A high-quality short-fiber yarn warp knitting and warping machine
By combining singeing, cooling, blowing and suction and oiling devices, the problems of easy breakage and excessive hairiness of short fiber yarn during warp knitting are solved, and the yarn surface is smooth and the strength is increased, ensuring high-quality weaving.
Patent Information
- Application Number
- CN202311651483.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-04
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2043-12-04
AI Technical Summary
Short fiber yarn is prone to breakage and has a lot of fuzz during warp knitting, which affects production efficiency and quality. Existing equipment is difficult to effectively remove fuzz and impurities from the yarn surface, resulting in insufficient yarn strength and making it difficult to achieve high-quality weaving.
The yarn is made of a combination of singeing device, cooling device, blowing and suction device and oiling device. The yarn is removed by slit-type flame, cooled by cold water roller, filtered by fan and oiled by roller, so as to achieve smooth yarn surface and increased strength.
It effectively removes fuzz and impurities from the surface of staple fiber yarn, improves yarn strength, ensures smooth weaving, and achieves the production of high-quality staple fiber yarn.
Smart Images

Figure CN117802659B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to warping machines in textile machinery, specifically to a high-quality short-fiber yarn warp knitting machine. Background Technology
[0002] Staple fiber yarns have become increasingly popular in recent years due to their softness, moisture absorption, and comfort. Currently, the application of staple fiber yarns in knitting is mainly concentrated in weft knitting. However, warp knitting has relatively poor adaptability to raw materials and generally uses synthetic filaments with less fuzz and better mechanical properties, such as polyester, nylon, and spandex. Before weaving on a warp knitting machine, the yarn needs to be warped. Warp knitting has high requirements for yarn fuzz, tensile breaking strength, and elongation at break. Furthermore, during the warping process, the fuzz between parallel yarns cannot be too excessive; otherwise, it will cause tangling of the yarn fuzz, hindering the smooth warping process and reducing production efficiency. Short-staple yarns have weaker inter-fiber cohesion, lower breaking strength, and lower elongation. During warp knitting, they are prone to breakage due to tension fluctuations caused by the lateral movement of the guide needles before and after loop formation. Furthermore, short-staple yarns have more fuzz; friction with the equipment during warping and weaving further increases fuzz, reducing breaking strength and hindering smooth weaving. Therefore, short-staple yarns made of cotton, wool, and synthetic cellulose fibers are less commonly used in warp knitting.
[0003] With the emergence of new spinning technologies, high-quality staple yarns such as compact spinning, Siro spinning, vortex spinning, and various wrapped yarns can be produced on a large scale, resulting in an increasingly diverse range of staple yarns available for warp knitting. High-quality staple yarn warp knitting machines equipped with singeing, cooling, and blow-suction devices can reduce surface hairiness, create a denser yarn structure, a smoother surface, and increased strength, providing more possibilities for developing high-quality staple yarn products on high-gauge warp knitting machines. Summary of the Invention
[0004] To address the aforementioned problems, this invention provides a high-quality short-fiber yarn warp knitting machine. This warping machine can reduce surface hairiness in short-fiber yarn, resulting in a denser yarn structure, a smoother surface, and increased strength, thereby achieving the weaving of high-quality short-fiber yarn.
[0005] This invention provides a high-quality short fiber warp knitting and sizing machine, comprising a yarn frame, a yarn collecting plate, a tension roller, a singeing device, a cooling device, a blow-suction device, an oiling device, a yarn storage device, and a warp beam arranged in sequence;
[0006] The singeing device includes a gas mixing system and a slit burner connected to the gas mixing system. The gas mixing system delivers gas to the slit burner, and the slit burner sprays flames to singe the short fiber yarn layer to remove protruding fuzz from its surface.
[0007] The cooling device includes a cold water roller, which is connected to the short fiber yarn layer to cool the singed short fiber yarn layer.
[0008] The blowing and suction device includes a fan, an ash filter device located above the fan, and an exhaust gas filter device connected to the ash filter device; the short fiber yarn layer is located between the fan and the ash filter device, and the air outlet of the fan is directly facing the short fiber yarn layer; the fan blows the ash, exhaust gas, and residual heat generated after the burning of impurities and fuzz on the surface of the short fiber yarn into the ash filter device. After being filtered by the ash filter device, the remaining gas and heat are transported to the exhaust gas filter device for filtration.
[0009] The oiling device includes a roller, at least a portion of which is immersed in an oil tank, and the roller is connected to a short fiber yarn layer for brushing oil onto it.
[0010] In some embodiments, the singeing device further includes a control panel, a first gas supply pipe, and a rotatable frame. The gas mixing system is connected to the slit burner via the first gas supply pipe. The slit burner is disposed on the rotatable frame. The gas mixing system supplies gas to the slit burner via the first gas supply pipe. The slit burner emits flames to singe the short fiber yarn layer to remove protruding fuzz from its surface. The control panel is used to adjust the amount of gas output by the gas mixing system and the rotation angle of the rotatable frame.
[0011] In some embodiments, there are two rotatable frames, each of which is provided with a slit-type flame hole, and the short fiber yarn layer passes through the middle of the two rotatable frames.
[0012] In some embodiments, the cooling device further includes a water supply pipe and a water tank, with the cooling water roller located above the water tank and connected to the water tank via the water supply pipe.
[0013] In some embodiments, the blowing and suction device further includes an ash collector, a second air supply pipe, an exhaust gas collector, and an air outlet. The ash filter is connected to the exhaust gas filter via the second air supply pipe. An exhaust gas collector is connected to one side of the exhaust gas filter, and an air outlet is provided on the exhaust gas filter. An ash collector is connected to one side of the ash filter, and the ash collector and ash filter are fixed on a frame. The fan is located below the frame. The fan blows the ash, exhaust gas, and residual heat generated after the burning of impurities and fuzz on the surface of the short fiber yarn into the ash filter. The ash filtered by the ash filter is collected in the ash collector. The remaining gas and heat are transported to the exhaust gas filter via the air supply pipe. The exhaust gas filtered by the exhaust gas filter is collected in the exhaust gas collector, and the air and residual heat are discharged through the air outlet.
[0014] In some embodiments, the oiling device further includes brushes and a filter screen. Brushes are provided on both sides of the roller, a filter screen is provided below the roller, and an oil trough is provided below the roller. The roller brushes oil onto the short fiber yarn layer to remove residual impurities on its surface and cool it down. The brushes are used to brush off impurities on the roller, and the filter screen is used to block impurities from passing through, causing them to deposit at the bottom of the oil trough.
[0015] In some embodiments, a warp divider is provided between the yarn collecting plate and the tension roller, the warp divider being used to divide short fiber yarn into bundles.
[0016] In some embodiments, an electrostatic eliminator is provided between the tension roller and the singeing device. The electrostatic eliminator is used to eliminate static electricity from the short fiber yarn. The short fiber yarn layer passes sequentially through the yarn collecting plate, the warp reed, the tension roller, and the electrostatic eliminator before entering the singeing device for singeing.
[0017] In some embodiments, an electrostatic eliminator, a warp reed, a telescopic reed, and a yarn guide roller are sequentially arranged between the yarn storage device and the warp beam. The telescopic reed is used to adjust the warp density and tension.
[0018] In some embodiments, an electrical control system and a pneumatic control system are also included.
[0019] The beneficial effects of this invention are:
[0020] 1. This invention provides a high-quality short-fiber yarn warp knitting machine. A singeing device removes protruding fuzz from the surface of the short-fiber yarn, resulting in a smoother yarn body, reduced fuzz, and increased strength. A cooling device uses a cold water roller to cool the singed yarn. A blower / suction device not only removes ash and impurities from the yarn surface but also collects exhaust gases from the burning fuzz and further cools the yarn. An oiling device further cools and removes surface impurities. This warping machine reduces surface fuzz, creates a denser yarn structure, a smoother surface, and increased strength, achieving the weaving of high-quality short-fiber yarn.
[0021] 2. The singeing device provided by this invention has slit-type burners at both the upper and lower ends of the yarn layer. The short-fiber yarn layer passes through the middle of two rotatable frames, and the slit-type burners on both rotatable frames can singe the short-fiber yarn layer, effectively removing the fuzz around the short-fiber yarn. The control panel can adjust the output of the gas mixing system and the rotation angle of the rotatable frames to achieve the best singeing effect while reducing energy consumption. An automatic stop speed is set, and when the linear speed is less than 15 meters / minute, the gas mixing system is automatically shut off to prevent the short-fiber yarn from breaking due to excessively slow linear speed. This invention can remove protruding fuzz from the surface of the short-fiber yarn through the singeing device, making the short-fiber yarn smooth and increasing its strength.
[0022] 3. The cooling device, blowing and suction device and oiling device provided by the present invention can all cool down the short fiber yarn, reducing the impact of high temperature on the main body of the short fiber yarn.
[0023] 4. The blowing and suction device provided by the present invention collects the ash from the combustion of short fiber yarn hairs into an ash collector through the cleaning action of a fan and an ash filter device, and collects the waste gas into a waste gas collector through an exhaust gas filter device. The air and the heat generated by the combustion of short fiber yarn hairs are discharged through the air outlet. This blowing and suction device can not only remove ash impurities from the surface of short fiber yarns, making the yarn surface smooth, but also collect the waste gas generated by the combustion of hairs and cool the yarn, thereby reducing the harm of ash, impurities and waste gas to the environment and human body.
[0024] 5. The oiling device provided by the present invention can brush a layer of oil onto the short fiber yarn layer when it passes through the roller, and at the same time, it can further remove impurities and cool down the short fiber yarn. When the impurities carried down by the roller pass through the brush, they are intercepted and carried to the bottom of the oil tank. Due to the interception effect of the filter screen, the impurities are effectively blocked and deposited at the bottom of the oil tank.
[0025] 6. The splitting reed of this invention can divide short-fiber yarn into specific bundles, making it more stable and uniform during the processes of loading, threading, and twisting. The splitting reed can also adjust the quantity and twisting method of the short-fiber yarn as needed to meet different processing requirements. The stretching reed of this invention can adjust the density and tension of the warp threads by loosening or tightening the short-fiber yarn on the loom, preventing breakage of the warp threads during warping or twisting and shrinkage during weaving, thereby ensuring the quality and effect of warping. Simultaneously, the stretching reed can also appropriately stretch the warp threads as needed to ensure the stability and uniformity of the short-fiber yarn. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the structure of a high-quality short-fiber yarn warp knitting and warping machine provided in an embodiment of the present invention;
[0027] Figure 2 This is a schematic diagram of the singeing apparatus provided in an embodiment of the present invention;
[0028] Figure 3 This is a schematic diagram of the cooling device provided in an embodiment of the present invention;
[0029] Figure 4 This is a schematic diagram of the blowing and suction device provided in an embodiment of the present invention;
[0030] Figure 5 This is a schematic diagram of the oil-passing device provided in an embodiment of the present invention.
[0031] In the diagram: 1. Yarn frame; 2. Yarn collecting plate; 3. Warp reed; 4. Tension roller; 5. Static eliminator; 6. Singeing device; 601. Gas mixing system; 602. Control panel; 603. First gas supply pipe; 604. Rotatable frame; 605. Slit-type burner; 7. Cooling device; 701. Cold water roller; 702. Water supply pipe; 703. Water tank; 8. Blowing and suction device; 801. Fan; 802. Ash filtration device; 803. Ash collector; 804. Second gas supply pipe; 805. Exhaust gas filtration device; 806. Exhaust gas collector; 807. Air outlet; 9. Oiling device; 901. Roller; 902. Brush; 903. Filter screen; 10. Yarn storage device; 11. Telescopic reed; 12. Yarn guide roller; 13. Warp beam. Detailed Implementation
[0032] The technical solution of the present invention will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0033] In the description of this invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. The terms "first position" and "second position" refer to two different positions.
[0034] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to fixed connections or detachable connections; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal connections between two components. Those skilled in the art can understand the specific meaning of these terms in this invention based on the specific circumstances.
[0035] Please refer to Figure 1-Figure 5 As shown, the present invention provides a high-quality short fiber warp knitting machine. In some embodiments, the warping machine includes a yarn frame 1, a yarn collecting plate 2, a tension roller 4, a singeing device 6, a cooling device 7, a blow-suction device 8, an oiling device 9, a yarn storage device 10, and a warp beam 13 arranged in sequence.
[0036] In some embodiments, the singeing device 6 includes a gas mixing system 601, a control panel 602, a first gas supply pipe 603, a rotatable frame 604, and a slit burner 605. The gas mixing system 601 is connected to the first gas supply pipe 603, which is also connected to the slit burner 605. The slit burner 605 is mounted on the rotatable frame 604. The gas mixing system 601 delivers gas to the slit burner 605 through the first gas supply pipe 603. The slit burner 605 emits flames to singe the short fiber yarn layer to remove protruding fuzz from its surface. The control panel 602 is used to adjust the amount of gas output by the gas mixing system 601 and the rotation angle of the rotatable frame 604.
[0037] Furthermore, there are two rotatable frames 604, each equipped with a slit-type burner 605, through which the short-fiber yarn layer passes. This embodiment features slit-type burners 605 at both the top and bottom ends where the yarn layer passes, effectively removing fuzz from around the short-fiber yarn.
[0038] Specifically, the angle of the slit nozzle 605 and the size of its flame are changed by adjusting the rotation angle of the rotatable frame 604 and the amount of gas output by the gas mixing system 601 through the control panel 602, and the gas mixing system 601 is automatically shut off when the linear velocity is less than 15 m / min.
[0039] In this embodiment of the invention, the singeing device 6 utilizes a gas mixing system 601 that delivers gas to a slit-type burner 605 via a first gas supply pipe 603. The short-fiber yarn layer passes between the two rotatable frames 604. The amount of gas output from the gas mixing system 601 and the rotation angle of the rotatable frames 604 are adjusted via a control panel 602 to achieve optimal singeing results while reducing energy consumption. When the linear velocity is less than 15 meters per minute, the gas mixing system 601 is automatically shut off to prevent the short-fiber yarn from overheating and breaking. This invention, through the singeing device 6, can remove protruding fuzz from the surface of the short-fiber yarn, resulting in a smoother yarn body and increased strength.
[0040] In some embodiments, the cooling device 7 includes a cold water roller 701, a water supply pipe 702, and a water tank 703. The cold water roller 701 is located above the water tank 703 and is connected to the water tank 703 through the water supply pipe 702. The cold water roller 701 is connected to the short fiber yarn layer to cool the singed short fiber yarn layer.
[0041] Specifically, after singeing, the short fiber yarn layer has a large amount of heat removed by the cold water roller 701. At the same time, the cold water roller 701 is connected to the water tank 703 through the water supply pipe 702. The water tank 703 supplies cold water to the cold water roller 701 through the water supply pipe 702. The cold water roller 701 cools down the short fiber yarn layer.
[0042] In some embodiments, the blowing and suction device 8 includes a fan 801, an ash filter 802, an ash collector 803, a second air supply pipe 804, an exhaust gas filter 805, an exhaust gas collector 806, and an air outlet 807. The ash filter 802 is connected to the exhaust gas filter 805 via the second air supply pipe 804. An exhaust gas collector 806 is connected to one side of the exhaust gas filter 805, and an air outlet 807 is provided on the exhaust gas filter 805. An ash collector 803 is connected to one side of the ash filter 802. The ash collector 803 and the ash filter 802 are fixed on a frame (not shown in the figure). The fan 801 is positioned... Below the frame, the short fiber yarn layer is located between the fan 801 and the ash filter device 802, with the air outlet of the fan 801 facing the short fiber yarn layer. The fan 801 blows the ash, exhaust gas, and residual heat generated after the burning of impurities and fuzz on the surface of the short fiber yarn into the ash filter device 802. The ash filtered by the ash filter device 802 is collected in the ash collector 803. The remaining gas and heat are transported to the exhaust gas filter device 805 through the gas supply pipe 804. The exhaust gas filtered by the exhaust gas filter device 805 is collected in the exhaust gas collector 806. The air and residual heat are discharged through the air outlet 807.
[0043] The blowing and suction device 8 provided in this embodiment of the invention collects the ash from the combustion of short-fiber yarn hairs into an ash collector 803 through the cleaning action of a fan 801 and an ash filter 802, and collects the waste gas into a waste gas collector 806 through a waste gas filter 805. The air and the heat generated by the combustion of short-fiber yarn hairs are discharged through an air outlet 807. This blowing and suction device 8 can not only remove ash and impurities from the surface of short-fiber yarn, making the yarn surface smooth, but also collect the waste gas generated by the combustion of hairs and cool the yarn, thereby reducing the harm of ash, impurities, and waste gas to the environment and human body.
[0044] In some embodiments, the oiling device 9 includes a roller 901, a brush 902, and a filter screen 903. The short fiber yarn layer is located above and connected to the roller 901. The brushes 902 are arranged on both sides of the roller 901, and the filter screen 903 is arranged below the roller 901. An oil tank (not shown in the figure) is arranged below the roller 901, and at least part of the roller 901 is immersed in the oil tank. When the short fiber yarn layer passes through the roller 901, it is brushed with a layer of oil, which can also further remove impurities and cool the short fiber yarn. The impurities carried down by the roller 901 are intercepted by the brushes 902 and carried to the bottom of the oil tank. Due to the interception effect of the filter screen 903, the impurities are effectively blocked and deposited at the bottom of the oil tank.
[0045] The roller 901 of the oiling device 9 provided in this embodiment of the invention can remove the remaining impurities on the surface of the short fiber yarn and play a role in cooling. The brush 902 can brush off the impurities on the roller 901, and the filter screen 903 blocks the impurities from passing through, causing them to deposit at the bottom of the oil tank.
[0046] In some embodiments, a warp divider 3 is provided between the yarn collecting plate 2 and the tension roller 4, and an electrostatic eliminator 5 is provided between the tension roller 4 and the singeing device 6. The short fiber yarn layer passes through the yarn collecting plate 2, the warp divider 3, the tension roller 4, and the electrostatic eliminator 5 in sequence before entering the singeing device 6 for singeing.
[0047] The splitting reed 3 is used to divide the short fiber yarn into certain bundles, making it more stable and uniform during the processes of loading, threading, and twisting. Simultaneously, the splitting reed 3 can also adjust the quantity and twisting method of the short fiber yarn as needed to meet different processing requirements. The static eliminator 5 is used to eliminate static electricity from the short fiber yarn.
[0048] In some embodiments, an electrostatic eliminator 5, a warp reed 3, a telescopic reed 11, and a guide roller 12 are sequentially arranged between the yarn storage device 10 and the warp beam 13. The telescopic reed 11 is used to adjust the warp density and tension. On the warping machine, the warp yarns need to undergo various processing and treatments to achieve the required specifications and requirements. To avoid breakage of the warp yarns during the warping process or twisting and shrinkage during weaving, their tension needs to be adjusted. The telescopic reed 11 can adjust the warp density and tension by loosening or tightening the short fiber yarns on the loom, thereby ensuring the quality and effect of warping. At the same time, the telescopic reed 11 can also appropriately stretch the warp yarns as needed to ensure the stability and uniformity of the short fiber yarns.
[0049] In some embodiments, an electrical control system and a pneumatic control system are also included.
[0050] This invention provides a high-quality short-fiber yarn warp knitting machine. A singeing device 6 removes protruding fuzz from the surface of the short-fiber yarn, resulting in a smooth yarn body and reduced fuzz. A cooling device 7 uses a cooling water roller 701 to cool the singed yarn. A blower / suction device 8 not only removes ash and impurities from the yarn surface but also collects exhaust gases from the burning fuzz and further cools the yarn. An oiling device 9 further cools and removes surface impurities. This warping machine reduces surface fuzz, creates a denser yarn structure, a smoother surface, and increased strength, achieving the weaving of high-quality short-fiber yarn.
[0051] The above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. These modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present application, and should all be included in the scope of protection of the present application.
Claims
1. A high-quality short-fiber yarn warp knitting and warping machine, characterized in that, It includes, in sequence, a yarn rack, a yarn collecting plate, a tension roller, a singeing device, a cooling device, a blowing and suction device, an oiling device, a yarn storage device, and a warp beam; The singeing device includes a gas mixing system and a slit burner connected to the gas mixing system. The gas mixing system delivers gas to the slit burner, and the slit burner sprays flames to singe the short fiber yarn layer to remove protruding fuzz from its surface. The cooling device includes a cold water roller, which is connected to the short fiber yarn layer to cool the singed short fiber yarn layer. The blowing and suction device includes a fan, an ash filter device located above the fan, and an exhaust gas filter device connected to the ash filter device; the short fiber yarn layer is located between the fan and the ash filter device, and the air outlet of the fan is directly facing the short fiber yarn layer; the fan blows the ash, exhaust gas, and residual heat generated after the burning of impurities and fuzz on the surface of the short fiber yarn into the ash filter device. After being filtered by the ash filter device, the remaining gas and heat are transported to the exhaust gas filter device for filtration. The oiling device includes a roller, at least a portion of which is immersed in an oil tank, and the roller is connected to a short fiber yarn layer for brushing oil onto it; The singeing device further includes a control panel, a first gas supply pipe, and a rotatable frame. The gas mixing system is connected to the slit burner through the first gas supply pipe. The slit burner is mounted on the rotatable frame. The gas mixing system delivers gas to the slit burner through the first gas supply pipe. The slit burner emits flames to singe the short-fiber yarn layer to remove protruding fuzz from its surface. The control panel is used to adjust the amount of gas output by the gas mixing system and the rotation angle of the rotatable frame. The gas mixing system is set to automatically shut down when the linear velocity is less than 15 meters per minute. The blowing and suction device also includes an ash collector, a second air supply pipe, an exhaust gas collector, and an air outlet. The ash filter is connected to the exhaust gas filter via the second air supply pipe. An exhaust gas collector is connected to one side of the exhaust gas filter, and an air outlet is provided on the exhaust gas filter. An ash collector is connected to one side of the ash filter. The ash collector and the ash filter are fixed on the frame, and the fan is located below the frame. The fan blows the ash, exhaust gas, and residual heat generated after the burning of impurities and fuzz on the surface of the short fiber yarn into the ash filter. The ash filtered by the ash filter is collected in the ash collector. The remaining gas and heat are transported to the exhaust gas filter via the air supply pipe. The exhaust gas filtered by the exhaust gas filter is collected in the exhaust gas collector, and the air and residual heat are discharged through the air outlet. The oiling device also includes brushes and a filter screen. Brushes are provided on both sides of the roller, and a filter screen is provided below the roller. An oil tank is provided below the roller. The roller brushes oil on the short fiber yarn layer to remove the remaining impurities on its surface and cool it down. The brushes are used to brush off the impurities on the roller, and the filter screen is used to block the impurities from passing through and to deposit them at the bottom of the oil tank. A warp divider is provided between the yarn collecting plate and the tension roller, and the warp divider is used to divide the short fiber yarn into bundles; An electrostatic eliminator is installed between the tension roller and the singeing device. The electrostatic eliminator is used to eliminate static electricity from the short fiber yarn. The short fiber yarn layer passes through the yarn collecting plate, the warp reed, the tension roller, and the electrostatic eliminator in sequence before entering the singeing device for singeing.
2. The high-quality staple fiber warp knitting and warping machine according to claim 1, characterized in that, There are two rotatable frames, each with a slit-type flame hole, and the short fiber yarn layer passes through the middle of the two rotatable frames.
3. The high-quality staple fiber warp knitting and warping machine according to claim 1, characterized in that, The cooling device also includes a water supply pipe and a water tank, with the cooling water roller located above the water tank and connected to the water tank via the water supply pipe.
4. A high-quality staple fiber warp knitting and warping machine according to claim 1, characterized in that, An electrostatic eliminator, a warp divider, a telescopic reed, and a yarn guide roller are sequentially arranged between the yarn storage device and the warp beam. The telescopic reed is used to adjust the warp density and tension.
5. A high-quality staple fiber warp knitting machine according to any one of claims 1-4, characterized in that, It also includes electrical control systems and pneumatic control systems.
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