A zero-degree belt layer winding and conveying device

By designing a zero-degree belt winding conveying device including a winding assembly, a conveying assembly, a driving assembly, a guide assembly and an auxiliary assembly, the problem of low conveying and winding efficiency of the zero-degree belt layer in the prior art is solved, and efficient and convenient conveying and winding operations are achieved.

CN119038276BActive Publication Date: 2025-05-06DOUBLE COIN GRP JIANGSU TIRE
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Patent Information

Application Number
CN202411554778.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-04
Publication Date
2025-05-06
Estimated Expiration
2044-11-04

AI Technical Summary

Technical Problem

The existing winding conveying device is not convenient for auxiliary guidance conveying and winding of the zero-degree belt layer according to tire production needs, which affects the operation efficiency.

Method used

A zero-degree belt-layer winding conveying device including a winding assembly, a conveying assembly, a drive assembly, a guide assembly and an auxiliary assembly is designed. Through the coordinated work of components such as winding shaft, conveying roller shaft, servo motor, reducer, guide roller shaft and auxiliary roller, efficient conveying and winding of the zero-degree belt layer is achieved.

Benefits of technology

Through multiple components that work together, the device facilitates efficient transportation and winding of the zero-degree belt layer, improving operational convenience and efficiency, and avoiding deviation and dispersion of the zero-degree belt layer during the conveying process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of winding technology, and specifically to a zero-degree belt layer winding and conveying device, comprising an assembly base, a winding assembly is assembled on the right side of the assembly base, a conveying assembly is assembled on the left side of the assembly base, and a driving assembly is assembled on the rear sides of the winding assembly and the conveying assembly, guide assemblies are assembled on both sides of the conveying assembly, and an auxiliary assembly is assembled below the winding assembly; the winding assembly comprises a winding shaft, a rear upright plate is assembled on the rear side of the winding shaft, and the rear upright plate is fixed on the right rear side surface of the assembly base, a front bracket is assembled on the front side of the winding shaft, and the conveying assembly comprises an upper feed roller shaft and a lower feed roller shaft; the present invention conveys and winds the zero-degree belt layer through the winding assembly and the conveying assembly, making the operation more convenient, and at the same time, the conveying angle and width are fine-tuned through the guide assembly, which is convenient for maintenance and prevention of deviation during conveying and winding, making the operation more convenient.
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Description

Technical Field

[0001] The invention relates to the technical field of winding, and in particular to a zero-degree belt layer winding and conveying device. Background Art

[0002] The zero-degree belt layer is an important part of the tire structure. The zero-degree belt layer is also called the zero-degree belt, which is usually composed of steel cord or other high-strength materials. Its main function is to enhance the circumferential rigidity of the tire, reduce the deformation of the tire during driving, and improve the handling stability, wear resistance and high-speed performance of the tire. It has the effects of enhancing the strength of the tire, stabilizing the shape of the tire, and improving the handling performance. During production and processing, a winding conveyor device is usually required to assist in winding and releasing the conveying material, so as to facilitate subsequent processing and production;

[0003] In this regard, China's patent application number: CN202311389064.0 discloses a winding and conveying device for polyester yarn, which relates to the technical field of polyester yarn, including a frame, a conveying assembly is provided on the top of the frame, and the conveying assembly includes a first support plate, the first support plate is fixedly installed at one end of the top of the frame, and a second support plate is fixedly installed at the other end of the top of the frame, a group of first rotating shafts are rotatably connected between the first support plate and the second support plate, and a conveyor belt is slidably connected to the outside of the first rotating shaft, and a winding assembly is provided on the top of the first support plate and the second support plate, and the winding assembly includes a first connecting plate, and an electric-controlled telescopic rod is rotatably connected to the inside of the first connecting plate, and an elastic limit pin is provided on the extension rod of the electric-controlled telescopic rod, and a winding roller is connected to the outer sleeve of the elastic limit pin;

[0004] However, the existing winding and conveying device is not convenient for assisting the conveying and winding of the zero-degree belt layer according to the tire production needs, which affects the operation efficiency;

[0005] Therefore, in order to solve the above problems, a zero-degree belt layer winding and conveying device is proposed. Summary of the invention

[0006] The purpose of the present invention is to provide a zero-degree belt layer winding and conveying device to solve the problem that the existing winding and conveying device mentioned in the above background technology is inconvenient to assist in guiding, conveying and winding the zero-degree belt layer according to the needs of tire production, thereby affecting the operation efficiency.

[0007] To achieve the above object, the present invention provides the following technical solutions: a zero-degree belt layer winding and conveying device, comprising an assembly base, a winding assembly is assembled on the right side of the assembly base, a conveying assembly is assembled on the left side of the assembly base, and a driving assembly is assembled on the rear side of the winding assembly and the conveying assembly, guide assemblies are assembled on both sides of the conveying assembly, and an auxiliary assembly is assembled below the winding assembly;

[0008] The winding assembly includes a winding shaft, a rear vertical plate is installed on the rear side of the winding shaft, and the rear vertical plate is fixed to the right rear side surface of the assembly base, a front bracket is installed on the front side of the winding shaft, the conveying assembly includes an upper output roller shaft and a lower output roller shaft, and the front and rear ends of the upper output roller shaft and the lower output roller shaft are equipped with an assembly door frame through a bearing sleeve, the rear ends of the upper output roller shaft and the lower output roller shaft are respectively fixed with an upper gear and a lower gear, and the upper gear and the lower gear are meshed with each other, the driving assembly includes a servo motor and a reducer, and the reducer is installed At the output end of the servo motor, an output shaft is fixed inside the reducer, and the output shaft is connected to the rear end of the winding shaft through a coupling, a transmission wheel is fixed to the rear end of the winding shaft, a driven wheel is fixed to the rear end of the upper output roller shaft, and the driven wheel and the transmission wheel are connected for transmission through a transmission belt sleeve, and the guide assembly includes an assembly side seat, and two groups of guide rollers are installed between the two groups of the assembly side seats, and the side of the assembly side seat is hinged to the upper part of the assembly door frame through a fine-tuning rotating rod, and a lower telescopic rod is supported below the fine-tuning rotating rod.

[0009] As a further improvement of this solution, the rear end of the winding shaft is supported by a seat bearing, and the seat bearing is fixed on the side wall surface of the rear vertical plate, and the bottom of the servo motor and the reducer are supported by a support seat, and the support seat is supported on the right rear surface of the winding assembly, and the bottom of the front bracket is integrally provided with a bracket base plate, and an upper card is fixed on the right front side of the assembly base, and the upper card is clamped on the two side surfaces of the bracket base plate, and the right front side surface of the assembly base is provided with an inner card groove corresponding to the bracket base plate.

[0010] As a further embodiment of the present invention, the surface of the winding shaft is sleeved with an inner drum, and a side retaining ring disk is integrally provided on the rear side of the inner drum, the outer wall cross-section of the inner drum is hexagonal, the outer wall of the inner drum is sleeved with a winding drum, a side vertical plate is installed on the upper outside of the side retaining ring disk, and the rear side of the side vertical plate is assembled to the upper front part of the rear vertical plate through an assembly column.

[0011] As a further improvement of the present invention, the surfaces of the upper and lower output roller shafts are both covered with inner soft sleeves, and the outer sleeves are covered with outer sleeves outside the inner soft sleeves. The front and rear ends of the inner soft sleeves and the outer sleeves are fixed to the side ends of the upper and lower output roller shafts by screws, and the middle of the outer sleeves is higher than the front and rear sides.

[0012] As a further embodiment of the present invention, an outer hinge seat is fixed to the side wall of the assembly side seat, an inner hinge seat is fixed to the upper side of the assembly door frame, and both ends of the fine-tuning rotating rod are hinged to the outer hinge seat and the inner hinge seat, and the locking bolt and the side end of the fine-tuning rotating rod are assembled by inserting the locking bolt.

[0013] As a further embodiment of the present invention, the lower end of the lower telescopic rod is hinged with a lower hinge seat, and the lower hinge seat is assembled to the lower side of the assembly door frame by bolts, and the upper end of the lower telescopic rod is hinged with an upper hinge seat, and the upper hinge seat is assembled to the lower part of one end of the fine-tuning rotating rod close to the locking bolt by bolts.

[0014] As a further feature of this solution, two groups of guide assemblies are symmetrically assembled on both sides of the conveying assembly, the side ends of the guide roller shafts and the interior of the assembly side seats are movably assembled through bearings, and the outer walls of the guide roller shafts are equipped with guide rollers.

[0015] As a further improvement of the present invention, a limit baffle is provided on the external suspended sleeve of the guide roller shaft, and support screws are inserted at both ends of the two groups of limit baffles. Support side columns are fixed at both ends of the support screws, and the support side columns are fixed on the top of the assembly side seat. Limit nuts are provided on both sides of the limit baffle, and the two groups of limit nuts are threadedly sleeved on the surface of the support screw.

[0016] As a further embodiment of the present invention, the auxiliary component includes an auxiliary roller, an inner roller shaft is inserted inside the auxiliary roller, and a lifting slider is fixed to the rear end of the inner roller shaft, the lifting slider is assembled in the lower center of the rear vertical plate, and a through groove corresponding to the lifting slider is opened in the lower center of the rear vertical plate, a rear slide is inserted through the lifting slider, a support spring is sleeved on the surface of the rear slide, and the support spring is located between the lifting slider and the assembly base.

[0017] As a further feature of this solution, the four groups of rear slides are inserted in an array around the lifting slider, and an inner bearing is filled and installed between the inner wall of the auxiliary roller and the outer wall of the inner roller shaft, and the front end of the inner roller shaft is arranged in an arc-shaped hemisphere.

[0018] Compared with the prior art, the present invention has the following beneficial effects:

[0019] 1. By setting up the winding assembly and the conveying assembly, under the support of the rear vertical plate and the front bracket, it is convenient to assemble the reel through the winding shaft for reeling or releasing. At the same time, under the cooperation of the upper and lower conveying roller shafts, through the cooperation of the upper and lower gears, the upper and lower conveying roller shafts rotate in opposite directions to each other, so that the upper and lower conveying roller shafts clamp the zero-degree belt layer for conveying and transmission, so as to facilitate the conveying and reeling of the zero-degree belt layer, making the operation more convenient and efficient. Through this design, it is beneficial to the conveying and reeling of the zero-degree belt layer winding and conveying device;

[0020] 2. By setting the driving assembly, with the cooperation of the servo motor and the reducer, it is convenient to drive the winding shaft to rotate through the output shaft and the coupling, and at the same time, the upper conveying roller shaft is driven to rotate through the cooperation of the driving wheel, the driving belt and the driven wheel, so that the winding assembly and the conveying assembly are convenient for synchronous winding and conveying, making the operation more convenient and efficient, and easy to maintain uniform speed conveying and winding, making the operation safer and more convenient. Through this design, it is conducive to the conveying and winding of the zero-degree belt layer winding and conveying device;

[0021] 3. By setting the guide assembly, when the conveying assembly and the winding assembly are conveying and winding, the cooperation of the assembly side seat and the guide roller shaft is convenient to guide the zero-degree belt layer in and out through the two sets of guide roller shafts during feeding and unloading. At the same time, with the cooperation of the fine-tuning rotating rod and the lower support telescopic rod, it is convenient to fine-tune the support according to the incoming material and the conveying angle, so that the guiding in and out angle is more convenient, and it is not easy to cause a sharp angle, making the conveying more convenient. In addition, with the cooperation of the limit baffle, it is convenient to limit the guide according to the width of the zero-degree belt layer during feeding guidance, so as to avoid conveying and winding deviation, making the operation more convenient and stable. This design is conducive to the conveying and winding of the zero-degree belt layer winding conveying device;

[0022] 4. While designing the above structure, through the auxiliary component, with the cooperation of the auxiliary resistance roller and the inner roller shaft, it is convenient to resist the bottom of the winding component, that is, when the winding component is wound, the auxiliary resistance roller and the inner roller shaft are used to resist and smooth its bottom to prevent it from spreading, and with the cooperation of the lifting slider and the rear slide, through the elastic force of the supporting spring, it is convenient to automatically lift and lower in accordance with the thickness of the continuous winding of the winding component, that is, when it gradually becomes thicker, the bottom of the outer wall of the winding is used to resist the auxiliary resistance roller, so that the lifting slider is lowered, and under the elastic force of the supporting spring, an upward supporting force is provided, so that the auxiliary resistance roller is easy to fit the bottom of the winding, making the operation more convenient. Through this design, it is beneficial to the conveying and winding of the zero-degree belt layer winding conveying device. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. 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 paying creative work.

[0024] Figure 1 It is a front view stereoscopic schematic diagram of the overall structure of the present invention;

[0025] Figure 2 It is a rear perspective schematic diagram of the overall structure of the present invention;

[0026] Figure 3 It is a side perspective schematic diagram of the local structure of the conveying assembly and the guiding assembly of the present invention;

[0027] Figure 4 It is a front view cross-sectional perspective schematic diagram of the local structure of the conveying assembly and the guiding assembly of the present invention;

[0028] Figure 5 It is a side perspective schematic diagram of the local structure of the winding assembly of the present invention;

[0029] Figure 6It is a side cross-sectional perspective schematic diagram of the local structure of the winding assembly and the driving assembly of the present invention;

[0030] Figure 7 It is a front view cross-sectional perspective schematic diagram of a local structure of a winding assembly of the present invention;

[0031] Figure 8 It is a top view cross-sectional stereoscopic schematic diagram of the overall structure of the present invention.

[0032] In the figure: 100, assembly base; 200, winding assembly; 201, bearing with seat; 210, winding shaft; 211, inner drum; 212, side retaining ring plate; 213, winding drum; 214, side vertical plate; 215, assembly column; 220, rear vertical plate; 230, front bracket; 231, bracket bottom plate; 232, upper card; 233, inner card slot; 300, conveying assembly; 310, upper conveying roller shaft; 311, upper gear; 320, lower conveying roller shaft; 321, lower gear; 330, assembly door frame; 340, inner soft sleeve; 341, outer sleeve; 400, driving assembly; 401, support seat; 410, servo motor; 420, reducer; 421, conveying Output shaft; 422, coupling; 430, transmission wheel; 431, transmission belt; 432, driven wheel; 500, guide assembly; 510, assembly side seat; 520, guide roller shaft; 521, guide roller; 530, fine-tuning rotating rod; 531, outer hinge seat; 532, inner hinge seat; 533, locking bolt; 540, lower telescopic rod; 541, lower hinge seat; 542, upper hinge seat; 550, limiting baffle; 551, supporting screw; 552, supporting side column; 553, limiting nut; 600, auxiliary assembly; 610, auxiliary roller; 620, inner roller shaft; 621, inner bearing; 630, lifting slider; 640, rear slide; 650, supporting spring. DETAILED DESCRIPTION

[0033] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions 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 of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0034] See also Figure 1-Figure 8 The present invention provides an embodiment: a zero-degree belt layer winding and conveying device, comprising an assembly base 100, a winding assembly 200 is assembled on the right side of the assembly base 100, a conveying assembly 300 is assembled on the left side of the assembly base 100, and a driving assembly 400 is assembled on the rear side of the winding assembly 200 and the conveying assembly 300, guide assemblies 500 are assembled on both sides of the conveying assembly 300, and an auxiliary assembly 600 is assembled below the winding assembly 200;

[0035] The winding assembly 200 includes a winding shaft 210, a rear vertical plate 220 is installed on the rear side of the winding shaft 210, and the rear vertical plate 220 is fixed to the right rear side surface of the assembly base 100, and a front bracket 230 is installed on the front side of the winding shaft 210. The conveying assembly 300 includes an upper output roller shaft 310 and a lower output roller shaft 320, and the front and rear ends of the upper output roller shaft 310 and the lower output roller shaft 320 are equipped with an assembly door frame 330 through a bearing sleeve, and the rear ends of the upper output roller shaft 310 and the lower output roller shaft 320 are respectively fixed with an upper gear 311 and a lower gear 321, and the upper gear 311 and the lower gear 321 are meshed with each other. The driving assembly 400 includes a servo motor 410 and a reducer 420, and the reducer 420 is installed at the output end of the servo motor 410, and an output shaft 421 is fixed inside the reducer 420, and the output shaft 421 is connected to the rear end of the winding shaft 210 through a coupling 422 Then, a driving wheel 430 is fixed to the rear end of the winding shaft 210, and a driven wheel 432 is fixed to the rear end of the upper feed roller shaft 310, and the driven wheel 432 and the driving wheel 430 are connected and transmitted by a transmission belt 431. The guide assembly 500 includes an assembly side seat 510, and two groups of guide roller shafts 520 are installed between the two groups of assembly side seats 510. The side of the assembly side seat 510 is hinged to the upper part of the assembly door frame 330 through a fine-tuning rotating rod 530, and a lower supporting telescopic rod 540 is supported below the fine-tuning rotating rod 530. Through this design, during winding and conveying, the guide assembly 500 guides the inlet and outlet materials, and then inserts into the interior of the conveying assembly 300, and the zero-degree belt layer is clamped and conveyed with the cooperation of the upper feed roller shaft 310 and the lower feed roller shaft 320, and further, it is wound with the cooperation of the winding shaft 210, so as to facilitate the completion of the conveying and winding operation;

[0036] As a more detailed description of this embodiment, the rear end of the winding shaft 210 is supported by a seat bearing 201, and the seat bearing 201 is fixed on the side wall surface of the rear vertical plate 220, and the bottom of the servo motor 410 and the reducer 420 are supported by a support seat 401, and the support seat 401 is supported on the right rear side surface of the winding assembly 200, and a bracket bottom plate 231 is integrally provided at the bottom of the front bracket 230, an upper card 232 is fixed on the right front side of the assembly base 100, and the upper card 232 is clamped on the two side surfaces of the bracket bottom plate 231, and an inner card groove 233 corresponding to the bracket bottom plate 231 is opened on the right front side surface of the assembly base 100, and an inner rotating drum 211 is mounted on the surface of the winding shaft 210, and the rear side of the inner rotating drum 211 is The body is provided with a side retaining ring disk 212, the outer wall cross section of the inner rotating drum 211 is hexagonal, the outer wall of the inner rotating drum 211 is sleeved with a winding drum 213, and a side vertical plate 214 is installed on the upper part of the front side of the rear vertical plate 220 through an assembly column 215. During operation, the stable support of the support seat 401 and the seat bearing 201 facilitates stable transmission. At the same time, under the arrangement of the inner rotating drum 211, the side retaining ring disk 212 and the winding drum 213, it is convenient to assemble and replace the reel, making winding more convenient. At the same time, under the support and assembly of the front bracket 230, it is also convenient to provide stable support during winding, and quickly disassemble when taking it out, making the operation more convenient.

[0037] As a more detailed description of this embodiment, the surfaces of the upper roller shaft 310 and the lower roller shaft 320 are both sleeved with an inner soft sleeve 340, and the outer sleeve 341 is sleeved on the outside of the inner soft sleeve 340. The front and rear ends of the inner soft sleeve 340 and the outer sleeve 341 are fixed to the side ends of the upper roller shaft 310 and the lower roller shaft 320 by screws, and the middle of the outer sleeve 341 is higher than the front and rear sides. Through this design, it is convenient to maintain the outer cover of the upper roller shaft 310 and the lower roller shaft 320, making it more convenient to clamp and transport, and it is convenient to maintain the zero-degree belt layer, and it is not easy to cause extrusion damage during clamping and transporting;

[0038] As a more detailed example of this embodiment, an outer hinge seat 531 is fixed to the side wall of the assembly side seat 510, an inner hinge seat 532 is fixed to the upper side of the assembly door frame 330, and both ends of the fine-tuning rotating rod 530 are hinged to the outer hinge seat 531 and the inner hinge seat 532, and the locking bolt 533 and the side end of the fine-tuning rotating rod 530 are assembled by inserting the locking bolt 533, the lower end of the lower support telescopic rod 540 is hinged to the lower hinge seat 541, and the lower hinge seat 541 is assembled to the lower part of the side of the assembly door frame 330 by bolts, and the lower support telescopic rod The upper end of 540 is hinged with an upper hinge seat 542, and the upper hinge seat 542 is assembled to the lower part of one end of the fine-tuning rotating rod 530 near the locking bolt 533 by bolts. The two sets of guide assemblies 500 are symmetrically assembled on both sides of the conveying assembly 300. The side ends of the guide roller shaft 520 and the inside of the assembly side seat 510 are movably assembled through bearings. The outer wall of the guide roller shaft 520 is equipped with a guide roller 521. The outer part of the guide roller shaft 520 is suspended with a limit baffle 550. The upper and lower ends of the two sets of limit baffles 550 are inserted with support The support screw 551 has support side columns 552 fixed at both ends of the support screw 551, and the support side columns 552 are fixed on the top of the assembly side seat 510. Limiting nuts 553 are arranged on both sides of the limiting baffle 550. Two sets of limiting nuts 553 are threadedly sleeved on the surface of the support screw 551. Through this design, it is convenient to guide the zero-degree belt layer when it is fed in and out. At the same time, with the cooperation of the limiting baffle 550 and the support screw 551, it is convenient to adjust the distance between the two sets of limiting baffles 550, so as to facilitate the adjustment according to the Its width is adapted, and according to the incoming material angle, it is raised and lowered by fine-tuning the rotating rod 530 and the lower telescopic rod 540, so that the relative height of the guide component 500 and the conveying component 300 is changed, which is convenient for adjusting the height of the feed and conveying trajectory, making the operation more convenient, and after the adjustment, it is convenient to tighten the locking bolt 533, so that the guide component 500 is limitedly supported under the cooperation of the external hinge seat 531 and the fine-tuning rotating rod 530, which is convenient for subsequent stable guidance.

[0039] As a more detailed example of this embodiment, the auxiliary component 600 includes an auxiliary roller 610, an inner roller shaft 620 is inserted inside the auxiliary roller 610, and a lifting slider 630 is fixed to the rear end of the inner roller shaft 620, the lifting slider 630 is assembled in the lower center of the rear vertical plate 220, and a through groove corresponding to the lifting slider 630 is opened in the lower center of the rear vertical plate 220, a rear slide 640 is inserted through the lifting slider 630, a support spring 650 is sleeved on the surface of the rear slide 640, and the support spring 650 is located between the lifting slider 630 and the assembly base 100, four groups of rear slides 640 are inserted around the lifting slider 630 in an array, and the auxiliary An inner bearing 621 is filled and installed between the inner wall of the resist roller 610 and the outer wall of the inner roller shaft 620, and the front end of the inner roller shaft 620 is set in an arc-shaped hemispherical shape. Through this design, it is convenient to assist in pressing the winding assembly 200 during winding, so that the winding assembly 200 remains close during winding to avoid accidental dispersion. Through the elastic force of the support spring 650, the inner roller shaft 620 and the auxiliary resist roller 610 are supported with the cooperation of the rear slide 640 and the lifting slider 630, so that the auxiliary resist roller 610 is easy to press against it, and when winding, the auxiliary resist roller 610 can be pressed down by continuously increasing its thickness without hindering the winding, making the operation more convenient.

[0040] Working principle: During operation, the front bracket 230 is pulled forward, so that the winding shaft 210 can be easily sleeved with the corresponding winding drum 213 under the cooperation of the inner rotating drum 211 and the side retaining ring plate 212, so as to facilitate the subsequent winding of the zero-degree belt layer, and it is inserted into between the guide rollers 520 of the guide assembly 500 on the left side, and then passes through the upper output roller shaft 310 and the lower output roller shaft 320 inside the conveying assembly 300, and inserts into between the guide rollers 520 of the guide assembly 500 on the right side of the conveying assembly 300, and is wound around the outer wall of the winding drum 213, and the servo motor 410 is driven to rotate forward, so that the reducer 420 drives the winding shaft 210 to rotate counterclockwise, thereby The upper feed roller shaft 310 is driven to rotate under the cooperation of the driving wheel 430, the driving belt 431 and the driven wheel 432, so that the upper feed roller shaft 310 drives the lower feed roller shaft 320 to rotate in the opposite direction under the cooperation of the upper gear 311 and the lower gear 321, so that the upper feed roller shaft 310 and the lower feed roller shaft 320 clamp and convey the incoming material, convey it toward the winding assembly 200, and cooperate with the winding shaft 210 to wind it, making the operation more convenient, so as to facilitate synchronous conveying and winding, making the operation more convenient, and facilitating the conveying, winding and storage of the zero-degree belt layer during production. During conveying, it is guided by the guide assemblies 500 on both sides of the conveying assembly 300, so that the conveying is more stable and convenient;

[0041] The corresponding zero-degree belt layer can also be wound on the surface of the winding shaft 210 in cooperation with the inner drum 211 and the side retaining ring disk 212, and at the same time, one end is pulled from the right to the left, and is led out and conveyed through the guide assembly 500 on the right, the conveying assembly 300 and the guide assembly 500 on the left in sequence, that is, the servo motor 410 is driven to reverse, so that the reducer 420 drives the winding shaft 210 to rotate clockwise, and at the same time, the upper feed roller shaft 310 is driven to rotate clockwise in cooperation with the transmission wheel 430, the transmission belt 431 and the driven wheel 432, so as to realize the unwinding and releasing of the zero-degree belt layer, and the unwinding and released zero-degree belt layer is conveyed to the left side through the clamping of the conveying assembly 300, so as to facilitate the supply during processing;

[0042] During operation, the two sets of limit baffles 550 are slidably adjusted with the cooperation of the support screw 551 to adjust the distance between them, and then the limit nut 553 is tightened to limit the position, so that the distance between the limit baffles 550 is consistent with the width of the zero-degree belt layer, which is convenient for limited transportation as needed. At the same time, under the extension and contraction of the lower telescopic rod 540, the lower hinge seat 541 and the upper hinge seat 542 cooperate to facilitate the support of the guide assembly 500 with the fine-adjustment rotating rod 530, so that the height difference between the guide assembly 500 and the conveying assembly 300 changes, which is convenient for guiding and conveying as needed, and is convenient for conveying and pulling damage caused by the difference in conveying angles. At the same time, with the cooperation of the locking bolt 533, it is convenient to tighten the external hinge seat 531 and the fine-adjustment rotating rod 530, so as to facilitate the angle adjustment and limit of the fine-adjustment rotating rod 530 and the assembly side seat 510, making the operation more convenient.

[0043] During operation, with the cooperation of the auxiliary component 600, no matter when winding or releasing the zero-degree belt layer, it is convenient to limit the resistance under the roll group to avoid its excessive dispersion. Through the cooperation of the support spring 650, it is convenient to support the inner roller shaft 620 and the auxiliary resistance roller 610 to fit under the roll group with the cooperation of the rear slide 640 and the lifting slider 630. At the same time, under the elastic force of the support spring 650, its rotation, release and winding are not hindered. When winding, it is convenient to relatively smooth the winding. When the winding gradually becomes thicker, its outer diameter gives pressure to the auxiliary resistance roller 610 to make it drop, and with the cooperation of the inner bearing 621, it is convenient to assist the rotation, making the operation more convenient.

[0044] The above description is only a preferred embodiment of the present invention and does not limit the present invention in any form. Any ordinary technician in the industry can smoothly implement the present invention as shown in the drawings and described above. However, any equivalent changes, modifications and evolutions made by technicians familiar with the profession without departing from the scope of the technical solution of the present invention using the technical content disclosed above are all equivalent embodiments of the present invention. At the same time, any equivalent changes, modifications and evolutions made to the above embodiments based on the essential technology of the present invention are still within the protection scope of the technical solution of the present invention.

Claims

1. A zero-degree belt layer winding and conveying device, comprising an assembly base (100), a winding assembly (200) being assembled on the right side of the assembly base (100), a conveying assembly (300) being assembled on the left side of the assembly base (100), a driving assembly (400) being assembled on the rear sides of the winding assembly (200) and the conveying assembly (300), guide assemblies (500) being assembled on both sides of the conveying assembly (300), and an auxiliary assembly (600) being assembled below the winding assembly (200); Features: The winding assembly (200) comprises a winding shaft (210), a rear vertical plate (220) is mounted on the rear side of the winding shaft (210), and the rear vertical plate (220) is fixed to the right rear side surface of the assembly base (100), and a front bracket (230) is mounted on the front side of the winding shaft (210), and the conveying assembly (300) comprises an upper delivery roller shaft (310) and a lower delivery roller shaft (320), and the upper delivery roller shaft (310) and the lower delivery roller shaft (320) are mounted with an assembly door frame (330) at their front and rear ends through bearing sleeves, and the upper delivery roller shaft (310) and the lower delivery roller shaft (320) are respectively fixed with an upper gear (311) and a lower gear (321), ... The gear (311) and the lower gear (321) are meshed with each other. The driving assembly (400) comprises a servo motor (410) and a reducer (420), and the reducer (420) is mounted on the output end of the servo motor (410). An output shaft (421) is fixed inside the reducer (420). The output shaft (421) is connected to the rear end of the winding shaft (210) via a coupling (422). A driving wheel (430) is fixed to the rear end of the winding shaft (210). A driven wheel (432) is fixed to the rear end of the upper output roller shaft (310). The driven wheel (432) and the driving wheel (430) are connected and driven by a transmission belt (431). The guide assembly (500) comprises an assembly side seat (510), two groups of guide rollers (520) are mounted between two groups of the assembly side seats (510), the side of the assembly side seat (510) is hinged to the upper part of the assembly door frame (330) through a fine-tuning rotating rod (530), and a lower telescopic rod (540) is supported below the fine-tuning rotating rod (530), the surface of the winding shaft (210) is sleeved with an inner rotating drum (211), and a side retaining ring disk (212) is integrally arranged on the rear side of the inner rotating drum (211), the outer wall cross section of the inner rotating drum (211) is hexagonal, the outer wall of the inner rotating drum (211) is sleeved with a winding drum (213), and the side retaining ring disk (212) is integrally arranged on the rear side of the inner rotating drum (211), the outer wall of the inner rotating drum (211) is sleeved with a winding drum (213), and the side retaining ring disk (212) is sleeved with the inner rotating drum (211). 2) A side vertical plate (214) is installed on the upper part of the outside, and the rear side of the side vertical plate (214) is installed on the upper part of the front side of the rear vertical plate (220) through an assembly column (215); a limit baffle (550) is suspended on the outside of the guide roller (520); support screws (551) are inserted at both ends of the two groups of limit baffles (550); support side columns (552) are fixed at both ends of the support screws (551); the support side columns (552) are fixed on the top of the assembly side seat (510); limit nuts (553) are arranged on both sides of the limit baffle (550); and the two groups of limit nuts (553) are threadedly sleeved on the surface of the support screw (551);The auxiliary component (600) comprises an auxiliary roller (610), an inner roller shaft (620) is inserted inside the auxiliary roller (610), and a lifting slider (630) is fixed to the rear end of the inner roller shaft (620), the lifting slider (630) is assembled at the lower center of the rear vertical plate (220), and a through slot corresponding to the lifting slider (630) is opened at the lower center of the rear vertical plate (220), a rear slide (640) is inserted through the lifting slider (630), a support spring (650) is sleeved on the surface of the rear slide (640), and the support spring (650) is located between the lifting slider (630) and the assembly base (100). ; 2. A zero-degree belt layer winding and conveying device according to claim 1, characterized in that: The rear end of the winding shaft (210) is supported by a seat bearing (201), and the seat bearing (201) is fixed to the side wall surface of the rear vertical plate (220), and the bottom of the servo motor (410) and the reducer (420) is supported by a support seat (401), and the support seat (401) is supported on the right rear side surface of the winding assembly (200), the bottom of the front bracket (230) is integrally provided with a bracket bottom plate (231), the right front side of the assembly base (100) is fixed with an upper card (232), and the upper card (232) is clamped on the two side surfaces of the bracket bottom plate (231), and the right front side surface of the assembly base (100) is provided with an inner card slot (233) corresponding to the bracket bottom plate (231).

3. The zero-degree belt layer winding and conveying device according to claim 1, characterized in that: The surfaces of the upper roller shaft (310) and the lower roller shaft (320) are both covered with an inner soft sleeve (340), and the outer sleeve (341) is covered on the outside of the inner soft sleeve (340). The front and rear ends of the inner soft sleeve (340) and the outer sleeve (341) are fixed to the side ends of the upper roller shaft (310) and the lower roller shaft (320) by screws, and the middle of the outer sleeve (341) is higher than the front and rear ends.

4. A zero-degree belt layer winding and conveying device according to claim 1, characterized in that: An outer hinge seat (531) is fixed to the side wall of the assembly side seat (510), an inner hinge seat (532) is fixed to the upper side of the assembly door frame (330), and both ends of the fine-adjustment rotating rod (530) are hinged to the outer hinge seat (531) and the inner hinge seat (532), and the locking bolt (533) and the side end of the fine-adjustment rotating rod (530) are assembled by inserting the locking bolt (533).

5. The zero-degree belt layer winding and conveying device according to claim 1, characterized in that: The lower end of the lower telescopic rod (540) is hinged with a lower hinge seat (541), and the lower hinge seat (541) is assembled to the lower side of the assembly door frame (330) by means of bolts. The upper end of the lower telescopic rod (540) is hinged with an upper hinge seat (542), and the upper hinge seat (542) is assembled to the lower part of one end of the fine-tuning rotating rod (530) close to the locking bolt (533) by means of bolts.

6. A zero-degree belt layer winding and conveying device according to claim 1, characterized in that: Two groups of the guide assemblies (500) are symmetrically assembled on both sides of the conveying assembly (300); the side ends of the guide roller shafts (520) and the interior of the assembly side seat (510) are movably assembled via bearings; and the outer walls of the guide roller shafts (520) are assembled with guide rollers (521).

7. The zero-degree belt layer winding and conveying device according to claim 1, characterized in that: The four groups of rear slides (640) are arranged in an array around the lifting slider (630), and an inner bearing (621) is filled and installed between the inner wall of the auxiliary roller (610) and the outer wall of the inner roller shaft (620), and the front end of the inner roller shaft (620) is arranged in an arc-shaped hemisphere.

Citation Information

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