Vortex spinning processing device and using method thereof
By introducing seven sets of isometric yarn guide rollers, transmission devices and up and down drying devices into the vortex spinning equipment, the intermittent cyclic drying of the yarn is achieved by using servo motors and reducer motors to drive, which solves the problem of low drying efficiency in existing equipment and improves the drying uniformity and efficiency of the yarn.
Patent Information
- Application Number
- CN202510961515.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-14
- Publication Date
- 2025-09-02
AI Technical Summary
The existing vortex spinning equipment has insufficient equal-length guidance during the yarn drying process, resulting in low drying efficiency and inconvenient intermittent staying, affecting the subsequent yarn drying effect.
A vortex spinning processing device is designed, including seven sets of yarn guide rollers, transmission devices and two sets of upper and lower drying devices. Driven by servo motors and reducer motors, intermittent cyclic drying and efficient guidance of the yarns are realized, and the transmission stability and efficiency are improved by using synchronous pulleys and gear meshing transmissions.
It improves the efficiency and uniformity of the yarn, enhances the power utilization efficiency of the equipment, ensures that the yarn can be heated evenly during the drying process, and improves the overall drying effect.
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Figure CN120575366A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of vortex spinning equipment, in particular to a vortex spinning processing device and a use method thereof. Background Art
[0002] Vortex spinning is a new spinning technology that uses air vortexes to condense and twist fibers into yarn. It has the advantages of high efficiency, high degree of automation, and unique yarn properties. It has broad application prospects in sportswear, home textiles, industrial textiles and other fields.
[0003] As disclosed in the publication number CN207646371U, a drying device for vortex spinning yarn processing comprises a box body, an inlet and outlet are provided on the top of the right side of the box body, an air outlet is provided on the top of the box body, the tops of both sides of the inner wall of the box body are fixedly connected with connecting rods, and the end of the connecting rod away from the inner wall of the box body is fixedly connected with a placement cylinder; a sliding rod is fixedly connected to the bottom of the placement cylinder inside the box body, a sliding cylinder is sleeved on the surface of the sliding rod, and the top of the sliding cylinder is fixedly connected to a working box, a fan is fixedly installed at the bottom of the inner wall of the working box, and a heating plate is fixedly installed inside the working box and at the top of the fan. The utility model can make the working box move left and right continuously through the cooperation of the sliding rod, the sliding cylinder, the fixed block, the motor, the turntable, the moving block, the rocking rod, the moving groove, the connecting rod, the tooth plate, the movable rod and the fan gear, so that the hot air can be blown to the placement cylinder in all directions, with high drying efficiency, uniform drying and easy use.
[0004] Although the above-mentioned equipment can dry vortex-spun yarn, the above-mentioned equipment has insufficient equal-length guidance when drying the yarn. It is also not convenient to intermittently drive yarns of equal length to stay in the drying box for an equal period of time, which reduces the subsequent drying efficiency of the yarn. Therefore, a vortex spinning processing device and its use method are needed to solve the problems raised above. Summary of the Invention
[0005] The object of the present invention is to provide a vortex spinning processing device and a method of using the same to solve the problems raised in the above background technology.
[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a vortex spinning processing device, comprising a drying box for supporting, wherein the front and rear ends of the inner end face of the drying box are provided with feed guide grooves, a total of seven groups of yarn guide rollers are provided, and the seven groups of yarn guide rollers are rotatably clamped to the inner end face of the drying box at equal intervals, and the outer end faces of the yarn guide rollers are equidistantly provided with guide grooves, a first synchronous pulley is provided at the side end of each group of yarn guide rollers, and an idler pulley is rotatably clamped at the side end face of the drying box corresponding to each group of the first synchronous pulleys, and the seven groups of the first synchronous pulleys and the idler pulleys are slidably connected by a first synchronous belt,
[0007] a transmission device, the transmission device being fixedly arranged on a side end surface of the drying box away from the first synchronous pulley, and the transmission device being used to provide intermittent power to the seven groups of yarn guide rollers;
[0008] The drying device is provided with two groups, and the two groups of drying devices are respectively arranged at the upper part and the lower part of the drying box body, and the drying device is used for air guiding and drying.
[0009] Preferably, the transmission device includes a support base, a motor base is provided on the upper end face of the support base near the rear, and a servo motor is provided at the output end of the motor base, a driven gear is rotatably connected to the inner end face of the support base near the front, a notched disc is provided at the output end of the servo motor, and a positioning lever is fixedly provided on the upper end face of the notched disc, a driving gear is provided near the middle on the inner end face of the support base, and a sheave housing is provided at the center of the upper end face of the driving gear, four groups of limit rotating grooves are equidistantly provided on the side end face of the sheave housing, and a limit shift groove is provided between every two groups of the limit rotating grooves.
[0010] Preferably, the drying device includes a sealing card plate, the inner end surface of the sealing card plate is symmetrically rotated and clamped with two groups of transmission gears, the upper end surfaces of the two groups of transmission gears are provided with a second synchronous pulley, and the two groups of the second synchronous pulleys are meshed and connected by a second synchronous belt, the inner end surface of the sealing card plate is equidistantly rotated and clamped with a guide gear with the transmission gear as the axis, and a drying guide plate is provided at the center of the lower end surface of the guide gear, the upper end surface of the sealing card plate is provided with a motor holder opposite to the transmission gear, and a reduction motor is provided at the center of the upper end surface of the motor holder.
[0011] Preferably, the five groups of guide gears are all meshed with the transmission gears, and the guide gears and the transmission gears are both sealed and rotatably clamped on the inner end face of the sealing clamping plate. The upper end face of the guide gear is provided with a docking duct, and the docking duct is through-connected with the drying guide disc. The meshing transmission of the six groups of guide gears and the transmission gears can effectively improve the stability and efficiency of the transmission of the equipment. At the same time, multiple groups of drying guide discs perform high-speed rotation drying, which can effectively improve the uniformity of drying the yarn.
[0012] Preferably, the notched disc is rotatably connected to the sheave shell through the limiting groove, and the outside of the notched disc is rotatably connected to the sheave shell through the limiting groove, which can facilitate locking the sheave shell after the sheave shell is adjusted to a certain degree, thereby providing sufficient time for subsequent yarn drying.
[0013] Preferably, the notched disc is adapted to the limit shift groove through the positioning lever and thereby drives the sheave housing to rotate. When the positioning lever rotates in a circle, it can be limited by sliding with the limit shift groove, thereby driving the sheave housing to rotate intermittently, thereby facilitating the subsequent provision of intermittent power to the driven gear.
[0014] Preferably, the driven gear is meshed with the driving gear, and the number of teeth of the driving gear is greater than that of the driven gear, which makes it convenient for the driving gear to drive the yarn guide roller to rotate multiple times through the driven gear during subsequent transmission, thereby facilitating the subsequent increase in the length of the yarn guide material according to needs.
[0015] A method for using a vortex spinning processing device comprises the following steps:
[0016] S1: For pre-loading of yarn, the yarn can be introduced through the feed guide groove on one side of the drying box, then pass through the guide groove inside the yarn guide roller in sequence, and finally be discharged from the feed guide groove on the other side. At the same time, the external drying gas duct can be connected to the docking duct at the bottom, and the external exhaust duct can be connected to the docking duct at the top;
[0017] S2: The yarn is intermittently dried and loaded. The servo motor can drive the notched disc to rotate, and the notched disc can drive the sheave housing to rotate intermittently through the positioning lever and the limit slot. At the same time, when the sheave housing rotates, it can drive the driven gear to rotate through the driving gear. At this time, the driven gear can drive the yarn guide roller on the side to rotate. At the same time, when the yarn guide roller rotates, it can synchronously drive multiple sets of yarn guide rollers to rotate through the first synchronous pulley, the first synchronous belt and the idler pulley, so that the multiple sets of yarn guide rollers can synchronously drive the yarn to move and load inside the drying box through the guide trough;
[0018] S3: To dry the yarn, the reduction motor can drive the transmission gear at the bottom to rotate, and the transmission gear can drive another set of transmission gears to rotate through the second synchronous pulley and the second synchronous belt. The two sets of transmission gears can synchronously drive the six sets of guide gears to rotate, and the six sets of guide gears can drive the drying guide disc at the bottom to rotate at high speed. The drying guide disc at the bottom can quickly spray high-temperature gas to dry the yarn. At the same time, the drying guide disc at the top can guide the high-temperature and high-humidity gas to complete the drying operation.
[0019] Compared with the prior art, the present invention has the following beneficial effects:
[0020] 1. The present invention provides a transmission device. When the yarn is intermittently cyclically dried, the servo motor can intermittently drive the groove wheel housing to rotate through the sliding limit of the notched disc and the positioning lever and the limit rotating groove and the limit selector groove. At the same time, the groove wheel housing can drive multiple groups of yarn guide rollers to intermittently feed the yarn with equal length through the amplified gear ratio of the driving gear and the driven gear, effectively improving the efficiency of the equipment in drying and feeding the yarn. At the same time, the intermittent drying operation can maximize the drying efficiency of the yarn.
[0021] 2. The present invention sets up two sets of upper and lower drying devices. When the upper and lower drying devices are drying, the reduction motor can synchronously drive the two sets of transmission gears to rotate through the second synchronous pulley and the second synchronous belt. The two sets of transmission gears can synchronously drive the six sets of guide gears to engage and rotate, effectively improving the power utilization efficiency of the equipment. At the same time, the upper and lower multiple sets of drying guide plates are set for unidirectional air guidance, which can quickly guide the dried moisture while drying the yarn, effectively improving the efficiency of subsequent drying of the yarn. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.
[0023] Figure 1 It is a disassembled diagram of the main body of the present invention;
[0024] Figure 2 It is a structural schematic diagram of the main body of the present invention;
[0025] Figure 3 is an exploded view of the transmission device of the present invention;
[0026] Figure 4 It is a structural schematic diagram of the transmission device of the present invention;
[0027] Figure 5 This is an exploded view of the drying device of the present invention;
[0028] Figure 6 It is a structural schematic diagram of the drying device of the present invention.
[0029] In the figure: 1-feed guide groove, 2-transmission device, 3-drying device, 4-yarn guide roller, 5-guide trough, 6-first synchronous pulley, 7-first synchronous belt, 8-idler, 9-drying box, 21-support card seat, 22-driving gear, 23-driven gear, 24-limiting rotating groove, 25-pulley housing, 26-positioning lever, 27-motor card seat, 28-servo motor, 29-notched disc, 210-limiting dial groove, 31-second synchronous pulley, 32-second synchronous belt, 33-reduction motor, 34-motor card seat, 35-guide gear, 36-sealing card plate, 37-drying guide plate, 38-transmission gear. DETAILED DESCRIPTION
[0030] In order to enable those skilled in the art to better understand the present invention, the following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of this application.
[0031] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or sequential order. It should be understood that the data used in this way can be interchanged where appropriate, so that the embodiments of the present application described here. In addition, the terms "including" and "having" and any of their variations are intended to cover non-exclusive inclusions. For example, a process, method, system, product or device that includes a series of steps or units is not necessarily limited to those steps or units clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.
[0032] The present invention will be further described below with reference to the accompanying drawings.
[0033] Example 1
[0034] See also Figure 1-6, an embodiment of the present invention provides: a vortex spinning processing device, comprising a drying box 9 for supporting, a feed guide groove 1 is opened at the front and rear of the inner end surface of the drying box 9, a total of seven groups of yarn guide rollers 4 are provided, and the seven groups of yarn guide rollers 4 are equidistantly rotatably clamped on the inner end surface of the drying box 9, and a material guide groove 5 is equidistantly opened on the outer end surface of the yarn guide roller 4, a first synchronous pulley 6 is provided at the side end of each group of yarn guide rollers 4, and an idler pulley 8 is rotatably clamped at the side end surface of the drying box 9 corresponding to each group of first synchronous pulleys 6, and the seven groups of first synchronous pulleys 6 and the idler pulley 8 are slidably connected through a first synchronous belt 7,
[0035] The transmission device 2 is fixedly arranged on the side end surface of the drying box 9 away from the first synchronous pulley 6, and the transmission device 2 is used to provide intermittent power to the seven groups of yarn guide rollers 4;
[0036] The drying device 3 is provided with two groups, and the two groups of drying devices 3 are respectively arranged at the upper part and the lower part of the drying box body 9. The drying device 3 is used for air guiding and drying.
[0037] like Figure 3 and Figure 4 The transmission device 2 includes a support base 21, a motor base 27 is provided on the upper end surface of the support base 21 near the rear, and a servo motor 28 is provided at the output end of the motor base 27, the inner end surface of the support base 21 is rotatably connected with a driven gear 23 near the front, a notched disc 29 is provided at the output end of the servo motor 28, and a positioning lever 26 is fixedly provided on the upper end surface of the notched disc 29, a driving gear 22 is provided near the middle of the inner end surface of the support base 21, and a sheave housing 25 is provided at the center of the upper end surface of the driving gear 22, four groups of limit rotating grooves 24 are equidistantly provided on the side end surface of the sheave housing 25, and a limit shift groove 210 is provided between every two groups of limit rotating grooves 24.
[0038] like Figure 5 and Figure 6 The drying device 3 includes a sealing card plate 36, and the inner end surface of the sealing card plate 36 is symmetrically rotated and clamped with two sets of transmission gears 38. The upper end surfaces of the two sets of transmission gears 38 are provided with second synchronous pulleys 31, and the two sets of second synchronous pulleys 31 are meshed and connected by a second synchronous belt 32. The inner end surface of the sealing card plate 36 is equidistantly rotated and clamped with a guide gear 35 with the transmission gear 38 as the axis, and a drying guide plate 37 is provided at the center of the lower end surface of the guide gear 35. The upper end surface of the sealing card plate 36 is provided with a motor holder 34 opposite to the transmission gear 38, and a reduction motor 33 is provided at the center of the upper end surface of the motor holder 34.
[0039] like Figure 1 and Figure 5The five groups of guide gears 35 are all meshed with the transmission gear 38. The guide gear 35 and the transmission gear 38 are both sealed and rotatably connected to the inner end surface of the sealing clamping plate 36. The upper end surface of the guide gear 35 is provided with a docking duct, and the docking duct is through-connected with the drying guide disc 37. The meshing transmission of the six groups of guide gears 35 and the transmission gear 38 can effectively improve the stability and efficiency of the transmission of the equipment. At the same time, multiple groups of drying guide discs 37 perform high-speed rotation drying, which can effectively improve the uniformity of drying the yarn.
[0040] like Figure 3 The notched disc 29 is rotatably connected to the sheave housing 25 through the limiting rotating groove 24, and the outside of the notched disc 29 is rotatably connected to the sheave housing 25 through the limiting rotating groove 24, which can facilitate locking the sheave housing 25 after the sheave housing 25 is turned 90 degrees, thereby providing sufficient time for subsequent yarn drying.
[0041] like Figure 3 and Figure 4 The notched disc 29 is adapted to the limiting groove 210 through the positioning lever 26, thereby driving the sheave housing 25 to rotate. When the positioning lever 26 rotates in a circle, it can slide and limit with the limiting groove 210, thereby driving the sheave housing 25 to rotate intermittently 90 degrees, which is convenient for providing intermittent power to the driven gear 23 later.
[0042] like Figure 3 The driven gear 23 is meshed with the driving gear 22. The number of teeth of the driving gear 22 is greater than that of the driven gear 23. This makes it convenient for the driving gear 22 to drive the yarn guide roller 4 to rotate multiple times through the driven gear 23 during subsequent transmission, thereby facilitating the subsequent increase in the length of the yarn guide material according to needs.
[0043] A method for using a vortex spinning processing device comprises the following steps:
[0044] S1: For pre-loading of yarn, the yarn can be introduced through the feed guide groove 1 on one side of the drying box 9, and then sequentially passes through the guide groove 5 inside the yarn guide roller 4, and finally discharged from the feed guide groove 1 on the other side. At the same time, the external drying gas duct can be connected to the docking duct at the bottom, and the external exhaust duct can be connected to the docking duct at the top;
[0045] S2: The yarn is intermittently dried and loaded. The servo motor 28 can drive the notched disc 29 to rotate. The notched disc 29 can intermittently rotate the sheave housing 25 through the positioning lever 26 and the limit slot 210. At the same time, when the sheave housing 25 rotates, it can drive the driven gear 23 to rotate through the driving gear 22. At this time, the driven gear 23 can drive the yarn guide roller 4 on the side to rotate. At the same time, when the yarn guide roller 4 rotates, it can synchronously drive the multiple groups of yarn guide rollers 4 to rotate through the first synchronous pulley 6, the first synchronous belt 7 and the idler wheel 8, so that the multiple groups of yarn guide rollers 4 can synchronously drive the yarn to be displaced and loaded inside the drying box 9 through the guide trough 5;
[0046] S3: To dry the yarn, the reduction motor 33 can drive the transmission gear 38 at the bottom to rotate, and the transmission gear 38 can drive another set of transmission gears 38 to rotate through the second synchronous pulley 31 and the second synchronous belt 32. The two sets of transmission gears 38 can synchronously drive the six sets of guide gears 35 to rotate, and the six sets of guide gears 35 can drive the drying guide disc 37 at the bottom to rotate at high speed. The drying guide disc 37 at the bottom can quickly spray high-temperature gas to dry the yarn. At the same time, the drying guide disc 37 at the top can guide the high-temperature and high-humidity gas to complete the drying operation.
[0047] Working principle: Before use, the staff can introduce the yarn through the feed guide groove 1 on one side of the drying box 9, and then pass through the guide groove 5 inside the yarn guide roller 4 in sequence, and finally lead out from the feed guide groove 1 on the other side. At the same time, the external drying gas duct can be connected to the docking duct at the bottom, and the external exhaust duct can be connected to the docking duct at the top. When drying and transporting the yarn, the staff can start the servo motor 28. At this time, the servo motor 28 can drive the notched disc 29 to rotate, and the notched disc 29 can drive the sheave housing 25 to rotate intermittently through the positioning lever 26 and the limit slot 210. At the same time, when the sheave housing 25 rotates, it can drive the driven gear 23 to rotate through the driving gear 22. At this time, the driven gear 23 can drive the yarn guide roller 4 on the side to rotate. At the same time, when the yarn guide roller 4 rotates, it can be rotated through the first synchronous pulley 6, the first synchronous belt 7 and the idler pulley. The wheel 8 synchronously drives multiple groups of yarn guide rollers 4 to rotate, so that multiple groups of yarn guide rollers 4 can synchronously drive the yarn to move inside the drying box 9 through the guide trough 5. After the rotation is completed, the notched disc 29 can lock the groove wheel housing 25 through the limit rotation groove 24 until the next positioning lever 26 toggles the limit shift groove 210. At the same time, the reduction motor 33 is started, the reduction motor 33 can drive the transmission gear 38 at the bottom to rotate, and the transmission gear 38 can drive another group of transmission gears 38 to rotate through the second synchronous pulley 31 and the second synchronous belt 32. The two groups of transmission gears 38 can synchronously drive the six groups of guide gears 35 to rotate, and the six groups of guide gears 35 can drive the drying guide disc 37 at the bottom to rotate at high speed. The drying guide disc 37 at the bottom can quickly spray high-temperature gas to dry the yarn. At the same time, the drying guide disc 37 at the upper part can discharge high-temperature and high-humidity gas to complete the drying operation.
[0048] 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 vortex spinning processing device, comprising a drying box (9) for supporting, a feed guide groove (1) is provided at the front and rear of the inner end face of the drying box (9), a total of seven groups of yarn guide rollers (4) are provided, and the seven groups of yarn guide rollers (4) are equidistantly rotatably clamped on the inner end face of the drying box (9), and a material guide groove (5) is equidistantly provided on the outer end face of the yarn guide roller (4), a first synchronous pulley (6) is provided at the side end of each group of yarn guide rollers (4), and an idler wheel (8) is rotatably clamped at the side end face of the drying box (9) corresponding to each group of the first synchronous pulleys (6), and the seven groups of the first synchronous pulleys (6) and the idler wheels (8) are slidably connected by a first synchronous belt (7), characterized in that: A transmission device (2), the transmission device (2) is fixedly arranged on a side end surface of the drying box (9) away from the first synchronous pulley (6), and the transmission device (2) is used to provide intermittent power to the seven groups of yarn guide rollers (4); A drying device (3), wherein the drying device (3) is provided with two groups, and the two groups of the drying device (3) are respectively arranged at the upper part and the lower part of the drying box (9), and the drying device (3) is used for air guiding and drying.
2. A vortex spinning processing device according to claim 1, characterized in that: The transmission device (2) comprises a support base (21), a motor base (27) is provided on the upper end surface of the support base (21) near the rear, and a servo motor (28) is provided at the output end of the motor base (27), a driven gear (23) is rotatably connected to the inner end surface of the support base (21) near the front, a notched disc (29) is provided at the output end of the servo motor (28), and a positioning lever (26) is fixedly provided on the upper end surface of the notched disc (29), a driving gear (22) is provided on the inner end surface of the support base (21) near the middle, and a sheave housing (25) is provided at the center of the upper end surface of the driving gear (22), four groups of limit rotation grooves (24) are equidistantly provided on the side end surface of the sheave housing (25), and a limit shifting groove (210) is provided between every two groups of the limit rotation grooves (24).
3. The vortex spinning processing device according to claim 2, characterized in that: The drying device (3) comprises a sealing card plate (36), the inner end surface of the sealing card plate (36) is symmetrically rotated and clamped with two groups of transmission gears (38), the upper end surfaces of the two groups of transmission gears (38) are both provided with second synchronous pulleys (31), and the two groups of second synchronous pulleys (31) are meshed and connected through a second synchronous belt (32), the inner end surface of the sealing card plate (36) is equidistantly rotated and clamped with a guide gear (35) with the transmission gear (38) as the axis, and a drying guide plate (37) is provided at the center of the lower end surface of the guide gear (35), the upper end surface of the sealing card plate (36) is provided with a motor holder (34) opposite to the transmission gear (38), and a reduction motor (33) is provided at the center of the upper end surface of the motor holder (34).
4. The vortex spinning processing device according to claim 3, characterized in that: The five groups of guide gears (35) are all meshed with the transmission gear (38), and the guide gears (35) and the transmission gear (38) are all sealed and rotatably clamped on the inner end surface of the sealing clamping plate (36). The upper end surface of the guide gear (35) is provided with a docking conduit, and the docking conduit is connected to the drying guide plate (37).
5. The vortex spinning processing device according to claim 3, characterized in that: The notched disc (29) is rotatably engaged with the sheave housing (25) via the position-limiting rotating groove (24).
6. The vortex spinning processing device according to claim 3, characterized in that: The notched circular disc (29) is adapted to the position limiting shifting groove (210) via the positioning shifting rod (26) and thereby drives the sheave housing (25) to rotate.
7. The vortex spinning processing device according to claim 3, characterized in that: The driven gear (23) is meshedly connected with the driving gear (22).
8. The method for using the vortex spinning processing device according to claim 7, characterized in that: The following steps are involved: S1: For pre-loading of yarn, the yarn can be introduced through the feed guide groove (1) on one side of the drying box (9), and then sequentially pass through the guide groove (5) inside the yarn guide roller (4), and finally be led out from the feed guide groove (1) on the other side. At the same time, the external drying gas conduit can be connected to the docking conduit at the bottom, and the external exhaust conduit can be connected to the docking conduit at the top; S2: The yarn is intermittently dried and loaded. The servo motor (28) can drive the notched disc (29) to rotate. The notched disc (29) can intermittently rotate the groove wheel housing (25) through the positioning lever (26) and the limit groove (210). At the same time, when the groove wheel housing (25) rotates, it can drive the driven gear (23) to rotate through the driving gear (22). At this time, the driven gear (23) can drive the yarn guide roller (4) on the side to rotate. At the same time, when the yarn guide roller (4) rotates, it can synchronously drive the multiple sets of yarn guide rollers (4) to rotate through the first synchronous pulley (6), the first synchronous belt (7) and the idler wheel (8), so that the multiple sets of yarn guide rollers (4) can synchronously drive the yarn to move and load inside the drying box (9) through the guide groove (5); S3: The yarn is dried. The reduction motor (33) can drive the transmission gear (38) at the bottom to rotate, and the transmission gear (38) can drive another set of transmission gears (38) to rotate through the second synchronous pulley (31) and the second synchronous belt (32). The two sets of transmission gears (38) can synchronously drive the six sets of guide gears (35) to rotate. The six sets of guide gears (35) can drive the drying guide disc (37) at the bottom to rotate at high speed. The drying guide disc (37) at the bottom can quickly spray high-temperature gas to dry the yarn. At the same time, the drying guide disc (37) at the top can guide the high-temperature and high-humidity gas to complete the drying operation.
Citation Information
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