CN215248444U - Non-woven fabric winding machine - Google Patents

Non-woven fabric winding machine Download PDF

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Publication number
CN215248444U
CN215248444U CN202121120957.1U CN202121120957U CN215248444U CN 215248444 U CN215248444 U CN 215248444U CN 202121120957 U CN202121120957 U CN 202121120957U CN 215248444 U CN215248444 U CN 215248444U
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shaped support
convolution
butt joint
woven fabric
spring
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CN202121120957.1U
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张建林
武凯军
任崇林
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Linyi Yudong Textile Machinery Co ltd
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Linyi Yudong Textile Machinery Co ltd
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Abstract

The utility model discloses a non-woven fabrics rolling machine, including L type support, U-shaped support one and U-shaped support two, L type support includes the horizontal part of one side and the vertical part of one side, and wherein U-shaped support one passes through the bolt fastening in horizontal part's top, and installs in the one side of keeping away from the vertical part, U-shaped support two passes through the bolt fastening in the top of vertical part, but the top swivelling joint of U-shaped support one installs a set of pressure and covers the roller, but the top demountable installation of U-shaped support two has a set of convolution mechanism of accomodating the non-woven fabrics main part, U-shaped support two both sides construct there is backup pad structure, and the top of backup pad is seted up the arc wall one that supplies convolution mechanism rotation to install, and the top electromagnetism of arc wall one adsorbs and installs a set of electromagnetism absorption formula buckle. This non-woven fabrics rolling machine, rational in infrastructure, the convenient installation of being convenient for realize the non-woven fabrics roller is dismantled, and the fold of non-woven fabrics when effectively reducing the convolution has higher practical value.

Description

Non-woven fabric winding machine
Technical Field
The utility model belongs to the technical field of the non-woven fabrics production, concretely relates to non-woven fabrics rolling machine.
Background
Nonwoven fabrics, also known as non-woven fabrics, needle punched cotton, and the like, are composed of oriented or random fibers. It is called a cloth because of its appearance and certain properties. The non-woven fabric has the characteristics of moisture resistance, air permeability, flexibility, light weight, no combustion supporting, easy decomposition, no toxicity or irritation, rich color, low price, recycling and the like. For example, the polypropylene (pp material) granules are mostly adopted as raw materials and are produced by a continuous one-step method of high-temperature melting, spinning, laying a line and hot-pressing coiling.
In the non-woven fabrics production, last process is accomodate for the convolution to the non-woven fabrics material, and the cloth roller that is used for the convolution non-woven fabrics material now has the butt joint installation of being not convenient for and convolution in-process phenomenon such as easily exists the non-woven fabrics and corrugates in the use, and how to guarantee that the convenient installation of non-woven fabrics roller is dismantled and reduce the non-woven fabrics and corrugate when guaranteeing its steady rotation is the technical problem that await the opportune moment at present.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a non-woven fabrics rolling machine to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a non-woven fabric winding machine comprises an L-shaped support, a U-shaped support I and a U-shaped support II;
the L-shaped support comprises a horizontal part at one side and a vertical part at one side, wherein a first U-shaped support is fixed above the horizontal part through a bolt and is arranged at one side far away from the vertical part;
support plate structures are constructed on two sides of the U-shaped support II, an arc-shaped groove I for the convolution mechanism to be rotatably installed is formed in the top of the support plate, a group of electromagnetic adsorption type pinch plates are installed above the arc-shaped groove I in an electromagnetic adsorption mode, the convolution mechanism comprises a convolution shaft which is rotatably connected with the U-shaped support II, a spring pressing plate which is connected with the outer edge face of the convolution shaft through a spring, and a driven gear which is coaxial with one side of the convolution shaft, and the driven gear is in matched transmission with a group of driving equipment;
the two sides of the vertical part of the L-shaped support are provided with butt-joint folded plates, the two groups of butt-joint folded plates are respectively connected with the two ends of a group of butt-joint plates through adjustable components, and the tops of the butt-joint plates are rotatably connected with a group of butt-joint rollers.
Preferably, the both sides structure of convolution axle has the connecting axle of backup pad on the two of butt joint U-shaped support, the one end and the connecting plate of electromagnetism absorption formula buckle are articulated, and the arc wall two has been seted up towards one side of connecting axle to the electromagnetism absorption formula buckle, and wherein, the equal gomphosis of the inner fringe face of arc wall one and arc wall two has the roller structure of butt connecting axle.
Preferably, the groove that a set of confession spring clamp plate was installed is seted up to the outer fringe face of convolution axle, spring clamp plate and convolution axle are connected through the multiunit spring that the equidistance set up, and the spring tightly ties spring clamp plate in the convolution epaxially.
Preferably, the driving device matched with the driven gear is a driving motor fixedly arranged on two sides of the U-shaped support, a group of transverse connecting plates for supporting the driving motor are constructed on the U-shaped support II, and a driving gear meshed with the driven gear is assembled at the end part of a motor shaft of the driving motor.
Preferably, the adjustable component includes the inserted bar of butt joint board and the hydraulic telescoping rod of butt joint folded plate, hydraulic telescoping rod's tip is seted up and is supplied inserted bar male round hole, and the downthehole linear bearing who installs the sliding fit inserted bar, the peripheral cover of inserted bar is equipped with buffer spring, buffer spring's both ends butt hydraulic telescoping rod's tip and butt joint board's tip respectively.
The utility model discloses a technological effect and advantage: the non-woven fabric winder has the advantages that due to the fact that the U-shaped bracket II is in butt joint with the connecting shafts at the two end parts of the convolution shaft through the openable electromagnetic adsorption type pinch plate, when the driven gear at the end part of the connecting shaft is driven by the driving gear, driving of equipment can be achieved rapidly, and convenient butt joint transmission is achieved; the convolution mechanism consists of the convolution shaft and the spring pressing plate, so that the edge of the non-woven fabric main body can be conveniently clamped after installation, and the edge of the non-woven fabric main body can be conveniently and quickly positioned when convolution work starts; the butt roller both ends are by the butt joint board butt joint, and the butt joint board passes through inserted bar and buffer spring butt joint hydraulic telescoping rod, covers the exhibition flat to the pressure of non-woven fabrics main part when can realizing the convolution of non-woven fabrics main part, reduces the appearance of fold.
Drawings
FIG. 1 is a schematic structural diagram of the convolution state of the non-woven fabric of the present invention;
FIG. 2 is a schematic structural view of the present invention;
FIG. 3 is an enlarged schematic view of the structure at A in FIG. 2 according to the present invention;
fig. 4 is an enlarged schematic view of the structure at B in fig. 2 according to the present invention.
In the figure: the device comprises a 1L-shaped support, a 101 butt joint folded plate, a 2U-shaped support I, a 201 pressing roller, a 3U-shaped support II, a 301 electromagnetic adsorption type buckling plate, a 4 convolution mechanism, a 401 convolution shaft, a 402 spring pressing plate, a 403 driven gear, a 5 driving motor, a 501 driving gear, a 6 adjustable component, a 7 butt joint roller, a 701 butt joint plate, an 8 inserted link, a 801 buffer spring, a 9 hydraulic telescopic rod, a 901 linear bearing and a 10 non-woven fabric main body.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Unless defined otherwise, all references to up, down, left, right, front, back, inner and outer directions herein are to be interpreted as referring to up, down, left, right, front, back, inner and outer directions in the drawings to which the invention is applied, and all references are hereby incorporated herein by reference.
The utility model provides a non-woven fabric winding machine as shown in figures 1-4, which comprises an L-shaped bracket 1, a U-shaped bracket I2 and a U-shaped bracket II 3;
the L-shaped support 1 comprises a horizontal part at one side and a vertical part at one side, wherein a U-shaped support 2 is fixed above the horizontal part through bolts and is arranged at one side far away from the vertical part, a U-shaped support II 3 is fixed above the vertical part through bolts, the top of the U-shaped support I2 is rotatably connected with a group of pressing rollers 201, and the top of the U-shaped support II 3 is detachably provided with a group of convolution mechanisms 4 for accommodating the non-woven fabric main body 10;
supporting plate structures are constructed on two sides of the U-shaped support II 3, a first arc-shaped groove for rotatably mounting the convolution mechanism 4 is formed in the top of the supporting plate, a group of electromagnetic adsorption type pinch plates 301 are mounted above the first arc-shaped groove in an electromagnetic adsorption mode, the convolution mechanism 4 comprises a convolution shaft 401 rotatably connected with the U-shaped support II 3, a spring pressing plate 402 connected with the outer edge surface of the convolution shaft 401 through a spring, and a driven gear 403 coaxial with one side of the convolution shaft 401, and the driven gear 403 is in matched transmission with a group of driving devices;
the L-shaped bracket 1 is provided with butt-joint folded plates 101 at two sides of a vertical part, two groups of butt-joint folded plates 101 are respectively connected with two ends of a group of butt-joint plates 701 through adjustable components 6, and a group of butt-joint rollers 7 are rotatably connected and installed at the tops of the butt-joint plates 701.
Specifically, the two sides of the convolution shaft 401 are constructed with a connecting shaft (in specific implementation, the connecting shaft is a stepped shaft to prevent displacement from affecting the engagement between the driven gear 403 and the driving gear 501) butted with the supporting plate on the U-shaped bracket two 3, one end of the electromagnetic adsorption buckle plate 301 is hinged with the connecting plate, and one side of the electromagnetic adsorption buckle plate 301 facing the connecting shaft is provided with an arc-shaped groove two, wherein the inner edge surfaces of the arc-shaped groove one and the arc-shaped groove two are both embedded with a roller structure butted with the connecting shaft, the driving device matched with the driven gear 403 is a driving motor 5 fixedly installed on the side surface of the U-shaped bracket two 3, the U-shaped bracket two 3 is constructed with a group of transverse connecting plates supporting the driving motor 5, the end part of a motor shaft of the driving motor 5 is assembled with the driving gear 501 meshed with the driven gear 403, the U-shaped bracket two 3 is butted with the two end parts of the convolution shaft 401 through the openable electromagnetic adsorption buckle plate 301, when the driven gear 403 at the end of the connecting shaft is driven by the driving gear 501, the driving of the equipment can be quickly realized, and the convenient butt-joint transmission is realized.
Specifically, a set of groove that supplies spring clamp plate 402 to install is seted up to convolution axle 401's outer fringe face, spring clamp plate 402 and convolution axle 401 are through the multiunit spring coupling that the equidistance set up, and the spring tightly ties spring clamp plate 402 on convolution axle 401, benefit from convolution mechanism 4 and comprise convolution axle 401 and spring clamp plate 402, can be convenient realization installation back to the centre gripping at non-woven fabrics main part 10 edge, make things convenient for the swift location at non-woven fabrics main part 10 edge when convolution work begins.
Specifically, adjustable component 6 is including docking peg 8 and the hydraulic telescoping rod 9 of butt joint folded plate 101 of butt joint board 701, hydraulic telescoping rod 9's tip is seted up and is supplied 8 male round holes of peg, and downthehole linear bearing 901 who installs sliding fit peg 8, the peripheral cover of peg 8 is equipped with buffer spring 801, buffer spring 801's both ends are butt joint by butt joint board 701 respectively hydraulic telescoping rod 9's tip and butt joint board 701's tip, butt joint roller 7 both ends, and butt joint board 701 passes through peg 8 and buffer spring 801 butt joint hydraulic telescoping rod 9, can realize the non-woven fabrics main part 10 when convoluteing and press the cover flattening to non-woven fabrics main part 10, reduces the appearance of fold.
The working principle of the non-woven fabric winder is that before use, the electromagnetic adsorption type buckle plate 301 needs to be powered off, the convolution mechanism 4 is installed after the electromagnetic adsorption type buckle plate 301 is opened, after the convolution mechanism 4 is installed, the electromagnetic adsorption type buckle plate 301 is closed and electrified for adsorption, at the moment, the driven gear 403 is meshed with the driving gear 501, when the non-woven fabric winder is used, the non-woven fabric main body 10 only needs to penetrate through the lower part of the pressing roller 201 to be flat and penetrate through the upper part of the abutting roller 7 to be finally abutted with the convolution shaft 401, the spring pressing plate 402 is opened by applying force to fill the edge of the non-woven fabric main body 10 into the crack, when the spring pressing plate 402 is closed, the edge of the non-woven fabric main body 10 is limited, the hydraulic telescopic rod 9 is adjusted to enable the abutting roller 7 to abut against and tension the non-woven fabric main body 10, at the moment, the driving motor 5 is started, the driving gear 501 drives the driven gear 403 to drive the convolution shaft 401 to rotate to convolute the non-woven fabric main body 10, after convolution is finished, can lift off the non-woven fabrics main part 10 that the convolution was accomplished together with convolution mechanism 4 after opening for the outage of electromagnetic absorption formula buckle 301, this non-woven fabrics rolling machine, rational in infrastructure, the convenient installation of the non-woven fabrics roller of being convenient for realize is dismantled, and the fold of non-woven fabrics when effectively reducing the convolution has higher practical value.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications and variations can be made in the embodiments or in part of the technical features of the embodiments without departing from the spirit and the scope of the invention.

Claims (5)

1. A non-woven fabric winding machine comprises an L-shaped support (1), a U-shaped support I (2) and a U-shaped support II (3);
the method is characterized in that: the L-shaped support (1) comprises a horizontal part at one side and a vertical part at one side, wherein a first U-shaped support (2) is fixed above the horizontal part through bolts and is installed at one side far away from the vertical part, a second U-shaped support (3) is fixed above the vertical part through bolts, the top of the first U-shaped support (2) is rotatably connected with a group of pressing rollers (201), and the top of the second U-shaped support (3) is detachably provided with a group of convolution mechanisms (4) for accommodating the non-woven fabric main body (10);
supporting plate structures are constructed on two sides of the U-shaped support II (3), a first arc-shaped groove for rotatably mounting the convolution mechanism (4) is formed in the top of the supporting plate, a group of electromagnetic adsorption type buckle plates (301) are mounted above the first arc-shaped groove in an electromagnetic adsorption mode, the convolution mechanism (4) comprises a convolution shaft (401) rotatably connected with the U-shaped support II (3), a spring pressing plate (402) connected with the outer edge surface of the convolution shaft (401) through a spring, and a driven gear (403) coaxial with one side of the convolution shaft (401), and the driven gear (403) is in matched transmission with a group of driving equipment;
the L-shaped support is characterized in that butt joint folded plates (101) are constructed on two sides of a vertical portion of the L-shaped support (1), the two groups of butt joint folded plates (101) are respectively connected with two ends of a group of butt joint plates (701) through adjustable components (6), and a group of butt joint rollers (7) are rotatably connected and installed on the tops of the butt joint plates (701).
2. The non-woven fabric winding machine according to claim 1, characterized in that: the both sides of convolution axle (401) are constructed the connecting axle that the backup pad was gone up in butt joint U-shaped support two (3), the one end and the connecting plate of electromagnetic adsorption formula buckle (301) are articulated, and electromagnetic adsorption formula buckle (301) have seted up arc wall two towards one side of connecting axle, and wherein, the equal gomphosis of inner fringe face of arc wall one and arc wall two has the roller structure of butt connecting axle.
3. The non-woven fabric winding machine according to claim 1, characterized in that: the outer fringe face of convolution axle (401) is seted up a set of groove that supplies spring clamp plate (402) to install, spring clamp plate (402) and convolution axle (401) are connected through the multiunit spring that the equidistance set up, and the spring tightly ties spring clamp plate (402) on convolution axle (401).
4. The non-woven fabric winding machine according to claim 1, characterized in that: the driving device matched with the driven gear (403) is a driving motor (5) fixedly mounted on the side face of the U-shaped support II (3), a group of transverse connecting plates for supporting the driving motor (5) is constructed on the U-shaped support II (3), and the end part of a motor shaft of the driving motor (5) is provided with a driving gear (501) meshed with the driven gear (403).
5. The non-woven fabric winding machine according to claim 1, characterized in that: adjustable component (6) are including inserted bar (8) and the hydraulic telescoping rod (9) of butt joint folded plate (101) of butt joint board (701), the tip of hydraulic telescoping rod (9) is seted up and is supplied inserted bar (8) male round hole, and installs linear bearing (901) of sliding fit inserted bar (8) in the hole, the peripheral cover of inserted bar (8) is equipped with buffer spring (801), buffer spring (801)'s both ends butt respectively the tip of hydraulic telescoping rod (9) and the tip of butt joint board (701).
CN202121120957.1U 2021-05-24 2021-05-24 Non-woven fabric winding machine Active CN215248444U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121120957.1U CN215248444U (en) 2021-05-24 2021-05-24 Non-woven fabric winding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121120957.1U CN215248444U (en) 2021-05-24 2021-05-24 Non-woven fabric winding machine

Publications (1)

Publication Number Publication Date
CN215248444U true CN215248444U (en) 2021-12-21

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ID=79457677

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121120957.1U Active CN215248444U (en) 2021-05-24 2021-05-24 Non-woven fabric winding machine

Country Status (1)

Country Link
CN (1) CN215248444U (en)

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