Chemical fiber fabric production elasticizer with dust removal function and use method of chemical fiber fabric production elasticizer

By introducing components such as elastic brushes, vacuum cleaners and rolling wheels into the texturing machine, the problem of electrostatic adsorption of impurities in chemical fiber fabric threads during heating is solved, efficient dust removal and texturing effects are achieved, and the quality of the threads and fabric performance are improved.

CN120608353APending Publication Date: 2025-09-09JIANGSU XINGZHONGYU NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202510822660.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-19
Publication Date
2025-09-09

AI Technical Summary

Technical Problem

During the texturizing process of chemical fiber fabrics, the threads are prone to static electricity, which causes the surface to absorb cotton wool and dust, affecting the quality of the threads.

Method used

A texturizing machine with dust removal function is designed, which includes an elastic brush, a vacuum cleaner, a rolling wheel and a heating mechanism. The elastic brush removes dust, the vacuum cleaner absorbs impurities, and the heating and rolling wheels are used for heating and stretching.

Benefits of technology

It effectively removes broken cotton wool and dust on the surface of the silk thread to ensure the quality of the silk thread. At the same time, it achieves the elasticity and fluffiness of the silk thread through heating and stretching, thereby improving the softness and breathability of the fabric.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a chemical fiber fabric production elasticizer with a dust removal function and a use method of the chemical fiber fabric production elasticizer, and relates to the technical field of fabric production. The chemical fiber fabric production elasticizer with the dust removal function comprises a machine body, a protective cover, a winding mechanism, a heating mechanism and an elasticizing assembly, the elasticizing assembly comprises an air cylinder and a conical barrel, the air cylinder is installed on the side of the inner side face of the protective cover, and the conical barrel is fixedly installed in the middle of the top of an inner cavity of the protective cover; the telescopic end of the air cylinder is fixedly connected with a right-angle plate, the conical surface of the inner cavity of the conical barrel is fixedly connected with an elastic brush, the top of the right-angle plate is fixedly provided with a dust collector, the side of the surface of the right-angle plate is provided with a rolling wheel in a rolling mode, and the bottom of the right-angle plate is fixedly provided with a bending connecting rod; and the side of the bottom of the surface of the bending connecting rod is fixedly connected with a ball head convex block, the dust removal purpose is achieved, dust can be removed through cleaning, stretching and elasticity enhancing can be achieved, and silk threads are high in quality, safe and reliable.
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Description

Technical Field

[0001] The invention relates to the technical field of fabric production, in particular to a chemical fiber fabric production texturizing machine with a dust removal function and a use method thereof. Background Art

[0002] Chemical fiber fabrics are a new type of clothing material developed in recent times. They refer to pure, blended, or interwoven fabrics made from chemical fibers. Texturing fabric yarns is a process that uses physical or mechanical means to impart elasticity and bulk to the yarns. This process is commonly used in the processing of chemical fibers such as polyester, nylon, and polypropylene. Texturing equipment is required for this process. A texturing machine is a type of textile machinery that false-twists untwisted yarns such as polyester and polypropylene into stretch yarns with medium elasticity and low elasticity. Texturing machines are also used in the production of chemical fiber fabrics. Typically, raw yarns undergo heating and twisting in the texturing machine before being produced as finished polyester fibers. The core of texturing is to utilize the thermoplastic and shape memory properties of polymer materials. Chemical fiber filaments soften upon heating. Mechanical stretching, deformation, or winding imparts a helical or curly structure to the yarns. After cooling and setting, the yarns acquire elasticity and bulk. This elasticity makes the fabric softer, more breathable, and less prone to wrinkles, and is widely used in knitted and woven fabrics.

[0003] At present, when traditionally stretching chemical fiber fabric yarns, the yarns need to be heated, resulting in a relatively dry workshop environment. This makes the yarns prone to static electricity, and the surface of the yarns absorbs cotton wool and dust, making it difficult to clean up the debris. As a result, impurities adhere to the surface of the processed elastic yarns, affecting the quality of the yarns. Summary of the Invention

[0004] To achieve the above objectives, the present invention is implemented through the following technical solutions: A chemical fiber fabric production texturing machine with dust removal function, comprising: A machine body, and a protective cover fixedly mounted on the top of the machine body, wherein a strip hole is opened on the side of the top of the machine body, a winding mechanism is installed inside the machine body, and a heating mechanism is installed on the side of the inner wall of the protective cover; A texturizing component, which is used to stretch the chemical fiber fabric yarn and is installed in the middle of the body; The brush is fixedly mounted on the top of the dust collector, and the brush is moved along the top of the dust collector to move along the dust collector surface.

[0005] Preferably, the elastic brushes are evenly distributed on the conical surface of the inner cavity of the conical cylinder, the suction port of the vacuum cleaner is connected to the surface of the conical cylinder through a hose, and the ball head protrusions are evenly distributed on the sides of the bottom of the bent connecting rod surface.

[0006] By extending the telescopic end of the cylinder, a pushing force can be applied to the right-angle plate, which drives the rolling wheel to move closer to the chemical fiber fabric thread. The chemical fiber fabric thread is pushed by the rolling wheel, and the rolling wheel presses the chemical fiber fabric thread, and the chemical fiber fabric thread presents a curved shape; The contraction of the telescopic end of the cylinder can drive the rolling wheel to move in the opposite direction. In this way, the linear reciprocating movement of the rolling wheel can stretch the chemical fiber fabric thread and make the chemical fiber fabric thread elastic.

[0007] The cam is fixedly mounted on the bottom of the U-shaped rack and the cam is fixedly connected to the bottom of the U-shaped rack in the middle of the rack. The U-shaped unloading rack is rotated clockwise to adjust the angle, so that the winding bobbin can be placed between the arc-shaped tooth and the U-shaped unloading rack, and the winding bobbin is positioned by the locator so that the winding bobbin will not deviate or fall, and the telescopic end of the electric telescopic rod is retracted again to make the U-shaped unloading rack be subjected to a pulling force, so that the U-shaped unloading rack drives the winding bobbin to rotate counterclockwise, and the end of the winding bobbin away from the locator is in contact with the conical top, so that the conical top is squeezed and slides, and the elastic sheet on the surface of the conical top is squeezed, so that the winding bobbin is elastically pressed by the conical top, and the winding bobbin can be fixed.

[0008] Preferably, the telescopic end of the electric telescopic rod is hinged to the bottom of the U-shaped material discharge rack surface, the electric telescopic rod is installed at an angle, the positioner and the arc-shaped clamping teeth are installed at the same height, and the conical top can be driven to rotate by the rotation of the output end of the driver, and the tip of the structural conical top is pressed against the end of the winding drum, so that the axis of the winding drum coincides with the center line of the conical top, so that the winding drum is driven to rotate by the conical top, and the chemical fiber fabric thread can be wound, and a downward pulling force is applied to the chemical fiber fabric thread.

[0009] Preferably, the heating mechanism includes a four-claw bracket, which is fixedly mounted on the inner wall of the protective cover and away from the side of the cylinder by screws, and a cylindrical support block is fixedly mounted on the top of the four-claw bracket, a rolling ring is rotatably mounted at the annular groove on the surface of the cylindrical support block, a nozzle is fixedly mounted on the side of the outer circumference of the cylindrical support block, a heater is fixedly mounted on the side of the surface of the cylindrical support block, and a cooling component is installed at the bottom of the four-claw bracket, and the chemical fiber fabric thread moves downward to make the rolling ring roll, and rolling friction is used to reduce frictional resistance, so that the chemical fiber fabric thread can move smoothly and is not prone to jamming. The heater is used to heat the internal air, and the hot air is ejected from the nozzle toward the position of the chemical fiber fabric thread, which can heat the chemical fiber fabric thread, weaken the intermolecular force of the chemical fiber fabric thread, and cause the chemical fiber fabric thread to stretch and curl. The nozzles are evenly distributed on both sides of the chemical fiber fabric thread, so that the chemical fiber fabric thread can be evenly heated.

[0010] Preferably, the center of the rolling ring coincides with the central axis of the middle of the cylindrical support block, the air inlet end of the nozzle is connected to the air outlet of the heater, and the nozzles are evenly installed on the sides of the outer surface of the cylindrical support block.

[0011] Preferably, the cooling component includes a cylindrical shell, which is fixedly mounted on the bottom end of the four-claw bracket by screws, a rolling ring is rotatably mounted in the middle of the surface of the cylindrical shell, a circular hole is provided on the side of the surface of the cylindrical shell, a supporting shaft is rotatably mounted in the middle of the cylindrical shell, a blade is fixedly connected to the middle of the outer circular surface of the supporting shaft, a semicircular slot is provided on the side of the outer circular surface of the supporting shaft, as the processed chemical fiber fabric thread moves downward, and under the rolling support of the rolling ring, the chemical fiber fabric thread moves downward smoothly, and utilizes a right angle The plate is driven by the telescopic end of the cylinder to move back and forth, so that the bent connecting rod and the ball head protrusion block are driven to move together, and the ball head protrusion block is engaged and installed with the semicircular groove, so that the supporting shaft is driven by the ball head protrusion block, which can make the supporting shaft drive the blades to rotate. The blades fan the air inside the cylindrical shell, so that the air is blown out from the circular hole to the surface of the chemical fiber fabric thread that has been elasticized, which can cool the chemical fiber fabric thread, relax the internal structure of the chemical fiber fabric thread, further promote the deformation and curling of the chemical fiber fabric thread, and make the thread elasticization effect good.

[0012] Preferably, the center of the rolling circle coincides with the central axis in the middle of the cylindrical shell, the cylindrical shell is installed directly below the cylindrical support block, and the circular holes are evenly distributed on the sides of the cylindrical shell surface. By extending the telescopic end of the electric telescopic rod, the U-shaped discharge rack is lifted up to separate the winding drum from the conical top, so that the winding drum material can be removed after winding, making the installation and unloading of the winding drum convenient.

[0013] Preferably, the blades are installed inside the cylindrical shell, the blades are evenly distributed in the middle of the outer circumference of the support shaft, and the semicircular grooves are evenly distributed on the sides of the outer circumference of the support shaft.

[0014] A method for using a chemical fiber fabric production texturing machine with a dust removal function, comprising the following steps: Step 1: Place the bobbin between the arc-shaped teeth and the U-shaped unwinding rack, and use the positioner to position the bobbin. Then, use the electric telescopic rod to retract the telescopic end, pull the U-shaped unwinding rack downward, and use one end of the bobbin to contact the conical top, so that the bobbin is elastically pressed by the conical top. Step 2: Pass one end of the chemical fiber fabric thread to be processed through the center of the wire bucket on the top of the protective cover, extend it to the inside of the conical cylinder, and pass it through the center of the strip hole, and fix one end of the chemical fiber fabric thread on the winding drum, and use the output end of the driver to drive the conical top to rotate, drive the winding drum to rotate, wind the chemical fiber fabric thread, and apply downward pulling force to the chemical fiber fabric thread; Step 3: As the chemical fiber fabric thread moves downward, the elastic brush brushes away the broken cotton wool and dust on the surface of the chemical fiber fabric thread, so that the broken cotton wool and dust fall off the surface of the chemical fiber fabric thread. Then, the vacuum cleaner is turned on and the suction power of the vacuum cleaner is used to absorb and remove the fallen broken cotton wool and dust through the connection of the hose. Step 4: The rolling ring rolls the chemical fiber yarn to move smoothly, and the heater heats the internal air and sprays hot air from the nozzle toward the position of the chemical fiber yarn, thereby heating the chemical fiber yarn and weakening the intermolecular force of the chemical fiber yarn, causing the chemical fiber yarn to stretch and curl; Step 5: Use the extension of the telescopic end of the cylinder to push the right-angle plate. The chemical fiber fabric thread is pushed by the rolling wheel. The rolling wheel presses the chemical fiber fabric thread, and the chemical fiber fabric thread presents a curved shape. The rolling wheel is driven by the telescopic end of the cylinder to move in the opposite direction through the contraction of the telescopic end of the cylinder. In this way, the chemical fiber fabric thread is stretched by the reciprocating movement of the rolling wheel in a straight line. Step 6: The bent connecting rod and the ball head protrusion are driven to move back and forth together, and the ball head protrusion applies a driving force to the supporting shaft through the ball head protrusion, so that the blade rotates. The blade fans the air inside the cylindrical shell, so that the air is blown out from the circular hole to the surface of the stretched chemical fiber fabric thread, thereby cooling the chemical fiber fabric thread; Step 7: After the chemical fiber fabric yarn is stretched and the yarn is wound on the bobbin, stop the drive and turn on the electric telescopic rod again. Use the extension of the telescopic end of the electric telescopic rod to lift the U-shaped unwinding rack to separate the bobbin from the conical top and remove the finished bobbin material.

[0015] The present invention provides a chemical fiber fabric production texturizing machine with a dust removal function and a method for using the same. It has the following beneficial effects: 1. The chemical fiber fabric production and texturizing machine with dust removal function and its use method utilize an elastic brush with one end away from the inner wall of the conical cylinder to fit the surface of the chemical fiber fabric thread. As the chemical fiber fabric thread moves downward, the elastic brush brushes away and cleans the broken cotton wool and dust on the surface of the chemical fiber fabric thread, so that the broken cotton wool and dust fall off the surface of the chemical fiber fabric thread. The vacuum cleaner is turned on to work, and the suction force of the vacuum cleaner is utilized, and in conjunction with the hose, the fallen broken cotton wool and dust are adsorbed and removed, thereby achieving the effect of dust reduction.

[0016] 2. The chemical fiber fabric production and texturizing machine with dust removal function and its use method, utilizes the extension of the telescopic end of the cylinder to apply a driving force to the right-angle plate, and utilizes the right-angle plate to drive the rolling wheel to move to a position close to the chemical fiber fabric thread, so that the chemical fiber fabric thread is subjected to the driving force of the rolling wheel. The rolling wheel presses the chemical fiber fabric thread, and the chemical fiber fabric thread presents a curved shape. The contraction of the telescopic end of the cylinder can make the rolling wheel driven by the telescopic end of the cylinder to move in the opposite direction. In this way, the chemical fiber fabric thread can be stretched by the linear reciprocating movement of the rolling wheel, thereby promoting the texturization of the chemical fiber fabric thread.

[0017] 3. The chemical fiber fabric production and texturizing machine with dust removal function and its use method utilize the extension of the telescopic end of the electric telescopic rod to push the U-shaped discharge rack, so that the U-shaped discharge rack rotates clockwise to adjust the angle, and the winding bobbin can be placed between the arc-shaped teeth and the U-shaped discharge rack, and the winding bobbin is positioned by the positioner to prevent the winding bobbin from shifting and falling.

[0018] 4. The chemical fiber fabric production and texturizing machine with dust removal function and its use method utilize the telescopic end of the electric telescopic rod to retract, so that the U-shaped unloading rack is subjected to a pulling force, so that the U-shaped unloading rack drives the winding drum to rotate counterclockwise, and utilizes the end of the winding drum away from the positioner to contact the conical top, so that the conical top is squeezed and slides, and the elastic sheet on the surface of the conical top is squeezed, so that the winding drum is elastically pressed by the conical top, and the winding drum can be fixed.

[0019] 5. The chemical fiber fabric production and texturizing machine with dust removal function and its use method utilize the rotation of the driver output end to drive the conical top to rotate, and the tip of the conical top is structured to press against the end of the winding drum, so that the axis of the winding drum coincides with the center line of the conical top. The winding drum is driven to rotate by the conical top, and the chemical fiber fabric thread can be wound, and a downward pulling force is applied to the chemical fiber fabric thread.

[0020] 6. The chemical fiber fabric production and texturizing machine with dust removal function and its use method, as the chemical fiber fabric thread moves downward, the rolling ring rolls, and rolling friction is used to reduce friction resistance, so that the chemical fiber fabric thread can move smoothly and is not prone to jamming. The heater is turned on to work, and the internal air is heated by the heater, and hot air is sprayed from the nozzle to the position of the chemical fiber fabric thread, which can heat the chemical fiber fabric thread, weaken the intermolecular force of the chemical fiber fabric thread, and promote the stretching and curling of the chemical fiber fabric thread. The nozzles are evenly distributed on both sides of the chemical fiber fabric thread, so that the chemical fiber fabric thread can be evenly heated.

[0021] 7. The chemical fiber fabric production and texturizing machine with dust removal function and its use method utilizes the driving force of the ball head protrusion on the supporting shaft to drive the blades to rotate. The blades fan the air inside the cylindrical shell, so that the air is blown out from the round hole to the surface of the chemical fiber fabric thread after texturizing treatment, which can cool the chemical fiber fabric thread and relax the internal structure of the chemical fiber fabric thread, further promote the deformation and curling of the chemical fiber fabric thread, and make the thread texturizing effect better.

[0022] 8. The chemical fiber fabric production texturizing machine with dust removal function and its use method utilize the extension of the telescopic end of the electric telescopic rod to lift the U-shaped unwinding rack, so that the winding drum and the conical top are separated, and the material of the winding drum can be removed, making the installation and unloading of the winding drum convenient. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 This is a diagram showing the method of using the chemical fiber fabric production texturizing machine with dust removal function of the present invention; Figure 2 This is a schematic diagram of the overall structure of a chemical fiber fabric production and texturizing machine with a dust removal function according to the present invention; Figure 3 This is a schematic diagram of the internal structure of a cross-section of a chemical fiber fabric texturing machine with a dust removal function according to the present invention; Figure 4 This is a schematic diagram of the connection structure between the elasticized component and the protective cover of the present invention; Figure 5 This is a schematic diagram of the overall structure of the elasticized component of the present invention; Figure 6 Schematic diagram of the connection structure between the winding mechanism and the machine body of the present invention; Figure 7 Schematic diagram of the overall structure of the winding mechanism of the present invention; Figure 8 This is a schematic diagram of the connection structure between the heating mechanism and the protective cover of the present invention; Figure 9 It is a schematic diagram of the overall structure of the heating mechanism of the present invention.

[0024] In the figure: 1. body; 2. protective cover; 3. strip hole; 4. winding mechanism; 5. heating mechanism; 6. elasticizing component; 41. driver; 42. supporting base; 43. conical top; 44. U-shaped unloading rack; 45. arc-shaped tooth; 46. electric telescopic rod; 47. positioner; 51. four-claw bracket; 52. cylindrical support block; 53. rolling ring; 54. nozzle; 55. heater; 56. cooling component; 561. cylindrical shell; 562. rolling ring; 563. circular hole; 564. supporting shaft; 565. blade; 566. semicircular slot; 61. cylinder; 62. conical tube; 63. right-angle plate; 64. elastic brush; 65. vacuum cleaner; 66. rolling wheel; 67. bending connecting rod; 68. ball head protrusion block. DETAILED DESCRIPTION

[0025] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0026] The first embodiment, as Figures 1 to 5 As shown, the present invention provides a technical solution: A chemical fiber fabric production texturing machine with dust removal function, comprising: A machine body 1, and a protective cover 2 fixedly mounted on the top of the machine body 1, a strip-shaped hole 3 is opened on the side of the top of the machine body 1, a winding mechanism 4 is installed inside the machine body 1, and a heating mechanism 5 is installed on the side of the inner wall of the protective cover 2; The texturizing component 6 is used to stretch the chemical fiber fabric yarn, and the texturizing component 6 is installed in the middle of the body 1; Among them, the elastic component 6 includes a cylinder 61 and a conical cylinder 62. The cylinder 61 is installed on the side of the inner side of the protective cover 2, and the conical cylinder 62 is fixedly installed in the middle of the top of the inner cavity of the protective cover 2. The telescopic end of the cylinder 61 is fixedly connected with a right-angle plate 63, and the conical surface of the inner cavity of the conical cylinder 62 is fixedly connected with an elastic brush 64. A vacuum cleaner 65 is fixedly installed on the top of the right-angle plate 63, and a rolling wheel 66 is rollingly installed on the side of the surface of the right-angle plate 63. A bent connecting rod 67 is fixedly installed at the bottom of the right-angle plate 63. A ball head protrusion block 68 is fixedly connected. As the chemical fiber fabric thread passes through the center of the conical tube 62, the end of the elastic brush 64 away from the inner wall of the conical tube 62 is in contact with the surface of the chemical fiber fabric thread. As the chemical fiber fabric thread moves downward, the elastic brush 64 brushes off the broken cotton wool and dust on the surface of the chemical fiber fabric thread, so that the broken cotton wool and dust fall off from the surface of the chemical fiber fabric thread, and the vacuum cleaner 65 is turned on to work. The suction force of the vacuum cleaner 65 and the connection of the hose are used to absorb and remove the fallen broken cotton wool and dust.

[0027] The elastic brushes 64 are evenly distributed on the conical surface of the inner cavity of the conical cylinder 62. The suction port of the vacuum cleaner 65 is connected to the surface of the conical cylinder 62 through a hose. The ball head protrusions 68 are evenly distributed on the sides of the bottom of the surface of the bent connecting rod 67. The staff turns on the cylinder 61 to work. By extending the telescopic end of the cylinder 61, a pushing force can be applied to the right-angle plate 63. The right-angle plate 63 is used to drive the rolling wheel 66 to move to a position close to the chemical fiber fabric thread, so that the chemical fiber fabric thread is subjected to the pushing force of the rolling wheel 66. The rolling wheel 66 presses the chemical fiber fabric thread, and the chemical fiber fabric thread presents a curved shape. The contraction of the telescopic end of the cylinder 61 can make the rolling wheel 66 driven by the telescopic end of the cylinder 61 to move in the opposite direction. In this way, the chemical fiber fabric thread is stretched by the linear reciprocating movement of the rolling wheel 66.

[0028] The second embodiment, based on the first embodiment, see Figures 1 to 7 As shown: The winding mechanism 4 includes a driver 41 and a support base 42. The driver 41 is fixedly mounted on the side of the bottom of the inner cavity of the machine body 1. The support base 42 is fixedly connected to the middle of the bottom of the inner cavity. The output end of the driver 41 is slidably mounted with a conical top 43. The top of the support base 42 is hinged with a U-shaped discharge rack 44. The top of the surface of the U-shaped discharge rack 44 is fixedly connected with an arc-shaped tooth 45. The middle of the surface of the support base 42 is hinged with an electric telescopic rod 46. The side of the surface of the U-shaped discharge rack 44 is fixedly mounted with a positioner 47. The staff turns on the electric telescopic rod 46 to work. By extending the telescopic end of the electric telescopic rod 46, the U-shaped discharge rack 44 can be pushed. The U-shaped discharge rack 44 is rotated clockwise to adjust the angle, and the winding drum can be placed between the arc-shaped tooth 45 and the U-shaped discharge rack 44, and the winding drum is positioned by the positioner 47 so that the winding drum will not deviate or fall, and the telescopic end of the electric telescopic rod 46 is retracted again, which can make the U-shaped discharge rack 44 subjected to a pulling force, so that the U-shaped discharge rack 44 drives the winding drum to rotate counterclockwise, and the end of the winding drum away from the positioner 47 is contacted with the conical top 43, so that the conical top 43 is squeezed and slides, and the elastic sheet on the surface of the conical top 43 is squeezed, so that the winding drum is elastically pressed by the conical top 43 to fix the winding drum.

[0029] The telescopic end of the electric telescopic rod 46 is hinged to the bottom of the surface of the U-shaped material discharging rack 44. The electric telescopic rod 46 is installed obliquely, and the positioner 47 and the arc-shaped tooth 45 are installed at the same height.

[0030] The staff passes one end of the chemical fiber fabric thread to be processed through the center of the wire bucket at the top of the protective cover 2, extends it to the inside of the conical cylinder 62, and passes it through the center of the strip hole 3, and fixes one end of the chemical fiber fabric thread on the winding drum, and turns on the driver 41 to work. The conical top 43 can be driven to rotate by the rotation of the output end of the driver 41, and the tip of the structural conical top 43 is pressed against the end of the winding drum, so that the axis of the winding drum coincides with the center line of the conical top 43, thereby driving the winding drum to rotate through the conical top 43 to wind the chemical fiber fabric thread.

[0031] The third embodiment, based on the first and second embodiments, see Figures 1 to 9 As shown: A method for using a chemical fiber fabric production texturing machine with a dust removal function, comprising the following steps: Step 1: Place the bobbin between the arc-shaped latch 45 and the U-shaped unwinding rack 44, and position the bobbin using the positioner 47. Then, retract the telescopic end of the electric telescopic rod 46 to pull the U-shaped unwinding rack 44 downward, and use one end of the bobbin to contact the conical top 43, so that the bobbin is elastically pressed by the conical top 43. Step 2: Pass one end of the chemical fiber fabric thread to be processed through the center of the wire bucket at the top of the protective cover 2, extend it to the inside of the conical cylinder 62, and pass it through the center of the strip hole 3, and fix one end of the chemical fiber fabric thread on the winding drum, and use the output end of the driver 41 to drive the conical top 43 to rotate, drive the winding drum to rotate, wind the chemical fiber fabric thread, and apply downward pulling force to the chemical fiber fabric thread; Step 3: As the chemical fiber fabric thread moves downward, the elastic brush 64 brushes and cleans the broken cotton wool and dust on the surface of the chemical fiber fabric thread, so that the broken cotton wool and dust fall off the surface of the chemical fiber fabric thread, and the vacuum cleaner 65 is turned on to use the suction power of the vacuum cleaner 65 and the connection of the hose to absorb and remove the fallen broken cotton wool and dust; Step 4: The rolling ring 53 is used to roll the chemical fiber yarn so that the yarn moves smoothly. The heater 55 is used to heat the internal air and the hot air is ejected from the nozzle 54 toward the position of the chemical fiber yarn. This heats the chemical fiber yarn and weakens the intermolecular force of the chemical fiber yarn, causing the chemical fiber yarn to stretch and curl. Step 5: The extension of the telescopic end of the cylinder 61 is used to push the right-angle plate 63. The chemical fiber fabric thread is pushed by the rolling wheel 66. The rolling wheel 66 presses the chemical fiber fabric thread, and the chemical fiber fabric thread presents a curved shape. The rolling wheel 66 is driven by the telescopic end of the cylinder 61 to move in the opposite direction by the contraction of the telescopic end of the cylinder 61. In this way, the chemical fiber fabric thread is stretched by the reciprocating movement of the rolling wheel 66 in a straight line. Step 6: The bent connecting rod 67 and the ball-end protrusion 68 are driven to move back and forth together, and the ball-end protrusion 68 applies a driving force to the support shaft 564, causing the blade 565 to rotate. The blade 565 fans the air inside the cylindrical housing 561, causing the air to be blown out from the circular hole 563 toward the surface of the textured synthetic fiber yarn, thereby cooling the synthetic fiber yarn. Step 7: After the chemical fiber fabric yarn is elasticized and the yarn is wound on the bobbin, stop the driver 41 and start the electric telescopic rod 46 again. Use the extension of the telescopic end of the electric telescopic rod 46 to lift the U-shaped unloading rack 44, so that the bobbin is separated from the conical top 43, and the material on the bobbin that has been wound is removed.

[0032] The heating mechanism 5 includes a four-claw bracket 51, which is fixedly mounted on the inner wall of the protective cover 2 and away from the side of the cylinder 61 by screws, and a cylindrical support block 52 is fixedly mounted on the top of the four-claw bracket 51, and a rolling ring 53 is rollingly mounted at the annular groove on the surface of the cylindrical support block 52, a nozzle 54 is fixedly mounted on the side of the outer circumference of the cylindrical support block 52, and a heater 55 is fixedly mounted on the side of the surface of the cylindrical support block 52. A cooling component 56 is installed at the bottom of the four-claw bracket 51, and the chemical fiber fabric thread passes through the surface of the rolling ring 53, so that the chemical fiber fabric thread moves downward, causing the rolling ring 53 to roll, and using rolling friction to reduce frictional resistance, the chemical fiber fabric thread can move smoothly and is not prone to jamming. The heater 55 is turned on to work, and the internal air is heated by the heater 55, and hot air is ejected from the nozzle 54 to the position of the chemical fiber fabric thread, so that the chemical fiber fabric thread can be heated.

[0033] The center of the rolling ring 53 coincides with the central axis of the middle of the cylindrical support block 52 , the air inlet end of the nozzle 54 is connected to the air outlet of the heater 55 , and the nozzles 54 are evenly installed on the sides of the outer surface of the cylindrical support block 52 .

[0034] The cooling assembly 56 includes a cylindrical shell 561, which is fixed to the bottom end of the four-claw bracket 51 by screws, a rolling ring 562 is rotatably installed in the middle of the surface of the cylindrical shell 561, a circular hole 563 is provided on the side of the surface of the cylindrical shell 561, a supporting shaft 564 is rotatably installed in the middle of the cylindrical shell 561, a blade 565 is fixedly connected to the middle of the outer circumference of the supporting shaft 564, and a semicircular card groove 566 is provided on the side of the outer circumference of the supporting shaft 564. As the processed chemical fiber fabric thread moves downward, and under the rolling support of the rolling ring 562, the chemical fiber fabric thread is smoothly It is advantageous to move downward, and the right-angle plate 63 is driven by the telescopic end of the cylinder 61 to move back and forth, so that the bent connecting rod 67 and the ball head protrusion block 68 are driven to move together, and the ball head protrusion block 68 is engaged and installed with the semicircular groove 566, so that the support shaft 564 is driven by the ball head protrusion block 68, so that the support shaft 564 can drive the blade 565 to rotate, and the blade 565 fans the air inside the cylindrical shell 561, so that the air is blown out from the circular hole 563 to the surface of the chemical fiber fabric thread after the elastic treatment, which can cool the chemical fiber fabric thread and relax the internal structure of the chemical fiber fabric thread.

[0035] The center of the rolling circle 562 coincides with the central axis of the middle of the cylindrical shell 561 . The cylindrical shell 561 is installed directly below the cylindrical support block 52 . The circular holes 563 are evenly distributed on the sides of the surface of the cylindrical shell 561 .

[0036] When the texturizing treatment of the chemical fiber fabric is completed and the winding of the wire by the bobbin on the U-shaped unwinding rack 44 is completed, the driver 41 is stopped and the electric telescopic rod 46 is turned on again. The U-shaped unwinding rack 44 is lifted up by the extension of the telescopic end of the electric telescopic rod 46, so that the winding bobbin is separated from the conical top 43, and the material on the winding bobbin can be removed.

[0037] The blades 565 are installed inside the cylindrical shell 561 , and the blades 565 are evenly distributed in the middle of the outer circumference of the support shaft 564 , and the semicircular grooves 566 are evenly distributed on the sides of the outer circumference of the support shaft 564 .

[0038] When in use, first place the winding drum between the arc-shaped latch teeth 45 and the U-shaped discharge rack 44, and position the winding drum through the positioner 47, and use the telescopic end of the electric telescopic rod 46 to retract, pull the U-shaped discharge rack 44 downward, and use one end of the winding drum to contact the conical top 43, so that the winding drum is elastically pressed by the conical top 43, and then pass one end of the chemical fiber fabric thread to be processed through the center of the wire bucket at the top of the protective cover 2, and extend to the inside of the conical drum 62, and pass through the center of the strip hole 3, and fix one end of the chemical fiber fabric thread on the winding drum, and use the output end of the driver 41 to drive the conical top 43 to rotate, drive the winding drum to rotate, wind the chemical fiber fabric thread, and apply downward pulling force to the chemical fiber fabric thread; As the chemical fiber fabric thread moves downward, the elastic brush 64 brushes and cleans the broken cotton wool and dust on the surface of the chemical fiber fabric thread, so that the broken cotton wool and dust fall off the surface of the chemical fiber fabric thread, and the vacuum cleaner 65 is turned on to work, and the suction force of the vacuum cleaner 65 is used, and under the connection of the hose, the fallen broken cotton wool and dust are adsorbed and removed. The chemical fiber fabric thread moves smoothly through the rolling ring 53, and the internal air is heated by the heater 55, and the hot air is sprayed from the nozzle 54 to the position of the chemical fiber fabric thread, so that the chemical fiber fabric thread can be heated, the intermolecular force of the chemical fiber fabric thread is weakened, and the chemical fiber fabric thread is stretched and curled; At the same time, the extension of the telescopic end of the cylinder 61 is used to push the right-angle plate 63, and the chemical fiber fabric thread is pushed by the rolling wheel 66. The rolling wheel 66 presses the chemical fiber fabric thread, and the chemical fiber fabric thread presents a curved shape, and through the contraction of the telescopic end of the cylinder 61, the rolling wheel 66 is driven by the telescopic end of the cylinder 61 to move in the opposite direction. In this way, the rolling wheel 66 moves back and forth in a straight line to stretch the chemical fiber fabric thread, and the bent connecting rod 67 and the ball head protrusion block 68 are driven to move back and forth together, and the ball head protrusion block 68 applies a driving force to the support shaft 564, so that the blade 565 rotates, and the blade 565 fans the air inside the cylindrical shell 561, so that the air is blown out from the circular hole 563 to the surface of the chemical fiber fabric thread after the elastic treatment, thereby cooling the chemical fiber fabric thread; Moreover, when the chemical fiber fabric yarn is elasticized and the yarn is wound on the bobbin, the driver 41 is stopped and the electric telescopic rod 46 is turned on again. The U-shaped unloading rack 44 is lifted by the extension of the telescopic end of the electric telescopic rod 46, so that the winding bobbin is separated from the conical top 43, and the material on the winding bobbin that has been wound is removed.

[0039] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a..." does not exclude the presence of additional identical elements in the process, method, article, or device comprising the element.

[0040] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A chemical fiber fabric production texturizing machine with dust removal function, characterized in that: include: A machine body (1), and a protective cover (2) fixedly mounted on the top of the machine body (1), a strip hole (3) being provided on the side of the top of the machine body (1), a winding mechanism (4) being mounted inside the machine body (1), and a heating mechanism (5) being mounted on the side of the inner wall of the protective cover (2); A texturizing component (6), the texturizing component (6) is used to stretch the chemical fiber fabric yarn, and the texturizing component (6) is installed in the middle of the body (1); The elasticizing assembly (6) comprises a cylinder (61) and a conical tube (62), wherein the cylinder (61) is mounted on the side of the inner side of the protective cover (2), and the conical tube (62) is fixedly mounted in the middle of the top of the inner cavity of the protective cover (2). The telescopic end of the cylinder (61) is fixedly connected to a right-angle plate (63), and the conical surface of the inner cavity of the conical tube (62) is fixedly connected to an elastic brush (64). A dust collector (65) is fixedly mounted on the top of the right-angle plate (63), and a rolling wheel (66) is rotatably mounted on the side of the surface of the right-angle plate (63). A bending connecting rod (67) is fixedly mounted on the bottom of the right-angle plate (63), and a ball head protrusion (68) is fixedly connected to the side of the bottom of the surface of the bending connecting rod (67).

2. The chemical fiber fabric production and texturizing machine with dust removal function according to claim 1, characterized in that: The elastic brushes (64) are evenly distributed on the conical surface of the inner cavity of the conical cylinder (62); the suction port of the vacuum cleaner (65) is connected to the surface of the conical cylinder (62) through a hose; and the ball head protrusions (68) are evenly distributed on the sides of the bottom surface of the bent connecting rod (67).

3. The chemical fiber fabric production and texturizing machine with dust removal function according to claim 1, characterized in that: The winding mechanism (4) includes a driver (41) and a support base (42), wherein the driver (41) is fixedly mounted on the side of the bottom of the inner cavity of the machine body (1), and the support base (42) is fixedly connected to the middle of the bottom of the inner cavity. The output end of the driver (41) is slidably mounted with a conical tip (43), the top of the support base (42) is hinged with a U-shaped discharge rack (44), the top of the surface of the U-shaped discharge rack (44) is fixedly connected with an arc-shaped latch (45), the middle of the surface of the support base (42) is hinged with an electric telescopic rod (46), and the side of the surface of the U-shaped discharge rack (44) is fixedly mounted with a positioner (47).

4. The chemical fiber fabric production and texturizing machine with dust removal function according to claim 3, characterized in that: The telescopic end of the electric telescopic rod (46) is hinged to the bottom of the surface of the U-shaped material discharging rack (44), the electric telescopic rod (46) is installed at an angle, and the positioner (47) and the arc-shaped latch (45) are installed at the same height.

5. The chemical fiber fabric production and texturizing machine with dust removal function according to claim 1, characterized in that: The heating mechanism (5) includes a four-claw bracket (51), which is fixedly mounted on the inner wall of the protective cover (2) and away from the side of the cylinder (61) by screws, and a cylindrical support block (52) is fixedly mounted on the top of the four-claw bracket (51), a rolling ring (53) is rollingly mounted on the annular groove on the surface of the cylindrical support block (52), a nozzle (54) is fixedly mounted on the side of the outer circumference of the cylindrical support block (52), a heater (55) is fixedly mounted on the side of the surface of the cylindrical support block (52), and a cooling component (56) is mounted on the bottom of the four-claw bracket (51).

6. The chemical fiber fabric production and texturizing machine with dust removal function according to claim 5, characterized in that: The center of the rolling ring (53) coincides with the central axis of the middle of the cylindrical support block (52), the air inlet end of the nozzle (54) is connected to the air outlet of the heater (55), and the nozzle (54) is evenly installed on the side of the outer surface of the cylindrical support block (52).

7. The chemical fiber fabric production and texturizing machine with dust removal function according to claim 5, characterized in that: The cooling assembly (56) includes a cylindrical shell (561), which is fixedly mounted on the bottom end of the four-claw bracket (51) by screws, a rolling ring (562) is rollingly mounted in the middle of the surface of the cylindrical shell (561), a circular hole (563) is opened on the side of the surface of the cylindrical shell (561), a supporting shaft (564) is rotatably mounted in the middle of the cylindrical shell (561), a blade (565) is fixedly connected to the middle of the outer circular surface of the supporting shaft (564), and a semicircular groove (566) is opened on the side of the outer circular surface of the supporting shaft (564).

8. The chemical fiber fabric production and texturizing machine with dust removal function according to claim 7, characterized in that: The center of the rolling ring (562) coincides with the central axis of the middle of the cylindrical shell (561), the cylindrical shell (561) is installed directly below the cylindrical support block (52), and the circular holes (563) are evenly distributed on the sides of the surface of the cylindrical shell (561).

9. The chemical fiber fabric production and texturizing machine with dust removal function according to claim 7, characterized in that: The blades (565) are installed inside the cylindrical housing (561), and the blades (565) are evenly distributed in the middle of the outer circumference of the support shaft (564). The semicircular grooves (566) are evenly distributed on the sides of the outer circumference of the support shaft (564).

10. A method for using a chemical fiber fabric production and texturing machine with a dust removal function, based on the chemical fiber fabric production and texturing machine with a dust removal function according to any one of claims 1 to 9, characterized in that: The following steps are involved: Step 1: Place the winding drum between the arc-shaped latch (45) and the U-shaped discharge rack (44), and position the winding drum through the positioner (47), and use the electric telescopic rod (46) to retract the telescopic end to pull the U-shaped discharge rack (44) downward, and use one end of the winding drum to contact the conical top (43), so that the winding drum is elastically pressed by the conical top (43); Step 2: Pass one end of the chemical fiber fabric thread to be processed through the center of the thread bucket at the top of the protective cover (2), extend it to the inside of the conical cylinder (62), and pass it through the center of the strip hole (3), and fix one end of the chemical fiber fabric thread on the winding drum, and use the output end of the driver (41) to drive the conical top (43) to rotate, drive the winding drum to rotate, wind the chemical fiber fabric thread, and apply a downward pulling force to the chemical fiber fabric thread; Step 3: As the chemical fiber fabric thread moves downward, the elastic brush (64) brushes and cleans the broken cotton wool and dust on the surface of the chemical fiber fabric thread, so that the broken cotton wool and dust fall off the surface of the chemical fiber fabric thread, and the vacuum cleaner (65) is turned on to use the suction force of the vacuum cleaner (65) and, under the connection of the hose, absorb and remove the fallen broken cotton wool and dust; Step 4: The chemical fiber fabric thread moves smoothly by rolling the rolling ring (53), and the internal air is heated by the heater (55), and hot air is ejected from the nozzle (54) toward the position of the chemical fiber fabric thread, thereby heating the chemical fiber fabric thread, weakening the intermolecular force of the chemical fiber fabric thread, and causing the chemical fiber fabric thread to stretch and curl; Step 5: Using the extension of the telescopic end of the cylinder (61) to push the right-angle plate (63), the chemical fiber fabric thread is pushed by the rolling wheel (66), and the rolling wheel (66) presses the chemical fiber fabric thread, and the chemical fiber fabric thread presents a curved shape. The telescopic end of the cylinder (61) is contracted, and the rolling wheel (66) is driven by the telescopic end of the cylinder (61) to move in the opposite direction. In this way, the chemical fiber fabric thread is stretched by the linear reciprocating movement of the rolling wheel (66); Step 6: The bent connecting rod (67) and the ball head protrusion (68) are driven to move back and forth together, and the ball head protrusion (68) applies a driving force to the support shaft (564), so that the blade (565) rotates, and the blade (565) fans the air inside the cylindrical shell (561), so that the air is blown out from the circular hole (563) to the surface of the stretched chemical fiber fabric thread, thereby cooling the chemical fiber fabric thread; Step 7: After the chemical fiber fabric yarn is stretched and the yarn is wound on the bobbin, the driver (41) is stopped and the electric telescopic rod (46) is turned on again. The U-shaped unwinding rack (44) is lifted by the extension of the telescopic end of the electric telescopic rod (46), so that the bobbin is separated from the conical top (43), and the material on the bobbin that has been wound is removed.