一种用于雷达波监测仪的悬臂式安装装置
By employing multiple constraint tension combination structures in the cantilever mounting device of the radar wave monitor, the problem of easy vibration of long cantilever structures was solved, thereby improving the stability and data accuracy of the mounting end.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGZHOU HESHITONG ELECTRONIC TECH CO LTD
- Filing Date
- 2026-05-22
- Publication Date
- 2026-07-17
AI Technical Summary
Existing radar wave monitoring instruments with cantilevered installation devices are susceptible to vibrations caused by external environmental factors such as wind loads under long cantilever structures, leading to probe displacement and swaying, which affects measurement stability and data accuracy.
It adopts a combination structure of multiple mounting bases, mounting booms, load-bearing brackets, upper tensioning components and side tensioning components. By applying multiple constraint tensions from above and from both sides, it forms a spatially stable structure, enhances bending and torsional stiffness, and resists external interference.
It significantly reduced the vibration amplitude and frequency at the installation end, provided a stable installation foundation, and ensured the data accuracy of the radar wave monitor.
Smart Images

Figure CN224515787U_ABST
Abstract
Claims
1. A jib mounting arrangement for a radar wave monitor, characterised in that, include: Multiple mounting bases, the positions of the mounting bases are fixed, and the mounting bases are provided with transverse through-hole limiting channels; The mounting boom is installed, which passes through the limiting channel of the mounting base. One end of the mounting boom is defined as the mounting end, which is suspended and has a mounting bracket for installing the radar wave monitor. A fixing mechanism is used to fix the mounting boom onto the mounting base; A load-bearing bracket, the position of which is fixed, and the load-bearing bracket having an upper load-bearing point located above the mounting boom, a left load-bearing point located on the left and right sides of the mounting boom; An upper tensioning assembly applies an upward tension to the mounting end of the mounting boom based on the upper bearing point; Two side tensioning assemblies apply tension to the mounting end of the mounting boom on the left and right sides, respectively, based on the left and right bearing points.
2. The cantilever mounting device for a radar wave monitor according to claim 1, characterized in that: The upper tensioning assembly and the two side tensioning assemblies each include a rope and a tensioner, with the first end of the rope connected to the first end of the tensioner and the second end of the rope connected to the mounting end of the mounting boom.
3. The cantilever mounting device for a radar wave monitor according to claim 2, characterized in that: The rope tensioner includes a first connector, a second connector, and a frame; The first connector includes a first stud portion and a hook fixed to one end of the first stud portion; The second connector includes a second stud portion and a rope loop fixed to one end of the second stud portion, the rope loop being used to connect the rope; The first stud portion and the second stud portion are coaxially arranged and both are threadedly connected to the frame.
4. The cantilever mounting device for a radar wave monitor according to claim 2 or 3, characterized in that: The load-bearing support includes two columns respectively set on both sides of the mounting boom. An upper crossbeam and a lower crossbeam are set on the two columns. The upper load-bearing point is set at the middle of the upper crossbeam, and the left and right load-bearing points are set at both ends of the lower crossbeam.
5. The cantilever mounting device for a radar wave monitor according to claim 4, characterized in that: Along the length of the mounting boom, at least one mounting base is located on the first side of the load-bearing bracket, and the mounting end of the mounting boom is located on the second side of the load-bearing bracket; A pulley is provided in the middle of the upper crossbeam; The rope in the upper tensioning assembly is wound around the pulley, and the rope tensioner in the upper tensioning assembly is connected to the mounting base located on the first side of the load-bearing bracket. The contact position between the pulley and the rope forms the upper load-bearing point. The tensioners in the two side tensioning assemblies are respectively connected to both ends of the lower crossbeam, and the connection positions of the two side tensioning assemblies and the lower crossbeam form the left and right load-bearing points.
6. The cantilever mounting device for a radar wave monitor according to claim 5, characterized in that: The lower crossbeam is provided with hanging holes at both ends for connecting the tensioner; The mounting base is equipped with a hanging ring for connecting a tensioner.
7. The cantilever mounting device for a radar wave monitor according to claim 2, characterized in that: The mounting end of the boom is provided with rope-attaching holes on the upper, left, and right sides for connecting ropes.
8. The cantilever mounting device for a radar wave monitor according to claim 1, characterized in that: The installation boom is equipped with a cable passage.
9. The cantilever mounting device for a radar wave monitor according to claim 1, characterized in that: The mounting base is provided with radially opened fixing holes, which are connected to the limiting channel; The fixing mechanism includes a set bolt, which is threaded into the fixing hole. One end of the set bolt is pressed against the outer wall of the mounting arm to fix the mounting arm on the mounting base.
10. The cantilever mounting device for a radar wave monitor according to claim 6, characterized in that: It also includes a raised platform, wherein the mounting base and the load-bearing bracket are both fixedly mounted on the raised platform; The height of the mounting base and the lower crossbeam is 1.0-1.5m.