Node gap reinforcing structure for main limb inserting part of single-pipe tower of communication base station
By installing support components and jackets at the joints of different sections of the monotube tower, the problems of excessive gaps, banana-bend deformation, and verticality deviation in the monotube tower were solved, thereby improving the load-bearing capacity and service life of the tower and ensuring safety.
Patent Information
- Application Number
- CN202511662854.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-13
- Publication Date
- 2026-01-23
AI Technical Summary
Existing plug-in single-tube towers are prone to excessive gaps, banana-bend deformation, and verticality deviations under the influence of load and environmental factors, which affect their load-bearing capacity and service life, and pose safety hazards.
The system employs a first reinforcement structure and a second reinforcement structure, with support components and clamps installed at the joints between the first and second tower sections and between the second and third tower sections, respectively. Stable support is provided by components such as fastening clamps, fixing plates, and limiting clamps, and the clamping position can be adjusted to meet different reinforcement requirements.
This effectively avoids excessive gaps at the tower body joints, banana-bend deformation, and verticality deviations, improving the tower's load-bearing capacity and service life, and ensuring the safety and stability of the single-tube tower.
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Figure CN121381972A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of communication buildings, and particularly relates to a node gap reinforcing structure of a main limb insertion part of a communication base station single-pole tower. BACKGROUND
[0002] With the rapid development of the communication industry, the communication tower, as an indispensable important infrastructure of the communication network, is of great importance in terms of structural safety and stability. The insertion single-pole tower is widely used in the construction of urban communication base stations due to its compact structure and small land occupation. The tower provides strong support for the construction of urban communication networks with its unique advantages and plays a key role in meeting the growing communication needs of the city.
[0003] However, in actual use, the existing insertion single-pole tower still has some problems. Due to the influence of load and environmental factors, the insertion position of the tower body is prone to problems such as excessive gap, banana bend deformation and verticality deviation. If the above problems are not properly handled in time, it will adversely affect the carrying capacity of the tower, shorten its service life, and even cause serious safety accidents, posing a potential threat to the stable operation of the communication network and the surrounding environment. SUMMARY
[0004] To solve the above problems, the application provides a node gap reinforcing structure of a main limb insertion part of a communication base station single-pole tower, which avoids the problems of excessive gap, banana bend deformation and verticality deviation at the insertion position of the single-pole tower, thereby reducing the carrying capacity and service life of the single-pole tower.
[0005] A node gap reinforcing structure of a main limb insertion part of a communication base station single-pole tower, comprising a first tower section, a second tower section and a third tower section connected in sequence along the vertical direction, a first reinforcing structure is arranged at the insertion position of the first tower section and the second tower section, and a second reinforcing structure is arranged at the insertion position of the second tower section and the third tower section, the first reinforcing structure comprises a first fixing member, a second fixing member and a first clamping sleeve, the first fixing member is arranged on the first tower section, the second fixing member is arranged on the second tower section, a support member a is arranged between the first fixing member and the second fixing member, and the first clamping sleeve is arranged at the insertion position of the first tower section and the second tower section to fix the support member a.
[0006] Further, the first clamping sleeve comprises a fastening clamp, a fixing plate and a limiting clamp, the fastening clamp is arranged at the insertion position of the first tower section and the second tower section, the fixing plate is distributed circumferentially on the fastening clamp, the limiting clamp is detachably connected to the fixing plate, and the support member a is arranged in the limiting clamp.
[0007] Further, the fastening clamp comprises a first fastening plate and a second fastening plate, both ends of the first fastening plate and the second fastening plate are connected through a bolt assembly, and the first fastening plate and the second fastening plate are both provided with a fixing plate.
[0008] Further, the first fastening plate and the second fastening plate are of the same structure, the first fastening plate comprises a plate body and a connecting plate, both ends of the plate body are provided with a connecting plate, and the plate body is provided with a fixing plate.
[0009] Further, a rib plate a is arranged between the connecting plate and the plate body.
[0010] Further, the first fixing member and the second fixing member are of the same structure, the first fixing member comprises a clamping plate a, a clamping plate b, a mounting plate and a rib plate b, both ends of the clamping plate a and the clamping plate b are connected through a bolt assembly, the clamping plate a and the clamping plate b are both provided with a mounting plate, a plurality of rib plates b are uniformly arranged on the mounting plate, and a support member a is connected between the mounting plate and adjacent rib plates b.
[0011] Further, the clamping plate a and the clamping plate b are of the same structure, the clamping plate a comprises a clamping plate and an end plate, the clamping plate is provided with a rib plate b, and both ends of the clamping plate are provided with an end plate.
[0012] Further, a rib plate c is arranged between the end plate and the clamping plate.
[0013] Further, the second reinforcing structure comprises a third fixing member, a fourth fixing member and a second clamping sleeve, the third fixing member is arranged at a position close to the third tower section of the second tower section, the fourth fixing member is arranged on the third tower section, a support member b is arranged between the third fixing member and the fourth fixing member, and a second clamping sleeve for fixing the support member b is arranged at the joint of the second tower section and the third tower section.
[0014] Further, the support member a and the support member b are of the same structure, the support member a comprises a screw rod and a nut, and the screw rod is provided with a nut.
[0015] Compared with the prior art, the present application has the following advantages: The first reinforcing structure in the present application can stably support and reinforce the first tower section and the second tower section, and the second reinforcing structure can stably support and reinforce the second tower section and the third tower section, which not only effectively avoids the problems of excessive gap, banana-shaped deformation and verticality deviation at the joint of the tower body, but also effectively improves the carrying capacity and service life of the tower body, and avoids safety accidents.
[0016] The first reinforcing structure in the present application supports and reinforces the joint of the first tower section and the second tower section, and the second reinforcing structure supports and reinforces the joint of the second tower section and the third tower section, which can ensure comprehensive reinforcement of the tower body and ensure the safety of the single-pipe tower.
[0017] The support piece a in the application can stably support the joint part of the first tower section and the second tower section, and the support piece b can stably support the joint part of the second tower section and the third tower section, thereby effectively improving the reinforcement effect of the tower body.
[0018] The application can quickly adjust the clamping position of the first fixing piece and the second fixing piece by adjusting the support piece a, thereby ensuring that the equipment can meet different reinforcement requirements.
[0019] The application can quickly adjust the clamping position of the third fixing piece and the fourth fixing piece by adjusting the support piece b, thereby ensuring that the equipment can meet different reinforcement requirements.
[0020] Other features and advantages of the present application will be set forth in the following description, and in part will become apparent from the description, or can be learned by practice of the present application. The objects and other advantages of the present application will be realized and attained by the structure particularly pointed out in the written description and the appended drawings. BRIEF DESCRIPTION OF DRAWINGS
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or prior art description will be briefly introduced. Obviously, the drawings in the following description are some embodiments of the present application, and those skilled in the art can also obtain other drawings according to these drawings without creative labor.
[0022] Figure 1 A schematic view of a communication base station single-pole tower main limb joint part node gap reinforcement structure is shown. Figure 2 A schematic view of a communication base station single-pole tower main limb joint part node gap reinforcement structure is shown. Figure 1 A local enlarged view of A in the figure is shown. Figure 3 A schematic view of a first fixing piece is shown. Figure 4 A schematic view of a first clamping sleeve is shown.
[0023] Reference signs: 1, antenna body; 2, first tower section; 3, first reinforcing structure; 31, first fixing part; 311, clamping plate a; 3111, clamping plate; 3112, end plate; 3113, rib plate c; 312, clamping plate b; 313, mounting plate; 314, rib plate b; 32, second fixing part; 33, first clamping sleeve; 331, fastening clamp; 3311, first fastening plate; 33111, plate body; 33112, connecting plate; 33113, rib plate a; 3312, second fastening plate; 332, fixing plate; 333, limiting clamp; 34, support part a; 341, screw rod; 342, nut; 4, second tower section; 5, second reinforcing structure; 51, third fixing part; 52, fourth fixing part; 53, second clamping sleeve; 54, support part b; 6, third tower section. DETAILED DESCRIPTION
[0024] To make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the following will clearly and completely explain the technical solutions in the embodiments of the present application with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some but not all of the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present application.
[0025] Figure 1 A schematic view of a communication base station single-pole tower main limb insertion site node gap reinforcing structure is shown. As shown in Figure 1 , a communication base station single-pole tower main limb insertion site node gap reinforcing structure includes first tower section 2, second tower section 4, and third tower section 6 connected in sequence along the vertical direction, the insertion site of the first tower section 2 and the second tower section 4 is provided with a first reinforcing structure 3, the insertion site of the second tower section 4 and the third tower section 6 is provided with a second reinforcing structure 5, Figure 2 A partial enlarged view of A in Figure 1 is shown. As shown in Figure 2 , the first reinforcing structure 3 includes a first fixing part 31, a second fixing part 32, and a first clamping sleeve 33, the first fixing part 31 is arranged on the first tower section 2, the second fixing part 32 is arranged on the second tower section 4, the support part a 34 is arranged between the first fixing part 31 and the second fixing part 32, and the first clamping sleeve 33 for fixing the support part a 34 is arranged at the insertion site of the first tower section 2 and the second tower section 4.
[0026] The communication base station single-pole tower main limb insertion site node gap reinforcing structure through the first reinforcing structure 3 and the second reinforcing structure 5 not only effectively avoids the cases of too large gap at the insertion site of the tower body, banana bend deformation, and verticality deviation, but also effectively improves the bearing capacity and service life of the tower body, and avoids causing safety accidents.
[0027] In some embodiments, the first tower segment 2 is provided with an antenna body 1; the antenna body 1 is used for communication transmission.
[0028] Figure 4 A schematic diagram of the structure of the first jacket 33 is shown. Figure 4 As shown, in some embodiments, the first jacket 33 includes a fastening clip 331, a fixing plate 332, and a limiting clip 333. The fastening clip 331 is provided at the insertion point of the first tower section 2 and the second tower section 4. The fastening clip 331 is circumferentially distributed with fixing plates 332. The limiting clip 333 is detachably connected to the fixing plate 332. The limiting clip 333 is provided with a support member a34. The fastening clip 331 can provide stable support at the insertion point of the first tower section 2 and the second tower section 4, thereby effectively improving the reinforcement effect of the tower body. The fixing plate 332 provides installation conditions for the limiting clip 333 and also provides limiting conditions for the support member a34. The limiting clip 333 plays a limiting role for the support member a34.
[0029] In some embodiments, the shape of the limiting clamp 333 may be selected but is not limited to U-shape; the U-shaped limiting clamp 333 can play a better limiting role for the support frame a.
[0030] Specifically, the limit clamp 333 is existing technology, so it will not be described in detail here.
[0031] In some embodiments, the fastening clamp 331 includes a first fastening plate 3311 and a second fastening plate 3312. Both ends of the first fastening plate 3311 and the second fastening plate 3312 are connected by bolt assemblies. Both the first fastening plate 3311 and the second fastening plate 3312 are provided with fixing plates 332. The connection between the first fastening plate 3311 and the second fastening plate 3312 by the bolt assembly can ensure the connectivity between the first fastening plate 3311 and the second fastening plate 3312, thereby ensuring stable support for the insertion point of the first tower section 2 and the second tower section 4. The first fastening plate 3311 and the second fastening plate 3312 provide installation conditions for the fixing plate 332.
[0032] In some embodiments, the first fastening plate 3311 and the second fastening plate 3312 have the same structure. The first fastening plate 3311 includes a plate body 33111 and a connecting plate 33112. Both ends of the plate body 33111 are provided with connecting plates 33112, and the plate body 33111 is provided with a fixing plate 332. The plate body 33111 provides installation conditions for the connecting plate 33112. The connecting plate 33112 provides installation conditions for the bolt assembly.
[0033] In some embodiments, a stiffening plate a33113 is provided between the connecting plate 33112 and the plate body 33111; the stiffening plate a33113 can enhance the overall strength between the plate body 33111 and the connecting plate 33112, ensuring reinforcement stability.
[0034] Figure 3 A structural schematic diagram of the first fastener 31 is shown. Figure 3 As shown, in some embodiments, the first fixing member 31 and the second fixing member 32 have the same structure. The first fixing member 31 includes a clamping plate a311, a clamping plate b312, a mounting plate 313, and a stiffening plate b314. Both ends of the clamping plate a311 and the clamping plate b312 are connected by bolt assemblies. The clamping plate a311 and the clamping plate b312 are each provided with a mounting plate 313. A plurality of stiffening plates b314 are evenly distributed on the mounting plate 313. A support member a34 is connected to the mounting plate 313 between adjacent stiffening plates b314. The clamping plates a311 and b312 can clamp the tower body. The bolt assembly can connect the clamping plates a311 and b312 and strengthen the stability between the clamping plates a311 and b312. The mounting plate 313 can provide installation conditions for the support member. The stiffening plate b314 can effectively improve the structural stability of the mounting plate 313.
[0035] In some embodiments, the clamping plates a311 and b312 have the same structure. The clamping plate a311 includes a clamping plate 3111 and an end plate 3112. The clamping plate 3111 is provided with a stiffening rib b314, and both ends of the clamping plate 3111 are provided with end plates 3112. The clamping plate 3111 can clamp the tower body. The two ends of the clamping plate 3111 provide installation conditions for the end plate 3112. The end plate 3112 provides connection conditions for the clamping plate 3111.
[0036] Specifically, the clamping plate 3111 can be, but is not limited to, an arc shape; an arc-shaped clamping plate 3111 can better fit the shape of the tower body.
[0037] In some embodiments, a stiffener c3113 is provided between the end plate 3112 and the clamping plate 3111; the stiffener c3113 can enhance the overall strength between the end plate 3112 and the clamping plate 3111, ensuring reinforcement stability.
[0038] In some embodiments, the second reinforcement structure 5 includes a third fixing member 51, a fourth fixing member 52, and a second clamping sleeve 53. The third fixing member 51 is provided at the position of the second tower segment 4 near the third tower segment 6, and the fourth fixing member 52 is provided on the third tower segment 6. A support member b54 is provided between the third fixing member 51 and the fourth fixing member 52. A second clamping sleeve 53 is provided at the joint of the second tower segment 4 and the third tower segment 6 to fix the support member b54. The second clamping sleeve 53 can provide stable support at the joint of the second tower segment 4 and the third tower segment 6, thereby effectively improving the reinforcement effect of the tower body. The support member b54 serves to connect the third fixing member 51 and the fourth fixing member 52, thereby ensuring stable support at the joint of the second tower segment 4 and the third tower segment 6.
[0039] In some embodiments, the support a34 and the support b54 are of the same structure, the support a34 comprises a screw rod 341 and a nut 342, the screw rod 341 is provided with the nut 342; one end of the screw rod 341 is connected to the mounting plate 313 of the first fixing member 31 through the nut 342, and the other end of the screw rod 341 is connected to the mounting plate 313 of the second fixing member 32 through the nut 342, so as to ensure the stability between the first fixing member 31 and the second fixing member 32, thereby ensuring the stability of the insertion part of the first tower section 2 and the second tower section 4.
[0040] Specifically, the third fixing member 51, the fourth fixing member 52 and the first fixing member 31 are of the same structure; the third fixing member 51 and the fourth fixing member 52 are of the same structure and are connected through the second clamping sleeve 53, which can effectively improve the carrying capacity and service life of the tower body and avoid causing safety accidents.
[0041] Specifically, the second clamping sleeve 53 is of the same structure as the first clamping sleeve 33, which can stably support the insertion part of the second tower section 4 and the third tower section 6.
[0042] Specifically, the bolt assembly is a prior art, and thus will not be described here.
[0043] The working principle of the communication base station single-pole tower main limb insertion part node gap reinforcing structure is as follows: Through the first reinforcing structure 3 and the second reinforcing structure 5, not only the conditions of too large gap, banana bending deformation and verticality deviation at the insertion part of the tower body are effectively avoided, but also the carrying capacity and service life of the tower body are effectively improved, and safety accidents are avoided.
[0044] Among them, the first fixing member 31 is fixed on the first tower section 2 through the bolt assembly, the second fixing member 32 is fixed on the second tower section 4 through the bolt assembly, one end of the support a34 is fixed on the first fixing member 31 through the nut 342, the other end of the support b54 is fixed on the second fixing member 32 through the nut 342, the fastening clamp 331 is installed at the insertion part of the first tower section 2 and the second tower section 4, the limiting clamp 333 is installed on the fixed plate 332 after the installation is completed, and the screw rod 341 is limited in the limiting clamp 333, so as to complete the installation of the first reinforcing structure 3.
[0045] Continue to install the second reinforcing structure 5, the third fixing member 51 is fixed on the second tower section 4 through the bolt assembly, the fourth fixing member 52 is fixed on the third tower section 6 through the bolt assembly, one end of the support member b 54 is fixed on the third fixing member 51 through the nut 342, the other end of the support member b 54 is fixed on the fourth fixing member 52 through the nut 342, the second clamping sleeve 53 is installed at the joint of the second tower section 4 and the third tower section 6, the second clamping sleeve 53 limits the screw rod 341 of the support member b 54, so as to complete the installation of the second reinforcing structure 5.
[0046] Although the present application has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that the technical solutions recorded in the foregoing embodiments can still be modified, or some technical features can be replaced by equivalent ones; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A reinforcement structure for the node gap at the main member insertion point of a single-tube tower for a communication base station, comprising a first tower segment (2), a second tower segment (4), and a third tower segment (6) connected sequentially in a vertical direction, wherein a first reinforcement structure (3) is provided at the insertion point of the first tower segment (2) and the second tower segment (4), and a second reinforcement structure (5) is provided at the insertion point of the second tower segment (4) and the third tower segment (6), characterized in that, The first reinforcement structure (3) includes a first fixing member (31), a second fixing member (32) and a first clamp (33). The first tower section (2) is provided with the first fixing member (31), the second tower section (4) is provided with the second fixing member (32), a support member a (34) is provided between the first fixing member (31) and the second fixing member (32), and a first clamp (33) for fixing the support member a (34) is provided at the insertion point of the first tower section (2) and the second tower section (4).
2. The reinforcement structure for the node gap at the main member insertion part of a single-tube tower for communication base stations according to claim 1, characterized in that, The first jacket (33) includes a fastening clip (331), a fixing plate (332) and a limiting clip (333). The fastening clip (331) is provided at the insertion point of the first tower section (2) and the second tower section (4). The fastening clip (331) is circumferentially distributed with fixing plates (332). The limiting clip (333) is detachably connected to the fixing plate (332). The limiting clip (333) is provided with a support member a (34).
3. The reinforcement structure for the node gap at the main member insertion part of a single-tube tower for communication base stations according to claim 2, characterized in that, The fastening clamp (331) includes a first fastening plate (3311) and a second fastening plate (3312). Both ends of the first fastening plate (3311) and the second fastening plate (3312) are connected by bolt assemblies. Both the first fastening plate (3311) and the second fastening plate (3312) are provided with fixing plates (332).
4. The reinforcement structure for the node gap at the main member insertion part of the communication base station single-tube tower according to claim 3, characterized in that, The first fastening plate (3311) and the second fastening plate (3312) have the same structure. The first fastening plate (3311) includes a plate body (33111) and a connecting plate (33112). Both ends of the plate body (33111) are provided with connecting plates (33112), and the plate body (33111) is provided with a fixing plate (332).
5. The reinforcement structure for the node gap at the main member insertion part of a single-tube tower for communication base stations according to claim 4, characterized in that, A stiffening rib a (33113) is provided between the connecting plate (33112) and the plate body (33111).
6. The reinforcement structure for the node gap at the main member insertion part of a single-tube tower for communication base stations according to claim 1, characterized in that, The first fixing member (31) and the second fixing member (32) have the same structure. The first fixing member (31) includes a clamping plate a (311), a clamping plate b (312), a mounting plate (313) and a stiffening plate b (314). Both ends of the clamping plate a (311) and the clamping plate b (312) are connected by bolt assemblies. The clamping plate a (311) and the clamping plate b (312) are each provided with a mounting plate (313). Several stiffening plates b (314) are evenly distributed on the mounting plate (313). A support member a (34) is connected to the part of the mounting plate (313) located between adjacent stiffening plates b (314).
7. The reinforcement structure for the node gap at the main member insertion part of a single-tube tower for communication base stations according to claim 6, characterized in that, The clamping plates a (311) and b (312) have the same structure. The clamping plate a (311) includes a clamping plate (3111) and an end plate (3112). The clamping plate (3111) is provided with a stiffening plate b (314). Both ends of the clamping plate (3111) are provided with end plates (3112).
8. The reinforcement structure for the node gap at the main member insertion part of a single-tube tower for communication base stations according to claim 7, characterized in that, A stiffener c (3113) is provided between the end plate (3112) and the clamping plate (3111).
9. The reinforcement structure for the node gap at the main member insertion part of a single-tube tower for communication base stations according to claim 1, characterized in that, The second reinforcement structure (5) includes a third fixing member (51), a fourth fixing member (52), and a second clamp (53). The second tower section (4) is provided with a third fixing member (51) near the third tower section (6). The third tower section (6) is provided with a fourth fixing member (52). A support member b (54) is provided between the third fixing member (51) and the fourth fixing member (52). The second clamp (53) for fixing the support member b (54) is provided at the insertion point of the second tower section (4) and the third tower section (6).
10. The reinforcement structure for the node gap at the main member insertion part of a single-tube tower for a communication base station according to claim 9, characterized in that, The support member a (34) and the support member b (54) have the same structure. The support member a (34) includes a screw (341) and a nut (342). The screw (341) is provided with a nut (342).