Communication iron tower antenna support
By designing a horizontal plate-shaped body and plate structures of different lengths, combined with through slots and positioning grooves, the problems of communication tower antenna brackets slipping on tubular positioning objects and poor applicability were solved, achieving stable installation and improved safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU HUACAN TELECOMM
- Filing Date
- 2025-04-18
- Publication Date
- 2026-04-17
AI Technical Summary
Existing communication tower antenna brackets are prone to slipping when fixed to tubular positioning objects and cannot be stably installed on towers with long crossbars, posing safety hazards and having poor applicability.
Design a communication tower antenna bracket, which adopts a horizontally arranged plate-shaped body, which is divided into plates of different lengths by a first bending line and a second bending line, and has through grooves and positioning grooves on the plates. Combined with vertical plates of different heights and connecting horizontal plates, a stable installation is achieved.
This effectively avoids the risk of slippage during installation, improves the stability and applicability of the installation, and ensures safety.
Smart Images

Figure CN224138320U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of antenna support technology, and in particular to a communication tower antenna support. Background Technology
[0002] The antenna support of a communication tower is an important component of the communication tower. It is used to support and fix the antenna, ensuring that the antenna can stably receive and transmit signals.
[0003] Existing patent CN202322270936.3 provides a U-shaped clamp structure for antenna brackets, including a plate and a convex arc segment; the plate and the convex arc segment are integrally formed; the conventional 6mm plate structure is reduced to 3mm, and a convex arc segment bent towards the back is provided. In addition, a circular groove is stamped at the junction of the rectangular segment and the ear plate segment, which can accommodate the installation of the gasket and form a reinforcing protrusion on the back of the plate. This two-structure design can ensure that the U-shaped clamp structure meets the connection strength requirements with a thickness of 3mm. Furthermore, the side wings of the plate are set in a convex arc shape, reducing the distance from the bend at the end of the convex arc segment to the plate, which can prevent the convex arc segment from cracking when it follows the ear plate segment to bend, thus ensuring the product qualification rate of the U-shaped clamp structure.
[0004] However, the above-mentioned patent still has the following defects: Since the plate 1 includes an ear plate segment 11 and a rectangular segment 12, when it is fixed to a tubular positioning object such as a utility pole through the plate 1, there is a risk of slippage, which poses a safety hazard; in addition, the two ear plate segments 11 are at the same height, and the ear plate segments 11 are installed on the iron tower through hinged ear holes. When the iron tower has a long crossbar, the above-mentioned patent cannot be stably installed on the crossbar through the hinged ear holes, and its applicability is poor. Utility Model Content
[0005] The technical problem to be solved by this utility model is to provide a communication tower antenna bracket.
[0006] To solve the above-mentioned technical problems, the technical solution of this utility model is as follows: a communication tower antenna bracket, the innovation of which is: it includes a horizontally arranged plate-shaped body, on which a first bending line and a second bending line are arranged vertically, and the plate-shaped body is divided into a first plate, a second plate and a third plate connected in sequence by the first bending line and the second bending line, and the horizontal length of the first plate is less than the horizontal length of the third plate, and the horizontal length of the third plate is less than the horizontal length of the second plate;
[0007] The plate-shaped body has a first through groove and a second through groove respectively located in the middle of the first bending line and the second bending line, and the first through groove extends to the first plate and the second plate, and the second through groove extends to the second plate and the third plate.
[0008] The first plate and the third plate are bent upward along the first bending line and the second bending line respectively to form the first vertical plate and the third vertical plate. The second plate forms a connecting horizontal plate connecting the first vertical plate and the third vertical plate.
[0009] The third vertical plate has a through-hole in the top center, and the connecting horizontal plate has an upward protruding positioning groove in the middle between the first and second through grooves. The connecting horizontal plate has a part assembly groove on both sides of the positioning groove.
[0010] The top of the positioning groove is lower than the highest point of the first and second through grooves.
[0011] Furthermore, a rolling groove is provided on both sides of the first through groove on the outer side of the first bending line, and a rolling groove is also provided on both sides of the second through groove on the outer side of the second bending line.
[0012] Furthermore, both the first and second through slots are square through slots, which separates the bending process of the first and third plates from the forming of the positioning groove, avoiding interference between the two forming processes and ensuring product quality.
[0013] Furthermore, the first vertical plate has a first waist-shaped hole through both sides of the top, and a second waist-shaped hole through the middle of the bottom of the first vertical plate.
[0014] Furthermore, the first waist-shaped hole is arranged vertically, and the second waist-shaped hole is arranged horizontally.
[0015] Furthermore, multiple connecting holes are provided at the four corners of the mounting groove, and a V-shaped groove is provided at the top of the first vertical plate between the two first waist-shaped holes, so that the lateral height of the multiple connecting holes is higher than the V-shaped groove, thus preventing the first vertical plate from interfering with the crossbars on the tower during installation.
[0016] Furthermore, each of the component assembly slot groups includes a first component assembly slot located near the first vertical plate and a second component assembly slot located near the third vertical plate. The first component assembly slot and the second component assembly slot cooperate to fix the connecting horizontal plate.
[0017] Furthermore, the first part assembly slot and the second part assembly slot have the same structure, both being symmetrical structures, including a rectangular slot body. The rectangular slot body is arranged horizontally, and each of the four corners of the rectangular slot body is also provided with an arc-shaped slot, and the center of each arc-shaped slot overlaps with the vertex of its corresponding corner.
[0018] Furthermore, a hinge hole is provided on the connecting horizontal plate between the two second part assembly slots and the third vertical plate.
[0019] The advantages of this utility model are:
[0020] This structure sets the first vertical plate and the third vertical plate as two vertical plates with different heights. At the same time, an installation groove is provided through the top center of the third vertical plate. It can be installed on the iron tower by passing through the long horizontal bar on the iron tower through the installation groove. Meanwhile, the bottom of the connecting horizontal plate is provided with a positioning groove, which can be used to match and stably install on the tubular positioning object of the iron tower. The combination of the two avoids the risk of slippage during the installation process, avoids safety hazards, and has strong applicability.
[0021] 2. A rolling groove is provided on both sides of the first through groove on the outer side of the first bending line, and a rolling groove is also provided on both sides of the second through groove on the outer side of the second bending line.
[0022] 3. Both the first and second through slots are square through slots, which separates the bending process of the first and third plates from the forming of the positioning groove, avoiding interference between the two forming processes and ensuring product quality.
[0023] 4. Multiple connection holes are provided at the four corners of the mounting slot. A V-shaped groove is provided at the top of the first vertical plate between the two first waist-shaped holes, so that the horizontal height of the multiple connection holes is higher than the V-shaped groove, thus preventing the first vertical plate from interfering with the horizontal bar on the tower during installation.
[0024] 5. Each part assembly slot group includes a first part assembly slot located near the first vertical plate and a second part assembly slot located near the third vertical plate. The first part assembly slot and the second part assembly slot cooperate to fix the connecting horizontal plate. Attached Figure Description
[0025] Figure 1 Side view of this utility model Figure 1 .
[0026] Figure 2 This is a bottom view of part of the structure of this utility model.
[0027] Figure 3 Side view of this utility model Figure 2 .
[0028] Figure 4 Side view of this utility model Figure 3 .
[0029] Figure 5 This is a perspective view of the present invention. Detailed Implementation
[0030] To further illustrate the technical means and effects adopted by this utility model in order to achieve the intended utility model purpose, the following detailed description of the specific implementation methods, structure, features and effects of this utility model is provided in conjunction with the accompanying drawings and preferred embodiments.
[0031] like Figure 1-5 The antenna support for a communication tower shown includes a rectangular plate-shaped body arranged horizontally. The plate-shaped body is provided with a first bending line 1 and a second bending line 2 arranged vertically. The first bending line 1 and the second bending line 2 divide the plate-shaped body into a first plate 3, a second plate 4 and a third plate 5 connected in sequence. The horizontal length of the first plate 3 is less than the horizontal length of the third plate 5, and the horizontal length of the third plate 5 is less than the horizontal length of the second plate 4.
[0032] A first through groove 6 and a second through groove 7 are respectively provided through the middle part of the first bending line 1 and the second bending line 2 on the plate-shaped body. The first through groove 6 extends to the first plate 3 and the second plate 4, and the second through groove 7 extends to the second plate 4 and the third plate 5.
[0033] Both the first through groove 6 and the second through groove 7 are square through grooves, which separate the bending process of the first plate 3 and the third plate 5 from the forming process of the positioning groove 12, so as to avoid interference between the two forming processes and ensure product quality.
[0034] The first plate 3 and the third plate 5 are bent upward along the first bending line 1 and the second bending line 2 respectively to form the first vertical plate 8 and the third vertical plate 9. The second plate 4 forms the connecting horizontal plate 10 connecting the first vertical plate 8 and the third vertical plate 9.
[0035] The third vertical plate 9 has a mounting groove 11 running through the top center. The middle part of the connecting horizontal plate 10, located between the first through groove 6 and the second through groove 7, also has an upwardly protruding positioning groove 12. The connecting horizontal plate 10 has a part assembly groove group on both sides of the positioning groove 12.
[0036] The positioning groove 12 is inverted V-shaped, which allows it to be adapted to tubular positioning objects of different diameters, making it highly practical. Furthermore, the top of the positioning groove 12 is lower than the highest point of the first through groove 6 and the second through groove 7.
[0037] A rolling groove 13 is provided on both sides of the first through groove 6 on the outer side of the first bending line 1, and a rolling groove 13 is also provided on both sides of the second through groove 7 on the outer side of the second bending line 2.
[0038] The first vertical plate 8 has a first oblong hole through both sides of its top, and a second oblong hole through the middle of its bottom. The first oblong hole is vertically oriented, and the second oblong hole is horizontally oriented.
[0039] The mounting slot 11 is a rectangular structure with multiple connecting holes 15 at its four corners. The top of the first vertical plate 8 is provided with a V-shaped groove 14 between the two first waist-shaped holes, so that the horizontal height of the multiple connecting holes 15 is higher than the V-shaped groove 14, thus preventing the first vertical plate 8 from interfering with the horizontal bar on the tower during installation.
[0040] The connecting hole 15 includes a large connecting hole in the middle and small connecting holes on both sides of the large connecting hole, and the two large connecting holes and the small connecting holes are on the same straight line.
[0041] A connecting round hole is provided on both sides of the first vertical plate 8 near the V-groove 14.
[0042] A third waist-shaped hole is also provided on the second plate 4, located in the middle of one side of the positioning groove 12.
[0043] Each part assembly slot group includes a first part assembly slot 16 located near the first vertical plate 8 and a second part assembly slot 16 located near the third vertical plate. The first part assembly slot 16 and the second part assembly slot 16 have the same structure and cooperate to fix the connecting horizontal plate 10.
[0044] The first part assembly slot 16 and the second part assembly slot 16 have the same structure, both being symmetrical structures, including a rectangular slot body. The rectangular slot body is arranged horizontally, and each of the four corners of the rectangular slot body is also provided with an arc-shaped slot, and the center of each arc-shaped slot is arranged to overlap with the vertex of its corresponding corner.
[0045] A hinge hole 17 is also provided on the connecting horizontal plate 10 between the two second part assembly slots 16 and the third vertical plate 9.
[0046] The working principle of this patent:
[0047] In this patent, the first vertical plate 8 and the third vertical plate 9 are set as two vertical plates with different heights. At the same time, an installation groove 11 is provided through the top center of the third vertical plate 9. It can be installed on the iron tower by passing through the long horizontal bar on the iron tower through the installation groove 11. Meanwhile, the bottom of the connecting horizontal plate 10 is provided with a positioning groove 12, which can be used to match and stably install on the tubular positioning object of the iron tower. The combination of the two avoids the risk of slippage during the installation process, avoids safety hazards, and has strong applicability.
[0048] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model without departing from the scope of the present utility model shall still fall within the scope of the present utility model.
Claims
1. A communication tower antenna support, characterized by: The plate-shaped body is horizontally arranged, and the plate-shaped body is provided with a first bending line and a second bending line arranged vertically. The first bending line and the second bending line divide the plate-shaped body into a first plate, a second plate and a third plate connected in sequence. The horizontal length of the first plate is less than the horizontal length of the third plate, and the horizontal length of the third plate is less than the horizontal length of the second plate. The plate-shaped body has a first through groove and a second through groove respectively located in the middle of the first bending line and the second bending line, and the first through groove extends to the first plate and the second plate, and the second through groove extends to the second plate and the third plate. The first plate and the third plate are bent upward along the first bending line and the second bending line respectively to form the first vertical plate and the third vertical plate. The second plate forms a connecting horizontal plate that connects the first vertical plate and the third vertical plate. The third vertical plate has a through mounting groove at the top center, and the connecting horizontal plate has an upwardly protruding horizontally positioned positioning groove between the first and second through grooves. The connecting horizontal plate has a part assembly groove on both sides of the positioning groove. The top of the positioning groove is lower than the highest point of the first and second through grooves.
2. The communication tower antenna support of claim 1, wherein: A rolling groove is provided on both sides of the first through groove on the outer side of the first bending line, and a rolling groove is also provided on both sides of the second through groove on the outer side of the second bending line.
3. The communication tower antenna support of claim 1, wherein: Both the first and second through slots are square through slots.
4. The communication tower antenna support of claim 1, wherein: The first vertical plate has a first waist-shaped hole through both sides of the top, and a second waist-shaped hole through the middle of the bottom.
5. The communication tower antenna support of claim 4, wherein: The first waist-shaped hole is set vertically, and the second waist-shaped hole is set horizontally.
6. The communication tower antenna support of claim 4, wherein: Multiple connecting holes are provided at the four corners of the mounting groove. A V-shaped groove is provided at the top of the first vertical plate between the two first waist-shaped holes, so that the lateral height of the multiple connecting holes is higher than the V-shaped groove.
7. The communication tower antenna support of claim 1, wherein: Each of the component assembly slot groups includes a first component assembly slot located near the first vertical plate and a second component assembly slot located near the third vertical plate.
8. The communication tower antenna support of claim 7, wherein: The first part assembly slot and the second part assembly slot have the same structure, both being symmetrical structures, including a rectangular slot body. The rectangular slot body is arranged horizontally, and each of the four corners of the rectangular slot body is also provided with an arc-shaped slot, and the center of each arc-shaped slot is arranged to overlap with the vertex of its corresponding corner.
9. The communication tower antenna support of claim 7, wherein: The connecting horizontal plate is also provided with a hinge hole between the two second part assembly slots and the third vertical plate.
Citation Information
Patent Citations
U-shaped clamping plate structure for antenna support
CN220439866U