Winding equipment assembly
By designing a horizontal coil structure and cylinder assembly, the problems of space occupation and accidental collision of the vertical coil machine support frame are solved, and safe and reliable coil width adjustment and winding functions are achieved.
Patent Information
- Application Number
- CN202423006931.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-12-05
AI Technical Summary
The existing coiling machine has a vertical structure, and the support frame can easily take up space and pose a safety hazard if accidentally bumped when it is opened or closed.
It adopts a horizontal coil structure, and the inner ring support frame can be raised and lowered. Through the cooperation of cylinder assembly and rotating shaft, the width of the coil and the winding space can be adjusted to avoid accidental collision.
It improves the safety of horizontal coil winding, avoids the danger caused by accidental contact with the support frame, and adapts to the winding needs of coils of different widths.
Smart Images

Figure CN223509389U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of winding machine technology, and in particular to a winding equipment component. Background Technology
[0002] A coiling machine is a device used to wind up various materials (such as cables, water hoses, light strips, etc.). It uses mechanical or electric force to wind materials onto a reel, realizing functions such as material processing, sorting, and storage. With the rapid development of society, the quality requirements for coiled tube products are also gradually increasing.
[0003] Most existing coiling machines are vertical coiling machines, which consist of a motor, a drive shaft assembly, and a coiling assembly. The motor rotates and drives the coil to rotate through the drive shaft assembly, thus winding the hose into a bundle. The coiling assembly is formed by multiple sets of support frames. The support frames occupy a lot of space when opened and are easy to accidentally bump into when opening or closing, posing certain safety hazards.
[0004] Therefore, in response to the problems existing in the current coiling machine, a structural optimization is designed, which adopts a horizontal coiling method and an inner ring support frame that can be raised and lowered to avoid accidental collisions and potential dangers, thus solving the above problems. Utility Model Content
[0005] The purpose of this invention is to provide a structurally optimized design that uses a horizontal coil, with an inner support frame that can be raised and lowered, and an adjustable coil width to prevent accidental contact that could lead to dangerous entanglement of equipment components.
[0006] To achieve the above objectives, this utility model provides the following technical solution:
[0007] A winding device assembly, comprising:
[0008] A support frame having columns and beams;
[0009] A cylinder assembly, wherein the cylinder assembly is fixedly mounted on a support frame and the piston of the cylinder assembly moves vertically up and down along the cylinder body;
[0010] A rotating shaft, wherein the cylinder assembly is driven and connected to the upper end of the rotating shaft;
[0011] The lower end of the shaft passes through the crossbeam and extends downward;
[0012] A winding mechanism, located below the crossbeam and connected to the rotating shaft;
[0013] The winding mechanism has a limiting disk part, a limiting disk part, and a winding part;
[0014] The first limiting plate is located above the second limiting plate and forms a receiving space for winding the rubber tube.
[0015] The winding part is slidably connected to the first part of the limiting plate and its bottom is fixedly installed on the second part of the limiting plate;
[0016] The bottom end of the rotating shaft is connected to the winding part;
[0017] The cylinder assembly drives the rotating shaft to stretch and form a winding portion that slides up and down along the first part of the limiting disk to push the second part of the limiting disk closer to or away from the first part of the limiting disk.
[0018] The two limiting discs are positioned closer to or further away from the first limiting disc to increase or decrease the accommodating space, thereby enabling the winding of reels of different widths.
[0019] Also includes:
[0020] A drive mechanism, which is mounted on one side of the crossbeam;
[0021] The drive mechanism drives the rotating shaft to rotate, forming a synchronous rotation of the coiling mechanism to achieve hose winding.
[0022] Furthermore, a mounting hole is provided on one part of the limiting plate;
[0023] The mounting hole extends upward to form a mounting cylinder;
[0024] The inner wall of the mounting cylinder is provided with a sliding groove;
[0025] A slider is formed on the upper sidewall of the winding section;
[0026] The slider is slidably connected in the groove;
[0027] The rotating shaft passes sequentially through the mounting cylinder, one limiting plate, and two limiting plates.
[0028] Furthermore, the winding portion includes:
[0029] Mounting plate, the slider is located on the outer periphery of the mounting plate;
[0030] The mounting plate is slidably connected in the slide groove via a slider;
[0031] A connecting block is fixedly wrapped around the outside of the rotating shaft;
[0032] The second connecting block is located outside the first connecting block;
[0033] The tops of the first and second connecting blocks are respectively fixed to the mounting plate;
[0034] The first part of the connecting block and the second part of the connecting block are connected and fixed by a connecting plate.
[0035] Furthermore, the two parts of the connecting block are enclosed to form a cylindrical structure;
[0036] The hose is wrapped around the outside of the two parts of the connecting block.
[0037] Furthermore, the cylinder assembly has a first cylinder and a second cylinder;
[0038] The cylinder part one and cylinder part two are respectively mounted on the crossbeam;
[0039] The piston ends of cylinder part one and cylinder part two are respectively connected to the transverse portion of the T-shaped fixing part;
[0040] The upper end of the rotating shaft is installed inside the vertical part of the T-shaped fixing part;
[0041] The cylinder part one and cylinder part two drive the rotating shaft to move up and down through the T-shaped fixing part.
[0042] Furthermore, the drive mechanism includes:
[0043] A support plate, which is fixedly installed on one side of the crossbeam;
[0044] The speed reducer is fixedly installed above the support plate;
[0045] A sprocket is mounted below the support plate;
[0046] The two sprockets are located in the crossbeam and mounted on the outer periphery of the shaft;
[0047] The first sprocket is connected to the second sprocket in a transmission connection;
[0048] The motor drives one sprocket to rotate via the reducer and transmits the power to the other sprocket to achieve synchronous rotation of the shaft.
[0049] The rotating shaft rotates and drives the winding mechanism to rotate synchronously to achieve the winding of the hose into a reel.
[0050] In the above technical solution, the winding equipment component of this utility model has the following beneficial effects:
[0051] This utility model proposes an optimized component structure for a winding device. The cylinder assembly, rotating shaft, and winding mechanism work together to raise or lower the winding mechanism, adjust the accommodating space on the winding mechanism for winding the rubber tube, and select winding reels of different widths. At the same time, the rotating shaft, winding mechanism, and drive mechanism work together to rotate the winding mechanism, thereby winding the rubber tube into a reel. This device adopts a horizontal winding method, avoiding accidental collisions and making it safer to use. Attached Figure Description
[0052] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this utility model. For those skilled in the art, other drawings can be obtained based on these drawings.
[0053] Figure 1 A schematic diagram of the structure of a winding equipment assembly provided in an embodiment of this utility model;
[0054] Figure 2 A front view of a winding device assembly provided for an embodiment of this utility model;
[0055] Figure 3 A side view of a winding device assembly provided for an embodiment of this utility model;
[0056] Figure 4 A cross-sectional view of a winding device assembly provided in an embodiment of this utility model;
[0057] Figure 5 This is a cross-sectional view of a winding device assembly provided in an embodiment of the present invention.
[0058] Explanation of reference numerals in the attached figures:
[0059] 1. Support frame; 2. Cylinder assembly; 3. Rotating shaft; 4. Winding mechanism; 5. Drive mechanism; 6. T-shaped fixing part;
[0060] 11. Column; 12. Beam;
[0061] 21. One cylinder; 22. Two cylinders;
[0062] 41. One limiting plate; 42. Two limiting plates; 43. Winding section; 44. Mounting hole; 45. Mounting cylinder;
[0063] 431. Slider; 432. Mounting plate; 433. Connecting block one; 434. Connecting block two; 435. Connecting plate;
[0064] 451. Slide groove;
[0065] 51. Support plate; 52. Reducer; 53. One sprocket; 54. Two sprockets. Detailed Implementation
[0066] Most existing coiling machines are vertical coiling machines, which consist of a motor, a drive shaft assembly, and a coiling assembly. The motor rotates and drives the coil to rotate through the drive shaft assembly, thus winding the hose into a bundle. The coiling assembly is formed by multiple sets of support frames. The support frames occupy a lot of space when opened and are easy to accidentally bump into when opening or closing, posing certain safety hazards.
[0067] To address the problems existing in current coiling machines, a structural optimization is designed, employing a horizontal coiling mechanism with an inner ring support frame that can be raised and lowered to prevent accidental collisions and potential hazards, thus resolving the aforementioned issues.
[0068] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings.
[0069] It should be noted that the terms "outer side," "around," and "middle" used herein indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the purpose of illustrative purposes and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0070] See Figure 1-5 As shown;
[0071] A winding device assembly, comprising:
[0072] A support frame 1, shaped like a door frame, is supported by columns 11 on both sides. The tops of the two columns 11 are connected to a crossbeam 12. A cylinder assembly 2 is vertically mounted on the crossbeam 12. The piston of the cylinder assembly 2 moves vertically up and down along the cylinder body. A rotating shaft 3 is inserted into the crossbeam 12, movably connected to it. The upper end of the rotating shaft 3 extends above the crossbeam 12, and one end of the rotating shaft 3 above the crossbeam 12 is connected to the cylinder assembly 2. Therefore, the cylinder assembly 2 can drive the rotating shaft 3 to move up and down. The other end passes through the crossbeam 12 and extends below the crossbeam 2. When the cylinder assembly 2 drives the rotating shaft 3, the rotating shaft 3 moves up and down along the crossbeam 2. A winding mechanism 4 is installed on the part of the rotating shaft 3 extending below the crossbeam 2. The winding mechanism 4 is used to wind the hose to form reels of different widths. The winding mechanism 4 has a first limiting plate 41, a second limiting plate 42, and a winding part 43. The first limiting plate 41 and the second limiting plate 42 are installed parallel to each other, one above the other. The space between the first limiting plate 41 and the second limiting plate 42 is the position to accommodate the hose. A winding part 43 is installed between part 41 and the second limiting plate 42. The winding part 43 is movably connected to the first limiting plate 41 and fixedly connected to the rotating shaft 3. The bottom of the winding part 43 is fixedly mounted on the second limiting plate 42. When the cylinder assembly 2 drives the rotating shaft 3 to move up and down, the winding part 43 slides along the first limiting plate 41. Simultaneously, the winding part 43 pulls the second limiting plate 42 up and down. When the second limiting plate 42 moves upward, the distance between the first limiting plate 41 and the second limiting plate 42 decreases, and the exposed winding part... The 43 section is smaller, meaning the space for accommodating the hose for winding is narrower. When the second part of the limiting disc 42 moves downward, the distance between the first part of the limiting disc 41 and the second part of the limiting disc 42 increases, and the exposed winding part 43 section is larger, meaning the space for accommodating the hose for winding is wider. It also includes a drive mechanism 5, which is installed on one side of the crossbeam 12. The drive mechanism 5 is used to drive the rotating shaft 3 to rotate, so that the winding mechanism 4 connected to the rotating shaft 3 rotates synchronously. The rotation of the winding mechanism 4 winds the hose between the first part of the limiting disc 41 and the second part of the limiting disc 42 to form a reel.
[0073] Regarding the first limiting plate 41 and the second limiting plate 42, both are disc-shaped structures, vertically distributed and parallel to each other. The first limiting plate 41 has a mounting hole 44, from which a mounting cylinder 45 extends radially upwards. The winding part 43 is slidably connected to the inner wall of the mounting cylinder 45. Specifically, multiple sets of grooves 451 are formed on the inner wall of the mounting cylinder 45. The winding part 43 is also cylindrical, and its dimensions are similar to those of the first limiting plate 41. The mounting cylinder 45 is adapted to the winding part 43. A slider 431 is provided on the outer wall of the winding part 43. The slider 431 is slidably connected to the groove 451. That is, the winding part 43 is connected to the inner wall of the mounting cylinder 45 through the slider 431. At the same time, the rotating shaft 3 passes through the center of the mounting cylinder 45, the first limiting plate 41, the winding part 43, and the second limiting plate 42. The rotating shaft 3 drives the winding part 43 and the second limiting plate 42 to move up and down, so that the winding part 43 slides inside the mounting cylinder 45.
[0074] Regarding the winding section 43, the winding section 43 has a mounting plate 432, a first connecting block 433, a second connecting block 434, and a connecting plate 435. The mounting plate 432 is located at the upper end of the entire winding section 43, and the slider 431 is located on the outer periphery of the mounting plate 432. That is, the mounting plate 432 is slidably connected to the slide groove 451 through the slider 431. The winding section 43 is supported and connected to the first limiting plate 41 through the mounting plate 432. The first connecting block 433 and the second connecting block 434 are connected below the mounting plate 432. The upper end of the first connecting block 433 is connected to the mounting plate 432, and the first connecting block 433 is fixed to the side of the rotating shaft 3. The second connecting block 434 is distributed on the outside of the first connecting block 433 and is connected and fixed to the first connecting block 433 through the connecting plate 435.
[0075] The connecting block part 434 is a cylindrical structure. The hose is wound along the trajectory of the outer periphery of the connecting block part 434, and the width of the reel is limited by the limiting plate part 41 and the limiting plate part 42.
[0076] Regarding cylinder assembly 2, cylinder assembly 2 has a cylinder part 21 and a cylinder part 22 with identical structures. Cylinder part 21 and cylinder part 22 are vertically mounted on crossbeam 12, with a certain distance between them. The portion of the rotating shaft 3 extending above the crossbeam 12 is located between cylinder part 21 and cylinder part 22. A T-shaped fixing part 6 is connected to the upper end of cylinder part 21 and cylinder part 22. The pistons of cylinder part 21 and cylinder part 22 can drive the T-shaped fixing part 6 to move up and down. The two ends of the horizontal portion of the T-shaped fixing part 6 are respectively connected to the pistons of cylinder part 21 and cylinder part 22. The vertical portion of the T-shaped fixing part 6... The fixed sleeve is attached to the upper end of the rotating shaft 3. When the pistons of cylinder part 1 21 and cylinder part 2 22 are stretched outward, the T-shaped fixing part 6 moves upward along with the rotating shaft 3. At this time, the winding part 43 and the limiting plate part 2 42 connected to the lower end of the rotating shaft 3 move upward synchronously and gradually approach the limiting plate part 41. The accommodating space for winding the rubber tube becomes smaller, and the winding reel is narrower. When the pistons of cylinder part 1 21 and cylinder part 2 22 retract inward, the T-shaped fixing part 6 moves downward along with the rotating shaft 3. At this time, the winding part 43 and the limiting plate part 2 42 connected to the lower end of the rotating shaft 3 move downward synchronously and gradually move away from the limiting plate part 41. The accommodating space for winding the rubber tube becomes larger, and the winding reel is wider.
[0077] Regarding the drive mechanism 5, the drive mechanism 5 is used to drive the rotating shaft 3 to rotate, so as to realize the rotation of the coiling mechanism 4 to wind the hose into a reel. The drive mechanism 5 has a support plate 51, a reducer 52, a first sprocket 53, and a second sprocket 54. The support plate 51 is fixedly installed on one side of the crossbeam 12. The first sprocket 53 is installed below the support plate 51. The reducer 52 is installed above the support plate 51. The reducer 52 is connected to the motor. The shaft of the reducer 52 passes through the support plate 51 and extends below the support plate 51 to drive the first sprocket 53. The second sprocket 54 is installed in the crossbeam 12. The second sprocket 54 is fixedly installed on the rotating shaft 3. At the same time, the second sprocket 54 is connected to the first sprocket 53 for transmission. After the motor starts, it drives the first sprocket 53 to move through the reducer 52. The first sprocket 53 moves and is transmitted with the second sprocket 54. The second sprocket 54 rotates and drives the rotating shaft 3 to rotate synchronously. The rotating shaft 3 rotates and drives the coiling mechanism 4 to rotate synchronously to realize the winding of the hose into a reel.
[0078] The foregoing description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.
Claims
1. A winding equipment assembly, characterized in that, include: A support frame (1) having columns (11) and beams (12); Cylinder assembly (2), the cylinder assembly (2) is fixedly mounted on the support frame (1), and the piston of the cylinder assembly (2) forms an up-down linear motion along the cylinder body; The cylinder assembly (2) is driven and connected to the upper end of the rotating shaft (3); The lower end of the rotating shaft (3) passes through the crossbeam (12) and extends downward; A coiling mechanism (4) is located below the crossbeam (12) and connected to the rotating shaft (3); The winding mechanism (4) has a first limiting plate (41), a second limiting plate (42), and a winding section (43); The first limiting plate (41) is located above the second limiting plate (42) and forms a receiving space for winding the rubber tube; The winding part (43) is slidably connected to the first part of the limiting disk (41) and its bottom is fixedly installed on the second part of the limiting disk (42); The bottom end of the rotating shaft (3) is connected to the winding part (43); The cylinder assembly (2) drives the rotating shaft (3) to stretch and form a winding part (43) which slides up and down along the first part of the limiting disk (41) to push the second part of the limiting disk (42) closer to or away from the first part of the limiting disk (41); The two limiting disks (42) are close to or far from the first limiting disk (41) to increase or decrease the accommodating space so as to achieve winding of different widths of reels; Also includes: A drive mechanism (5) is mounted on one side of the crossbeam (12); The driving mechanism (5) drives the rotating shaft (3) to rotate, forming a winding mechanism (4) to rotate synchronously to achieve hose winding.
2. The winding equipment assembly according to claim 1, characterized in that: The limiting plate (41) has a mounting hole (44); The mounting hole (44) extends upward to form a mounting cylinder (45); The inner wall of the mounting cylinder (45) is provided with a sliding groove (451); A slider (431) is formed on the upper sidewall of the winding part (43); The slider (431) is slidably connected in the groove (451); The rotating shaft (3) passes through the mounting cylinder (45), the first limiting plate (41), and the second limiting plate (42) in sequence.
3. A winding equipment assembly according to claim 2, characterized in that, The winding portion (43) includes: Mounting plate (432), the slider (431) is located on the outer periphery of mounting plate (432); The mounting plate (432) is slidably connected in the slide groove (451) by a slider (431); A connecting block (433) is fixedly wrapped around the outside of the rotating shaft (3); Connecting block two (434), the connecting block two (434) is located outside the connecting block one (433); The tops of the first part (433) and the second part (434) of the connecting block are respectively fixed on the mounting plate (432); The first part (433) and the second part (434) of the connecting block are connected and fixed by a connecting plate (435).
4. A winding equipment assembly according to claim 3, characterized in that: The two connecting blocks (434) enclose each other to form a cylindrical structure; The hose is wrapped around the outside of the second part (434) of the connecting block.
5. A winding equipment assembly according to claim 1, characterized in that: The cylinder assembly (2) has a cylinder part (21) and a cylinder part (22); The cylinder part (21) and cylinder part (22) are respectively mounted on the crossbeam (12); The piston ends of cylinder part one (21) and cylinder part two (22) are respectively connected to the transverse part of T-shaped fixing part (6); The upper end of the rotating shaft (3) is installed in the vertical part of the T-shaped fixing part (6); The cylinder part (21) and cylinder part (22) drive the rotating shaft (3) to move up and down through the T-shaped fixing part (6).
6. A winding equipment assembly according to claim 1, characterized in that, The drive mechanism (5) includes: A support plate (51) is fixedly installed on one side of the crossbeam (12); A speed reducer (52) is fixedly installed above a support plate (51); A sprocket part (53) is mounted below the support plate (51); The sprocket part (54) is located in the crossbeam (12) and installed on the outer periphery of the shaft (3); The first sprocket (53) is connected to the second sprocket (54) in a transmission connection; The motor drives the first sprocket (53) to rotate through the reducer (52) and transmits the power to the second sprocket (54) to achieve synchronous rotation of the shaft (3); The rotating shaft (3) rotates and drives the winding mechanism (4) to rotate synchronously to achieve the winding of the hose to form a reel.