An automated production apparatus for textile
By arranging multiple hot press rollers of different diameters in an array and using an automated control system, the problem of nonwoven fabric hot pressing equipment being unable to automatically switch between hot pressing and printing was solved, achieving high-efficiency automation in nonwoven fabric production and saving materials.
Patent Information
- Application Number
- CN202511404166.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-29
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2045-09-29
AI Technical Summary
Existing nonwoven fabric hot pressing equipment cannot achieve automated switching between hot pressing and hot pressing printing, and manual operation is required when changing nonwoven fabric patterns, resulting in low production efficiency and material waste.
An automated production equipment for textiles was designed, which uses an array of multiple hot press rollers with different diameters. The hot press rollers are automatically switched by a drive motor, and the automatic switching between hot pressing and printing is achieved by combining a servo motor and a lifting component. The automatic threading of nonwoven fabric and the disassembly and replacement of rollers are achieved by using a slider and slide rail structure.
It improves the flexibility and efficiency of nonwoven fabric production, reduces manual operation, reduces material waste, and realizes the automated switching between hot pressing and printing, as well as the convenient threading of nonwoven fabrics.
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Figure CN120889117B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of textile production, in particular to an automatic production equipment for textiles. BACKGROUND
[0002] Non-woven fabric is a kind of textile, also known as non-woven fabric, is made of directional or random arrangement of fibers by friction, cohesion, adhesion or combination of these methods. It is different from traditional textiles, not by interweaving yarns, but by directly bonding fibers together.
[0003] At present, hot pressing is required in the production of non-woven fabric, which is to heat the non-woven fabric to a certain temperature to make the fibers fuse and bond into shape. Its basic principle is to heat the fiber material in the non-woven fabric to above the melting point by using a hot press, and apply a certain pressure. Under the action of high temperature and high pressure, the intermolecular force between the fibers increases, so that the fiber materials are bonded together, forming a strong and elastic textile. If necessary, a pattern can be set on the hot press roller to achieve simultaneous printing of non-woven fabric. Some patterns on non-woven fabric are continuous, so the continuous pattern on a single hot press roller can achieve continuous printing while hot pressing. However, different non-woven fabric patterns may be different, and some non-woven fabric patterns are periodically distributed, so it is necessary to replace the printing roller with different pattern lines for hot pressing and printing. However, the current non-woven fabric hot pressing equipment is designed with a single hot press roller. When hot pressing, hot pressing and printing, or hot pressing and replacing the hot press roller with different pattern lines to process and produce non-woven fabric, different equipment or different press rollers are usually required. The automation is low, the operation is complicated, and the production efficiency is reduced.
[0004] The Chinese patent with application number CN202311058035.6 discloses a non-woven fabric hot pressing equipment, which includes a base, a moving structure on the base for driving the non-woven fabric to move, a hot press roller on the base, the hot press roller including a hot press strip and an extrusion strip, the hot press strip and the extrusion strip together forming a ring, the hot press strip being capable of hot pressing the non-woven fabric, a rotating structure on the base for driving the hot press roller to rotate, the hot press strip being capable of hot pressing the non-woven fabric, and the extrusion strip being capable of cooling the non-woven fabric, so that the hot pressing time of different non-woven fabrics is the same, the hot pressing effect of different non-woven fabrics is the same, and different non-woven fabrics have the same hot pressing effect.
[0005] Although the technical scheme can have the same heat pressing effect of the non-woven fabric, it cannot solve the automatic switching between heat pressing and heat pressing and printing of the non-woven fabric, and the automatic switching between heat pressing and printing of different patterns at the same time. When heat pressing or heat pressing and printing are switched, the non-woven fabric raw material may also need to be replaced synchronously, and the existing heat pressing equipment usually connects the non-woven fabric to be heat pressed with the previous section before the heat pressing of the previous type of non-woven fabric is completed, and realizes the threading by pulling the previous section. Such threading method is inefficient and causes waste of non-woven fabric. Therefore, a steam treatment device for textile materials is proposed. SUMMARY
[0006] The purpose of the present application is to provide an automatic production equipment for textile products, which solves the problem that the existing heat pressing equipment cannot automatically switch between heat pressing and heat pressing and printing of non-woven fabric, and is not convenient for re-feeding of non-woven fabric.
[0007] To achieve the above-mentioned purpose, the present application provides the following technical scheme: an automatic production equipment for textile products, comprising a base, a support frame and a support table connected to the base, a drive motor installed on the support frame, and an installation seat connected to the output end of the drive motor, a plurality of heat pressing rollers with different diameters are circumferentially arrayed and slidably connected to the installation seat, and a sliding block one is connected to the heat pressing roller, a sleeve ring is connected to the support frame, and the sleeve ring and the sliding block one on each heat pressing roller are slidably sleeved, and a pressing block is slidably connected in the sliding block one, and one or more surfaces of each heat pressing roller are provided with a texture;
[0008] The sleeve ring is provided with an opening for the heat pressing roller to slide out, and a drive assembly is connected to the support frame, which is used to drive the sliding block one and the drive heat pressing roller to slide out of the sleeve ring from the opening, so as to abut against the support table and heat press the non-woven fabric therebetween;
[0009] A first sliding rail is connected to the base, an upper conveying roller is slidably arranged in the first sliding rail, and a lower conveying roller is installed on the first sliding rail, a lifting assembly is arranged on the base, and the lifting assembly is used to drive the upper conveying roller to move upward when the pressing block moves downward.
[0010] Preferably, a guide sliding rod one is circumferentially connected to the outer side of the installation seat, a sliding seat is slidably sleeved on the guide sliding rod one, one side of the sliding seat is connected with the heat pressing roller, and the other side is connected with the sliding block one.
[0011] Preferably, a servo motor is installed on the sliding seat, a flange plate is connected to the output end of the servo motor, flange plates are also connected to the two ends of the heat pressing roller, and bolts are arranged between the heat pressing roller and the flange plate of the output end of the servo motor, so that the heat pressing roller and the servo motor are connected through the flange plate and the bolts.
[0012] Preferably, the support frame is connected with a connecting arc plate, the sleeve ring is connected with the support frame through the connecting arc plate, and the output end of the driving motor penetrates the sleeve ring and is connected with a mounting seat on the side of the sleeve ring away from the support frame.
[0013] Preferably, the first sliding block is connected with an arc-shaped sliding channel, the arc-shaped sliding channel extends between the sleeve ring and the support frame and penetrates the sleeve ring, the pressing block is slidingly connected in the arc-shaped sliding channel, and the sleeve ring is connected with a guide plate in the radial direction of the opening, and the first sliding block is slidingly connected in the guide plate.
[0014] Preferably, the driving assembly comprises a support seat, an extension piece and a pressing plate, the support seat is connected with the support frame, the extension piece is connected with the support seat, the pressing plate is connected with the extension piece, and the pressing block is connected with the pressing plate.
[0015] Preferably, the first sliding rail is slidingly connected with a second sliding block, the upper conveying roller is mounted on the second sliding block through the motor, and the lower conveying roller is mounted on the first sliding rail through the motor.
[0016] Preferably, the lifting assembly comprises an upgoing rack, a rotating shaft seat, a gear, a second guide sliding rod and a downgoing rack, the upgoing rack is connected with the second sliding block, the rotating shaft seat is connected with the first sliding rail, the gear is rotatably connected with the rotating shaft seat, the second guide sliding rod is connected with the base, the outer side of the second guide sliding rod is slidingly sleeved with a sliding plate, the downgoing rack is connected with the sliding plate, the gear is located between the upgoing rack and the downgoing rack and is meshingly connected with the upgoing rack and the downgoing rack respectively, the outer side of the second guide sliding rod is sleeved with a spring, and the two ends of the spring are connected with the base and the sliding plate respectively, the base is connected with a third guide sliding rod, and the sliding plate is slidingly sleeved on the outer side of the third guide sliding rod.
[0017] Preferably, the first sliding rail is connected with a hanging bracket, the lower end of the hanging bracket is connected with a guide block, the second sliding rail is slidingly sleeved in the guide block, and the arc-shaped seat for supporting the hot press roller is connected with the second sliding rail.
[0018] Preferably, the support table is embedded with a heating plate for hot pressing the non-woven fabric in cooperation with the hot press roller, and the pressing block is embedded with pressure sensors on the upper side and the lower side.
[0019] Compared with the related art, the automatic production equipment for textile products provided by the application has the following beneficial effects:
[0020] The present application is provided with a plurality of hot pressing rollers with different diameters arranged in an array, so that the use of different hot pressing rollers can be automatically switched by the operation of the driving motor, and only hot pressing or hot pressing and printing operations are performed on the non-woven fabric, greatly improving the flexibility of the device, and also improving the efficiency of the non-woven fabric in production and processing, and also adjusting the distance between the upper conveying roller and the lower conveying roller, which facilitates the direct threading of the non-woven fabric when switching different non-woven fabrics for processing, and also facilitates the disassembly and replacement or disassembly and repair of the hot pressing roller through the support of the arc-shaped seat, and the switching of the hot pressing roller and the convenient threading of the non-woven fabric are realized by fewer driving parts, and the waste of non-woven fabric is reduced, and the structure and control are reduced, and the later operation and maintenance are facilitated. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is a structural schematic diagram of the present application.
[0022] Figure 2 It is a structural schematic diagram of the present application without a hot pressing roller.
[0023] Figure 3 It is a sectional view of the structure of the present application.
[0024] Figure 4 It is a sectional view of the structure of the present application at the sleeve ring.
[0025] Figure 5 It is a schematic diagram of one side support frame, slide rail and related structure thereon of the present application.
[0026] Figure 6 It is a schematic diagram of the related structure at the sleeve ring of the present application.
[0027] Figure 7 It is a schematic diagram of the related structure inside the sleeve ring of the present application.
[0028] Figure 8 It is a schematic diagram of the slide rail and related structure thereon of the present application.
[0029] Figure 9 It is a schematic diagram of the related structure of the lifting assembly of the present application.
[0030] Figure 10 It is a schematic diagram of the slide seat and related structure thereon of the present application.
[0031] Figure 11 It is a layout diagram of two use states of the hot pressing roller of the present application.
[0032] In the figure: 1, base; 2, support frame; 3, drive motor; 4, mounting seat; 5, guide slide rod one; 6, slide; 7, servo motor; 8, hot press roller; 9, flange plate; 10, bolt; 11, collar; 12, connecting arc plate; 13, slide block one; 14, arc-shaped slide; 15, opening; 16, guide plate; 17, support seat; 18, telescopic part; 19, pressing plate; 1901, pressing block; 1902, pressure sensor; 20, first slide rail; 21, slide block two; 22, upper conveying roller; 23, lower conveying roller; 24, upper rack; 25, rotating shaft seat; 26, gear; 27, guide slide rod two; 28, spring; 29, slide plate; 30, lower rack; 31, guide slide rod three; 32, hanger; 33, guide block; 34, second slide rail; 35, arc-shaped seat; 36, support table; 37, heating plate. DETAILED DESCRIPTION
[0033] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.
[0034] Please refer to Figures 1-11 The present application provides a technical solution: an automatic production equipment for textiles, comprising a base 1, the base 1 is connected with a support frame 2 and a support table 36, the support frame 2 is installed with a drive motor 3, and the output end of the drive motor 3 is connected with a mounting seat 4, the mounting seat 4 is circumferentially arrayed and slidably connected with a plurality of hot press rollers 8 with different diameters, the hot press rollers 8 are connected with slide blocks one 13, the support frame 2 is connected with a collar 11, the collar 11 is slidably arranged with the slide blocks one 13 on each hot press roller 8, and the slide blocks one 13 are slidably connected with pressing blocks 1901, one or more surfaces of each hot press roller 8 are provided with a texture, as Figure 1 At least one of the hot press rollers 8 is a hot press roller without a surface texture;
[0035] The collar 11 is provided with an opening 15 for the hot press roller 8 to slide out, the support frame 2 is connected with a drive assembly, the drive assembly is used to drive the slide blocks one 13 and the hot press rollers 8 to slide out of the collar 11 from the opening 15, so as to abut against the support table 36 and heat press the non-woven fabric therebetween.
[0036] The base 1 is connected with a first slide rail 20, the first slide rail 20 is slidably provided with an upper conveying roller 22, and the first slide rail 20 is installed with a lower conveying roller 23, the base 1 is provided with a lifting assembly, the lifting assembly is used to drive the upper conveying roller 22 to move upward when the pressing block 1901 moves downward.
[0037] Further, the outer side of the mounting seat 4 is circumferentially connected with a guide slide rod 5, a sliding seat 6 is slidably arranged on the guide slide rod 5, one side of the sliding seat 6 is connected with a hot press roller 8, and the other side is connected with a sliding block 13, as shown. Figure 6 As shown, the driving motor 3 can be operated to drive the mounting seat 4 to rotate, so that different hot press rollers 8 can be rotated to the lowermost position, and can be used in cooperation with the support table 36 to heat press or heat press printing on the non-woven fabric on the support table 36. When printing, the hot press roller 8 with different patterns can also be rotated and used.
[0038] Further, a servo motor 7 is mounted on the sliding seat 6, a flange plate 9 is connected to the output end of the servo motor 7, and flange plates 9 are also connected to the two ends of the hot press roller 8. Bolts 10 are arranged between the flange plates 9 of the output end of the servo motor 7 and the hot press roller 8, and the hot press roller 8 is connected to the servo motor 7 through the flange plates 9 and the bolts 10, as shown. Figure 6 As shown, the hot press roller 8 can be detached from the output end of the servo motor 7 by detaching the bolts 10 on the flange plate 9.
[0039] Further, a connecting arc plate 12 is connected to the support frame 2, the sleeve ring 11 is connected to the support frame 2 through the connecting arc plate 12, the output end of the driving motor 3 penetrates the sleeve ring 11, and the mounting seat 4 is connected to the side of the sleeve ring 11 away from the support frame 2, as shown. Figure 6 and 7 As shown, the connecting arc plate 12 can stably connect the sleeve ring 11 to the support frame 2.
[0040] Further, an arc-shaped slide 14 is connected to the sliding block 13, the arc-shaped slide 14 extends between the sleeve ring 11 and the support frame 2, a pressing block 1901 is slidably connected in the arc-shaped slide 14, and a guide plate 16 is connected to the sleeve ring 11 in the radial direction of the opening 15, and the sliding block 13 is slidably connected in the guide plate 16, as shown. Figure 6 and 7 As shown, the sleeve ring 11 can limit the sliding of the sliding seat 6 on the guide slide rod 1, and only when the hot press roller 8 and the sliding block 13 thereon slide to the opening 15 of the sleeve ring 11, the sliding block 13 will not be limited by the sleeve ring 11, so that the sliding seat 6 can slide on the guide slide rod 5 to drive the sliding block 13 to slide in the guide plate 16.
[0041] Further, the driving assembly comprises a support seat 17, a telescopic piece 18, and a pressing plate 19, the support seat 17 is connected to the support frame 2, the telescopic piece 18 is connected to the support seat 17, and the pressing plate 19 is connected to the telescopic piece 18, and the pressing block 1901 is connected to the pressing plate 19, as shown. Figure 5 and 7 As shown, and in combination with Figure 11, the driving motor 3 drives the mounting seat 4 to rotate, and the heat pressing roller 8 is rotated to the state 2, then the telescopic component 18 drives the pressing block 1901 on the pressing plate 19 to slide to the position corresponding to the arc-shaped slide 14 in the opening 15, the driving motor 3 drives the mounting seat 4 to rotate again, the sliding block one 13 on the heat pressing roller 8 to be used is rotated to the opening 15, and each heat pressing roller 8 is arranged in the state 1, then the telescopic component 18 is controlled to be elongated, the sliding block one 13 is pushed to slide through the clamping of the pressing block 1901 in the arc-shaped slide 14, that is, the sliding block one 13 is driven to slide along the direction B of the state 1, the corresponding sliding seat 6 is driven to slide on the surface of the guide slide rod one 5, and the corresponding heat pressing roller 8 is driven to slide to the surface of the support table 36, so that the non-woven fabric on the support table 36 is subjected to heat pressing or heat pressing printing processing, and the whole mechanical automatic control switching is realized, and the problems of low efficiency and influence on production capacity caused by manual disassembly are avoided.
[0042] Further, the sliding block two 21 is slidably connected in the first slide rail 20, the upper conveying roller 22 is mounted on the sliding block two 21 through a motor, and the lower conveying roller 23 is mounted on the first slide rail 20 through a motor, as shown in Figure 5 , so that the upper conveying roller 22 can stably move up and down through the sliding of the sliding block two 21 in the first slide rail 20, and the distance between the upper conveying roller 22 and the lower conveying roller 23 is adjusted.
[0043] Further, the lifting assembly includes an up-rack 24, a rotating shaft seat 25, a gear 26, a guide slide rod two 27 and a down-rack 30, the up-rack 24 is connected to the sliding block two 21, the rotating shaft seat 25 is connected to the first slide rail 20, the gear 26 is rotatably connected to the rotating shaft seat 25, the guide slide rod two 27 is connected to the base 1, the outer side of the guide slide rod two 27 is slidably sleeved with a sliding plate 29, the down-rack 30 is connected to the sliding plate 29, the gear 26 is between the up-rack 24 and the down-rack 30 and is meshingly connected to the up-rack 24 and the down-rack 30 respectively, the outer side of the guide slide rod two 27 is sleeved with a spring 28, and the two ends of the spring 28 are connected to the base 1 and the sliding plate 29 respectively, the base 1 is connected with a guide slide rod three 31, and the sliding plate 29 is slidably sleeved on the outer side of the guide slide rod three 31.
[0044] As shown in Figure 5 and 7 , and as shown in Figure 11When it is necessary to replace the non-woven fabric and rethread the new non-woven fabric, the driving motor 3 is controlled to drive the mounting seat 4 to rotate, each hot pressing roller 8 is rotated to state 2, then the telescopic piece 18 is controlled to drive the pressing plate 19 to move downward, at this time the pressing block 1901 will directly move downward between the opening 15 and the guide plate 16, that is, slide along the B direction in state 2, and gradually cooperate with the upper end surface of the sliding plate 29 to resist, drive it to slide downward along the outside of the guide sliding rod two 27, and compress the spring 28, at this time the descending rack 30 moves downward, and through the meshing of the gear 26, drives the ascending rack 24 to move upward, to pull the sliding block two 21 to slide upward in the first sliding rail 20, and then drives the upper conveying roller 22 to move upward, increases the spacing between the upper conveying roller 22 and the lower conveying roller 23, facilitates flexible and direct threading of the non-woven fabric when replacing the new non-woven fabric, and the guide sliding rod three 31 can also stabilize the sliding of the sliding plate 29, when the telescopic piece 18 drives the pressing plate 19 to move upward, the sliding plate 29 will reset under the action of the spring 28, and the upper conveying roller 22 will also recombine with the lower conveying roller 23 to clamp and convey the non-woven fabric therebetween.
[0045] Further, the first sliding rail 20 is connected with a hanging bracket 32, and the lower end of the hanging bracket 32 is connected with a guide block 33, the second sliding rail 34 is slidably sleeved in the guide block 33, and the second sliding rail 34 is connected with an arc-shaped seat 35 for supporting the hot pressing roller 8, as shown in Figure 8 and 11 When each hot pressing roller 8 is in state 2, the second sliding rail 34 slidably sleeved in the guide block 33 can be pulled to slide along the A direction in state 2, so that the arc-shaped seat 35 is extended into the lower side of each hot pressing roller 8, so that after the bolt 10 connected between the flange plate 9 of the hot pressing roller 8 and the flange plate 9 of the servo motor 7 is disassembled, the hot pressing roller 8 can be supported by the arc-shaped seat 35, facilitating disassembly and replacement of the hot pressing roller 8, so as to replace the hot pressing roller 8 with different patterns, or disassemble and repair the hot pressing roller 8.
[0046] Further, the supporting table 36 is embedded with a heating plate 37 for cooperating with the hot pressing roller 8 to heat and press the non-woven fabric, and the upper and lower sides of the pressing block 1901 are embedded with pressure sensors 1902, as shown in Figure 2 The heating plate 37 is also embedded on the supporting table 36, which can cooperate with the hot pressing roller 8 above to double-sided heat press the non-woven fabric when necessary.
Claims
1. An automatic production equipment for textile products, comprising a base (1), a supporting frame (2) and a supporting table (36) connected to the base (1), a driving motor (3) installed on the supporting frame (2), and a mounting seat (4) connected to the output end of the driving motor (3), characterized in that, A plurality of hot pressing rollers (8) with different diameters are slidably connected to the mounting seat (4) in a circumferential array, and a sliding block (13) is connected to the hot pressing roller (8); a sleeve ring (11) is connected to the support frame (2), and the sleeve ring (11) slidably covers the sliding block (13) on each hot pressing roller (8), and a pressing block (1901) is slidably connected in the sliding block (13); one or more surfaces of each hot pressing roller (8) are provided with a texture. The sleeve ring (11) is provided with an opening (15) for the hot pressing roller (8) to slide out, and a driving assembly is connected to the support frame (2), which is used to drive the pressing block (1901) to drive the sliding block (13) to drive the hot pressing roller (8) to slide out of the sleeve ring (11) at the opening (15) to abut against the support table (36) to heat and press the non-woven fabric therebetween. A first sliding rail (20) is connected to the base (1), a conveying roller (22) is slidably arranged in the first sliding rail (20), and a lower conveying roller (23) is mounted on the first sliding rail (20); a sliding block (21) is slidably connected in the first sliding rail (20), and the conveying roller (22) is mounted on the sliding block (21) by a motor; a lifting assembly is arranged on the base (1), which is used to drive the conveying roller (22) to move upward when the pressing block (1901) moves downward. The lifting assembly comprises an upward rack (24), a rotating shaft seat (25), a gear (26), a guide sliding rod (27), and a downward rack (30); the upward rack (24) is connected to the sliding block (21); the rotating shaft seat (25) is connected to the first sliding rail (20); the gear (26) is rotatably connected to the rotating shaft seat (25); the guide sliding rod (27) is connected to the base (1); a sliding plate (29) is slidably arranged on the outer side of the guide sliding rod (27); the downward rack (30) is connected to the sliding plate (29); the gear (26) is between the upward rack (24) and the downward rack (30) and is in meshing connection with the upward rack (24) and the downward rack (30), respectively; a spring (28) is arranged on the outer side of the guide sliding rod (27); the two ends of the spring (28) are connected to the base (1) and the sliding plate (29), respectively; a guide sliding rod (31) is connected to the base (1); the sliding plate (29) is slidably arranged on the outer side of the guide sliding rod (31).
2. An automated production apparatus for textile products according to claim 1, characterized in that, A guide sliding rod (5) is connected to the outer side of the mounting seat (4) in a circumferential array; a sliding seat (6) is slidably arranged on the guide sliding rod (5); one side of the sliding seat (6) is connected to the hot pressing roller (8), and the other side is connected to the sliding block (13).
3. An automated production apparatus for textile products according to claim 2, characterized in that, A servo motor (7) is mounted on the sliding seat (6); a flange (9) is connected to the output end of the servo motor (7); the two ends of the hot pressing roller (8) are also connected to the flange (9); a bolt (10) is arranged between the hot pressing roller (8) and the flange (9) of the output end of the servo motor (7); the hot pressing roller (8) and the servo motor (7) are connected through the flange (9) and the bolt (10).
4. The automated textile production apparatus of claim 1, wherein, The support frame (2) is connected with a connecting arc plate (12), the sleeve ring (11) is connected with the support frame (2) through the connecting arc plate (12), and the output end of the driving motor (3) penetrates through the sleeve ring (11) and is connected with a mounting seat (4) on the side, away from the support frame (2).
5. The automated textile production apparatus of claim 1, wherein, The arc-shaped slide (14) extends between the sleeve ring and the support frame (2) through the sleeve ring (11), the pressing block (1901) is slidingly connected in the arc-shaped slide (14), the sleeve ring (11) is connected with a guide plate (16) in the radial direction of the opening (15), and the sliding block (13) is slidingly connected in the guide plate (16).
6. An automated textile production apparatus as claimed in claim 1, wherein, The driving assembly comprises a support seat (17), a telescopic piece (18) and a pressing plate (19), the support seat (17) is connected on the support frame (2), the telescopic piece (18) is connected on the support seat (17), the pressing plate (19) is connected on the telescopic piece (18), and the pressing block (1901) is connected with the pressing plate (19).
7. An automated textile production apparatus as claimed in claim 1, wherein, The lower conveying roller (23) is mounted on the first sliding rail (20) through a motor.
8. An automated textile production apparatus according to claim 1, wherein, The first sliding rail (20) is connected with a hanging bracket (32), the lower end of the hanging bracket (32) is connected with a guide block (33), the guide block (33) is slidingly sleeved with a second sliding rail (34), and the second sliding rail (34) is connected with an arc-shaped seat (35) for supporting the hot pressing roller (8).
9. An automated textile production apparatus as claimed in claim 1, wherein, The support table (36) is embedded with a heating plate (37) for cooperating with the hot pressing roller (8) to heat and press the non-woven fabric, and the pressing block (1901) is embedded with a pressure sensor (1902) on the upper and lower sides.
Citation Information
Patent Citations
Non-woven fabric hot-pressing equipment
CN117071177A
Multi-surface embossed tissue production process and equipment
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Non-woven fabric embossing machine
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