Glass fiber movable and lifting type wet yarn outer layer yarn automatic peeling device and method
By designing a movable, lifting, and automatic outer layer descaling device for glass fiber wet yarn, and employing a lifting and power transmission mechanism, the device achieves automated fixed-length winding of the yarn, solving the problems of slow speed, long time consumption, and easy damage to yarn bundles in existing technologies, thereby improving production efficiency and safety.
Patent Information
- Application Number
- CN202511153302.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-18
- Publication Date
- 2025-12-05
AI Technical Summary
In existing technologies, the peeling process of the outer layer of wet glass fiber yarn is slow, time-consuming, requires multiple handling, has an uncertain peeling length, and manual operation can easily damage the yarn bundles, affecting production efficiency and product quality.
Design a movable, lifting automatic outer layer stripping device for glass fiber wet yarn. It adopts a lifting mechanism and a power transmission mechanism to realize the automatic fixed-length winding and uniform arrangement of yarn. Automatic stripping of yarn is achieved by rotating disc and yarn winding support, replacing manual operation.
It enables automated, rapid, and fixed-length stripping of yarn, improving production efficiency, reducing labor intensity, preventing yarn spool damage, and is suitable for confined operating environments, applicable to different glass fiber varieties, and enhancing safety.
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Figure CN121063333A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of textiles, in particular to a movable and lifting type automatic outer yarn peeling device for wet yarn and method thereof. BACKGROUND
[0002] At present, the mainstream production process of glass fiber is the pool kiln drawing method, and the product specifications, performance and downstream applications are different, but the production process of the original yarn is basically the same. Tex is an important parameter of the physical properties of glass fiber. The size of TEX not only affects the performance of the fiber, but also is closely related to the production process, yield and operation stability. According to the new national standard, the TEX control requirement is becoming more and more strict. Generally speaking, the roving product may affect the fiber content of the glass steel product, thereby affecting the strength of the glass steel; the spun yarn product causes large weight fluctuation of the cloth during weaving, and the basis weight of the cloth surface is uneven.
[0003] As disclosed in the patent with publication number CN208632758U, a yarn returning frame is disclosed, which comprises a first yarn frame, a second yarn frame, a first yarn feeding pipe and a second yarn feeding pipe. The first yarn frame and the second yarn frame are respectively provided with a first yarn returning rod and a second yarn returning rod. The first yarn returning rod extends obliquely relative to the horizontal plane, and the first yarn feeding pipe extends obliquely relative to the horizontal plane. The first yarn returning rod is collinear with the first yarn feeding pipe. The second yarn returning rod extends vertically relative to the horizontal plane, and the second yarn feeding pipe extends vertically relative to the horizontal plane. The second yarn returning rod is collinear with the second yarn feeding pipe. The center lines of the first yarn returning rod and the first yarn feeding pipe are coincidently arranged, and the center lines of the second yarn returning rod and the second yarn feeding pipe are coincidently arranged. The included angle between the yarn and the yarn feeding pipe is reduced, and the phenomenon of unsmooth yarn returning caused by the excessive friction between the yarn and the pipe opening of the yarn feeding pipe due to the large included angle between the center lines of the yarn returning rod and the yarn feeding pipe is avoided.
[0004] As disclosed in the patent with publication number CN217997628U, an outer yarn returning and flipping device is disclosed, which comprises a flipping device support, a brake disc, a push rod, a main shaft and a machine head. One end of the main shaft extends into the interior of the flipping device support and is fixed through a bearing seat. The other end is located outside the flipping device support and is provided with a machine head, a machine head gear and a machine head nut. The problem of time-consuming and laborious manual yarn pulling in the traditional outer yarn returning and flipping method is solved.
[0005] A new yarn withdrawing device and a yarn withdrawing method using the same are disclosed in patent publication CN103058009B, which comprises a support, a main shaft, a motor and a transmission belt. The main shaft is arranged on the support and comprises a yarn cake placing device. The motor shaft, the main shaft and the transmission belt form a belt transmission mechanism. The motor drives the main shaft and the yarn cake placing device to rotate through the belt transmission mechanism. The yarn cake is fixed on the main shaft. The motor drives the main shaft to rotate in the yarn cake withdrawing direction through the transmission belt. The yarn is withdrawn from the outer layer to the inner layer of the yarn cake. The motor speed is matched with the yarn withdrawing speed, which can be used for withdrawing glass fiber or other yarns.
[0006] The broken ends and flying yarns in the drawing operation will cause the outer yarn of the yarn cake to lack strands, resulting in unqualified outer line density and difficult to find the head, affecting the packaging efficiency. Secondly, the outer line density of the wet yarn needs to be detected every day. The yarn cake on the reel is manually stripped by artificial manual stripping. It needs to be transported twice, increases the transportation frequency and load, and has strict requirements for the placement position of the yarn cake. In order to meet the principle of body position ergonomics, the labor intensity is high, the unit production efficiency is low, the outer yarn of the single roll is manually stripped, the speed is slow, the time is long, the stripping length is uncertain, and the operation level of the operator is dependent.
[0007] In view of the above problems, it is urgent to make innovative design on the basis of the original wet yarn stripping. SUMMARY
[0008] The purpose of the present application is to provide a movable and lifting type automatic stripping device and method for the outer yarn of the wet yarn of the glass fiber, which replaces the manual stripping of the outer yarn of the single roll, solves the problems of slow speed, long time, multiple transportation, uncertain stripping length, and easy damage of the yarn cake.
[0009] To achieve the above purpose, the present application provides the following technical scheme: a movable and lifting type automatic stripping device and method for the outer yarn of the wet yarn of the glass fiber, comprising a bottom platform moving in the workshop and a caster installed at the lower end of the bottom platform. A top platform is arranged above the bottom platform and is lifted. A jacking mechanism is arranged between the bottom platform and the top platform. An acrylic glass shell is fixedly installed on the upper end face of the top platform. A support seat is fixed in the acrylic glass shell. A power transmission mechanism is installed between the support seat and the acrylic glass shell. A rotating disc is connected to the power transmission mechanism. A plurality of yarn winding supports are fixed at equal angles on the end face of the rotating disc along the axis direction.
[0010] Preferably, the jacking mechanism comprises fixed supports fixedly installed on the bottom platform and the top platform. Scissor frames are rotatably connected to the upper and lower fixed supports. Rollers are rotatably installed at the ends of the scissor frames away from the fixed supports. C-shaped tracks are fixedly installed on the bottom platform and the top platform. The rollers at the upper and lower ends of the scissor frames are slidably connected in the upper and lower C-shaped tracks, respectively.
[0011] Preferably, a cross brace is fixedly installed on one side of the scissor frame close to the bottom platform; a hydraulic rod is rotationally connected to the bottom platform, and the output end of the hydraulic rod is rotationally connected to the cross brace.
[0012] Preferably, the power transmission mechanism comprises a power bevel gear rotationally installed on the support base, an end surface of the power bevel gear is coaxially fixed with a rotating shaft, and the rotating shaft is coaxially fixedly connected with the rotating disc; a driven bevel gear is meshingly connected to the side of the power bevel gear, one end of the driven bevel gear away from the power bevel gear is fixedly connected with a transmission shaft, and the transmission shaft is rotationally connected to the inner wall of the acrylic glass shell.
[0013] Preferably, a motor is fixedly installed on the support base, and the output end of the motor is coaxially connected with the power bevel gear.
[0014] Preferably, two groups of driven bevel gears are symmetrically arranged inside the acrylic glass shell, and inner guide grooves for guiding yarn withdrawal are symmetrically formed on the two sides of the acrylic glass shell; a control panel and a control button are installed on the acrylic glass shell.
[0015] Preferably, a link guide mechanism for controlling uniform winding of the yarn outside the yarn winding support is arranged on the outside of the two sides of the acrylic glass shell, and the rotation of the driven bevel gear provides power for the link guide mechanism.
[0016] Preferably, the link guide mechanism comprises a slide rail fixedly installed on the acrylic glass shell, a guide plate is transversely and slidably connected in the slide rail, and an outer guide groove is formed in the guide plate and corresponds to the inner guide groove.
[0017] Preferably, a rotating disc is rotationally installed on the outside of the acrylic glass shell, the rotating disc is fixedly connected with the transmission shaft off the shaft center; a connecting rod is rotationally connected to the guide plate off the shaft center at one end of the rotating disc away from the transmission shaft.
[0018] A movable and lifting type automatic peeling method for outer layer yarn of glass fiber wet yarn, applied to the movable and lifting type automatic peeling device for outer layer yarn of glass fiber wet yarn, comprising the following steps:
[0019] S1, move the automatic peeling device to the side of the yarn reel, correspond to the front of the yarn group on the yarn reel, manually find the outer part of the yarn group for standby, keep the distance between the automatic peeling device and the brake at 50-60 cmm, and control the locking of the caster.
[0020] S2, adjust the position of the top platform through the jacking mechanism to make it flush with the position of the corresponding layer of yarn group on the yarn reel, so as to avoid abrasion of the edge of the yarn group during yarn withdrawal.
[0021] S3, open the door plate of the acrylic glass shell, find the outer yarn guide into the acrylic glass shell from the yarn ball, and wind the yarn on the yarn winding support.
[0022] S4, set the length of the degumming and peeling yarn, the yarn is out of the yarn ball tail, the yarn is peeled off layer by layer, and the yarn is controlled to move back and forth to make it uniformly arranged and wound on the yarn winding support.
[0023] S5, the yarn runs from one end of the yarn winding support to the other end, the rear layer covers the front layer, and the running stops when the set length is reached.
[0024] S6, after completing the peeling operation, the height of the top platform is adjusted again by the jacking mechanism, and the above steps are repeated to peel the yarn ball of different layers of the yarn reel.
[0025] Compared with the prior art, the beneficial effects of the present application are:
[0026] (1) The automatic peeling device realizes free movement, accurate positioning, yarn length setting and free height adjustment function, and the lifting height can be stopped arbitrarily.
[0027] (2) The same layer height multi-winding yarn ball is peeled at the same time, which supports automatic peeling of the outer layer yarn of 6 winding yarn balls of 2 yarn reels at the same time, fast speed, high efficiency, and avoids product deformation damage caused by personnel operation.
[0028] (3) Replaces manual single winding yarn degumming, solves the problems of slow speed, long time, multiple handling, uncertain peeling length, and yarn ball damage, and the mechanical yarn degumming can make the yarn evenly wound on the yarn winding support, and the yarn degumming is uniform and reliable.
[0029] (4) It is suitable for narrow operation environment and can be applied to different glass fiber products, including direct untwisted roving, plied yarn and chopped yarn.
[0030] (5) The safety performance is improved, so that the operator does not need to directly contact the high-temperature leakage plate, and burns, other injuries, etc. are avoided. BRIEF DESCRIPTION OF DRAWINGS
[0031] Figure 1 It is a schematic view of the unfolded state of the scissors holder of the present application.
[0032] Figure 2 It is a schematic view of the folded state of the scissors holder of the present application.
[0033] Figure 3 It is a schematic view of the side structure of the bottom platform and the top platform of the present application.
[0034] Figure 4 It is a schematic view of the top view sectional structure of the acrylic glass shell of the present application.
[0035] Figure 5 It is a front view structural diagram of the yarn guide plate of the application.
[0036] Figure 6 It is a front view structural diagram of the yarn winding support of the application.
[0037] Figure 7 It is a perspective structural diagram of the acrylic glass shell of the application.
[0038] Figure 8 It is a structural diagram of the rotating disc of the application.
[0039] Figure 9 It is a perspective structural diagram of the driving bevel gear and driven bevel gear of the application.
[0040] Figure 10 It is a perspective structural diagram of the rotating disc of the application.
[0041] In the figure: 1, bottom platform; 2, caster; 3, top platform; 4, fixed support; 5, scissor frame; 6, roller; 7, C-shaped track; 8, hydraulic rod; 9, cross brace; 10, acrylic glass shell; 101, control panel; 102, button; 11, power transmission mechanism; 111, driving bevel gear; 112, rotating shaft; 113, driven bevel gear; 114, transmission shaft; 12, rotating disc; 13, yarn winding support; 14, connecting rod yarn guide mechanism; 141, sliding rail; 142, yarn guide plate; 143, outer yarn guide groove; 144, rotating disc; 145, connecting rod; 15, support seat; 16, motor; 17, inner yarn guide groove. DETAILED DESCRIPTION
[0042] The technical solutions in the embodiments of the application will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.
[0043] Embodiment one: please refer to Figures 1-6The application provides the following technical scheme: a movable and lifting type automatic outer yarn peeling device and method for glass fiber wet yarn, which comprises a bottom platform 1 moving in a workshop and a caster 2 installed at the lower end of the bottom platform 1, a top platform 3 is arranged above the bottom platform 1 and is lifted, a jacking mechanism is arranged between the bottom platform 1 and the top platform 3, an acrylic glass shell 10 is fixedly installed on the upper end surface of the top platform 3, a supporting seat 15 is fixed in the acrylic glass shell 10, a power transmission mechanism 11 is installed between the supporting seat 15 and the acrylic glass shell 10, a rotating disc 12 is connected to the power transmission mechanism 11, and a plurality of yarn winding supports 13 are fixed at equal angles on the end surface of the rotating disc 12 along the axial direction.
[0044] Please refer to Figures 1-3 The jacking mechanism comprises fixed supports 4 fixedly installed on the bottom platform 1 and the top platform 3, scissor frames 5 rotatably connected to the two fixed supports 4, rollers 6 rotatably installed at the ends of the scissor frames 5 away from the fixed supports 4, C-shaped tracks 7 fixedly installed on the bottom platform 1 and the top platform 3, and the rollers 6 at the upper and lower ends of the scissor frames 5 are slidably connected to the C-shaped tracks 7 above and below, respectively.
[0045] The device is pushed to the side of the yarn reel through the caster 2, the distance between the device and the yarn reel is kept within the range of 50-60 cm, the caster 2 is locked to fix the corresponding position of the device, a plurality of yarn groups are arranged on the yarn reel, each layer is provided with three yarn groups, the use height of the top platform 3 is adjusted according to the position of the yarn, the position of the cross brace 9 is adjusted by operating the hydraulic rod 8, at this time, the scissor frames 5 are cross-rotated, the upper and lower ends of the scissor frames 5 are rotatably connected to the fixed supports 4 above and below, respectively, and the end of the scissor frame 5 away from the fixed support 4 pushes the roller 6 to roll horizontally in the C-shaped track 7, with the rotation and unfolding or folding of the scissor frame 5, the top platform 3 can be pushed to move up and down above the bottom platform 1, so that the height position of the top platform 3 can be quickly and accurately adjusted and kept flush with the position of the yarn group on the yarn reel.
[0046] Please refer to Figures 4-9 On the basis of the embodiment one, the power transmission mechanism 11 and the connecting rod yarn guide mechanism 14 are further disclosed, and the specific structure is as follows: the power transmission mechanism 11 comprises a power umbrella gear 111 rotatably installed on the supporting seat 15, a rotating shaft 112 coaxially fixed on the end surface of the power umbrella gear 111, and the rotating shaft 112 is coaxially fixedly connected with the rotating disc 12; the power umbrella gear 111 is meshingly connected with a driven umbrella gear 113 on the side, the driven umbrella gear 113 is fixedly connected with a transmission shaft 114 at the end away from the power umbrella gear 111, and the transmission shaft 114 is rotatably connected to the inner wall of the acrylic glass shell 10.
[0047] Please refer to Figures 7-9 The motor 16 is fixedly installed on the support base 15, and the output end of the motor 16 is coaxially connected with the driving umbrella gear 111. The driven umbrella gear 113 is symmetrically provided with two groups inside the acrylic glass shell 10, and the acrylic glass shell 10 is symmetrically provided with the inner yarn guide groove 17 for guiding the yarn withdrawal on both sides. The control panel 101 and the control button 102 are installed on the acrylic glass shell 10.
[0048] Please refer to Figures 8-10 The link yarn guide mechanism 14 for controlling the yarn to be uniformly wound outside the yarn winding support 13 is provided on the outside of both sides of the acrylic glass shell 10, and the driven umbrella gear 113 provides power for the link yarn guide mechanism 14. The link yarn guide mechanism 14 comprises the slide rail 141 fixedly installed on the acrylic glass shell 10, the slide rail 141 is transversely and slidably connected with the yarn guide plate 142, and the yarn guide plate 142 is provided with the outer yarn guide groove 143 corresponding to the inner yarn guide groove 17. The rotary disc 144 is rotatably installed on the outside of the acrylic glass shell 10, and the rotary disc 144 is fixedly connected with the transmission shaft 114 eccentrically. The link rod 145 is rotatably connected with the yarn guide plate 142 at one end of the rotary disc 144 away from the transmission shaft 114, and the other end of the link rod 145 is rotatably connected with the yarn guide plate 142.
[0049] After adjusting the yarn withdrawal height, the outer part of the yarn group is found, and is pulled through the outer yarn guide groove 143 on the yarn guide plate 142 and the inner yarn guide groove 17 on the acrylic glass shell 10, and the yarn is wound on the yarn winding support 13. During the yarn withdrawal process, the motor 16 drives the driving umbrella gear 111, the driving umbrella gear 111 drives the rotary disc 12 through the rotating shaft 112, the yarn winding support 13 on the rotary disc 12 rotates circumferentially, the yarn is wound on the yarn winding support 13, and the purpose of mechanical yarn withdrawal is achieved.
[0050] The power umbrella gear 111 is connected with the driven umbrella gear 113 in meshing, and under the meshing transmission, the driven umbrella gear 113 and the transmission shaft 114 can be controlled to rotate, the transmission shaft 114 drives the rotating disc 144 outside the acrylic glass shell 10 to rotate, since the rotating disc 144 is connected with the transmission shaft 114 in eccentricity, the rotating disc 144 rotates around the axis direction of the transmission shaft 114, in the rotating process, the connecting rod 145 connected between the rotating disc 144 and the guide plate 142 rotates correspondingly at both ends, the rotating connecting rod 145 can push the guide plate 142 to slide transversely in the slide rail 141, in the transverse movement process, the guide plate 142 can drive the yarns inside to move transversely and reciprocally, so that the yarns can be uniformly arranged and wound outside the yarn winding support 13, which replaces the traditional manual yarn unwinding, the efficiency is 6 times higher than manual yarn unwinding, the labor intensity is greatly reduced, the wet yarn edge damage and deformation caused by manual operation are avoided, the quality of the later product is affected, and the outer layer of the yarn ball is peeled off quickly, efficiently and automatically.
[0051] A movable and lifting type automatic outer layer yarn peeling method of wet yarn of glass fiber, applied to the movable and lifting type automatic outer layer yarn peeling device of wet yarn of glass fiber, comprising the following steps:
[0052] S1, the automatic peeling device is moved to the side of the yarn reel, corresponding to the front of the yarn ball on the yarn reel, the yarn outside the yarn ball is found by hand, the distance between the automatic peeling device and the brake is kept at 50-60mm, and the caster 2 is locked.
[0053] S2, the position of the top platform 3 is adjusted by the jacking mechanism to be flush with the position of the corresponding layer of the yarn ball on the yarn reel, so as to avoid the abrasion of the edge of the yarn ball in the yarn unwinding.
[0054] S3, the door plate of the acrylic glass shell 10 is opened, the yarn outside the yarn ball is found and introduced into the acrylic glass shell 10, and the yarn is wound on the yarn winding support 13.
[0055] S4, the length of the unwound and peeled yarn is set, the yarn is unwound from the tail of the yarn ball, and the yarn is peeled off layer by layer, while the yarn is controlled to move reciprocally, so as to be uniformly arranged and wound on the yarn winding support 13.
[0056] S5, the yarn runs from one end of the yarn winding support 13 to the other end, the yarn behind covers the yarn in front, and the running is stopped when the set unwinding length is reached.
[0057] S6, after completing the peeling operation once, the height of the top platform 3 is adjusted again by the jacking mechanism, and the above steps are repeated to peel the yarn balls of different layers of the yarn reel.
[0058] The hydraulic lifting height of the top platform 3 in S2 is 180mm-600mm.
[0059] The rotating speed of the yarn winding support 13 in S4 is 200-500 rpm.
[0060] The reciprocating speed of the yarn guide plate 142 for controlling the yarn movement in S5 is 20-50 times / min.
[0061] In the description of the present application, it should be noted that unless specifically defined and limited, the terms "connected", "connection" should be understood in a broad sense, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0062] Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part of the technical features, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A movable, lifting type automatic outer layer yarn peeling device for glass fiber wet yarns, comprising a bottom platform (1) that moves in the workshop and a caster wheel (2) mounted at the lower end of the bottom platform (1), characterized in that: The top platform (3) is arranged above the bottom platform (1) in a lifting manner, and a jacking mechanism is arranged between the bottom platform (1) and the top platform (3); An acrylic glass shell (10) is fixedly installed on the upper end surface of the top platform (3), a support seat (15) is fixed in the acrylic glass shell (10), a power transmission mechanism (11) is installed between the support seat (15) and the acrylic glass shell (10), a rotating disc (12) is connected to the power transmission mechanism (11), and a plurality of yarn winding supports (13) are fixed at equal angles on the end surface of the rotating disc (12) along the axial direction.
2. A mobile, lifting, automatic outer layer yarn peeling device for glass fiber wet yarn according to claim 1, characterized in that: The jacking mechanism comprises fixed supports (4) fixedly installed on the bottom platform (1) and the top platform (3), and scissor frames (5) rotatably connected to the two fixed supports (4). Rollers (6) are rotatably installed at the ends of the scissor frames (5) away from the fixed supports (4). C-shaped tracks (7) are fixedly installed on the bottom platform (1) and the top platform (3), and the rollers (6) at the upper and lower ends of the scissor frames (5) are slidably connected in the upper and lower C-shaped tracks (7), respectively.
3. A mobile, lifting, automatic outer layer yarn peeling device for glass fiber wet yarn according to claim 2, characterized in that: A cross brace (9) is fixedly installed on one side of the scissor frame (5) close to the bottom platform (1). A hydraulic rod (8) is rotatably connected to the bottom platform (1), and the output end of the hydraulic rod (8) is rotatably connected to the cross brace (9).
4. A mobile, lifting, automatic outer layer yarn peeling device for glass fiber wet yarn according to claim 1, characterized in that: The power transmission mechanism (11) comprises a power umbrella gear (111) rotatably installed on the support seat (15), a rotating shaft (112) coaxially fixed to the end surface of the power umbrella gear (111), and the rotating shaft (112) is coaxially fixedly connected with the rotating disc (12). A driven umbrella gear (113) is meshingly connected to the side of the power umbrella gear (111), a transmission shaft (114) is fixedly connected to the end of the driven umbrella gear (113) away from the power umbrella gear (111), and the transmission shaft (114) is rotatably connected to the inner wall of the acrylic glass shell (10).
5. A mobile, lifting, automatic outer layer yarn peeling device for glass fiber wet yarn according to claim 4, characterized in that: A motor (16) is fixedly installed on the support seat (15), and the output end of the motor (16) is coaxially connected with the power umbrella gear (111).
6. A mobile, elevatable, glass fiber wet roving outer layer roving automatic uncoiler according to claim 4, characterized in that: Two groups of driven umbrella gears (113) are symmetrically arranged inside the acrylic glass shell (10), and inner yarn guide grooves (17) for guiding yarn withdrawal are symmetrically formed on the two sides of the acrylic glass shell (10). A control panel (101) and a control button (102) are installed on the acrylic glass shell (10).
7. A mobile, lifting, automatic outer layer yarn peeling device for glass fiber wet yarn according to claim 6, characterized in that: Linkage yarn guide mechanisms (14) for controlling the uniform winding of yarns outside the yarn winding supports (13) are arranged on the two sides of the acrylic glass shell (10), and the rotation of the driven umbrella gears (113) provides power for the linkage yarn guide mechanisms (14).
8. A mobile, lifting, automatic outer layer yarn peeling device for glass fiber wet yarn according to claim 7, characterized in that: The linkage yarn guide mechanism (14) comprises a sliding rail (141) fixedly installed on the acrylic glass shell (10), and a yarn guide plate (142) slidably connected in the sliding rail (141), and an outer yarn guide groove (143) corresponding to the inner yarn guide groove (17) is formed in the yarn guide plate (142).
9. A mobile, lifting, automatic outer layer yarn peeling device for glass fiber wet yarn according to claim 8, characterized in that: The outer rotation of the acrylic glass shell (10) is provided with a rotating disc (144), and the rotating disc (144) is fixedly connected with the transmission shaft (114) in an eccentric manner; The end of the rotating disc (144) away from the transmission shaft (114) is rotationally connected with a connecting rod (145) in an eccentric manner, and the other end of the connecting rod (145) is rotationally connected with the yarn guide plate (142).
10. A method of automatically stripping a removable, lifting, wet roving outer layer of glass fibers, characterized in that The application is applied to the movable and lifting type wet yarn outer layer yarn automatic peeling device of glass fiber, and comprises the following steps: S1, the automatic peeling device is moved to the near of the reel, the corresponding yarn group front surface on the reel is found, the outer yarn of the yarn group is manually found, the distance between the automatic peeling device and the brake is kept at 50-60mm, and the castor (2) is locked; S2, the position of the top platform (3) is adjusted by the jacking mechanism, so that it is flush with the position of the corresponding layer of yarn group on the reel, and the edge of the yarn group is prevented from being abraded during the unwinding of the yarn; S3, the door plate of the acrylic glass shell (10) is opened, the yarn on the outer yarn of the yarn group is guided into the acrylic glass shell (10), and the yarn is wound on the yarn winding support (13); S4, the unwinding and peeling yarn length is set, the yarn is unwound from the tail of the yarn group, the yarn is peeled layer by layer, and the reciprocating movement of the yarn is controlled, so that the yarn is uniformly arranged and wound on the yarn winding support (13); S5, the yarn runs from one end of the yarn winding support (13) to the other end, the rear layer covers the front layer, and the running is stopped when the set unwinding length is reached; S6, after completing the peeling operation once, the height of the top platform (3) is adjusted by the jacking mechanism, and the above steps are repeated to peel the yarn group of different layers of the reel.
Citation Information
Patent Citations
A new yarn unwinding device and a yarn unwinding method using the yarn unwinding device
CN103058009B
Creel moves back
CN208632758U
External yarn retreating inspection device
CN217997628U
Cited By
Chemical fiber material transferring and rotating equipment and transferring method
CN121609017A