Glue stick antenna threaded interface screwing equipment

By designing a screw-in device for the threaded interface of the glue rod antenna, and using interchangeable screw-in ends and a power component to control the screw-in depth of the threaded parts, the problem of unstable installation of glue rod antennas was solved, and the stability and installation quality were improved.

CN224196743UActive Publication Date: 2026-05-05XIANGYANG COMM CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
XIANGYANG COMM CO LTD
Filing Date
2025-06-09
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

In the existing technology, the screw depth of the threaded parts of the glue rod antenna is difficult to control, resulting in unstable installation.

Method used

A screwing device for threaded interfaces of glue rod antennas has been designed, including a screwing gear ring, a fixed shaft, a screwing assembly, a fixing frame, and a power assembly. By using interchangeable screwing ends and the rotation control of the power assembly, the screwing depth of the threaded parts is ensured to be consistent.

Benefits of technology

Stable installation of the glue rod antenna was achieved, installation quality was improved, and the consistent screwing depth of multiple threaded parts was ensured.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a rubber rod antenna threaded interface screwing device which comprises a screwing gear ring and a fixing shaft connected to the inner side of the screwing gear ring. The screwing assembly is arranged on the outer side of the fixing shaft, the screwing assembly can rotate around the fixing shaft, and the screwing assembly is used for screwing the rubber rod antenna threaded interface; the fixing frame is slidably connected with the upper side and the lower side of the screwing gear ring, and the fixing frame is used for supporting the screwing gear ring; and the power assembly is installed on the fixing frame, the power assembly is in transmission connection with the screwing gear ring, and the power assembly is used for providing driving force for rotation of the screwing gear ring. According to the utility model, the number of rotation turns of the screwing assembly can be determined by determining the rotation time of the power assembly, so that the screw-in depth can be determined, a plurality of threaded pieces and the like can be conveniently kept at the same screw-in depth when the rubber rod antenna is installed, the stability of the rubber rod antenna is improved, and the installation quality of the rubber rod antenna is improved.
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Description

Technical Field

[0001] This utility model relates to the field of glue rod antenna assembly, and in particular to a glue rod antenna thread interface screwing device. Background Technology

[0002] An antenna is a transducer that converts guided waves propagating on a transmission line into electromagnetic waves propagating in an unbounded medium (usually free space), or vice versa. It's a component in wireless equipment used to transmit or receive electromagnetic waves. Engineering systems such as radio communication, broadcasting, television, radar, navigation, electronic countermeasures, remote sensing, and radio astronomy—anything that uses electromagnetic waves to transmit information—rely on antennas. Furthermore, antennas are also needed for non-signal energy radiation in the transmission of energy using electromagnetic waves. A rubber rod antenna is a type of antenna, typically referring to an antenna that uses a rubber rod material (such as fiberglass or epoxy resin) as its support structure.

[0003] The glue rod antenna has a threaded interface, and the installation of the glue rod antenna requires the screws and other threaded parts to be tightened. Currently, the threaded parts are usually tightened manually with a wrench or similar tool. However, it is difficult to determine the depth of the threaded parts when tightening manually, which makes it difficult to keep the multiple threaded parts at the same depth during the installation of the glue rod antenna, thus affecting the stability of the glue rod antenna. Utility Model Content

[0004] The technical problem to be solved by this utility model is to overcome the defect in the prior art that the screwing depth is difficult to control and thus affects the stability of the glue rod antenna, and to provide a screwing device for the threaded interface of the glue rod antenna.

[0005] The present invention solves the above-mentioned technical problems through the following technical solution:

[0006] This utility model provides a screwing device for the threaded interface of a glue rod antenna, including a screwing gear ring and a fixed shaft, wherein the fixed shaft is connected to the inner side of the screwing gear ring;

[0007] A screwing assembly is disposed outside the fixed shaft and is rotatable around the fixed shaft. The screwing assembly is used to screw the threaded interface of the glue rod antenna.

[0008] A fixing frame is slidably connected to the upper and lower sides of the rotating gear ring, and the fixing frame is used to support the rotating gear ring;

[0009] A power assembly is mounted on a fixed frame and is connected to a rotating gear ring for driving force to rotate the gear ring.

[0010] In this technical solution, the screwing assembly has multiple interchangeable screwing ends, which can adapt to different thread interfaces of the glue rod antenna, thus facilitating the installation and disassembly of the glue rod antenna. The power assembly can drive the screwing assembly to rotate, so that the screwing assembly can be used for screwing. The rotation time of the power assembly can determine the number of rotations of the screwing assembly, thereby determining the screwing depth. This makes it easier for multiple threaded parts to maintain the same screwing depth during the installation of the glue rod antenna, increasing the stability of the glue rod antenna and improving the installation quality.

[0011] Preferably, the screwing assembly includes a mounting collar, and locking collars are connected to both sides of the mounting collar. Both the mounting collar and the locking collar are rotatably fitted onto the surface of the fixed shaft.

[0012] The locking collar is connected to the surface of the fixed shaft by a locking bolt.

[0013] In this technical solution, the threaded interface of the glue rod antenna can be screwed using a screwing assembly.

[0014] Preferably, the surface of the mounting collar is connected to a plurality of mounting posts arranged in a ring array, and a screwing head is connected to the end of each mounting post away from the mounting collar.

[0015] In this technical solution, the mounting post can be used to connect the mounting collar and the screw head.

[0016] Preferably, the sizes of the plurality of screw heads are all different.

[0017] In this technical solution, different sizes of screw heads can be used to screw different threaded interfaces.

[0018] Preferably, the cylindrical surface of the fixed shaft is provided with two sets of locking grooves, each set of locking grooves being composed of multiple threaded grooves arranged in a ring array;

[0019] The locking collar and the single set of locking grooves are located on the same vertical plane and have multiple threaded holes arranged in a ring array.

[0020] The locking bolt is threadedly connected to the locking collar and the fixed shaft through a threaded hole and a threaded groove.

[0021] In this technical solution, the angle of the mounting collar and the locking collar can be locked using locking bolts, thereby locking the position of the screw head.

[0022] Preferably, the fixing frame includes a mounting frame, and the screwing gear ring is disposed inside the mounting frame;

[0023] The mounting frame has anti-detachment sliders connected to the inner sides of its top and bottom surfaces. The rotating gear ring has track grooves on both its upper and lower sides, and the anti-detachment sliders are set in the track grooves and are slidably connected to the rotating gear ring.

[0024] In this technical solution, a fixed frame can be used to provide support for structures such as the rotating gear ring and the power assembly.

[0025] Preferably, the mounting frame has a C-shaped cross-section;

[0026] The cross-section of the anti-detachment slider is a T-shaped structure.

[0027] In this technical solution, the rotation trajectory of the rotating gear ring can be limited by the anti-detachment slider, making the rotation of structures such as the rotating gear ring more stable.

[0028] Preferably, a fixed handle is connected to the outside of the mounting frame.

[0029] In this technical solution, a fixed handle facilitates the gripping and twisting of structures such as gear rings and power components.

[0030] Preferably, the surface of the fixed handle is connected to an anti-slip protective sleeve.

[0031] In this technical solution, the anti-slip protective sleeve makes it easy to grip the fixed handle.

[0032] Preferably, the power assembly includes a drive gear and a rotary power source, the drive gear is disposed inside the mounting frame, and the side of the drive gear meshes with the side of the screwing gear ring.

[0033] The rotary power source is connected to the top surface of the mounting frame. The output end surface of the rotary power source is rotatably connected to the top surface of the mounting frame. The output end of the rotary power source is connected to the top of the drive gear. The bottom surface of the drive gear is rotatably connected to the inner side of the bottom surface of the mounting frame.

[0034] In this technical solution, a power component can be used to provide driving force for the rotation of the screw gear ring.

[0035] Based on common knowledge in the field, the above-mentioned preferred conditions can be combined arbitrarily to obtain various preferred embodiments of this utility model.

[0036] The positive and progressive effects of this utility model are as follows:

[0037] The screwing assembly of this invention has interchangeable screwing ends to adapt to different thread interfaces of the glue rod antenna, thus facilitating the installation and disassembly of the glue rod antenna. The power component can drive the screwing assembly to rotate, allowing for screwing processing. The rotation time of the power component can determine the number of rotations of the screwing assembly, thereby determining the screwing depth. This makes it easier for multiple threaded parts to maintain the same screwing depth during glue rod antenna installation, increasing the stability of the glue rod antenna and improving the installation quality. Attached Figure Description

[0038] Figure 1 This is a schematic diagram of the screwing device for the threaded interface of the glue rod antenna according to an embodiment of the present invention.

[0039] Figure 2 for Figure 1 The diagram shows the overall front view of the screwing device for the threaded interface of the glue rod antenna.

[0040] Figure 3 for Figure 2 The diagram shows a cross-sectional view of the screwing device for the threaded interface of the glue rod antenna.

[0041] Figure 4 for Figure 1 The diagram shows a top view of the overall structure of the screwing device for the threaded interface of the glue rod antenna.

[0042] Figure 5 for Figure 4 The diagram shows a BB cross-sectional view of the screwing device for the threaded interface of the glue rod antenna.

[0043] Figure 6 for Figure 4 The diagram shows a CC cross-sectional view of the screwing device for the threaded interface of the glue rod antenna.

[0044] Explanation of reference numerals in the attached figures

[0045] 1. Tighten the gear ring;

[0046] 2. Fixed shaft;

[0047] 3. Tightening assembly; 31. Mounting collar; 32. Locking collar; 33. Locking bolt; 34. Mounting post; 35. Tightening head;

[0048] 4. Fixing bracket; 41. Mounting frame; 42. Anti-detachment slider; 43. Fixing handle; 44. Anti-slip protective sleeve;

[0049] 5. Power components; 51. Drive gear; 52. Rotary power source. Detailed Implementation

[0050] The present invention will be further illustrated by way of embodiments below, but the present invention is not limited to the scope of the embodiments described herein.

[0051] Figures 1 to 6 The diagram shown is a structural schematic of an embodiment of the glue rod antenna thread interface tightening device of this utility model. The glue rod antenna thread interface tightening device includes a tightening gear ring 1 and a fixed shaft 2, wherein the fixed shaft 2 is connected to the inner side of the tightening gear ring 1;

[0052] The screwing assembly 3 is disposed outside the fixed shaft 2 and can rotate around the fixed shaft 2. The screwing assembly 3 is used to screw the threaded interface of the glue rod antenna.

[0053] The fixing frame 4 is slidably connected to the upper and lower sides of the rotating gear ring 1, and the fixing frame 4 is used to support the rotating gear ring 1.

[0054] The power component 5 is installed at the fixed frame 4 and is connected to the rotating gear ring 1 for transmission. The power component 5 is used to provide driving force for the rotation of the rotating gear ring 1.

[0055] In this technical solution, the screwing assembly 3 can be interchanged with various screwing ends to adapt to different thread interfaces of the glue rod antenna, thus facilitating the installation and disassembly of the glue rod antenna. The power assembly 5 can drive the screwing assembly 3 to rotate, thereby enabling screwing processing. The rotation time of the power assembly 5 can determine the number of rotations of the screwing assembly 3, thus determining the screwing depth. This makes it easier for multiple threaded parts to maintain the same screwing depth during glue rod antenna installation, increasing the stability of the glue rod antenna and improving the installation quality.

[0056] The screwing assembly 3 includes a mounting collar 31, and locking collars 32 are connected to both sides of the mounting collar 31. Both the mounting collar 31 and the locking collar 32 are rotatably fitted onto the surface of the fixed shaft 2.

[0057] The locking collar 32 is connected to the surface of the fixed shaft 2 by the locking bolt 33.

[0058] In this technical solution, the screwing assembly 3 can be used to screw the threaded interface of the glue rod antenna.

[0059] The mounting collar 31 has a plurality of mounting posts 34 arranged in a ring array on its surface, and a screw head 35 is connected to the end of the mounting post 34 away from the mounting collar 31.

[0060] In this technical solution, the mounting post 34 can be used to connect the mounting collar 31 and the screw head 35.

[0061] The sizes of the various screw heads 35 are all different.

[0062] The screw head 35 has a cross-shaped structure or a cylindrical structure with a hexagonal inner groove.

[0063] In this technical solution, different threaded interfaces can be screwed using screw heads 35 of different sizes.

[0064] The cylindrical surface of the fixed shaft 2 is provided with two sets of locking grooves, each set of locking grooves being composed of multiple threaded grooves arranged in a ring array.

[0065] The locking collar 32 and the single set of locking grooves are located on the same vertical plane and have multiple threaded holes arranged in a ring array.

[0066] The locking bolt 33 is threadedly connected to the locking collar 32 and the fixed shaft 2 through a threaded hole and a threaded groove.

[0067] In this technical solution, the angles of the mounting collar 31 and the locking collar 32 can be locked using the locking bolt 33, thereby locking the position of the screw head 35.

[0068] In use, the mounting collar 31 and locking collar 32 can be rotated using the fixed shaft 2. This will cause the mounting post 34 and the screw head 35 to rotate, so that the corresponding screw head 35 is facing directly downward or directly upward, that is, the screw head 35 is perpendicular to the screw gear ring 1. Then, the locking bolt 33 is installed at the locking collar 32 and the fixed shaft 2, so that the angle of the locking collar 32 can be locked by the locking bolt 33, and thus the angle of the mounting collar 31 and the screw head 35 can be locked. In use, the corresponding screw head 35 is connected to the threaded interface of the glue rod antenna.

[0069] The fixing frame 4 includes a mounting frame 41, and the screwing gear ring 1 is disposed inside the mounting frame 41;

[0070] The mounting frame 41 has anti-detachment sliders 42 connected to the inner sides of its top and bottom surfaces. The rotating gear ring 1 has track grooves on both its upper and lower sides. The anti-detachment sliders 42 are set in the track grooves and are slidably connected to the rotating gear ring 1.

[0071] In this technical solution, the fixing frame 4 can provide support for structures such as the rotating gear ring 1 and the power component 5.

[0072] The mounting frame 41 has a C-shaped cross-section;

[0073] The cross-section of the anti-detachment slider 42 is a T-shaped structure.

[0074] In this technical solution, the anti-detachment slider 42 can limit the rotation trajectory of the rotating gear ring 1, making the rotation of the rotating gear ring 1 and other structures more stable.

[0075] A fixed handle 43 is connected to the outside of the mounting frame 41.

[0076] In this technical solution, the fixed handle 43 facilitates the gripping and twisting of structures such as the gear ring 1 and the power component 5.

[0077] The surface of the fixed handle 43 is connected to an anti-slip protective sleeve 44.

[0078] In this technical solution, the anti-slip protective sleeve 44 makes it easy to hold the fixed handle 43.

[0079] The power assembly 5 includes a drive gear 51 and a rotary power source 52. The drive gear 51 is disposed inside the mounting frame 41, and the side of the drive gear 51 meshes with the side of the screwing gear ring 1.

[0080] The rotary power source 52 is connected to the top surface of the mounting frame 41. The output end surface of the rotary power source 52 is rotatably connected to the top surface of the mounting frame 41. The output end of the rotary power source 52 is connected to the top of the drive gear 51. The bottom surface of the drive gear 51 is rotatably connected to the inner side of the bottom surface of the mounting frame 41.

[0081] In this technical solution, the power component 5 can provide driving force for the rotation of the screw gear ring 1.

[0082] In use, the rotary power source 52 can drive the drive gear 51 to rotate, which in turn drives the screwing gear ring 1 to rotate, thereby driving the fixed shaft 2 to rotate, which in turn drives the mounting collar 31, locking collar 32 and screwing head 35 to rotate, which in turn drives the threaded parts of the glue rod antenna to rotate and screw them, thereby completing the installation of the glue rod antenna.

[0083] During the screwing process, a timer can be used to time the running time of the rotating power source 52, thereby ensuring that the screwing depth of the same type of threaded parts is the same.

[0084] The rotary power source 52 is an electric motor or other device that can output rotational kinetic energy.

[0085] While specific embodiments of this utility model have been described above, those skilled in the art should understand that these are merely illustrative examples, and the scope of protection of this utility model is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of this utility model, but all such changes and modifications fall within the scope of protection of this utility model.

Claims

1. A screwing device for threaded interfaces of glue rod antennas, characterized in that: It includes a rotating gear ring (1) and a fixed shaft (2), wherein the fixed shaft (2) is connected to the inner side of the rotating gear ring (1); A screwing assembly (3) is disposed outside the fixed shaft (2) and can rotate around the fixed shaft (2). The screwing assembly (3) is used to screw the threaded interface of the glue rod antenna. A fixing frame (4) is slidably connected to the upper and lower sides of the rotating gear ring (1). The fixing frame (4) is used to support the rotating gear ring (1). A power assembly (5) is mounted on a fixed frame (4) and is connected to a rotating gear ring (1) for driving force to rotate the gear ring (1).

2. The screwing device for the threaded interface of the glue rod antenna as described in claim 1, characterized in that: The screwing assembly (3) includes a mounting collar (31), and locking collars (32) are connected to both sides of the mounting collar (31). Both the mounting collar (31) and the locking collars (32) are rotatably fitted onto the surface of the fixed shaft (2). The locking collar (32) is connected to the surface of the fixed shaft (2) by a locking bolt (33).

3. The screwing device for the threaded interface of the glue rod antenna as described in claim 2, characterized in that: The mounting collar (31) has a plurality of mounting posts (34) arranged in a ring array on its surface, and a screw head (35) is connected to the end of the mounting post (34) away from the mounting collar (31).

4. The screwing device for the threaded interface of the glue rod antenna as described in claim 3, characterized in that: The sizes of the various screw heads (35) are all different.

5. The screwing device for the threaded interface of the glue rod antenna as described in claim 2, characterized in that: The cylindrical surface of the fixed shaft (2) is provided with two sets of locking grooves, each set of locking grooves being composed of multiple threaded grooves arranged in a ring array; The locking collar (32) and the single set of locking grooves are provided with multiple threaded holes arranged in a ring array at the same vertical plane position; The locking bolt (33) is threadedly connected to the locking collar (32) and the fixed shaft (2) through a threaded hole and a threaded groove.

6. The screwing device for the threaded interface of the glue rod antenna as described in claim 1, characterized in that: The fixing frame (4) includes a mounting frame (41), and the rotating gear ring (1) is disposed inside the mounting frame (41); The mounting frame (41) has anti-detachment sliders (42) connected to the inner sides of the top and bottom surfaces. The rotating gear ring (1) has track grooves on both the upper and lower sides. The anti-detachment sliders (42) are set in the track grooves and are slidably connected to the rotating gear ring (1).

7. The screwing device for the threaded interface of the glue rod antenna as described in claim 6, characterized in that: The mounting frame (41) has a C-shaped cross-section; The cross-section of the anti-detachment slider (42) is a T-shaped structure.

8. The screwing device for the threaded interface of the glue rod antenna as described in claim 7, characterized in that: The mounting frame (41) is connected to a fixed handle (43) on the outside.

9. The screwing device for the threaded interface of the glue rod antenna as described in claim 8, characterized in that: The surface of the fixed handle (43) is connected to an anti-slip protective sleeve (44).

10. The screwing device for the threaded interface of the glue rod antenna as described in claim 1, characterized in that: The power assembly (5) includes a drive gear (51) and a rotary power source (52). The drive gear (51) is located inside the mounting frame (41), and the side of the drive gear (51) meshes with the side of the screwing gear ring (1). The rotary power source (52) is connected to the top surface of the mounting frame (41). The output end surface of the rotary power source (52) is rotatably connected to the top surface of the mounting frame (41). The output end of the rotary power source (52) is connected to the top of the drive gear (51). The bottom surface of the drive gear (51) is rotatably connected to the inner side of the bottom surface of the mounting frame (41).