A winding device

By designing a winding device that includes winding, clamping, feeding, and packaging mechanisms, the problem of low efficiency in manual packaging after automatic winding in textile production has been solved. This enables automatic packaging and rapid feeding, improving production efficiency and protecting the yarn rolls.

CN117361226BActive Publication Date: 2026-03-13TAIZHOU WEIQI PLASTIC MASCH TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-21
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

In textile production, the yarn that is automatically wound and then wound up requires manual packaging, which leads to low efficiency, easy contamination, and accumulation of unpackaged yarn spools.

Method used

Design a winding device that includes a winding, clamping, feeding, and packaging mechanism to achieve automatic packaging, improve efficiency, and prevent contamination.

Benefits of technology

It enables rapid packaging after winding, improves production efficiency, protects the wire coil material, and allows for rapid loading and unloading via a feeding mechanism.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention belongs to the field of textile technology, and particularly relates to a winding device, comprising: a housing, with an installation chamber formed inside the housing, the installation chamber including a left chamber, a right chamber and a lower chamber, and a processing channel provided on the upper side of the lower chamber of the housing; a processing mechanism, including a winding device and a clamping device, the winding device being provided in both the left and right chambers, and the clamping device being provided in the right chamber and mounted on the winding device; a feeding mechanism, including a lifting device, an upper ramp and a lower ramp, the lifting device being provided in the lower chamber, and a movable groove being formed on the top surface of the lower chamber corresponding to the lifting device, the upper ramp and the lower ramp being movably arranged on both sides of the processing channel; and a packaging mechanism, provided on the upper side of the housing, with a through groove provided on the upper side of the housing, the packaging mechanism being connected to the processing channel.
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Description

Technical Field

[0001] This invention belongs to the field of textile technology, and in particular relates to a winding device. Background Technology

[0002] In industries such as textiles, automatic winding machines are mostly used for winding operations, allowing one person to operate multiple machines.

[0003] However, in actual production, especially in yarn production enterprises at the source of textile production, after the yarn is wound and wrapped, it is necessary to package the wound yarn. The packaging process is often done manually. However, due to the high winding efficiency of yarn due to automatic winding, it is easy for a large number of yarn rolls to be unpackaged and piled up. The yarn rolls are also easily contaminated in this process. Therefore, we have specially designed a winding device. Summary of the Invention

[0004] The purpose of this invention is to address the aforementioned technical problems by providing a winding device that enables direct packaging after winding, thereby improving work efficiency.

[0005] In view of this, the present invention provides a winding device, comprising:

[0006] The housing has an installation chamber formed inside it. The installation chamber includes a left chamber, a right chamber, and a lower chamber. A processing channel is provided on the upper side of the lower chamber of the housing.

[0007] The processing mechanism includes a winding device and a clamping device. The winding device is installed in both the left and right chambers, and the clamping device is installed in the right chamber and on the winding device.

[0008] The feeding mechanism includes a lifting device, a loading ramp, and a unloading ramp. The lifting device is located in the lower chamber, and the top surface of the lower chamber has a movable groove corresponding to the lifting device. The loading ramp and the unloading ramp are movably located on both sides of the processing channel.

[0009] The packaging mechanism is located on the upper side of the machine housing, which has a through groove. The packaging mechanism is connected to the processing channel.

[0010] In the above technical solution, the winding device further includes:

[0011] The active unit includes a first connecting shaft, a first bearing housing, and a first motor. The first bearing housing is disposed on the wall of the left chamber and connected to the first connecting shaft. The first motor is disposed in the lower chamber and connected to the first motor shaft.

[0012] The driven part includes a second connecting shaft, a second bearing seat, and a ferrule. The ferrule is disposed on the second bearing seat, and the second connecting shaft is slidably connected to the ferrule groove.

[0013] A pulley assembly, comprising a pulley and a drive belt, wherein the pulley is disposed on both the first connecting shaft and the first motor shaft, and the drive belt connects the first motor shaft and the pulley on the first connecting shaft;

[0014] The first connecting shaft and the second connecting shaft extend into the processing channel and are concentrically arranged, and both the first connecting shaft and the second connecting shaft are provided with fixing components.

[0015] In the above technical solution, the fixing component further includes:

[0016] The fixing base includes a first fixing base and a second fixing base, and mounting holes are formed on the first fixing base and the second fixing base;

[0017] The rubber sleeve has a connecting protrusion formed on one side. After the connecting protrusion is connected to the mounting hole, the rubber sleeve is fitted onto the fixing seat. The surface of the rubber sleeve is rough.

[0018] The first fixed base is connected to the first connecting shaft through a mounting hole, and the second fixed base is connected to the second connecting shaft through a mounting hole.

[0019] In the above technical solution, the clamping device further includes:

[0020] The first hydraulic cylinder is installed on one side of the driven part and is connected to the first telescopic rod. The first telescopic rod drives the second connecting shaft to move along the sliding sleeve.

[0021] A miniature bearing housing is disposed at the end of the first telescopic rod and connected to the second rotating shaft.

[0022] In the above technical solution, the lifting device further includes:

[0023] The second hydraulic cylinder is located in the lower chamber and is connected to the second telescopic rod.

[0024] The pallet is arc-shaped and has anti-slip textures on its arc surface;

[0025] There are two second hydraulic cylinders, one at the front and one at the back, and they are connected to a support plate to form a lifting structure. The lifting structure has two sets on the left and right sides in the lower chamber and protrudes from the movable slot.

[0026] In the above technical solution, the packaging mechanism further includes:

[0027] The frame includes a first frame and a second frame, which are arranged on the upper side of the casing. Both the first frame and the second frame are provided with connection holes.

[0028] A fixed shaft is provided on the connection holes of both the first and second frames;

[0029] A membrane tube with a through hole, the two ends of which are connected to a first fixed shaft and a second fixed shaft;

[0030] The pad is positioned between the first frame and the second frame, and the end face of the pad is arc-shaped.

[0031] Sliding sleeves are provided on both the first connecting hole and the second connecting hole, and the first fixed seat and the second fixed shaft are movably connected to the sliding sleeves on the first connecting hole and the second connecting hole.

[0032] Furthermore, the above technical solution also includes:

[0033] The buffer mechanism includes a side frame and a rope traction device.

[0034] The side frame is set on both sides of the unloading ramp, and the side frame is equipped with a sliding groove with a slider.

[0035] Among them, the rope traction device is set on one side of the side frame, and the rope of the rope traction device is connected to the slider.

[0036] The slider forming has a locking structure on one end of the inner side of the side frame, and a connecting column is formed on one end of the outer side of the side frame. The connecting column is connected to the rope traction device.

[0037] In the above technical solution, the rope traction device further includes:

[0038] The winding frame includes a base, a fixed frame, and a motor mount. Two fixed frames are provided on the base, and the motor mount is provided on one side of the fixed frame.

[0039] A winding drum is set on a winding fixed frame. Drive shafts are formed on both sides of the winding drum and pass through the two fixed frames.

[0040] The second motor is mounted on a motor mount and connected to the drive shaft.

[0041] In the above technical solution, the positioning structure further includes:

[0042] right angle plate;

[0043] Shaft;

[0044] pallet;

[0045] The slider has an opening groove formed on one end inside the side frame, and a first shaft hole and a rectangular groove are provided on the opening groove. A second shaft hole is formed on the right-angle end of the right-angle plate. The rotating shaft is connected to the second shaft hole and the first shaft hole. The clamping plate is set on the rectangular groove and extends into the opening groove to abut against the right-angle plate.

[0046] In the above technical solution, the card further includes:

[0047] The elbow is equipped with bolts, and the slider wall has corresponding threaded holes. The bolts connect to the threaded holes, and the displacement of the clamping plate is controlled by the threaded engagement.

[0048] The beneficial effects of this invention are: rapid packaging after winding greatly improves production efficiency and protects the wire coil material; at the same time, the feeding mechanism can quickly load and unload materials, further improving production efficiency. Attached Figure Description

[0049] Figure 1 This is a schematic diagram of one side of the present invention;

[0050] Figure 2 This is a schematic diagram of another side of the invention;

[0051] Figure 3 This is a schematic diagram of the internal structure of the present invention;

[0052] Figure 4 This is a partial schematic diagram of the present invention;

[0053] Figure 5 This is a partial broken view of the present invention;

[0054] The markings in the diagram represent: 1. Housing; 2. Left chamber; 3. Right chamber; 4. Lower chamber; 5. Processing channel; 6. Winding device; 61. Driving unit; 611. First connecting shaft; 612. First bearing seat; 613. First motor; 62. Driven unit; 621. Second connecting shaft; 622. Second bearing seat; 623. Sleeve; 63. Pulley assembly; 631. Pulley; 632. Transmission belt; 7. Clamping device; 71. First hydraulic cylinder; 72. Miniature bearing seat; 8. Lifting device; 81. Second hydraulic cylinder; 82. Pallet; 9. Loading ramp; 10. Unloading ramp; 11. Movable groove; 12. Packing mechanism; 121. Frame; 1211. First frame 1212, Second frame; 122, Fixed shaft; 123, Membrane tube; 124, Pad; 13, Through groove; 14, Fixed assembly; 141, Fixed seat; 142, Rubber sleeve; 15, Mounting hole; 16, Side frame; 17, Slide groove; 18, Slider; 181, Opening groove; 182, Connecting column; 19, Rope traction device; 191, Winding frame; 1911, Base; 1912, Fixed frame; 1913, Motor base; 192, Winding tube; 193, Second motor; 20, Drive shaft; 21, Locking structure; 211, Right angle plate; 212, Rotating shaft; 213, Locking plate; 2131, Elbow; 22, Bolt; 23, Winding frame body. Detailed Implementation

[0055] The technical solutions of the embodiments of this application will be clearly described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application are within the scope of protection of this application.

[0056] Example 1:

[0057] This embodiment provides a wire take-up device, including:

[0058] The machine housing 1 has an installation chamber formed inside it. The installation chamber includes a left chamber 2, a right chamber 3 and a lower chamber 4. A processing channel 5 is provided on the upper side of the machine housing 1 of the lower chamber 4.

[0059] The processing mechanism includes a winding device and a clamping device 7. The winding device is installed in both the left chamber 2 and the right chamber 3, and the clamping device 7 is installed in the right chamber 3 and is mounted on the winding device.

[0060] The feeding mechanism includes a lifting device 8, a loading ramp 9, and a discharging ramp 10. The lifting device 8 is located in the lower chamber 4, and the loading ramp 9 and the discharging ramp 10 are movably arranged on both sides of the processing channel 5.

[0061] Packaging mechanism 12 is located on the upper side of the housing 1. The upper side of the housing 1 is provided with a through groove 13. Packaging mechanism 12 is connected to the processing channel 5.

[0062] As can be seen from this embodiment, a wire take-up device includes a housing 1, a processing device, a feeding mechanism, and a packaging mechanism 12;

[0063] The housing 1 has an installation chamber, which includes a left chamber 2, a right chamber 3 and a lower chamber 4. The lower chamber 4 is connected to the left chamber 2 and the right chamber 3. A processing channel 5 is formed on the housing 1 between the left chamber 2 and the right chamber 3 and on the upper side of the lower chamber 4. The housing 1 is provided with door panels corresponding to the left chamber 2, the right chamber 3 and the lower chamber 4 to facilitate maintenance.

[0064] The processing device includes a winding device and a clamping device 7. The winding devices are installed in both the left chamber 2 and the right chamber 3. The winding devices installed in the left chamber 2 and the right chamber 3 cooperate with each other to achieve the winding effect. The clamping device 7 is installed on the winding device in the right chamber 3 and assists the winding device in clamping the winding frame 23 (i.e., the frame used for winding) during processing. When in use, it is equipped with a wire laying and wire cutting device, which are purchased.

[0065] The feeding mechanism includes a lifting device 8, a feeding ramp 9, and a discharging ramp 10. The lifting device 8 is installed in the lower chamber 4, and a movable groove 11 is formed on the upper surface of the lower chamber 4. The lifting device 8 moves between the lower chamber 4 and the processing channel 5 through the movable groove 11, and at the same time plays a supporting role to prevent the processing channel 5 from collapsing. The feeding ramp 9 and the discharging ramp 10 are respectively set at both ends of the processing channel 5. When in use, the feeding ramp 9, the discharging ramp 10, and the lifting device 8 facilitate the conveying of the yarn after it has been wound on the winding frame 23, when the weight is large or the volume of the yarn itself is large.

[0066] The packaging mechanism 12 is installed on the top surface of the housing 1, and a through groove 13 is provided on the housing 1. In use, the packaging mechanism 12 packages the winding frame 23 with the spun yarn through the through groove 13, thereby reinforcing the winding frame 23 with the coil and preventing it from falling apart. The packaging also facilitates transportation.

[0067] Rapid packaging after winding greatly improves production efficiency, while the feeding mechanism can quickly load and unload materials, further enhancing production efficiency.

[0068] Example 2:

[0069] This embodiment provides a winding device, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0070] The winding device includes:

[0071] The active unit 61 includes a first connecting shaft 611, a first bearing seat 612, and a first motor 613. The first bearing seat 612 is disposed on the wall of the left chamber 2 and connected to the first connecting shaft 611. The first motor 613 is disposed in the lower chamber 4 and connected to the first motor 613 shaft.

[0072] Driven part 62 includes a second connecting shaft 621, a second bearing seat 622 and a sleeve 623. The sleeve 623 is disposed on the second bearing seat 622, and the second connecting shaft 621 is slidably connected to the slot.

[0073] The pulley 631 assembly 63 includes a pulley 631 and a transmission belt 632. The pulley 631 is provided on both the first connecting shaft 611 and the first motor 613 shaft. The transmission belt 632 connects the first motor 613 shaft and the pulley 631 on the first connecting shaft 611.

[0074] The first connecting shaft 611 and the second connecting shaft 621 extend into the processing channel 5 and are concentrically arranged, and both the first connecting shaft 611 and the second connecting shaft 621 are provided with fixing components 14.

[0075] As can be seen from this embodiment, the winding device includes an active part 61, a driven part 62, and a pulley 631 assembly 63;

[0076] The active unit 61 includes a first connecting shaft 611, a first bearing housing 612, and a first motor 613. The first bearing housing 612 is installed on the side wall of the left chamber 2 near the processing channel 5. The first connecting shaft 611 is connected to the first bearing housing 612. The first motor 613 is installed in the lower chamber 4, and a motor shaft is connected to the first motor 613. The motor shaft extends into the left chamber 2 and cooperates with the first connecting shaft 611 through the pulley 631 assembly 63.

[0077] The driven part 62 includes a second connecting shaft 621, a second bearing seat 622, and a retaining sleeve 623. The second bearing seat 622 is installed on the side wall of the right chamber 3 near the processing channel 5 and corresponds to the first bearing seat 612. The retaining sleeve 623 is connected to the second bearing seat 622. The retaining sleeve 623 fixes the second connecting shaft 621 to the second bearing seat 622, and the second connecting shaft 621 can be displaced along the retaining sleeve 623. At the same time, one end of the second connecting shaft 621 extending into the right chamber 3 is connected to the clamping device 7. In use, the clamping device 7 controls the second connecting shaft 621 to be displaced along the length direction of the retaining sleeve 623, and cooperates with the first connecting shaft 611 to fix the winding frame 23. The displacement length of the second connecting shaft 621 is adjusted according to the length of the winding frame 23.

[0078] The pulley 631 assembly 63 includes a pulley 631 and a transmission belt 632. The first connecting shaft 611 and the motor shaft are both equipped with pulleys 631 and are connected together by the transmission belt 632. In use, the motor controls the active part 61 to rotate through the pulley 631 and the transmission belt 632, thereby driving the clamped winding frame 23 to rotate and realize the winding work.

[0079] The active part 61, the driven part 62, and the clamping device 7 work together to quickly fix the winding frame 23, and can also install winding frames 23 of different lengths, improving practicality.

[0080] Example 3:

[0081] This embodiment provides a winding device, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0082] Fixing component 14 includes:

[0083] The fixing base 141 includes a first fixing base 141 and a second fixing base 141, and mounting holes 15 are formed on the first fixing base 141 and the second fixing base 141.

[0084] A rubber sleeve 142 has a connecting protrusion formed on one side. After the connecting protrusion is connected to the mounting hole 15, the rubber sleeve 142 is fitted onto the fixing seat 141. The surface of the rubber sleeve 142 is rough.

[0085] The first fixed base 141 is connected to the first connecting shaft 611 through the mounting hole 15, and the second fixed base 141 is connected to the second connecting shaft 621 through the mounting hole 15.

[0086] As can be seen from this embodiment, the fixing component 14 includes a fixing base 141 and a rubber sleeve 142;

[0087] The fixing base 141 includes a first fixing base 141 and a second fixing base 141. The first fixing base 141 and the second fixing base 141 have the same structure. Mounting holes 15 are formed on the end faces of the first fixing base 141 and the second fixing base 141. The mounting holes 15 extend through to the end face of the boss. A rubber sleeve 142 is connected to both the first fixing base 141 and the second fixing base 141. The rubber sleeve 142 is conical. A connecting protrusion is formed on one end face of the larger end of the rubber sleeve 142. After the connecting protrusion mates with the mounting hole 15, it mates with the first fixing base 141 and the second fixing base 141. The surface of the rubber sleeve 142 is rough, which makes it less likely to loosen after clamping.

[0088] In use, the lifting mechanism lifts the winding frame 23 and aligns it with the first connecting shaft 611. After the fixed seat 141 and the rubber sleeve 142 on the first connecting shaft 611 abut against the winding frame 23, the clamping device 7 controls the second connecting shaft 621 to move. The fixed seat 141 and the rubber sleeve 142 on the second connecting shaft 621 abut against the spinning frame and the coil frame abuts against the fixed seat 141 on the first connecting shaft 611. During the displacement process, the first connecting shaft 611 and the second connecting shaft 621 gradually fix the winding frame 23 through the fixed seat 141 and the rubber sleeve 142.

[0089] Example 4:

[0090] This embodiment provides a winding device, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0091] The clamping device 7 includes:

[0092] The first hydraulic cylinder 71 is installed on one side of the driven part 62 and is connected to the first telescopic rod. The first telescopic rod drives the second connecting shaft 621 to move along the sliding sleeve.

[0093] Miniature bearing housing 72 is disposed at the end of the first telescopic rod and connected to the second rotating shaft 212.

[0094] As can be seen from this embodiment, the clamping device 7 includes a first hydraulic cylinder 71 (telescopic hydraulic cylinder) and a miniature bearing seat 72. The first hydraulic cylinder 71 is installed on one side of the driven part 62, and a bracket 82 is formed on the wall of the housing 1 inside the right chamber 3. A first telescopic rod is provided on the first hydraulic cylinder 71, and a miniature bearing seat 72 is installed on the end of the first telescopic rod. The miniature bearing seat 72 is connected to one end of the second connecting shaft 621 inside the right chamber 3.

[0095] In use, the first hydraulic cylinder 71 controls the displacement of the second connecting shaft 621 through the first telescopic rod. At the same time, in order to prevent the first hydraulic cylinder 71 and the first telescopic rod from being affected by the winding of the winding device, and thus to maintain the normal operation of the winding device while achieving the locking effect, the winding device is also kept in operation.

[0096] Example 5:

[0097] This embodiment provides a winding device, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0098] The lifting device 8 includes:

[0099] The second hydraulic cylinder 81 is located in the lower chamber 4 and is connected to the second telescopic rod.

[0100] Bracket 82, the tray is arc-shaped, and the arc surface of the tray is provided with anti-slip texture;

[0101] Among them, there are two second oil cylinders 81 arranged in front and behind, and they are connected to a support plate to form a lifting structure. The lifting structure is arranged in two sets in the lower chamber 4 and protrudes from the movable groove 11.

[0102] As can be seen from this embodiment, the lifting device 8 includes a second hydraulic cylinder 81 and a support plate;

[0103] Four second hydraulic cylinders 81 are installed in a rectangular array in the lower chamber 4. Each of the four second hydraulic cylinders 81 is connected to a second telescopic rod. Two corresponding second hydraulic cylinders 81 along the width of the lower chamber 4 are simultaneously connected to a support plate, which is set at both ends of the support plate to form a lifting structure. The support plate is arc-shaped, which can effectively prevent the winding frame 23 from slipping during the process of lifting the winding frame 23.

[0104] During use, the lifting structure has two motion states:

[0105] First, the four second telescopic rods on the four second cylinders 81 of the two lifting structures are of the same length, and the winding frame 23 is cleared to achieve the effect of lifting and installation.

[0106] Second, the two second hydraulic cylinders 81 on the same side of the two lifting structures control the length of the second telescopic rod to be greater than the length of the two second hydraulic cylinders 81 on the other side, thereby tilting the winding frame 23 to achieve the material unloading effect.

[0107] Example 6:

[0108] This embodiment provides a winding device, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0109] Packaging mechanism 12 includes:

[0110] The frame 121 includes a first frame 1211 and a second frame 1212. The first frame 1211 and the second frame 1212 are arranged on the upper side of the housing 1 from the left and right. Both the first frame 1211 and the second frame 1212 are provided with connection holes.

[0111] The fixed shaft 122 includes a first fixed shaft 122 and a second fixed shaft 122. The first fixed shaft 122 is disposed on the first frame 1211, and the second fixed shaft 122 is disposed on the second frame 1212. The first fixed shaft 122 and the second fixed shaft 122 are concentrically arranged.

[0112] The fixed shaft 122 is provided on the connection holes on both the first frame 1211 and the second frame 1212;

[0113] The pad 124 is disposed between the first frame 1211 and the second frame 1212, and the end face of the pad 124 is arc-shaped.

[0114] Sliding sleeves are provided on both the first connecting hole and the second connecting hole, and the first fixed seat 141 and the second fixed shaft 122 are movably connected to the sliding sleeves on the first connecting hole and the second connecting hole.

[0115] As can be seen from this embodiment, the packaging mechanism 12 includes a frame 121, a fixed shaft 122, a membrane tube 123, and a pad 124;

[0116] The frame 121 includes a first frame 1211 and a second frame 1212. The first frame 1211 and the second frame 1212 are disposed on the upper side of the housing 1 and are corresponding to each other on the left and right. The first frame 1211 and the second frame 1212 are provided with connecting holes, and the connecting holes on the first frame 1211 and the second step are concentrically arranged. Sliding sleeves are connected to both connecting holes. The fixed shaft 122 is connected to the sliding sleeve and is fixed to the membrane cylinder 123 by sliding cooperation with the sliding sleeve, which also facilitates disassembly.

[0117] The membrane tube 123 (with membrane tube components, a product purchased from the market) has a through hole. The two ends of the through hole are connected to the first fixed shaft 122 and the second fixed shaft 122 to form the valley bottom, and the membrane tube 123 can rotate along the first fixed shaft 122 and the second fixed shaft 122.

[0118] The pad 124 is installed on the upper end face of the housing 1. The upper end face of the pad 124 is arc-shaped, which can prevent the membrane tube 123 from slipping during the process of fixing the membrane tube 123 to the first fixed shaft 122 and the second fixed shaft 122.

[0119] In use, the film tube 123 is placed on the upper side of the machine housing 1 and fixed by the first fixed shaft 122 and the second fixed shaft 122. The operator pulls the film out from the through groove 13 and after spinning and winding it on the winding frame 23, the film is fixed to the winding frame 23. Then the winding device is started. The winding device controls the winding frame 23 to rotate and winds the film to the outside of the winding frame 23 during the rotation, thereby achieving the packaging effect.

[0120] Example 7:

[0121] This embodiment provides a winding device, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0122] Also includes:

[0123] The buffer mechanism includes a side frame 16 and a rope traction device 19.

[0124] The side frame 16 is provided on both sides of the unloading ramp 10, and the side frame 16 is provided with a sliding groove 17, and the sliding groove 17 is provided with a slider 18.

[0125] Among them, the rope traction device 19 is set on one side of the side frame 16, and the rope of the rope traction device 19 is connected to the slider 18.

[0126] The slider 18 is formed inside the side frame 16 and has a baffle formed on one end above the material discharge ramp 10. The slider 18 is formed on one end outside the side frame 16 and has a connecting column 182. The connecting column 182 is connected to the rope traction device 19.

[0127] As can be seen from this embodiment, the buffer device includes a side frame 16 and a rope traction device 19;

[0128] Side frame 16 is installed on both sides of the unloading ramp 10. The side frame 16 forms a fence structure on both sides of the unloading ramp 10, which can prevent the winding frame 23 from falling off after the yarn is wound. The side frame 16 is formed with a groove 17, which is parallel to the slope of the unloading ramp 10. A slider 18 is connected to the groove 17. The slider 18 is located inside the side frame 16 and has a locking structure 21 installed on the end face of the upper side of the unloading ramp 10. The connecting post 182 at the other end of the slider 18 is connected to the rope traction device 19. The rope traction device 19 controls the movement of the winding frame 23 on the unloading ramp 10 by traction of the slider 18.

[0129] When in use, the locking structure 21 abuts against the winding frame 23 (the winding frame 23 after packaging) and allows it to pass slowly through the unloading ramp 10, thereby preventing the winding frame 23 from rolling down too fast, which could cause the yarn to break apart or injure people, thus playing a protective role.

[0130] Example 8:

[0131] This embodiment provides a winding device, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0132] The rope traction device 19 includes:

[0133] The winding frame 23 includes a base 1911, a fixed frame 1912 and a motor base 1913. Two fixed frames 1912 are provided on the base 1911, and the motor base 1913 is provided on one side of the fixed frame 1912.

[0134] A winding drum 192 is mounted on a winding fixing frame 1912. Drive shafts 20 are formed on both sides of the winding drum 192, and the drive shafts 20 pass through the two fixing frames 1912.

[0135] The second motor 193 is mounted on the motor base 1913 and connected to the drive shaft 20.

[0136] As can be seen from this embodiment, the rope traction device 19 includes a winding frame 23, a winding drum 192, and a second motor 193;

[0137] The winding frame 23 includes a base 1911, a fixed frame 1912, and a motor. Two fixed frames 1912 are symmetrically arranged on the left and right sides of the base 1911. The motor seat 1913 is located on one side of the fixed frame 1912. The winding drum 192 is connected to the fixed frame 1912, and a drive shaft 20 is connected to the winding drum 192. The drive shaft 20 passes through the fixed frames 1912 on both sides of the winding drum 192 and extends to the outside. The second motor 193 is mounted on the motor seat 1913 and is connected to the drive shaft 20 extending to one end of the fixed frame 1912 on the outside.

[0138] In use, a cable is wound on the winding drum 192, one end of which is connected to a fixed post. The second motor 193 drives the winding drum 192 to rotate, thereby causing the winding drum 192 to wind and unwind the cable. The slider 18 is pulled by the winding drum 192, and then controls the winding frame 23 to pass through the unloading ramp 10 in conjunction with the slider 18.

[0139] Example 9:

[0140] This embodiment provides a winding device, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0141] The card slot structure 21 includes:

[0142] Right angle plate 211;

[0143] Shaft 212;

[0144] Cardboard 213;

[0145] The slider 18 has an opening groove 181 formed on one end inside the side frame 16. The opening groove 181 is provided with a first shaft hole and a rectangular groove. The right-angle plate 211 has a second shaft hole formed on its right-angle end. The rotating shaft 212 is connected to the second shaft hole and the first shaft hole. The clamping plate 213 is set on the rectangular groove and extends into the opening groove 181 to abut against the right-angle plate 211.

[0146] As can be seen from this embodiment, the locking structure 21 includes a right-angle plate 211, a rotating shaft 212 and a locking plate 213, and one end of the slider 18 is provided with an opening slot 181, and a first shaft hole and a rectangular groove are formed on one side wall of the opening.

[0147] The right-angle plate 211 has a second shaft hole, and the rotating shaft 212 is connected to the second shaft hole. In use, the right-angle plate 211 is fitted into the opening slot 181, and the first shaft hole is aligned with the second shaft hole. It is then fixed by the rotating shaft 212. In use, one set of right-angle sides of the right-angle plate 211 is rotated to the upper side of the feeding ramp 10, and the clamping plate 213 is connected to the rectangular slot. The rectangular slot abuts against the other right-angle side of the right-angle plate 211 to achieve fixation and limit the winding frame 23. When it needs to be removed, only the clamping plate 213 needs to be pulled out.

[0148] Example 10:

[0149] This embodiment provides a winding device, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0150] Elbow 2131 is provided with bolts 22, and corresponding screw holes are formed on the wall of slider 18. Bolts 22 connect to screw holes and control the displacement of clamping plate 213 through threaded engagement.

[0151] As can be seen in this embodiment, the clamping plate 213 has an elbow 2131 formed on it, and a bolt 22 is connected to the elbow 2131. A screw hole is formed on one side of the first shaft hole on the slider 18. After the clamping plate 213 is connected to the rectangular groove, the bolt 22 is connected to the screw hole. Thus, the movement of the clamping plate 213 on the rectangular groove can be controlled by the threaded engagement between the bolt 22 and the screw hole, preventing the clamping plate 213 from being jammed and unable to be pulled out manually.

[0152] The embodiments of this application have been described above with reference to the accompanying drawings. Unless otherwise specified, the embodiments and features in the embodiments of this application can be combined with each other. This application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of this application without departing from the spirit and scope of the claims, and all of these forms are within the protection scope of this application.

Claims

1. A winding device, characterized in that, include: The housing (1) has an installation chamber formed inside it. The installation chamber includes a left chamber (2), a right chamber (3) and a lower chamber (4). The lower chamber (4) has a processing channel (5) on the upper side of the housing (1). The processing mechanism includes a winding device (6) and a clamping device (7). The winding device (6) is provided in both the left chamber (2) and the right chamber (3). The clamping device (7) is provided in the right chamber (3) and is provided on the winding device (6). The feeding mechanism includes a lifting device (8), a loading ramp (9) and a unloading ramp (10). The lifting device (8) is located in the lower chamber (4), and the top surface of the lower chamber (4) is formed with a movable groove (11) corresponding to the lifting device (8). The loading ramp (9) and the unloading ramp (10) are movably arranged on both sides of the processing channel (5). Packaging mechanism (12), the packaging mechanism (12) is located on the upper side of the housing (1), the upper side of the housing (1) is provided with a through groove (13), the packaging mechanism (12) is connected to the processing channel (5); Also includes: The buffer mechanism includes a side frame (16) and a rope traction device (19). The side frame (16) is provided on both sides of the unloading ramp (10), and the side frame (16) is provided with a sliding groove (17), and the sliding groove (17) is provided with a slider (18). The rope traction device (19) is located on one side of the side frame (16), and the rope of the rope traction device (19) is connected to the slider (18). The slider (18) is formed on one end of the side frame (16) with a locking structure (21), and the slider (18) is formed on one end of the side frame (16) with a connecting column (182), and the connecting column (182) is connected to the rope traction device (19). The rope traction device (19) includes: The winding frame (191) includes a base (1911), a fixed frame (1912), and a motor mount (1913). Two fixed frames (1912) are provided on the base (1911), and the motor mount (1913) is provided on one side of the fixed frame (1912). A winding drum (192) is mounted on a fixed frame (1912). Drive shafts (20) are formed on both sides of the winding drum (192), and the drive shafts (20) pass through the fixed frames (1912) on both sides. The second motor (193) is mounted on a motor mount (1913) and connected to a drive shaft (20). The card slot structure (21) includes: Right angle plate (211); Shaft (212); Cardboard (213); The slider (18) has an opening groove (181) formed on one end inside the side frame (16). The opening groove (181) is provided with a first shaft hole and a rectangular groove. The right-angle plate (211) has a second shaft hole formed on its right-angle end. The rotating shaft (212) is connected to the second shaft hole and the first shaft hole. The clamping plate (213) is provided on the rectangular groove and extends into the opening groove (181) to abut against the right-angle plate (211). The pallet (213) also includes: Elbow (2131), on which bolts (22) are provided, and screw holes are formed on the wall of the slider (18) respectively. The bolts (22) are connected to the screw holes and the displacement of the clamping plate (213) is controlled by the threaded engagement.

2. The winding device according to claim 1, characterized in that, The winding device (6) includes: The active part (61) includes a first connecting shaft (611), a first bearing seat (612) and a first motor (613). The first bearing seat (612) is disposed on the wall of the left chamber (2) and connected to the first connecting shaft (611). The first motor (613) is disposed in the lower chamber (4) and connected to the first motor shaft. Driven part (62), the driven part (62) includes a second connecting shaft (621), a second bearing seat (622) and a sleeve (623), the sleeve (623) is disposed on the second bearing seat (622), and the second connecting shaft (621) is slidably connected to the slot; The pulley assembly (63) includes a pulley (631) and a transmission belt (632). The pulley (631) is provided on both the first connecting shaft (611) and the first motor shaft. The transmission belt (632) connects the first motor shaft and the pulley (631) on the first connecting shaft (611). The first connecting shaft (611) and the second connecting shaft (621) extend into the processing channel (5) and are concentrically arranged, and both the first connecting shaft (611) and the second connecting shaft (621) are provided with fixing components (14).

3. A winding device according to claim 2, characterized in that, The fixing component (14) includes: The fixing base (141) includes a first fixing base and a second fixing base, and the first fixing base and the second fixing base are formed with mounting holes (15). A rubber sleeve (142) has a connecting protrusion formed on one side. After the connecting protrusion is connected to the mounting hole (15), the rubber sleeve (142) is fitted onto the fixing seat (141). The surface of the rubber sleeve (142) is rough. The first fixing seat is connected to the first connecting shaft (611) through the mounting hole (15), and the second fixing seat is connected to the second connecting shaft (621) through the mounting hole (15).

4. A winding device according to claim 3, characterized in that, The clamping device (7) includes: The first oil cylinder (71) is installed on one side of the driven part (62) and connected to a first telescopic rod. The first telescopic rod drives the second connecting shaft (621) to move along the sliding sleeve. Miniature bearing housing (72) is disposed at the end of the first telescopic rod and connected to the second rotating shaft (212).

5. A winding device according to claim 4, characterized in that, The lifting device (8) includes: The second oil cylinder (81) is located in the lower chamber (4) and is connected to a second telescopic rod. The tray (82) is arc-shaped and has anti-slip texture on its arc surface; Among them, there are two second oil cylinders (81) arranged in front and behind, and a support plate (82) is connected at the same time to form a lifting structure. The lifting structure is arranged in two sets in the lower chamber (4) and protrudes from the movable groove (11).

6. A winding device according to claim 5, characterized in that, The packaging organization (12) includes: The frame (121) includes a first frame (1211) and a second frame (1212). The first frame (1211) and the second frame (1212) are arranged on the upper side of the casing (1) from the left and right. Both the first frame (1211) and the second frame (1212) are provided with connection holes. A fixed shaft (122) is provided on the connecting holes on the first frame (1211) and the second frame (1212); A membrane tube (123) is provided with a through hole, and the two ends of the through hole are connected to the first fixed shaft (122) and the second fixed shaft (122); A pad (124) is disposed between the first frame (1211) and the second frame (1212), and the end face of the pad (124) is arc-shaped. Sliding sleeves are provided on both the first connecting hole and the second connecting hole, and the first fixed seat and the second fixed shaft (122) are movably connected to the sliding sleeves on the first connecting hole and the second connecting hole.

Citation Information

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