Dehydration device and dehydration method for conveniently dehydrating cloth after tie-dyeing
By introducing sealing components, disassembly components and moisture-proof components into the fabric dehydration device, the problems of low dehydration sealing after tie-dyeing, difficult filter cleaning and moisture-proofing are solved, and the dehydration efficiency and service life of the fabric after tie-dyeing are improved.
Patent Information
- Application Number
- CN202311565690.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-22
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2043-11-22
AI Technical Summary
The existing cloth dehydration device has low sealing performance during the dehydration process after tie-dyeing, the filter is difficult to clean and replace, cannot prevent moisture from affecting the service life, and has low efficiency in putting in the cloth after tie-dyeing.
A dehydration device including a cylinder, a partition, a second motor and a drum is designed. It is equipped with a sealing component, a disassembly component, a moisture-proof component and a control component. Through structures such as telescopic rods, pull rods, motors and cylinders, it can achieve improved sealing, convenient filter replacement, moisture-proof and rapid insertion of fabrics.
It achieves high-sealing dehydration of tie-dyed fabrics, and the filter is easy to clean and replace, preventing moisture from affecting the service life and improving the efficiency of placing tie-dyed fabrics.
Smart Images

Figure CN117468193B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cloth dehydration, and in particular to a dehydration device and a dehydration method for conveniently dehydrating cloth after tie-dyeing. Background Art
[0002] The tie-dyeing process consists of two steps: tying and dyeing. Using yarn, thread, and rope, the fabric is dyed through various methods, including tying, sewing, binding, patching, and clipping. The purpose is to prevent the tied areas from dyeing, allowing the tied areas to retain their original color while the untied areas are evenly dyed. This creates uneven, richly layered color shading and wrinkles. Tie-dyeing is typically done on white cotton or cotton-linen blends. The primary dye is derived from indigo solution derived from natural plants such as indigo, isatis root, and mugwort grown on the Cangshan Mountains. Existing fabric dehydration equipment is inconvenient and lacks a high seal after tie-dyeing.
[0003] The defects of the existing cloth dewatering device are:
[0004] 1. Patent document CN109402912A discloses a textile fabric dehydration device. "A welded base plate is provided with two or more uniformly spaced dehydration holes welded to the four corners below the driving dehydration device to form an integral structure. When the device is in use, the moisture absorbed by the fabric can be rotated and thrown out to dry the fabric, thereby accelerating the dehydration speed of the fabric and making the fabric drier and easier to use. The device is provided with a hydraulic pushing device, which can drop the precipitated powder into the water storage tank, thereby precipitating and discharging the moisture and impurities therein, so that the discharged water can be reused." However, existing fabric dehydration devices are inconvenient for dehydrating fabric after tie-dyeing and have low sealing properties.
[0005] 2. Patent document CN112393569B discloses a preliminary dehydration device for washing textile fabrics. "Two support frames are fixedly mounted inside the housing, and an inclined support plate is fixedly mounted on the top of the support frame. In the present invention, the dehydration rollers, when in contact with the dehydration platen, crush the fabric above them, squeezing and dehydrating the fabric as it moves. Furthermore, when the dehydration rollers come into contact with the fabric, they are squeezed by a spring, causing the movable slip ring to slide over the limit slide bar, thereby enabling multiple dehydration rollers to simultaneously perform long-distance squeezing, thereby improving dehydration efficiency." However, the filters in existing fabric dehydration devices are inconvenient to clean and replace, increasing labor costs.
[0006] 3. Patent document CN113481682B discloses an intelligent automatic dehydration device for printed and dyed fabrics. "A printing and dyeing pool is provided at the lower left side of the base, a wastewater pool is provided at the lower middle portion of the base, a platform is fixedly connected to the top of the base, a plurality of drainage holes are provided within the platform, and the drainage holes are connected to the wastewater pool pipes. A fixed column is fixedly connected to the upper end of the base, a top plate is fixedly connected to the upper end of the fixed column, a slide rail is provided at the upper end of the top plate, and a slider is slidably connected to the upper end of the slide rail. This invention has the characteristics of strong practicality and intelligent dehydration." However, existing fabric dehydration devices cannot prevent moisture from reducing the service life.
[0007] 4. Patent document CN110863311B discloses an efficient dehydration device for dyeing and finishing fabrics, "and arranges a ring groove unit, a support column unit, a mounting ring unit, a tilt warning unit and an overweight warning unit on the lower surface of the dehydration drum body to achieve the effect of efficient and safe dehydration of the fabric. The present invention has a reasonable and effective dehydration structure, the motor is not easily corroded by water, the warning effect of overweight or tilt of the drum is good, the warning structure is simple and flexible, does not affect the normal dehydration operation, and the overall structural stability of the dehydration device is high, and it is convenient to load, unload and maintain." However, the existing fabric dehydration device is inconvenient to put in the fabric after tie-dyeing, and the working efficiency is low. Summary of the Invention
[0008] The object of the present invention is to provide a dehydration device and a dehydration method for facilitating the dehydration of fabrics after tie-dyeing, so as to solve the technical problem in the above-mentioned background technology that the fabric dehydration device is not convenient for dehydrating fabrics after tie-dyeing and has low sealing performance.
[0009] To achieve the above objectives, the present invention provides the following technical solutions: a dehydration device for conveniently dehydrating fabrics after tie-dyeing, comprising a cylinder, a partition, a second motor, and a drum, wherein the inner wall of the cylinder is mounted with a partition, the inner wall of the cylinder is mounted with a second motor, the inner wall of the cylinder is provided with a drum, and the output end of the second motor passes through the partition and is connected to the bottom of the drum, the inner wall of the drum is mounted with a sealing assembly for sealing the drum, and the outer wall of the cylinder is mounted with a control assembly for controlling the start and stop of the dehydration device;
[0010] The sealing assembly includes a telescopic rod installed on the inner wall of the drum, a support tube is installed through the bottom of the drum, the outer wall of the support tube is provided with a first opening, a blocking plate is installed through the outer wall of the first opening, a sealing strip is installed on the outer wall of the blocking plate, a first support block is installed on the outer wall of the support tube, a first spring is installed on the inner wall of the first support block, a first sealing block is installed on one end of the first spring, a first support plate is installed on the inner wall of the support tube, a second spring is installed on the bottom of the first support plate, a second support rod is installed on the bottom of the first support plate, a first sliding sleeve is installed on the outer wall of the second support rod, a second sealing block is installed on the outer wall of the first sliding sleeve, one end of the second spring is connected to the outer wall of the second sealing block, and the output end of the telescopic rod is connected to the outer wall of the blocking plate.
[0011] Preferably, a filter is installed on the inner wall of the cylinder, a disassembly assembly is installed on the inner wall of the cylinder, the disassembly assembly is used for quick replacement of the filter, a moisture-proof assembly is installed on the inner wall of the cylinder, the moisture-proof assembly is used for moisture-proofing the dehydration device, a plug is installed through the top of the cylinder, and an ejection assembly is provided on the inner wall of the cylinder, and the ejection assembly is used for pushing the plug.
[0012] Preferably, the disassembly assembly includes a second support plate installed on the inner wall of the cylinder, a third spring is installed on the bottom of the second support plate, a first sleeve is installed through the top of the second support plate, the outer wall of the cylinder is provided with a third opening, a pull rod is installed through the inner wall of the first sleeve, and one end of the pull rod extends to the outer wall of the cylinder through the third opening, the outer wall of the cylinder is provided with a fourth opening, a third sleeve is installed through the outer wall of the fourth opening, a third sealing block is installed through the inner wall of the third sleeve, and one end of the pull rod is connected to the top of the third sealing block, one end of the third spring is connected to the top of the third sealing block, the outer wall of the third sealing block is installed with a first limit block, and the outer wall of the filter is installed with a handle.
[0013] Preferably, the moisture-proof component includes a first sliding rod installed on the inner wall of the cylinder, a second sliding sleeve is installed on the outer wall of the first sliding rod, a fifth support plate is installed on the outer wall of the second sliding sleeve, a first pressure sensor is installed on the top of the fifth support plate, a second pressure sensor is installed on the bottom of the fifth support plate, absorbent cotton is installed on the bottom of the fifth support plate, and one end of the absorbent cotton is connected to the inner wall of the cylinder, a first motor is installed on the bottom of the partition, a threaded rod is installed on the output end of the first motor, a threaded sleeve is installed on the outer wall of the threaded rod, and the outer wall of the fifth support plate is connected to the outer wall of the threaded sleeve.
[0014] Preferably, the control component includes a processor, the processor is connected to the second pressure sensor via a wire, the processor is connected to the first pressure sensor via a wire, and the processor is connected to the first motor via a wire.
[0015] Preferably, the ejection assembly includes a second sliding rod installed on the inner wall of the cylinder, a fourth sliding sleeve installed on the outer wall of the second sliding rod, a bracket installed on the outer wall of the fourth sliding sleeve, a sixth spring installed on the outer wall of the bracket, and one end of the sixth spring is connected to the inner wall of the cylinder, a cylinder is installed on the inner wall of the cylinder, and one end of the cylinder is connected to the outer wall of the bracket, and one end of the bracket is connected to the bottom of the plug, a fifth opening is provided on the top of the cylinder, a sixth opening is provided on the top of the cylinder, a sixth sliding rod is installed through the inner wall of the sixth opening, and one end of the sixth sliding rod is connected to the bottom of the plug, and a third limiting rod is installed on one end of the sixth sliding rod.
[0016] Preferably, a first pipe is installed through the top of the cylinder, a third pipe is installed through the outer wall of the cylinder, and a support column is installed at the bottom of the cylinder.
[0017] Preferably, a guide plate is installed on the inner wall of the drum, and one end of the third pipe is connected to one side of the guide plate.
[0018] Preferably, the working steps of the dehydration device are as follows:
[0019] S1: The movement of the telescopic rod drives the blocking plate, which drives the second sealing block, which drives the first sliding sleeve. The movement of the first sliding sleeve causes the second sealing block to move, which drives the second spring. The movement of the second spring brings the second sealing block into close contact with the blocking plate. At this time, the movement of the blocking plate drives the sealing strip to move out of the branch tube, opening the branch tube to discharge the used material. The elastic force of the first spring drives the first sealing block to be tightly connected with the blocking plate to improve the sealing performance, thereby facilitating the dehydration of the fabric after tie-dyeing while improving the sealing performance.
[0020] S2. A pull handle is installed on the outer wall of the filter screen. The function of the first limit block is to provide a movement limit for the third sealing block. The function of the second support plate is to provide support for the third spring. Pulling the pull rod drives the third sealing block to move, and the movement of the third sealing block drives the movement of the third spring. The movement of the third spring causes the third sealing block to move away from the filter screen. At this time, pulling the pull handle drives the filter screen to move. The filter screen moves to move out of the fourth opening for easy cleaning and replacement, thereby realizing the function of facilitating cleaning and replacement of the filter screen and reducing manual labor.
[0021] S3. The first motor rotates to drive the threaded rod to rotate, the threaded rod rotates to drive the threaded sleeve to move, the threaded sleeve moves to drive the fifth support plate to move, the fifth support plate moves to drive the second sliding sleeve to move, the second sliding sleeve moves to cause the fifth support plate to drive the first pressure sensor to move, at this time the first pressure sensor detects whether there is pressure, when there is pressure, the first motor stops, the absorbent cotton is opened through the fifth support plate, if there is no pressure, the first motor continues to rotate, when the second pressure sensor detects pressure, the first motor stops and closes the absorbent cotton, when the second pressure sensor detects no pressure, the first motor continues to rotate, realizing the function of preventing moisture and extending the service life of the dehydration device;
[0022] S4. The function of the third limit rod is to provide a limit for the sixth slide rod, the function of the second slide rod is to provide a moving support for the fourth slide sleeve, the movement of the cylinder drives the bracket to move, the movement of the bracket drives the fourth slide sleeve to move, the movement of the fourth slide sleeve causes the bracket to drive the sixth spring to move, the movement of the sixth spring causes the bracket to drive the plug to move, the movement of the plug drives the sixth slide rod to move, the movement of the sixth slide rod causes the plug to move stably away, and the fifth opening opens the dehydration device to facilitate the insertion of the cloth after tie-dyeing, thereby realizing the function of facilitating the insertion of the cloth after tie-dyeing and improving work efficiency.
[0023] Preferably, the step S1 further includes the following steps:
[0024] S11, the second spring is supported by the first support plate, the first sliding sleeve is movably supported by the second support rod, and the first sealing block is supported by the first support block;
[0025] The step S2 also includes the following steps:
[0026] S21. The third sealing block moves with the support of the third sleeve, and the pull rod is supported by the first sleeve.
[0027] Compared with the prior art, the present invention has the following beneficial effects:
[0028] 1. The present invention utilizes a telescopic rod to move the blocking plate, which in turn moves the second sealing block, which in turn moves the first sliding sleeve. The movement of the first sliding sleeve causes the second sealing block to move the second spring, which in turn causes the second sealing block to come into close contact with the blocking plate. The blocking plate then moves the sealing strip out of the branch tube, opening the branch tube to discharge the used material. The elastic force of the first spring drives the first sealing block to tightly connect with the blocking plate, improving sealing performance. This facilitates dehydration of fabrics after tie-dyeing while also improving sealing performance.
[0029] 2. The present invention installs a pull handle on the outer wall where the filter is installed. The first limit block serves to limit the movement of the third sealing block. The second support plate serves to support the third spring. Pulling the pull rod drives the third sealing block to move. The movement of the third sealing block drives the movement of the third spring. The movement of the third spring causes the third sealing block to move away from the filter. At this time, pulling the pull handle drives the filter to move. The filter moves out of the fourth opening for easy cleaning and replacement, thereby achieving the function of facilitating cleaning and replacement of the filter and reducing manual labor.
[0030] 3. The present invention is equipped with a first motor that rotates to drive the threaded rod, which in turn drives the threaded sleeve to move, which in turn drives the fifth support plate to move, which in turn drives the second sleeve to move, which in turn drives the fifth support plate to move the first pressure sensor, and the first pressure sensor detects whether there is pressure. When there is pressure, the first motor stops, and the absorbent cotton is opened through the fifth support plate. If there is no pressure, the first motor continues to rotate, and when the second pressure sensor detects pressure, the first motor stops and closes the absorbent cotton. When the second pressure sensor detects no pressure, the first motor continues to rotate, thereby achieving the function of preventing moisture and extending the service life of the dehydration device;
[0031] 4. The present invention is equipped with a third limiting rod to provide a limit for the sixth slide rod, and a second slide rod to provide mobile support for the fourth slide sleeve. The movement of the cylinder drives the bracket to move, the movement of the bracket drives the fourth slide sleeve to move, the movement of the fourth slide sleeve causes the bracket to drive the sixth spring to move, the movement of the sixth spring causes the bracket to drive the plug to move, the movement of the plug drives the sixth slide rod to move, and the movement of the sixth slide rod causes the plug to move stably away. The fifth opening opens the dehydration device to facilitate the insertion of the cloth after tie-dyeing, thereby realizing the function of facilitating the insertion of the cloth after tie-dyeing and improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] Figure 1 It is a front view structural schematic diagram of the present invention;
[0033] Figure 2 It is a schematic diagram of the front structure of the present invention;
[0034] Figure 3 This is a schematic diagram of the blocking plate structure of the present invention;
[0035] Figure 4 This is a schematic structural diagram of the second sealing block of the present invention;
[0036] Figure 5 Schematic diagram of the filter structure of the present invention;
[0037] Figure 6 This is a schematic structural diagram of the third sealing block of the present invention;
[0038] Figure 7 This is a schematic diagram of the absorbent cotton structure of the present invention;
[0039] Figure 8 This is a schematic diagram of the plug structure of the present invention;
[0040] Figure 9 Schematic diagram of the control flow of the present invention.
[0041] In the figure: 1, cylinder; 2, control assembly; 3, support column; 4, third pipe; 5, first pipe; 6, partition; 7, second motor; 8, roller; 9, telescopic rod; 10, support cylinder; 11, first opening; 12, blocking plate; 13, sealing strip; 14, first support block; 15, first spring; 16, first sealing block; 17, first support plate; 18, second spring; 19, second support rod; 20, first sleeve; 21, second sealing block; 22, second support plate; 23, first sleeve; 24, third opening; 25, pull rod; 26, third spring; 27, third sealing Block; 28. Filter; 30. Fourth opening; 31. Pull handle; 32. Third sleeve; 33. First limit block; 34. First slide bar; 35. Second slide sleeve; 36. Fifth support plate; 37. Second pressure sensor; 38. First pressure sensor; 39. First motor; 40. Threaded sleeve; 41. Threaded rod; 42. Absorbent cotton; 43. Second slide bar; 44. Fourth slide sleeve; 45. Bracket; 46. Cylinder; 47. Sixth spring; 48. Fifth opening; 49. Sixth opening; 50. Sixth slide bar; 51. Third limit bar; 52. Plug; 53. Guide plate. DETAILED DESCRIPTION
[0042] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0043] In the description of the present invention, it should be noted that the terms "upper," "lower," "inner," "outer," "front end," "rear end," "both ends," "one end," "the other end," and the like, indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate and simplify the description of the present invention. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limiting the present invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0044] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "installed," "provided with," "connected," etc., should be understood in a broad sense. For example, "connected" may refer to a fixed connection, a detachable connection, or an integral connection; a mechanical connection or an electrical connection; a direct connection or an indirect connection through an intermediate medium; or internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.
[0045] Example 1: Please refer to Figure 1 、 Figure 2 、 Figure 3 and Figure 4 , the present invention provides an embodiment: a dehydration device for convenient dehydration of cloth after tie-dyeing, comprising a cylinder 1, a partition 6, a second motor 7 and a drum 8. The inner wall of the cylinder 1 is installed with a partition 6, the inner wall of the cylinder 1 is installed with a second motor 7, the inner wall of the cylinder 1 is provided with a drum 8, and the output end of the second motor 7 passes through the partition 6 and is connected to the bottom of the drum 8, the inner wall of the drum 8 is installed with a sealing assembly, the sealing assembly is used to seal the drum 8, the outer wall of the cylinder 1 is installed with a control assembly 2, the control assembly 2 is used to control the start and stop of the dehydration device, the inner wall of the cylinder 1 is installed with a filter 28, the inner wall of the cylinder 1 is installed with a disassembly assembly, the disassembly assembly is used for quick replacement of the filter 28, the inner wall of the cylinder 1 is installed with a moisture-proof assembly, the moisture-proof assembly is used to prevent moisture in the dehydration device, a plug 52 is installed through the top of the cylinder 1, and the inner wall of the cylinder 1 is provided with an ejection assembly. The ejection assembly is used for the ejection of the plug 52. The control assembly 2 includes a processor, which is connected to the second pressure sensor 37 through a wire, the processor is connected to the first pressure sensor 38 through a wire, and the processor is connected to the first motor 39 through a wire. The top of the cylinder 1 is penetrated by a first pipe 5, the outer wall of the cylinder 1 is penetrated by a third pipe 4, the bottom of the cylinder 1 is installed with a support column 3, the inner wall of the drum 8 is installed with a guide plate 53, and one end of the third pipe 4 is connected to one side of the guide plate 53. After the cloth is tie-dyed, it is placed in the drum 8 and enters the water source through the first pipe 5. At this time, the second motor 7 rotates to drive the drum 8 to rotate. The drum 8 rotates to clean the cloth. After cleaning, the water in the sealing assembly opener is discharged through the third pipe 4. At this time, the second motor 7 rotates to throw the water in the cloth out and discharge it through the sealing assembly to quickly dehydrate the cloth.
[0046] Example 2: Please refer to Figure 2 、 Figure 3 and Figure 4, an embodiment provided by the present invention: a sealing assembly includes a telescopic rod 9 installed on the inner wall of the drum 8, a support tube 10 is installed through the bottom of the drum 8, the outer wall of the support tube 10 is provided with a first opening 11, a blocking plate 12 is installed through the outer wall of the first opening 11, a sealing strip 13 is installed on the outer wall of the blocking plate 12, a first support block 14 is installed on the outer wall of the support tube 10, a first spring 15 is installed on the inner wall of the first support block 14, a first sealing block 16 is installed on one end of the first spring 15, a first support plate 17 is installed on the inner wall of the support tube 10, a second spring 18 is installed at the bottom of the first support plate 17, a second support rod 19 is installed at the bottom of the first support plate 17, a first sliding sleeve 20 is installed on the outer wall of the second support rod 19, and a second sealing Block 21, and one end of the second spring 18 is connected to the outer wall of the second sealing block 21, the output end of the telescopic rod 9 is connected to the outer wall of the blocking plate 12, the movement of the telescopic rod 9 drives the blocking plate 12 to move, the movement of the blocking plate 12 drives the second sealing block 21 to move, the movement of the second sealing block 21 drives the first sliding sleeve 20 to move, the movement of the first sliding sleeve 20 causes the second sealing block 21 to drive the second spring 18 to move, and the movement of the second spring 18 causes the second sealing block 21 to be in close contact with the blocking plate 12. At this time, the movement of the blocking plate 12 drives the sealing strip 13 to move out of the branch tube 10, so that the branch tube 10 is opened to discharge the use, and the elastic force of the first spring 15 drives the first sealing block 16 to be closely connected with the blocking plate 12 to improve the sealing performance, thereby achieving the function of facilitating the dehydration of the cloth after tie-dyeing while improving the sealing performance.
[0047] Example 3: Please refer to Figure 2 、 Figure 5 and Figure 6, an embodiment provided by the present invention: a disassembly assembly includes a second support plate 22 installed on the inner wall of the cylinder 1, a third spring 26 is installed at the bottom of the second support plate 22, a first sleeve 23 is installed through the top of the second support plate 22, the outer wall of the cylinder 1 is provided with a third opening 24, a pull rod 25 is installed through the inner wall of the first sleeve 23, and one end of the pull rod 25 extends to the outer wall of the cylinder 1 through the third opening 24, the outer wall of the cylinder 1 is provided with a fourth opening 30, the outer wall of the fourth opening 30 is installed through the third sleeve 32, the inner wall of the third sleeve 32 is installed through the third sealing block 27, and one end of the pull rod 25 is connected to the top of the third sealing block 27, and one end of the third spring 26 It is connected to the top of the third sealing block 27, and the outer wall of the third sealing block 27 is installed with a first limit block 33, and the outer wall of the filter screen 28 is installed with a pull handle 31. The function of the first limit block 33 is to provide a movement limit for the third sealing block 27, and the function of the second support plate 22 is to provide support for the third spring 26. Pulling the pull rod 25 drives the third sealing block 27 to move, and the movement of the third sealing block 27 drives the third spring 26 to move. The movement of the third spring 26 causes the third sealing block 27 to move away from the filter screen 28. At this time, pulling the pull handle 31 drives the filter screen 28 to move, and the filter screen 28 moves to move it out of the fourth opening 30 for easy cleaning and replacement, thereby realizing the function of facilitating cleaning and replacement of the filter screen 28 and reducing manual labor.
[0048] Example 4: Please refer to Figure 2 、 Figure 7 and Figure 9, an embodiment provided by the present invention: a moisture-proof component includes a first sliding rod 34 installed on the inner wall of the cylinder 1, a second sliding sleeve 35 is installed on the outer wall of the first sliding rod 34, a fifth support plate 36 is installed on the outer wall of the second sliding sleeve 35, a first pressure sensor 38 is installed on the top of the fifth support plate 36, a second pressure sensor 37 is installed on the bottom of the fifth support plate 36, absorbent cotton 42 is installed on the bottom of the fifth support plate 36, and one end of the absorbent cotton 42 is connected to the inner wall of the cylinder 1, a first motor 39 is installed at the bottom of the partition 6, a threaded rod 41 is installed on the output end of the first motor 39, a threaded sleeve 40 is installed on the outer wall of the threaded rod 41, and the outer wall of the fifth support plate 36 is connected to the outer wall of the threaded sleeve 40, the control component 2 includes a processor, the processor is connected to the second pressure sensor 37 through a wire, and the processor is connected to the first pressure sensor through a wire. The processor is connected to the first motor 39 through a wire. The rotation of the first motor 39 drives the threaded rod 41 to rotate, and the rotation of the threaded rod 41 drives the threaded sleeve 40 to move. The movement of the threaded sleeve 40 drives the fifth support plate 36 to move. The movement of the fifth support plate 36 drives the second sleeve 35 to move. The movement of the second sleeve 35 causes the fifth support plate 36 to drive the first pressure sensor 38 to move. At this time, the first pressure sensor 38 detects whether there is pressure. When there is pressure, the first motor 39 is stopped, and the absorbent cotton 42 is opened through the fifth support plate 36. If there is no pressure, the first motor 39 continues to rotate. When the second pressure sensor 37 detects pressure, the first motor 39 is stopped and the absorbent cotton 42 is closed. The second pressure sensor 37 detects no pressure and causes the first motor 39 to continue to rotate, thereby realizing the function of the dehydration device to prevent moisture and increase the service life.
[0049] Example 5: Please refer to Figure 2 and Figure 8, an embodiment provided by the present invention: the ejection assembly includes a second slide rod 43 installed on the inner wall of the cylinder 1, a fourth slide sleeve 44 is installed on the outer wall of the second slide rod 43, a bracket 45 is installed on the outer wall of the fourth slide sleeve 44, a sixth spring 47 is installed on the outer wall of the bracket 45, and one end of the sixth spring 47 is connected to the inner wall of the cylinder 1, a cylinder 46 is installed on the inner wall of the cylinder 1, and one end of the cylinder 46 is connected to the outer wall of the bracket 45, and one end of the bracket 45 is connected to the bottom of the plug 52, a fifth opening 48 is provided at the top of the cylinder 1, a sixth opening 49 is provided at the top of the cylinder 1, a sixth slide rod 50 is installed through the inner wall of the sixth opening 49, and one end of the sixth slide rod 50 is connected to the bottom of the plug 52, and one end of the sixth slide rod 50 is connected to the bottom of the plug 52. A third limiting rod 51 is installed at the end, and the function of the sixth opening 49 is to provide mobile support for the sixth slide bar 50. The function of the third limiting rod 51 is to provide a limit for the sixth slide bar 50. The function of the second slide bar 43 is to provide mobile support for the fourth sleeve 44. The movement of the cylinder 46 drives the bracket 45 to move, and the movement of the bracket 45 drives the fourth sleeve 44 to move. The movement of the fourth sleeve 44 causes the bracket 45 to drive the sixth spring 47 to move. The movement of the sixth spring 47 causes the bracket 45 to drive the plug 52 to move. The movement of the plug 52 drives the sixth slide bar 50 to move. The movement of the sixth slide bar 50 causes the plug 52 to move stably away from the fifth opening 48 to open the dehydration device to facilitate the insertion of the cloth after tie-dyeing, thereby realizing the function of convenient insertion after tie-dyeing and improving work efficiency.
[0050] The working steps of the dehydration device are as follows:
[0051] S1. The movement of the telescopic rod 9 drives the blocking plate 12 to move. The movement of the blocking plate 12 drives the movement of the second sealing block 21. The movement of the second sealing block 21 drives the movement of the first sliding sleeve 20. The movement of the first sliding sleeve 20 causes the second sealing block 21 to drive the second spring 18 to move. The movement of the second spring 18 causes the second sealing block 21 to be in close contact with the blocking plate 12. At this time, the movement of the blocking plate 12 drives the sealing strip 13 to move away from the branch tube 10, so that the branch tube 10 is opened to discharge the used material. The elastic force of the first spring 15 drives the first sealing block 16 to be closely connected with the blocking plate 12 to improve the sealing performance, thereby achieving the function of facilitating the dehydration of the fabric after tie-dyeing while improving the sealing performance;
[0052] A pull handle 31 is installed on the outer wall of S2 and the filter screen 28. The function of the first limit block 33 is to provide a movement limit for the third sealing block 27. The function of the second support plate 22 is to provide support for the third spring 26. Pulling the pull rod 25 drives the third sealing block 27 to move, and the movement of the third sealing block 27 drives the movement of the third spring 26. The movement of the third spring 26 causes the third sealing block 27 to move away from the filter screen 28. At this time, pulling the pull handle 31 drives the filter screen 28 to move. The filter screen 28 moves to move out of the fourth opening 30 for easy cleaning and replacement, thereby realizing the function of facilitating cleaning and replacement of the filter screen 28 and reducing manual labor.
[0053] S3, the first motor 39 rotates to drive the threaded rod 41 to rotate, the threaded rod 41 rotates to drive the threaded sleeve 40 to move, the threaded sleeve 40 moves to drive the fifth support plate 36 to move, the fifth support plate 36 moves to drive the second sliding sleeve 35 to move, the second sliding sleeve 35 moves to cause the fifth support plate 36 to drive the first pressure sensor 38 to move, at this time the first pressure sensor 38 detects whether there is pressure, and when there is pressure, stops the first motor 39, and opens the absorbent cotton 42 through the fifth support plate 36. If there is no pressure, the first motor 39 continues to rotate, and when the second pressure sensor 37 detects pressure, stops the first motor 39 and closes the absorbent cotton 42, and when the second pressure sensor 37 detects no pressure, the first motor 39 continues to rotate, thereby realizing the function of preventing moisture and improving the service life of the dehydration device;
[0054] S4. The function of the third limiting rod 51 is to provide a limit for the sixth slide bar 50. The function of the second slide bar 43 is to provide a moving support for the fourth slide sleeve 44. The movement of the cylinder 46 drives the bracket 45 to move. The movement of the bracket 45 drives the fourth slide sleeve 44 to move. The movement of the fourth slide sleeve 44 causes the bracket 45 to drive the sixth spring 47 to move. The movement of the sixth spring 47 causes the bracket 45 to drive the plug 52 to move. The movement of the plug 52 drives the sixth slide bar 50 to move. The movement of the sixth slide bar 50 causes the plug 52 to stably move away from the fifth opening 48 to open the dehydration device for convenient insertion of the tie-dyed fabric, thereby realizing the function of convenient insertion of the tie-dyed fabric and improving work efficiency.
[0055] Step S1 also includes the following steps:
[0056] S11, the second spring 18 is supported by the first support plate 17, the first sliding sleeve 20 is supported for movement by the second support rod 19, and the first sealing block 16 is supported by the first support block 14;
[0057] Step S2 also includes the following steps:
[0058] S21 , the third sealing block 27 moves with the support of the third sleeve 32 , and the pull rod 25 is supported by the first sleeve 23 .
[0059] Working principle: after tie-dyeing, the cloth is put into the drum 8 and water enters through the first pipe 5. At this time, the second motor 7 rotates to drive the drum 8 to rotate, and the drum 8 rotates to clean the cloth. After cleaning, the water in the sealing component opener is discharged through the third pipe 4. At this time, the second motor 7 rotates to throw the water in the cloth out and discharge it through the sealing component to quickly dehydrate the cloth. The movement of the telescopic rod 9 drives the blocking plate 12 to move, and the movement of the blocking plate 12 drives the second sealing block 21 to move. The movement of the second sealing block 21 drives the first sliding sleeve 20 to move. The movement of the first sliding sleeve 20 causes the second sealing block 21 to drive the second spring 18 to move. The movement of the second spring 18 causes the second sealing block 21 to be in close contact with the blocking plate 12. At this time, the movement of the blocking plate 12 drives the sealing strip 13 to move away The support tube 10 is opened to discharge the liquid. The elastic force of the first spring 15 drives the first sealing block 16 to be tightly connected with the blocking plate 12 to improve the sealing performance, thereby realizing the function of facilitating the dehydration of the fabric after tie-dyeing while improving the sealing performance. The outer wall of the filter 28 is provided with a pull handle 31. The function of the first limit block 33 is to provide a mobile limit for the third sealing block 27. The function of the second support plate 22 is to provide support for the third spring 26. Pulling the pull rod 25 drives the third sealing block 27 to move. The movement of the third sealing block 27 drives the third spring 26 to move. The movement of the third spring 26 causes the third sealing block 27 to move away from the filter 28. At this time, pulling the pull handle 31 drives the filter 28 to move. The filter 28 moves to move it out of the fourth opening 30 for easy cleaning and replacement. , realizing the function of facilitating the cleaning and replacement of the filter screen 28 and reducing manual labor, the first motor 39 rotates to drive the threaded rod 41 to rotate, the threaded rod 41 rotates to drive the threaded sleeve 40 to move, the threaded sleeve 40 moves to drive the fifth support plate 36 to move, the fifth support plate 36 moves to drive the second sliding sleeve 35 to move, the second sliding sleeve 35 moves to make the fifth support plate 36 drive the first pressure sensor 38 to move, at this time the first pressure sensor 38 detects whether there is pressure, and when there is pressure, the first motor 39 stops, and the absorbent cotton 42 is opened through the fifth support plate 36. If there is no pressure, the first motor 39 continues to rotate, and when the second pressure sensor 37 detects that there is pressure, the first motor 39 stops to close the absorbent cotton 42, and the second pressure sensor 37 detects that there is no pressure. The pressure causes the first motor 39 to continue rotating, realizing the function of preventing moisture and improving the service life of the dehydration device. The function of the third limit rod 51 is to provide a limit for the sixth slide bar 50. The function of the second slide bar 43 is to provide a mobile support for the fourth slide sleeve 44. The movement of the cylinder 46 drives the bracket 45 to move. The movement of the bracket 45 drives the fourth slide sleeve 44 to move. The movement of the fourth slide sleeve 44 causes the bracket 45 to drive the sixth spring 47 to move. The movement of the sixth spring 47 causes the bracket 45 to drive the plug 52 to move. The movement of the plug 52 drives the sixth slide bar 50 to move. The movement of the sixth slide bar 50 causes the plug 52 to stably move away from the fifth opening 48 to open the dehydration device to facilitate the insertion of the cloth after tie-dyeing, realizing the function of facilitating the insertion of the cloth after tie-dyeing and improving work efficiency.
[0060] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.
Claims
1. A dehydrating device for dehydrating fabric after tie-dyeing, characterized by: The invention comprises a cylinder (1), a partition (6), a second motor (7) and a roller (8), wherein the inner wall of the cylinder (1) is provided with a partition (6), the inner wall of the cylinder (1) is provided with a second motor (7), the inner wall of the cylinder (1) is provided with a roller (8), and the output end of the second motor (7) passes through the partition (6) and is connected to the bottom of the roller (8), the inner wall of the roller (8) is provided with a sealing component, the sealing component is used to seal the roller (8), and the outer wall of the cylinder (1) is provided with a control component (2), the control component (2) is used to control the start and stop of the dehydration device; The sealing assembly comprises a telescopic rod (9) mounted on the inner wall of the drum (8); a support tube (10) is installed through the bottom of the drum (8); the outer wall of the support tube (10) is provided with a first opening (11); a blocking plate (12) is installed through the outer wall of the first opening (11); a sealing strip (13) is installed on the outer wall of the blocking plate (12); a first support block (14) is installed on the outer wall of the support tube (10); a first spring (15) is installed on the inner wall of the first support block (14); a first spring (15) is installed at one end of the first spring (15); A sealing block (16) is provided. A first support plate (17) is installed on the inner wall of the support tube (10). A second spring (18) is installed on the bottom of the first support plate (17). A second support rod (19) is installed on the bottom of the first support plate (17). A first sliding sleeve (20) is installed on the outer wall of the second support rod (19). A second sealing block (21) is installed on the outer wall of the first sliding sleeve (20). One end of the second spring (18) is connected to the outer wall of the second sealing block (21). The output end of the telescopic rod (9) is connected to the outer wall of the blocking plate (12).
2. The dehydrating device for conveniently dehydrating fabric after tie-dyeing according to claim 1, characterized in that: The inner wall of the cylinder (1) is installed with a filter screen (28), the inner wall of the cylinder (1) is installed with a disassembly assembly, the disassembly assembly is used for quick replacement of the filter screen (28), the inner wall of the cylinder (1) is installed with a moisture-proof assembly, the moisture-proof assembly is used for moisture-proofing of the dehydration device, the top of the cylinder (1) is penetrated by a plug (52), the inner wall of the cylinder (1) is provided with an ejection assembly, the ejection assembly is used for ejecting the plug (52).
3. The dehydrating device for conveniently dehydrating fabric after tie-dyeing according to claim 2, characterized in that: The disassembly assembly comprises a second support plate (22) mounted on the inner wall of the cylinder (1), a third spring (26) is mounted on the bottom of the second support plate (22), a first sleeve (23) is mounted through the top of the second support plate (22), the outer wall of the cylinder (1) is provided with a third opening (24), a pull rod (25) is mounted through the inner wall of the first sleeve (23), and one end of the pull rod (25) extends to the outer wall of the cylinder (1) through the third opening (24), and the outer wall of the cylinder (1) is provided with a third opening (24). A fourth opening (30) is provided, a third sleeve (32) is installed through the outer wall of the fourth opening (30), a third sealing block (27) is installed through the inner wall of the third sleeve (32), one end of the pull rod (25) is connected to the top of the third sealing block (27), one end of the third spring (26) is connected to the top of the third sealing block (27), a first limiting block (33) is installed on the outer wall of the third sealing block (27), and a pull handle (31) is installed on the outer wall of the filter screen (28).
4. The dehydrating device for conveniently dehydrating fabric after tie-dyeing according to claim 2, characterized in that: The moisture-proof component comprises a first slide bar (34) mounted on the inner wall of the cylinder (1), a second slide sleeve (35) mounted on the outer wall of the first slide bar (34), a fifth support plate (36) mounted on the outer wall of the second slide sleeve (35), a first pressure sensor (38) mounted on the top of the fifth support plate (36), a second pressure sensor (37) mounted on the bottom of the fifth support plate (36), a water-absorbing cotton (42) mounted on the bottom of the fifth support plate (36), and one end of the water-absorbing cotton (42) is connected to the inner wall of the cylinder (1), a first motor (39) is mounted on the bottom of the partition (6), a threaded rod (41) is mounted on the output end of the first motor (39), a threaded sleeve (40) is mounted on the outer wall of the threaded rod (41), and the outer wall of the fifth support plate (36) is connected to the outer wall of the threaded sleeve (40).
5. The dehydrating device for conveniently dehydrating fabric after tie-dyeing according to claim 4, characterized in that: The control component (2) includes a processor, the processor is connected to the second pressure sensor (37) through a wire, the processor is connected to the first pressure sensor (38) through a wire, and the processor is connected to the first motor (39) through a wire.
6. The dehydrating device for conveniently dehydrating fabric after tie-dyeing according to claim 2, characterized in that: The ejection assembly comprises a second slide bar (43) mounted on the inner wall of the cylinder (1), a fourth slide sleeve (44) mounted on the outer wall of the second slide bar (43), a bracket (45) mounted on the outer wall of the fourth slide sleeve (44), a sixth spring (47) mounted on the outer wall of the bracket (45), and one end of the sixth spring (47) is connected to the inner wall of the cylinder (1), a cylinder (46) is mounted on the inner wall of the cylinder (1), and one end of the cylinder (46) is connected to the outer wall of the bracket (45), and one end of the bracket (45) is connected to the bottom of the plug (52), a fifth opening (48) is provided at the top of the cylinder (1), a sixth opening (49) is provided at the top of the cylinder (1), a sixth slide bar (50) is mounted through the inner wall of the sixth opening (49), and one end of the sixth slide bar (50) is connected to the bottom of the plug (52), and one end of the sixth slide bar (50) is mounted on the third limiting rod (51).
7. The dehydrating device for conveniently dehydrating fabric after tie-dyeing according to claim 1, characterized in that: A first pipe (5) is installed through the top of the cylinder (1), a third pipe (4) is installed through the outer wall of the cylinder (1), and a support column (3) is installed at the bottom of the cylinder (1).
8. The dehydrating device for conveniently dehydrating fabric after tie-dyeing according to claim 7, characterized in that: A guide plate (53) is installed on the inner wall of the drum (8), and one end of the third pipe (4) is connected to one side of the guide plate (53).
9. A method for using a dehydration device for conveniently dehydrating fabric after tie-dyeing according to any one of claims 1 to 8, characterized in that: The working steps of the dehydration device are as follows: S1, the telescopic rod (9) moves to drive the blocking plate (12) to move, the blocking plate (12) moves to drive the second sealing block (21) to move, the second sealing block (21) moves to drive the first sliding sleeve (20) to move, the first sliding sleeve (20) moves to make the second sealing block (21) drive the second spring (18) to move, the second spring (18) moves to make the second sealing block (21) and the blocking plate (12) closely contact, at this time the blocking plate (12) moves to drive the sealing strip (13) to move out of the branch tube (10), so that the branch tube (10) is opened to discharge the used liquid, and the elastic force of the first spring (15) drives the first sealing block (16) to be closely connected with the blocking plate (12) to improve the sealing performance, thereby achieving the function of facilitating the dehydration of the cloth after tie-dyeing while improving the sealing performance; S2, the outer wall of the filter (28) is provided with a pull handle (31), the function of the first limit block (33) is to provide a movement limit for the third sealing block (27), the function of the second support plate (22) is to provide support for the third spring (26), the pull rod (25) is pulled to drive the third sealing block (27) to move, the movement of the third sealing block (27) drives the third spring (26) to move, the movement of the third spring (26) causes the third sealing block (27) to move away from the filter (28), at this time, the pull handle (31) is pulled to drive the filter (28) to move, the filter (28) moves to move out of the fourth opening (30) for easy cleaning and replacement, thereby realizing the function of facilitating cleaning and replacement of the filter (28) and reducing manual labor; S3, the first motor (39) rotates to drive the threaded rod (41) to rotate, the threaded rod (41) rotates to drive the threaded sleeve (40) to move, the threaded sleeve (40) moves to drive the fifth support plate (36) to move, the fifth support plate (36) moves to drive the second sliding sleeve (35) to move, the second sliding sleeve (35) moves to make the fifth support plate (36) drive the first pressure sensor (38) to move, at this time the first pressure sensor (38) detects whether there is pressure, when there is pressure, the first motor (39) stops, the absorbent cotton (42) is opened through the fifth support plate (36), if there is no pressure, the first motor (39) continues to rotate, when the second pressure sensor (37) detects pressure, the first motor (39) stops and the absorbent cotton (42) is closed, the second pressure sensor (37) detects no pressure and the first motor (39) continues to rotate, realizing the function of preventing moisture and improving the service life of the dehydration device; S4, the third limiting rod (51) is used to provide a limit for the sixth slide bar (50), the second slide bar (43) is used to provide a mobile support for the fourth slide sleeve (44), the cylinder (46) moves to drive the bracket (45) to move, the bracket (45) moves to drive the fourth slide sleeve (44), the fourth slide sleeve (44) moves to make the bracket (45) drive the sixth spring (47) to move, the sixth spring (47) moves to make the bracket (45) drive the plug (52) to move, the plug (52) moves to drive the sixth slide bar (50), the sixth slide bar (50) moves to make the plug (52) stably move away from the fifth opening (48) to open the dehydration device to facilitate the placement of the tie-dyed cloth, thereby realizing the function of convenient placement of the tie-dyed cloth and improving work efficiency.
10. The method for using the dehydration device for conveniently dehydrating fabric after tie-dyeing according to claim 9, characterized in that: The step S1 also includes the following steps: S11, the second spring (18) is supported by the first support plate (17), the first sliding sleeve (20) is movably supported by the second support rod (19), and the first sealing block (16) is supported by the first support block (14); The step S2 also includes the following steps: S21. The third sealing block (27) moves with the support of the third sleeve (32), and the pull rod (25) is supported by the first sleeve (23).
Citation Information
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