Electrostatic elimination ion wind wand
By introducing a coupled discharge circuit consisting of a conductor, an insulating tube, and a metal round tube into the ion bar, the problem of unstable connection between the ion needle and the high-voltage generator was solved, achieving high voltage stability and reliability, and improving the static elimination effect.
Patent Information
- Application Number
- CN202422847134.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2034-11-21
AI Technical Summary
The connection between the ion needle and the high-voltage generator in the existing ion bar is not stable and reliable enough, which easily causes high-voltage fluctuations and affects the static elimination effect.
A coupling discharge circuit composed of conductors, insulating tubes, and metal round tubes is used to form electrical isolation, prevent high voltage and high frequency signals from interfering with other circuits, filter noise and interference signals, and provide stable high voltage power supply.
It improves the stability and reliability of the high-voltage generator, ensures the stability of the ion flow, and enhances the static elimination effect.
Smart Images

Figure CN223872445U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field, and in particular to an electrostatic eliminator ion bar. Background Technology
[0002] An ionizer works by using a built-in small high-voltage generator to ionize air molecules into positively and negatively charged ions. When the airflow is turned on, the charged ions are ejected onto the surface of the object along with the airflow. The positive ions neutralize the negative static charge of the object, and the negative ions neutralize the positive charge, thus achieving the purpose of removing static electricity. This is the working principle of an ionizer.
[0003] Currently, most ion bars use metal high-voltage plates connected to high-voltage generators for their ion needles. While this method is simple in structure and occupies little space, it lacks stability and reliability and is prone to high-voltage fluctuations, which affect the static elimination effect of the ion bar.
[0004] Based on this, the present invention proposes an electrostatic eliminator ion bar to solve the problems mentioned above. Utility Model Content
[0005] The purpose of this invention is to provide an electrostatic eliminator ion bar to improve the electrostatic elimination effect of the device.
[0006] To solve the above-mentioned technical problems, this utility model provides an electrostatic eliminator ion bar, including an ion bar body;
[0007] The main body of the ion air bar has an air duct structure;
[0008] Multiple ion needles are installed at intervals on the air duct structure, and the multiple ion needles are connected together by a coupling structure.
[0009] The coupling structure includes a conductor, an insulating tube, a metal round tube, and an isolation tube installed within the air duct structure.
[0010] The conductor is connected to a high-voltage generating device;
[0011] The insulating tube covers the conductor;
[0012] There are multiple metal tubes, and the spacing between the multiple metal tubes covers the outside of the insulating tube and is respectively connected to multiple ion needles;
[0013] An isolation tube is provided between two adjacent metal circular tubes.
[0014] Furthermore, suspension assemblies are installed on both sides of the ion bar body;
[0015] The suspension assembly includes a rotating frame and a fixed frame;
[0016] The rotating frame is fixed to the side wall of the ion bar body, and the rotating frame is rotatably connected to the fixed frame;
[0017] The fixed frame has a fixing opening at the end away from the rotating frame;
[0018] A locking element is connected between the rotating frame and the fixed frame to restrict their rotation from each other.
[0019] Furthermore, the locking element includes a fastening bolt and an elastic washer;
[0020] The end face of the fixing frame is provided with an arc-shaped guide groove;
[0021] The fastening bolt passes through the arc-shaped guide groove and is threadedly connected to the rotating frame;
[0022] The elastic washer is fitted onto the fastening bolt and is located between the bolt head and the fixing bracket.
[0023] Furthermore, the fixing port is configured as an elongated strip, and the length direction of the fixing port is consistent with the length direction of the ion wind bar body.
[0024] Furthermore, the air duct structure is provided with an installation cavity and a high-pressure air channel along its length;
[0025] The coupling structure is installed inside the mounting cavity;
[0026] The ion air bar body has air intake pipes and plugs on both ends of its sidewalls that are connected to the high-pressure air channel;
[0027] The air duct structure is equipped with multiple air nozzles, each air nozzle has the ion needle at its center, and the end face of the air nozzle has an air outlet that communicates with the high-pressure air duct.
[0028] Furthermore, there are multiple air outlets, which are arranged in a circumferentially evenly spaced manner around the ion needle.
[0029] Furthermore, the ion bar body has a display screen for real-time display of the operating status of the ion bar body.
[0030] Furthermore, the ion air bar body has a network cable port for network communication.
[0031] Compared with the prior art, the present invention has at least the following beneficial effects:
[0032] This invention connects a conductor to a high-voltage generator and supplies power to the ion needle via a metal tube outside the insulating tube, thus forming a coupled discharge circuit within the ion bar body. This coupled discharge circuit enables electrical isolation between different circuits, preventing high-voltage and high-frequency signals generated during ion bar operation from interfering with other circuits. It also protects the ion bar from external circuit faults or interference signals, improving the stability and reliability of the high voltage and thus enhancing the device's static electricity removal effect.
[0033] Furthermore, the coupling discharge circuit can also play a certain filtering role, filtering out noise and interference signals in the high voltage generator, providing the device with a more stable and pure high voltage, ensuring that the device generates a stable ion flow, and improving the static electricity removal effect. Attached Figure Description
[0034] Figure 1 This is a schematic diagram of the overall structure of the electrostatic eliminator ion bar of this utility model;
[0035] Figure 2 This is a schematic diagram of the coupling structure installation in the electrostatic eliminator ion wind bar of this utility model;
[0036] Figure 3 This is a schematic cross-sectional view of the coupling structure in the electrostatic eliminator ion wind bar of this utility model;
[0037] Figure 4 This utility model Figure 1 Enlarged view of the structure at point A in the middle;
[0038] Figure 5 This is a schematic diagram of the air duct structure in the electrostatic eliminator ion bar of this utility model;
[0039] Figure 6 This is a schematic diagram of the nozzle structure in the electrostatic eliminator ion bar of this utility model.
[0040] In the diagram: 1. Ionizing air bar body; 11. Air duct structure; 111. Mounting cavity; 112. High-pressure air duct; 12. Ionizing needle; 13. Coupling structure; 131. Conductor; 132. Insulating tube; 133. Metal round tube; 134. Isolation tube; 14. Air inlet pipe; 15. Plug; 16. Nozzle; 161. Air outlet; 17. Display screen; 18. Network cable socket; 2. Suspension assembly; 21. Rotating frame; 22. Fixing frame; 221. Fixing port; 222. Arc-shaped guide groove; 23. Fastening bolt; 24. Elastic gasket. Detailed Implementation
[0041] The electrostatic eliminator ion bar of this invention will now be described in more detail with reference to the accompanying drawings, which illustrate preferred embodiments of the invention. It should be understood that those skilled in the art can modify the invention described herein while still achieving its advantageous effects. Therefore, the following description should be understood as being of general knowledge to those skilled in the art and is not intended to limit the invention.
[0042] The present invention will be described in more detail below by way of example with reference to the accompanying drawings. The advantages and features of the present invention will become clearer from the following description. It should be noted that the drawings are in a very simplified form and use non-precise proportions, and are only used to facilitate and clarify the illustration of the embodiments of the present invention.
[0043] like Figure 1 As shown in the figure, this utility model embodiment proposes an electrostatic eliminator ion bar, including an ion bar body 1, the ion bar body 1 having an air duct structure 11, and a plurality of ion needles 12 are installed on the air duct structure 11 at intervals.
[0044] Combined with reference Figure 2 and Figure 3 The multiple ion needles 12 are connected together by a coupling structure 13.
[0045] Specifically, the coupling structure 13 includes a conductor 131, an insulating tube 132, a metal round tube 133, and an isolation tube 134 installed in the air duct structure 11. The conductor 131 is connected to a high-voltage generating device. The insulating tube 132 covers the conductor 131. There are multiple metal round tubes 133, which are spaced apart and cover the insulating tube 132 and are respectively connected to multiple ion needles 12. The isolation tube 134 is provided between two adjacent metal round tubes.
[0046] In this embodiment, the isolation tube 134 is made of an insulating material to reduce interference between the metal tubes 133. By connecting the conductor 131 to the high-voltage generator and cooperating with the metal tubes 133 outside the insulating tube 132 to supply power to the ion needle 12, a coupling discharge circuit is formed in the ion bar body 1. The coupling discharge circuit can achieve electrical isolation between different circuits, prevent the high voltage, high frequency and other signals generated when the ion bar body 1 is working from interfering with other circuits, and at the same time protect the ion bar body 1 from the influence of external circuit faults or interference signals, improve the stability and reliability of the high voltage, and thus improve the static electricity removal effect of the device.
[0047] Meanwhile, the coupling discharge circuit can also play a certain filtering role, filtering out noise and interference signals in the high voltage generator, providing a more stable and pure high voltage for the high voltage generator, ensuring that the device generates a stable ion flow, and improving the static electricity removal effect.
[0048] In one specific embodiment, in conjunction with reference to Figure 4 The ion bar body 1 is equipped with suspension components 2 on both sides; the suspension components 2 enable the ion bar body 1 to be suspended and installed.
[0049] Specifically, the suspension assembly 2 includes a rotating frame 21 and a fixed frame 22; the rotating frame 21 is fixed to the side wall of the ion bar body 1, and the rotating frame 21 is rotatably connected to the fixed frame 22; the fixed frame 22 has a fixing port 221 at one end away from the rotating frame 21; a locking member for limiting the rotation between the rotating frame 21 and the fixed frame 22 is connected between them.
[0050] By passing bolts through the fixing port 221 and tightening the bolts, the ion bar body 1 is suspended and installed. The rotating frame 21, in conjunction with the locking mechanism, allows for adjustment of the blowing angle of the installed ion bar body 1.
[0051] In the above implementation process, the locking component includes a fastening bolt 23 and an elastic washer 24; the end face of the fixing frame 22 is provided with an arc-shaped guide groove 222; the fastening bolt 23 passes through the arc-shaped guide groove 22 and is threadedly connected to the rotating frame 21; the elastic washer 24 is sleeved on the fastening bolt 23 and is located between the screw head of the fastening bolt 23 and the fixing frame 22.
[0052] When adjusting the blowing angle of the ion bar body 1, first loosen the fastening bolt 23. At this time, the rotating frame 21 can rotate relative to the fixed frame 22. Then, the ion bar body 1 can be rotated to adjust its blowing angle. After adjusting to the appropriate angle, tighten the fastening bolt 23 to provide rotation locking force for the rotating frame 21, so as to achieve stable maintenance of the blowing angle of the ion bar body 1.
[0053] In the above implementation process, preferably, the fixing port 221 is set as a long strip, and the length direction of the fixing port 221 is consistent with the length direction of the ion wind bar body 1.
[0054] By setting the fixing port 221 to a long strip shape, the installation position of the ion wind bar body 1 can be adjusted laterally.
[0055] In one specific embodiment, in conjunction with reference to Figure 5The air duct structure 11 has an installation cavity 111 and a high-pressure air channel 112 arranged along its length. The coupling structure 13 is installed in the installation cavity 111. The side walls at both ends of the ion air bar body 1 have an air inlet pipe 14 and a plug 15 that communicate with the high-pressure air channel 112. Multiple air nozzles 16 are installed on the air duct structure 11.
[0056] Combined with reference Figure 6 The nozzle 16 has the ion needle 12 at its center, and the end face of the nozzle 16 has an air outlet 161 that communicates with the high-pressure air channel 112.
[0057] High-pressure gas is introduced into the high-pressure air channel 112 through the air inlet pipe 14. The high-pressure gas is ejected through the air outlet 161 on the nozzle 16, so as to quickly transfer the charge generated by the ion needle 12 to the object for charge neutralization and achieve the purpose of eliminating static electricity.
[0058] In the specific embodiments described above, it should be noted that the positions of the air inlet pipe 14 and the plug 15 can be interchanged to allow different ends of the ion bar body 1 to be connected to the air supply equipment, thus meeting different installation requirements. Alternatively, the plug 15 can be removed, and the air inlet pipe can be installed at the original location where the plug 15 was installed, thereby achieving bidirectional air intake for the ion bar body 1.
[0059] Furthermore, there are multiple air outlets 161, and the multiple air outlets 161 are arranged in a circumferentially uniform manner around the ion needle 12.
[0060] The arrangement of multiple air outlets 161 at uniform circumferential intervals improves the efficiency of charge transmission.
[0061] In one specific embodiment, the ion bar body 1 has a display screen 17 for real-time display of the operating status of the ion bar body 1.
[0062] The ion air bar body 1 has a network cable port 18 for network communication.
[0063] The display screen 17 shows the real-time operating status of the ion air bar body 1, which allows on-site staff to understand the status of the ion air bar body 1 in real time. At the same time, the network cable port 18 connects to the transmission signal line, which can remotely transmit the relevant operating data of the ion air bar body 1 via network communication.
[0064] It should be noted that how the display screen 17 displays the operating status of the ion bar body 1 and how the network cable port 18 realizes the remote transmission of the operating data of the ion bar body 1 via network communication are existing technologies and will not be elaborated here.
[0065] In summary, compared with the prior art, this utility model has at least the following advantages:
[0066] This invention connects a conductor to a high-voltage generator and supplies power to the ion needle via a metal tube outside the insulating tube, thus forming a coupled discharge circuit within the ion bar body. This coupled discharge circuit enables electrical isolation between different circuits, preventing high-voltage and high-frequency signals generated during ion bar operation from interfering with other circuits. It also protects the ion bar from external circuit faults or interference signals, improving the stability and reliability of the high voltage and thus enhancing the device's static electricity removal effect.
[0067] Furthermore, the coupling discharge circuit can also play a certain filtering role, filtering out noise and interference signals in the high voltage generator, providing the device with a more stable and pure high voltage, ensuring that the device generates a stable ion flow, and improving the static electricity removal effect.
[0068] Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.
Claims
1. An electrostatic eliminator ion bar, characterized in that, Including the ion wind bar body; The main body of the ion air bar has an air duct structure; Multiple ion needles are installed at intervals on the air duct structure, and the multiple ion needles are connected together by a coupling structure. The coupling structure includes a conductor, an insulating tube, a metal round tube, and an isolation tube installed within the air duct structure. The conductor is connected to a high-voltage generating device; The insulating tube covers the conductor; There are multiple metal tubes, and the spacing between the multiple metal tubes covers the outside of the insulating tube and is respectively connected to multiple ion needles; An isolation tube is provided between two adjacent metal circular tubes.
2. The electrostatic eliminator ion bar as described in claim 1, characterized in that, Suspension assemblies are installed on both sides of the ion wind bar body; The suspension assembly includes a rotating frame and a fixed frame; the rotating frame is fixed to the side wall of the ion bar body, and the rotating frame is rotatably connected to the fixed frame; The fixed frame has a fixing opening at the end away from the rotating frame; A locking element is connected between the rotating frame and the fixed frame to restrict their rotation from each other.
3. The electrostatic eliminator ion bar as described in claim 2, characterized in that, The locking element includes a fastening bolt and an elastic washer; The end face of the fixing frame is provided with an arc-shaped guide groove; The fastening bolt passes through the arc-shaped guide groove and is threadedly connected to the rotating frame; The elastic washer is fitted onto the fastening bolt and is located between the bolt head and the fixing bracket.
4. The electrostatic eliminator ion bar as described in claim 2, characterized in that, The fixing port is designed to be elongated, and the length direction of the fixing port is consistent with the length direction of the ion wind bar body.
5. The electrostatic eliminator ion bar as described in claim 1, characterized in that, The air duct structural component is provided with an installation cavity and a high-pressure air channel along its length; The coupling structure is installed inside the mounting cavity; The ion air bar body has air intake pipes and plugs on both ends of its sidewalls that are connected to the high-pressure air channel; The air duct structure has multiple air nozzles, each air nozzle has an ion needle at its center, and the end face of the air nozzle has an air outlet that communicates with the high-pressure air duct.
6. The electrostatic eliminator ion bar as described in claim 5, characterized in that, There are multiple air outlets, which are arranged in a circumferentially and at uniform intervals around the ion needle.
7. The electrostatic eliminator ion bar as described in claim 1, characterized in that, The ion bar body has a display screen for real-time display of the operating status of the ion bar body.
8. The electrostatic eliminator ion bar as described in claim 1, characterized in that, The ion air bar body has a network cable port for network communication.