of second rectangle board of L type pole.
Preferably, seventh rectangle recess has been seted up to the front surface of framework, seventh rectangle recess communicates with each other with the rectangle chamber, a plurality of eighth rectangle recesses have been seted up to inside equidistance about the seventh rectangle recess, every the inside fixed mounting of eighth rectangle recess has an elastic rod, every the elastic rod is relative about being a set of, every group the centre of elastic rod all rotates and installs the fourth drum.
Preferably, the equal fixed mounting in front surface both sides of framework has the fourth rectangle piece, two the centre of fourth rectangle piece is rotated and is installed fifth drum, two fixed mounting has the second rectangle frame on the fourth rectangle piece, two the second rectangle frame is located the upper end of fifth drum, two the inside fixed mounting of second rectangle frame has the tooth's socket, two the sixth drum has been placed to the centre of second rectangle frame, the both ends of sixth drum are rotated and are installed the gear, every the gear meshes with the tooth's socket, folding rod, every have been cup jointed to both sides about the sixth drum the equal fixed mounting in folding rod junction has the spring.
Compared with the prior art, the invention has the beneficial effects that:
1. when rotating the non-woven fabrics through first drum and can bringing into in the semicircle baffle, the side surface fixed mounting of semicircle baffle has sharp head, can carry out first carding to the non-woven fabrics, come out from the semicircle baffle, can get into above the first conveyer belt, then there is the second drum above the first conveyer belt, every the sharp object is installed to second drum side surface elasticity, the folded sheet has been placed to the upper surface that carries out the secondary carding second drum, the lower extreme fixed mounting of folded sheet has the swash plate, can reject the non-woven fabrics of being stained with and attaching on the second drum, thereby can guarantee that the non-woven fabrics combs many times in equipment the inside.
2. First rectangle frame of fixed mounting on the framework, then the third drum of the inside rotation installation of first rectangle frame, then the second rectangle recess that the side surface of third drum was seted up, the inside fixed mounting of second rectangle recess has first gasbag, the first rectangle piece of one end fixedly connected with of first gasbag can extrude and remove dust the non-woven fabrics inside getting into the framework, because first gasbag is being compressed the messenger, can toward outer jet-propelled, can get rid of the dust attached to on the non-woven fabrics.
3. The dust collector comprises a first rectangular frame, a third rectangular through hole, a first rectangular plate is fixedly arranged inside the third rectangular through hole, U-shaped adsorption plates are arranged inside fifth rectangular grooves in a sliding mode and can adsorb dust, a handle is fixedly arranged on the upper surface of each U-shaped adsorption plate and is convenient to pull out the U-shaped adsorption plates from the U-shaped adsorption plates, sixth rectangular grooves are formed in the opposite surfaces of the first rectangular plates and communicated with the fifth rectangular grooves, second air bags are fixedly arranged at the bottoms of the sixth rectangular grooves at equal intervals, a second rectangular plate is fixedly arranged at the upper ends of the second air bags, a third rectangular plate is fixedly arranged at the upper ends of the second rectangular plates, a longitudinal pulley block is rotatably arranged at the upper ends of the third rectangular plates, a seventh rectangular groove is formed in the upper inner wall of the fifth rectangular groove, the third rectangular plate is positioned inside the seventh rectangular groove and can suck out generated dust from the first rectangular frame, the cleanness in the equipment is effectively ensured, and the internal machine is prevented from being damaged.
Drawings
FIG. 1 is a schematic front perspective cross-sectional structure view of a hot air nonwoven carding device according to the present invention;
FIG. 2 is a schematic side-view three-dimensional cross-sectional structure of a hot air nonwoven carding device according to the present invention;
FIG. 3 is a schematic side view of a first rectangular plate of a hot air non-woven fabric carding device according to the present invention;
FIG. 4 is a side view of the first rectangular frame;
FIG. 5 is an enlarged view of the structure at A in FIG. 1;
fig. 6 is an enlarged schematic view of B in fig. 1.
In the figure: the device comprises a frame body 1, a second conveyor belt 2, a first rectangular plate 3, a 4U-shaped adsorption plate, a handle 5, a first rectangular frame 6, a third cylinder 7, a first rectangular block 8, a fourth cylinder 9, an elastic rod 10, a second rectangular frame 11, a fourth rectangular block 12, a fifth cylinder 13, a sixth cylinder 14, a 15L-shaped rod, a second rectangular plate 16, a folding rod 17, a spring 18, a gear 19, a block 20, a first cylinder 21, a semicircular baffle 22, a first conveyor belt 23, a second cylinder 24, a folding plate 25, an inclined plate 26, a longitudinal pulley block 27, a third rectangular plate 28, a second air bag 29, a first air bag cone 30, a first straight rod 31, a first elastic rope 32, a folding rope 33, a third rectangular block 34, a second rectangular block 35, a second rectangular block 36, a straight rod 37T-shaped block.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Referring to fig. 1 to 6, a hot air non-woven fabric carding device includes a frame body 1,
a rectangular cavity is formed in the frame body 1;
the inside in rectangle chamber is provided with combs the subassembly, it includes the first drum 21 of rectangle intracavity portion rotation installation to comb the subassembly, a plurality of dogs 20 are installed to the equidistance on the first drum 21 side surface, semicircle baffle 22 has been placed to the side surface of first drum 21, semicircle baffle 22's both ends and the inner wall fixed connection in rectangle chamber, first conveyer belt 23 has been placed to semicircle baffle 22's lower extreme, the both ends of first conveyer belt 23 all rotate the installation with the inner wall in rectangle chamber, second drum 24 has been placed to the upper surface equidistance of first conveyer belt 23, the both ends of every second drum 24 rotate the installation with the inner wall in rectangle chamber, folded sheet 25 has all been placed to the upper surface of every second drum 24, the upper end of every folded sheet 25 all with the last inner wall fixed connection in rectangle chamber, the lower extreme fixed mounting of folded sheet 25 has swash plate 26.
In the embodiment of the technical scheme of using, in can bringing into semicircle baffle 22 through first drum 21 rotation with the non-woven fabrics, semicircle baffle 22's side surface fixed mounting has sharp head, can carry out first combing to the non-woven fabrics, come out from semicircle baffle 22, can get into above the first conveyer belt 23, then there is second drum 24 above the first conveyer belt 23, every 24 side surface elastic mounting of second drum has sharp object, carry out the secondary and comb the upper surface of second drum 24 and placed folded sheet 25, the lower extreme fixed mounting of folded sheet 25 has swash plate 26, can reject the non-woven fabrics of being stained with and attaching on second drum 24, thereby can guarantee that the non-woven fabrics combs many times in equipment.
In the preferred technical scheme of the embodiment, a first rectangular through hole is formed in the upper surface of a frame body 1, the first rectangular through hole is communicated with a rectangular cavity, a first rectangular frame 6 is sleeved inside the first rectangular through hole, four third cylinders 7 are rotatably installed inside the first rectangular frame 6 at equal intervals, second rectangular grooves are formed in the side surfaces of the third cylinders 7 at equal intervals, first air bags 30 are fixedly installed inside the second rectangular grooves, one end of each first air bag 30 is fixedly connected with a first rectangular block 8, when the first rectangular frame 6 is fixedly installed on the frame body 1, the third cylinders 7 are rotatably installed inside the first rectangular frame 6, then the second rectangular grooves are formed in the side surfaces of the third cylinders 7, the first air bags 30 are fixedly installed inside the second rectangular grooves, one end of each first air bag 30 is fixedly connected with the first rectangular block 8, non-woven fabrics can be extruded and dedusted inside the frame body 1, since the first air cells 30 are compressed and blown outward, dust attached to the nonwoven fabric can be removed.
In the preferred technical scheme in the embodiment, four third rectangular grooves are equidistantly formed in the left inner wall and the right inner wall of the first rectangular frame 6, first straight rods 31 are respectively placed on two sides of each third rectangular groove, a first elastic rope 32 is fixedly connected between every two first straight rods 31, one end of each two first straight rods 31 is respectively sleeved with two ends of a third cylinder 7, each third cylinder 7 is in a group up and down oppositely, a T-shaped block 37 is sleeved in the middle of each group of third cylinders 7, fourth rectangular grooves are respectively formed in the opposite surfaces of each T-shaped block 37 at equal intervals, each fourth rectangular groove is in a group left and right oppositely, a second straight rod 36 is sleeved in each group of fourth rectangular grooves, a second rectangular block 35 is placed between two second straight rods 36, a second rectangular through hole is formed in each second rectangular through hole 35, third rectangular blocks 34 are respectively placed on the left side and the right side of each second rectangular through hole, a folding 33 is placed between two third rectangular blocks 34, when the folding cone 33 is pushed in, the two second rectangular blocks 35 are extruded to move in different directions, then the two T-shaped blocks 37 are pushed, the upper end and the lower end of each of the two T-shaped blocks 37 are respectively sleeved with the rotating shaft of the third cylinder 7, and therefore the distance of the third cylinder 7 can be adjusted.
According to the technical scheme, the third rectangular opening has been all seted up to the left and right sides of first rectangular frame 6 in this embodiment, the inside fixed mounting of every third rectangular opening has first rectangular plate 3, fifth rectangle recess has been seted up to the upper surface of first rectangular plate 3, the inside of every second rectangle recess has all slided U type adsorption plate 4, the equal fixed mounting of upper surface of every U type adsorption plate 4 has handle 5, can adsorb the inside dust of first rectangular frame 6, the change of U type adsorption plate 4 of also being convenient for simultaneously.
In the preferred technical scheme in this embodiment, a sixth rectangular groove is formed in the opposite surface of each first rectangular plate 3, each sixth rectangular groove is communicated with a fifth rectangular groove, second air bags 29 are fixedly mounted at the bottoms of the sixth rectangular grooves at equal intervals, a second rectangular plate 16 is fixedly mounted at the upper end of each second air bag 29, a third rectangular plate 28 is fixedly mounted at the upper end of each second rectangular plate 16, a longitudinal pulley block 27 is rotatably mounted at the upper end of each third rectangular plate 28, a seventh rectangular groove is formed in the upper inner wall of each fifth rectangular groove, and each third rectangular plate 28 is located inside the seventh rectangular groove.
Preferred technical scheme in this embodiment, first circular recess has all been seted up to the left and right sides of framework 1, two first circular recesses communicate with each other with the rectangle chamber, the both ends fixedly connected with bull stick that is located the first conveyer belt 23 of rear side, two bull sticks run through first circular recess, two bull stick one end fixed mounting have second conveyer belt 2, the equal fixed mounting in upper end of two second conveyer belts 2 has L type pole 15, the upper end and the 16 laminating of second rectangular plate of every L type pole 15 mutually, the upper end of L type pole 15 makes articulatedly, drive the bull stick when first conveyer belt 23 and rotate, thereby can drive second conveyer belt 2, then the rotation of second conveyer belt 2, it reciprocates to drive second rectangular plate 16, thereby can make second gasbag 29, breathe in and spit gas, thereby clear up the inside dust of first rectangle frame 6.
The preferred technical scheme in this embodiment, seventh rectangle recess has been seted up to the front surface of framework 1, seventh rectangle recess communicates with each other with the rectangle chamber, a plurality of eighth rectangle recesses have been seted up to inside equidistance about seventh rectangle recess, the inside fixed mounting of every eighth rectangle recess has elastic rod 10, every elastic rod 10 is relative about every elastic rod 10 is a set of, the middle of every group elastic rod 10 is all rotated and is installed fourth drum 9, extrude the non-woven fabrics that combs, the equal fixed mounting elastic rod 10 in both ends of fourth drum 9 simultaneously, the luffing motion can be carried out, thereby can extrude the non-woven fabrics that the size is different.
In the preferred technical solution of this embodiment, the two sides of the front surface of the frame 1 are fixedly installed with the fourth rectangular blocks 12, the middle of the two fourth rectangular blocks 12 is rotatably installed with the fifth cylinder 13, the two fourth rectangular blocks 12 are fixedly installed with the second rectangular frames 11, the two second rectangular frames 11 are located at the upper end of the fifth cylinder 13, the inside of the two second rectangular frames 11 is fixedly installed with the tooth socket, the sixth cylinder 14 is placed in the middle of the two second rectangular frames 11, the two ends of the sixth cylinder 14 are rotatably installed with the gears 19, each gear 19 is engaged with the tooth socket, the upper and lower sides of the sixth cylinder 14 are sleeved with the folding rods 17, the joint of each folding rod 17 is fixedly installed with the spring 18, the extruded non-woven fabric is manually rolled on the fifth cylinder 13, then the inside of the two second rectangular frames 11 is fixedly installed with the tooth socket, the middle of the two second rectangular frames 11 is placed with the sixth cylinder 14, gears 19 are rotatably mounted at two ends of the sixth cylinder 14, each gear 19 is meshed with a tooth groove, and folding rods 17 are sleeved on the upper side and the lower side of the sixth cylinder 14 and can move up and down along with the size of the rolled non-woven fabric.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered as the technical solutions and the inventive concepts of the present invention within the technical scope of the present invention.

Claims (8)

1. A hot-air non-woven fabric carding device comprises a frame body (1) and is characterized in that,
a rectangular cavity is formed in the frame body (1);
the carding assembly is arranged inside the rectangular cavity and comprises a first cylinder (21) rotatably installed inside the rectangular cavity, a plurality of stop blocks (20) are installed on the side surface of the first cylinder (21) at equal intervals, semicircular baffles (22) are placed on the side surface of the first cylinder (21), two ends of each semicircular baffle (22) are fixedly connected with the inner wall of the rectangular cavity, a first conveying belt (23) is placed at the lower end of each semicircular baffle (22), two ends of each first conveying belt (23) are rotatably installed with the inner wall of the rectangular cavity, second cylinders (24) are placed on the upper surface of each first conveying belt (23) at equal intervals, two ends of each second cylinder (24) are rotatably installed with the inner wall of the rectangular cavity, folding plates (25) are placed on the upper surface of each second cylinder (24), and the upper ends of the folding plates (25) are fixedly connected with the upper inner wall of the rectangular cavity, the lower end of the folding plate (25) is fixedly provided with an inclined plate (26).
2. A hot-air non-woven fabric carding device according to claim 1, wherein a first rectangular through opening is formed in the upper surface of the frame body (1), the first rectangular through opening is communicated with the rectangular cavity, a first rectangular frame (6) is sleeved inside the first rectangular through opening, four third cylinders (7) are rotatably installed inside the first rectangular frame (6) at equal intervals, second rectangular grooves are formed in the side surfaces of the third cylinders (7) at equal intervals, first air bags (30) are fixedly installed inside the second rectangular grooves, and a first rectangular block (8) is fixedly connected to one end of each first air bag (30).
3. The hot-air non-woven fabric carding device according to claim 1, wherein four third rectangular grooves are formed in the left inner wall and the right inner wall of the first rectangular frame (6) at equal intervals, first straight bars (31) are placed on two sides of each third rectangular groove, a first elastic rope (32) is fixedly connected between every two first straight bars (31), one end of each two first straight bars (31) is sleeved with two ends of a third cylinder (7), each third cylinder (7) is in a group which is opposite up and down, a T-shaped block (37) is sleeved in the middle of each group of third cylinders (7), a fourth rectangular groove is formed in the opposite surface of each T-shaped block (37) at equal intervals, each fourth rectangular groove is in a group which is opposite left and right, a second straight bar (36) is sleeved in each group of fourth rectangular grooves, a second rectangular block (35) is placed in the middle of two second straight bars (36), the second rectangle opening has been seted up in second rectangle piece (35), third rectangle piece (34), two have all been placed to the second rectangle opening left and right sides folding cone (33) have been placed to the centre of third rectangle piece (34).
4. A hot-air non-woven fabric carding device according to claim 2, wherein third rectangular through openings are formed in the left side and the right side of the first rectangular frame (6), a first rectangular plate (3) is fixedly mounted inside each third rectangular through opening, a fifth rectangular groove is formed in the upper surface of the first rectangular plate (3), a U-shaped adsorption plate (4) slides inside each second rectangular groove, and a handle (5) is fixedly mounted on the upper surface of each U-shaped adsorption plate (4).
5. A hot-air non-woven fabric carding device according to claim 4, wherein a sixth rectangular groove is formed in the opposite surface of each first rectangular plate (3), each sixth rectangular groove is communicated with a fifth rectangular groove, second air bags (29) are fixedly mounted at the bottom of each sixth rectangular groove at equal intervals, second rectangular plates (16) are fixedly mounted at the upper ends of the second air bags (29), third rectangular plates (28) are fixedly mounted at the upper ends of the second rectangular plates (16), a longitudinal pulley block (27) is rotatably mounted at the upper ends of the third rectangular plates (28), a seventh rectangular groove is formed in the upper inner wall of each fifth rectangular groove, and each third rectangular plate (28) is located inside the seventh rectangular groove.
6. A hot-blast non-woven fabrics carding unit according to claim 5, characterized in that, the left and right sides of framework (1) have all been seted up first circular recess, two first circular recesses communicate with each other with the rectangular chamber, be located the both ends fixedly connected with bull stick of rear side first conveyer belt (23), two bull sticks run through first circular recess, two bull stick one end fixed mounting has second conveyer belt (2), two the upper end of second conveyer belt (2) all fixed mounting has L type pole (15), the upper end of every L type pole (15) is laminated with second rectangular plate (16).
7. A hot-air non-woven fabric carding device according to claim 1, wherein a seventh rectangular groove is formed in the front surface of the frame body (1), the seventh rectangular groove is communicated with the rectangular cavity, a plurality of eighth rectangular grooves are formed in the left and right inner portions of the seventh rectangular groove at equal intervals, an elastic rod (10) is fixedly mounted in each eighth rectangular groove, each elastic rod (10) is in a group opposite to the left and right, and a fourth cylinder (9) is rotatably mounted in the middle of each elastic rod (10).
8. A hot-air non-woven fabric carding device according to claim 1, wherein the two sides of the front surface of the frame body (1) are fixedly provided with fourth rectangular blocks (12), the middle of the two fourth rectangular blocks (12) is rotatably provided with a fifth cylinder (13), the two fourth rectangular blocks (12) are fixedly provided with second rectangular frames (11), the two second rectangular frames (11) are positioned at the upper end of the fifth cylinder (13), the inner parts of the two second rectangular frames (11) are fixedly provided with tooth sockets, the middle of the two second rectangular frames (11) is provided with a sixth cylinder (14), gears (19) are rotatably mounted at both ends of the sixth cylinder (14), each gear (19) is engaged with a tooth socket, folding rods (17) are sleeved on the upper side and the lower side of the sixth cylinder (14), and a spring (18) is fixedly mounted at the joint of each folding rod (17).
CN202210596542.4A 2022-05-30 2022-05-30 Hot air non-woven fabric carding device Active CN114959956B (en)

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