Rapid mounting rack for heat radiator of communication base station
By designing a quick-installation bracket for communication base station heat sinks, and utilizing a servo motor-driven transmission system and clamping mechanism, the problems of cumbersome traditional installation processes and poor adaptability are solved, achieving efficient and stable installation of base station heat sinks and reducing costs and time.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-07
- Publication Date
- 2026-03-31
AI Technical Summary
Traditional communication base station heat sinks are cumbersome to install and have poor compatibility, resulting in high installation costs and long installation cycles.
A quick-installation bracket for a communication base station heat sink was designed. It consists of a housing, a clamping mechanism, and a reinforcement mechanism. A servo motor-driven bevel gear and worm gear transmission system is used to adjust the L-shaped clamping plate and the movable plate to adapt to base stations of different sizes and specifications. Combined with the adjustment of the extension rod and the backing plate, stable fixation is achieved.
It improves installation efficiency, reduces mechanical damage to base stations, enhances the applicability and versatility of the mounting bracket, and lowers installation costs.
Smart Images

Figure CN224068743U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mounting bracket technology, specifically a quick mounting bracket for a communication base station heat sink. Background Technology
[0002] With the rapid development of the telecommunications industry, the number of communication base stations continues to grow, making their stable operation crucial. As a key component ensuring heat dissipation and maintaining normal operating temperatures for communication base station equipment, the installation efficiency and applicability of heat sinks directly impact the cost and efficiency of base station construction and maintenance.
[0003] Based on the above, the inventors have identified the following problems: Traditional communication base station heat sink installation is cumbersome. Workers must first accurately locate the installation position on the base station equipment, then perform drilling, bolt tightening, and other operations to fix the heat sink bracket. Communication base stations come in a wide variety of models with different structures, sizes, and heat dissipation requirements, resulting in a diverse range of heat sink types. When replacing heat sinks for different base station models, the original mounting bracket is often incompatible, requiring a redesign and customization of the mounting bracket. This not only increases costs but also extends the installation cycle. Therefore, in view of this, the inventors have researched and improved upon the existing structure and its shortcomings, providing a quick-installation bracket for communication base station heat sinks to achieve greater practical value. Utility Model Content
[0004] The purpose of this utility model is to provide a quick-installation bracket for communication base station heat sinks, thereby solving the problems mentioned in the background section regarding the cumbersome installation process and poor adaptability of existing communication base station heat sinks. In view of the above problems, the technical solution proposed by this utility model is:
[0005] A quick-installation bracket for a communication base station heat sink includes a housing and a reinforcement mechanism. A partition is fixedly installed inside the housing. A first clamping mechanism for holding the upper and lower ends of the communication base station is located on one side of the partition inside the housing. A second clamping mechanism for holding the two sides of the communication base station is located on the other side of the partition inside the housing. The first clamping mechanism includes a pair of L-shaped clamps, which are slidably inserted into the upper and lower ends of the housing, respectively. The second clamping mechanism includes a pair of movable plates, which are slidably inserted into the two sides of the housing, respectively. The reinforcement mechanism includes two pairs of extension rods, which are connected to the outer side of one end of each of the movable plates. A stop plate is slidably installed on the inner side of each extension rod.
[0006] Furthermore, the first clamping mechanism also includes a first fixed seat, one side of which is connected to one side of the partition plate. A first bidirectional screw is rotatably inserted into the first fixed seat, and the two ends of the first bidirectional screw are respectively threaded to the two opposite faces of the pair of L-shaped clamping plates.
[0007] The beneficial effect of adopting the above-mentioned further solution is that the first fixed seat provides an installation base for the first bidirectional screw. When the first bidirectional screw is rotated, since its two ends are respectively threadedly connected to a pair of L-shaped clamps, the pair of L-shaped clamps can move synchronously to the middle or to both sides, thereby adjusting the clamping distance at the upper and lower ends of the communication base station, adapting to communication base stations of different sizes, and improving the versatility of the mounting bracket.
[0008] Furthermore, a first servo motor is fixedly installed inside the housing on one side of the partition. A first bevel gear is sleeved on the output end of the first servo motor. A second bevel gear is sleeved on the side of the first bidirectional screw near the first bevel gear. The second bevel gear meshes with the first bevel gear.
[0009] The beneficial effect of adopting the above-mentioned further solution is that the first servo motor inside the housing serves as a power source, and the first bevel gear at its output end meshes with the second bevel gear on the first bidirectional screw. After the first servo motor starts, it drives the first bidirectional screw to rotate through gear transmission, thereby realizing the position adjustment of the L-shaped clamp. Furthermore, the second clamping mechanism also includes a second fixed seat, one side of which is connected to the other side of the partition. A second bidirectional screw is rotatably inserted into the second fixed seat, and both ends of the second bidirectional screw are threadedly connected to the two opposite surfaces of a pair of movable plates.
[0010] The beneficial effect of adopting the above-mentioned further solution is that the second fixed seat provides installation support for the second bidirectional screw. When the second bidirectional screw is rotated, since its two ends are respectively threadedly connected to a pair of movable plates, the pair of movable plates can move closer or further away synchronously, thereby adjusting the clamping distance on both sides of the communication base station, adapting to communication base stations of different specifications, and enhancing the applicability of the mounting bracket.
[0011] Furthermore, a second servo motor is fixedly installed inside the housing on one side of the second fixed base. A worm gear is sleeved on the output end of the second servo motor, and a worm wheel is sleeved on the bottom end of the second bidirectional screw near the worm gear. The worm wheel and the worm gear mesh with each other.
[0012] The beneficial effect of adopting the above-mentioned further solution is that the worm at the output end of the second servo motor inside the housing meshes with the worm wheel at the bottom end of the second bidirectional screw. After the second servo motor is started, it drives the second bidirectional screw to rotate through the worm wheel and worm gear transmission, thereby realizing the adjustment of the movable plate. Moreover, the worm wheel and worm gear transmission has self-locking properties, which can prevent the movable plate from moving accidentally due to external forces.
[0013] Furthermore, an adjusting bolt is threaded at the center of one end of the extension rod, and one end of the adjusting bolt is rotatably connected to one side of the abutment plate.
[0014] The beneficial effect of adopting the above-mentioned further solution is that the adjusting bolt at one end of the extension rod is rotatably connected to the backing plate. By rotating the adjusting bolt, the extension length of the backing plate inside the extension rod can be adjusted, thereby flexibly adjusting the tightness of the reinforcement mechanism against the communication base station according to the actual size and installation requirements of the communication base station, and further enhancing the fixing effect.
[0015] Furthermore, a number of mounting strips are fixedly installed on one side of the housing, and each mounting strip has a number of mounting holes.
[0016] The beneficial effect of adopting the above-mentioned further solution is that the mounting strip on one side of the housing and the mounting holes thereon make it convenient for users to install different models of heat sink components on the mounting strip, thereby facilitating the use of pipes or conduits to dissipate heat and cool down the interior of the communication base station, and further improving the applicability of the mounting bracket. Compared with the prior art, the beneficial effects of this utility model are as follows: The quick-installation bracket for the heat sink of the communication base station provides structural support for the entire mounting bracket. The internal partition divides the space, allowing the first clamping mechanism and the second clamping mechanism to clamp the upper and lower ends and sides of the communication base station respectively. A pair of L-shaped clamping plates of the first clamping mechanism are slidably inserted into the upper and lower ends of the housing, which facilitates clamping and fixing communication base stations of different lengths. A pair of movable plates of the second clamping mechanism are slidably inserted into the sides of the housing, which can clamp and fix the left and right sides of communication base stations of different widths. The extension rod of the reinforcing mechanism is connected to the movable plate, and the abutment plate inside the extension rod, after fixing the sides of the communication base station, can fix the front of the communication base station through the abutment plate. With the help of the movable plate and the L-shaped clamping plates, the housing is stably installed on the communication base station, which is drilling-free and highly adaptable. Attached Figure Description
[0017] Figure 1 This is a three-dimensional structural diagram of the quick-mount bracket for a communication base station heat sink disclosed in an embodiment of the present invention. Figure 1 ;
[0018] Figure 2 This is a three-dimensional structural diagram of the quick-mount bracket for a communication base station heat sink disclosed in an embodiment of the present invention. Figure 2 ;
[0019] Figure 3 This is a three-dimensional structural diagram of the limiting mechanism of the quick-mounting bracket for the heat sink of the communication base station disclosed in this utility model embodiment;
[0020] Figure 4 This is a front cross-sectional view of the quick-mount bracket for the heat sink of the communication base station disclosed in the embodiment of this utility model;
[0021] Figure 5 This is a side cross-sectional view of the quick-installation bracket for the heat sink of the communication base station disclosed in an embodiment of this utility model.
[0022] In the diagram: 100, housing; 101, first clamping mechanism; 10101, L-shaped clamping plate; 10102, first bidirectional screw; 10103, first fixed base; 10104, second bevel gear; 10105, first bevel gear; 10106, first servo motor; 102, second clamping mechanism; 10201, movable plate; 10202, second fixed base; 10203, second bidirectional screw; 10204, worm gear; 10205, second servo motor; 10206, worm; 103, reinforcing mechanism; 10301, extension rod; 10302, abutment plate; 10303, adjusting bolt; 104, mounting strip; 106, partition plate. Detailed Implementation
[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0024] Please see Figure 1 - Figure 5This utility model provides a technical solution: a quick-installation bracket for a communication base station heat sink, including a housing 100 and a reinforcing mechanism 103. A partition 106 is fixedly installed inside the housing 100. A first clamping mechanism 101 for clamping the upper and lower ends of the communication base station is provided on one side of the partition 106 inside the housing 100. A second clamping mechanism 102 for clamping both sides of the communication base station is provided on the other side of the partition 106 inside the housing 100. The first clamping mechanism 101 includes a pair of L-shaped clamping plates 10101, which are slidably inserted into the upper and lower ends of the housing 100. The second clamping mechanism 102 includes a pair of movable plates 10201, which are slidably inserted into both sides of the housing 100. The reinforcing mechanism 103 includes two pairs of extension rods 10301, which are connected to the outer side of one end of each pair of movable plates 10201. A stop plate 10302 is slidably installed on the inner side of each extension rod 10301. The housing 100 provides structural support for the entire mounting frame. The internal partition 106 divides the space, allowing the first clamping mechanism 101 and the second clamping mechanism 102 to clamp the upper and lower ends and sides of the communication base station, respectively. A pair of L-shaped clamping plates 10101 of the first clamping mechanism 101 are slidably inserted into the upper and lower ends of the housing 100, facilitating the clamping and fixing of communication base stations of different lengths. A pair of movable plates 10201 of the second clamping mechanism 102 are slidably inserted into the sides of the housing 100, enabling… The left and right sides of the communication base station of different widths are clamped and fixed. The extension rod 10301 of the reinforcement mechanism 103 is connected to the movable plate 10201, and the abutment plate 10302 inside the extension rod 10301. After the movable plate 10201 fixes the two sides of the communication base station, the front of the communication base station can be fixed by the abutment plate 10302. With the movable plate 10201 and the L-shaped clamping plate 10101, the housing 100 is stably installed on the communication base station without drilling and with strong adaptability.
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0026] Please see Figure 1 - Figure 5The first clamping mechanism 101 also includes a first fixed base 10103. One side of the first fixed base 10103 is connected to one side of the partition 106. A first bidirectional screw 10102 is rotatably inserted into the first fixed base 10103. The two ends of the first bidirectional screw 10102 are respectively threaded to the two opposite faces of a pair of L-shaped clamping plates 10101. Inside the housing 100, a first servo motor 10106 is fixedly installed on one side of the partition 106. A first bevel gear 10105 is sleeved on the output end of the first servo motor 10106. A second bevel gear 10104 is sleeved on the side of the first bidirectional screw 10102 near the first bevel gear 10105. The second bevel gear 10104 and the first bevel gear 10105 are connected. The second clamping mechanism 102 also includes a second fixed seat 10202, one side of which is connected to the other side of the partition 106. A second bidirectional screw 10203 is rotatably inserted into the second fixed seat 10202. The two ends of the second bidirectional screw 10203 are respectively threaded to the two opposite faces of a pair of movable plates 10201. A second servo motor 10205 is fixedly installed inside the housing 100 on one side of the second fixed seat 10202. A worm gear 10206 is sleeved on the output end of the second servo motor 10205. A worm wheel 10204 is sleeved on the bottom end of the second bidirectional screw 10203 near the worm gear 10206. The worm wheel 10204 and the worm gear 10206 mesh with each other. The first fixed seat 1 0103 provides an installation base for the first bidirectional screw 10102. When the first bidirectional screw 10102 is rotated, since its two ends are threadedly connected to a pair of L-shaped clamps 10101, the pair of L-shaped clamps 10101 can move synchronously to the middle or to both sides, thereby adjusting the clamping distance on the upper and lower ends of the communication base station, adapting to communication base stations of different sizes, and improving the versatility of the mounting bracket. The first servo motor 10106 inside the housing 100 serves as a power source. The first bevel gear 10105 at its output end meshes with the second bevel gear 10104 on the first bidirectional screw 10102. After the first servo motor 10106 starts, it drives the first bidirectional screw 10102 to rotate through gear transmission, realizing the movement of the L-shaped clamps 10101. Position adjustment: The second fixed base 10202 provides mounting support for the second bidirectional screw 10203. When the second bidirectional screw 10203 is rotated, because its two ends are threadedly connected to a pair of movable plates 10201, the pair of movable plates 10201 can move closer or further away synchronously, thereby adjusting the clamping distance on both sides of the communication base station, adapting to communication base stations of different specifications, and enhancing the applicability of the mounting bracket. The worm gear 10206 at the output end of the second servo motor 10205 inside the housing 100 meshes with the worm wheel 10204 at the bottom end of the second bidirectional screw 10203. After the second servo motor 10205 is started, it drives the second bidirectional screw 10203 to rotate through the worm wheel 10204 and worm gear 10206, realizing the adjustment of the movable plates 10201.Furthermore, the worm gear 10204 and worm 10206 transmission have a self-locking property, which can prevent the movable plate 10201 from moving accidentally due to external forces.
[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0028] Please see Figure 1 - Figure 5 An adjusting bolt 10303 is threadedly connected to the center of one end of the extension rod 10301. One end of the adjusting bolt 10303 is rotatably connected to one side of the abutment plate 10302. Several mounting strips 104 are fixedly installed on one side of the housing 100. Several mounting holes are opened on each mounting strip 104. The adjusting bolt 10303 at one end of the extension rod 10301 is rotatably connected to the abutment plate 10302. By rotating the adjusting bolt 10303, the extension length of the abutment plate 10302 inside the extension rod 10301 can be adjusted. Thus, according to the actual size and installation requirements of the communication base station, the tightness of the reinforcement mechanism 103 against the communication base station can be flexibly adjusted to further enhance the fixing effect. The mounting strips 104 on one side of the housing 100 and the mounting holes opened on them make it convenient for users to install different types of heat sink components on the mounting strips 104. This facilitates the use of pipe or pipeline connections to dissipate heat and cool down the inside of the communication base station, further improving the applicability of the mounting bracket.
[0029] Specifically, the working principle of this quick-installation bracket for communication base station heat sinks is as follows: During the installation preparation stage, the operator moves the bracket to the installation location of the communication base station. At this time, the equipment can be started by controlling the first servo motor 10106 and the second servo motor 10205. After the first servo motor 10106 starts, the first bevel gear 10105 at its output end rotates. Since the first bevel gear 10105 meshes with the second bevel gear 10104 on the first bidirectional screw 10102, it drives the first bidirectional screw 10102 to rotate. The two ends of the first bidirectional screw 10102 are respectively threadedly connected to a pair of L-shaped clamps 10101. Rotating the first bidirectional screw 10102 causes a pair of L-shaped clamping plates 10101 to move synchronously towards the center or to both sides. The clamping distance of the L-shaped clamping plates 10101 on the upper and lower ends of the communication base station is adjusted according to the height of the base station. Simultaneously, the second servo motor 10205 starts, and the worm gear 10206 at its output end rotates, meshing with the worm wheel 10204 at the bottom of the second bidirectional screw 10203. Through the worm wheel 10204 and worm gear 10206, the second bidirectional screw 10203 is driven to rotate. Both ends of the second bidirectional screw 10203 are threadedly connected to a pair of movable plates 10201, thereby realizing the rotation of the pair of movable plates 10201. 1. Simultaneously move closer or further away from the communication base station, adjusting the clamping distance of the movable plate 10201 on both sides of the communication base station according to its width. After completing the initial adjustment, place the mounting bracket on the communication base station, aligning the L-shaped clamp 10101 and the movable plate 10201 with the upper and lower ends and sides of the communication base station, respectively. Restart the first servo motor 10106 and the second servo motor 10205, fine-tuning the positions of the L-shaped clamp 10101 and the movable plate 10201 to tightly clamp the communication base station. Then, perform a reinforcement operation. The operator rotates the adjusting bolt 10303 at the center of one end of the extension rod 10301. Because the adjusting bolt 10303... The abutment plate 10302 is rotatably connected. The adjusting bolt 10303 can be rotated to adjust the extension length of the abutment plate 10302 within the extension rod 10301. According to the actual size of the communication base station, the abutment plate 10302 is adjusted to a suitable position so that it tightly abuts against the front of the communication base station. With the help of the L-shaped clamp 10101 and the movable plate 10201, the mounting bracket is stably fixed on the communication base station. When it is necessary to install heat sink components, the mounting holes on the mounting strip 104 on one side of the housing 100 can be used to install heat sink components of different models on the mounting strip 104. Then, the communication base station is connected through pipes or pipelines to achieve heat dissipation and cooling inside the communication base station.
Claims
1. A quick mounting rack for a communication base station heat sink, characterized in that, The utility model provides a communication base station fixing device, including casing (100) and reinforcing mechanism (103), the inside fixed mounting of casing (100) is equipped with baffle (106), the inside of casing (100) is located baffle (106) one side and is provided with first clamping mechanism (101) for clamping the upper and lower both ends of communication base station, the inside of casing (100) is located baffle (106) the other side and is provided with second clamping mechanism (102) for clamping the both sides of communication base station, first clamping mechanism (101) includes a pair of L -shaped clamping plate (10101), a pair of L -shaped clamping plate (10101) is inserted with the upper and lower both ends of casing (100) sliding respectively, second clamping mechanism (102) includes a pair of movable plate (10201), a pair of movable plate (10201) is inserted with the both sides of casing (100) sliding respectively, reinforcing mechanism (103) includes two pairs of extension rod (10301), two pairs of extension rod (10301) are connected with the one end outside of a pair of movable plate (10201) respectively, the inside of extension rod (10301) is slidably installed with abutment plate (10302).
2. A quick mount for a communication base station heat sink according to claim 1, wherein, First clamping mechanism (101) still includes first fixed seat (10103), one side of first fixed seat (10103) is connected with one side of baffle (106), first two -way screw rod (10102) is rotatably inserted on first fixed seat (10103), both ends of first two -way screw rod (10102) are respectively connected with the two opposite faces of a pair of L -shaped clamping plate (10101) with screw thread.
3. A quick mount for a communication base station heat sink according to claim 2, wherein, The inside of casing (100) is fixedly installed with first servo motor (10106) on one side of baffle (106), the output of first servo motor (10106) is equipped with first bevel gear (10105), second bevel gear (10104) is equipped on the side of first two -way screw rod (10102) close to first bevel gear (10105), and first bevel gear (10105) and second bevel gear (10104) are intermeshed.
4. The quick mount for communication base station heat sink of claim 1, wherein, Second clamping mechanism (102) still includes second fixed seat (10202), one side of second fixed seat (10202) is connected with the other side of baffle (106), second two -way screw rod (10203) is rotatably inserted on second fixed seat (10202), both ends of second two -way screw rod (10203) are respectively connected with the two opposite faces of a pair of movable plate (10201) with screw thread.
5. A quick mount for a communication base station heat sink according to claim 4, wherein, The inside of casing (100) is fixedly installed with second servo motor (10205) on one side of second fixed seat (10202), the output of second servo motor (10205) is equipped with worm (10206), the bottom end of second two -way screw rod (10203) close to worm (10206) is equipped with worm wheel (10204), and worm wheel (10204) and worm (10206) are intermeshed.
6. A quick mount for a communication base station heat sink according to claim 1, wherein, One end of the lengthening rod (10301) is threadedly connected with an adjusting bolt (10303), one end of the adjusting bolt (10303) is rotationally connected with one side of a resisting plate (10302).
7. A quick mount for a communication base station heat sink as defined in claim 1, wherein, A plurality of mounting strips (104) are fixedly installed on one side of the shell (100), a plurality of mounting holes are formed in the mounting strips (104).