CN221608403U - Wrinkle removing equipment for producing polyester shuttle woven grey cloth - Google Patents
Wrinkle removing equipment for producing polyester shuttle woven grey cloth Download PDFInfo
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- CN221608403U CN221608403U CN202420136937.0U CN202420136937U CN221608403U CN 221608403 U CN221608403 U CN 221608403U CN 202420136937 U CN202420136937 U CN 202420136937U CN 221608403 U CN221608403 U CN 221608403U
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Abstract
The utility model relates to wrinkle removing equipment for polyester shuttle-woven grey cloth production, which relates to the technical field of cloth production and comprises a frame, wherein supporting frames are fixedly arranged at the top and the bottom of the frame, an ironing assembly is arranged between the supporting frames, the ironing assembly is used for ironing the polyester shuttle-woven grey cloth, supporting shafts are rotatably arranged on opposite surfaces of the supporting frames, the supporting shafts are positioned on one side of the ironing assembly, a driving assembly is arranged between the supporting shafts and the frame, the driving assembly is used for driving the supporting shafts to rotate, a first roller and a second roller are rotatably arranged on the supporting shafts, and main sticky brushes are detachably arranged on the first roller and the second roller. The utility model has the effects of reducing the stop of the crease-removing process of the polyester woven grey cloth and improving the efficiency of the crease-removing process of the polyester woven grey cloth.
Description
Technical Field
The utility model relates to the technical field of cloth production, in particular to wrinkle removal equipment for producing polyester woven grey cloth.
Background
The polyester woven grey cloth is formed by interweaving yarns of polyester fiber materials in the warp and weft directions in a mutually perpendicular mode, and crease removal treatment is needed to be carried out on the polyester woven grey cloth in the production process of the polyester woven grey cloth so as to ensure the surface flatness of the polyester woven grey cloth.
The Chinese patent with the authorized bulletin number of CN219218506U in the related art provides a crease-removing device for processing terylene shuttle woven grey cloth, which comprises a frame body, wherein a bearing plate is arranged in the frame body, a heating plate is arranged above the bearing plate, a second electric telescopic rod is arranged between the heating plate and the inner top wall of the frame body, one side of the bearing plate is rotatably provided with a group of rollers, a sticky brush is arranged on the rollers, and the other side of the bearing plate is provided with a group of blowers. The method comprises the steps that polyester woven grey cloth sequentially passes through a part between rollers, a bearing plate and a heating plate and a part between blowers, then a sticky brush is in contact with the surface of the grey cloth, the heating plate is in contact with the grey cloth, when the polyester woven grey cloth moves, the sticky brush firstly sticks down flocks on the polyester woven grey cloth, then the heating plate is used for ironing and removing wrinkles on the polyester woven grey cloth, and finally the blowers generate wind flow to dissipate heat of the ironed polyester woven grey cloth.
In carrying out the present application, the inventors have found that at least the following problems exist in this technology: because the sticky hair has limited sticky hair capability, when the sticky hair is used for a period of time, a worker is required to stop the wrinkle removing device to replace the sticky hair on the roller, so that the wrinkle removing process of the polyester shuttle woven grey cloth is stopped, and the efficiency of the wrinkle removing process of the polyester shuttle woven grey cloth is reduced.
Disclosure of utility model
In order to reduce the stop of the wrinkle removing process of the polyester woven grey cloth and improve the efficiency of the wrinkle removing process of the polyester woven grey cloth, the application provides wrinkle removing equipment for producing the polyester woven grey cloth.
The application provides a wrinkle removal device for producing polyester woven grey cloth, which adopts the following technical scheme:
The utility model provides a dacron shuttle is knitted grey cloth production and is used wrinkle removal equipment, includes the frame, frame top and frame bottom are all fixed to set up the support frame, set up between the support frame and press the subassembly, it is used for ironing dacron shuttle to knit grey cloth to press the subassembly, all rotate on the support frame opposite face and set up the back shaft, the back shaft is located and presses subassembly one side, set up drive assembly between back shaft and the frame, drive assembly is used for driving the back shaft and rotates, rotate on the back shaft and set up first cylinder and second cylinder, all can dismantle on first cylinder and the second cylinder and set up the owner and glue the brush.
According to the technical scheme, the polyester shuttle grey cloth firstly passes through the supporting shafts, then passes through the ironing assemblies, then enables the main viscose brushes on the first roller to be in contact with the surfaces of the polyester shuttle grey cloth, in the process of moving the polyester shuttle grey cloth, firstly, the main viscose brushes on the first roller adhere down the flocks on the polyester shuttle grey cloth, then the ironing assemblies iron and remove wrinkles on the polyester shuttle grey cloth, when the main viscose brushes on the first roller are used for a period of time, the driving assemblies drive the supporting shafts to rotate positively, the first roller is far away from the polyester shuttle grey cloth, the second roller is close to the polyester shuttle grey cloth until the main viscose brushes on the second roller are in contact with the surfaces of the polyester shuttle grey cloth, at this time, the supporting shafts stop rotating, and when the main viscose brushes on the second roller are used for a period of time, the driving assemblies drive the supporting shafts to rotate reversely, the second roller is far away from the surfaces of the polyester shuttle grey cloth, the first brush is close to the surfaces of the polyester shuttle grey cloth, the first brush is stopped, the first brush is driven to rotate alternately, the first brush is stopped, and the working procedure is stopped until the first brush is not in contact with the first brush, and the first brush is stopped, and the first rotary procedure is stopped.
Preferably, the auxiliary electric telescopic rods are fixedly arranged on opposite faces of the support frame, the auxiliary electric telescopic rods are located between the support shaft and the ironing assembly, the output shafts of the auxiliary electric telescopic rods are oppositely arranged, the auxiliary seat is fixedly arranged at the output end of the auxiliary electric telescopic rods, the auxiliary seat is rotatably provided with the auxiliary roller, and the auxiliary roller is detachably provided with the auxiliary sticky brush.
Through adopting above-mentioned technical scheme, when drive assembly drives the back shaft and rotates, the back shaft drives first cylinder and second cylinder and removes, and then there is a period of time in first cylinder and second cylinder and all separate with the grey cloth is knitted to the dacron, so before drive assembly drives the back shaft and rotates, auxiliary electric telescopic handle extension drives the auxiliary seat and removes, auxiliary seat removes and drives auxiliary cylinder and be close to the dacron grey cloth is knitted to the dacron, after vice brush that glues contacts with the dacron grey cloth that is knitted to the dacron, auxiliary electric telescopic handle stops acting, and then in the time that first cylinder and second cylinder all separate with the dacron grey cloth that is knitted to the dacron, vice brush that glues is pasted to the dacron grey cloth, after main brush that glues contacts with the dacron grey cloth that glues shortens and drives auxiliary cylinder, when main brush that glues to the dacron grey cloth that glues, change vice brush that glues after using a period of time, and then be convenient for change main brush and vice brush that glues, reduce the dacron grey cloth that removes the condition that the wrinkle and stop the dacron grey cloth, improve the efficiency of dacron grey cloth that removes the process.
Preferably, the ironing assembly comprises an ironing electric telescopic rod, a heating plate and a workbench, wherein the ironing electric telescopic rod is fixedly connected with the bottom wall of one supporting frame, the output end of the ironing electric telescopic rod is fixedly connected with the heating plate, the workbench is fixedly connected with the top wall of the other supporting frame, and the workbench is positioned under the heating plate.
By adopting the technical scheme, the ironing electric telescopic rod drives the heating plate to approach the workbench, so that the heating plate can iron and remove wrinkles on the polyester shuttle woven grey cloth on the workbench.
Preferably, the first support is rotatably arranged on two sides of the first roller, the first support is fixedly connected with the supporting shaft, the second support is rotatably arranged on two sides of the second roller, the second support is fixedly connected with the supporting shaft, a group of supporting seats are sleeved on the supporting shaft, the supporting shaft is rotatably connected with the supporting seats, and the supporting seats are fixedly connected with the supporting frames.
Through adopting above-mentioned technical scheme, first cylinder is connected with the back shaft through first support, and the second cylinder is connected with the back shaft through the second support, and the back shaft passes through the supporting seat to be connected with the support frame.
Preferably, the driving assembly comprises a driving gear, a driving rack and a driving seat, wherein the driving seat is fixedly arranged on the frame, the driving rack is slidably arranged on the driving seat, the driving gear is fixedly arranged on the end wall of the supporting shaft, and the driving gear is meshed with the driving rack.
By adopting the technical scheme, the driving rack moves to enable the driving gear to rotate, the driving gear rotates to drive the supporting shaft to rotate, and then the driving rack moves back and forth to drive the supporting shaft to rotate forward and backward.
Preferably, the driving seat is provided with a driving groove, the driving groove is internally and slidably provided with a driving block, the driving block is fixedly connected with the driving rack, the driving groove is rotationally provided with a driving screw rod, the driving screw rod is in threaded connection with the driving block, the driving seat is fixedly provided with a driving motor, and an output shaft of the driving motor is fixedly connected with the driving screw rod.
Through adopting above-mentioned technical scheme, driving motor drives the rotation of drive lead screw, and the drive lead screw rotates and drives the drive piece and remove along the drive groove, and the drive piece removes and drives the drive rack and remove.
Preferably, a group of proximity switches are slidably arranged on the driving seat and used for controlling the driving motor, and a group of trigger blocks are arranged on the driving block and used for triggering the proximity switches.
Through adopting above-mentioned technical scheme, when the trigger piece triggered proximity switch, driving motor stopped rotating, made the back shaft be difficult for driving first cylinder and second cylinder action, in order to make first cylinder and second cylinder can contact the dacron shuttle grey cloth of different thickness, through the mode of adjusting proximity switch position, reached the effect of adjusting first cylinder and second cylinder position.
Preferably, a group of adjusting grooves are symmetrically formed in the driving seat, adjusting blocks are slidably arranged in the adjusting grooves, the adjusting blocks are fixedly connected with the proximity switch, adjusting screw rods are rotatably arranged in the adjusting grooves, and the adjusting screw rods are in threaded connection with the adjusting blocks.
Through adopting above-mentioned technical scheme, adjusting screw rotates and drives the regulating block and remove along the adjustment tank, and the regulating block removes and drives proximity switch and remove.
In summary, the present application includes at least one of the following beneficial technical effects:
1. Through setting up frame, support frame, ironing assembly, back shaft, drive assembly, first cylinder, second cylinder and main brush that glues, first cylinder and second cylinder are glued the grey cloth of dacron shuttle loom alternately, reduce the condition of stopping to change and gluing the brush, make dacron shuttle loom grey cloth remove the wrinkle process difficult to stop, improve dacron shuttle loom grey cloth remove the efficiency of wrinkle process;
2. By arranging the auxiliary electric telescopic rod, the auxiliary seat, the auxiliary roller and the auxiliary sticky brush, the main sticky brush and the auxiliary sticky brush can be replaced conveniently, the condition that the wrinkle removing process of the polyester woven grey cloth is stopped is reduced, and the efficiency of the wrinkle removing process of the polyester woven grey cloth is improved;
3. ironing and removing wrinkles on the polyester shuttle-woven grey cloth by arranging an ironing electric telescopic rod, a heating plate and a workbench.
Drawings
Fig. 1 is a schematic structural view of a wrinkle removing apparatus for producing a polyester woven grey fabric according to an embodiment of the present application.
Fig. 2 is a cross-sectional view showing the connection relationship of the auxiliary drum and the supporting frame in the embodiment of the present application.
FIG. 3 is a cross-sectional view showing the connection of the heating plate to the support frame in an embodiment of the present application.
Fig. 4 is a cross-sectional view showing a connection relationship of a first roller and a second roller in an embodiment of the present application.
Fig. 5 is a cross-sectional view showing a connection relationship between a support shaft and a driving seat in an embodiment of the present application.
Fig. 6 is a cross-sectional view showing a connection relationship between a limit switch and a driving seat in an embodiment of the present application.
Reference numerals illustrate: 1. a support frame; 11. a frame; 2. an ironing assembly; 21. ironing an electric telescopic rod; 22. a heating plate; 23. a work table; 3. a support shaft; 31. a support base; 4. a drive assembly; 41. a drive gear; 42. a drive rack; 43. a driving seat; 5. a main sticky brush; 51. a first roller; 511. a first bracket; 52. a second drum; 521. a second bracket; 6. auxiliary sticking brushes; 61. an auxiliary drum; 62. an auxiliary seat; 63. an auxiliary electric telescopic rod; 7. a driving groove; 71. driving a screw rod; 72. a driving block; 73. a driving motor; 8. a proximity switch; 81. a trigger block; 9. an adjustment tank; 91. adjusting a screw rod; 92. and an adjusting block.
Detailed Description
The application is described in further detail below with reference to fig. 1-6.
The embodiment of the application discloses wrinkle removal equipment for producing polyester woven grey cloth. Referring to fig. 1 to 4, it includes a frame 11, and a support frame 1 is installed on the top of the frame 11 and on the bottom wall of the frame 11. An ironing assembly 2 is arranged between the supporting frames 1, and the ironing assembly 2 is used for ironing the polyester shuttle woven grey cloth. Support shafts 3 are arranged on opposite faces of the support frame 1 along the width direction of the support frame 1, wherein one support shaft 3 is positioned right above the other support shaft 3, and the support shaft 3 is positioned on one side of the ironing assembly 2. A driving component 4 is arranged between one end of the supporting seat 31 and the frame 11, and the driving component 4 is used for driving the supporting shaft 3 to rotate. The first roller 51 and the second roller 52 are mounted on the support shaft 3, and the first roller 51 and the second roller 52 are arranged along the width direction of the support frame 1. The outer walls of the first roller 51 and the second roller 52 are wrapped with the main sticky brush 5, and the outer walls of the first roller 51 and the second roller 52 are connected with the main sticky brush 5 through magic tapes. The polyester woven grey cloth passes through the supporting shafts 3, then passes through the ironing assemblies 2, and then the main sticky brush 5 on the first roller 51 is contacted with the surface of the polyester woven grey cloth. In the process of moving the polyester woven grey cloth, the main viscose brush 5 on the first roller 51 firstly sticks down the flock on the polyester woven grey cloth, and then the ironing component 2 carries out ironing and wrinkle removal on the polyester woven grey cloth. When the main sticky brush 5 on the first roller 51 is used for a period of time, the driving assembly 4 drives the supporting shaft 3 to rotate, so that the first roller 51 is far away from the polyester woven grey cloth, and the second roller 52 is close to the polyester woven grey cloth. Until the main sticky brush 5 on the second roller 52 contacts with the surface of the terylene shuttle loom grey cloth, the supporting shaft 3 stops rotating, at the moment, the main sticky brush 5 on the second roller 52 sticks down the flock on the terylene shuttle loom grey cloth, and the staff replaces the main sticky brush 5 on the first roller 51. When the main sticky brush 5 on the second roller 52 is used for a period of time, the driving component 4 drives the supporting shaft 3 to rotate, so that the second roller 52 is far away from the polyester woven grey cloth, and the first roller 51 is close to the polyester woven grey cloth. Until the main sticky brush 5 on the first roller 51 contacts with the surface of the terylene shuttle loom grey cloth, the supporting shaft 3 stops rotating, at the moment, the main sticky brush 5 on the first roller 51 sticks down the flock on the terylene shuttle loom grey cloth, and a worker replaces the main sticky brush 5 on the second roller 52. And then drive the mode that back shaft 3 rotated through drive assembly 4, make back shaft 3 drive first cylinder 51 and second cylinder 52 alternately glue the hair to the dacron and weave grey cloth, reduce the circumstances of stopping to change and gluing the brush, make dacron weave grey cloth remove the wrinkle process be difficult for stopping, improve dacron and weave grey cloth remove the efficiency of wrinkle process.
In order to reduce the stop of the wrinkle removing process of the polyester woven grey cloth, referring to fig. 1 to 4, auxiliary electric telescopic rods 63 are mounted on opposite sides of the support frame 1, and the auxiliary electric telescopic rods 63 are located between the support shaft 3 and the ironing assembly 2. The output ends of the auxiliary electric telescopic rods 63 are arranged oppositely, and the auxiliary seats 62 are arranged on the output ends of the auxiliary electric telescopic rods 63. The auxiliary drum 61 is mounted on the auxiliary seat 62, and the auxiliary drum 61 is disposed along the width direction of the supporting frame 1. The outer wall of the auxiliary roller 61 is wrapped with the auxiliary sticky brush 6, and the outer wall of the auxiliary roller 61 is connected with the auxiliary sticky brush 6 through a magic tape. When the driving component 4 drives the supporting shaft 3 to rotate, the supporting shaft 3 drives the first roller 51 and the second roller 52 to move, so that the first roller 51 and the second roller 52 are separated from the polyester woven grey cloth within a period of time. Therefore, before the driving assembly 4 drives the supporting shaft 3 to rotate, the auxiliary electric telescopic rod 63 stretches to drive the auxiliary seat 62 to move, the auxiliary seat 62 moves to drive the auxiliary roller 61 to approach the polyester woven grey cloth, and after the auxiliary sticky brush 6 contacts the polyester woven grey cloth, the auxiliary electric telescopic rod 63 stops acting, so that the auxiliary sticky brush 6 glues the polyester woven grey cloth in the period that the first roller 51 and the second roller 52 are separated from the polyester woven grey cloth. When the main sticky brush 5 contacts with the polyester shuttle grey cloth, the auxiliary electric telescopic rod 63 shortens and drives the auxiliary roller 61 to reset, and when the main sticky brush 5 glues the polyester shuttle grey cloth, the auxiliary sticky brush 6 after a period of use is replaced. Thereby being convenient for replacing the main sticky brush 5 and the auxiliary sticky brush 6, reducing the stop condition of the crease-removing process of the polyester woven grey cloth and improving the efficiency of the crease-removing process of the polyester woven grey cloth.
For ironing and dewrinkling the polyester woven grey fabric, with reference to fig. 1 to 4, the ironing assembly 2 comprises an ironing electric telescopic rod 21, a heating plate 22 and a work table 23. The top end of the ironing electric telescopic rod 21 is welded with the bottom wall of one supporting frame 1, and the output end of the ironing electric telescopic rod 21 is welded with the top of the heating plate 22. The work table 23 is welded to the top wall of the other support frame 1, and the work table 23 is located directly below the heating plate 22. The ironing electric telescopic rod 21 drives the heating plate 22 to approach the workbench 23, so that the heating plate 22 can iron and remove wrinkles on the polyester woven grey cloth on the workbench 23.
In order to mount the first roller 51 and the second roller 52 between the supporting frames 1, referring to fig. 1 and 4, the end walls of the first roller 51 are rotatably mounted with the first brackets 511, and the end of the first brackets 511 away from the first roller 51 is welded to the side walls of the supporting seats 31. The end walls of the second roller 52 are rotatably provided with a second bracket 521, and one end of the second bracket 521, which is far away from the second roller 52, is welded with the side wall of the supporting seat 31. The adjacent first and second brackets 511 and 521 are located on the same plane, and an included angle between the adjacent first and second brackets 511 and 521 is an obtuse angle. The support shaft 3 is sleeved with a group of support seats 31, the support seats 31 are positioned on the back of the first bracket 511, and the support seats 31 are positioned on the back of the second support. The support shaft 3 is rotatably connected with the support seat 31 through a bearing, and the support seat 31 is welded with the opposite surface of the support frame 1. The first roller 51 is connected to the support shaft 3 through the first bracket 511, the second roller 52 is connected to the support shaft 3 through the second bracket 521, and the support shaft 3 is connected to the support frame 1 through the support base 31.
In order to drive the support shaft 3 to rotate, referring to fig. 4 to 6, there are two sets of driving assemblies 4, wherein one driving assembly 4 is located above the other driving assembly 4, and the driving assemblies 4 are symmetrically arranged. The drive assembly 4 includes a drive gear 41, a drive rack 42 and a drive socket 43. The driving seat 43 is welded on the frame 11, and the opposite surface of the driving seat 43 is provided with a driving groove 7 along the length direction of the supporting frame 1. The drive block 72 is slidably disposed within the drive slot 7, and the opposite face of the drive block 72 is welded to the drive rack 42. The drive rack 42 is intermeshed with the drive gear 41, and the drive gear 41 is welded to the end wall of the support shaft 3. One end of the driving seat 43 is provided with a driving motor 73, and an output shaft of the driving motor 73 penetrates through the end wall of the driving seat 43. The output shaft of the driving motor 73 is positioned at one end in the driving groove 7 and is provided with a driving screw rod 71, the driving screw rod 71 is rotationally connected with the inner wall of the driving groove 7, and the driving screw rod 71 is in threaded connection with a driving block 72. The driving motor 73 drives the driving screw rod 71 to rotate, the driving screw rod 71 rotates to drive the driving block 72 to move along the driving groove 7, and the driving block 72 moves to drive the driving rack 42 to move. The driving rack 42 moves to enable the driving gear 41 to rotate, the driving gear 41 rotates to drive the supporting shaft 3 to rotate, and then the driving rack 42 reciprocates to drive the supporting shaft 3 to rotate positively and reversely.
In order to facilitate the contact between the main viscose brush 5 and the polyester woven grey cloth, referring to fig. 4 to 6, a group of adjusting grooves 9 are symmetrically formed on the opposite surfaces of the driving seat 43, and the adjusting grooves 9 are parallel to the driving grooves 7. An adjusting block 92 is slidably arranged in the adjusting groove 9, a proximity switch 8 is arranged on the adjusting block 92, and the proximity switch 8 is used for controlling the driving motor 73. An adjusting screw rod 91 is rotatably arranged in the adjusting groove 9, and the adjusting screw rod 91 is in threaded connection with an adjusting block 92. A group of trigger blocks 81 are symmetrically arranged on the driving block 72, and the trigger blocks 81 are used for triggering the proximity switch 8. The adjusting screw rod 91 rotates to drive the adjusting block 92 to move along the adjusting groove 9, and the adjusting block 92 moves to drive the proximity switch 8 to move, so that the position of the proximity switch 8 is adjusted. When the driving block 72 moves, the driving block 72 drives the trigger block 81 to move, and when the trigger block 81 moves to trigger the proximity switch 8, the driving motor 73 stops. At this time, the rotation of the support shaft 3 is stopped, and the first roller 51 and the second roller 52 maintain the current positions. By adopting the mode of adjusting the position of the proximity switch 8, the moving range of the driving block 72 is adjusted, and then the rotating range of the supporting shaft 3 is adjusted, so that the effect of adjusting the positions of the first roller 51 and the second roller 52 is achieved, and the first roller 51 and the second roller 52 can be conveniently contacted with polyester shuttle woven grey cloth with different thicknesses.
The embodiment of the application provides wrinkle removal equipment for producing polyester woven grey cloth, which is implemented by the following principle: one side of the terylene woven grey cloth passes through a group of first rollers 51, a group of second rollers 53 and a group of auxiliary rollers 61, the terylene woven grey cloth passes through a position between the heating plate 22 and the workbench 23, the main sticky brush 5 on the first rollers 51 is contacted with the surface of the terylene woven grey cloth, and the heating plate 22 is contacted with the surface of the terylene woven grey cloth. In the process of moving the polyester woven grey cloth, the main sticky brush 5 on the first roller 51 firstly glues down the flock on the polyester woven grey cloth, and then the heating plate 22 carries out ironing and wrinkle removal on the polyester woven grey cloth. When the main sticky brush 5 on the first roller 51 is used for a period of time, the auxiliary electric telescopic rod 63 drives the auxiliary sticky brush 6 to contact with the polyester shuttle grey cloth, and the auxiliary sticky brush 6 glues the polyester shuttle grey cloth; then, the driving motor 73 is started to rotate the supporting shaft 3, so that the first roller 51 is far away from the terylene woven grey cloth, and the second roller 52 is close to the terylene woven grey cloth. When the main sticky brush 5 on the second roller 52 contacts with the polyester shuttle woven grey cloth, the driving motor 73 stops, and the auxiliary electric telescopic rod 63 drives the auxiliary roller 61 to reset. At this time, the main viscose brush 5 on the second drum 52 sticks down the flock on the polyester shuttle woven grey cloth, and the worker replaces the main viscose brush 5 on the first drum 51. When the main sticky brush 5 on the second roller 52 is used for a period of time, the auxiliary electric telescopic rod 63 drives the auxiliary sticky brush 6 to contact with the polyester shuttle grey cloth, and the auxiliary sticky brush 6 glues the polyester shuttle grey cloth; then, the driving motor 73 is started to rotate the supporting shaft 3, so that the second roller 52 is far away from the terylene woven grey cloth, and the first roller 51 is close to the terylene woven grey cloth. When the main sticky brush 5 on the first roller 51 contacts with the polyester shuttle woven grey cloth, the driving motor 73 stops, and the auxiliary electric telescopic rod 63 drives the auxiliary roller 61 to reset. At this time, the main viscose brush 5 on the first drum 51 sticks down the flock on the polyester shuttle woven grey cloth, and the worker replaces the main viscose brush 5 on the second drum 52. When the main sticky brush 5 glues the polyester shuttle woven grey cloth, the auxiliary sticky brush 6 is replaced after a period of use. The first roller 51 and the second roller 52 are driven by the supporting shaft 3 to alternately adhere the polyester woven grey cloth, so that the condition that the adhesive brush is replaced after the machine is stopped is reduced, the crease-removing process of the polyester woven grey cloth is not easy to stop, and the efficiency of the crease-removing process of the polyester woven grey cloth is improved.
The above embodiments are not intended to limit the scope of the present application, so: all equivalent changes in structure, shape and principle of the application should be covered in the scope of protection of the application.
Claims (8)
1. The utility model provides a dacron shuttle is knitted grey cloth production and is used wrinkle removal equipment, includes frame (11), frame (11) top and frame (11) bottom are all fixed to set up support frame (1), set up between support frame (1) and iron subassembly (2), iron subassembly (2) and be used for ironing dacron shuttle and knit grey cloth, its characterized in that: the utility model discloses a ironing machine, including support frame (1), main brush (5) that glues, support frame (1) are all rotated on the opposite face and are set up back shaft (3), back shaft (3) are located ironing assembly (2) one side, set up drive assembly (4) between back shaft (3) and frame (11), drive assembly (4) are used for driving back shaft (3) and rotate, rotate on back shaft (3) and set up first cylinder (51) and second cylinder (52), all can dismantle on first cylinder (51) and second cylinder (52) and set up main brush (5).
2. The wrinkle removal apparatus for producing polyester woven grey cloth according to claim 1, wherein: the auxiliary electric telescopic device is characterized in that auxiliary electric telescopic rods (63) are fixedly arranged on opposite surfaces of the supporting frame (1), the auxiliary electric telescopic rods (63) are located between the supporting shaft (3) and the ironing assembly (2), output shafts of the auxiliary electric telescopic rods (63) are oppositely arranged, auxiliary seats (62) are fixedly arranged at output ends of the auxiliary electric telescopic rods (63), auxiliary rollers (61) are rotatably arranged on the auxiliary seats (62), and auxiliary brushes (6) are detachably arranged on the auxiliary rollers (61).
3. The wrinkle removal apparatus for polyester woven grey fabric production according to claim 2, wherein: ironing unit (2) are including ironing electric telescopic handle (21), hot plate (22) and workstation (23), iron electric telescopic handle (21) and wherein support frame (1) diapire fixed connection, iron output and hot plate (22) fixed connection of electric telescopic handle (21), workstation (23) and another support frame (1) roof fixed connection, workstation (23) are located hot plate (22) under.
4. The wrinkle removal apparatus for producing polyester woven grey cloth according to claim 1, wherein: the utility model discloses a support frame, including first cylinder (51), back-up shaft (31), first cylinder (51) both sides all rotate and set up first support (511), first support (511) and back-up shaft (3) fixed connection, second cylinder (52) both sides all rotate and set up second support (521), second support (521) and back-up shaft (3) fixed connection, a set of supporting seat (31) are established to the cover on back-up shaft (3), back-up shaft (3) and supporting seat (31) rotate to be connected, supporting seat (31) and support frame (1) fixed connection.
5. The wrinkle removal apparatus for polyester woven grey fabric production according to claim 4, wherein: the driving assembly (4) comprises a driving gear (41), a driving rack (42) and a driving seat (43), wherein the driving seat (43) is fixedly arranged on the frame (11), the driving rack (42) is slidably arranged on the driving seat (43), the driving gear (41) is fixedly arranged on the end wall of the supporting shaft (3), and the driving gear (41) and the driving rack (42) are meshed with each other.
6. The wrinkle removal apparatus for polyester woven grey fabric production according to claim 5, wherein: the driving seat (43) is provided with a driving groove (7), a driving block (72) is slidably arranged in the driving groove (7), the driving block (72) is fixedly connected with a driving rack (42), a driving screw (71) is rotationally arranged in the driving groove (7), the driving screw (71) is in threaded connection with the driving block (72), a driving motor (73) is fixedly arranged on the driving seat (43), and an output shaft of the driving motor (73) is fixedly connected with the driving screw (71).
7. The wrinkle removal apparatus for polyester woven grey fabric production according to claim 6, wherein: the driving seat (43) is provided with a group of proximity switches (8) in a sliding mode, the proximity switches (8) are used for controlling the driving motor (73), the driving block (72) is provided with a group of triggering blocks (81), and the triggering blocks (81) are used for triggering the proximity switches (8).
8. The wrinkle removal apparatus for polyester woven grey fabric production according to claim 7, wherein: a group of adjusting grooves (9) are symmetrically formed in the driving seat (43), adjusting blocks (92) are slidably arranged in the adjusting grooves (9), the adjusting blocks (92) are fixedly connected with the proximity switch (8), adjusting screw rods (91) are rotationally arranged in the adjusting grooves (9), and the adjusting screw rods (91) are in threaded connection with the adjusting blocks (92).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202420136937.0U CN221608403U (en) | 2024-01-19 | 2024-01-19 | Wrinkle removing equipment for producing polyester shuttle woven grey cloth |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202420136937.0U CN221608403U (en) | 2024-01-19 | 2024-01-19 | Wrinkle removing equipment for producing polyester shuttle woven grey cloth |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN221608403U true CN221608403U (en) | 2024-08-27 |
Family
ID=92429854
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202420136937.0U Active CN221608403U (en) | 2024-01-19 | 2024-01-19 | Wrinkle removing equipment for producing polyester shuttle woven grey cloth |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN221608403U (en) |
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2024
- 2024-01-19 CN CN202420136937.0U patent/CN221608403U/en active Active
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