CN208634685U - Against shock laser radar pedestal - Google Patents

Against shock laser radar pedestal Download PDF

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Publication number
CN208634685U
CN208634685U CN201821268791.6U CN201821268791U CN208634685U CN 208634685 U CN208634685 U CN 208634685U CN 201821268791 U CN201821268791 U CN 201821268791U CN 208634685 U CN208634685 U CN 208634685U
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China
Prior art keywords
annular
laser radar
inner race
outer ring
rubber
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CN201821268791.6U
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Chinese (zh)
Inventor
杨屹
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Anhui Sunstone Technology Co Ltd
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Anhui Sunstone Technology Co Ltd
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Priority to CN201821268791.6U priority Critical patent/CN208634685U/en
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Abstract

The utility model discloses a kind of against shock laser radar pedestals, including laser radar ontology and damping base, the damping base includes annular outer ring and annular inner race, the annular outer ring is fixedly connected with the bottom of annular inner race by annular slab, annular is equidistant on the annular outer ring is bolted with several screw rods, the screw rod is fixedly connected through annular inner race with the fixed plate of one end of the spring on the inside of annular inner race, the inside of the annular inner race is fixedly connected by the trapezoidal rubber block that annular is spaced substantially equidistant with round rubber pad, the base circle of the annular slab is equidistant to be bolted with several rubber shock absorber struts, the inside of the rubber shock absorber strut and be located at the rebasing portion of round rubber be equipped be plugged with convex block, the convex block is fixed at the inside of circular trough, and circular trough is spirally connected with annular outer ring.The utility model is wide for the usage range of laser radar and good damping effect.

Description

Against shock laser radar pedestal
Technical field
The utility model belongs to laser radar technique field, and in particular to a kind of against shock laser radar pedestal.
Background technique
Laser radar is the radar system to emit the characteristic quantities such as the position of detecting laser beam target, speed.Its work is former Reason be to objective emission detectable signal (laser beam), then by the reflected signal of slave target (target echo) received with Transmitting signal is compared, after making proper treatment, so that it may target is obtained for information about, such as target range, orientation, height, speed Degree, posture, the even parameters such as shape, to be detected, tracked and be identified to targets such as aircraft, guided missiles.It is by Laser emission Electric pulse is become light pulse emission and gone out by the composition such as machine, optical receiver, turntable and information processing system, laser, and light connects Receipts machine electric pulse is reduced into from the reflected light pulse of target, is sent to display again.
In the prior art, laser radar often mating corresponding damping base in use, operated for alleviating Vibration in journey, laser radar during the preparation process, add corresponding shock-absorption device and are placed in laser radar ontology, so not only Only make complex and costly, and damping effect is bad.
For this purpose, it is proposed that a kind of pedestal for being specially adapted for laser radar carries out damping to it, and it is easy-to-dismount Against shock laser radar pedestal solves the above problems.
Utility model content
The purpose of this utility model is to provide a kind of against shock laser radar pedestals, to solve to mention in above-mentioned background technique Out the problem of.
To achieve the above object, the utility model provides the following technical solutions: a kind of against shock laser radar pedestal, including The bottom of laser radar ontology and damping base, the laser radar ontology is equipped with shell fixing seat, and the damping base includes Annular outer ring and annular inner race, the annular outer ring are fixedly connected with the bottom of annular inner race by annular slab, the annular Annular is equidistant on outer ring is bolted with several screw rods, the screw rod through the spring on the inside of annular inner race and annular inner race one The fixed plate at end is fixedly connected, and the spring is equipped with the gripping block of clamping body fixing seat, the folder far from one end of fixed plate The inside of tight block is Nian Jie with the outer edge of rubber ring being set on the inside of annular inner race, and the inside of the annular inner race passes through annular etc. The trapezoidal rubber block of distance arrangement is fixedly connected with round rubber pad, the base circle of the annular slab is equidistant be bolted with it is several Rubber shock absorber strut, the inside of the rubber shock absorber strut and is located at the rebasing portion of round rubber and is equipped with and be plugged with convex block, and the convex block is solid Surely it is set to the inside of circular trough, and circular trough is spirally connected with annular outer ring.
Preferably, the annular outer ring, annular inner race and annular slab are integrally formed, and annular outer ring and annular inner race it Between there are with the equal-sized gap of annular board width.
Preferably, the annular outer ring and annular inner race are contour.
Preferably, the annular outer ring and annular inner race and between, positioned at annular slab top and be located at screw rod bottom Annular is spaced substantially equidistant equipped with connecting rod.
Preferably, the shell fixing seat is set to the inside of rubber ring.
Preferably, the outer diameter of the round rubber pad is less than the outer diameter of shell fixing seat, and the internal diameter of the rubber ring is greater than The outer diameter of shell fixing seat.
Preferably, the bottom of the circular trough is bonded with non-slip mat.
Preferably, annular array is equipped with and adjusts slot, the regulating tank correspondingly with screw rod on the annular outer ring Hole aperture is greater than the outer diameter of screw rod upper cap nut.
The technical effect and advantage of the utility model: the against shock laser radar pedestal, by by laser radar ontology card It is connected in the rubber ring on the inside of annular inner race, rotary screw, so that the spring of screw rod one end supports gripping block and compresses rubber ring pair The shell fixing seat of the bottom of laser radar ontology is fixed, and rubber ring and spring carry out shell fixing seat side Damping and positioning carry out damping to the bottom of shell fixing seat, furthermore due to the design of trapezoidal rubber block and round rubber pad The one circle rubber shock absorber strut of design in the bottom of damping base, buffering and damping, circular trough design pair are integrally carried out to damping base Damping base is fixed, and since the outer diameter of round rubber pad is less than the outer diameter of shell fixing seat, props up shell fixing seat Support, the internal diameter of rubber ring is greater than the outer diameter of shell fixing seat, suitable for the laser radar ontology of different pore size size, the scope of application Extensively.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the utility model;
Fig. 2 is the top view of the utility model damping base;
Fig. 3 is the bottom view of the utility model damping base;
Fig. 4 is that the interior of the utility model circular trough cuts open figure.
In figure: 1 laser radar ontology, 2 shell fixing seats, 3 annular outer rings, 4 annular inner races, 5 annular slabs, 6 screw rods, 7 bullets Spring, 8 fixed plates, 9 gripping blocks, 10 connecting rods, 11 rubber rings, 12 trapezoidal rubber blocks, 13 round rubber pads, 14 rubber shock absorber struts, 15 convex blocks, 16 circular troughs, 17 adjust slot, 18 damping bases.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work Every other embodiment obtained, fall within the protection scope of the utility model.
The utility model provides a kind of against shock laser radar pedestal as shown in Figs 1-4, including laser radar ontology 1 With damping base 18, the bottom of the laser radar ontology 1 is equipped with shell fixing seat 2, and the damping base 18 includes that annular is outer Circle 3 and annular inner race 4, the annular outer ring 3 are fixedly connected with the bottom of annular inner race 4 by annular slab 5, and the annular is outer Annular is equidistant on circle 3 is bolted with several screw rods 6, spring 7 of the screw rod 6 through 4 inside of annular inner race 4 and annular inner race The fixed plate 8 of one end be fixedly connected, the spring 7 is equipped with the gripping block of clamping body fixing seat 2 far from one end of fixed plate 8 9, the inside of the gripping block 9 is Nian Jie with the outer edge of rubber ring 11 for being set to 4 inside of annular inner race, the annular inner race 4 Inside is fixedly connected by the trapezoidal rubber block 12 that annular is spaced substantially equidistant with round rubber pad 13, the bottom of the annular slab 5 Annular is equidistant to be bolted with several rubber shock absorber struts 14, the inside of the rubber shock absorber strut 14 and is located at round rubber and pads 13 bottoms Equipped with convex block 15 is plugged with, the convex block 15 is fixed at the inside of circular trough 16, and circular trough 16 is spirally connected with annular outer ring 3.
Specifically, the annular outer ring 3, annular inner race 4 and annular slab 5 are integrally formed, and in annular outer ring 3 and annular Circle 4 between there are with the equal-sized gap of 5 width of annular slab.
Specifically, the annular outer ring 3 and annular inner race 4 are contour.
Specifically, the annular outer ring 3 and annular inner race 4 and between, positioned at annular slab 5 top and be located at screw rod 6 Base circle is spaced substantially equidistant equipped with connecting rod 10.
Specifically, the shell fixing seat 2 is set to the inside of rubber ring 11.
Specifically, the outer diameter of the round rubber pad 13 is less than the outer diameter of shell fixing seat 2, shell fixing seat 2 is carried out Support, the internal diameter of the rubber ring 11 are greater than the outer diameter of shell fixing seat 2, the laser radar ontology suitable for different pore size size 1, it is applied widely.
Specifically, the bottom of the circular trough 16 is bonded with non-slip mat.
Specifically, annular array is equipped with and the one-to-one adjusting slot 17 of screw rod 6, the tune on the annular outer ring 3 Save the outer diameter that 17 aperture of slot is greater than 6 upper cap nut of screw rod.
The against shock laser radar pedestal, in use, laser radar ontology 1 is directly connected in 4 inside of annular inner race In rubber ring 11, rotary screw 6, so that the spring 7 of 6 one end of screw rod supports gripping block 9 and compresses rubber ring 11 to laser radar sheet The shell fixing seat 2 of the bottom of body 1 is fixed, and rubber ring 11 and spring 7 carry out damping to 1 side of shell fixing seat And positioning, the internal diameter of rubber ring 11 are greater than the outer diameter of shell fixing seat 2, the laser radar ontology suitable for different pore size size 1, it is applied widely, due to the design of trapezoidal rubber block 12 and round rubber pad 13, the bottom of shell fixing seat 2 is subtracted Shake is supported shell fixing seat 2, is furthermore subtracting since the outer diameter of round rubber pad 13 is less than the outer diameter of shell fixing seat 2 The one circle rubber shock absorber strut 14 of bottom design for shaking pedestal 18, carries out buffering to 18 entirety of damping base and damping, circular trough 16 is set Damping base 18 is fixed in meter.
Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention, it is not limited to this Utility model, although the utility model is described in detail with reference to the foregoing embodiments, for those skilled in the art For, it is still possible to modify the technical solutions described in the foregoing embodiments, or to part of technical characteristic It is equivalently replaced, within the spirit and principle of the utility model, any modification, equivalent replacement, improvement and so on, It should be included within the scope of protection of this utility model.

Claims (8)

1. a kind of against shock laser radar pedestal, including laser radar ontology (1) and damping base (18), it is characterised in that: institute State laser radar ontology (1) bottom be equipped with shell fixing seat (2), the damping base (18) include annular outer ring (3) and Annular inner race (4), the annular outer ring (3) are fixedly connected with the bottom of annular inner race (4) by annular slab (5), the annular Annular is equidistant on outer ring (3) is bolted with several screw rods (6), and the screw rod (6) is through annular inner race (4) and annular inner race (4) fixed plate (8) of one end of the spring (7) on the inside of is fixedly connected, and the spring (7) is equipped with far from the one end of fixed plate (8) The gripping block (9) of clamping body fixing seat (2), the inside of the gripping block (9) and the rubber ring being set on the inside of annular inner race (4) (11) outer edge bonding, the trapezoidal rubber block (12) and circle that the inside of the annular inner race (4) is spaced substantially equidistant by annular Shape rubber pad (13) is fixedly connected, and the base circle of the annular slab (5) is equidistant to be bolted with several rubber shock absorber struts (14), institute It states the inside of rubber shock absorber strut (14) and is equipped with positioned at round rubber pad (13) bottom and is plugged with convex block (15), the convex block (15) It is fixed at the inside of circular trough (16), and circular trough (16) is spirally connected with annular outer ring (3).
2. a kind of against shock laser radar pedestal according to claim 1, it is characterised in that: the annular outer ring (3), ring Shape inner ring (4) and annular slab (5) are integrally formed, and between annular outer ring (3) and annular inner race (4) there are with annular slab (5) The equal-sized gap of width.
3. a kind of against shock laser radar pedestal according to claim 1, it is characterised in that: the annular outer ring (3) with Annular inner race (4) is contour.
4. a kind of against shock laser radar pedestal according to claim 1, it is characterised in that: the annular outer ring (3) with Annular inner race (4) and between, be located at annular slab (5) top and be located at screw rod (6) base circle be spaced substantially equidistant be equipped with connect Extension bar (10).
5. a kind of against shock laser radar pedestal according to claim 1, it is characterised in that: the shell fixing seat (2) Set on the inside of rubber ring (11).
6. a kind of against shock laser radar pedestal according to claim 1, it is characterised in that: the round rubber pad (13) Outer diameter be less than the outer diameter of shell fixing seat (2), the internal diameter of the rubber ring (11) is greater than the outer diameter of shell fixing seat (2).
7. a kind of against shock laser radar pedestal according to claim 1, it is characterised in that: the bottom of the circular trough (16) Portion is bonded with non-slip mat.
8. a kind of against shock laser radar pedestal according to claim 1, it is characterised in that: on the annular outer ring (3) Annular array is equipped with adjusts slot (17) with screw rod (6) correspondingly, and the adjusting slot (17) aperture is greater than on screw rod (6) The outer diameter of nut.
CN201821268791.6U 2018-08-08 2018-08-08 Against shock laser radar pedestal Active CN208634685U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821268791.6U CN208634685U (en) 2018-08-08 2018-08-08 Against shock laser radar pedestal

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821268791.6U CN208634685U (en) 2018-08-08 2018-08-08 Against shock laser radar pedestal

Publications (1)

Publication Number Publication Date
CN208634685U true CN208634685U (en) 2019-03-22

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CN201821268791.6U Active CN208634685U (en) 2018-08-08 2018-08-08 Against shock laser radar pedestal

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CN (1) CN208634685U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115388278A (en) * 2022-08-12 2022-11-25 贵州电网有限责任公司 A rotatory stop gear for flexible runing rest of transformer substation

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115388278A (en) * 2022-08-12 2022-11-25 贵州电网有限责任公司 A rotatory stop gear for flexible runing rest of transformer substation
CN115388278B (en) * 2022-08-12 2024-05-14 贵州电网有限责任公司 Rotary limiting mechanism for telescopic rotary support of transformer substation

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