CN-224232911-U - Radar array face skeleton
Abstract
The utility model discloses a radar array face framework, which relates to the technical field of framework structures and comprises a plurality of frames, a plurality of bolt assemblies and a plurality of mounting assemblies. The plurality of installation components are respectively arranged on the plurality of frames, the plurality of installation components are sequentially connected from top to bottom, and detachable connection is realized between any two adjacent installation components through the bolt component. A mounting assembly and a frame together form a skeletal unit. When the radar array surface framework needs to be transported, an operator can unscrew the bolt assemblies so that the framework units are separated from each other, and the operator can separately transport the framework units, so that the radar array surface framework is more convenient in transportation and carrying processes. When the radar array face skeleton is required to be assembled, as the skeleton units are detachably connected, the radar array face skeleton can be more easily adapted to different installation sites and requirements, and the flexibility of the installation of the radar array face skeleton is improved.
Inventors
- HUANG HUI
- SHI JINGSHU
- LIU YUANXI
- BAO XIAOJUN
- LI LIN
- XU ZHIREN
- TANG WENMING
- ZENG HANYU
- YANG JINGBO
- AN YU
Assignees
- 广东纳睿雷达科技股份有限公司
Dates
- Publication Date
- 20260512
- Application Date
- 20250425
Claims (8)
- 1. A radar array surface skeleton, comprising: A plurality of frames (100); a plurality of bolt assemblies; The installation components (200) are respectively arranged on the frames (100), the installation components (200) are sequentially connected from top to bottom, and any two adjacent installation components (200) are detachably connected through the bolt components.
- 2. The radar array surface skeleton of claim 1, wherein said mounting assembly (200) comprises a plurality of mounting seats (210), wherein a plurality of said mounting seats (210) are respectively provided on said frame (100), a plurality of said mounting seats (210) on any two adjacent frames (100) are respectively provided correspondingly, and two adjacent mounting seats (210) in the vertical direction are connected by said bolt assembly.
- 3. The radar array surface skeleton according to claim 2, wherein the mounting base (210) comprises three first mounting plates (211), three second mounting plates (212), two first connecting arms (213), two second connecting arms (214) and two connecting vertical rods (215), the three first mounting plates (211) are distributed in a triangle shape, one end of each of the two first connecting arms (213) is connected with one of the first mounting plates (211), the other ends of the two first connecting arms (213) are respectively connected with the rest two first mounting plates (211), the two first connecting arms (213) form an opening of an included angle forward, the three second mounting plates (212) are distributed in a triangle shape, one end of each of the two second connecting arms (214) is connected with one of the second mounting plates (212), the other ends of each of the two second connecting arms (214) are respectively connected with the rest two second mounting plates (212), the two second connecting arms (214) form an opening forward, the two first vertical rods (215) are respectively connected with the rest two vertical rods (215) for connecting the rest two antenna components (215) respectively, three first mounting plates (211) are all connected with the upper end of frame (100), three second mounting plates (212) are all connected with the lower extreme of frame (100), three first mounting plates (211) respectively with three second mounting plates (212) correspond the setting, so that adjacent two first mounting plates (211) on frame (100) with can be connected through between second mounting plates (212) the bolt assembly.
- 4. The radar array surface skeleton according to claim 3, wherein said first mounting plate (211) is provided with a plurality of first mounting holes, said second mounting plate (212) is provided with a plurality of second mounting holes, and a plurality of said first mounting holes and a plurality of said second mounting holes are used for said bolt assembly to pass through.
- 5. The radar array surface skeleton according to claim 2, wherein said mounting assembly (200) further comprises a plurality of connecting rails (220), wherein a plurality of said connecting rails (220) are connected to a plurality of said mounting bases (210) at the same time, and the front sides of a plurality of said connecting rails (220) are used for mounting the antenna assembly.
- 6. The radar array surface skeleton according to claim 1, wherein the left and right sides of the plurality of frames (100) are respectively provided with a first auxiliary mounting frame (110), and the plurality of first auxiliary mounting frames (110) are respectively used for being connected with a supporting structure on the ground.
- 7. The radar front skeleton according to claim 1, further comprising a second auxiliary mounting bracket (120), said second auxiliary mounting bracket (120) being provided on a rear side of one of said frames (100), said second auxiliary mounting bracket (120) being adapted to be connected to a supporting structure on the ground.
- 8. The radar front skeleton according to claim 1, wherein said frame (100) includes a plurality of quadrangular pyramid racks.
Description
Radar array face skeleton Technical Field The utility model relates to the technical field of skeleton structures, in particular to a radar array face skeleton. Background The radar array face framework is a structural framework for supporting the radar array face, and is mainly used for supporting various electronic elements such as an antenna assembly of the radar array face, so that the electronic elements can be kept at the correct positions and relative relations, the shape and the structural stability of the radar array face are ensured, and the normal operation of a radar system is further ensured. In the prior art, the radar array face framework is a structural framework with larger volume and heavier mass, so that the radar array face framework is easy to be limited by space and weight in the transportation process, and the transportation and installation convenience of the radar array face framework are not improved. Disclosure of utility model The present utility model aims to solve at least one of the technical problems existing in the prior art. Therefore, the utility model provides the radar array surface framework, which is beneficial to improving the transportation and installation convenience of the radar array surface framework. The radar array face skeleton comprises a plurality of frames, a plurality of bolt assemblies and a plurality of mounting assemblies. The installation components are respectively arranged on the frames, the installation components are sequentially connected from top to bottom, and any two adjacent installation components are detachably connected through the bolt components. Has at least the following beneficial effects: The plurality of mounting assemblies are respectively arranged on the plurality of frames, so that the plurality of frames and the plurality of mounting assemblies respectively form a plurality of framework units, namely one mounting assembly and one frame form one framework unit together. The plurality of installation components are sequentially connected from top to bottom, so that the plurality of frames are distributed from top to bottom, namely the plurality of framework units are distributed from top to bottom. And all realize dismantling the connection through the bolt assembly between arbitrary two adjacent installation component for can realize dismantling the connection through installation component between two frames, make can dismantle the connection between two skeleton units. When the radar array surface framework is required to be transported, an operator can unscrew the plurality of bolt assemblies, so that the plurality of installation assemblies are separated from each other, namely, the plurality of framework units are separated from each other, so that the operator can separately transport the plurality of framework units, the volume and the weight of the radar array surface framework are reduced, and the radar array surface framework is more convenient in transportation and carrying processes, especially under the condition that the transportation and carrying space and the transportation and carrying quality are limited. When the radar array face skeleton is required to be assembled, an operator can put a plurality of skeleton units in sequence, then the installation components in two adjacent skeleton units are connected together through the bolt components in sequence, and then the assembly of the radar array face skeleton can be completed. The multiple framework units are detachably connected, so that the radar array framework can be more easily adapted to different installation sites and requirements, and the flexibility of the installation of the radar array framework is improved. According to the radar array surface framework provided by the embodiment of the utility model, the mounting assembly comprises a plurality of mounting seats, the plurality of mounting seats are arranged on the frame, the plurality of mounting seats on any two adjacent frames are respectively and correspondingly arranged, and the two adjacent mounting seats in the up-down direction are connected through the bolt assembly. According to the radar array surface skeleton provided by the embodiment of the utility model, the mounting seat comprises three first mounting plates, three second mounting plates, two first connecting arms, two second connecting arms and two connecting vertical rods, the three first mounting plates are distributed in a triangular mode, one ends of the two first connecting arms are connected with one of the first mounting plates, the other ends of the two first connecting arms are connected with the other two first mounting plates respectively, the two first connecting arms form an included angle, the three second mounting plates are distributed in a triangular mode, one ends of the two second connecting arms are connected with one of the second mounting plates, the other ends of the two second connecting arms are connected wi