Automatic drying device

The automatic drying device, consisting of an I-beam take-up reel and an exhaust drying assembly, solves the problem of damp aluminum wire after winding, enabling the drying, winding, and transportation of aluminum wire.

CN223512404UActive Publication Date: 2025-11-04ZHEJIANG YUGUANG ALUMINUM MATERIALS
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Patent Information

Application Number
CN202422887406.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-11-04
Estimated Expiration
2034-11-26

AI Technical Summary

Technical Problem

Existing H-beam reel winding machines fail to effectively dry aluminum wire after processing, resulting in damp aluminum wire that affects subsequent processing and transportation.

Method used

Design an automatic drying device that uses an I-beam take-up reel and a guide wire device to wind up aluminum wire while simultaneously drying the aluminum wire using an exhaust drying assembly.

Benefits of technology

This achieves a dry state for the aluminum wire, ensuring that the aluminum wire remains dry during the winding process, making it suitable for subsequent processing and transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic drying device which comprises a main body support, an I-shaped take-up wheel rotationally connected with the main body support is arranged on the main body support, a first motor is arranged on the side face of the main body support, and the first motor drives the I-shaped take-up wheel to rotate. A wire guiding device is arranged at the feeding end of the main body support and comprises a sliding block, a rotating shaft and a second motor, and when the second motor drives the rotating shaft to rotate, the sliding block moves back and forth relative to the I-shaped take-up wheel; a guide wheel rotationally connected with the sliding block is arranged on the sliding block; an air outlet drying assembly is arranged in front of the main body support and faces the I-shaped take-up wheel. According to the aluminum wire winding device, aluminum wires are wound through the I-shaped winding wheel and the wire guiding device, and the aluminum wires are dried through the air outlet drying assembly during winding, so that the aluminum wires are in a dry state.
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Description

Technical Field

[0001] This utility model belongs to the technical field of drying devices, specifically relating to an automatic drying device. Background Technology

[0002] Aluminum wire is often cleaned simultaneously during processing, and then wound up using a winding device. Existing publication CN221479093U discloses an I-beam reel winding machine, including a base. The top of the base is equipped with a winding mechanism for winding the wire, and the top of the winding mechanism is equipped with a guide assembly for guiding the wire. The machine includes a first support plate, a second support plate, a telescopic rod, a mounting ring, bolts, a rotating shaft, a limiting plate, and an I-beam reel. In use, the telescopic rod and rotating shaft are respectively installed inside the first and second support plates. The I-beam reel is then slidably connected to the outside of the rotating shaft. The user manually operates the telescopic rod, causing one end to move the mounting ring, and then rotates the rotating shaft, causing the I-beam reel to rotate, thus winding the wire. Since aluminum wire is often damp after processing, existing I-beam reel winding machines simply wind the aluminum wire directly through the I-beam reel, leaving the aluminum wire in a damp state, which is detrimental to subsequent storage and transportation. Therefore, an automatic drying device needs to be designed to overcome the above difficulties. Summary of the Invention

[0003] This invention addresses the problems existing in the prior art by designing an automatic drying device. This invention uses an I-beam take-up reel and a guide wire device to wind up aluminum wire, and at the same time, uses an air-drying component to dry the aluminum wire, thereby keeping the aluminum wire in a dry state.

[0004] The objective of this invention is achieved through the following technical solution: an automatic drying device includes a main support frame, on which an I-beam take-up reel is rotatably connected; a first motor is located on the side of the main support frame, driving the I-beam take-up reel to rotate; a guide wire device is located at the feed end of the main support frame, the guide wire device including a slider, a rotating shaft, and a second motor, wherein the slider moves back and forth relative to the I-beam take-up reel when the second motor drives the rotating shaft to rotate; a guide wheel is rotatably connected to the slider; and an air-discharge drying assembly is located at the front of the main support frame, the air-discharge drying assembly being positioned towards the I-beam take-up reel.

[0005] Preferably, the main support frame has a drive shaft rotatably connected to it, with one end of the drive shaft extending out from the side of the main support frame; the I-beam take-up reel is sleeved on the outer layer of the drive shaft and splinedly connected to it, and the motor shaft of the first motor is connected to the drive shaft; when the first motor drives the drive shaft to rotate, the I-beam take-up reel rotates relative to the main support frame. When the first motor is working, it drives the drive shaft to rotate, and the I-beam take-up reel will rotate relative to the main support frame. The aluminum wire passes through the guide wheel and is then wound around the I-beam take-up reel, so that the I-beam take-up reel can continuously wind up the wire.

[0006] Preferably, the guide wire device further includes a lead screw bushing, a limit switch, and several pairs of rolling wheels; the rotating shaft is rotatably connected to the main support, and one end of the rotating shaft extends out from the side of the main support; the motor shaft of the second motor is connected to the rotating shaft, and a lead screw bushing is fitted onto the outer layer of the rotating shaft, the lead screw bushing is splinedly connected to the rotating shaft, and the two rotate synchronously; the slider is installed on the outer layer of the lead screw bushing and meshes with it, and a rolling wheel is provided in front of the slider and rotatably connected to it; a strip rod is provided on the main support and fixedly connected to it, and the rolling wheel is fitted against the strip rod; when the second motor drives the rotating shaft to rotate, the slider moves along the axial direction of the rotating shaft.

[0007] Preferably, the second motor is a bidirectional rotating motor, and a mounting bearing is provided between the rotating shaft and the main support to connect the two.

[0008] Preferably, the strip rod is arranged parallel to the rotation axis and parallel to the bottom of the main support; the rolling wheels are arranged symmetrically up and down, with two rolling wheels respectively located on the upper and lower sides of the strip rod; when the slider moves, the rolling wheels roll along the strip rod.

[0009] Preferably, the main support is provided with a limiting rod, which is located in front of the slider; the limiting rod is provided with a limiting plate fixedly connected to it, and the limiting plate is arranged in pairs on the left and right sides of the slider; the left and right sides of the slider are respectively provided with limit switches, and the contacts of the limit switches are arranged facing the limiting plate; the side of the main support is provided with an electrical control box, which is electrically connected to the limit switches and also electrically connected to a second motor.

[0010] Aluminum wire emerges from the conveyor belt and is threaded onto the guide wheel. It then extends from the guide wheel onto the I-beam take-up reel and is wound around it. Because the I-beam take-up reel has axial length, the guide wheel moves back and forth along the rotating shaft via a slider, allowing the aluminum wire to be evenly wound onto its surface. When the second motor drives the rotating shaft, the lead screw bushing on the outer layer of the shaft rotates synchronously. The lead screw bushing meshes with the slider, and the rolling wheel at the front end of the slider engages with the strip rod. Thus, when the second motor rotates, the slider moves axially along the rotating shaft. Because the second motor is a bidirectional motor, its forward and reverse rotation allows the slider to move back and forth. The rolling wheel limits the slider's movement, restricting it to axial motion only. A limit switch allows for easy adjustment of the second motor's rotation direction. When the limit switch on the side of the slider contacts the limit plate, it sends an electrical signal to the control box, which then controls the second motor to rotate in the opposite direction.

[0011] Preferably, the air-drying assembly includes a fan body, a connecting pipe, and an air outlet component; one end of the connecting pipe is connected to the air outlet of the fan body, and the other end of the connecting pipe is connected to the air outlet component; the air outlet component is provided with several evenly distributed air outlet channels, and each air outlet channel has a heating element at its opening end.

[0012] Preferably, the fan body is located in front of the main support, and an electrical control box is provided on the side of the fan body; the electrical control box is electrically connected to the fan body, and each heating element is electrically connected to the electrical control box.

[0013] As the aluminum wire is continuously wound on the I-beam take-up reel, the electrical control box controls the fan body and heating element to work synchronously; then the opening end of the air outlet can continuously blow out hot air. Since the air outlet is set towards the I-beam take-up reel, the aluminum wire on the I-beam take-up reel can be continuously dried.

[0014] Compared with the prior art, this utility model has the following advantages: 1. The first motor drives the I-beam take-up reel to rotate, thus continuously winding the aluminum wire; the guide wire device guides the position of the aluminum wire, so that the aluminum wire can be evenly wound on the surface of the I-beam take-up reel; 2. The second motor drives the rotating shaft to rotate, so that the slider can move back and forth along the rotating shaft, making it convenient to adjust the left and right position of the guide wheel and facilitate the winding of the aluminum wire; 3. The exhaust drying component continuously dries and heats the aluminum wire, so that the aluminum wire is always in a dry state. Attached Figure Description

[0015] Figure 1 This is a perspective view of the present utility model;

[0016] Figure 2 This is a perspective view of the present invention from another angle;

[0017] Figure 3 A three-dimensional view of the guide wire device;

[0018] Figure 4 A 3D view of the air outlet drying component;

[0019] The diagram shows the following components: 1. Main support frame; 2. I-beam take-up reel; 3. First motor; 4. Guide wire device; 41. Slider; 42. Rotating shaft; 43. Second motor; 44. Guide wheel; 45. Lead screw bushing; 46. Limit switch; 47. Rolling wheel; 48. Mounting bearing; 49. Limit rod; 410. Limit plate; 5. Air outlet drying assembly; 51. Fan body; 52. Connecting pipe; 53. Air outlet component; 54. Air outlet channel; 55. Heating element; 6. Drive shaft; 7. Strip rod; 8. Electrical control box. Detailed Implementation

[0020] The present invention will be further described below with reference to the embodiments shown in the accompanying drawings:

[0021] like Figures 1 to 4 As shown, this embodiment discloses an automatic drying device, including a main support 1, an I-beam take-up reel 2 rotatably connected to the main support 1, a first motor 3 on the side of the main support 1, the first motor 3 driving the I-beam take-up reel 2 to rotate; a guide wire device 4 is provided at the feeding end of the main support 1, the guide wire device 4 including a slider 41, a rotating shaft 42 and a second motor 43, when the second motor 43 drives the rotating shaft 42 to rotate, the slider 41 moves back and forth relative to the I-beam take-up reel 2; a guide wheel 44 is provided on the slider 41 and rotatably connected to it; an air outlet drying assembly 5 is provided at the front of the main support 1, the air outlet drying assembly 5 is arranged facing the I-beam take-up reel 2.

[0022] The main support 1 is provided with a drive shaft 6 rotatably connected to it, and one end of the drive shaft 6 extends out from the side of the main support 1; the I-beam take-up reel 2 is sleeved and installed on the outer layer of the drive shaft 6 and connected to it by a spline; the motor shaft of the first motor 3 is connected to the drive shaft 6; when the first motor 3 drives the drive shaft 6 to rotate, the I-beam take-up reel 2 rotates relative to the main support 1. The guide wire device 4 further includes a lead screw bushing 45, a limit switch 46, and several pairs of rolling wheels 47; the rotating shaft 42 is rotatably connected to the main support 1, and one end of the rotating shaft 42 extends out from the side of the main support 1; the motor shaft of the second motor 43 is connected to the rotating shaft 42, and the outer layer of the rotating shaft 42 is fitted with a lead screw bushing 45, which is splinedly connected to the rotating shaft 42 and the two rotate synchronously; the slider 41 is installed on the outer layer of the lead screw bushing 45 and meshes with it, and a rolling wheel 47 is provided in front of the slider 41 and rotatably connected to it; a strip rod 7 is fixedly connected to the main support 1, and the rolling wheel 47 is fitted against the strip rod 7; when the second motor 43 drives the rotating shaft 42 to rotate, the slider 41 moves along the axial direction of the rotating shaft 42. The second motor 43 is a bidirectional rotating motor, and a mounting bearing 48 is provided between the rotating shaft 42 and the main support 1 to connect the two. The strip rod 7 is arranged parallel to the rotating shaft 42 and parallel to the bottom of the main support 1. The rolling wheels 47 are symmetrically arranged vertically, with two rolling wheels 47 respectively located on the upper and lower sides of the strip rod 7. When the slider 41 moves, the rolling wheels 47 roll along the strip rod 7. The main support 1 is provided with a limiting rod 49, which is located in front of the slider 41. The limiting rod 49 is provided with a limiting disk 410 fixedly connected to it, and the limiting disk 410 is arranged in pairs on the left and right sides of the slider 41. Limit switches 46 are provided on the left and right sides of the slider 41, with the contacts of the limit switches 46 facing the limiting disk 410. An electrical control box 8 is provided on the side of the main support 1, which is electrically connected to the limit switches 46 and also electrically connected to the second motor 43.

[0023] The air-drying assembly 5 includes a fan body 51, a connecting pipe 52, and an air outlet component 53. One end of the connecting pipe 52 is connected to the air outlet of the fan body 51, and the other end of the connecting pipe 52 is connected to the air outlet component 53. The air outlet component 53 is provided with several evenly distributed air outlet channels 54, and each air outlet channel 54 has a heating element 55 at its opening. The fan body 51 is located in front of the main support 1, and an electrical control box 8 is located on the side of the fan body 51. The electrical control box 8 is electrically connected to the fan body 51, and each heating element 55 is electrically connected to the electrical control box 8.

[0024] The specific operation process of this embodiment is as follows: aluminum wire emerges from the flow and is threaded onto the guide wheel 44, then extends from the guide wheel 44 onto the I-beam take-up wheel 2, and is wound onto the I-beam take-up wheel 2. When the first motor 3 drives the transmission shaft 6 to rotate, the I-beam take-up wheel 2 can begin to wind the wire; because the I-beam take-up wheel 2 has an axial length, the guide wheel 44 is driven by the slider 41 to move back and forth along the rotating shaft 42, so that the aluminum wire can be evenly wound on the surface of the I-beam take-up wheel 2. When the second motor 43 drives the rotating shaft 42 to rotate, the lead screw bushing 45 on the outer layer of the rotating shaft 42 rotates synchronously, and the lead screw bushing 45 meshes with the slider 41, and the rolling wheel 47 at the front end of the slider 41 is engaged with the strip rod 7; then when the second motor 43 rotates, the slider 41 can move along the axial direction of the rotating shaft 42; because the second motor 43 is a bidirectional rotating motor, the slider 41 can move back and forth by rotating the second motor 43 in both directions. The slider 41 is limited by the rolling wheel 47, so that the slider 41 can only move axially. The rotation direction of the second motor 43 can be easily adjusted by setting the limit switch 46. When the limit switch 46 on the side of the slider 41 contacts the limit plate 410, the limit switch 46 will send an electrical signal to the electrical control box 8, so the electrical control box 8 can control the second motor 43 to rotate in the opposite direction.

[0025] When the aluminum wire is continuously wound on the I-beam take-up reel 2, the electrical control box 8 controls the fan body 51 and the heating element 55 to work synchronously; then the opening end of the air outlet duct 54 can continuously blow out hot air. Since the air outlet duct 54 is all set towards the I-beam take-up reel 2, the aluminum wire on the I-beam take-up reel 2 can be continuously dried.

[0026] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to replace them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.

Claims

1. An automatic drying device, comprising a main support frame (1), characterized in that, The main support (1) is provided with an I-beam take-up reel (2) rotatably connected to it. The main support (1) is provided with a first motor (3) on its side. The first motor (3) drives the I-beam take-up reel (2) to rotate. The feed end of the main support (1) is provided with a guide wire device (4). The guide wire device (4) includes a slider (41), a rotating shaft (42), and a second motor (43). When the second motor (43) drives the rotating shaft (42) to rotate, the slider (41) moves back and forth relative to the I-beam take-up reel (2). The slider (41) is provided with a guide wheel (44) rotatably connected to it. The front of the main support (1) is provided with an air-drying assembly (5). The air-drying assembly (5) is set towards the I-beam take-up reel (2).

2. The automatic drying device according to claim 1, characterized in that, The main support (1) is provided with a drive shaft (6) rotatably connected to it. One end of the drive shaft (6) passes through the side of the main support (1). The I-beam take-up reel (2) is sleeved and installed on the outer layer of the drive shaft (6) and connected to it by spline. The motor shaft of the first motor (3) is connected to the drive shaft (6). When the first motor (3) drives the drive shaft (6) to rotate, the I-beam take-up reel (2) rotates relative to the main support (1).

3. The automatic drying device according to claim 1, characterized in that, The guide wire device (4) also includes a lead screw bushing (45), a limit switch (46), and several pairs of rolling wheels (47); the rotating shaft (42) is rotatably connected to the main support (1), and one end of the rotating shaft (42) passes through the side of the main support (1); the motor shaft of the second motor (43) is connected to the rotating shaft (42), and the outer layer of the rotating shaft (42) is fitted with a lead screw bushing (45), the lead screw bushing (45) and the rotating shaft (42) are splined and rotate synchronously; the slider (41) is installed on the outer layer of the lead screw bushing (45) and meshes with it, and the front of the slider (41) is provided with a rolling wheel (47) rotatably connected to it; the main support (1) is provided with a strip rod (7) fixedly connected to it, and the rolling wheel (47) is fitted with the strip rod (7); when the second motor (43) drives the rotating shaft (42) to rotate, the slider (41) moves along the axial direction of the rotating shaft (42).

4. The automatic drying device according to claim 2, characterized in that, The second motor (43) is a bidirectional rotating motor, and a mounting bearing (48) connecting the rotating shaft (42) and the main support (1) is provided.

5. The automatic drying device according to claim 3, characterized in that, The bar (7) is arranged parallel to the rotating shaft (42), and the bar (7) is arranged parallel to the bottom of the main support (1); the rolling wheels (47) are arranged symmetrically up and down, and the two rolling wheels (47) are respectively arranged on the upper and lower sides of the bar (7); when the slider (41) moves, the rolling wheels (47) roll along the bar (7).

6. The automatic drying device according to claim 2, characterized in that, The main support (1) is provided with a limiting rod (49), which is located in front of the slider (41); the limiting rod (49) is provided with a limiting plate (410) fixedly connected to it, and the limiting plate (410) is arranged in pairs on the left and right sides of the slider (41); the left and right sides of the slider (41) are respectively provided with limit switches (46), and the contacts of the limit switches (46) are arranged facing the limiting plate (410); the side of the main support (1) is provided with an electrical control box (8), which is electrically connected to the limit switches (46) and is also electrically connected to the second motor (43).

7. The automatic drying device according to claim 1, characterized in that, The air-drying assembly (5) includes a fan body (51), a connecting pipe (52), and an air outlet component (53); one end of the connecting pipe (52) is connected to the air outlet of the fan body (51), and the other end of the connecting pipe (52) is connected to the air outlet component (53); the air outlet component (53) is provided with a plurality of evenly distributed air outlet channels (54), and each air outlet channel (54) has a heating element (55) at its opening end.

8. The automatic drying device according to claim 7, characterized in that, The fan body (51) is located in front of the main support (1), and the side of the fan body (51) is provided with an electrical control box (8); the electrical control box (8) is electrically connected to the fan body (51), and each heating element (55) is electrically connected to the electrical control box (8).

Citation Information

Patent Citations

  • Spool take-up machine

    CN221479093U