Cloth moisture-proof storage device for garment processing

By introducing toothed storage bins and centrifugal fan systems into the fabric storage device, the problems of inconvenient storage and retrieval, small storage quantity, and poor dehumidification effect have been solved, achieving stable storage and retrieval of fabric rolls and efficient drying.

CN121291950APending Publication Date: 2026-01-09WENSHANG HONGTIAN CLOTHING CO LTD
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Patent Information

Application Number
CN202511690717.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-18
Publication Date
2026-01-09

AI Technical Summary

Technical Problem

Existing fabric storage devices suffer from problems such as inconvenient access, limited storage capacity, and poor dehumidification effect.

Method used

A moisture-proof storage device for garment processing fabrics was designed, which adopts a toothed storage bin and a centrifugal fan system. By storing fabric rolls in sections, using a humidity sensor to control the drying airflow, and combining desiccant isolation and filter disc rotation, efficient drying of the fabrics is achieved.

Benefits of technology

It enables stable storage and retrieval of fabric rolls and efficient drying, increases the storage capacity and dehumidification effect, avoids mutual interference between fabrics with different moisture levels, and improves drying efficiency and dehumidification effect.

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Abstract

The invention relates to the technical field of cloth storage, and discloses a clothing processing cloth moisture-proof storage device which comprises a storage box, a semicircular storage opening is formed in the front side of the storage box, a sealing plate is rotationally connected into the storage opening, and a tooth-shaped storage bin is rotationally connected to the inner wall of the storage box; the sealing plate is movably connected with the front wall of the tooth-shaped storage bin in an abutting mode, a plurality of annular storage cavities with the sizes gradually reduced are formed in the tooth-shaped storage bin, three partition plates in a circumferential array are fixedly connected to the inner walls of the storage cavities, and abutting plates are movably hinged to the two sides of each partition plate. By arranging a plurality of storage cavities, cloth rolls can be conveniently stored in a partitioned mode, the storage amount is relatively large, stable storing and taking can be achieved, in addition, all pieces of cloth can be sufficiently blown and dried, humidity sensors are matched for monitoring the humidity in the corresponding cavities, and corresponding exhaust valve holes can be controlled to be closed in a feedback mode; therefore, drying wind power is distributed to facilitate subsequent centralized drying, and drying efficiency is improved.
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Description

Technical Field

[0001] This invention relates to the field of fabric storage technology, and more specifically to a moisture-proof storage device for fabrics used in garment processing. Background Technology

[0002] Garment processing refers to a modern processing method that primarily uses modern machinery and secondarily uses manual processing. Fabrics that have been processed or are about to be processed need to be stored in advance using storage racks or boxes with appropriate ventilation and protection from light. At the same time, attention should be paid to controlling temperature and humidity and preventing insects and rodents.

[0003] Authorized patent CN212738948U discloses a fabric storage device for garment processing, including a box body. Support legs are bolted to all four sides of the bottom of the box body. A door is hinged to the front of the box body. A fixed box is fixedly connected to the right side of the box body. A rotating mechanism is provided inside the fixed box. Clamping mechanisms are bolted to all four sides of the rotating mechanism, and a storage roller is engaged on one side of each clamping mechanism. This patent, through the rotating mechanism, facilitates the user's rotation of the turntable and allows for quick retrieval of desired fabrics. The clamping mechanisms facilitate the user's fixation of the storage roller, thereby enabling orderly classification and organization of the fabrics. It also increases the gaps between fabric pieces, facilitating ventilation and solving the problem of traditional garment processing fabric storage devices that simply pile up fabrics without proper organization.

[0004] When using the fabric storage device described in the aforementioned patent, each fabric roller requires a locking mechanism such as a fixing pin to secure the fabric, making the storage and retrieval of the fabric very cumbersome. Although the storage gaps between the fabrics are designed to be large, the storage capacity is often limited, which is not conducive to the large-scale storage of fabrics. When ventilating and drying, only an exhaust fan is used to expel the moisture inside the storage box, resulting in poor dehumidification of the fabric and a long dehumidification time. At the same time, when the outside is humid, it is easy to introduce new moisture, exacerbating the dampness. Summary of the Invention

[0005] The purpose of this invention is to solve the problems of inconvenient access, small storage capacity, and poor dehumidification effect of general fabric storage devices. This invention provides a moisture-proof storage device for fabrics used in garment processing.

[0006] To achieve the above objectives, the present invention specifically adopts the following technical solution: A moisture-proof storage device for garment processing fabrics includes a storage box with a semi-circular storage opening on the front side. A sealing plate is rotatably connected to the storage opening. A toothed storage compartment is rotatably connected to the inner wall of the storage box. The sealing plate movably abuts against the front wall of the toothed storage compartment. The toothed storage compartment has several annular storage cavities with gradually decreasing sizes inside. Three partitions in a circumferential array are fixedly connected to the inner wall of the storage cavity. Each partition has abutment plates movably hinged to both sides. The storage box has a mounting groove on the rear side, and a circulating cylinder is fixedly connected to the upper side of the mounting groove. The circulating cylinder has two circumferentially distributed circulating chambers inside. A centrifugal fan is installed at the bottom of the circulating cylinder. Two filter discs are rotatably connected to the bottom of the inner cavity of the circulating cylinder. The filter discs are provided with a number of conical filter holes. The open ends of the conical filter holes on the two filter discs are opposite to each other. A rotating shaft is fixedly connected between the two filter discs. The centrifugal fan is coaxial with the rotating shaft. A material feeding assembly is movably inserted into the rear wall of the circulating cylinder. The front end of the circulation tube is fixedly connected to several circulation pipes extending to the top of the corresponding storage cavity. A humidity sensor is fixedly connected to the front end of each circulation pipe. An air extraction groove and an air exhaust groove are respectively opened on the upper and lower sides of the circulation pipe. A one-way conduit is fixedly connected to the rear end of the circulation pipe. The one-way conduit connects the air extraction groove to the rear circulation cavity. An exhaust valve hole is provided on the front wall of the circulation tube. The exhaust valve hole connects the exhaust groove to the front circulation cavity. A controller is fixedly connected to the front wall of the storage box. The controller is electrically connected to the humidity sensor. The controller can control the rotation of the sealing plate, the toothed storage compartment, the rotating shaft, and the opening and closing of the exhaust valve hole.

[0007] Furthermore, a through groove corresponding to the circulation pipe is opened on the side of the partition away from the axis of the toothed storage compartment, and a spring-loaded push rod that penetrates the side wall of each storage cavity is slidably inserted between the partitions, and a hinge rod is movably connected between the spring-loaded push rod and the abutment plate; A telescopic cylinder is fixedly connected to the front wall of the tooth-shaped storage compartment. The controller is electrically connected to the telescopic cylinder. An end post is fixedly connected to the front output end of the telescopic cylinder. The end post is slidably engaged with the inner wall of the tooth-shaped storage compartment. An annular inclined surface is formed on the outer periphery of the front side of the end post. The elastic push rod is movably abutted against the inclined surface.

[0008] Furthermore, the sealing plate is circular and has an operating port at the bottom corresponding to the storage cavity. A spiral groove is formed on the inner wall of the middle part of the sealing plate, and a pin protrusion is provided on the lower wall of the end post to engage with the spiral groove.

[0009] Furthermore, connecting pipe one and connecting pipe two are fixedly connected to the bottom of the circulation chambers on the front and rear sides, respectively. Connecting pipe one is connected to the output end of the side wall of the centrifugal fan, and connecting pipe two is connected to the input end of the bottom of the centrifugal fan.

[0010] Furthermore, the feeding assembly is located between the two filter discs. The feeding assembly includes a material frame that is movably inserted into the rear circulation chamber. Two slots distributed at a 90-degree angle are provided in the rear wall of the material frame. An adjusting shaft is rotatably connected to the middle of the material frame. A filter screen adapted to the material frame is fixedly sleeved on the front side of the adjusting shaft. A U-shaped elastic block that is slidably engaged with the slots is slidably engaged at the rear of the adjusting shaft.

[0011] Furthermore, the air extraction groove and the air exhaust groove extend to the lower wall of the circulating pipe to form an air extraction port and an air exhaust port, respectively. The air extraction port is close to the front side of the storage cavity, and the air exhaust port is close to the rear side of the storage cavity.

[0012] Furthermore, the one-way conduit and the exhaust valve hole are respectively located above the two filter discs.

[0013] Furthermore, the front end of the circulation tube is fixedly connected to a support ring that is rotatably connected to the inner wall of the corresponding storage cavity.

[0014] Furthermore, a drive worm gear is provided on the lower side of the mounting slot. The drive worm gear is driven by a drive motor installed on the lower side of the mounting slot. The controller is electrically connected to the drive motor. A ratchet groove is provided on the outer periphery of the top end of the drive worm gear. The bottom end of the rotating shaft is concave and the inner wall is provided with a spring-loaded ratchet corresponding to the ratchet groove.

[0015] Furthermore, a worm gear is rotatably connected to the bottom of the mounting groove and meshes with the drive worm, and a rotating gear that meshes with the toothed storage compartment is fixedly sleeved on the front side of the worm gear.

[0016] The beneficial effects of this invention are as follows: 1. This invention, by setting up several storage cavities, facilitates the partitioned storage of fabric rolls and avoids mutual interference between fabrics with different humidity levels. When storing using the storage cavities, the fabric rolls can be stored in contact with each other, allowing for a relatively large storage capacity. The partitions divide the interior of each annular storage cavity, making it easier to control the rotation of the toothed storage chamber and preventing slippage between the fabric rolls and the inner wall of the storage cavity. This ensures stable rotation of the fabric rolls for storage and retrieval operations. Furthermore, by using annular storage cavities to store fabric rolls, and based on the mechanism that the top fabric roll experiences relatively less pressure from the fabric on both sides, it is easier to control the retrieval of the target fabric roll.

[0017] 2. This invention reduces the storage space of the storage chamber by controlling the outward deflection of each abutment relative to the partition before storage. When drying the fabric rolls stored in the toothed storage chamber, the abutments are controlled to reset, thus ensuring that the fabric rolls in each storage chamber have sufficient room to move. When the toothed storage chamber continues to rotate, the fabric rolls at the top automatically separate to both sides under the action of gravity, which facilitates the circulation pipe to fully blow and dry each fabric. With the humidity sensor monitoring the humidity in the corresponding chamber, feedback can be used to control the corresponding exhaust valve holes to close, thereby distributing the drying air force for subsequent centralized drying and improving drying efficiency.

[0018] 3. When the centrifugal fan drives the air to circulate in the two circulation chambers, the two filter discs can isolate the desiccant provided by the feeding component, preventing the desiccant from entering the storage chamber and contaminating the fabric. At the same time, during drying, the filter discs rotate with the rotating shaft, and the desiccant trapped in the two filter discs can be continuously transferred and dispersed between the two circulation chambers under the action of wind, avoiding the desiccant from clogging or sticking to the filter discs and improving the moisture absorption and dehumidification effect. Attached Figure Description

[0019] Figure 1 This is the three-dimensional structure of the storage device of the present invention. Figure 1 ; Figure 2 This is the three-dimensional structure of the storage device of the present invention. Figure 2 ; Figure 3 This is a three-dimensional sectional view of the storage box portion of the storage device of the present invention; Figure 4 This is a three-dimensional structural diagram of the storage box and circulation tube portion of the storage device of the present invention; Figure 5 This is a three-dimensional structural diagram of the tooth-shaped storage compartment portion of the storage device of the present invention; Figure 6 This is a three-dimensional sectional view of the tooth-shaped storage compartment portion of the storage device of the present invention; Figure 7 This is a three-dimensional sectional view of the partition portion of the storage device of the present invention; Figure 8 This is a three-dimensional exploded cross-sectional view of the storage box and end column portion of the storage device of the present invention; Figure 9 This is a three-dimensional sectional view of the circulating cylinder portion of the storage device of the present invention; Figure 10 This is a three-dimensional exploded cross-sectional view of the material frame portion of the storage device of the present invention; Figure 11 This is a three-dimensional exploded cross-sectional view of the storage device shaft and drive worm gear of the present invention.

[0020] Reference numerals: 1. Storage box; 11. Sealing plate; 12. Spiral groove; 2. Toothed storage bin; 21. Partition; 22. Support plate; 23. Elastic push rod; 24. Hinge rod; 25. Telescopic cylinder; 26. End column; 27. Pin protrusion; 3. Circulation tube; 31. Connecting pipe one; 32. Connecting pipe two; 33. Centrifugal fan; 34. Filter plate; 35. Rotating shaft; 36. Elastic pawl; 37. Exhaust valve hole; 4. Material frame; 41. Slot; 42. Adjusting shaft; 43. Filter screen; 44. U-shaped elastic block; 5. Circulation tube; 51. Humidity sensor; 52. Air extraction slot; 53. Exhaust slot; 54. One-way duct; 55. Support ring; 6. Drive worm gear; 61. Worm gear; 62. Rotating gear; 7. Controller. Detailed Implementation

[0021] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.

[0022] Example 1 like Figures 1-11 As shown, a moisture-proof storage device for fabric used in garment processing includes a storage box 1. The storage box 1 has a semi-circular storage opening on the front side. A sealing plate 11 is rotatably connected to the storage opening. A toothed storage chamber 2 is rotatably connected to the inner wall of the storage box 1. The sealing plate 11 and the front wall of the toothed storage chamber 2 are in movable contact. The toothed storage chamber 2 has several annular storage cavities with gradually decreasing size inside. Three partitions 21 in a circular array are fixedly connected to the inner wall of the storage cavity. Abutment plates 22 are movably hinged to both sides of the partitions 21. The storage box 1 has a mounting groove on the rear side, and a circulating cylinder 3 is fixedly connected to the upper side of the mounting groove. The circulating cylinder 3 has two circumferentially distributed circulating chambers inside. A centrifugal fan 33 is installed at the bottom of the circulating cylinder 3. Two filter discs 34 are rotatably connected to the bottom of the inner cavity of the circulating cylinder 3. Several conical filter holes are provided on the filter discs 34. The open ends of the conical filter holes on the two filter discs 34 are opposite to each other. A rotating shaft 35 is fixedly connected between the two filter discs 34. The centrifugal fan 33 is coaxial with the rotating shaft 35. A material feeding and discharging component is movably inserted into the rear wall of the circulating cylinder 3. The front end of the circulation tube 3 is fixedly connected to several circulation pipes 5 extending to the top of the corresponding storage chamber. The front end of the circulation pipe 5 is fixedly connected to a humidity sensor 51. The upper and lower sides of the circulation pipe 5 are respectively provided with an air extraction groove 52 and an exhaust groove 53. The rear end of the circulation pipe 5 is fixedly connected to a one-way conduit 54, which connects the air extraction groove 52 to the rear circulation chamber. The front wall of the circulation tube 3 is provided with an exhaust valve hole 37, which connects the exhaust groove 53 to the front circulation chamber. The front wall of the storage box 1 is fixedly connected to a controller 7, which is electrically connected to the humidity sensor 51. The controller 7 can control the rotation of the sealing plate 11, the toothed storage chamber 2, the rotating shaft 35, and the opening and closing of the exhaust valve hole 37.

[0023] In use, the controller 7 controls the sealing plate 11 to rotate and open the storage port. Each abutment 22 automatically deflects outward relative to the partition 21, relatively reducing the storage space of the storage cavity. After the fabric rolls are placed into the three top storage cavities, the toothed storage compartment 2 is rotated to provide empty storage cavities and rotated to the top, facilitating the insertion of subsequent fabric rolls. Once all fabric rolls are in place, the controller 7 controls the sealing plate 11 to rotate and reset, automatically sealing each storage cavity. Because the fabric rolls are stored in separate sections, mutual interference between fabrics with different humidity levels is avoided. Due to the influence of external humidity, when storing fabric rolls in the storage chamber, the fabric rolls can be stored in contact with each other, resulting in a relatively large storage capacity. Furthermore, since each annular storage chamber is separated internally by partitions 21, when the toothed storage chamber 2 is rotated, slippage between the fabric rolls and the inner wall of the storage chamber is avoided, thereby stably driving the fabric rolls to rotate for storage and retrieval operations. In addition, when storing fabric rolls in the annular storage chamber, based on the mechanism that the top fabric roll is subjected to relatively less pressure from the fabric on both sides, when the target fabric roll is taken out, the toothed storage chamber 2 is rotated to move it to the top, thereby facilitating the removal of the target fabric roll. During fabric storage, when the humidity sensor 51 detects that the humidity in the corresponding storage chamber exceeds the standard, the controller 7 automatically controls the corresponding exhaust valve 37 to open and controls the rotating shaft 35 and the toothed storage chamber 2 to operate. The rotating shaft 35 drives the centrifugal fan 33 to operate. The centrifugal fan 33 uses the circulation tube 3, circulation pipe 5, and one-way duct 54 to circulate and dry the air in the storage chamber. During this period, the exhaust slot 53 in the circulation pipe 5 automatically discharges air into the storage chamber, while the air extraction slot 52 draws air into the storage chamber. The flowing dry air causes the moisture in the fabric roll to evaporate continuously. When the evaporated moisture passes between the two circulation chambers and the two filter discs 34, it is automatically absorbed by the desiccant provided by the material handling assembly, so that the air entering the storage chamber afterward is sufficiently dry to improve the evaporation effect of the moisture in the fabric roll. During the drying process, as the toothed storage chamber 2 continues to rotate, the fabric roll at the top of the storage chamber automatically separates to both sides under the action of gravity. This facilitates thorough drying of each fabric by the circulation pipe 5. Combined with the humidity sensor 51, which monitors the humidity in the corresponding chamber in real time, feedback control can be provided to close the corresponding exhaust valve 37 once the humidity reaches the target level. This distributes the drying airflow to the remaining storage chambers for concentrated drying, improving drying efficiency. Furthermore, when the centrifugal fan 33 drives the airflow in the two circulation chambers, the two filter discs 34 isolate the desiccant supplied by the material handling assembly, preventing it from entering the storage chamber. During this process, as the shaft 35 rotates the filter discs 34, the desiccant trapped between the two filter discs 34 accumulates in the open area of ​​the conical filter holes under the action of the airflow. When it enters the circulation chamber from one side and is blown out by the corresponding airflow direction, it continuously transfers between the two circulation chambers, preventing the desiccant from clogging and sticking to the filter discs 34, increasing the dispersion of the desiccant, and improving the moisture absorption and dehumidification effect.

[0024] Example 2: Based on the above examples, a driving mechanism for the abutment 22 is provided: like Figures 6-7 As shown, a through groove corresponding to the circulation pipe 5 is provided on the side of the partition 21 away from the axis of the toothed storage compartment 2. A spring-loaded rod 23 that penetrates the side wall of each storage compartment is slidably inserted between the partitions 21. A hinge rod 24 is movably connected between the spring-loaded rod 23 and the abutment plate 22. A telescopic cylinder 25 is fixedly connected to the front wall of the toothed storage compartment 2. The controller 7 is electrically connected to the telescopic cylinder 25. An end post 26 is fixedly connected to the front output end of the telescopic cylinder 25. The end post 26 is slidably engaged with the inner wall of the toothed storage compartment 2. An annular inclined surface is opened on the outer periphery of the front side of the end post 26. The elastic push rod 23 is in movable contact with the inclined surface.

[0025] The telescopic cylinder 25 is extended by the pre-storage controller 7, which moves the end post 26 forward. The annular inclined surface of the end post 26 squeezes the elastic push rods 23 to contract and accumulate elastic potential energy. The elastic push rods 23 drive the hinge rod 24 to push the abutment plate 22. The abutment plate 22 then automatically deflects outward relative to the partition plate 21, reducing the storage space of the storage cavity. After the fabric is stored, when the telescopic cylinder 25 is reset, the elastic push rod 23 releases its elastic potential energy, causing the partition plate 21 to automatically reset. The storage space of the storage cavity is restored, which facilitates the control of the number of fabric rolls stored in the storage cavity and ensures that there is room for movement between the fabric rolls during subsequent drying, which facilitates air circulation.

[0026] Example 3: Based on the above examples, a driving mechanism for the sealing plate 11 is provided: like Figure 6 and Figure 8 As shown, the sealing plate 11 is circular and has an operation port at the bottom corresponding to the storage cavity. The inner wall of the middle part of the sealing plate 11 has a spiral groove 12, and the lower wall of the end post 26 has a pin protrusion 27 that is movably engaged with the spiral groove 12.

[0027] When the telescopic cylinder 25 extends and drives the end post 26 forward, the pin protrusion 27 automatically squeezes the spiral groove 12, thereby driving the sealing plate 11 to rotate half a turn. The operating port at the bottom of the sealing plate 11 rotates to the upper side, and the storage port of the storage box 1 is opened. The cloth roll can be stored and retrieved through the operating port. Simultaneously, due to the outward deflection of each abutment plate 22 relative to the partition plate 21, the storage space of the storage cavity is relatively reduced. This ensures that when the storage port is opened, the storage space of the storage cavity is relatively reduced, and the number of cloth rolls stored is relatively reduced. Subsequently, when the control operating port is closed to seal and rotate the toothed storage chamber 2, and the cloth roll in the storage cavity is dried, the cloth roll can be provided with room to move. This allows the cloth roll at the top to automatically separate to both sides under the action of gravity, making it easier to fully contact the drying airflow and improve the drying effect.

[0028] Example 4: Based on the above examples, a dehumidification circulation mechanism is provided: like Figures 9-11 As shown, connecting pipe 1 31 and connecting pipe 2 32 are fixedly connected to the bottom of the front and rear circulation chambers, respectively. Connecting pipe 1 31 is connected to the output end of the side wall of the centrifugal fan 33, and connecting pipe 2 32 is connected to the input end of the bottom of the centrifugal fan 33.

[0029] The suction groove 52 and the exhaust groove 53 extend to the lower wall of the circulation pipe 5 to form a suction port and an exhaust port, respectively. The suction port is close to the front side of the storage cavity, and the exhaust port is close to the rear side of the storage cavity.

[0030] The pressurized air output by the centrifugal fan 33, through the connecting pipe 31, enters the front circulation chamber and is pre-dried by the dispersed desiccant. Then, it is discharged into the rear of the storage chamber through the exhaust port on the front side of the exhaust groove 53 via the open exhaust valve hole 37. It then comes into full contact with the fabric rolls that are separated to both sides under the action of gravity at the top of the storage chamber, promoting the evaporation of moisture from the damp fabric rolls. After that, it enters the rear circulation chamber through the exhaust port on the front side of the exhaust groove 52 and the one-way conduit 54 to be dried by the dispersed desiccant. The dried air is then drawn into the circulation chamber by the input end at the bottom of the centrifugal fan 33 to achieve circulation. The dehumidification and drying effect is good and gentle, and it will not damage the fabric compared with electric heating.

[0031] The one-way conduit 54 and the exhaust valve hole 37 are located above the two filter discs 34 respectively. This design can prevent the desiccant from accidentally entering the storage chamber through the circulation pipe 5 and contaminating the fabric.

[0032] Furthermore, a support ring 55 is fixedly connected to the front end of the circulation tube 5 and is rotatably connected to the inner wall of the corresponding storage cavity. The support ring 55 can effectively support the front end of the circulation tube 5, preventing the front side of the circulation tube 5 from tilting and colliding with the fabric roll driven by the toothed storage bin 2 during long-term use.

[0033] Example 5: Based on the above examples, a feeding and dispensing assembly is provided: like Figures 9-10 As shown, the feeding assembly is located between two filter discs 34. The feeding assembly includes a material frame 4 that is movably inserted into the rear circulation cavity. Two slots 41 with a 90-degree angle are opened in the rear wall of the material frame 4. An adjusting shaft 42 is rotatably connected to the middle of the material frame 4. A filter screen 43 that is adapted to the material frame 4 is fixedly sleeved on the front side of the adjusting shaft 42. A U-shaped elastic block 44 that is slidably engaged with the slots 41 is slidably engaged at the rear of the adjusting shaft 42.

[0034] Initially, the U-shaped elastic block 44 engages with the upper slot 41. The adjusting shaft 42 drives the filter screen 43 to remain vertical. The filter screen 43 does not affect the airflow inside the circulation cylinder 3. When the desiccant needs to be replaced, the U-shaped elastic block 44 is pressed from the outside, and the adjusting shaft 42 is rotated to drive the U-shaped elastic block 44 into the slot 41 on the right side. This controls the filter screen 43 to deflect horizontally. The controller 7 controls the centrifugal fan 33 to run for a period of time and controls the opening of the exhaust valve 37. When the centrifugal fan 33 is running, the airflow in the rear circulation chamber flows from top to bottom. The upper filter disc 34 can then allow the desiccant transferred from the front circulation chamber to fall onto the filter screen 43. After the centrifugal fan 33 has run for a period of time, the material frame 4 can be pulled out to recover the desiccant and replace it with new desiccant. After replacing the desiccant, the filter screen 43 is controlled to remain vertical, and the new desiccant provided on the filter screen 43 will automatically slide down for use.

[0035] Example 6: Based on the above examples, a driving mechanism for the rotating shaft 35 and the toothed storage compartment 2 is provided: like Figure 3 and Figure 11 As shown, a drive worm gear 6 is provided on the lower side of the mounting slot. The drive worm gear 6 is driven by a drive motor installed on the lower side of the mounting slot. The controller 7 is electrically connected to the drive motor. A ratchet groove is provided on the outer periphery of the top of the drive worm gear 6. The bottom end of the rotating shaft 35 is concave and the inner wall is provided with a spring-loaded pawl 36 corresponding to the ratchet groove.

[0036] Furthermore, a worm gear 61 that meshes with the drive worm 6 is rotatably connected to the bottom of the mounting slot, and a rotating gear 62 that meshes with the toothed storage compartment 2 is fixedly sleeved on the front side of the worm gear 61.

[0037] The controller 7 controls the drive motor to drive the drive worm 6 to rotate forward. The drive worm 6 cannot drive the elastic pawl 36 through the ratchet groove to rotate the shaft 35. The centrifugal fan 33 does not run. Only the drive worm 6 drives the worm gear 61 to rotate the toothed storage bin 2. At this time, the toothed storage bin 2 can be controlled to perform the storage and retrieval operation of the fabric roll without drying the fabric roll, thus avoiding the desiccant failure. The controller 7 controls the drive motor to drive the drive worm 6 to rotate in reverse. The drive worm 6 can drive the elastic pawl 36 through the ratchet groove to rotate the shaft 35. At this time, the centrifugal fan 33 runs and the toothed storage bin 2 rotates in reverse to dry the fabric roll.

[0038] The above description of the disclosed embodiments enables those skilled in the art to make or use the invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the invention. Therefore, the invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A moisture-proof storage device for garment processing fabrics, comprising a storage box (1), characterized in that, The storage box (1) has a semi-circular storage opening on the front side, and a sealing plate (11) is rotatably connected to the storage opening. A toothed storage compartment (2) is rotatably connected to the inner wall of the storage box (1). The sealing plate (11) is in movable contact with the front wall of the toothed storage compartment (2). The toothed storage compartment (2) has several annular storage cavities with gradually decreasing size inside. Three partitions (21) in a circular array are fixedly connected to the inner wall of the storage cavity. Abutment plates (22) are movably hinged to both sides of the partitions (21). The storage box (1) has a mounting groove on the rear side, and a circulating cylinder (3) is fixedly connected to the upper side of the mounting groove. The circulating cylinder (3) has two circumferentially distributed circulating chambers inside. A centrifugal fan (33) is provided at the bottom of the circulating cylinder (3). Two filter discs (34) are rotatably connected to the bottom of the inner cavity of the circulating cylinder (3). Several conical filter holes are provided on the filter discs (34). The open ends of the conical filter holes on the two filter discs (34) are opposite to each other. A rotating shaft (35) is fixedly connected between the two filter discs (34). The centrifugal fan (33) is coaxial with the rotating shaft (35). A material feeding assembly is movably inserted into the rear wall of the circulating cylinder (3). The front end of the circulation tube (3) is fixedly connected to several circulation pipes (5) extending to the top of the corresponding storage cavity. The front end of the circulation pipe (5) is fixedly connected to a humidity sensor (51). The upper and lower sides of the circulation pipe (5) are respectively provided with an air extraction groove (52) and an exhaust groove (53). The rear end of the circulation pipe (5) is fixedly connected to a one-way conduit (54). The one-way conduit (54) connects the air extraction groove (52) to the rear circulation cavity. An exhaust valve hole (37) is provided on the front wall of the circulation tube (3). The exhaust valve hole (37) connects the exhaust groove (53) to the front circulation cavity. A controller (7) is fixedly connected to the front wall of the storage box (1). The controller (7) is electrically connected to the humidity sensor (51). The controller (7) can control the rotation of the sealing plate (11), the toothed storage chamber (2), the rotating shaft (35), and the opening and closing of the exhaust valve hole (37).

2. The fabric moisture-proof storage device for garment processing according to claim 1, characterized in that, The partition (21) has a through groove corresponding to the circulating pipe (5) on the side away from the axis of the toothed storage compartment (2). The partition (21) is slidably connected with a spring-loaded rod (23) that penetrates the side wall of each storage cavity. The spring-loaded rod (23) and the abutment plate (22) are movably connected with a hinge rod (24). A telescopic cylinder (25) is fixedly connected to the front wall of the toothed storage compartment (2). The controller (7) is electrically connected to the telescopic cylinder (25). An end post (26) is fixedly connected to the front output end of the telescopic cylinder (25). The end post (26) is slidably engaged with the inner wall of the toothed storage compartment (2). An annular inclined surface is opened on the outer periphery of the front side of the end post (26). The elastic push rod (23) is movably abutted against the inclined surface.

3. The fabric moisture-proof storage device for garment processing according to claim 2, characterized in that, The sealing plate (11) is circular and has an operation port at the bottom corresponding to the storage cavity. The inner wall of the middle part of the sealing plate (11) has a spiral groove (12). The lower wall of the end post (26) is provided with a pin protrusion (27) that is movably engaged with the spiral groove (12).

4. The fabric moisture-proof storage device for garment processing according to claim 3, characterized in that, Connecting pipe one (31) and connecting pipe two (32) are fixedly connected to the bottom of the circulation chamber on the front and rear sides respectively. Connecting pipe one (31) is connected to the output end of the side wall of the centrifugal fan (33), and connecting pipe two (32) is connected to the bottom input end of the centrifugal fan (33).

5. A moisture-proof storage device for garment processing fabrics according to claim 4, characterized in that, The feeding assembly is located between the two filter discs (34). The feeding assembly includes a material frame (4) that is movably inserted into the circulation chamber on the rear side. Two slots (41) with a 90-degree angle are opened in the rear wall of the material frame (4). An adjusting shaft (42) is rotatably connected to the middle of the material frame (4). A filter screen (43) that is adapted to the material frame (4) is fixedly sleeved on the front side of the adjusting shaft (42). A U-shaped elastic block (44) that is movably engaged with the slots (41) is slidably engaged at the rear of the adjusting shaft (42).

6. A moisture-proof storage device for garment processing fabrics according to claim 5, characterized in that, The air extraction groove (52) and the air exhaust groove (53) extend to the lower wall of the circulating pipe (5) to form an air extraction port and an air exhaust port, respectively. The air extraction port is close to the front side of the storage cavity, and the air exhaust port is close to the rear side of the storage cavity.

7. A moisture-proof storage device for garment processing fabrics according to claim 6, characterized in that, The one-way conduit (54) and the exhaust valve hole (37) are respectively located above the two filter discs (34).

8. A moisture-proof storage device for garment processing fabrics according to claim 7, characterized in that, The front end of the circulation tube (5) is fixedly connected to a support ring (55) that is rotatably connected to the inner wall of the corresponding storage cavity.

9. A moisture-proof storage device for garment processing fabrics according to claim 8, characterized in that, A drive worm (6) is provided on the lower side of the mounting slot. The drive worm (6) is driven by a drive motor installed on the lower side of the mounting slot. The controller (7) is electrically connected to the drive motor. A ratchet groove is provided on the outer periphery of the top of the drive worm (6). The bottom end of the rotating shaft (35) is concave and the inner wall is provided with an elastic ratchet pawl (36) corresponding to the ratchet groove.

10. A moisture-proof storage device for garment processing fabrics according to claim 9, characterized in that, The bottom of the mounting slot is rotatably connected to a worm gear (61) that meshes with the drive worm (6), and a rotating gear (62) that meshes with the toothed storage compartment (2) is fixedly sleeved on the front side of the worm gear (61).