Textile material processing device for bionic spring pillow inner

By combining the scrubbing and rinsing units, the problems of poor cleaning effect and feeding deviation in textile material processing devices are solved, achieving comprehensive cleaning and stable conveying of textile materials and improving product quality.

CN121896799APending Publication Date: 2026-04-21JIANGSU LINGZHI HEALTH TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
JIANGSU LINGZHI HEALTH TECH CO LTD
Filing Date
2026-03-19
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing textile material processing devices for biomimetic spring pillow cores have poor cleaning effects, especially in the incomplete removal of stubborn stains. Furthermore, the fixed nozzle position leads to incompatibility issues in rinsing, and the lack of an anti-deviation mechanism in the feeding system affects the stability of product quality.

Method used

The design combines a scrubbing unit and a rinsing unit. The scrubbing unit uses a drive shaft to drive the scrubbing plates to move alternately for scrubbing and cleaning. The rinsing unit uses an adjustment shaft to adjust the position of the nozzles for flexible spraying. The conveying unit uses a tapered tension shaft to maintain stable conveying of the textile material.

Benefits of technology

It achieves comprehensive cleaning of textile materials, powerfully removes stains, improves cleaning effectiveness and usage flexibility, and ensures stable delivery of textile materials and product quality.

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Abstract

The invention discloses a bionic spring pillow inner textile material processing device in the technical field of fiber cleaning, the bionic spring pillow inner textile material processing device comprises a cleaning tank, a cooking box, a scrubbing unit, a flushing unit and a conveying unit, the cooking box, the scrubbing unit, the flushing unit and the conveying unit are all arranged in the cleaning tank, and the scrubbing unit is located between the cooking box and the flushing unit. The scrubbing unit is arranged between the step of steam cooking and the step of clear water flushing, the scrubbing unit drives the two sets of scrubbing plates which are symmetrically arranged to move in the horizontal direction in a staggered mode through the driving shaft, and the upper face and the lower face of textile fibers subjected to steam cooking can be rubbed and cleaned by moving the scrubbing plates in the horizontal direction in the staggered mode; therefore, stains attached to textile fibers are separated from the textile fibers, and the purpose of powerfully removing the stains is achieved.
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Description

Technical Field

[0001] This invention relates to the field of fiber cleaning technology, and in particular to a textile material processing device for a biomimetic spring pillow core. Background Technology

[0002] The textile materials used in biomimetic spring pillow cores refer to various fabrics used to wrap and support the spring core. These fabrics play an important role in the comfort, breathability, durability, and antibacterial properties of the pillow core. Depending on the usage and material requirements, these textile materials can be divided into natural fibers (animal and plant fibers) and synthetic fibers (polyester fibers, etc.). When using the above textile materials to process and produce biomimetic spring pillow cores, they need to be cleaned, woven, stretched, and treated.

[0003] Existing technologies for cleaning textile materials primarily employ a combination of steam cooking and water rinsing. However, in actual production, water rinsing proves ineffective: when stubborn stains adhere to the textile material, simple water rinsing is insufficient for thorough removal, resulting in incomplete cleaning. Furthermore, the fixed nozzle positions in existing rinsing structures limit the spray range—leading to blind spots and dead zones when handling large textile materials, and over-spraying when handling small materials, resulting in wasted water and energy, and poor overall adaptability. In addition, existing feeding systems often use roller conveyors, lacking effective anti-deviation mechanisms, causing the cleaned textile material to easily deviate and overlap at the edges, severely impacting the continuity of subsequent winding processes and product quality stability. Summary of the Invention

[0004] In view of the problems existing in the textile material processing devices for biomimetic spring pillow cores, the present invention proposes a textile material processing device for biomimetic spring pillow cores to solve such problems.

[0005] To solve the above technical problems, the present invention provides the following technical solution: a textile material processing device for a biomimetic spring pillow core, comprising a washing tank, a steaming tank, a scrubbing unit, a rinsing unit, and a conveying unit, wherein the steaming tank, the scrubbing unit, the rinsing unit, and the conveying unit are all arranged in the washing tank, and the scrubbing unit is located between the steaming tank and the rinsing unit. The scrubbing unit includes two sets of symmetrically arranged scrubbing plates, each set of scrubbing plates has a limiting frame at both ends, and the outer end of the limiting frame is fixedly connected to the cleaning tank, and a drive shaft is rotatably connected to the inner wall of one side of the cleaning tank, and one end of the scrubbing plate is connected to the drive shaft. The rinsing unit includes two sets of parallel adjusting shafts, two sets of guide components symmetrically opened on the adjusting shafts, multiple sets of nozzles evenly distributed in each set of guide components, and a guide frame parallel to one side of each set of adjusting shafts, with one end of the nozzle extending through the guide frame into the guide component.

[0006] As a preferred embodiment of the textile material processing device for the biomimetic spring pillow core of the present invention, wherein: both ends of the washing plate are provided with connecting frames, the outer end of the connecting frame is provided with a downwardly extending extension shaft, and the extension shaft passes downward through the limiting frame and abuts against the drive shaft.

[0007] As a preferred embodiment of the textile material processing device for the biomimetic spring pillow core of the present invention, the limiting frame has an elongated rectangular limiting groove inside, and the connecting frame passes downward through the limiting groove. At the same time, two sets of limiting plates are respectively attached to the upper and lower sides of the limiting frame on the extension shaft.

[0008] As a preferred embodiment of the textile material processing device for the biomimetic spring pillow core of the present invention, the drive shaft has a guide groove, and the guide groove is a wave ring composed of multiple sets of wave structures with the same curvature connected end to end, while the end of the extension shaft extends into the guide groove.

[0009] As a preferred embodiment of the textile material processing device for the biomimetic spring pillow core of the present invention, the guide component includes three spiral grooves arranged in a horizontal direction: a spiral groove one, a spiral groove two, and a spiral groove three. All three are spiral grooves with a spiral turn count of 0.5. The length ratio of the three is 1:2:3, and the distance between the upper and lower ends of the three is the same.

[0010] As a preferred embodiment of the textile material processing device for the biomimetic spring pillow core of the present invention, wherein: one end of the nozzle is provided with a connecting shaft, and the connecting shaft extends through the guide frame into the guide assembly, and two sets of limiting rings are provided on the connecting shaft respectively fitting with the upper and lower sides of the guide frame.

[0011] In a preferred embodiment of the textile material processing device for the biomimetic spring pillow core described in this invention, the outer end of the adjusting shaft is provided with a connecting wheel, a transmission belt is sleeved on the connecting wheel, and the connecting wheels of the two sets of adjusting shafts are sleeved on the same set of transmission belts.

[0012] As a preferred embodiment of the textile material processing device for the biomimetic spring pillow core of the present invention, the conveying unit includes a conveying shaft rotatably disposed in the washing tank, and a slot is opened laterally on the conveying shaft, a threaded shaft arranged parallel above the conveying shaft, two sets of push frames symmetrically disposed on the threaded shaft, and a tensioning shaft rotatably connected to the lower end of the push frame.

[0013] As a preferred embodiment of the textile material processing device for the biomimetic spring pillow core of the present invention, the stretching shaft is a tapered structure and is sleeved on the conveying shaft. At the same time, the stretching shaft is provided with a locking tooth that matches the locking groove. The stretching shaft is mutually limited in the circumferential direction with the conveying shaft by the locking tooth and the locking groove.

[0014] As a preferred embodiment of the textile material processing device for the biomimetic spring pillow core described in this invention, the washing tank is provided with a steaming zone, a washing zone and a conveying zone in a transverse direction, and a partition is provided between each adjacent pair. The steaming box is located in the steaming zone, the rubbing unit is located in the washing zone, and a set of rollers is provided on both sides of the steaming box.

[0015] The beneficial effects of the present invention are as follows: a scrubbing unit is set between the steam cooking and water rinsing steps. The scrubbing unit drives two sets of symmetrically arranged scrubbing plates to move alternately in the horizontal direction through a drive shaft. The two sets of alternately moving scrubbing plates can rub and clean the upper and lower surfaces of the textile fibers after steam cooking, so that the stains attached to the textile fibers can be removed, thereby achieving the purpose of powerfully removing stains. The rinsing unit is used to rinse textile fibers. It can rinse both the top and bottom surfaces of the textile fibers at the same time, ensuring that the textile fibers are rinsed more thoroughly. The rinsing unit can adjust the position of the nozzles by setting guide components of different lengths on the adjusting shaft. By adjusting the distribution of the nozzles, the guide components can effectively adjust the rinsing spray range of the nozzles, so that the nozzles can adjust the spray rinsing range according to the actual size of the textile fibers, thereby enhancing the flexibility of use and meeting more usage needs. Furthermore, the stains on the textile fibers after steaming are more easily removed by the scrubbing unit. The stubborn adhesion of the stains removed by the scrubbing unit is also removed, making them easier to be washed off by the subsequent rinsing unit. Under the dual cleaning action of the scrubbing and rinsing units, the substances remaining on the textile materials can be effectively removed, fully ensuring the cleaning effect. Furthermore, by setting up a conveying unit to assist in the subsequent outward conveying of the textile material after cleaning, the conveying unit applies an outward stretching force to both sides of the textile material through two sets of conical tension shafts, so that the textile material is always attached to the conveying shaft with a fixed tension, ensuring that the textile material is always conveyed outward in the correct posture, thereby preventing deviation and ensuring the stable progress of subsequent work. Attached Figure Description

[0016] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. Wherein: Figure 1 This is a schematic diagram of the overall structure of the textile material processing device for the biomimetic spring pillow core of the present invention.

[0017] Figure 2 This is a schematic diagram of the internal structure of the textile material processing device for the biomimetic spring pillow core of the present invention.

[0018] Figure 3 This is a schematic diagram of the washing unit of the textile material processing device for the biomimetic spring pillow core of the present invention.

[0019] Figure 4 This is a front view of the washing unit of the textile material processing device for the biomimetic spring pillow core of the present invention.

[0020] Figure 5 For the present invention Figure 4 Enlarged schematic diagram of the structure at point A in the middle.

[0021] Figure 6 This is a schematic diagram of the rinsing unit of the textile material processing device for the biomimetic spring pillow core of the present invention.

[0022] Figure 7 This is a comparison diagram of the expansion and contraction of the spray range of the rinsing unit in the textile material processing device for the biomimetic spring pillow core of the present invention.

[0023] Figure 8 For the present invention Figure 7 Enlarged schematic diagram of the structure at point B.

[0024] Figure 9 This is a schematic diagram of the conveying unit of the textile material processing device for the biomimetic spring pillow core of the present invention.

[0025] Reference numerals: 1. Washing tank; 11. Cooking zone; 111. Roller; 12. Washing zone; 121. Water level line; 13. Conveying zone; 14. Partition; 2. Cooking chamber; 3. Scrubbing unit; 31. Scrubbing plate; 311. Connecting frame; 312. Extension shaft; 32. Limiting frame; 321. Limiting groove; 33. Drive shaft; 331. Guide groove; 4. Rinsing unit; 41. Adjusting shaft; 411. Connecting wheel; 412. Transmission belt; 42. Guide assembly; 421. Spiral groove one; 422. Spiral groove two; 423. Spiral groove three; 43. Nozzle; 431. Connecting shaft; 432. Limiting ring; 44. Guide frame; 5. Conveying unit; 51. Conveying shaft; 511. Slot; 52. Threaded shaft; 53. Pushing frame; 54. Stretching shaft; 6. Transmission wheel; 7. Transmission belt; 8. Textile material. Detailed Implementation

[0026] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.

[0027] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and those skilled in the art can make similar extensions without departing from the spirit of the invention. Therefore, the invention is not limited to the specific embodiments disclosed below.

[0028] Reference Figures 1 to 9 This invention provides a textile material processing device for a biomimetic spring pillow core, comprising a cleaning tank 1, a steaming chamber 2, a scrubbing unit 3, a rinsing unit 4, and a conveying unit 5. The steaming chamber 2, the scrubbing unit 3, the rinsing unit 4, and the conveying unit 5 are all located within the cleaning tank 1. The scrubbing unit 3 is positioned between the steaming chamber 2 and the rinsing unit 4. By placing the scrubbing unit 3 between the steaming chamber 2 and the rinsing unit 4, the textile material 8 that has been steamed can be promptly removed by the scrubbing unit 3. Furthermore, the adhesion of stains after heating decreases, making them easier to scrub off by the scrubbing unit 3. The stubborn adhesion of stains removed by the scrubbing unit 3 is further weakened, making them easier to rinse off by the subsequent rinsing unit 4. Under the dual cleaning action of the scrubbing unit 3 and the rinsing unit 4, substances remaining on the textile material can be effectively removed, fully ensuring the cleaning effect. Reference Figure 3 The scrubbing unit 3 includes two sets of symmetrically arranged scrubbing plates 31, each set of scrubbing plates 31 has a limiting frame 32 at both ends, and the outer end of the limiting frame 32 is fixedly connected to the cleaning tank 1, and a drive shaft 33 is rotatably connected to the inner wall of one side of the cleaning tank 1, and one end of the scrubbing plate 31 is connected to the drive shaft 33. The staggered distribution of the two sets of scrubbing plates 31 can effectively scrub the textile material 8. Reference Figure 6 The rinsing unit 4 includes two sets of parallel adjusting shafts 41, two sets of guide components 42 symmetrically arranged on the adjusting shafts 41, multiple sets of nozzles 43 evenly distributed in each set of guide components 42, and a guide frame 44 parallel to one side of each set of adjusting shafts 41, with one end of the nozzle 43 extending through the guide frame 44 into the guide component 42. By setting up the rinsing unit 4, the textile material 8 is rinsed. The rinsing unit 4 can rinse both the upper and lower surfaces of the textile material 8 simultaneously, ensuring that the textile material 8 can be rinsed more thoroughly. By setting guide components 42 of different lengths on the adjusting shafts 41, the rinsing unit 4 can adjust the position of the nozzles 43. By adjusting the distribution position of the nozzles 43, the guide components 42 can effectively adjust the rinsing spray range of the nozzles 43, thereby allowing the nozzles 43 to adjust the spray rinsing range according to the actual size of the textile material 8, enhancing the flexibility of use and meeting more usage needs.

[0029] Reference Figure 4Both ends of the scrubbing plate 31 are provided with connecting brackets 311. The outer end of the connecting bracket 311 is provided with a downward extending shaft 312, and the extending shaft 312 passes downward through the limiting bracket 32 ​​and abuts against the drive shaft 33. Multiple sets of scrubbing grooves are opened on the inner side of the scrubbing plate 31. The staggered grooves can achieve a good scrubbing effect. The connecting bracket 311 and the extending shaft 312 are respectively used to connect the limiting bracket 32 ​​and the drive shaft 33.

[0030] Reference Figure 5 The limiting frame 32 has a long rectangular limiting groove 321 inside, and the connecting frame 311 passes downward through the limiting groove 321. At the same time, the extension shaft 312 is provided with two sets of limiting plates that are respectively attached to the upper and lower sides of the limiting frame 32. The rectangular limiting groove 321 cooperates with the limiting frame 32 to limit the movement direction of the scrubbing plate 31, so that the scrubbing plate 31 can only move horizontally in the opposite direction under the limitation of the limiting groove 321 through the extension shaft 312.

[0031] Reference Figure 5 The guide groove 331 on the drive shaft 33 is a wave ring composed of multiple sets of wave structures with the same arc connected end to end. At the same time, the end of the extension shaft 312 extends into the guide groove 331. As shown in the figure, there is a long horizontal distance between the outermost point of the left end and the outermost point of the right end of the wave structure of the guide groove 331. Therefore, objects that move along the guide groove 331 or are driven by it, such as the extension shaft 312, will undergo a horizontal position change. Since the wave structure of the guide groove 331 is connected end to end, the extension shaft 312 it drives will perform a horizontal reciprocating motion. The moving extension shaft 312 will synchronously drive the scrubbing plate 31 to move. At the same time, the smooth transition between the outermost point of the left end and the outermost point of the right end of the wave structure makes the movement of the extension shaft 312 smoother and silkier.

[0032] Furthermore, the extension shafts 312 of the two sets of washing plates 31 extend to the upper and lower sides of the guide groove 331, respectively. The extension shaft 312 of the upper washing plate 31 is initially connected to the outermost point of the left end of the guide groove 331, while the extension shaft 312 of the lower washing plate 31 is connected to the outermost point of the right end of the guide groove 331. That is, the extension shafts 312 of the two sets of washing plates 31 are horizontally misaligned. When the two sets of washing plates 31 move under the drive of the guide groove 331 through their respective extension shafts 312, the movement directions of the two sets of washing plates 31 are opposite, thereby realizing the washing action of the textile material 8.

[0033] Combination Figure 4During the cleaning process of the textile material 8 using the scrubbing unit 3, the textile material 8, after being steamed by the steaming chamber 2, passes between the two sets of scrubbing plates 31. The drive shaft 33 rotates and pushes the extension shaft 312 to move horizontally back and forth through the guide groove 331. The back and forth moving extension shaft 312 drives the scrubbing plates 31 to move synchronously. The two sets of scrubbing plates 31 will scrub the upper and lower sides of the textile material 8 through the grooves on their respective inner sides. The two sets of horizontally moving scrubbing plates 31 rub and clean the steamed textile material 8, which can effectively remove the stains attached to it, achieve a strong cleaning effect, and ensure the cleaning effect.

[0034] Reference Figure 7 The guide assembly 42 includes three spiral grooves arranged horizontally in sequence: a first spiral groove 421, a second spiral groove 422, and a third spiral groove 423. All three have a spiral rotation number of 0.5, and their length ratios are 1:2:3. The distance between adjacent upper and lower ends of the three is the same. With different length ratios and the same spiral rotation number, when the adjusting shaft 41 drives the guide assembly 42, the distance between the corresponding nozzles 43 extending into the interior of the three will expand or contract proportionally, thereby achieving proportional adjustment of the spraying range of the nozzles 43.

[0035] Reference Figure 8 One end of the nozzle 43 is provided with a connecting shaft 431, which extends through the guide frame 44 into the guide assembly 42. Two sets of limiting rings 432 are provided on the connecting shaft 431, respectively fitting against the upper and lower sides of the guide frame 44. Below each of the spiral grooves 421, 422, and 423 in the guide assembly 42, a set of nozzles 43 is correspondingly provided. Each set of nozzles 43 extends through its respective connecting shaft 431 into the corresponding spiral groove 421, 422, or 423. For example… Figure 8 The third spiral groove 423 corresponds to the nozzle 43, and its connecting shaft 431 extends into the third spiral groove 423, which limits and guides the nozzle 43. When the third spiral groove 423 rotates with the adjusting shaft 41, the third spiral groove 423 will push the nozzle 43 to move through the connecting shaft 431. The other spiral grooves 421 and 422 drive their respective nozzles 43 to move in the same way as the third spiral groove 423. The nozzle 43 is limited by the limiting ring 432 and the guide frame 44. Therefore, when the guide assembly 42 pushes the nozzle 43 to move, the nozzle 43 can only move horizontally along the guide frame 44.

[0036] Reference Figure 6The outer end of the adjusting shaft 41 is provided with a connecting wheel 411, and a transmission belt 412 is sleeved on the connecting wheel 411. The connecting wheels 411 of the two sets of adjusting shafts 41 are sleeved on the same set of transmission belts 412. The installation orientation of the two sets of adjusting shafts 41 in the cleaning tank 1 is as follows: the side of the upper adjusting shaft 41 with the guide component 42 faces outward, and the side of the lower adjusting shaft 41 drives the guide component 42 to face inward. The adjusting shafts 41 are rotatably connected to the cleaning tank 1. The set of adjusting shafts 41 at the upper end is connected to the adjusting wheel. The two sets of adjusting shafts 41 can achieve synchronous adjustment through the connection of the connecting wheel 411 and the transmission belt 412.

[0037] Combination Figure 7 During the rinsing process of the textile material 8 using the rinsing unit 4, the actual width of the textile material 8 drives the two sets of adjusting shafts 41 to rotate synchronously. The rotating adjusting shafts 41 drive the corresponding nozzles 43 to move through their respective guide components 42. During the rotation of the guide components 42, they push the three sets of nozzles 43 through the spiral groove 1 421, spiral groove 2 422, and spiral groove 3 423. For example, spiral groove 3 423 pushes the connecting shaft 431 inside it, and the nozzle 43 corresponding to the connecting shaft 431 is limited by the guide frame 44. Therefore, spiral groove 3 423 pushes the connecting shaft 431 through its spiral inner wall, causing the nozzle 43 to move horizontally along the guide frame 44. The different length ratios and the same number of spiral turns on the guide components 42 will cause the distance between the nozzles 43 extending into the three parts to expand or contract proportionally when the adjusting shaft 41 drives the guide components 42 (e.g., Figure 7 As shown), this changes the overall rinsing range of the nozzle 43. The specific size of the rinsing range can be achieved by rotating the adjustment shaft 41 at different angles, so that the nozzle 43 can adjust the spray rinsing range according to the actual size of the textile material 8, thereby enhancing the flexibility of use and meeting more usage needs.

[0038] Reference Figure 9 The conveying unit 5 includes a conveying shaft 51 rotatably disposed in the washing tank 1, with a slot 511 laterally opened on the conveying shaft 51, a threaded shaft 52 parallelly disposed above the conveying shaft 51, two sets of pushers 53 symmetrically disposed on the threaded shaft 52, and a tension shaft 54 ​​rotatably connected to the lower end of the pushers 53. The two sets of pushers 53 are symmetrically threadedly connected to the threaded shaft 52, while the tension shaft 54 ​​forms a horizontal limit with the pushers 53. Therefore, the threaded shaft 52 drives the two sets of pushers 53 to adjust the distance between the two sets of tension shafts 54 by rotating, thereby achieving the purpose of adjusting the guide range according to the width dimension of the textile material 8.

[0039] Reference Figure 9The tension shaft 54 ​​has a tapered structure and is sleeved on the conveyor shaft 51. The tension shaft 54 ​​is also provided with teeth that match the slot 511. The tension shaft 54 ​​and the conveyor shaft 51 are mutually limited in the circumferential direction by the teeth and the slot 511. The mutual limitation of the tension shaft 54 ​​and the conveyor shaft 51 in the circumferential direction allows the two to rotate synchronously. The tapered external structure of the tension shaft 54 ​​has a larger diameter and surface area than the conveyor shaft 51 of the same length. The excessive surface area makes the friction between the tension shaft 54 ​​and the textile material 8 greater than the friction between the textile material 8 and the conveyor shaft 51. The excessive friction will cause the tension shaft 54 ​​to pull the textile material 8 from the conveyor shaft 51 towards itself.

[0040] Combination Figure 9 During the auxiliary conveying of textile material 8 by conveying unit 5, the distance between the threaded shaft 52 and the two sets of tension shafts 54 of push frame 53 is adjusted to match the width of textile material 8, so that the two sides of textile material 8 contact the outer walls of the two tension shafts 54 respectively, and the rest contacts the conveying shaft 51. During the rotation and conveying operation of conveying shaft 51 and tension shaft 54, the two tension shafts 54 will stretch the two sides of textile material 8 outward through a large frictional force. The frictional tension applied by the two tension shafts 54 is the same, so the textile material 8 is kept flat and taut against the conveying shaft 51, and thus the textile material 8 is conveyed outward in a flat manner. The two sets of tension shafts 54 assist the conveying shaft 51 in conveying operation by constantly tightening and correcting the posture of textile material 8, which can effectively avoid the occurrence of skew, and thus provide a good working foundation for subsequent winding operation.

[0041] Reference Figure 2 The washing tank 1 has a cooking zone 11, a washing zone 12, and a conveying zone 13 arranged horizontally inside, with a partition 14 between each adjacent zone. The cooking chamber 2 is located in the cooking zone 11, and the scrubbing unit 3 is located in the washing zone 12. A set of rollers 111 are arranged on both sides of the cooking chamber 2. The washing zone 12 forms a water storage area through the two sets of partitions 14, and the scrubbing unit 3 performs scrubbing operations in the water pool formed in this area. The entire scrubbing operation of the scrubbing unit 3 is below the water level line 121. This method allows the stains on the textile material 8 to be washed away by the water flow, preventing the material from moving to the next area. The rollers 111 are used to guide the movement of the textile material 8 into and out of the cooking chamber 2.

[0042] Furthermore, both the washing plate 31 of the washing unit 3 and the outer end of the conveying shaft 51 of the conveying unit 5 are provided with transmission wheels 6. The transmission wheels 6 of both are connected to the same set of transmission belts 7, and the other part of the transmission belts 7 is connected to the rollers 111. Therefore, the two sets of rollers 111, the washing plate 31 and the conveying shaft 51 are connected by the same set of transmission belts 7. At this time, the existing driving power source, such as a motor, is connected to the transmission belts 7, so that the washing unit 3, the conveying unit 5 and the rollers 111 can be driven simultaneously to clean and convey the textile material 8.

[0043] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.

Claims

1. A textile material processing device for a biomimetic spring pillow core, comprising a washing tank (1), a steaming chamber (2), a scrubbing unit (3), a rinsing unit (4), and a conveying unit (5), characterized in that: The cooking tank (2), the scrubbing unit (3), the rinsing unit (4) and the conveying unit (5) are all located in the cleaning tank (1), and the scrubbing unit (3) is located between the cooking tank (2) and the rinsing unit (4); The scrubbing unit (3) includes two sets of symmetrically arranged scrubbing plates (31), each set of scrubbing plates (31) has a limiting frame (32) at both ends, and the outer end of the limiting frame (32) is fixedly connected to the cleaning tank (1), and a drive shaft (33) is rotatably connected to the inner wall of one side of the cleaning tank (1), and one end of the scrubbing plate (31) is connected to the drive shaft (33); The rinsing unit (4) includes two sets of parallel adjusting shafts (41), two sets of guide components (42) symmetrically opened on the adjusting shafts (41), multiple sets of nozzles (43) evenly distributed in each set of guide components (42), and a guide frame (44) parallel to one side of each set of adjusting shafts (41), with one end of the nozzle (43) extending through the guide frame (44) into the guide component (42); The guide component (42) includes three spiral grooves arranged in a horizontal direction: a first spiral groove (421), a second spiral groove (422), and a third spiral groove (423). All three are spiral grooves with a spiral number of 0.5 turns. The length ratio of the three is 1:2:3, and the distance between the upper and lower ends of the three is the same.

2. The textile material processing device for the biomimetic spring pillow core according to claim 1, characterized in that: Both ends of the scrubbing plate (31) are provided with connecting frames (311), and the outer end of the connecting frame (311) is provided with a downward extending shaft (312), and the extending shaft (312) passes downward through the limiting frame (32) and abuts against the drive shaft (33).

3. The textile material processing device for the biomimetic spring pillow core according to claim 2, characterized in that: The limiting frame (32) has a long rectangular limiting groove (321) inside, and the connecting frame (311) passes downward through the limiting groove (321). At the same time, the extension shaft (312) is provided with two sets of limiting pieces that are respectively attached to the upper and lower sides of the limiting frame (32).

4. The textile material processing device for the biomimetic spring pillow core according to claim 3, characterized in that: The drive shaft (33) has a guide groove (331), and the guide groove (331) is a waveform ring composed of multiple waveform structures with the same arc connected end to end. At the same time, the end of the extension shaft (312) extends into the guide groove (331).

5. The textile material processing device for the biomimetic spring pillow core according to claim 1, characterized in that: One end of the nozzle (43) is provided with a connecting shaft (431), and the connecting shaft (431) extends through the guide frame (44) into the guide assembly (42). At the same time, two sets of limiting rings (432) are provided on the connecting shaft (431) and respectively fit with the upper and lower sides of the guide frame (44).

6. The textile material processing device for the biomimetic spring pillow core according to claim 1, characterized in that: The outer end of the adjusting shaft (41) is provided with a connecting wheel (411), and a transmission belt (412) is sleeved on the connecting wheel (411). The connecting wheels (411) of the two sets of adjusting shafts (41) are sleeved on the same set of transmission belts (412).

7. The textile material processing device for the biomimetic spring pillow core according to claim 1, characterized in that: The conveying unit (5) includes a conveying shaft (51) rotatably disposed in the cleaning tank (1), and a slot (511) is provided laterally on the conveying shaft (51), a threaded shaft (52) parallel to the conveying shaft (51), two sets of push frames (53) symmetrically disposed on the threaded shaft (52), and a tensioning shaft (54) rotatably connected to the lower end of the push frame (53).

8. The textile material processing device for the biomimetic spring pillow core according to claim 7, characterized in that: The stretching shaft (54) has a tapered structure and is sleeved on the conveying shaft (51). The stretching shaft (54) is provided with a tooth that matches the slot (511). The stretching shaft (54) and the conveying shaft (51) are mutually limited in the circumferential direction by the tooth and the slot (511).

9. The textile material processing device for the biomimetic spring pillow core according to claim 8, characterized in that: The cleaning tank (1) is provided with a cooking zone (11), a cleaning zone (12) and a conveying zone (13) in the horizontal direction inside, and a partition (14) is provided between each adjacent pair. Meanwhile, the cooking box (2) is located in the cooking zone (11), the scrubbing unit (3) is located in the cleaning zone (12), and a set of rollers (111) are provided on both sides of the cooking box (2).

Citation Information

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