Drying device for garment forming processing
Through the design of multi-layer drying mechanism, the problem of uneven drying on the inner and outer sides of the clothing in the garment drying device is solved, and uniform drying on the inner and outer sides of the clothing is achieved, which improves the drying quality and service life of the clothing.
Patent Information
- Application Number
- CN202510769166.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-10
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2045-06-10
AI Technical Summary
During the drying process, existing garment drying devices can easily lead to unevenness in the inner and outer sides of the clothing, resulting in problems such as humid and heat environment, mold reproduction, fiber shrinkage difference, and joint tearing, which affects the wearing effect.
The multi-layer drying mechanism design is adopted, including an external drying mechanism, a rotating drying mechanism and an internal drying mechanism. Through the annular exhaust hole, a rotating disk and a rotation mechanism, the uniform distribution of hot air and the rotation and rotation of the clothing are achieved, ensuring uniform drying on the inside and outside sides.
It realizes uniform drying between the inside and outside of the clothing, avoids differences in humidity and heat environment and fiber shrinkage, and improves the drying quality and service life of the clothing.
Smart Images

Figure CN120273157A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of clothing processing, and more specifically, particularly relates to a drying device for clothing forming processing. Background Art
[0002] Clothing refers to the general term for clothes, shoes, bags, toy accessories, etc., mostly referring to clothes. In modern society, clothing has become a necessity for everyone to decorate themselves, protect themselves, and for themselves and their families. Clothing processing refers to a clothing production method mainly based on modern machine processing and supplemented by manual processing. Clothing processing mainly includes the following processes: inspection of incoming fabrics and accessories, technical preparation, cutting, sewing, buttonholing and button sewing, drying, ironing, finished product inspection, packaging, warehousing or shipping. In the present sense, it refers to a modern processing method, a clothing production method mainly based on modern machine processing and supplemented by manual processing. When processing clothing, it is usually necessary to dry the clothing.
[0003] The prior art still has the following technical problems: When the existing clothing drying device is in use, generally, the clothing is hung in the drying box, and the clothing is dried by the hot air in the box. During the drying process of the clothing, due to the unevenness of the hot air entering the drying box, it is easy to cause uneven drying of the clothing during the drying process. During the drying process of the clothing, only the outer side of the clothing can be dried, and it is not easy to dry the inner side of the clothing. The residual moisture on the inner side that is not thoroughly dried easily forms a humid environment, becoming a breeding ground for bacteria, molds, and mites. This not only causes the clothing to emit a musty smell but may also cause skin allergies or infections. Uneven heating will cause differences in the shrinkage rates of the inner and outer layers of fibers, leading to local shrinkage and deformation (especially for cotton and wool fabrics), and even causing seam tearing. At the same time, the dampness on the inner side will cause the lining to adhere poorly or the wrinkles to be difficult to eliminate, affecting the wearing effect. Therefore, it is not convenient for users to use.
[0004] In view of this, research and improvement are carried out on the existing structure, and a drying device for clothing forming processing is provided in order to achieve a more practical value. Summary of the Invention
[0005] The present invention provides a drying device for clothing forming processing to overcome the above defects in the prior art.
[0006] The purpose and efficacy of a drying device for clothing forming processing according to the present invention are achieved by the following specific technical means: The present invention provides a drying device for garment forming and processing, including a supporting bottom plate. A supporting disk is installed at the top end of the supporting bottom plate. A drying tank is installed at the top end of the supporting disk. A tank door is installed on one side of the drying tank. A cover plate is installed at the top end of the drying tank. An external drying mechanism is arranged at the top end of the cover plate. A rotating drying mechanism is installed inside the drying tank. A rotating disk is arranged inside the drying tank. An installation rod is installed at the bottom of the rotating disk. A self-rotation mechanism is arranged at the top end of the rotating disk. An internal drying mechanism is installed inside the installation rod. A drying cylinder is installed inside the installation rod. Installation grooves are formed on both sides of the drying cylinder. An adjusting plate is installed inside the installation groove. A second piston is installed inside the drying cylinder. A gas groove is formed inside the drying cylinder. Air outlet holes are formed on the outer wall of the drying cylinder.
[0007] In a further technical solution, a handle is installed at one end of the tank door. A communication groove is formed inside the tank door. An exhaust port is formed on the inner wall of the tank door. The exhaust port communicates with the communication groove.
[0008] In a further technical solution, the external drying mechanism includes an air inlet pipe installed at the top end of the cover plate. An air inlet valve is installed at the top end of the air inlet pipe. A connecting pipe is installed at one end of the air inlet pipe. Guide air pipes are connected to both ends of the connecting pipe. A gas gathering groove is formed inside the drying tank. An exhaust hole is formed on one side of the gas gathering groove.
[0009] In a further technical solution, the rotating drying mechanism is the rotating shaft installed at the bottom end of the rotating disk. A driving motor is installed inside the supporting disk. A supporting frame is installed at the bottom end of the rotating disk. A limiting pulley is installed at the bottom end of the supporting frame. The rotating disk is supported by a fixed frame at the bottom end. A limiting groove is formed at the top end of the fixed frame. A supporting rod is fixed at the bottom end of the fixed frame. Hanging frames are installed on both sides of the installation rod. An anti-slip sleeve is installed at one end of the hanging frame.
[0010] In a further technical solution, the self-rotation mechanism includes an installation box installed at the top end of the rotating disk. A motor is installed inside the installation box. A transmission gear is installed at the bottom end of the motor. An internal and external gear is meshed with one side of the transmission gear. A limiting frame is installed at the bottom end of the internal and external gear. A limiting sliding groove is formed at the top end of the rotating disk. A driven gear is meshed with the outer wall of the internal and external gear.
[0011] Further technical solution: The internal drying mechanism includes an air receiving pipe installed at the top end of the cover plate. One end of the air receiving pipe is installed with a switch valve. The bottom end of the air receiving pipe is installed with a first rotary joint. The bottom end of the first rotary joint is connected with an installation pipe. The bottom end of the installation pipe is installed with a second rotary joint. The bottom end of the second rotary joint is installed with an installation bearing. The outer wall of the second rotary joint is connected with an exhaust pipe. The bottom end of the installation bearing is fixed with a fixed disk. The bottom end of the fixed disk is installed with a connecting frame. The bottom end of the exhaust pipe is installed with a third rotary joint. The bottom end of the third rotary joint is connected with a fixed pipe.
[0012] Further technical solution: A fixed ring is installed inside the installation rod. A return spring is installed at the bottom end of the fixed ring. The bottom end of the return spring is connected with a first piston. Limiting blocks are installed at both ends of the first piston. A sliding groove is opened inside the installation rod. A connecting shaft is installed at the bottom end of the first piston.
[0013] Further technical solution: A hinge shaft is installed at the top end of the adjusting plate. Torsion springs are installed at both ends of the hinge shaft.
[0014] Further technical solution: An air inlet groove is opened inside the drying cylinder. A limiting rod is installed at the bottom end of the second piston. A telescopic spring is also installed at the bottom end of the second piston. A limiting disk is installed at the bottom end of the limiting rod.
[0015] Further technical solution: An installation disk is fixed at the bottom end of the air inlet groove. An activity groove is opened at the bottom end of the air inlet groove. Ventilation grooves are opened on both sides of the air inlet groove.
[0016] Compared with the prior art, the present invention has the following beneficial effects: When the present invention performs the drying operation on the clothing, the external drying mechanism is used to evenly transport hot air into the drying tank for drying. After the clothing is hung on the hanger, the air inlet pipe can be connected to the hot air pipe for drying. Then, by opening the air inlet valve, the hot air enters the inside of the air gathering groove through the connecting pipe and the air guide pipe, and then is discharged through multiple exhaust holes. The hot air is discharged through the exhaust holes to dry the clothing hung in the drying tank. The exhaust holes are annularly distributed on the inner wall of the drying tank, so as to facilitate the simultaneous discharge of hot air in multiple directions inside the drying tank, thereby making the drying effect better.
[0017] In the process of drying clothes, the present invention drives the clothes to rotate along the rotating disk by rotating the drying mechanism, thereby increasing the drying uniformity of the clothes. When the clothes are drying, the driving motor inside the supporting disk can be turned on at the same time, so that the rotating shaft drives the rotating disk to rotate. The rotation of the rotating disk drives the mounting rod at the bottom end and the hanging rack to rotate synchronously along the rotating disk, thereby driving the clothes hung on the hanging rack to rotate along the rotating disk, so that the clothes on the hanging rack are dried more evenly.
[0018] During the rotational drying process of the clothes of the present invention, the self-rotation mechanism can drive the clothes to rotate, thereby further increasing the drying uniformity of the clothes; while the clothes rotate along the rotating disk, the motor on the top of the installation box can be turned on to rotate the transmission gear, and the rotation of the transmission gear will drive the inner and outer gears meshing on one side to rotate, and the rotation of the inner and outer gears will drive the driven gears meshing on the outer walls of the inner and outer gears to rotate synchronously; when the driven gear rotates, it will drive the installation rod connected to the bottom end to rotate, and the clothes hung on the installation rod can be driven to rotate, thereby achieving a better drying effect for the clothes.
[0019] During the drying process of the clothes of the present invention, the inside of the clothes can be dried through the internal drying mechanism. The second group of hot air pipes can be connected to the air receiving pipe, and the switch valve can be opened to allow the hot air to be guided to the mounting pipe through the air receiving pipe, and then dispersed to the inside of the multiple exhaust pipes through the mounting pipe. The hot air is blown into the fixed pipe through the exhaust pipe, and the hot air enters the inside of the mounting rod through the fixed pipe. Under the pressure of the continuous input of hot air, the first piston will move downward along the inside of the mounting rod. At this time, the downward movement of the first piston will drive the connecting shaft and the drying cylinder to move downward synchronously until the limit blocks on both sides of the first piston move to the sliding At the bottom of the movable groove, when the drying cylinder moves to the outside of the mounting rod, the adjusting plates installed inside the mounting groove through torsion springs on both sides of the drying cylinder will pop out, thereby stretching the clothes hung on the hanger from the inside, and hot air continues to be injected into the fixed tube. When the pressure inside the mounting rod continues to increase, it will push the second piston in the air inlet groove downward. When the second piston is pushed to the bottom of the ventilation groove, the hot air will enter the gas groove along the ventilation groove, and then be discharged from multiple groups of air outlets, thereby drying the clothes from the inside of the clothes, so that the inside and outside of the clothes are dried evenly, thereby increasing the drying uniformity of the clothes. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0021] The present invention will be further described below in conjunction with the accompanying drawings and embodiments.
[0022] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a schematic diagram of the internal structure of the drying tank of the present invention; Figure 3 is a schematic diagram of the external drying mechanism structure of the present invention; Figure 4 is a schematic diagram of the turntable structure of the present invention; Figure 5 is a schematic diagram of the fixing frame installation structure of the present invention; Figure 6 is a schematic diagram of the rotating drying mechanism structure of the present invention; Figure 7 is a schematic diagram of the internal drying mechanism structure of the present invention; Figure 8 is a schematic diagram of the internal structure of the mounting rod of the present invention; Figure 9 is a schematic diagram of the structure of the drying cylinder during operation Figure 1 ; Figure 10 is a schematic diagram of the adjusting plate installation structure of the present invention; Figure 11 is a schematic diagram of the internal structure of the drying cylinder of the present invention; Figure 12 is a schematic diagram of the structure of the drying cylinder during operation Figure 2 .
[0023] Explanation of reference numerals: 1. Support base plate; 2. Support disk; 3. Drying tank; 4. Tank door; 401. Handle; 402. Connecting groove; 403. Exhaust port; 5. Cover plate; 6. External drying mechanism; 601. Air inlet pipe; 602. Air inlet valve; 603. Connecting pipe; 604. Air guide pipe; 605. Air gathering groove; 606. Exhaust hole; 7. Rotating drying mechanism; 701. Rotating disk; 702. Rotating shaft; 703. Driving motor; 704. Support frame; 705. Limiting pulley; 706. Fixed frame; 707. Limiting groove; 708. Support rod; 709. Mounting rod; 710. Hanging rack; 711. Anti-slip sleeve; 8. Self-rotation mechanism; 801. Installation box; 802. Motor; 803. Driving gear; 804. Internal and external gears; 805. Limiting frame; 806. Limiting sliding groove; 807. Driven gear; 9. Internal drying mechanism; 901. Connecting air pipe; 902. Switch valve; 903. First rotary joint; 904. Installation pipe; 905. Second rotary joint; 906. Installation bearing; 907. Exhaust pipe; 908. Fixed disk; 909. Connecting frame; 910. Third rotary joint; 911. Fixed pipe; 912. Fixed ring; 913. Return spring; 914. First piston; 915. Limiting block; 916. Sliding groove; 917. Connecting shaft; 918. Drying cylinder; 919. Installation groove; 920. Adjusting plate; 921. Hinge shaft; 922. Torsion spring; 923. Air inlet groove; 924. Second piston; 925. Limiting rod; 926. Telescopic spring; 927. Limiting disk; 928. Moving groove; 929. Installation disk; 930. Ventilation groove; 931. Gas groove; 932. Air outlet hole. Detailed implementation mode
[0024] The following further describes in detail the implementation mode of the present invention in conjunction with the accompanying drawings and embodiments. The following embodiments are used to illustrate the present invention, but cannot be used to limit the scope of the present invention.
[0025] In the description of the present invention, unless otherwise specified, "a plurality of" means two or more; the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the present invention. In addition, the terms "first", "second", "third", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0026] In the description of the present invention, it should be noted that unless otherwise clearly specified and limited, the terms "connected" and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0027] Referring to Figures 1 - 12 , the present invention provides a drying device for garment forming and processing, including a support bottom plate 1. A support plate 2 is installed at the top of the support bottom plate 1. A drying tank 3 is installed at the top of the support plate 2. A tank door 4 is installed on one side of the drying tank 3. A cover plate 5 is installed at the top of the drying tank 3. An external drying mechanism 6 is arranged at the top of the cover plate 5. A rotating drying mechanism 7 is installed inside the drying tank 3. A rotating disk 701 is arranged inside the drying tank 3. An installation rod 709 is installed at the bottom of the rotating disk 701. A self-rotation mechanism 8 is arranged at the top of the rotating disk 701. An internal drying mechanism 9 is installed inside the installation rod 709. A drying cylinder 918 is installed inside the installation rod 709. Installation slots 919 are opened on both sides of the drying cylinder 918. An adjusting plate 920 is installed inside the installation slots 919. A second piston 924 is installed inside the drying cylinder 918. A gas groove 931 is opened inside the drying cylinder 918. Air outlet holes 932 are opened on the outer wall of the drying cylinder 918.
[0028] Preferably, a handle 401 is installed at one end of the tank door 4. A communication groove 402 is opened inside the tank door 4. An exhaust port 403 is opened on the inner wall of the tank door 4. The exhaust port 403 communicates with the communication groove 402.
[0029] In this embodiment, when drying the clothes during garment making, the tank door 4 can be opened first, and then the clothes to be dried can be hung inside the hanger 710 inside the drying tank 3 for drying.
[0030] Preferably, the external drying mechanism 6 includes an air inlet pipe 601 installed at the top of the cover plate 5. An air inlet valve 602 is installed at the top of the air inlet pipe 601. A connecting pipe 603 is installed at one end of the air inlet pipe 601. Guide air pipes 604 are connected to both ends of the connecting pipe 603. An air gathering groove 605 is opened inside the drying tank 3. An exhaust hole 606 is opened on one side of the air gathering groove 605.
[0031] In this embodiment, after the garment is hung on the hanger 710, the air inlet pipe 601 can be connected to the hot air pipe for drying, and then by opening the air inlet valve 602, the hot air enters the inside of the air collecting tank 605 through the connecting pipe 603 and the air guide pipe 604, and then is discharged through a plurality of exhaust holes 606. The hot air is discharged through the exhaust holes 606 to dry the garment hung in the drying tank 3. The exhaust holes 606 are annularly distributed on the inner wall of the drying tank 3, so as to facilitate the simultaneous discharge of hot air in multiple directions inside the drying tank 3, thereby making the drying effect better.
[0032] Preferably, the rotating drying mechanism 7 is installed on the rotating shaft 702 at the bottom end of the rotating disk 701. A driving motor 703 is installed inside the support disk 2. A support frame 704 is installed at the bottom end of the rotating disk 701. A limiting pulley 705 is installed at the bottom end of the support frame 704. The bottom end of the rotating disk 701 is supported by a fixing frame 706. A limiting groove 707 is opened at the top end of the fixing frame 706. A support rod 708 is fixed at the bottom end of the fixing frame 706. Hangers 710 are installed on both sides of the mounting rod 709. An anti-slip sleeve 711 is installed at one end of the hanger 710.
[0033] In this embodiment, when drying the garment, the driving motor 703 inside the support disk 2 can be simultaneously turned on, so that the rotating shaft 702 drives the rotating disk 701 to rotate. The rotation of the rotating disk 701 will drive the mounting rod 709 and the hanger 710 at the bottom end to rotate synchronously along the rotating disk 701, thereby driving the garment hung on the hanger 710 to rotate along the rotating disk 701, making the garment on the hanger 710 dry more evenly.
[0034] It should be noted that in this embodiment, the rotating disk 701 is not fixedly installed inside the drying tank 3 through the rotating shaft 702. The rotating disk 701 is supported by the fixing frame 706 fixed at the bottom end, and the fixing frame 706 is installed inside the drying tank 3 through six support rods 708. Therefore, the rotating shaft 702 does not bear the downward pressure of the rotating disk 701. At the same time, a limiting groove 707 is opened at the top end of the fixing frame 706. During the rotation of the rotating disk 701, the support frame 704 at the bottom end of the rotating disk 701 will drive the limiting pulley 705 to rotate inside the limiting groove 707. The rotation of the rotating disk 701 is limited by the limiting pulley 705 and the limiting groove 707, increasing the rotational stability of the rotating disk 701.
[0035] Preferably, the rotation mechanism 8 includes a mounting box 801 installed at the top end of the rotating disk 701. A motor 802 is installed inside the mounting box 801. A transmission gear 803 is installed at the bottom end of the motor 802. An internal and external gear 804 is meshed with one side of the transmission gear 803. A limiting frame 805 is installed at the bottom end of the internal and external gear 804. A limiting chute 806 is formed at the top end of the rotating disk 701. A driven gear 807 is meshed with the outer wall of the internal and external gear 804.
[0036] In this embodiment, during the rotation of the clothing along with the rotating disk 701, the motor 802 at the top end of the mounting box 801 can be turned on, so that the transmission gear 803 rotates. The rotation of the transmission gear 803 drives the internal and external gear 804 meshed with one side to rotate. The rotation of the internal and external gear 804 drives the driven gear 807 meshed with the outer wall of the internal and external gear 804 to rotate synchronously. When the driven gear 807 rotates, it drives the mounting rod 709 connected to the bottom end to rotate, thus driving the clothing hung on the mounting rod 709 to rotate, so that the drying effect of the clothing is better.
[0037] It should be noted that in this embodiment, a limiting frame 805 is installed at the bottom end of the internal and external gear 804. When the internal and external gear 804 rotates, the limiting frame 805 rotates along the inside of the limiting chute 806, and the rotation of the internal and external gear 804 is limited by the limiting chute 806 and the limiting frame 805.
[0038] Preferably, the internal drying mechanism 9 includes an air receiving pipe 901 installed at the top end of the cover plate 5. One end of the air receiving pipe 901 is installed with a switch valve 902, and the bottom end of the air receiving pipe 901 is installed with a first rotary joint 903. The bottom end of the first rotary joint 903 is connected with an installation pipe 904. The bottom end of the installation pipe 904 is installed with a second rotary joint 905. The bottom end of the second rotary joint 905 is installed with an installation bearing 906. The outer wall of the second rotary joint 905 is connected with an exhaust pipe 907. The bottom end of the installation bearing 906 is fixed with a fixed disk 908. The bottom end of the fixed disk 908 is installed with a connecting frame 909. The bottom end of the exhaust pipe 907 is installed with a third rotary joint 910. The bottom end of the third rotary joint 910 is connected with a fixed pipe 911. A fixed ring 912 is installed inside the installation rod 709. A return spring 913 is installed at the bottom end of the fixed ring 912. The bottom end of the return spring 913 is connected with a first piston 914. Limiting blocks 915 are installed at both ends of the first piston 914. A sliding groove 916 is opened inside the installation rod 709. A connecting shaft 917 is installed at the bottom end of the first piston 914. A hinge shaft 921 is installed at the top end of the adjusting plate 920. Torsion springs 922 are installed at both ends of the hinge shaft 921. An air inlet groove 923 is opened inside the drying cylinder 918. A limiting rod 925 is installed at the bottom end of the second piston 924. A telescopic spring 926 is also installed at the bottom end of the second piston 924. A limiting disk 927 is installed at the bottom end of the limiting rod 925. An installation disk 929 is fixed at the bottom end of the air inlet groove 923. An activity groove 928 is opened at the bottom end of the air inlet groove 923. Ventilation grooves 930 are opened on both sides of the air inlet groove 923.
[0039] In this embodiment, during the drying process of the clothing, the second group of hot air pipes can be connected to the air receiving pipe 901. By opening the switch valve 902, the hot air is guided through the air receiving pipe 901 to the installation pipe 904, and then dispersed from the installation pipe 904 into multiple groups of exhaust pipes 907. The hot air is blown into the fixed pipe 911 through the exhaust pipes 907. The hot air enters the inside of the installation rod 709 through the fixed pipe 911. Under the air pressure of continuously inputting hot air, the first piston 914 will move downward along the inside of the installation rod 709 as Figure 9, at this time, when the first piston 914 moves downward, it will drive the connecting shaft 917 and the drying cylinder 918 to move downward synchronously until the limit blocks 915 on both sides of the first piston 914 move to the bottom end of the sliding groove 916. At this time, when the drying cylinder 918 moves outside the mounting rod 709, the adjusting plates 920 installed inside the mounting groove 919 through torsion springs 922 on both sides of the drying cylinder 918 will pop out outward, so as to expand the clothes hanging on the hanger 710 from the inside. At this time, hot air continues to be injected into the fixed pipe 911. When the pressure inside the mounting rod 709 continues to increase, it will push down the second piston 924 in the air inlet groove 923. When the second piston 924 is pushed to the bottom end of the ventilation groove 930, the hot air will enter the gas groove 931 along the ventilation groove 930, and then be discharged through multiple air outlet holes 932, so as to dry the clothes from the inside of the clothes, making the inside and outside of the clothes dry evenly and increasing the drying uniformity of the clothes.
[0040] It should be noted that when the first piston 914 moves downward along the inside of the mounting rod 709 to the bottom end of the sliding groove 916, the second piston 924 will move downward along the air inlet groove 923 when the gas pressure inside the mounting rod 709 continues to increase. When the second piston 924 moves to the ventilation groove 930, the gas enters the gas groove 931 through the ventilation groove 930. At this time, the inside of the mounting rod 709 will be briefly depressurized, so that the second piston 924 and the first piston 914 move upward. When the first piston 914 moves upward, it will drive the drying cylinder 918 to contract into the mounting rod 709. At this time, when the mounting rod 709 moves upward, it will drive the adjusting plate 920 to swing. Since the process of injecting hot air into the fixed pipe 911 is uniform and there is a constant flow valve inside the fixed pipe 911, when the gas is injected into the mounting rod 709 again, the internal pressure of the mounting rod 709 will steadily increase, and the drying cylinder 918 will move downward again, thus driving the drying cylinder 918 to move up and down periodically, so that the adjusting plate 920 will swing periodically, and then the gas flow rate ejected from the multiple air outlet holes 932 will also change periodically, so as to reduce the local heat concentration and prevent the clothes from being damaged due to overheating inside the clothes.
[0041] It should be noted that in this embodiment, the elastic force of the telescopic spring 926 is greater than the elastic force of the return spring 913. When the elastic force of the spring is greater, that is, the spring stiffness coefficient is greater, it is usually more difficult to be pressed or stretched. Because the elastic force of the spring follows Hooke's law F = kx, the elastic force F is jointly determined by the spring stiffness coefficient k and the deformation amount x. When the stiffness coefficient k is larger, the elastic force F generated under the same compression or stretching length x is larger. Therefore, if you want to achieve the same deformation amount x, you need to apply a greater external force to counteract the elastic force of the spring. Therefore, when the gas enters the mounting rod 709, the return spring 913 will first deform and stretch downward, and then the telescopic spring 926 will deform and stretch.
[0042] Working principle of the present invention: Step 1: When drying clothes during garment manufacturing, the tank door 4 can be opened first, and the clothes to be dried can be hung inside the hanger 710 inside the drying tank 3 for drying operation.
[0043] Step 2: After the clothes are hung on the hanger 710, the intake pipe 601 can be connected to the hot air pipeline for drying. Then, by opening the intake valve 602, hot air enters the inside of the air gathering tank 605 through the connecting pipe 603 and the air guide pipe 604, and then is discharged through multiple exhaust holes 606. The hot air is discharged through the exhaust holes 606 to dry the clothes hung inside the drying tank 3. The exhaust holes 606 are annularly distributed on the inner wall of the drying tank 3, so as to facilitate the simultaneous discharge of hot air in multiple directions inside the drying tank 3, making the drying effect better.
[0044] Step 3: When drying clothes, the drive motor 703 inside the support disk 2 can be turned on simultaneously, so that the rotating shaft 702 drives the rotating disk 701 to rotate. The rotation of the rotating disk 701 drives the bottom mounting rod 709 and the hanger 710 to rotate synchronously along the rotating disk 701, thereby driving the clothes hung on the hanger 710 to rotate along the rotating disk 701, making the clothes hung on the hanger 710 dry more evenly.
[0045] Step 4: During the rotation of the clothes along the rotating disk 701, the motor 802 at the top of the installation box 801 can be turned on, so that the transmission gear 803 rotates. The rotation of the transmission gear 803 drives the internal and external gear 804 engaged on one side to rotate. The rotation of the internal and external gear 804 drives the driven gear 807 engaged with the outer wall of the internal and external gear 804 to rotate synchronously. When the driven gear 807 rotates, it drives the mounting rod 709 connected to the bottom to rotate, and then can drive the clothes hung on the mounting rod 709 to rotate, thereby making the drying effect of the clothes better.
[0046] Step 5: During the drying process of the clothes, the second group of hot air pipes can be connected to the connecting pipe 901. By opening the switch valve 902, hot air is guided to the installation pipe 904 through the connecting pipe 901, and then is dispersed into multiple exhaust pipes 907 through the installation pipe 904. The hot air is blown into the fixed pipe 911 through the exhaust pipes 907. The hot air enters the inside of the mounting rod 709 through the fixed pipe 911. Under the pressure of continuously input hot air, the first piston 914 moves downward along the inside of the mounting rod 709 as Figure 9, at this time, when the first piston 914 moves downward, it will drive the connecting shaft 917 and the drying cylinder 918 to move downward synchronously until the limit blocks 915 on both sides of the first piston 914 move to the bottom end of the sliding groove 916. At this time, when the drying cylinder 918 moves outside the mounting rod 709, the adjusting plates 920 mounted inside the mounting groove 919 through torsion springs 922 on both sides of the drying cylinder 918 will pop out outward, so as to expand the clothes hung on the hanger 710 from the inside. At this time, hot air is continuously injected into the fixed pipe 911. When the pressure inside the mounting rod 709 continues to increase, it will push the second piston 924 in the air inlet groove 923 downward. When the second piston 924 is pushed to the bottom end of the ventilation groove 930, the hot air will enter the gas groove 931 along the ventilation groove 930 and then be discharged through multiple air outlet holes 932, so as to dry the clothes from the inside of the clothes, making the internal and external drying of the clothes uniform and increasing the drying uniformity of the clothes.
[0047] The embodiments of the present invention are given for purposes of illustration and description, and are not intended to be exhaustive or to limit the invention to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are chosen and described in order to best explain the principles of the invention and its practical application, and to enable those of ordinary skill in the art to understand the invention and design various embodiments with various modifications suitable for a particular purpose.
Claims
1. A drying device for clothing forming and processing, characterized in that, It includes a support base plate (1). At the top of the support base plate (1), there is a support disc (2) installed. At the top of the support disc (2), there is a drying tank (3) installed. On one side of the drying tank (3), there is a tank door (4) installed. At the top of the drying tank (3), there is a cover plate (5) installed. On the top of the cover plate (5), there is an external drying mechanism (6) arranged. Inside the drying tank (3), there is a rotating drying mechanism (7) installed. Inside the drying tank (3), there is a rotating disc (701) arranged. At the bottom of the rotating disc (701), there is an installation rod (709) installed. On the top of the rotating disc (701), there is a self-rotation mechanism (8) arranged. Inside the installation rod (709), there is an internal drying mechanism (9) installed. Inside the installation rod (709), there is a drying cylinder (918) installed. On both sides of the drying cylinder (918), there are installation slots (919) opened. Inside the installation slots (919), there is an adjusting plate (920) installed. Inside the drying cylinder (918), there is a second piston (924) installed. Inside the drying cylinder (918), there is a gas groove (931) opened. On the outer wall of the drying cylinder (918), there are air outlet holes (932) opened.
2. The drying device for garment forming processing according to claim 1, characterized in that: At one end of the tank door (4), there is a handle (401) installed. Inside the tank door (4), there is a communication groove (402) opened. On the inner wall of the tank door (4), there is an exhaust port (403) opened. The exhaust port (403) communicates with the communication groove (402).
3. A drying device for clothing forming and processing according to claim 1, characterized in that: The external drying mechanism (6) includes an air inlet pipe (601) installed on the top of the cover plate (5). At the top of the air inlet pipe (601), there is an air inlet valve (602) installed. At one end of the air inlet pipe (601), there is a connecting pipe (603) installed. At both ends of the connecting pipe (603), there are air guide pipes (604) connected. Inside the drying tank (3), there is an air gathering groove (605) opened. On one side of the air gathering groove (605), there are exhaust holes (606) opened.
4. A drying device for garment forming processing according to claim 1, characterized in that: The rotating drying mechanism (7) is installed on a rotating shaft (702) at the bottom end of the rotating disc (701). Inside the support disc (2), there is a driving motor (703) installed. At the bottom end of the rotating disc (701), there is a support frame (704) installed. At the bottom end of the support frame (704), there are limit pulleys (705) installed. The bottom end of the rotating disc (701) is supported by a fixed frame (706). On the top of the fixed frame (706), there is a limit groove (707) opened. At the bottom end of the fixed frame (706), there is a support rod (708) fixed. On both sides of the installation rod (709), there are hanging frames (710) installed. At one end of the hanging frame (710), there is an anti-slip sleeve (711) installed.
5. A drying device for clothing forming and processing according to claim 1, characterized in that: The rotation mechanism (8) includes a mounting box (801) installed at the top of the rotating disk (701). A motor (802) is installed inside the mounting box (801). A transmission gear (803) is installed at the bottom end of the motor (802). An internal and external gear (804) is meshed with one side of the transmission gear (803). A limiting frame (805) is installed at the bottom end of the internal and external gear (804). A limiting chute (806) is opened at the top end of the rotating disk (701). A driven gear (807) is meshed with the outer wall of the internal and external gear (804).
6. The drying device for garment forming processing according to claim 1, characterized in that: The internal drying mechanism (9) includes an air receiving pipe (901) installed at the top of the cover plate (5). A switch valve (902) is installed at one end of the air receiving pipe (901). A first rotary joint (903) is installed at the bottom end of the air receiving pipe (901). An installation pipe (904) is connected to the bottom end of the first rotary joint (903). A second rotary joint (905) is installed at the bottom end of the installation pipe (904). An installation bearing (906) is installed at the bottom end of the second rotary joint (905). An exhaust pipe (907) is connected to the outer wall of the second rotary joint (905). A fixed disk (908) is fixed at the bottom end of the installation bearing (906). A connecting frame (909) is installed at the bottom end of the fixed disk (908). A third rotary joint (910) is installed at the bottom end of the exhaust pipe (907). A fixed pipe (911) is connected to the bottom end of the third rotary joint (910).
7. A drying device for garment forming processing according to claim 1, characterized in that: A fixed ring (912) is installed inside the installation rod (709). A return spring (913) is installed at the bottom end of the fixed ring (912). A first piston (914) is connected to the bottom end of the return spring (913). Limit blocks (915) are installed at both ends of the first piston (914). A sliding groove (916) is opened inside the installation rod (709). A connecting shaft (917) is installed at the bottom end of the first piston (914).
8. A drying device for garment forming processing according to claim 1, characterized in that: A hinge shaft (921) is installed at the top of the adjusting plate (920). Torsion springs (922) are installed at both ends of the hinge shaft (921).
9. A drying device for garment forming processing according to claim 1, characterized in that: An air inlet groove (923) is opened inside the drying cylinder (918). A limiting rod (925) is installed at the bottom end of the second piston (924). A telescopic spring (926) is also installed at the bottom end of the second piston (924). A limiting disk (927) is installed at the bottom end of the limiting rod (925).
10. A drying device for garment forming processing according to claim 9, characterized in that: An installation disk (929) is fixed at the bottom end of the air inlet groove (923). An activity groove (928) is opened at the bottom end of the air inlet groove (923). Ventilation grooves (930) are opened on both sides of the air inlet groove (923).
Citation Information
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