Communication antenna and processing equipment thereof

By designing a communication antenna processing equipment including vertical support plates and power wheels, the problem of low efficiency of existing equipment is solved, efficient continuous processing and signal stability of the spiral plates are achieved, and raw material plates are adapted to different sizes.

CN119275540BActive Publication Date: 2025-08-08SHANDONG SHENHENG ENG CONSTR CO LTD
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Patent Information

Application Number
CN202411484310.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-23
Publication Date
2025-08-08
Estimated Expiration
2044-10-23

AI Technical Summary

Technical Problem

The existing spiral antenna processing equipment is inefficient, which affects the stability and continuity of automotive antenna signals.

Method used

A communication antenna processing equipment is designed, including vertical support plates, power wheels, processing rollers, rolling rods and spring structures. The continuous processing of the spiral plate is achieved through automated rolling and friction forces to adapt to the processing needs of different thread pitches and diameters.

Benefits of technology

It improves the stability and processing efficiency of automotive antenna signals, realizes efficient continuous processing of spiral plates, and adapts to raw material plates of different sizes.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention relates to the field of antennas, and in particular to a communication antenna and processing equipment thereof. The communication antenna comprises a base, a central antenna fixed to the base, and a helical antenna with one end fixed to the base, with the central antenna located at the center of the helical antenna. The communication antenna processing equipment comprises a vertical support plate, a power wheel rotating on the support plate, and a square rod coaxially fixed to the power wheel. A processing roller is connected to the square rod, and the processing roller has a spiral groove. A slide slides on the support plate above the power wheel, and a rolling rod rotates on the slide. A spring I is provided between the slide and the support plate to press the rolling rod downward against the processing roller. The present invention can improve the stability of the vehicle antenna signal and efficiently process the antenna's helical portion.
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Description

Technical Field

[0001] The present invention relates to the field of antennas, and in particular to a communication antenna and processing equipment thereof. Background Art

[0002] With the development of intelligent connected vehicles, the application of new technologies such as V2X and 5G has become inevitable. This has led to a continuous increase in the number of vehicle antennas. The increasing connectivity of vehicles has also led to an increase in the amount of communication data and systems between vehicles. The increasing degree of vehicle automation has led to a demand for more continuous communication while driving. Therefore, improving the stability of vehicle antenna signals has become critical.

[0003] Helical antennas are a type of antenna that can transmit and receive polarized electromagnetic signals that rotate in space. They are commonly used in ground stations for satellite communications. However, existing processing equipment is inefficient when machining the helical portion of a helical antenna, hindering production. Summary of the Invention

[0004] The purpose of the present invention is to provide a communication antenna that can improve the stability of a car antenna signal; and to provide a communication antenna processing device that can efficiently process the antenna spiral portion.

[0005] The purpose of the present invention is achieved through the following technical solutions:

[0006] A communication antenna comprises a base, a central antenna fixed on the base, and a helical antenna with one end fixed on the base, wherein the central antenna is located at the center of the helical antenna.

[0007] The lower end surface of the base is provided with magnetic material.

[0008] A communication antenna processing equipment is used to process helical antennas, including a vertical support plate, a power wheel rotating on the support plate, and a square rod coaxially fixed to the power wheel. The square rod is connected to a processing roller, and the processing roller is provided with a spiral groove. A slide slides on the support plate above the power wheel, and a rolling rod rotates on the slide. A spring I is provided between the slide and the support plate to press the rolling rod downward onto the processing roller.

[0009] A bottom plate is fixed to the lower end of the support plate.

[0010] It also includes a vertical plate fixed with a mounting shaft, the mounting shaft is used to install the raw material plate roll, and the mounting shaft is threadedly connected with a threaded sleeve at the end away from the vertical plate.

[0011] A worm gear shaft is fixed to the lower end of the vertical plate. The worm gear shaft rotates on the bottom plate. A worm is rotated on the bottom plate. The worm is meshed and connected with the worm gear shaft.

[0012] Buffer springs are respectively provided between the two sides of the raw material plate coil and the threaded sleeve and the vertical plate.

[0013] The vertical plate is extended with an auxiliary vertical plate near the processing roller side, and the auxiliary vertical plate is provided with a vertical sliding hole, in which an upper slide and a lower slide slide in the vertical sliding hole, a top wheel rotates on the upper slide, and a pressure wheel rotates on the lower slide, and a spring II is provided between the lower slide and the auxiliary vertical plate to press the pressure wheel downward to press the top wheel, and an adjusting sleeve rotates at the lower end of the auxiliary vertical plate, and the screw on the lower slide is threadedly connected to the adjusting sleeve.

[0014] The top wheel is fixed with an edge near the auxiliary vertical plate end, and a threaded support rod is fixed to the other end of the top wheel. A ring plate is slipped on the top wheel, and a slide is slipped on the threaded support rod. The slide is fixedly connected to the ring plate, and a spring III is provided between the slide and the top wheel. A nut is threadedly connected to the threaded support rod.

[0015] The square rod is fixed with a baffle via bolts at the end away from the power wheel, and a spring IV is provided between the baffle and the processing roller. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a structural diagram of a communication antenna;

[0017] Figure 2 and Figure 3 It is a structural diagram of a communication antenna processing equipment;

[0018] Figure 4 It is a structural diagram of the support plate;

[0019] Figure 5 It is a schematic diagram of the structure of the processing roller and the square rod;

[0020] Figure 6 2. It is a structural diagram of a rolling rod;

[0021] Figure 7 It is a schematic diagram of the structure of the vertical plate and the top wheel;

[0022] Figure 8 It is a structural diagram of the auxiliary vertical plate;

[0023] Figure 9 This is a schematic diagram of the structure of the crown chakra;

[0024] Figure 10 It is a structural diagram of the pressure wheel.

[0025] In the picture:

[0026] Base 101; center antenna 102; helical antenna 103;

[0027] Bottom plate 201; Support plate 202;

[0028] Power wheel 301; processing roller 302; spiral groove 303; square rod 304; baffle 305; bolt 306; spring IV 307;

[0029] Sliding seat 401; rolling rod 402; spring I 403;

[0030] Worm gear shaft 501; worm 502; vertical plate 503; auxiliary vertical plate 504; mounting shaft 505; buffer spring 506; threaded sleeve 507; vertical sliding hole 508;

[0031] Upper slide 601; adjustment sleeve 602; top wheel 603; edge 604; ring plate 605; slide 606; threaded support rod 607; nut 608; spring III 609;

[0032] Lower slide seat 701; pressure wheel 702; spring II 703. DETAILED DESCRIPTION

[0033] like Figure 1 As shown, the communication antenna is described in detail:

[0034] A communication antenna includes a base 101, a central antenna 102 and a helical antenna 103. The central antenna 102 is fixed on the base 101. One end of the helical antenna 103 is fixed on the base 101. The central antenna 102 is located at the center of the helical antenna 103.

[0035] The lower end surface of the base 101 is provided with magnetic material, so that the base 101 can be stably installed on the car. When used for communication, the stability of the car antenna signal is improved through the cooperation of the normal central antenna 102 and the helical antenna 103.

[0036] like Figure 2-10 As shown, an embodiment of processing the helical antenna 103 by the communication antenna processing equipment is described in detail:

[0037] A communication antenna processing equipment is used to process a helical antenna 103, including a support plate 202, a power wheel 301, a processing roller 302, a spiral groove 303, a square rod 304, a slide 401, a rolling rod 402 and a spring I 403; the support plate 202 is arranged vertically, the power wheel 301 rotates on the support plate 202, the square rod 304 is coaxially fixed on the power wheel 301, the processing roller 302 is slidably connected to the square rod 304, the processing roller 302 is provided with a spiral groove 303, a slide 401 slides on the support plate 202 above the power wheel 301, and a rolling rod 402 rotates on the slide 401, and a spring I 403 is provided between the slide 401 and the support plate 202 to press the rolling rod 402 downward on the processing roller 302.

[0038] During processing, the free end of the rolled raw material sheet is placed in the spiral groove 303 and pressed against the spiral groove 303 by the rolling rod 402. At this time, the first motor installed on the support plate 202 is started to drive the power wheel 301, so that the power wheel 301 drives the processing roller 302 to rotate through the square rod 304, thereby driving the spiral groove 303 to rotate. At this time, the processing personnel press the raw material sheet with their hands to ensure that the raw material sheet can be automatically fed as the spiral groove 303 rotates, thereby obtaining a spiral sheet with the same pitch as the spiral groove 303.

[0039] The rolling rod 402 presses the raw material plate into the spiral groove 303 by the elastic force of the spring I 403. When the raw material plate rotates into the spiral groove 303 along with the spiral groove 303, the rolling rod 402 presses the raw material plate at two points. The friction between the spiral plate and the spiral groove 303 is sufficient for the spiral groove 303 to drive the raw material plate to be fed automatically. The processing equipment can automatically process the spiral plate continuously without the assistance of the processing personnel, thereby improving the efficiency of processing the spiral plate.

[0040] Since the length of the processing roller 302 is limited and the spiral groove 303 thereon is limited, when the length of the spiral plate to be processed is greater than the length of the spiral groove 303, the first motor can be started in the reverse direction to drive the processing roller 302 to rotate in the reverse direction. At this time, since the processed spiral plate cannot retreat, the spiral plate will slide in the spiral groove 303. Then, when the spiral plate remains stationary, as the spiral groove 303 and the spiral plate that has been processed are spirally matched, the spiral plate will move relatively on the processing roller 302, so that the previously processed spiral plate will be separated from the spiral groove 303, and then the spiral groove 303 will be empty again, so that the spiral plate can be processed again and continuously.

[0041] Moreover, through the sliding connection between the processing roller 302 and the square rod 304, when it is necessary to process spiral plates with different pitches or radii, the processing roller 302 can be replaced, and the processing roller 302 with the spiral groove 303 that meets the requirements can be installed on the square rod 304; thereby, this processing equipment can process raw material plates of different widths or thicknesses into spiral shapes, and can also process cylindrical spiral plates of different diameters.

[0042] Further:

[0043] By fixing the bottom plate 201 at the lower end of the support plate 202, support for the entire processing equipment is formed, ensuring that the support plate 202 is in a vertical state.

[0044] like Figure 2-10 As shown:

[0045] It also includes a vertical plate 503 fixed with a mounting shaft 505, and the mounting shaft 505 is used to install the raw material plate roll. The mounting shaft 505 is threadedly connected to a threaded sleeve 507 at the end away from the vertical plate 503, and the raw material plate roll is limited on the mounting shaft 505 between the vertical plate 503 and the threaded sleeve 507 through the threaded sleeve 507.

[0046] Further:

[0047] Buffer springs 506 are provided between the threaded sleeve 507 and the vertical plate 503 on both sides of the raw material coil.

[0048] By setting up the two buffer springs 506, when installing the raw material roll, the two buffer springs 506 can elastically tighten the two sides of the raw material roll to prevent the raw material roll from moving axially and adapt to raw material rolls of different widths.

[0049] like Figure 2-10 As shown:

[0050] A worm gear shaft 501 is fixed to the lower end of the vertical plate 503 . The worm gear shaft 501 rotates on the bottom plate 201 . A worm 502 rotates on the bottom plate 201 . The worm 502 is meshed and transmission-connected with the worm gear shaft 501 .

[0051] The vertical plate 503 and the bottom plate 201 are installed by the worm gear shaft 501. At the same time, in order to ensure that the plane direction of the raw material plate roll on the installation shaft 505 corresponds to the helical angle of the spiral groove 303 and remains stationary, a worm 502 is set. Through the self-locking function of the worm 502 and the worm gear shaft 501, the helical angle of the raw material plate roll and the spiral groove 303 correspond and remain stationary, and the raw material plate roll is driven to rotate by rotating the worm 502 to engage the transmission worm gear shaft 501 to adapt to the processing of different helical angles.

[0052] like Figure 2-10 As shown:

[0053] An auxiliary vertical plate 504 is extended from the vertical plate 503 near the processing roller 302 side, and a vertical sliding hole 508 is provided on the auxiliary vertical plate 504. An upper slide 601 and a lower slide 701 slide in the vertical sliding hole 508. A top wheel 603 rotates on the upper slide 601, and a pressure wheel 702 rotates on the lower slide 701. A spring II 703 is provided between the lower slide 701 and the auxiliary vertical plate 504 to make the pressure wheel 702 press the top wheel 603 downward. An adjusting sleeve 602 rotates at the lower end of the auxiliary vertical plate 504, and the screw on the lower slide 701 is threadedly connected to the adjusting sleeve 602.

[0054] The top wheel 603 is fixed with an edge 604 near the end of the auxiliary vertical plate 504, and a threaded support rod 607 is fixed to the other end of the top wheel 603. A ring plate 605 is slidably mounted on the top wheel 603, and a slide 606 is slidably mounted on the threaded support rod 607. The slide 606 is fixedly connected to the ring plate 605. A spring III 609 is provided between the slide 606 and the top wheel 603, and a nut 608 is threadedly connected to the threaded support rod 607.

[0055] Through the elastic force of spring II 703, the pressing wheel 702 presses the raw material plate against the top wheel 603, forming an auxiliary support for the raw material plate between the raw material plate coil and the spiral plate. At the same time, the two edges 604 and the ring plate 605 limit the two sides of the raw material plate, thereby forming a limit for the raw material plate before entering the spiral groove 303, ensuring that the raw material plate can enter the spiral groove 303, and when the processing roller 302 rotates for processing, the raw material plate remains stationary, and the processing roller 302 slowly slides on the square rod 304 as the processing proceeds. At the same time, through this limit, when the processing roller 302 rotates in the opposite direction, it can slide back to its original position and continue processing.

[0056] By rotating the adjusting sleeve 602, the threaded transmission screw can drive the lower slide 701 to slide up and down, thereby adjusting the height of the raw material plate between the pressure wheel 702 and the top wheel 603 to adapt to the processing of processing rollers 302 of different diameters. By rotating the nut 608, the position of the nut 608 on the threaded support rod 607 is adjusted, and the spring III 609 elastically tightens the slide 606, so that the slide 606 can drive the ring plate 605 to slide on the top wheel 603, thereby adjusting the distance between the ring plate 605 and the edge 604 to adapt to the spiral processing of raw material plates of different widths.

[0057] like Figure 2-10 As shown:

[0058] The end of the square rod 304 away from the power wheel 301 is fixed with a baffle 305 by a bolt 306 , and a spring IV 307 is provided between the baffle 305 and the processing roller 302 .

[0059] By setting the spring IV 307 , when the processing roller 302 moves for processing, it is affected by the elastic force of the spring IV 307 , which can further increase the friction between the spiral groove 303 and the spiral plate, thereby ensuring the automatic processing.

Claims

1. A communication antenna processing device for processing a helical antenna (103), characterized in that: The invention comprises a vertical support plate (202), a power wheel (301) rotating on the support plate (202), and a square rod (304) coaxially fixed on the power wheel (301), wherein the square rod (304) is connected to a processing roller (302), and the processing roller (302) is provided with a spiral groove (303), a slide (401) slides on the support plate (202) above the power wheel (301), and a rolling rod (402) rotates on the slide (401), and a spring I (403) is provided between the slide (401) and the support plate (202) so that the rolling rod (402) is pressed downward onto the processing roller (302).

2. The communication antenna processing equipment according to claim 1, characterized in that: A bottom plate (201) is fixed to the lower end of the support plate (202).

3. The communication antenna processing equipment according to claim 2, characterized in that: It also includes a vertical plate (503) fixed with a mounting shaft (505), the mounting shaft (505) is used to install the raw material plate roll, and the mounting shaft (505) is threadedly connected to a threaded sleeve (507) at the end away from the vertical plate (503).

4. The communication antenna processing equipment according to claim 3, characterized in that: A worm gear shaft (501) is fixed to the lower end of the vertical plate (503), the worm gear shaft (501) rotates on the bottom plate (201), a worm (502) rotates on the bottom plate (201), and the worm (502) is meshed and connected to the worm gear shaft (501).

5. The communication antenna processing equipment according to claim 4, characterized in that: Buffer springs (506) are provided between the threaded sleeve (507) and the vertical plate (503) on both sides of the raw material coil.

6. The communication antenna processing equipment according to claim 5, characterized in that: An auxiliary vertical plate (504) is extended from the vertical plate (503) near the processing roller (302), and a vertical sliding hole (508) is provided on the auxiliary vertical plate (504). An upper slide seat (601) and a lower slide seat (701) slide in the vertical sliding hole (508). A top wheel (603) rotates on the upper slide seat (601), and a pressure wheel (702) rotates on the lower slide seat (701). A spring II (703) is provided between the lower slide seat (701) and the auxiliary vertical plate (504) to press the pressure wheel (702) downward to press the top wheel (603). An adjusting sleeve (602) rotates at the lower end of the auxiliary vertical plate (504), and a screw on the lower slide seat (701) is threadedly connected to the adjusting sleeve (602).

7. The communication antenna processing equipment according to claim 6, characterized in that: The top wheel (603) is fixed with an edge (604) at the end close to the auxiliary vertical plate (504), and a threaded support rod (607) is fixed to the other end of the top wheel (603). A ring plate (605) is slidably mounted on the top wheel (603), and a slide (606) is slidably mounted on the threaded support rod (607). The slide (606) is fixedly connected to the ring plate (605). A spring III (609) is provided between the slide (606) and the top wheel (603), and a nut (608) is threadedly connected to the threaded support rod (607).

8. The communication antenna processing equipment according to claim 3, characterized in that: The end of the square rod (304) away from the power wheel (301) is fixed with a baffle (305) through a bolt (306), and a spring IV (307) is provided between the baffle (305) and the processing roller (302).

Citation Information

Patent Citations

  • Portable wireless telephone antenna assembly with fragrance sending-forth function

    CN1337760A