Anti-wrinkle finishing equipment for wool worsted shirt fabric and use method of anti-wrinkle finishing equipment

The wrinkle-resistant finishing equipment of the wrinkle-spun shirt fabric heated by gear meshing double-roll structure and air source heat pump, combined with the reciprocating smoothing mechanism, solves the problem of poor wrinkle-resistant effect in the processing of wrinkle-spun shirt fabric, and achieves efficient fabric smoothing and cleaning treatment.

CN120330979APending Publication Date: 2025-07-18LANZHOU SANMAO IND +1
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Patent Information

Application Number
CN202510609207.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2025-07-18

AI Technical Summary

Technical Problem

Wrinkle-spun shirt fabric has poor wrinkle resistance during processing, and traditional flattening equipment is difficult to effectively remove stubborn wrinkles, which affects the smoothness and production efficiency of the fabric.

Method used

The gear meshing double-roll structure is adopted, combined with the air source heat pump heating and reciprocating smoothing mechanism, to achieve synchronous extrusion and heating smoothing, and to cooperate with the vacuum cleaner system for cleaning.

Benefits of technology

It significantly improves the flatness and wrinkle resistance of the fabric, improves production efficiency, solves the problems of unstable heating and poor transportation in traditional equipment, and ensures high-quality treatment of the fabric.

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Abstract

The invention relates to the technical field of wool worsted shirt fabric processing, and discloses anti-wrinkle finishing equipment for wool worsted shirt fabric and a using method thereof.The anti-wrinkle finishing equipment comprises a shell, a dust suction fan is arranged on the upper surface of the shell, a dust outlet pipe is arranged at the output end of the dust suction fan, and a dust collection box is arranged at one end of the dust outlet pipe; and one side of the dust collection box is arranged on one side of the shell, a dust suction pipe is arranged at the input end of the dust suction fan, and a first bearing is arranged at one end of the dust suction pipe. The first flattening roller and the second flattening roller rotate synchronously through meshing of the first gear and the second gear, obvious wrinkles of the fabric are effectively flattened in a mechanical extrusion mode, fabric fiber rearrangement becomes flat, and compared with traditional single pressing roller and flattening equipment, wrinkles can be treated more comprehensively and deeply, the removal efficiency is improved, the anti-wrinkle effect is improved, and the product quality is improved. The problem that the anti-wrinkle effect is poor when the wool worsted shirt fabric is processed is solved, and meanwhile the functions of cleaning and ironing are achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of processing and treatment of wool worsted shirt fabrics, and particularly to an anti-wrinkle finishing device for wool worsted shirt fabrics and its use method. Background Art

[0002] Wool worsted shirt fabrics are quite popular in the clothing market due to their excellent handfeel, comfortable wearing performance and certain glossiness, and are widely used in the production of various high-grade shirts. However, in the production and manufacturing process of the fabrics, from spinning, weaving to dyeing and finishing and other series of processes, as well as in the subsequent transportation and storage processes, due to external forces such as extrusion and folding, the fabrics are extremely prone to generate wrinkles. These wrinkles not only seriously affect the appearance flatness of the fabrics, making it difficult to meet the quality requirements of high-end clothing, but also increase the difficulty in subsequent processing such as cutting and sewing, resulting in deviations in the clothing pattern and reducing production efficiency.

[0003] Traditional anti-wrinkle treatment means are relatively single, often simply relying on the way of mechanical flattening, only squeezing the wrinkled fabrics through ordinary pressure rollers. This way can only remove the relatively shallow wrinkles on the surface, and it is very difficult to achieve an ideal smoothing effect for the stubborn wrinkles formed due to long-term folding and extrusion, resulting in poor anti-wrinkle effect of the final fabrics and unable to meet the strict requirements for the flatness of fabrics in high-end shirt production. Summary of the Invention

[0004] In view of the deficiencies of the prior art, the present invention provides an anti-wrinkle finishing device for wool worsted shirt fabrics and its use method, which solves the problem of poor anti-wrinkle effect of wool worsted shirt fabrics in the processing process.

[0005] To achieve the above purposes, the present invention is realized through the following technical solutions: An anti-wrinkle finishing device for wool worsted shirt fabrics includes a housing. A dust suction fan is arranged on the upper surface of the housing. An air outlet pipe is arranged at the output end of the dust suction fan. One end of the air outlet pipe is provided with a dust collection box, and one side of the dust collection box is arranged on one side of the housing. A dust suction pipe is arranged at the input end of the dust suction fan. One end of the dust suction pipe is provided with a bearing I. A flattening roller I is arranged on the outer wall of the bearing I. One end of the flattening roller I is provided with a gear I. The tooth end of the gear I is meshed and connected with a gear II. A flattening roller II is arranged in the middle of the gear II. Baffles are arranged at both ends of the flattening roller II. One end of the flattening roller II is provided with a bearing II, and the outer wall of the bearing II is arranged inside the baffle.

[0006] Preferably, a plurality of dust suction grooves are arranged on the outer wall of the flattening roller I, and a dust suction cavity is arranged inside the flattening roller I. A plurality of heat outlet holes are arranged on the outer wall of the flattening roller II, and a heating cavity is arranged inside the flattening roller II.

[0007] Preferably, one end of the baffle is provided with an inlet heat pipe, the top end of the inlet heat pipe penetrates through the housing and is provided with an air source heat pump, the bottom end of the air source heat pump is arranged on the upper surface of the housing, a feed inlet is arranged on the side wall of the housing, a discharge outlet is arranged on the other side wall of the housing, a heat transfer cavity is arranged inside the baffle, the outer wall of the second bearing is arranged in the heat transfer cavity of the baffle, and a reciprocating mechanism is arranged on the upper surface of the baffle.

[0008] Preferably, a plurality of rollers are rotatably connected to the side wall of the baffle, a conveyor belt is arranged on the outer wall of the rollers, a bearing plate is fixedly arranged on the outer wall of the other baffle, and a first motor is arranged on the upper surface of the bearing plate, and the output end of the first motor is fixedly arranged at one end of one of the rollers.

[0009] Preferably, a first pulley is fixedly arranged at the output end of the first motor, a belt is connected inside the first pulley, one end of the belt is connected with a second pulley, and the middle part of the second pulley is fixedly connected to one end of the flattening roller II.

[0010] Preferably, first fixing blocks are symmetrically arranged at the bottom end of the baffle, the bottom ends of the first fixing blocks are arranged inside the housing, a plurality of legs are arranged at the bottom end of the housing, and universal wheels are arranged at the bottom ends of the legs.

[0011] Preferably, the reciprocating mechanism comprises a second motor, the outer wall of the second motor is arranged on the upper surface of the baffle, sliders are symmetrically arranged on the upper surface of the baffle, a threaded rod is fixedly arranged at the output end of the second motor, two ends of the outer wall of the threaded rod are rotatably connected with second fixing blocks, the outer walls of the second fixing blocks are threadedly connected with the sliders, the bottom ends of the sliders are slidably connected to the upper surface of the baffle, and a smoothing roller is rotatably connected to the middle of the slider.

[0012] A using method of an anti-wrinkle finishing device for worsted shirt fabric is used for the anti-wrinkle finishing device for worsted shirt fabric, and comprises the following steps:

[0013] S1. Equipment preparation and initial inspection: Check the appearance of the equipment, confirm that there is no damage or looseness in the housing and each component, ensure that the legs are stable, the universal wheels can rotate and lock normally, check that the electrical components such as the dust suction fan, the air source heat pump, the first motor and the second motor are connected normally and there is no potential leakage hazard, empty the dust collection box, and ensure that the dust suction system is unobstructed;

[0014] S2. Fabric introduction and preliminary conveying: Slowly put the worsted shirt fabric into the equipment from the feed inlet, make the fabric flat on the conveyor belt, start the first motor, the first motor drives the flattening roller II to rotate through the first pulley, the belt and the second pulley, and at the same time drives the rollers to make the conveyor belt run, and stably convey the fabric into the equipment;

[0015] S3, Anti-wrinkle, Flattening and Cleaning Treatment: Turn on the air source heat pump. The hot air enters the heat transfer cavity through the inlet heat pipe, then reaches the heating cavity of the second flattening roller, and is discharged from the heat outlet holes to heat and anti-wrinkle the fabric. Start the dust suction fan, and suck the dust on the fabric surface through the dust suction pipe, the dust suction cavity of the first flattening roller and the dust suction grooves. The first flattening roller and the second flattening roller rotate synchronously under the action of the first gear and the second gear to extrude and flatten the fabric. Turn on the second motor, and the second motor drives the threaded rod to rotate, so that the slider drives the smoothing roller to reciprocate on the fabric surface to further smooth out fine wrinkles;

[0016] S4, Discharging and Equipment Arrangement: The processed fabric is sent out from the discharge port, collected and sorted in time. Turn off all the power of the equipment, clean the dust in the dust collection box, and conduct a simple cleaning on the surface and inside of the equipment to prepare for the next use.

[0017] Working Principle: The equipment uses the outer shell as the overall support frame. At the beginning of operation, it first goes through the equipment preparation and initial inspection links. Through manual inspection and relevant detections, it is ensured that the outer shell and the structures of all components are stable without damage or looseness, and the electrical components are connected normally without potential leakage hazards. At the same time, the dust collection box is cleaned to ensure smooth dust suction.

[0018] In the fabric processing stage, first is the fabric introduction and preliminary transmission. After the fabric is put into the flat conveyor belt from the feeding port, turn on the first motor. With the transmission of the first pulley, the belt and the second pulley, drive the second flattening roller to rotate, and at the same time drive the roller to make the conveyor belt run to smoothly convey the fabric inside.

[0019] Then it enters the core anti-wrinkle, flattening and cleaning treatment link. The air source heat pump works, sends the hot air through the inlet heat pipe to the baffle heat transfer cavity, then into the heating cavity of the second flattening roller and is discharged from the heat outlet holes to heat and anti-wrinkle the fabric. The dust suction fan generates suction, and sucks the fabric dust through the dust suction pipe, the dust suction cavity of the first flattening roller and the dust suction grooves. The first flattening roller and the second flattening roller rely on the meshing of the first gear and the second gear to rotate synchronously to extrude and flatten the fabric. And the second motor drives the threaded rod to rotate, so that the slider drives the smoothing roller to reciprocate on the fabric surface to smooth out fine wrinkles.

[0020] Finally is the discharging and equipment arrangement. The processed fabric is sent out from the discharge port, collected in time, then turn off all the power, clean the dust in the dust collection box, and conduct a simple cleaning on the equipment to prepare for the next use.

[0021] The present invention provides an anti-wrinkle finishing equipment for worsted shirt fabric and its using method. It has the following beneficial effects:

[0022] 1. The present invention enables the flattening roller 1 and the flattening roller 2 to rotate synchronously through the meshing of gear 1 and gear 2, and effectively smoothes obvious wrinkles on the fabric by mechanical extrusion, so that the fabric fibers are rearranged and flattened. Compared with the traditional single flattening roller and flattening equipment, it can more comprehensively and deeply handle wrinkles, improve removal efficiency, and improve anti-wrinkle effect, thus solving the problem of poor anti-wrinkle effect in the processing of wool worsted shirt fabrics, and at the same time, it also realizes the functions of taking into account both cleaning and ironing.

[0023] 2. The anti-wrinkle finishing equipment for wool worsted shirt fabrics of the present invention provides a stable and controllable heat source through an air source heat pump, which is transferred to the flattening roller 2 through the heat transfer cavity to achieve uniform heat supply, effectively improve the plasticity of the fabric to eliminate wrinkles and improve flatness, and on the other hand, with the help of reasonably set feed and discharge ports, the fabric is ensured to enter and exit in an orderly manner, so that the processing flow is coherent and the production efficiency is improved. The problems of unstable heat supply and poor transportation of traditional anti-wrinkle equipment are solved.

[0024] 3. The present invention drives the roller by motor 1 and drives the flattening roller 2 to rotate by belt transmission, and uses the same power source to achieve stable feeding of the conveyor belt and synchronous and coordinated operation of flattening rollers 1 and 2, thereby ensuring smooth flow of fabrics in the equipment, improving operating efficiency and processing continuity, and effectively processing fabrics and improving flatness to meet subsequent requirements, solving the problems of complex equipment driving structure and uneven conveying speed.

[0025] 4. The present invention drives the slider to make reciprocating linear motion by driving the threaded rod through the second motor, so that the smoothing roller connected to the slider can reciprocate and roll the fabric, thereby achieving secondary fine processing of the fabric after preliminary processing, improving the flatness of the fabric, ensuring that the equipment can continuously and evenly smooth the fabric, and enhancing the degree of fineness of anti-wrinkle finishing and product quality. It solves the problem that the fabric has fine wrinkles left after conventional flattening treatment and the flatness is difficult to reach an ideal state. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 This is a front perspective schematic diagram of an anti-wrinkle finishing device for wool worsted shirt fabrics proposed by the present invention;

[0027] Figure 2 This is a partial structural cross-sectional view of the outer shell of an anti-wrinkle finishing device for wool worsted shirt fabrics proposed by the present invention;

[0028] Figure 3 This is a schematic diagram of the partial structure of the conveyor belt of an anti-wrinkle finishing device for wool worsted shirt fabrics proposed by the present invention;

[0029] Figure 4 This is a schematic diagram of the partial structure of the dust suction fan of the anti-wrinkle finishing equipment for wool worsted shirt fabrics proposed by the present invention;

[0030] Figure 5A partial structural schematic diagram of a motor of an anti-wrinkle finishing device for worsted shirt fabrics proposed by the present invention;

[0031] Figure 6 A partial structural schematic diagram of a flattening roller of an anti-wrinkle finishing device for worsted shirt fabrics proposed by the present invention;

[0032] Figure 7 A partial structural cross-sectional view of a baffle of an anti-wrinkle finishing device for worsted shirt fabrics proposed by the present invention;

[0033] Figure 8 A flowchart of the usage method of an anti-wrinkle finishing device for worsted shirt fabrics proposed by the present invention.

[0034] Among them, 1. Outer shell; 2. Dust suction fan; 3. Dust outlet pipe; 4. Dust collection box; 5. Dust suction pipe; 6. Feed inlet; 7. Air source heat pump; 8. Heat inlet pipe; 9. Leg; 10. Universal wheel; 11. Bearing one; 12. Flattening roller one; 13. Discharge outlet; 14. Conveyor belt; 15. Threaded rod; 16. Slide block; 17. Baffle; 18. Fixed block one; 19. Fixed block two; 20. Bearing plate; 21. Motor one; 22. Belt; 23. Dust suction cavity; 24. Gear one; 25. Gear two; 26. Heating cavity; 27. Heat outlet hole; 28. Bearing two; 29. Dust suction groove; 30. Pulley one; 31. Pulley two; 32. Motor two; 33. Roller; 34. Heat transfer cavity; 35. Flattening roller two; 36. Flattening roller. Specific embodiments

[0035] Next, the technical solutions of the present invention will be clearly and completely described in conjunction with the drawings of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of 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.

[0036] Please refer to the attached Figure 1 - attached Figure 4 、 attached Figure 7, an anti-wrinkle finishing device for worsted shirt fabrics provided by an embodiment of the present invention includes a housing 1. A dust suction fan 2 is arranged on the upper surface of the housing 1. An air outlet pipe 3 is arranged at the output end of the dust suction fan 2. One end of the air outlet pipe 3 is provided with a dust collection box 4. One side of the dust collection box 4 is arranged on one side of the housing 1. A dust suction pipe 5 is arranged at the input end of the dust suction fan 2. One end of the dust suction pipe 5 is provided with a bearing one 11. A flattening roller one 12 is arranged on the outer wall of the bearing one 11. One end of the flattening roller one 12 is provided with a gear one 24. The tooth end of the gear one 24 is meshed and connected with a gear two 25. A flattening roller two 35 is arranged in the middle of the gear two 25. Baffles 17 are arranged at both ends of the flattening roller two 35. One end of the flattening roller two 35 is provided with a bearing two 28. The outer wall of the bearing two 28 is arranged inside the baffle 17. A plurality of dust suction grooves 29 are arranged on the outer wall of the flattening roller one 12. A dust suction cavity 23 is arranged inside the flattening roller one 12. A plurality of heat outlet holes 27 are arranged on the outer wall of the flattening roller two 35. A heating cavity 26 is arranged inside the flattening roller two 35.

[0037] Specifically, the housing 1 of the device serves as the overall support structure, and a dust suction fan 2 is arranged above it. After the dust suction fan 2 is started, suction will be generated at the dust suction pipe 5. One end of the dust suction pipe 5 is connected to the flattening roller one 12 arranged on the outer wall of the bearing one 11. A plurality of dust suction grooves 29 are distributed on the outer wall of the flattening roller one 12, and a dust suction cavity 23 is arranged inside it. When the fabric contacts the flattening roller one 12, the suction generated by the dust suction fan 2 will be conducted to the dust suction cavity 23 through the dust suction pipe 5, and then an adsorption force will be generated at the dust suction grooves 29, so that dust, impurities, etc. on the fabric surface can be sucked into the dust suction cavity 23. Then, the dust, etc. will pass through the dust suction cavity 23 and the dust suction pipe 5, and under the action of the dust suction fan 2, it will be conveyed to the dust collection box 4 through the air outlet pipe 3 for collection.

[0038] A gear one 24 is arranged at one end of the flattening roller one 12. The gear one 24 is in a meshed connection state with the gear two 25. A flattening roller two 35 is arranged in the middle of the gear two 25. When the flattening roller one 12 is driven to rotate by external power (such as being driven by a subsequent associated motor, etc.), the flattening roller two 35 will rotate synchronously through the meshing transmission of the gear one 24 and the gear two 25. A heating cavity 26 is arranged inside the flattening roller two 35, and a plurality of heat outlet holes 27 are arranged on its outer wall. External heat sources (such as through a hot air supply device, etc.) will convey heat to the heating cavity 26, and the heat will be dissipated through the heat outlet holes 27. When the fabric passes between the flattening roller one 12 and the flattening roller two 35, on the one hand, it is subjected to the extrusion of the two flattening rollers, so that the wrinkles of the fabric are flattened. On the other hand, the heat dissipated from the heat outlet holes 27 of the flattening roller two 35 will heat the fabric. Utilizing the characteristic that fabric fibers are more easily shaped when heated, the elimination effect on the fabric wrinkles is further enhanced, making the fabric smoother.

[0039] By setting the meshing gear one 24 and gear two 25, the flattening roller one 12 and the flattening roller two 35 can rotate synchronously, forming a stable and continuous extrusion effect on the fabric. This mechanical extrusion method can effectively smooth out the obvious wrinkles on the fabric surface, re-align the fabric fibers physically, and make it more flat. Compared with traditional equipment that only relies on a single pressing roller or simple mechanical flattening, it can process various wrinkles more comprehensively and deeply, greatly improving the efficiency of removing wrinkles from worsted shirt fabrics and improving the anti-wrinkle effect. It solves the problem of poor anti-wrinkle effect of worsted shirt fabrics during the processing process.

[0040] Please refer to the appendix Figure 1 - appendix Figure 3 、appendix Figure 7 On one side, one end of the baffle 17 is provided with a heat inlet pipe 8. The top end of the heat inlet pipe 8 penetrates through the outer shell 1 and is provided with an air source heat pump 7. The bottom end of the air source heat pump 7 is arranged on the upper surface of the outer shell 1. The side wall of the outer shell 1 is provided with a feed inlet 6, and the other side wall of the outer shell 1 is provided with a discharge outlet 13. A heat transfer cavity 34 is arranged inside the baffle 17. The outer wall of the bearing two 28 is arranged in the heat transfer cavity 34 of the baffle 17. A reciprocating mechanism is arranged on the upper surface of the baffle 17.

[0041] Specifically, the air source heat pump 7 is arranged on the upper surface of the outer shell 1. It is connected to one side baffle 17 through the heat inlet pipe 8. The top end of the heat inlet pipe 8 penetrates through the outer shell 1 and extends to the air source heat pump 7, and the bottom end leads to the inside of the baffle 17. After the air source heat pump 7 is started, it will absorb heat from the external environment, convert it into heat energy available for heating, and then transport this heat energy through the heat inlet pipe 8 to the heat transfer cavity 34 arranged inside the baffle 17. And the outer wall of the bearing two 28 at one end of the flattening roller two 35 is located in the heat transfer cavity 34 of the baffle 17. In this way, the heat in the heat transfer cavity 34 is transferred to the inside of the flattening roller two 35 through the bearing two 28. Since a heating cavity 26 is arranged inside the flattening roller two 35, the heat will accumulate in the heating cavity 26 and finally be evenly dissipated through a number of heat outlet holes 27 arranged on its outer wall, acting on the worsted shirt fabric passing through the surface of the flattening roller two 35.

[0042] The side wall of the outer shell 1 is provided with a feed inlet 6. The worsted shirt fabric can be fed into the equipment through the feed inlet 6, and then gradually move in the direction of the discharge outlet 13 inside the equipment and finally be sent out of the equipment through the discharge outlet 13 arranged on the other side wall. During the process of the fabric moving from the feed inlet 6 to the discharge outlet 13, it will pass through the above-mentioned flattening roller two 35 with heating function and the flattening roller one 12 and other components that cooperate with it, so as to complete the corresponding anti-wrinkle and cleaning and other processing procedures.

[0043] The anti-wrinkle finishing equipment for worsted shirt fabrics provides a stable and controllable heat source through the air source heat pump 7. The heat is transferred to the second flattening roller 35 through the heat transfer cavity 34 to achieve uniform heating, effectively improving the plasticity of the fabric to eliminate wrinkles and improve flatness. On the other hand, by reasonably setting the feeding port 6 and the discharging port 13, the orderly entry and exit of the fabric are ensured, making the treatment process coherent and improving production efficiency. It solves the problems of unstable heating and poor conveying of traditional anti-wrinkle equipment.

[0044] Please refer to the attached Figure 3 、attachment Figure 5 、attachment Figure 7 As shown in the figure, several rollers 33 are rotatably connected to the side wall of the baffle 17. A conveyor belt 14 is arranged on the outer wall of the rollers 33. On the outer wall of the other baffle 17, a bearing plate 20 is fixedly arranged. On the upper surface of the bearing plate 20, a first motor 21 is arranged. The output end of the first motor 21 is fixedly arranged at one end of one of the rollers 33. A first pulley 30 is fixedly arranged at the output end of the first motor 21. A belt 22 is connected inside the first pulley 30. One end of the belt 22 is connected to a second pulley 31. The middle of the second pulley 31 is fixedly connected to one end of the second flattening roller 35.

[0045] Specifically, several rollers 33 are rotatably connected to the side wall of the baffle 17 of the equipment. A conveyor belt 14 is jointly arranged on the outer walls of these rollers 33, forming a structure that can carry and convey worsted shirt fabrics. On the upper surface of the bearing plate 20 located on the outer wall of the other baffle 17, a first motor 21 is arranged. The first motor 21 serves as a power source, and its output end is fixedly connected to one end of one of the rollers 33. When the first motor 21 is started, the output shaft of the first motor 21 starts to rotate, thereby driving the roller 33 connected thereto to rotate. Since the rollers 33 are interconnected through the conveyor belt 14, when this driving roller 33 rotates, by means of the friction force between the conveyor belt 14 and the other rollers 33, the remaining rollers 33 will be driven to rotate synchronously, so that the entire conveyor belt 14 starts to operate, realizing the conveying function of the fabric.

[0046] A first pulley 30 is also fixedly arranged at the output end of the first motor 21. The first pulley 30 is connected to the second pulley 31 through the belt 22 connected inside, and the middle of the second pulley 31 is fixedly connected to one end of the second flattening roller 35. When the first motor 21 drives the first pulley 30 to rotate, through the transmission of the belt 22, the second pulley 31 will be driven to rotate, and then the second flattening roller 35 will rotate synchronously. At the same time, the second flattening roller 35 is meshed and driven with the first gear 24 at one end of the first flattening roller 12 through the second gear 25, driving the first flattening roller 12 to also rotate. In this way, the two flattening rollers can cooperate with the conveying of the conveyor belt 14 to perform corresponding treatment operations on the fabric located between them.

[0047] The driving roller 33 is driven by the first motor 21, and the second flattening roller 35 is driven to rotate by means of the belt 22. By using the same power source, the conveyor belt 14 can stably and continuously convey the fabric, and the first flattening roller 12 and the second flattening roller 35 can operate synchronously and coordinately. This not only ensures the smooth flow of the fabric in the equipment, improves the operation efficiency and processing continuity, but also enables the fabric to be effectively processed during transportation, enhancing the flatness to meet the subsequent requirements. It solves the problems of complex driving structure and uneven conveying speed of the equipment.

[0048] Please refer to the attached Figure 1 - attached Figure 3 , at the bottom end of the baffle 17, there are symmetrically arranged first fixing blocks 18. The bottom ends of the first fixing blocks 18 are arranged inside the housing 1. At the bottom end of the housing 1, there are several legs 9, and at the bottom ends of the legs 9, there are universal wheels 10.

[0049] Specifically, as an important part inside the equipment, the baffle 17 has symmetrically arranged first fixing blocks 18 at its bottom end. The bottom ends of these first fixing blocks 18 are connected to the inside of the housing 1. Through this connection method, the baffle 17 is firmly fixed within the space defined by the housing 1, enabling the baffle 17 to maintain a stable position during the operation of the equipment, providing a reliable support foundation for the components installed inside and around it, and ensuring that these components can operate normally without being affected by the shaking of the baffle 17 or other situations.

[0050] As the external protection and bearing structure of the entire equipment, the housing 1 has several legs 9 arranged at its bottom end. These legs 9 are evenly distributed at different positions at the bottom of the housing 1, bearing the weight of the entire equipment and ensuring that the equipment can be stably placed on the operating plane such as the ground. And at the bottom ends of the legs 9, there are universal wheels 10. The universal wheels 10 have the characteristic of being able to rotate flexibly in multiple directions. When the equipment needs to be moved, only an external force needs to be applied to push the equipment, and the universal wheels 10 can rotate according to the direction of the external force, driving the entire equipment to move accordingly, facilitating the adjustment of the position of the equipment according to the actual usage requirements.

[0051] By using the first fixing blocks 18 to firmly connect the baffle 17 and the housing 1, the stable operation of the internal components of the equipment is ensured, improving the overall operation stability and reliability. At the same time, with the cooperation of the legs 9 and the universal wheels 10, the equipment can not only be stably placed for work but also be flexibly moved as needed, enhancing the applicability in different scenarios. It solves the problems of easy shaking due to lack of effective fixation of the equipment and difficulty in moving the equipment.

[0052] Please refer to the attached Figure 2 - attached Figure 3 , attached Figure 6, the reciprocating mechanism includes the second motor 32. The outer wall of the second motor 32 is disposed on the upper surface of the baffle 17. Sliders 16 are symmetrically arranged on the upper surface of the baffle 17. The output end of the second motor 32 is fixedly provided with a threaded rod 15. The two ends of the outer wall of the threaded rod 15 are rotatably connected to the second fixing blocks 19. The outer walls of the second fixing blocks 19 are threadedly connected to the sliders 16. The bottom ends of the sliders 16 are slidably connected to the upper surface of the baffle 17. The middle parts of the sliders 16 are rotatably connected to the flattening rollers 36.

[0053] Specifically, the second motor 32 in the reciprocating mechanism is disposed on the upper surface of the baffle 17 and serves as the power source for the entire reciprocating motion. When the second motor 32 is started, its output end drives the threaded rod 15 to rotate. The two ends of the outer wall of the threaded rod 15 are connected to the second fixing blocks 19 in a rotatable connection manner. The second fixing blocks 19 are fixed on the upper surface of the baffle 17 and are relatively fixed in position. The outer walls of the sliders 16 are in a threaded connection with the second fixing blocks 19. At the same time, the bottom ends of the sliders 16 are slidably connected to the upper surface of the baffle 17. This enables when the threaded rod 15 rotates driven by the second motor 32, based on the principle of screw drive, the sliders 16 will move along the axial direction of the threaded rod 15. Since the second fixing blocks 19 limit the rotational freedom of the sliders 16 and the sliding connection at the bottom of the sliders 16 ensures their smooth movement on the upper surface of the baffle 17, the sliders 16 can only perform linear motion.

[0054] The second motor 32 in the reciprocating mechanism is disposed on the upper surface of the baffle 17 and serves as the power source for the entire reciprocating motion. When the second motor 32 is started, its output end drives the threaded rod 15 to rotate. The two ends of the outer wall of the threaded rod 15 are connected to the second fixing blocks 19 in a rotatable connection manner. The second fixing blocks 19 are fixed on the upper surface of the baffle 17 and are relatively fixed in position. The outer walls of the sliders 16 are in a threaded connection with the second fixing blocks 19. At the same time, the bottom ends of the sliders 16 are slidably connected to the upper surface of the baffle 17. This enables when the threaded rod 15 rotates driven by the second motor 32, based on the principle of screw drive, the sliders 16 will move along the axial direction of the threaded rod 15. Since the second fixing blocks 19 limit the rotational freedom of the sliders 16 and the sliding connection at the bottom of the sliders 16 ensures their smooth movement on the upper surface of the baffle 17, the sliders 16 can only perform linear motion.

[0055] The middle parts of the sliders 16 are rotatably connected to the flattening rollers 36. As the sliders 16 perform reciprocating linear motion on the threaded rod 15, the flattening rollers 36 will move synchronously with the sliders 16. When the worsted shirt fabric is conveyed from the relevant components of the equipment and passes under the flattening rollers 36, the reciprocating flattening rollers 36 will contact the surface of the fabric and generate relative rolling, further applying a flattening force to the fabric that has been processed by the first flattening roller 12 and the second flattening roller 35. Through multiple rolling contacts, some fine wrinkles that may still remain on the fabric are further flattened.

[0056] Driven by the second motor 32, the threaded rod 15 drives the slider 16 to perform a reciprocating linear motion, causing the smoothing roller 36 rotatably connected to the slider 16 to roll back and forth on the fabric, realizing the secondary fine treatment of the preliminarily treated fabric, improving the flatness of the fabric, ensuring that the equipment can continuously and evenly smooth the fabric, and enhancing the refinement degree of anti-wrinkle finishing and the product quality. It solves the problem that there are slight wrinkles remaining on the fabric after conventional flattening treatment and it is difficult to reach the ideal flatness state.

[0057] Please refer to the attached Figure 8 , a usage method of an anti-wrinkle finishing equipment for worsted shirt fabric, which is used for an anti-wrinkle finishing equipment for worsted shirt fabric, and includes the following steps:

[0058] S1. Equipment preparation and initial inspection: Check the appearance of the equipment, confirm that the outer shell 1 and each component are not damaged or loose, ensure that the support legs 9 are stable, the universal wheels 10 can rotate and lock normally, check that the electrical components of the dust suction fan 2, the air source heat pump 7, the first motor 21, and the second motor 32 are connected normally without potential leakage hazards, empty the dust collection box 4, and ensure the smoothness of the dust suction system;

[0059] S2. Fabric introduction and preliminary conveyance: Slowly put the worsted shirt fabric into the equipment from the feeding port 6, make the fabric spread flat on the conveyor belt 14, start the first motor 21, and the first motor 21 drives the second flattening roller 35 to rotate through the first pulley 30, the belt 22, and the second pulley 31, and at the same time drives the roller 33 to make the conveyor belt 14 operate, and smoothly convey the fabric into the equipment;

[0060] S3. Anti-wrinkle, flattening and cleaning treatment: Turn on the air source heat pump 7, the hot air enters the heat transfer cavity 34 through the heat inlet pipe 8, then reaches the heating cavity 26 of the second flattening roller 35, and is discharged from the heat outlet hole 27 to perform heat anti-wrinkle treatment on the fabric. Start the dust suction fan 2, and suck the dust on the fabric surface through the dust suction pipe 5, the dust suction cavity 23 of the first flattening roller 12, and the dust suction groove 29. The first flattening roller 12 and the second flattening roller 35 rotate synchronously under the action of the first gear 24 and the second gear 25 to squeeze and flatten the fabric. Turn on the second motor 32, and the second motor 32 drives the threaded rod 15 to rotate, so that the slider 16 drives the smoothing roller 36 to move back and forth on the fabric surface to further smooth out the slight wrinkles;

[0061] S4. Discharging and equipment arrangement: The treated fabric is sent out from the discharging port 13, collected and sorted in time, turn off all the power of the equipment, clean the dust in the dust collection box 4, and perform a simple cleaning on the surface and inside of the equipment to prepare for the next use.

[0062] Specifically, by inspecting the appearance, components, and electrical elements of the equipment to ensure that each part is normal, the first motor 21 is used to drive the pulley and the roller 33 to realize the fabric feeding and preliminary conveying. With the help of the air source heat pump 7 for heating, the dust suction fan 2 for dust suction, and the flatting roller with gear transmission for cooperation, anti-wrinkle, flattening, and cleaning are realized. Then, relying on the second motor 32 to drive the slider 16 to drive the smoothing roller 36 to make reciprocating movements to further smooth the wrinkles. Finally, the fabric is discharged and the equipment is sorted out. By turning off the power supply, cleaning the dust collection box 4, and cleaning the equipment, the equipment state is maintained.

[0063] It realizes the safety guarantee and status confirmation before the equipment operation, enables the fabric to enter the equipment smoothly and orderly, and successively undergoes comprehensive treatments such as heating and anti-wrinkle, cleaning, multi-round flattening, and fine wrinkle smoothing, improves the fabric quality, ensures the smooth discharge and proper collection of the fabric, and can also maintain the good performance of the equipment, which is beneficial for subsequent continuous use and connection of the production process.

[0064] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An anti-wrinkle finishing device for worsted shirt fabrics, including a housing (1), characterized in that: A dust suction fan (2) is provided on the upper surface of the housing (1). An air outlet pipe (3) is provided at the output end of the dust suction fan (2). One end of the air outlet pipe (3) is provided with a dust collection box (4). One side of the dust collection box (4) is arranged on one side of the housing (1). A dust suction pipe (5) is provided at the input end of the dust suction fan (2). One end of the dust suction pipe (5) is provided with a bearing one (11). A flattening roller one (12) is arranged on the outer wall of the bearing one (11). One end of the flattening roller one (12) is provided with a gear one (24). The tooth end of the gear one (24) is meshed and connected with a gear two (25). A flattening roller two (35) is arranged in the middle of the gear two (25). Baffles (17) are arranged at both ends of the flattening roller two (35). One end of the flattening roller two (35) is provided with a bearing two (28). The outer wall of the bearing two (28) is arranged inside the baffle (17).

2. The anti-wrinkle finishing equipment for worsted shirt fabric according to claim 1, characterized in that: A number of dust suction grooves (29) are arranged on the outer wall of the flattening roller one (12). A dust suction cavity (23) is arranged inside the flattening roller one (12). A number of heat outlet holes (27) are arranged on the outer wall of the flattening roller two (35). A heating cavity (26) is arranged inside the flattening roller two (35).

3. The anti-wrinkle finishing equipment for woolen worsted shirt fabric according to claim 1, characterized in that: One end of one side of the baffle (17) is provided with a heat inlet pipe (8). The top end of the heat inlet pipe (8) penetrates through the housing (1) and is provided with an air source heat pump (7). The bottom end of the air source heat pump (7) is arranged on the upper surface of the housing (1). A feed inlet (6) is arranged on the side wall of the housing (1). A discharge outlet (13) is arranged on the other side wall of the housing (1). A heat transfer cavity (34) is arranged inside the baffle (17). The outer wall of the bearing two (28) is arranged in the heat transfer cavity (34) of the baffle (17). A reciprocating mechanism is arranged on the upper surface of the baffle (17).

4. The anti-wrinkle finishing equipment for worsted shirt fabric according to claim 3, characterized in that: A number of rollers (33) are rotatably connected to the side wall of the baffle (17). A conveyor belt (14) is arranged on the outer wall of the rollers (33). A bearing plate (20) is fixedly arranged on the outer wall of the other side of the baffle (17). A motor one (21) is arranged on the upper surface of the bearing plate (20). The output end of the motor one (21) is fixedly arranged at one end of one of the rollers (33).

5. The anti-wrinkle finishing equipment for wool worsted shirt fabric according to claim 4, characterized in that: The output end of the motor one (21) is fixedly provided with a pulley one (30). A belt (22) is connected inside the pulley one (30). One end of the belt (22) is connected with a pulley two (31). The middle of the pulley two (31) is fixedly connected to one end of the flattening roller two (35).

6. The anti-wrinkle finishing equipment for wool worsted shirt fabric according to claim 4, characterized in that: Fixing blocks one (18) are symmetrically arranged at the bottom end of the baffle (17). The bottom ends of the fixing blocks one (18) are arranged inside the housing (1). A number of legs (9) are arranged at the bottom end of the housing (1). Universal wheels (10) are arranged at the bottom ends of the legs (9).

7. An anti-wrinkle finishing device for worsted shirt fabrics according to claim 3, characterized in that: The reciprocating mechanism includes a second motor (32). The outer wall of the second motor (32) is disposed on the upper surface of the baffle (17). The upper surface of the baffle (17) is symmetrically provided with sliders (16). The output end of the second motor (32) is fixedly provided with a threaded rod (15). Both ends of the outer wall of the threaded rod (15) are rotatably connected to second fixing blocks (19). The outer walls of the second fixing blocks (19) are threadedly connected to the sliders (16). The bottom ends of the sliders (16) are slidably connected to the upper surface of the baffle (17). The middle parts of the sliders (16) are rotatably connected to smoothing rollers (36).

8. A method for using an anti-wrinkle finishing device for worsted shirt fabrics, characterized in that, For a wrinkle-resistant finishing device for a worsted wool shirt fabric according to any one of claims 1-7, the following steps are included: S1. Equipment preparation and initial inspection: Check the appearance of the equipment, confirm that the outer shell (1) and each component are not damaged or loose, ensure that the legs (9) are stable, the universal wheels (10) can rotate and lock normally, check that the electrical components of the dust suction fan (2), the air source heat pump (7), the first motor (21), and the second motor (32) are connected normally without potential leakage hazards, empty the dust collection box (4), and ensure the smoothness of the dust suction system; S2. Fabric introduction and preliminary conveyance: Slowly put the worsted wool shirt fabric into the equipment from the feed port (6), make the fabric spread flat on the conveyor belt (14), start the first motor (21), and the first motor (21) drives the second flattening roller (35) to rotate through the first pulley (30), the belt (22), and the second pulley (31), and at the same time drives the roller (33) to make the conveyor belt (14) operate, and smoothly conveys the fabric into the interior of the equipment; S3. Wrinkle resistance, flattening, and cleaning treatment: Turn on the air source heat pump (7), hot air enters the heat transfer cavity (34) through the heat inlet pipe (8), and then reaches the heating cavity (26) of the second flattening roller (35), and is discharged from the heat outlet holes (27) to perform heat-resistant wrinkling on the fabric. Start the dust suction fan (2), and suck the dust on the surface of the fabric through the dust suction pipe (5), the dust suction cavity (23) of the first flattening roller (12), and the dust suction groove (29). The first flattening roller (12) and the second flattening roller (35) rotate synchronously under the action of the first gear (24) and the second gear (25) to squeeze and flatten the fabric. Turn on the second motor (32), and the second motor (32) drives the threaded rod (15) to rotate, so that the slider (16) drives the smoothing roller (36) to reciprocate on the surface of the fabric to further smooth out fine wrinkles; S4. Discharging and equipment arrangement: The treated fabric is sent out from the discharge port (13), collected and sorted in time, turn off all the power of the equipment, clean the dust in the dust collection box (4), and perform simple cleaning on the surface and inside of the equipment to prepare for the next use.

Citation Information

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