A galvanized iron wire blowing device
By using a multi-air frame blowing device and absorbent cotton blocks for adsorption, combined with a heating device, the problem of incomplete removal of phosphating solution from the surface of galvanized iron wire was solved, and the surface of the iron wire was thoroughly dried.
Patent Information
- Application Number
- CN202521904935.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-04
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-09-04
AI Technical Summary
In existing technologies, a single air blowing channel cannot effectively remove the phosphating solution from the surface of galvanized iron wire, thus affecting the drying effect.
A purging device is used, including a purging component and a wiping component. Multiple air frames are used to spray gas for purging and drying, and water-absorbing cotton blocks are used to absorb residual liquid. A heating device is used to accelerate the drying process.
This ensures that the liquid on the surface of the galvanized iron wire is completely removed, improving the drying effect and enhancing the cleaning quality of the iron wire.
Smart Images

Figure CN224673376U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of wire blowing equipment, and in particular to a galvanized wire blowing device. Background Technology
[0002] Galvanized iron wire is often processed into steel strand, which is a product formed by twisting together several steel wires. In the production process of steel strand, an essential step is to undergo phosphating treatment, which involves immersing the steel wire in a phosphating solution. After phosphating, the wire is immediately dried before undergoing other processes such as galvanizing.
[0003] The existing announcement number CN203807563U, entitled "A Secondary Cleaning Device for Pickled Iron Wire," includes a frame. Its key feature is that, from right to left, the frame is equipped with an ultrasonic vibration water tank, an independent air blowing tank, and a rinsing water tank. A radially arranged vibrating plate connected to an ultrasonic transducer is placed within the ultrasonic vibration water tank. A radially arranged air blowing box is placed within the independent air blowing tank, with both ends of the air blowing box connected to an air compressor via air pipes. Axially arranged wire-threading cylinders are symmetrically arranged on the left and right sides inside the air blowing box, forming an air blowing space between each pair of cylinders. This utility model has a scientifically sound and reasonable structural design, offering advantages such as good impurity removal effect, low pickling cost, no impact on iron wire quality, and safety and environmental friendliness. It is a highly innovative secondary cleaning device for pickled iron wire.
[0004] Regarding the aforementioned technologies, the inventors discovered that when cleaning iron wires, using a single air-blowing channel to remove the phosphating solution from the surface of the iron wire is insufficient to guarantee the complete removal of liquid from the surface of the iron wire, thus affecting the cleaning and drying effect of the liquid on the surface of the iron wire. Utility Model Content
[0005] In order to overcome the problem that existing methods of cleaning iron wires using a single air vent to remove phosphating solution from the wire surface cannot guarantee a complete removal of the liquid from the wire surface, thus affecting the cleaning and drying effect of the liquid on the iron wire surface, this application provides a galvanized iron wire blowing device.
[0006] The galvanized iron wire blowing device provided in this application adopts the following technical solution: A galvanized iron wire blowing device includes a support, a blowing component, and a wiping component. The support includes a bracket with a fixing screw installed through the bottom. The top and bottom sides of the bracket are horizontally provided with support plates, and the ends of the support plates are vertically fixed with support frames. The blowing component and the wiping component are vertically arranged between the support frames on the top and bottom sides of the bracket. The blowing component includes a blowing frame, which is vertically fixed to the top surface of the support frame on the lower side of the bracket. Multiple air frames are horizontally fixed through the blowing frame along the vertical direction. The wiping component includes a wiping cylinder, which is vertically fixed to the top surface of the blowing frame. Two absorbent cotton blocks are vertically and symmetrically arranged inside the wiping cylinder.
[0007] By adopting the above technical solution, during the use of the phosphated iron wire, when blowing and drying to remove liquid from the surface of the iron wire, the iron wire passes through the bottom support frame of the blowing frame of the blowing component and enters the blowing frame. Air is guided into the blowing frame through multiple air frames. The upward-conveyed iron wire passes through multiple air frames in sequence. The gas sprayed by multiple air frames blows and dries the liquid on the surface of the iron wire. Then the iron wire enters the wiping cylinder of the wiping component. The water-absorbing cotton block in the wiping cylinder presses against the surface of the iron wire to absorb the water stains remaining on the iron wire. Thus, the phosphated and soaked iron wire passes through the blowing component and the wiping component in sequence in the vertical direction to remove water stains from the surface of the iron wire, thereby ensuring the liquid removal effect on the surface of the iron wire.
[0008] Optionally, a heating cylinder is horizontally arranged on the outer side of the purge frame, and a wind pump is connected and fixed at one end of the heating cylinder. Multiple heating rods are horizontally fixed inside the heating cylinder.
[0009] By adopting the above technical solution, the air pump at one end of the heating cylinder is started to drive the external air into the heating cylinder. The air contacts multiple heating rods and carries heat into the distribution pipe. The air carrying heat ensures the drying effect of water stains on the surface of the iron wire.
[0010] Optionally, the other end of the heating cylinder is connected to and fixed with a diversion pipe, and the diversion pipe is connected to and fixed with multiple air frames.
[0011] By adopting the above technical solution, the air carrying heat is guided into multiple air frames through the diversion pipe, and the hot air is dispersed to ensure multiple dehydration and drying of the iron wire.
[0012] Optionally, two arc-shaped plates are symmetrically and vertically arranged on the inner wall of the wiping tube, and multiple elastic frames are horizontally fixed on the outer wall of each arc-shaped plate along the vertical direction.
[0013] By adopting the above technical solution, the two arc-shaped plates inside the wiping cylinder are supported by the deformation of multiple elastic frames, ensuring that the absorbent cotton block is pressed against the wire to absorb water stains on the surface of the wire.
[0014] Optionally, the other end of multiple elastic frames on the outer wall of the arc-shaped plate is fixed to the inner wall of the wiping tube, and the inner wall of the arc-shaped plate is fixedly connected to the absorbent cotton block.
[0015] By adopting the above technical solution, the two arc-shaped plates inside the wiping tube are supported by the deformation of multiple elastic frames during use, ensuring that the absorbent cotton blocks on the arc-shaped plates press against the wire to absorb water stains on the surface of the wire.
[0016] Optionally, a fixed clamping wheel is vertically fixed on one side of the support frame, and a sliding rod is horizontally fixed on the other end of the support frame. A movable clamping wheel is vertically installed on the other side of the support frame, and the movable clamping wheel is horizontally slidably assembled on the sliding rod.
[0017] By adopting the above technical solution, in order to ensure the vertical guidance of the conveying wire, fixed clamping wheels and movable clamping wheels set on both sides of the support frame are used to press and clamp the wire to move vertically upward.
[0018] Optionally, a clamping spring is horizontally sleeved on the slide rod of the support frame, and the two ends of the clamping spring are fixed to the end of the slide rod and the movable clamping wheel, respectively.
[0019] By adopting the above technical solution, in order to ensure that when the fixed clamping wheel and the movable clamping wheel squeeze and clamp the iron wire, the deformation force of the clamping spring is used to push the movable clamping wheel to move horizontally on the slide bar, so as to drive the movable clamping wheel to press the iron wire on the fixed clamping wheel for vertical conveying of the iron wire.
[0020] Optionally, support springs are vertically fixed on both the top and bottom sides of the bracket, and the other end of the support spring is fixed to the support plate. A vibration motor is vertically fixed on the support frame.
[0021] By adopting the above technical solution, in order to accelerate the drop of liquid on the phosphated iron wire, the vibration motor on one side of the support frame is started, which drives the support frame to vibrate and cause the support spring to deform and shake, causing the iron wire held by the fixed clamping wheel and the moving clamping wheel to vibrate, thus accelerating the shaking off of the water that is not adhering to it.
[0022] In summary, this application includes at least one of the following beneficial technical effects: During use, when the scaled iron wire is blown and dried to remove liquid from its surface, the iron wire passes through the bottom support frame of the blowing frame of the blowing component and enters the blowing frame. Air is guided into the blowing frame through multiple air frames. The upward-conveyed iron wire passes through multiple air frames in sequence. The gas sprayed by the multiple air frames blows and dries the liquid on the surface of the iron wire. Then, the iron wire enters the wiping cylinder of the wiping component. The absorbent cotton block in the wiping cylinder presses against the surface of the iron wire to absorb the water stains remaining on the iron wire. Thus, the phosphated and soaked iron wire passes through the blowing component and the wiping component in sequence in the vertical direction to remove water stains from the surface of the iron wire, thereby ensuring the liquid removal effect on the surface of the iron wire. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the overall structure of an embodiment of this application; Figure 2 This is a schematic diagram of the overall structure of the embodiment of this application in an exploded state; Figure 3 This is a schematic diagram of the purge component in the disassembled state according to an embodiment of this application; Figure 4 This is a schematic diagram of the wiping component in the disassembled state according to an embodiment of this application; Figure 5 This is a schematic diagram of the structure of the support component in the exploded state according to an embodiment of this application.
[0024] Explanation of reference numerals in the attached drawings: 1. Support component; 11. Bracket; 12. Fixing screw; 13. Support spring; 14. Support plate; 15. Support frame; 16. Fixed clamping wheel; 17. Moving clamping wheel; 18. Clamping spring; 19. Vibration motor; 2. Blowing component; 21. Blowing frame; 22. Heating cylinder; 23. Air pump; 24. Heating rod; 25. Diverter pipe; 26. Air frame; 3. Wiping component; 31. Wiping cylinder; 32. Arc plate; 33. Elastic frame; 34. Absorbent cotton block. Detailed Implementation
[0025] The present application will be further described in detail below with reference to the accompanying drawings.
[0026] This application discloses a galvanized iron wire blowing device. (Refer to...) Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 A galvanized iron wire blowing device includes a support 1, a blowing component 2, and a wiping component 3. The support 1 includes a bracket 11, with a fixing screw 12 installed through the bottom of the bracket 11. The top and bottom sides of the bracket 11 are horizontally provided with support plates 14, and the ends of the support plates 14 are vertically fixed with support frames 15. The blowing component 2 and the wiping component 3 are vertically arranged between the support frames 15 on the top and bottom sides of the bracket 11. The blowing component 2 includes a blowing frame 21, which is vertically fixed on the top surface of the support frame 15 on the lower side of the bracket 11. Multiple air frames 26 are horizontally fixed through the blowing frame 21 along the vertical direction. The wiping component 3 includes a wiping cylinder 31, which is vertically fixed on the top surface of the blowing frame 21. Two absorbent cotton blocks 34 are vertically and symmetrically arranged inside the wiping cylinder 31.
[0027] By adopting the above technical solution, during the use of the phosphated iron wire, when blowing and drying to remove the liquid on the surface of the iron wire, the iron wire passes through the bottom support frame 15 of the blowing frame 21 of the blowing component 2 and enters the blowing frame 21. Air is guided into the blowing frame 21 through multiple air frames 26. The upward-conveyed iron wire passes through multiple air frames 26 in sequence. The gas sprayed by multiple air frames 26 blows and dries the liquid on the surface of the iron wire. Then the iron wire enters the wiping cylinder 31 of the wiping component 3. The water-absorbing cotton block 34 in the wiping cylinder 31 presses against the surface of the iron wire to absorb the water stains remaining on the iron wire. Thus, the phosphated and soaked iron wire passes through the blowing component 2 and the wiping component 3 in sequence in the vertical direction to remove the water stains on the surface of the iron wire, thereby ensuring the liquid removal effect on the surface of the iron wire.
[0028] Reference Figure 3 A heating cylinder 22 is horizontally mounted on the outer side of the blowing frame 21, and a wind pump 23 is fixedly connected to one end of the heating cylinder 22. Multiple heating rods 24 are horizontally fixed inside the heating cylinder 22. Activating the wind pump 23 at one end of the heating cylinder 22 draws external air into the heating cylinder 22. The air contacts the multiple heating rods 24, carrying heat into the distribution pipe 25. This heat-carrying air ensures the drying effect on the surface of the iron wire. The other end of the heating cylinder 22 is also fixedly connected to the distribution pipe 25, which is connected and fixedly connected to multiple air frames 26. The heat-carrying air is guided through the distribution pipe 25 into the multiple air frames 26, dispersing the hot air to ensure multiple layers of dehydration and drying of the iron wire.
[0029] Reference Figure 4 Two symmetrically arranged arc-shaped plates 32 are vertically mounted on the inner wall of the wiping cylinder 31, and multiple elastic frames 33 are horizontally fixed along the vertical direction on the outer wall of each arc-shaped plate 32. The two arc-shaped plates 32 inside the wiping cylinder 31 are supported by the deformation of the multiple elastic frames 33, ensuring that the absorbent cotton block 34 is pressed against the wire to absorb water stains on the surface of the wire. The other end of the multiple elastic frames 33 on the outer wall of the arc-shaped plates 32 is fixed to the inner wall of the wiping cylinder 31, and the inner wall of the arc-shaped plates 32 is fixedly connected to the absorbent cotton block 34. In use, the two arc-shaped plates 32 inside the wiping cylinder 31 are supported by the deformation of the multiple elastic frames 33, ensuring that the absorbent cotton block 34 on the arc-shaped plates 32 is pressed against the wire to absorb water stains on the surface of the wire.
[0030] Reference Figure 5A fixed clamping wheel 16 is vertically fixed on one side of the support frame 15, and a sliding rod is horizontally fixed on the other end of the support frame 15. A movable clamping wheel 17 is vertically arranged on the other side of the support frame 15, and the movable clamping wheel 17 is horizontally slidably assembled on the sliding rod. To ensure the vertical guidance of the conveyed wire, the fixed clamping wheel 16 and the movable clamping wheel 17 on both sides of the support frame 15 are used to press and clamp the wire vertically upward. A clamping spring 18 is horizontally sleeved on the sliding rod of the support frame 15, and the two ends of the clamping spring 18 are respectively fixed to the end of the sliding rod and the movable clamping wheel 17. To ensure that when the fixed clamping wheel 16 and the movable clamping wheel 17 press and clamp the wire, the deformation force of the clamping spring 18 pushes the movable clamping wheel 17 to move horizontally on the sliding rod, causing the movable clamping wheel 17 to press the wire against the fixed clamping wheel 16 for vertical wire conveying. Support springs 13 are vertically fixed to the top and bottom of the bracket 11, and the other end of the support springs 13 is fixed to the support plate 14. A vibration motor 19 is vertically fixed to the support frame 15. In order to accelerate the drop of liquid on the phosphated iron wire, the vibration motor 19 on one side of the support frame 15 is started, which drives the support frame 15 to vibrate, causing the support springs 13 to deform and shake. This causes the iron wire held by the fixed clamping wheel 16 and the movable clamping wheel 17 to vibrate, thus accelerating the shaking off of the water that is not adhering to it.
[0031] The implementation principle of the galvanized iron wire blowing device in this embodiment is as follows: During use, when blowing and drying the scaled iron wire to remove liquid from the surface of the iron wire, the iron wire passes through the bottom support frame 15 of the blowing frame 21 of the blowing component 2 and enters the blowing frame 21. In order to ensure that the fixed clamping wheel 16 and the movable clamping wheel 17 squeeze and clamp the iron wire, the deformation force of the clamping spring 18 is used to push the movable clamping wheel 17 to move horizontally on the slide rod, so that the movable clamping wheel 17 presses the iron wire against the fixed clamping wheel 16 for vertical conveying of the iron wire. The vibration motor 19 on one side of the support frame 15 is started, which drives the support frame 15 to vibrate, causing the support spring 13 to deform and shake, so that the iron wire clamped by the fixed clamping wheel 16 and the movable clamping wheel 17 vibrates, which speeds up the shaking off of the water adhering to it. The air pump 23 at one end of the heating cylinder 22 is started to drive the outside air into the heating cylinder 22. Air comes into contact with multiple heating rods 24, carrying heat into the diversion pipe 25. The heated air is then guided through the diversion pipe 25 into multiple air frames 26. The air is then guided through the multiple air frames 26 into the blowing frame 21. The upward-conveyed iron wire passes through the multiple air frames 26 in sequence. The gas sprayed from the multiple air frames 26 blows and dries the liquid on the surface of the iron wire. Then, the iron wire enters the wiping cylinder 31 of the wiping component 3. The two arc-shaped plates 32 inside the wiping cylinder 31 are deformed and supported by multiple elastic frames 33, ensuring that the water-absorbing cotton block 34 is pressed against the iron wire to absorb the water stains on the surface of the iron wire. The water-absorbing cotton block 34 in the wiping cylinder 31 presses against the surface of the iron wire to absorb the water stains remaining on the iron wire. Thus, the phosphated and soaked iron wire passes through the blowing component 2 and the wiping component 3 in sequence in the vertical direction to remove the water stains on the surface of the iron wire.
[0032] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A galvanized iron wire blowing device, characterized in that, The system includes a support (1), a blowing component (2), and a wiping component (3). The support (1) includes a bracket (11), with a fixing screw (12) installed through the bottom of the bracket (11). Support plates (14) are horizontally arranged on both the upper and lower sides of the top of the bracket (11), and support frames (15) are vertically fixed to the ends of the support plates (14). The blowing component (2) and the wiping component (3) are vertically arranged between the support frames (15) on the upper and lower sides of the bracket (11). 3) The blowing component (2) includes a blowing frame (21), which is vertically fixed on the top surface of the support frame (15) on the lower side of the bracket (11), and multiple air frames (26) are horizontally fixed through the blowing frame (21) in the vertical direction. The wiping component (3) includes a wiping tube (31), which is vertically fixed on the top surface of the blowing frame (21), and two absorbent cotton blocks (34) are vertically and symmetrically arranged inside the wiping tube (31).
2. The galvanized iron wire blowing device according to claim 1, characterized in that: A heating cylinder (22) is horizontally arranged on the outside of the purge frame (21), and a wind pump (23) is fixedly connected to one end of the heating cylinder (22). Multiple heating rods (24) are horizontally fixed inside the heating cylinder (22).
3. The galvanized iron wire blowing device according to claim 2, characterized in that: The other end of the heating cylinder (22) is connected to a diversion pipe (25), and the diversion pipe (25) is connected to and fixed with multiple air frames (26).
4. The galvanized iron wire blowing device according to claim 1, characterized in that: Two arc-shaped plates (32) are symmetrically and vertically arranged on the inner wall of the wiping tube (31), and multiple elastic frames (33) are horizontally fixed on the outer wall of the two arc-shaped plates (32) in the vertical direction.
5. The galvanized iron wire blowing device according to claim 4, characterized in that: The other end of the multiple elastic frames (33) on the outer wall of the arc plate (32) is fixed to the inner wall of the wiping tube (31), and the inner wall of the arc plate (32) is fixedly connected to the absorbent cotton block (34).
6. The galvanized iron wire blowing device according to claim 1, characterized in that: One side of the support frame (15) is vertically fixed with a fixed clamping wheel (16), and the other end of the support frame (15) is horizontally fixed with a sliding rod. The other side of the support frame (15) is vertically provided with a movable clamping wheel (17), and the movable clamping wheel (17) is horizontally slidably assembled on the sliding rod.
7. The galvanized iron wire blowing device according to claim 6, characterized in that: A clamping spring (18) is horizontally sleeved on the slide rod of the support frame (15), and the two ends of the clamping spring (18) are respectively fixed to the end of the slide rod and the movable clamping wheel (17).
8. The galvanized iron wire blowing device according to claim 7, characterized in that: The top and bottom sides of the bracket (11) are vertically fixed with support springs (13), and the other end of the support springs (13) is fixed on the support plate (14). The support frame (15) is vertically fixed with a vibration motor (19).
Citation Information
Patent Citations
Pickled iron wire secondary cleaning device
CN203807563U