CN217463864U - Radar installation device suitable for multi-scene - Google Patents

Radar installation device suitable for multi-scene Download PDF

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Publication number
CN217463864U
CN217463864U CN202221421969.2U CN202221421969U CN217463864U CN 217463864 U CN217463864 U CN 217463864U CN 202221421969 U CN202221421969 U CN 202221421969U CN 217463864 U CN217463864 U CN 217463864U
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China
Prior art keywords
side plate
arc
shaped hole
radar
fixing
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CN202221421969.2U
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Chinese (zh)
Inventor
熊亮
李运筹
黄寒
邓志鹏
张小冬
胡明康
刘云飞
许采松
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Wuhan Xinchuang Zhihe Information Technology Co ltd
CHANGJIANG WUHAN WATERWAY BUREAU
Nanjing Hurys Intelligent Technology Co Ltd
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Wuhan Xinchuang Zhihe Information Technology Co ltd
CHANGJIANG WUHAN WATERWAY BUREAU
Nanjing Hurys Intelligent Technology Co Ltd
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Priority to CN202221421969.2U priority Critical patent/CN217463864U/en
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Abstract

The utility model discloses a radar installation device suitable for multiple scenes, which is characterized by comprising a fixed part, a transition part and an installation part, wherein the fixed part and the transition part are movably connected, and the installation part is assembled with the transition part; the fixing piece comprises a fixing part and a first side plate vertically extending along the fixing part, and the first side plate is provided with a first arc-shaped hole along the extending direction of the first side plate; the transition piece comprises a connecting plate and a second side plate vertically extending along the connecting plate, and a second arc-shaped hole perpendicular to the second side plate is formed in the connecting plate; the second side plate is connected with the first side plate through a rotating shaft penetrating in the first arc-shaped hole; the mounting part comprises a third side plate and a fourth side plate which are perpendicular to each other, a plurality of mounting holes are formed in the third side plate and the fourth side plate and used for fixing the radar, and the third side plate or the fourth side plate is connected with the connecting plate through a detachable part penetrating through the second arc-shaped hole. The utility model discloses can realize flexibility, the practicality installation of radar under the arbitrary scene.

Description

Radar installation device suitable for multi-scene
Technical Field
The utility model relates to a wisdom traffic technical field, concretely relates to radar installation device suitable for many scenes.
Background
The improvement of the intellectualization of traffic development is an important direction for the development of the current traffic transportation industry, and has important significance in the aspects of improving traffic safety, relieving traffic pressure and the like.
The radar is one of important sensing devices for intelligent traffic construction, and the realization of the quick and effective installation of the radar in various scenes is a premise for applying the radar to the intelligent traffic. Specifically, the radar installation in the actual scene needs to consider two aspects: on one hand, in an outdoor scene, the radar is mostly required to be installed by means of rods, but the rods in the actual scene can be transverse rods or vertical rods, and can be arranged on the left side of a road or on the right side of the road. At this time, how to realize the installation and fixation of the radar under the limited installation condition in the actual scene needs to be considered. On the other hand, the height of the rod for radar mounting is not constant, and the actual detection range is also different. At this time, how to adjust the detection angle of the radar relative to the actual scene needs to be considered.
At present, although various devices for radar installation exist, the devices are mainly used for structural arrangement under a certain fixed scene; when any consideration is taken into consideration in the actual scene, the device is no longer applicable. Therefore, a radar installation device with higher practicability is still lacked, and the installation requirement of the radar under any scene can be met, so that the flexible installation of the radar can be quickly realized.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a radar installation device suitable for many scenes, the device is used for improving the current radar installation device practicality to fixed scene design low, the poor technical problem of flexibility.
To achieve the above objective, the present invention provides the following technical solutions:
a radar installation device suitable for multiple scenes comprises a fixed part, a transition part and an installation part, wherein the fixed part and the transition part are movably connected, and the installation part is assembled with the transition part; the fixing piece comprises a fixing part and a first side plate vertically extending along the fixing part, and the first side plate is provided with a first arc-shaped hole along the extending direction of the first side plate; the transition piece comprises a connecting plate and a second side plate vertically extending along the connecting plate, and a second arc-shaped hole perpendicular to the second side plate is formed in the connecting plate; the second side plate is connected with the first side plate through a rotating shaft which is arranged in the first arc-shaped hole in a penetrating mode; the mounting part comprises a third side plate and a fourth side plate which are perpendicular to each other, a plurality of mounting holes are formed in the third side plate and the fourth side plate and used for fixing the radar, and the third side plate or the fourth side plate is connected with the connecting plate through a detachable part penetrating through the second arc-shaped hole.
Further, the angle of the first arc-shaped hole and the second arc-shaped hole is 180 degrees.
Furthermore, the number of the first side plates is two, and the first side plates respectively vertically extend along opposite sides of the fixing part.
Furthermore, the number of the second side plates is two, and the second side plates respectively vertically extend along one opposite side of the connecting plate.
Furthermore, a third arc-shaped hole is formed in the second side plate, the third arc-shaped hole is parallel to the first arc-shaped hole, and the second side plate is connected with the first side plate through a rotating shaft penetrating through the third arc-shaped hole.
Further, the length of the third side plate is not less than the width of the radar.
Further, the mounting member includes a fifth side plate extending vertically along the free side of the third side plate and located opposite the fourth side plate.
Furthermore, a fixing hole is formed in the fixing portion, and a fastening piece penetrates through the fixing hole and is used for being fixed with the mounting structure in an actual scene.
Furthermore, the fastener is a hoop, and the mounting structure in an actual scene is a mounting rod.
Furthermore, the fixing piece, the transition piece and the mounting piece are all made of light alloy.
Has the advantages that:
according to the above technical scheme, the utility model provides a device for radar installation to realize the radar installation under multiple different scenes.
The device comprises a fixing part, a transition part and a mounting part which are matched with each other, wherein the fixing part is used for being matched with a structure which can be used for fixing in an actual scene, and the mounting part is used for mounting the radar. Specifically, the fixing piece is arranged to comprise a fixing portion, a first side plate vertically extending along the fixing portion, and a first arc-shaped hole consistent with the extending direction of the first arc-shaped hole is formed in the first side plate. The transition piece comprises a connecting plate and a second side plate extending vertically along the connecting plate, and a second arc-shaped hole perpendicular to the second side plate is formed in the second connecting plate. The second side plate is connected with the first side plate through a rotating shaft penetrating through the first arc-shaped hole. The mounting part comprises a third side plate and a fourth side plate which are perpendicular to each other, and a plurality of mounting holes are formed in the third side plate and the fourth side plate and used for fixing the radar. The third side plate or the fourth side plate is connected with the connecting plate through a detachable piece penetrating through the second arc-shaped hole.
Because the second side plate is connected with the first side plate through the rotating shaft penetrating through the first arc-shaped hole, the transition piece can be adjusted to a first rotating angle relative to the fixing piece. Because the connecting plate is provided with the second arc-shaped hole, the third side plate or the fourth side plate is connected with the connecting plate through the detachable piece arranged in the second arc-shaped hole in a penetrating way. The mount is thus adjustable in a second rotational angle relative to the transition piece. And the second arc-shaped hole is vertical to the second side plate, so that the rotating surfaces of the first rotating angle and the second rotating angle are vertical to each other. And further, the horizontal angle and the vertical angle of the radar can be adjusted.
Meanwhile, the mounting piece and the transition piece are assembled through the detachable piece. The mounting part comprises a third side plate and a fourth side plate which are perpendicular to each other. Therefore, in a real scene, the transition piece can be connected with the third side plate and the fourth side plate to meet the installation requirement of the transverse installation rod or the longitudinal installation rod. The installation part can be integrally arranged on the left side or the right side of the radar so as to meet the installation requirement when the installation rod is arranged on different sides of a road.
As can be seen from the above analysis, the device can satisfy the nimble installation of radar under different installation conditions and the different demand of surveying, has good practicality.
It should be understood that all combinations of the foregoing concepts and additional concepts described in greater detail below can be considered as part of the inventive subject matter of the present disclosure unless such concepts are mutually inconsistent.
The foregoing and other aspects, embodiments and features of the present teachings can be more fully understood from the following description taken in conjunction with the accompanying drawings. Additional aspects of the present invention, such as features and/or advantages of exemplary embodiments, will be apparent from the description which follows, or may be learned by practice of the specific embodiments according to the teachings of the present invention.
Drawings
The drawings are not intended to be drawn to scale. In the drawings, each identical or nearly identical component that is illustrated in various figures may be represented by a like numeral. For purposes of clarity, not every component may be labeled in every drawing. Embodiments of various aspects of the present invention will now be described, by way of example, with reference to the accompanying drawings, in which:
fig. 1 is a schematic view of a radar installation device suitable for multiple scenes according to the present invention;
fig. 2 is a schematic diagram of the mounting device of fig. 1 after a radar is mounted thereon.
The reference numbers in the figures are: 1 is a fixed part, 2 is a transition part, 3 is an installation part, and 4 is a radar; 11 is a fixed part, 12 is a first side plate, and 12a is a first arc-shaped hole; 21 is a second side plate, 22 is a connecting plate, and 22a is a second arc-shaped hole; reference numeral 31 denotes a third side plate, 32 denotes a fourth side plate, 33 denotes a fifth side plate, and 34 denotes a mounting hole.
Detailed Description
In order to make the purpose, technical solution and advantages of the embodiments of the present invention clearer, the drawings of the embodiments of the present invention are combined below to clearly and completely describe the technical solution of the embodiments of the present invention. It is to be understood that the embodiments described are only some of the embodiments of the present invention, and not all of them. All other embodiments, which can be obtained by a person skilled in the art without any inventive work based on the described embodiments of the present invention, belong to the protection scope of the present invention. Unless defined otherwise, technical or scientific terms used herein shall have the ordinary meaning as understood by one of ordinary skill in the art to which this invention belongs.
The use of "first," "second," and similar terms in the description and in the claims does not indicate any order, quantity, or importance, but rather is used to distinguish one element from another. Similarly, the singular forms "a," "an," or "the" do not denote a limitation of quantity, but rather denote the presence of at least one, unless the context clearly dictates otherwise. The terms "comprises," "comprising," or the like, mean that the elements or items listed before "comprises" or "comprising" encompass the features, integers, steps, operations, elements, and/or components listed after "comprising" or "comprising," and do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and/or groups thereof.
"upper", "lower", "left", "right", and the like are used only to indicate relative positional relationships, and when the absolute position of the object to be described is changed, the relative positional relationships may also be changed accordingly.
The existing device for radar installation is mostly arranged for a certain fixed installation scene, so that the flexibility of radar installation and the practicability of the radar installation device are reduced. Therefore the utility model provides a radar installation device, it sets up through corresponding rotary mechanism, and the radar installed part setting of assembled, has satisfied the high-efficient nimble installation of radar under the various demands of various scenes, has good practicality.
The following describes the radar installation device suitable for multiple scenes in detail with reference to the embodiments shown in the drawings.
As shown in fig. 1-2, the device comprises a fixing member 1, a transition member 2 and a mounting member 3 in this order. The fixing piece 1 is movably connected with the transition piece 2, and the mounting piece 3 is assembled and matched with the transition piece 2. The fixing piece 1 is specifically used for realizing connection with an installation structure in an actual scene, and the installation structure can be a cross bar such as an electric warning rod or a beam-suspended arm cross bar of a signal rod in an urban road. Or can be a monitoring pole, a light pole or an indicator board pole and other vertical poles in a highway, a bridge or a water transport channel. The mounting 3 is for mounting a radar 4.
In a specific structure, the fixing member 1 includes a fixing portion 11 and a first side plate 12 extending vertically along the fixing portion 11, and the first side plate 12 is provided with a first arc-shaped hole 12a along an extending direction thereof. The transition piece 2 comprises a connecting plate 22 and a second side plate 21 vertically extending along the side edge of the connecting plate 22, wherein a second arc-shaped hole 22a perpendicular to the second side plate 21 is formed in the connecting plate 22. The second side plate 21 is connected with the first side plate 12 through a rotating shaft penetrating through the first arc-shaped hole 12 a. The mounting member 3 includes a third side plate 31 and a fourth side plate 32 perpendicular to each other, the third side plate 31 and the fourth side plate 32 are provided with a plurality of mounting holes 34 for fixing the radar 4, and the third side plate 31 or the fourth side plate 32 is connected to the connecting plate 22 through a detachable member inserted into the second arc-shaped hole 22 a.
In specific implementation, the second side plate 21 is connected to the first side plate 12 through a rotating shaft passing through the first arc-shaped hole 12a, so that the transition piece 2 can perform a first rotation angle adjustment relative to the fixed piece 1. Because the connecting plate 22 is provided with the second arc-shaped hole 22a, the third side plate 31 or the fourth side plate 32 is connected with the connecting plate 22 through the detachable piece penetrating through the second arc-shaped hole 22 a. The mounting part 3 can thus be adjusted in a second angle of rotation relative to the transition piece 2. And the second arc-shaped hole 22a is perpendicular to the second side plate 21, so that the rotation planes of the first rotation angle and the second rotation angle are perpendicular to each other. Further, the adjustment of the horizontal angle and the vertical angle of the radar 4 is realized.
Meanwhile, the mounting piece 3 is assembled with the transition piece 2 through a detachable piece. The mounting member 3 includes a third side plate 31 and a fourth side plate 32 perpendicular to each other. Therefore, in a real scene, the transition piece 2 can be selectively connected with the third side plate 31 and the fourth side plate 32 to meet the installation requirement of the transverse installation rod or the longitudinal installation rod. The mounting part 3 can be integrally arranged on the left side or the right side of the radar 4 so as to meet the mounting requirements when the mounting rod is arranged on different sides of a road. As shown in fig. 2, the mounting member 3 is integrally installed on the right side of the radar 4 in order to use a transverse mounting rod.
In this embodiment, the fixing portion 41 is provided with a fixing hole, and the device is fixed to a cross rod or a vertical rod in an actual scene through a fastener penetrating through the fixing hole. Specifically, the fastener is a hoop. At this time, the device is specifically installed as a holding pole.
In this embodiment, the detachable member is a movable shaft, or a screw and a bolt that are engaged with each other.
In order to expand the range of radar angle rotation that can be realized by the device, the angle of the first arc-shaped hole 12a and the second arc-shaped hole 22a is set to be 180 degrees. The device can detect the radar 4 at any required angle or any required range.
In order to improve the structural strength of the device and prevent structural deformation after long-term use. The two first side plates 12 are provided and vertically extend along one opposite side of the fixing portion 11. Meanwhile, two second side plates 21 are provided, and extend vertically along one opposite side of the connecting plate 22. At this time, the fixed member 1 and the transition member 2 are movably connected to each other through a pair of first side plates 12 and a pair of second side plates 21 that are engaged with each other.
In order to improve the stability between the fixing part 1 and the transition part 2 during rotation, a third arc-shaped hole is formed in the second side plate 21, the third arc-shaped hole is parallel to the first arc-shaped hole 12a, and the second side plate 21 is connected with the first side plate 12 through a rotating shaft arranged in the third arc-shaped hole in a penetrating mode.
Similarly, a fourth arc-shaped hole parallel to the second arc-shaped hole 22a may also be disposed on the third side plate 31, and a fifth arc-shaped hole parallel to the second arc-shaped hole 22a may also be disposed on the fourth side plate 32.
In order to improve the supporting function of the radar 4, mounting holes 34 are uniformly formed in the third side plate 31 and the fourth side plate 32.
As an alternative embodiment, the length of the third side plate 31 is set to be not less than the width of the radar 4. While also the mounting member 3 comprises a fifth side plate 33. The fifth side plate 33 extends vertically along the free side of the third side plate 31 and is opposite to the fourth side plate 32. The mounting part 3 will now form a semi-surrounding clamping fixation for the radar 4.
In order to prevent the installation part 3 from scraping and wearing the shell or the detection surface of the radar 4 in the installation process, a buffer part is arranged on the inner side wall of the installation part 3.
In order to reduce the weight of the device, the fixing piece 1, the transition piece 2 and the mounting piece 3 are all made of light alloy. Specifically, the light alloy is an aluminum alloy. Meanwhile, the outer surfaces of the fixing member 1, the transition member 2 and the mounting member 3 are coated with an anticorrosive coating to prevent erosion of rain, snow and the like from adversely affecting the device, thereby reducing safety of the device in use.
Although the present invention has been described with reference to the preferred embodiments, it is not intended to limit the present invention. The present invention is intended to cover by those skilled in the art various modifications and adaptations of the invention without departing from the spirit and scope of the invention. Therefore, the protection scope of the present invention is subject to the claims.

Claims (10)

1. A radar installation device suitable for multiple scenes is characterized by comprising a fixed part, a transition part and an installation part, wherein the fixed part and the transition part are movably connected, and the installation part is assembled with the transition part; the fixing piece comprises a fixing part and a first side plate vertically extending along the fixing part, and the first side plate is provided with a first arc-shaped hole along the extending direction of the first side plate; the transition piece comprises a connecting plate and a second side plate vertically extending along the connecting plate, and a second arc-shaped hole perpendicular to the second side plate is formed in the connecting plate; the second side plate is connected with the first side plate through a rotating shaft which is arranged in the first arc-shaped hole in a penetrating mode; the mounting part comprises a third side plate and a fourth side plate which are perpendicular to each other, a plurality of mounting holes are formed in the third side plate and the fourth side plate and used for fixing the radar, and the third side plate or the fourth side plate is connected with the connecting plate through a detachable part penetrating through the second arc-shaped hole.
2. The radar installation device suitable for multiple scenes of claim 1, wherein the angle of the first arc-shaped hole and the second arc-shaped hole is 180 degrees.
3. The device of claim 1, wherein the first side plates are two and extend vertically along opposite sides of the fixing portion.
4. The radar mounting apparatus for multiple scenes of claim 3, wherein there are two of said second side plates, each extending vertically along an opposite side of said connecting plate.
5. The device of claim 1, wherein a third arc-shaped hole is formed in the second side plate, the third arc-shaped hole is parallel to the first arc-shaped hole, and the second side plate and the first side plate are connected through a rotating shaft penetrating through the third arc-shaped hole.
6. The radar mounting apparatus for multiple scenes of claim 1, wherein the length of the third side panel is not less than the width of the radar.
7. The multi-scenario applicable radar mounting apparatus of claim 6, wherein the mounting member includes a fifth side plate; the fifth side plate extends vertically along the free side of the third side plate and is opposite to the fourth side plate.
8. The device for installing radar suitable for multiple scenes according to claim 1, wherein the fixing portion is provided with a fixing hole, and a fastener is inserted into the fixing hole for fixing with an installation structure in an actual scene.
9. The device of claim 8, wherein the fastening member is a hoop, and the mounting structure in actual scene is a mounting rod.
10. The radar installation device suitable for multiple scenes of claim 1, wherein the fixing member, the transition member and the installation member are made of light alloy.
CN202221421969.2U 2022-06-08 2022-06-08 Radar installation device suitable for multi-scene Active CN217463864U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221421969.2U CN217463864U (en) 2022-06-08 2022-06-08 Radar installation device suitable for multi-scene

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221421969.2U CN217463864U (en) 2022-06-08 2022-06-08 Radar installation device suitable for multi-scene

Publications (1)

Publication Number Publication Date
CN217463864U true CN217463864U (en) 2022-09-20

Family

ID=83236491

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221421969.2U Active CN217463864U (en) 2022-06-08 2022-06-08 Radar installation device suitable for multi-scene

Country Status (1)

Country Link
CN (1) CN217463864U (en)

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