A fabric tie-dye drying machine with a disinfection function and an operation method

By introducing steam components and circulation components into the fabric tie-dye dryer, high-temperature sterilization of the fabric and recycling of hot air are achieved, the problem of lack of disinfection functions in the prior art is solved, and the work efficiency and energy efficiency of the equipment are improved.

CN117870318BActive Publication Date: 2025-06-27JIANGSU HUAYI GARMENT CO LTD
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Patent Information

Application Number
CN202410136844.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-01-31
Publication Date
2025-06-27
Estimated Expiration
2044-01-31

AI Technical Summary

Technical Problem

Existing fabric tie-dye dryers lack disinfection functions, resulting in inefficiency and require additional disinfection steps.

Method used

A fabric tie-dye dryer with disinfection function was designed, using steam components to sterilize the fabric at high temperature by heating water vapor, and the recycling of hot air is realized through the circulating components to reduce the power demand of the hot air fan.

Benefits of technology

It realizes efficient disinfection and drying of fabrics, reduces the demand for hot air power, improves working efficiency, and reduces the impact of hot air on the working environment.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention discloses a fabric tie-dyeing dryer with a disinfection function and an operation method, which relates to the technical field of fabric dryers and includes a bracket. A conveying mechanism is installed inside the bracket, and the conveying mechanism includes a conveyor belt. A steam assembly is arranged at the top of the bracket, and the steam assembly is used to create a high-temperature environment for sterilization. By installing the steam assembly, the steam assembly can heat water into water vapor through a heating rod, and the water vapor is guided to the top of the fabric through a bent pipe and a guiding pipe, so that the fabric is in a sealed environment of high-temperature water vapor, and the high temperature of the water vapor is used for sterilization and disinfection.
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Description

Technical Field

[0001] The present invention relates to the technical field of fabric dryers, and specifically to a fabric tie-dye dryer with a disinfection function and an operation method thereof. Background Art

[0002] A fabric tie-dye dryer is a device that facilitates the rapid drying of tie-dyed fabrics. After the fabric tie-dyeing is completed, the fabric is usually soaked in water to wash out excess dyes and chemical substances, removing some dyes that have not fully bonded to the fabric to reduce the risk of fading. After rinsing, the fabric is mechanically squeezed or centrifugally dewatered to squeeze out as much water as possible, and then dried. In view of this, traditional devices are not perfect, lacking facilities that can conveniently disinfect and dry fabrics together, requiring additional disinfection, which reduces work efficiency. A fabric tie-dye dryer with a disinfection function and an operation method can provide convenience for workers.

[0003] The defects of existing fabric tie-dye dryers are as follows:

[0004] 1. JP4966934B2 discloses a clothes dryer and a dryer. The above-disclosed clothes dryer and dryer mainly consider how to keep the pressure in the cylinder below a certain value without discharging air in a high-humidity room to reduce power consumption, without considering the problem of conveniently disinfecting and drying together, which reduces work efficiency.

[0005] 2. JP5791528B2 discloses a washing dryer and a dryer. The above-disclosed washing dryer and dryer mainly consider how to avoid a temperature drop in the water tank or the housing while achieving cyclic drying, and prevent the pressure in the water tank or the housing from rising during water supply to prevent water leakage from the water supply port, without considering the problem of conveniently reducing the escape of hot air, which increases the impact on the working environment.

[0006] 3. JP5147807B2 discloses a dryer and a washing dryer. The above-disclosed dryer and washing dryer mainly consider how to perform a power-reducing drying operation without discharging high-moisture air into the indoor space, without considering the problem of conveniently recycling hot air, which increases the power demand for the hot air blower.

[0007] 4. CN216080826U discloses a textile fabric dryer. The above-disclosed textile fabric dryer mainly considers how to solve the problem that when the existing textile fabric dryer is drying, due to the rotation speed, some fabrics are often in a certain humid state, without considering the problem of conveniently drying hot air, which reduces the drying efficiency. Summary of the Invention

[0008] The purpose of the present invention is to provide a fabric tie-dye drying machine with a disinfection function and an operation method to solve the problems raised in the above-mentioned background technology.

[0009] To achieve the above purpose, the present invention provides the following technical solution: A fabric tie-dye drying machine with a disinfection function and an operation method, including a bracket, a conveying mechanism is installed inside the bracket, the conveying mechanism includes a conveyor belt, and a steam component is arranged on the top of the bracket, and the steam component is used to create a high-temperature environment for sterilization.

[0010] The steam component includes a high-temperature box, and the high-temperature box is installed on the top of the bracket. Support rods are respectively installed on the inner walls of both sides of the high-temperature box. An evaporation box is installed between every two of the two support rods. Heating rods are installed on the inner walls of both sides of the evaporation box. A water inlet pipe penetrates and installs on one side of the evaporation box. An outlet hole is penetrated and opened on the front of the evaporation box. A bent pipe is installed on the front of the evaporation box, and the bent pipe communicates with the outlet hole. A guiding pipe is installed at the bottom of the bent pipe.

[0011] Preferably, universal wheels are installed at the bottom of the bracket, two drying boxes are installed on the top of the bracket, a hot air blower penetrates and installs on the top of the drying box, and a circulation component is arranged on the top of the drying box, and the circulation component is used to recycle the hot air inside the drying box.

[0012] Preferably, a flange pipe is installed at one end of the water inlet pipe, and the flange pipe is connected to an external water pipe to provide water for the inside of the evaporation box.

[0013] Preferably, a group of through holes are respectively penetrated and opened on the front and back of the high-temperature box. The same pull rod is placed inside the through hole close to the front and the through hole close to the back corresponding to it. Two baffles are installed on the outer side of the pull rod, and the two baffles are respectively located on the front and back of the high-temperature box. Two fixing rings penetrate and install inside the pull rod. Sealing rollers penetrate and install inside the fixing rings through bearings, and the two sealing rollers are respectively close to the inner walls of the front and back of the high-temperature box.

[0014] Preferably, the circulation component includes an air box, and the air box is installed on the top of the drying box. The air box is located outside the two hot air blowers. Two air inlet pipes are installed through the front of the air box. A fixed pipe is installed at the top of the air inlet pipe. A rotating rod is installed through the inner side of the fixed pipe by means of a bearing. Another fixed pipe is sleeved outside the rotating rod by means of a bearing. A connecting pipe is installed at the bottom of this fixed pipe. One end of the connecting pipe close to the back is installed with a transition box, and the transition box is installed between the high-temperature box and the drying box. An insertion plate is installed through the inside of the rotating rod. A grip rod is installed at the top of the insertion plate. A heat insulation sleeve is sleeved outside the grip rod. A round pipe is installed at the bottom of the insertion plate. Sealing rings are installed at both ends of the round pipe. An inner ring is installed inside the round pipe. A collection cylinder is placed inside the round pipe, and the collection cylinder is located on one side of the inner ring. A filter screen is installed on the inner wall of the collection cylinder close to the inner ring. A grasping rod is installed on the inner wall of the collection cylinder close to the connecting pipe. A drying component is arranged on one side of the circulation component, and the drying component is used to reduce the moisture inside the air box.

[0015] Preferably, a wind shielding component is arranged on the top of the bracket, and the wind shielding component is used to prevent the hot air inside the drying box from flowing out. The wind shielding component includes a wind shielding box, and the wind shielding box is installed on the front of the drying box close to the front. Ventilation holes are opened through the front of the wind shielding box. An arc-shaped hole is opened through one side of the wind shielding box. Arc-shaped plates are respectively installed on the inner walls of both sides of the wind shielding box. A plurality of wind shielding plates are placed on the top of the arc-shaped plates. Plastic films are installed between every two wind shielding plates. A push rod is installed on one side of the wind shielding plate close to the bottom, and the push rod penetrates through the inside of the arc-shaped hole. The push rod is used to provide a grasping support for the staff.

[0016] Preferably, the drying component includes two compressors, and the two compressors are installed on the top of the drying box and are located on one side of the air box. The output end of the compressor is installed with a condensing pipe, and the condensing pipe penetrates through the inside of one side of the air box. The condensing pipe corresponds to the position of the air inlet pipe. A plurality of connecting rods are installed at the bottom of the condensing pipe. A collecting plate is installed at the bottom of the connecting rod, and the collecting plate is located on the top of the drying box. One end of the collecting plate is installed with a flowing water pipe, and the flowing water pipe penetrates through the inside of one side of the air box. One end of the flowing water pipe is installed with a water collecting tank, and the water collecting tank is connected to one side of the drying box through a connecting component. A leakage pipe is installed through the bottom of the water collecting tank, and a valve is installed through the outside of the leakage pipe.

[0017] Preferably, the operation method of the fabric tie-dyeing dryer is as follows:

[0018] S1. First, the staff moves the bracket to the working location through the universal wheels, fixes and locks the universal wheels, places one end of the fabric on the top of the conveyor belt, and then powers on the conveying mechanism and the hot air blower, so that the conveying mechanism drives the conveyor belt to rotate, the conveyor belt drives the fabric to move, and the hot air blower heats and blows the air into the inside of the drying box;

[0019] S2. Subsequently, the staff grabs the two pull rods and moves upward, causing the conveyor belt to drive one end of the fabric into the inner side of the high-temperature box. Then, the pull rods are released, and the sealing roller falls on the top of the fabric. Subsequently, an appropriate amount of water is injected into the inner side of the evaporation box through the flange pipe and the water inlet pipe. The heating rod is started to heat the water in the evaporation box into water vapor. The water vapor contacts the top of the fabric, and the high-temperature characteristics of the water vapor are used to sterilize the fabric at high temperature;

[0020] S3. When the fabric enters the inner side of the drying box, the hot air blower is started to make the hot air blower generate hot air to dry the fabric. The hot air passes through the connecting pipe, the round pipe, and the air inlet pipe and enters the inner side of the air box. The air on the inner side of the air box re-enters the inner side of the drying box under the action of the hot air blower, realizing the recycling of hot air;

[0021] S4. When the fabric is about to be removed from the inner side of the dryer, the staff grabs the push rod and moves upward to release the sealing of the ventilation holes, so that the fabric is removed to the outside through the ventilation holes. Then, the staff grabs the push rod again and moves downward and clockwise, so that the wind baffle and the plastic film seal the ventilation holes to reduce the outflow of hot air;

[0022] S5. The staff starts the compressor to reduce the surface temperature of the condensing pipe. The hot air contacts the surface of the condensing pipe and condenses into small water droplets. The condensed small water droplets enter the inner side of the water collection tank for collection. Then, the staff grabs the valve and rotates it, so that the water in the inner side of the water collection tank flows to the outside through the drain pipe.

[0023] Preferably, in the step S3, the following steps are further included:

[0024] S31. The staff grabs the heat insulation sleeve and rotates it forward or backward, so that the heat insulation sleeve drives the plug board to rotate through the grip rod. The plug board drives the round pipe to rotate. The plug board is driven to rotate to the horizontal position through the grip rod, and the round pipe is removed from the position between the connecting pipe and the air inlet pipe. The staff grabs the grab rod and moves it away from the inner ring, so that the grab rod drives the collection cylinder to be removed from the inner side of the round pipe, facilitating the cleaning of the lines and thread ends inside the collection cylinder.

[0025] Compared with the prior art, the beneficial effects of the present invention are:

[0026] 1. The present invention is equipped with a steam component. The steam component can heat water into water vapor through the heating rod, and the water vapor is guided to the top of the fabric through the elbow pipe and the guiding pipe, so that the fabric is in a sealed environment of high-temperature water vapor, and the high temperature of the water vapor is used for sterilization and disinfection.

[0027] 2. The present invention is equipped with a circulation component. The fabric enters the inner side of the transition box in the circulation component through the steam component. The hot air blower is started to make the hot air blower generate hot air to dry the fabric. After the hot air passes through the top of the fabric, it will be blown from the outlet of the drying box to the inner side of the transition box, so that the hot air inside the transition box enters the inner side of the connecting pipe, and the hot air passes through the connecting pipe, the round pipe and the air inlet pipe and enters the inner side of the air box. The air inside the air box enters the inner side of the drying box again under the action of the hot air blower, realizing the recycling of hot air, so that the hot air blower no longer needs to continuously heat the external air into hot air, reducing the power requirement for the hot air blower.

[0028] 3. The present invention is equipped with a wind blocking component. The wind blocking component can provide a barrier for the hot air in the circulation component to prevent the hot air from moving to the outside. When the fabric is about to be removed from the inner side of the drying box, the staff grabs the push rod and moves it upward, so that the push rod moves counterclockwise along the inner side of the arc hole. The push rod drives the wind blocking plate connected to it to move upward. The adjacent two wind blocking plates can rotate relative to each other through the plastic film, so that the adjacent two wind blocking plates can be in the same plane position. Move the push rod to contact the inner side of the top wall of the arc hole to release the sealing of the ventilation hole. The fabric moves out to the outside through the ventilation hole. Then, grab the push rod again and move it downward clockwise, so that the wind blocking plate and the plastic film seal the ventilation hole to prevent the hot air from moving out to the outside through the ventilation hole, reducing the outflow of hot air and reducing the impact of hot air on the surrounding working environment.

[0029] 4. The present invention is equipped with a drying component. The drying component can dry the hot air in the circulation component. The staff starts the compressor to make the compressor generate coolant and enter the condensing pipe for circulation, reducing the surface temperature of the condensing pipe. When the hot air enters the inner side of the air box, the hot air contacts the surface of the condensing pipe, causing the water vapor in the hot air to condense into small water droplets. The condensed small water droplets move downward along the surface of the condensing pipe. The small water droplets contact the connecting rod and slide downward along the surface of the connecting rod, so that the small water droplets slide onto the top of the collecting plate. The water on the top of the collecting plate flows along the top of the collecting plate towards the water pipe, and the water flows into the inner side of the water collecting tank through the water pipe for collection. Then, the staff grabs the valve and rotates it to release the sealing of the leakage pipe, so that the water inside the water collecting tank flows out to the outside through the leakage pipe, which is convenient for reducing the moisture inside the air box and improving the drying effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 is a schematic diagram of the overall structure of the present invention;

[0031] Figure 2 is a three-dimensional structure schematic diagram of the dryer of the present invention;

[0032] Figure 3 is a front cross-sectional structure schematic diagram of the steam component of the present invention;

[0033] Figure 4 Schematic side cross-sectional structure diagram of the steam component of the present invention;

[0034] Figure 5 Schematic three-dimensional structure diagram of the sealing roller of the present invention;

[0035] Figure 6 Schematic cross-sectional structure diagram of the round pipe of the present invention;

[0036] Figure 7 Schematic cross-sectional structure diagram of the windshield box of the present invention;

[0037] Figure 8 Schematic cross-sectional structure diagram of the collection plate of the present invention;

[0038] Figure 9 Schematic three-dimensional structure diagram of the water pipe of the present invention;

[0039] Figure 10 Flow chart of the present invention.

[0040] In the figure: 1, bracket; 2, universal wheel; 3, conveying mechanism; 4, conveyor belt; 5, hot air blower; 6, high-temperature box; 7, support rod; 8, evaporation box; 9, heating rod; 10, water inlet pipe; 11, flange pipe; 12, outlet hole; 13, elbow pipe; 14, guide pipe; 15, through hole; 16, pull rod; 17, baffle; 18, fixing ring; 19, sealing roller; 20, air box; 21, air inlet pipe; 22, fixing pipe; 23, rotating rod; 24, insertion plate; 25, grip rod; 26, heat insulation sleeve; 27, round pipe; 28, sealing ring; 29, inner ring; 30, collection cylinder; 31, filter screen; 32, grasping rod; 33, connecting pipe; 34, transition box; 35, windshield box; 36, ventilation hole; 37, arc hole; 38, arc plate; 39, windshield plate; 40, plastic film; 41, push rod; 42, compressor; 43, condensing pipe; 44, connecting rod; 45, collection plate; 46, water pipe; 47, water collection tank; 48, leakage pipe; 49, valve; 50, drying box. Detailed implementation manners

[0041] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0042] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "inner", "outer", "front end", "back end", "both ends", "one end", "the other end", etc. is based on the orientation or positional relationship shown in the drawings. It 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 should not be construed as a limitation to the present invention. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.

[0043] In the description of the present invention, it should be noted that unless otherwise clearly specified and defined, the terms "installed", "equipped with", "connected", etc. should be understood in a broad sense. For example, "connected" 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, and it is the communication inside two elements. 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.

[0044] Please refer to Figure 1 、 Figure 2 An embodiment provided by the present invention: A fabric tie-dye dryer with a disinfection function and an operation method, including a bracket 1. A conveying mechanism 3 is installed inside the bracket 1. The conveying mechanism 3 includes a conveyor belt 4. The conveying mechanism 3 can provide stable support and rotational power for the conveyor belt 4 to make the conveyor belt 4 rotate. Universal wheels 2 are installed at the bottom of the bracket 1, and two drying boxes 50 are installed at the top of the bracket 1. A hot air blower 5 is installed through the top of the drying box 50. The universal wheels 2 can provide stable support for all facilities on its top, facilitating the staff to move the fabric tie-dye dryer through the universal wheels 2. The bracket 1 can provide stable support for the drying box 50, the drying box 50 can provide stable support for the hot air blower 5, and the hot air blower 5 can heat the outside air into hot air and blow it into the inside of the drying box 50.

[0045] First, the staff move the bracket 1 to the working location through the universal wheels 2 and fix and lock the universal wheels 2. Place one end of the fabric on the top of the conveyor belt 4, and then power on the conveying mechanism 3 and the hot air blower 5. The conveying mechanism 3 drives the conveyor belt 4 to rotate. The conveyor belt 4 drives the fabric to move by the friction with the fabric. The hot air blower 5 heats the air and blows it into the inside of the drying box 50, making the hot air contact the fabric and evaporating the moisture of the fabric into water vapor for drying.

[0046] Please refer to Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 5, an embodiment provided by the present invention: a fabric tie-dyeing dryer with a disinfection function and an operation method, including a steam component. The steam component includes a high-temperature box 6, and the high-temperature box 6 is installed on the top of the bracket 1. Support rods 7 are respectively installed on the inner walls on both sides of the high-temperature box 6. An evaporation box 8 is installed between two pairs of the support rods 7. Heating rods 9 are installed on the inner walls on both sides of the evaporation box 8. A water inlet pipe 10 is installed through one side of the evaporation box 8. The bracket 1 can provide stable support for the high-temperature box 6. The high-temperature box 6 can support the evaporation box 8 through the support rods 7. After the heating rods 9 are powered on, they can heat themselves using the resistance effect. An outlet hole 12 is penetrated and opened on the front surface of the evaporation box 8. A bent pipe 13 is installed on the front surface of the evaporation box 8, and the bent pipe 13 communicates with the outlet hole 12. A guide pipe 14 is installed at the bottom of the bent pipe 13. The evaporation box 8 can provide a space for opening the outlet hole 12. The outlet hole 12 can provide a flow channel for water vapor. The bent pipe 13 and the guide pipe 14 can provide a guiding effect for water vapor. One end of the water inlet pipe 10 is installed with a flange pipe 11, and the flange pipe 11 is connected to an external water pipe to supply water to the inside of the evaporation box 8. A group of through holes 15 are respectively penetrated and opened on the front and back surfaces of the high-temperature box 6. The same pull rod 16 is placed inside the through hole 15 near the front surface and the through hole 15 near the corresponding back surface. Two baffles 17 are installed on the outer side of the pull rod 16, and the two baffles 17 are respectively located on the front and back surfaces of the high-temperature box 6. The high-temperature box 6 can provide a through-opening channel for the through holes 15. The through holes 15 can provide a moving space for the pull rod 16. The baffle 17 can cover the through holes 15 to reduce the escape of water vapor. Two fixing rings 18 are installed through the inside of the pull rod 16. Sealing rollers 19 are installed through the inside of the fixing rings 18 through bearings, and the two sealing rollers 19 are respectively close to the inner walls of the front and back surfaces of the high-temperature box 6;

[0047] The staff members grasp the two pull rods 16 and move them upward, causing the pull rods 16 to move inside the through holes 15. The pull rods 16 drive the sealing roller 19 to move upward through the fixing rings 18, so that one end of the fabric is driven by the conveyor belt 4 into the inside of the high-temperature box 6. Then, the pull rods 16 are released, and the sealing roller 19 falls on the top of the fabric. Subsequently, it is connected to the external tap water pipe through the flange pipe 11, and an appropriate amount of water is injected into the evaporation box 8 through the water inlet pipe 10. The heating rod 9 is started, and the heating rod 9 heats the water in the evaporation box 8 into water vapor. The water vapor moves upward and enters the inside of the elbow pipe 13 through the outlet holes 12. The water vapor moves downward along the inside of the elbow pipe 13 under the guidance of the elbow pipe 13, so that the water vapor enters the inside of the guiding pipe 14. The guiding pipe 14 provides a large diffusion space for the water vapor, enabling the water vapor to pass through the guiding pipe 14 and contact the top of the fabric. The high-temperature sterilization of the fabric is carried out by utilizing the high-temperature characteristics of the water vapor. The conveying mechanism 3 is continuously started to drive the fabric to move, so that the sealing roller 19 drives the sealing roller 19 to roll by means of the friction with the top of the fabric. The sealing roller 19 rotates under the support of the bearings and the fixing rings 18, and the sealing roller 19 can block the outlet of the high-temperature box 6 to reduce the overflow of the water vapor.

[0048] Please refer to Figure 1 and Figure 6, an embodiment provided by the present invention: a fabric tie-dye dryer with a disinfection function and an operation method, including a circulation component. The circulation component includes an air box 20, and the air box 20 is installed on the top of the drying box 50. The air box 20 is located outside two hot air blowers 5. The drying box 50 can provide a stable support for the air box 20, and the air box 20 can provide a sealed space for the two hot air blowers 5 to prevent the hot air blowers 5 from contacting the outside air, so that the hot air blowers 5 heat the air inside the air box 20. Two air inlet pipes 21 are installed through the front of the air box 20. A fixed pipe 22 is installed at the top of the air inlet pipe 21. A rotating rod 23 is installed through the inner side of the fixed pipe 22 through a bearing. Another fixed pipe 22 is sleeved on the outer side of the rotating rod 23 through a bearing. A connecting pipe 33 is installed at the bottom of this fixed pipe 22. The air box 20 can provide a through space for the air inlet pipe 21. The air inlet pipe 21 can provide a stable support for the fixed pipe 22. The fixed pipe 22 can provide a through space for the rotating rod 23 and the bearing. The air inlet pipe 21 and the connecting pipe 33 can provide a circulation channel for the hot air. One end of the connecting pipe 33 near the back is installed with a transition box 34, and the transition box 34 is installed between the high-temperature box 6 and the drying box 50. The transition box 34 and the high-temperature box 6 cooperate to form a sealed space to seal the outlet of the drying box 50 near the back. A plug board 24 is installed through the inside of the rotating rod 23. A grip rod 25 is installed at the top of the plug board 24. A heat insulation sleeve 26 is sleeved on the outer side of the grip rod 25. The rotating rod 23 can provide a through space for the plug board 24. The plug board 24 can provide a stable support for the grip rod 25. The heat insulation sleeve 26 can isolate heat to prevent the staff from being scalded when grasping the grip rod 25. A round pipe 27 is installed at the bottom of the plug board 24. Sealing rings 28 are installed at both ends of the round pipe 27. An inner ring 29 is installed inside the round pipe 27. A collection cylinder 30 is placed inside the round pipe 27, and the collection cylinder 30 is located on one side of the inner ring 29. The round pipe 27 can provide a stable support for the sealing rings 28. The sealing rings 28 can seal the docking joints of the round pipe 27 with the connecting pipe 33 and the air inlet pipe 21 to prevent the hot air from flowing out. The round pipe 27 can provide a stable support for the inner ring 29. The inner ring 29 can provide a placement support for the collection cylinder 30. A filter screen 31 is installed on the inner wall of one side of the collection cylinder 30 close to the inner ring 29. A grab rod 32 is installed on the inner wall of one side of the collection cylinder 30 close to the connecting pipe 33.

[0049] When the fabric enters the inside of the drying box 50, the hot air blower 5 is started to make the hot air blower 5 produce hot air to dry the fabric. After the hot air passes through the top of the fabric, it will be blown to the outside from the outlet of the drying box 50, so that the hot air enters the inside of the transition box 34 from the outlet of the drying box 50 near the back. The hot air inside the transition box 34 enters the inside of the connecting pipe 33 under the action of air pressure, so that the hot air passes through the connecting pipe 33, the round pipe 27 and the air inlet pipe 21 and enters the inside of the air box 20. The air inside the air box 20 enters the inside of the drying box 50 again under the action of the hot air blower 5. When the hot air passes through the inside of the round pipe 27, the hot air passes through the filter screen 31. The filter screen 31 can filter the threads and lint in the hot air to prevent the hot air blower 5 from being affected, realizing the recycling of hot air, so that the hot air blower 5 no longer needs to continuously heat the outside air into hot air, reducing the power requirement for the hot air blower 5.

[0050] The staff grabs the heat insulation sleeve 26 and rotates it forward or backward, so that the heat insulation sleeve 26 drives the insertion plate 24 to rotate under the action of external force through the grip rod 25, so that the insertion plate 24 drives the rotating rod 23 to rotate under the support of the rotating rod 23. The rotating rod 23 rotates around itself under the support of the fixed pipe 22 and the bearing. The insertion plate 24 drives the round pipe 27 to rotate. By driving the insertion plate 24 to rotate to the horizontal position through the grip rod 25, the round pipe 27 is moved out of the position between the connecting pipe 33 and the air inlet pipe 21. Grab the grab rod 32 and move it in the direction away from the inner ring 29, so that the grab rod 32 drives the collection cylinder 30 to move out of the inside of the round pipe 27, which is convenient for cleaning the threads and lint inside the collection cylinder 30.

[0051] Please refer to Figure 1 and Figure 7 As shown in, an embodiment provided by the present invention: a fabric tie-dye dryer with a disinfection function and an operation method, including a wind blocking component. The wind blocking component is used to prevent the hot air inside the drying box 50 from flowing out. The wind blocking component includes a wind blocking box 35, and the wind blocking box 35 is installed on the front of the drying box 50 near the front. A ventilation hole 36 is penetrated and opened on the front of the wind blocking box 35. The wind blocking box 35 can provide a penetration opening space for the ventilation hole 36. An arc hole 37 is penetrated and opened on one side of the wind blocking box 35. Arc plates 38 are respectively installed on the inner walls of both sides of the wind blocking box 35. A plurality of wind blocking plates 39 are placed on the top of the arc plate 38. A plastic film 40 is installed between every two wind blocking plates 39. The wind blocking plate 39 can provide a stable support for the plastic film 40. The plastic film 40 facilitates the rotation of two adjacent wind blocking plates 39 to the same horizontal plane, which is convenient for the storage of the wind blocking plates 39. A push rod 41 is installed on one side of the wind blocking plate 39 near the bottom, and the push rod 41 penetrates the inside of the arc hole 37. The push rod 41 is used to provide a grasping support for the staff.

[0052] When the fabric is about to be moved out of the inner side of the drying box 50, the staff member grabs the push rod 41 and moves it upward, so that the push rod 41 moves counterclockwise along the inner side of the arc hole 37 under the action of external force, and the push rod 41 drives the wind shield 39 connected thereto to move upward, so that the wind shield 39 moves under the support of the arc plate 38, and the two adjacent wind shields 39 can rotate relative to each other through the plastic film 40, so that the two adjacent wind shields 39 can be in the same plane position, and the push rod 41 is moved to contact the inner side of the top wall of the arc hole 37, and the seal of the ventilation hole 36 is released, so that the fabric is moved out to the outside through the ventilation hole 36, and then the push rod 41 is grabbed again and moved downward clockwise, so that the wind shield 39 and the plastic film 40 seal the ventilation hole 36, preventing the hot air from moving out to the outside from the ventilation hole 36, and the hot air enters the heat cycle again through the connecting pipe 33, the circular pipe 27 and the air inlet pipe 21, thereby reducing the outflow of hot air and reducing the impact of hot air on the surrounding working environment.

[0053] See also Figure 1 , Figure 8 and Figure 9 An embodiment of the present invention is a fabric tie-dye drying machine with a disinfection function and an operating method, comprising a drying assembly, wherein the drying assembly comprises two compressors 42, and the two compressors 42 are installed on the top of a drying box 50 and are located on one side of an air box 20, a condenser 43 is installed at the output end of the compressor 42, and the condenser 43 runs through one side of the air box 20, the condenser 43 corresponds to the position of the air inlet pipe 21, a plurality of connecting rods 44 are installed at the bottom of the condenser 43, a collecting plate 45 is installed at the bottom of the connecting rod 44, and the collecting plate 45 is installed at the bottom of the connecting rod 44. The collecting plate 45 is located at the top of the drying box 50, the condenser 43 can provide a stable support for the connecting rod 44, the connecting rod 44 can provide a guide for the water droplets, the collecting plate 45 can provide a space for water, a water flow pipe 46 is installed at one end of the collecting plate 45, and the water flow pipe 46 runs through one side of the air box 20, a water collecting box 47 is installed at one end of the water flow pipe 46, and the water collecting box 47 is connected to one side of the drying box 50 through a connecting component, a leakage pipe 48 is installed at the bottom of the water collecting box 47, and a valve 49 is installed at the outside of the leakage pipe 48.

[0054] The staff starts the compressor 42, causing the compressor 42 to produce coolant that enters the condensation pipe 43 for circulation, reducing the surface temperature of the condensation pipe 43. When hot air enters the inner side of the air box 20, the hot air contacts the surface of the condensation pipe 43, causing the water vapor in the hot air to condense into small water droplets. The condensed small water droplets move downward along the surface of the condensation pipe 43. The small water droplets contact the connecting rod 44, and under the guiding action of the connecting rod 44, the small water droplets slide downward along the surface of the connecting rod 44, causing the small water droplets to slide onto the top of the collection plate 45. The water on the top of the collection plate 45 flows along the top of the collection plate 45 towards the water pipe 46, enabling the water to enter the inner side of the water collection tank 47 through the water pipe 46 for collection. Subsequently, the staff grabs the valve 49 and rotates it, causing the valve 49 to release the seal on the leakage pipe 48, enabling the water inside the water collection tank 47 to flow out to the outside through the leakage pipe 48, facilitating the reduction of moisture inside the air box 20 and improving the drying effect.

[0055] Furthermore, the operation method of the fabric tie-dye dryer is as follows:

[0056] S1. First, the staff moves the bracket 1 to the working location through the universal wheels 2, fixes and locks the universal wheels 2, places one end of the fabric on the top of the conveyor belt 4, and then powers on the conveying mechanism 3 and the hot air blower 5, causing the conveying mechanism 3 to drive the conveyor belt 4 to rotate, the conveyor belt 4 to drive the fabric to move, and the hot air blower 5 to heat and blow the air into the inner side of the drying box 50;

[0057] S2. Subsequently, the staff grabs the two pull rods 16 and moves upward, causing the conveyor belt 4 to drive one end of the fabric into the inner side of the high-temperature box 6, puts down the pull rods 16, causing the sealing roller 19 to fall on the top of the fabric, and then injects an appropriate amount of water into the evaporation box 8 through the flange pipe 11 and the water inlet pipe 10. The heating rod 9 is started to heat and evaporate the water in the evaporation box 8 into water vapor. The water vapor contacts the top of the fabric, and the high-temperature sterilization of the fabric is carried out by using the high-temperature characteristics of the water vapor;

[0058] S3. When the fabric enters the inner side of the drying box 50, the hot air blower 5 is started, causing the hot air blower 5 to produce hot air to dry the fabric. The hot air passes through the connecting pipe 33, the round pipe 27, and the air inlet pipe 21 and enters the inner side of the air box 20. The air inside the air box 20 enters the inner side of the drying box 50 again under the action of the hot air blower 5, realizing the recycling of hot air;

[0059] S4. When the fabric is about to be removed from the inner side of the drying box 50, the staff grabs the push rod 41 and moves upward to release the seal on the ventilation hole 36, causing the fabric to move out to the outside through the ventilation hole 36. Then, the staff grabs the push rod 41 again and moves downward and clockwise, causing the wind baffle 39 and the plastic film 40 to seal the ventilation hole 36, reducing the outflow of hot air;

[0060] S5. The staff starts the compressor 42 to reduce the surface temperature of the condensation pipe 43. The hot air contacts the surface of the condensation pipe 43 and condenses into small water droplets. The condensed small water droplets enter the inside of the water collection tank 47 for collection. Then, the staff grasps the valve 49 and rotates it to make the water inside the water collection tank 47 flow to the outside through the drain pipe 48.

[0061] Further, in the step S3, the following steps are further included:

[0062] S31. The staff grasps the heat insulation sleeve 26 and rotates it forward or backward, so that the heat insulation sleeve 26 drives the plug board 24 to rotate through the grip rod 25. The plug board 24 drives the round pipe 27 to rotate. By driving the plug board 24 to rotate to the horizontal position through the grip rod 25, the round pipe 27 is moved out of the position between the connecting pipe 33 and the air inlet pipe 21. The staff grasps the grab rod 32 and moves it away from the inner ring 29, so that the grab rod 32 drives the collection cylinder 30 to move out of the inside of the round pipe 27, which is convenient for cleaning the lines and wire heads inside the collection cylinder 30.

[0063] Working principle: When the staff needs to use the fabric tie-dyeing dryer, the fabric should be placed on the top of the conveyor belt 4 first. The conveying mechanism 3 is started to drive the fabric to move through the conveyor belt 4. The staff grasps the pull rod 16 and moves it upward to move the fabric to the bottom of the two sealing rollers 19. The pull rod 16 is put down, and an appropriate amount of water is injected into the evaporation box 8. The heating rod 9 is started to evaporate the water into water vapor. The water vapor contacts the fabric for sterilization and disinfection. The hot air blower 5 is started to heat the air into hot air to dry the fabric. The hot air circulates through the connecting pipe 33, the round pipe 27 and the air inlet pipe 21. The compressor 42 is started to reduce the temperature of the condensation pipe 43, and the moisture in the hot air is condensed into water for collection. When the fabric is about to move out of the drying box 50, the staff grasps the push rod 41 and moves it upward to open the ventilation hole 36, so that the fabric moves out to the outside. The push rod 41 is pulled down to close the ventilation hole 36 to reduce the hot air moving out to the outside.

[0064] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above-mentioned exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, in any aspect, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claims involved.

Claims

1. A fabric tie-dye drying machine with a disinfection function, characterized in that: It comprises a support (1), a conveying mechanism (3) is installed on the inner side of the support (1), the conveying mechanism (3) comprises a conveyor belt (4), and a steam component is arranged on the top of the support (1), the steam component is used to create a high-temperature environment for sterilization; The steam component comprises a high temperature box (6), and the high temperature box (6) is mounted on the top of the bracket (1), support rods (7) are respectively mounted on the inner walls of both sides of the high temperature box (6), an evaporation box (8) is mounted between the two support rods (7), heating rods (9) are mounted on the inner walls of both sides of the evaporation box (8), a water inlet pipe (10) is installed through one side of the evaporation box (8), an outlet hole (12) is opened through the front of the evaporation box (8), a bent pipe (13) is installed on the front of the evaporation box (8), and the bent pipe (13) is communicated with the outlet hole (12), and a guide pipe (14) is installed at the bottom of the bent pipe (13); A universal wheel (2) is installed at the bottom of the bracket (1), two drying boxes (50) are installed at the top of the bracket (1), a hot air blower (5) is installed through the top of the drying box (50), and a circulation component is arranged on the top of the drying box (50), and the circulation component is used to circulate the hot air inside the drying box (50); A group of through holes (15) are respectively provided on the front and back sides of the high temperature box (6); a pull rod (16) is placed on the inner side of the through hole (15) close to the front side and the corresponding through hole (15) close to the back side; two baffles (17) are installed on the outer side of the pull rod (16), and the two baffles (17) are respectively located on the front and back sides of the high temperature box (6); two fixing rings (18) are installed inside the pull rod (16); a sealing roller (19) is installed on the inner side of the fixing ring (18) through a bearing, and the two sealing rollers (19) are respectively close to the inner wall of the front side and the inner wall of the back side of the high temperature box (6); The circulation component comprises an air box (20), and the air box (20) is installed on the top of the drying box (50), the air box (20) is located on the outside of the two hot air blowers (5), two air inlet pipes (21) are installed through the front of the air box (20), a fixed pipe (22) is installed on the top of the air inlet pipe (21), a rotating rod (23) is installed through the inner side of the fixed pipe (22) through a bearing, another fixed pipe (22) is sleeved on the outer side of the rotating rod (23) through a bearing, a connecting pipe (33) is installed at the bottom of the fixed pipe (22), a transition box (34) is installed at one end of the connecting pipe (33) close to the back, and the transition box (34) is installed between the high temperature box (6) and the drying box (50), and the interior of the rotating rod (23) is installed through the rotating rod (23). A plug plate (24) is installed, a gripping rod (25) is installed on the top of the plug plate (24), an insulating sleeve (26) is installed on the outside of the gripping rod (25), a round tube (27) is installed on the bottom of the plug plate (24), sealing rings (28) are installed on both ends of the round tube (27), an inner ring (29) is installed on the inner side of the round tube (27), a collecting cylinder (30) is placed on the inner side of the round tube (27), and the collecting cylinder (30) is located on one side of the inner ring (29), a filter screen (31) is installed on the inner wall of the collecting cylinder (30) on one side close to the inner ring (29), and a gripping rod (32) is installed on the inner wall of the collecting cylinder (30) on one side close to the connecting pipe (33), and a drying assembly is arranged on one side of the circulation assembly, and the drying assembly is used to reduce the moisture inside the air box (20).

2. The fabric tie-dye drying machine with disinfection function according to claim 1, characterized in that: A flange pipe (11) is installed at one end of the water inlet pipe (10), and the flange pipe (11) is connected to an external water pipe to provide water to the inside of the evaporation box (8).

3. The fabric tie-dye drying machine with disinfection function according to claim 2, characterized in that: A windshield assembly is provided on the top of the bracket (1), and the windshield assembly is used to prevent hot air from flowing out of the drying box (50). The windshield assembly includes a windshield box (35), and the windshield box (35) is installed on the front side of the drying box (50) near the front side. A ventilation hole (36) is provided through the front side of the windshield box (35), and an arc hole (37) is provided through one side of the windshield box (35). Arc plates (38) are respectively installed on the inner walls of both sides of the windshield box (35), and a plurality of windshield plates (39) are placed on the top of the arc plates (38). Plastic films (40) are installed between the windshield plates (39), and a push rod (41) is installed on one side of the windshield plate (39) near the bottom, and the push rod (41) passes through the inner side of the arc hole (37). The push rod (41) is used to provide a gripping support for the staff.

4. The fabric tie-dye drying machine with disinfection function according to claim 1, characterized in that: The drying assembly comprises two compressors (42), and the two compressors (42) are installed on the top of the drying box (50) and located on one side of the air box (20). A condenser (43) is installed at the output end of the compressor (42), and the condenser (43) runs through the inside of one side of the air box (20). The condenser (43) corresponds to the position of the air inlet pipe (21). A plurality of connecting rods (44) are installed at the bottom of the condenser (43), and a collecting plate ( 45), and the collecting plate (45) is located at the top of the drying box (50), one end of the collecting plate (45) is installed with a water flow pipe (46), and the water flow pipe (46) passes through the inside of one side of the air box (20), one end of the water flow pipe (46) is installed with a water collecting box (47), and the water collecting box (47) is connected to one side of the drying box (50) through a connecting component, the bottom of the water collecting box (47) is installed with a leakage pipe (48), and the outer side of the leakage pipe (48) is installed with a valve (49).

5. According to the operating method of the fabric tie-dye drying machine with a disinfection function according to any one of claims 1 to 4, the operating method of the fabric tie-dye drying machine is as follows: S1. First, the staff moves the support (1) to the work location via the universal wheel (2), and fixes and locks the universal wheel (2), places one end of the fabric on the top of the conveyor belt (4), and then energizes the conveying mechanism (3) and the hot air blower (5), so that the conveying mechanism (3) drives the conveyor belt (4) to rotate, the conveyor belt (4) drives the fabric to move, and the hot air blower (5) heats the air and blows it into the inner side of the drying box (50); S2. The staff then grasps the two pull rods (16) and moves upward, so that the conveyor belt (4) drives one end of the fabric into the inner side of the high-temperature box (6), and lowers the pull rod (16) so that the sealing roller (19) falls on the top of the fabric. Then, an appropriate amount of water is injected into the inner side of the evaporation box (8) through the flange pipe (11) and the water inlet pipe (10), and the heating rod (9) is started to heat the water in the evaporation box (8) and evaporate it into water vapor. The water vapor contacts the top of the fabric, and the high temperature characteristics of the water vapor are used to sterilize the fabric at high temperature. S3, when the fabric enters the inner side of the drying box (50), the hot air blower (5) is started, so that the hot air blower (5) produces hot air to dry the fabric, and the hot air passes through the connecting pipe (33), the round pipe (27) and the air inlet pipe (21) and enters the inner side of the air box (20). Under the action of the hot air blower (5), the air inside the air box (20) enters the inner side of the drying box (50) again, thereby realizing the recycling of the hot air; S4. When the fabric is about to be moved out of the inner side of the hot air blower (5), the worker grasps the push rod (41) and moves it upward to release the seal of the ventilation hole (36), so that the fabric can be moved out to the outside through the ventilation hole (36), and then grasps the push rod (41) and moves it downward clockwise again, so that the wind shield (39) and the plastic film (40) seal the ventilation hole (36) to reduce the outflow of hot air; S5. The staff starts the compressor (42) to reduce the surface temperature of the condenser (43). The hot air contacts the surface of the condenser (43) and condenses into small water droplets. The condensed small water droplets enter the inner side of the water collecting tank (47) for collection. Then, the staff grabs the valve (49) and rotates it, so that the water inside the water collecting tank (47) flows to the outside through the leakage pipe (48).

6. The operating method of the fabric tie-dye drying machine with disinfection function according to claim 5, characterized in that: In step S3, the following steps are also included: S31. The staff member grasps the heat insulating sleeve (26) and rotates it toward the front or back, so that the heat insulating sleeve (26) drives the plug plate (24) to rotate through the gripping rod (25), and the plug plate (24) drives the round tube (27) to rotate. The plug plate (24) is driven to rotate to a horizontal position through the gripping rod (25), and the round tube (27) is moved out of the position between the connecting tube (33) and the air inlet pipe (21). The staff member grasps the gripping rod (32) and moves it in a direction away from the inner ring (29), so that the gripping rod (32) drives the collecting tube (30) to move out of the inner side of the round tube (27), so as to facilitate the cleaning of the lines and thread ends inside the collecting tube (30).

Citation Information

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