CN205839557U - A kind of road automated detection system - Google Patents
A kind of road automated detection system Download PDFInfo
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- CN205839557U CN205839557U CN201620751835.5U CN201620751835U CN205839557U CN 205839557 U CN205839557 U CN 205839557U CN 201620751835 U CN201620751835 U CN 201620751835U CN 205839557 U CN205839557 U CN 205839557U
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Abstract
nullA kind of road automated detection system,Including base plate、Fracture detection device、First electric machine、First air cylinder device、Rut detection device、Second electric machine、Second air cylinder device and display device,Base plate is provided with first bracer、First roller、High-definition camera and bell glass,Fracture detection device includes the first framework、Supersonic reflectoscope、First retainer ring、First spring、First support,First electric machine includes the first motor、Second support、First rotating shaft、First bracing wire,First air cylinder device includes the first cylinder、3rd support、First catch bar、First montant、First baffle plate、4th support and the first cross bar,Rut detection device includes the second framework、Infrared detector、Second retainer ring、Second spring、5th support,Second electric machine includes the second motor、Second rotating shaft、Second bracing wire and the 6th support.This utility model can effectively the crack of road pavement and rut etc. detect, and find in time to process in time.
Description
Technical field
This utility model relates to lane detection technology field, especially relates to a kind of road automated detection system.
Background technology
Along with the development of modern economy, means of transportation are the most perfect, occur in that various different road conditions environment.Due to public affairs
Road, after using longer period of time, often has the appearance of crack and rut, thus can threaten the safety of running car.
Therefore, it is necessary to provide a kind of new technical scheme to overcome drawbacks described above.
Utility model content
The purpose of this utility model is to provide a kind of road Aulomatizeted Detect system that can effectively solve above-mentioned technical problem
System.
For reaching the purpose of this utility model, adopt the following technical scheme that
A kind of road automated detection system, described road automated detection system includes base plate, is arranged at described base plate
On fracture detection device, be positioned at the first electric machine above described fracture detection device, be positioned at described fracture detection device
Left side the first air cylinder device, be positioned on the right side of described fracture detection device rut detection device, be positioned at described rut detection dress
Put the second electric machine of top, be positioned at the second air cylinder device on the right side of described rut detection device and be positioned at described second motor
Display device above device, described base plate is provided with and is disposed below first bracer of the left and right sides, is positioned at described first
The first roller below bracer, the high-definition camera between described first bracer and be positioned under described high-definition camera
The bell glass of side, described fracture detection device includes the first framework, the supersonic reflectoscope being contained in described first framework, position
The first retainer ring above described first framework, be positioned at the described first retainer ring left and right sides the first spring, be positioned at described
The first support above base plate, described first electric machine includes the first motor, is positioned at the of the described first motor left and right sides
Two supports, the first rotating shaft being arranged on described first motor, the first bracing wire of being arranged in described first rotating shaft, described first
Air cylinder device includes the first cylinder, is positioned at the 3rd support above described first cylinder, is positioned on the right side of described first cylinder
One catch bar, it is positioned at the first montant on the right side of described first catch bar, is positioned at the first baffle plate below described first montant, is positioned at
The 4th support on the left of described first cylinder and be positioned at the first cross bar below described first cylinder, described rut detection device bag
Include the second framework, the infrared detector being contained in described second framework, be positioned at second above described second framework fix
Ring, it is positioned at the second spring of the described second retainer ring left and right sides, is positioned at the 5th support above described second spring, described
Two electric machines include the second motor, the second rotating shaft being arranged on described second motor, are arranged in described second rotating shaft
Second bracing wire and be positioned at the 6th support of the described second motor left and right sides, described second air cylinder device includes the second cylinder, position
The 7th support above described second cylinder, it is positioned at the 8th support on the right side of described second cylinder, is positioned at described second cylinder
Second catch bar in left side, it is positioned at the second montant on the left of described second catch bar, is positioned at second below described second montant
Baffle plate and be positioned at the second cross bar below described second cylinder, described display device includes the 9th support, is positioned at described 9th
The 3rd framework above frame, the processor being contained in described 3rd framework, power supply, memorizer, GPS locating module, it is positioned at institute
State the 3rd cross bar on the right side of the 3rd framework, be positioned at the riser on the right side of described 3rd cross bar and be arranged at the aobvious of the right surface of described riser
Display screen.
Described first bracer is provided with two, and the upper surface of described first bracer is fixing with the lower surface of described base plate even
Connecing, the lower surface of described first bracer is provided with the first groove, and described first roller is provided with two, and described first roller is cylinder
Body, in described first roller is contained in described first groove and turns with described first bracer axle and is connected, and described bell glass is sky
The heart hemispherical, the upper surface of described bell glass is fixing with the lower surface of described base plate to be connected.
Described first framework is hollow cuboid, and described first framework runs through the upper and lower surface of described base plate and slides with it
Dynamic, the lower surface of described first framework is provided with the first dead slot, in described supersonic reflectoscope is contained in described first dead slot and with
The inner surface of described first framework is fixing to be connected, and described first retainer ring is semi-annular shape, the two ends of described first retainer ring with
The upper surface of described first framework is fixing to be connected, and the two ends of described first support are fixing with the upper surface of described base plate to be connected, institute
Stating the first support and be positioned at the top of described first framework, described first support is provided with the first through hole and the position being positioned at its upper surface
In the second groove of its left surface, described first spring is provided with two, and described first spring is vertical shape, described first spring
Upper end is fixing with described first support to be connected, and the lower end of described first spring is fixing with the upper surface of described first framework to be connected.
The lower surface of described first motor is fixing with the upper surface of described first support to be connected, and described second support is provided with two
Individual, described second support is L-shaped, and the upper surface of one end of described second support and described first support is fixing to be connected, and described the
The other end of two supports is fixing with the side of described first motor to be connected, and described first rotating shaft is cylinder, described first rotating shaft
Being connected with described first motor, the upper end of described first bracing wire is fixing with described first rotating shaft to be connected, and described first is drawstring through
Described first through hole, the lower end of described first bracing wire is fixing with described first retainer ring to be connected.
Described first cross bar is cuboid, described first cross bar horizontal positioned, the right-hand member of described first cross bar and the described end
The left surface of plate is fixing to be connected, and the lower surface of described first cylinder is fixed with the upper surface of described first cross bar and is connected, and described the
Three supports are L-shaped, and one end of described 3rd support and the upper surface of described first cylinder are fixing to be connected, described 3rd support another
One end is fixing with the left surface of described first support to be connected, and described first catch bar is cuboid, a left side for described first catch bar
End is connected with described first cylinder, and the right-hand member of described first catch bar is fixing with the left surface of described first montant to be connected, described
First montant is cuboid and vertically places, and described first baffle plate is cuboid, the lower end of described first montant and described first
The upper surface of baffle plate is fixing to be connected, and the lower surface of described first baffle plate is connected with the upper surface slide of described base plate, and described first
Baffle plate passes described second groove, and described 4th support is L-shaped, one end of described 4th support and the upper table of described first cross bar
Face is fixing to be connected, and the other end of described 4th support is fixing with the side of described first cylinder to be connected.
Described second framework is hollow cuboid, and described second framework runs through the upper and lower surface of described base plate and slides with it
Being dynamically connected, the lower surface of described second framework is provided with the second dead slot, and described infrared detector is contained in described second dead slot
And fixing with the inner surface of described second framework be connected, described second retainer ring is semi-annular shape, the two of described second retainer ring
Holding the upper surface with described second framework to fix to be connected, the two ends of described 5th support are fixing with the upper surface of described base plate even
Connecing, described 5th support is positioned at the top of described second framework, described 5th support be provided be positioned at its upper surface second lead to
Hole and be positioned at the 3rd groove on its right surface, described second spring is provided with two, and described second spring is vertical shape, and described second
The lower end of spring is fixing with the upper surface of described second framework to be connected, and the upper end of described second spring is fixed with described 5th support
Connect.
The lower surface of described second motor is fixing with the upper surface of described 5th support to be connected, and described second rotating shaft is cylinder
Body, described second rotating shaft is connected with described second motor, and the upper end of described second bracing wire is fixing with described second rotating shaft to be connected, institute
Stating the lower end of the second bracing wire through described second through hole and fixing with described second retainer ring to be connected, described 6th support is provided with two
Individual, one end of described 6th support is fixing with the upper surface of described 5th support to be connected, the other end of described 6th support and institute
State the fixing connection in side of the second motor.
Described second cross bar is cuboid and horizontal positioned, and the left end of described second cross bar is solid with the right surface of described base plate
Fixed connection, the lower surface of described second cylinder is fixing with the upper surface of described second cross bar to be connected, and described 8th support is L-shaped,
One end of described 8th support and the upper surface of described second cross bar are fixing to be connected, the other end of described 8th support and described the
The right surface of two cylinders is fixing to be connected, and described 7th support is L-shaped, and one end of described 7th support is upper with described second cylinder
Surface is fixing to be connected, and the other end of described 7th support is fixing with the right surface of described 5th support to be connected, and described second promotes
Bar is cuboid and horizontal positioned, and the right-hand member of described second catch bar is connected with described second cylinder, described second catch bar
Left end is fixing with the right surface of described second montant to be connected, and described second montant is cuboid and vertically places, and described second erects
The lower end of bar is fixing with the upper surface of described second baffle to be connected, and described second baffle is cuboid, under described second baffle
Surface is connected with the upper surface slide of described base plate, and described second baffle passes described 3rd groove.
One end of described 9th support is fixing with the upper surface of described first motor to be connected, the other end of described 9th support
Fixing with the upper surface of described second motor and be connected, described 3rd framework is hollow cuboid, the following table of described 3rd framework
The upper surface of face and described 9th support is fixing to be connected, and described processor and described power supply, memorizer, GPS locating module are electrical
Connecting, described power supply is electrically connected with described memorizer, GPS locating module, and described memorizer is electrical with described GPS locating module
Connecting, described high-definition camera is electrically connected with described processor, power supply, memorizer, described supersonic reflectoscope and described place
Reason device, power supply, memorizer are electrically connected with, and described infrared detector is electrically connected with described processor, power supply and memorizer, institute
Stating the 3rd cross bar is cuboid and horizontal positioned, and the left end of described 3rd cross bar is fixing with the right surface of described 3rd framework even
Connecing, the right-hand member of described 3rd cross bar is fixing with the left surface of described riser to be connected, and described riser is cuboid and vertically places, institute
The upper surface of the lower end and described 6th support of stating riser is fixed and is connected, and described display screen is fixing with described riser to be connected, described
Display screen is electrically connected with described processor, power supply and memorizer.
Compared with prior art, this utility model has the advantages that this utility model road Aulomatizeted Detect system
System simple in construction, easy to use, it is possible to the crack of effective road pavement and rut etc. detect, and find in time to process in time,
Reduce the highway threat to ride safety of automobile, extend the service life of highway.
Accompanying drawing explanation
Fig. 1 is the structural representation of this utility model road automated detection system.
Detailed description of the invention
As it is shown in figure 1, this utility model road automated detection system includes base plate 1, is arranged at splitting on described base plate 1
Seam detection device 2, be positioned at the first electric machine 3 above described fracture detection device 2, to be positioned at described fracture detection device 2 left
First air cylinder device 4 of side, it is positioned at the rut detection device 5 on the right side of described fracture detection device 2, is positioned at described rut detection dress
Put the second electric machine 6 above in the of 5, be positioned at the second air cylinder device 7 on the right side of described rut detection device 5 and be positioned at described second
Display device 8 above electric machine 6.
As it is shown in figure 1, described base plate 1 is in cuboid and horizontal positioned, described base plate 1 is provided with and is disposed below left and right two
First bracer 11 of side, be positioned at the first roller 12 below described first bracer 11, be positioned at described first bracer 11 it
Between high-definition camera 14 and be positioned at the bell glass 13 below described high-definition camera 14.Described first bracer 11 is provided with two
Individual, the cross section of described first bracer 11 is isosceles trapezoid, the upper surface of described first bracer 11 and described base plate 1 time
Surface is fixing to be connected, and the lower surface of described first bracer 11 is provided with the first groove 111, and described first groove 111 is in semicolumn
Body shape.Described first roller 12 is provided with two, and described first roller 12 is in cylinder, and described first roller 12 is contained in described
In one groove 111 and turn with described first bracer 11 axle and be connected so that described first roller 12 can be at described first groove
Rotate in 111.Described bell glass 13 in hollow hemispherical, the lower surface of the upper surface of described bell glass 13 and described base plate 1
Fixing connection, described bell glass 13 uses glass material to make.Described high-definition camera 14 is fixing with described base plate 1 to be connected.
As it is shown in figure 1, described fracture detection device 2 include the first framework 21, be contained in described first framework 21 super
Sonic wave detector 22, it is positioned at the first retainer ring 23 above described first framework 21, is positioned at described first retainer ring about 23 two
First spring 24 of side, it is positioned at the first support 25 above described base plate 1.Described first framework 21 in hollow cuboid, institute
The cross section stating the first framework 21 is inverted concave shape, described first framework 21 run through described base plate 1 upper and lower surface and with
It slides so that described first framework 21 can move up and down, and the lower surface of described first framework 21 is provided with the first dead slot 211,
Described first dead slot 211 is in rectangular-shaped.In described supersonic reflectoscope 22 is contained in described first dead slot 211 and with described the
The inner surface of one framework 21 is fixing to be connected, and described supersonic reflectoscope 22 can send ultrasound wave the most earthward, such that it is able to
The crack on detection road surface.Described first retainer ring 23 in semi-annular shape, the two ends of described first retainer ring 23 and described first frame
The upper surface of body 21 is fixing to be connected.Described first support 25 is in inverted concave shape, and the two ends of described first support 25 are with described
The upper surface of base plate 1 is fixing to be connected, and described first support 25 is positioned at the top of described first framework 21, on described first support 25
Being provided with the first through hole 251 being positioned at its upper surface and the second groove 252 being positioned at its left surface, described second groove 252 is in length
Cube shape.Described first spring 24 is provided with two, described first spring 24 in vertical shape, the upper end of described first spring 24 and institute
Stating the first fixing connection of support 25, the lower end of described first spring 24 is fixing with the upper surface of described first framework 21 to be connected, from
And described first framework 21 is played a supporting role.
As it is shown in figure 1, described first electric machine 3 includes the first motor 32, is positioned at described first motor 32 left and right sides
The second support 31, the first rotating shaft 33 being arranged on described first motor 32, be arranged in described first rotating shaft 33 first
Bracing wire 34.Described first motor 32 is electrically connected with the power supply, the lower surface of described first motor 32 and described first support 25
Upper surface is fixing to be connected.Described second support 31 is provided with two, and described second support 31 is L-shaped, the one of described second support 31
Hold the upper surface with described first support 25 to fix to be connected, the other end of described second support 31 and the side of described first motor 43
Face is fixing to be connected.Described first rotating shaft 33 is in cylinder, and described first rotating shaft 33 is connected with described first motor 32 so that described
First motor 32 drives described first rotating shaft 33 to rotate.The upper end of described first bracing wire 34 is fixing even with described first rotating shaft 33
Connecing, described first bracing wire 34 is through described first through hole 251, and the lower end of described first bracing wire 34 is solid with described first retainer ring 23
Fixed connection.
As it is shown in figure 1, described first air cylinder device 4 includes the first cylinder 42, is positioned at above described first cylinder 42
Three supports 41, it is positioned at the first catch bar 43 on the right side of described first cylinder 42, is positioned at first on the right side of described first catch bar 43
Montant 45, it is positioned at the first baffle plate 46 below described first montant 45, is positioned at the 4th support 47 on the left of described first cylinder 42
And it is positioned at the first cross bar 44 below described first cylinder 42.Described first cross bar 44 in cuboid, described first cross bar 44 water
Placing flat, the right-hand member of described first cross bar 44 is fixing with the left surface of described base plate 1 to be connected.The lower surface of described first cylinder 42
Fix with the upper surface of described first cross bar 44 and be connected.Described 3rd support 41 is L-shaped, one end of described 3rd support 41 and institute
Stating the fixing connection of upper surface of the first cylinder 42, the other end of described 3rd support 41 is solid with the left surface of described first support 25
Fixed connection.Described first catch bar 43 is in cuboid, and the left end of described first catch bar 43 is connected with described first cylinder 42, makes
Obtaining described first cylinder 42 drives described first catch bar 43 to move left and right, the right-hand member and described first of described first catch bar 43
The left surface of montant 45 is fixing to be connected.Described first montant 45 in cuboid and is vertically placed.Described first baffle plate 46 is in rectangular
Body, the lower end of described first montant 45 is fixing with the upper surface of described first baffle plate 46 to be connected.The following table of described first baffle plate 46
Face is connected with the upper surface slide of described base plate 1, and described first baffle plate 46 is through described second groove 252 so that described first
Baffle plate 46 can move left and right, and can be contained in described first support 25 through described second groove 252.Described 4th
Frame 47 is L-shaped, and one end of described 4th support 47 is fixing with the upper surface of described first cross bar 44 to be connected, described 4th support 47
The side of the other end and described first cylinder 42 fixing be connected.
As it is shown in figure 1, described rut detection device 5 include the second framework 51, be contained in described second framework 51 red
Outside line detector 52, it is positioned at the second retainer ring 53 above described second framework 51, is positioned at described second retainer ring about 53 two
Second spring 54 of side, it is positioned at the 5th support 55 above described second spring 54.Described second framework 51 is in hollow rectangular
Body, the cross section of described second framework 51 is inverted concave shape, and described second framework 51 runs through the upper and lower surface of described base plate 1
And be slidably connected with it so that described second framework 51 can move up and down, and the lower surface of described second framework 51 is provided with second
Dead slot 511.It is solid that described infrared detector 52 is contained in interior and with described second framework 51 the inner surface of described second dead slot 511
Fixed connection.Described second retainer ring 53 is in semi-annular shape, and the two ends of described second retainer ring 53 are upper with described second framework 51
Surface is fixing to be connected.Described 5th support 55 is in inverted concave shape, and the two ends of described 5th support 55 are upper with described base plate 1
Surface is fixing to be connected, and described 5th support 55 is positioned at the top of described second framework 51, and described 5th support 55 is provided with and is positioned at
Second through hole 551 of its upper surface and be positioned at the 3rd groove 552 on its right surface, described 3rd groove 552 is in rectangular-shaped.Institute
State the second spring 54 and be provided with two, described second spring 54 in vertical shape, the lower end of described second spring 54 and described second frame
The upper surface of body 51 is fixing to be connected, and the upper end of described second spring 54 is fixing with described 5th support 55 to be connected.
As it is shown in figure 1, described second electric machine 6 include the second motor 61, be arranged on described second motor 61
Two rotating shafts 62, the second bracing wire 63 being arranged in described second rotating shaft 62 and be positioned at the 6th of described second motor 61 left and right sides
Support 64.Described second motor 61 is electrically connected with the power supply, the lower surface of described second motor 61 and described 5th support 55
Upper surface is fixing to be connected.Described second rotating shaft 62 is in cylinder, and described second rotating shaft 62 is connected with described second motor 61 so that
Described second motor 61 drives described second rotating shaft 62 to rotate.The upper end of described second bracing wire 63 is fixed with described second rotating shaft 62
Connecting, the lower end of described second bracing wire 63 is through described second through hole 551 and fixing with described second retainer ring 53 is connected.Described
6th support 64 is provided with two, and one end of described 6th support 64 is fixing with the upper surface of described 5th support 55 to be connected, described
The other end of the 6th support 64 is fixing with the side of described second motor 61 to be connected.
As it is shown in figure 1, described second air cylinder device 7 includes the second cylinder 72, is positioned at above described second cylinder 72
Seven supports 71, be positioned at the 8th support 73 on the right side of described second cylinder 72, be positioned on the left of described second cylinder 72 second promotion
Bar 74, it is positioned at the second montant 75 on the left of described second catch bar 74, is positioned at the second baffle 76 below described second montant 75
And it is positioned at the second cross bar 77 below described second cylinder 72.Described second cross bar 77 in cuboid and horizontal positioned, described
The left end of two cross bars 77 is fixing with the right surface of described base plate 1 to be connected.The lower surface of described second cylinder 72 is horizontal with described second
The upper surface of bar 77 is fixing to be connected.Described 8th support 73 is L-shaped, one end of described 8th support 73 and described second cross bar 77
Upper surface fixing connect, the other end of described 8th support 73 is fixed with the right surface of described second cylinder 72 and is connected.Described
7th support 71 is L-shaped, and one end of described 7th support 71 is fixing with the upper surface of described second cylinder 72 to be connected, and the described 7th
The other end of support 71 is fixing with the right surface of described 5th support 55 to be connected.Described second catch bar 74 is in cuboid and level
Placing, the right-hand member of described second catch bar 74 is connected with described second cylinder 72 so that described second cylinder 72 drives described the
Two catch bars 74 move left and right, and the left end of described second catch bar 74 is fixing with the right surface of described second montant 75 to be connected.Institute
Stating the second montant 75 in cuboid and vertically to place, the lower end of described second montant 75 is solid with the upper surface of described second baffle 76
Fixed connection.Described second baffle 76 is in cuboid, and the lower surface of described second baffle 76 connects with the upper surface slide of described base plate 1
Connecing, described second baffle 76 is through described 3rd groove 552 so that described second baffle 76 can pass described 3rd groove
552 are contained in described 5th support 55.
As it is shown in figure 1, described display device 8 includes the 9th support 81, is positioned at the 3rd frame above described 9th support 81
Body 82, the processor 83 being contained in described 3rd framework 82, power supply 84, memorizer 85, GPS locating module 86, be positioned at described
The 3rd cross bar 87 on the right side of 3rd framework 82, it is positioned at the riser 88 on the right side of described 3rd cross bar 87 and to be arranged at described riser 88 right
The display screen 89 on surface.Described 9th support 81 is in inverted concave shape, and one end of described 9th support 81 is electric with described first
The upper surface of machine 32 is fixing to be connected, and the other end of described 9th support 81 is fixing with the upper surface of described second motor 61 to be connected.
Described 3rd framework 82 is in hollow cuboid, and the cross section of described 3rd framework 82 is inverted concave shape, described 3rd frame
The lower surface of body 82 is fixing with the upper surface of described 9th support 81 to be connected.Described processor 83 and described power supply 84, memorizer
85, GPS locating module 86 is electrically connected with, and described power supply 84 is electrically connected with described memorizer 85, GPS locating module 86, described
Memorizer 85 is electrically connected with described GPS locating module 86, described high-definition camera 14 and described processor 83, power supply 84, deposits
Reservoir 85 is electrically connected with, and described supersonic reflectoscope 22 is electrically connected with described processor 83, power supply 84, memorizer 85, described
Infrared detector 52 is electrically connected with described processor 83, power supply 84 and memorizer 85.Described 3rd cross bar 87 is in cuboid
And horizontal positioned, the left end of described 3rd cross bar 87 is fixing with the right surface of described 3rd framework 82 to be connected, described 3rd cross bar
The right-hand member of 87 is fixing with the left surface of described riser 88 to be connected.Described riser 88 in cuboid and is vertically placed, described riser 88
The upper surface of lower end and described 6th support 64 fixing be connected.Described display screen 89 is fixing with described riser 88 to be connected, described
Display screen 89 is electrically connected with described processor 83, power supply 84 and memorizer 85.
During as it is shown in figure 1, described this utility model road automated detection system uses, institute can be held first by person
State the 7th support 71 and the 3rd support 41 promotes this utility model so that this utility model moves on the road needing detection.
Then, when needing the crack detecting road, the second motor 61 is started so that described second rotating shaft 62 rotates counterclockwise so that institute
State the second bracing wire 63 to be tightened up, and then described second retainer ring 53 and the second framework 51 are moved up, until described second
Framework 51 moves to the top of described base plate 1, then starts the second cylinder 72 so that described second catch bar 74 is moved to the left,
And then by described second montant 75, described second baffle 76 is moved to the left, until described second baffle 76 moves to described
The lower section of the second framework 51 so that the infrared signal that described infrared detector 52 sends cannot pass described second baffle
76, thus the rut situation of road cannot be detected.The most described supersonic reflectoscope 22 can send ultrasonic signal, and shines
It is mapped on ground, such that it is able to obtain the crack situation of road, sends data in memorizer 85 simultaneously, be simultaneously transmit to place
Reason device 83, is shown by display screen 89 after processor 83 processes.When needing the rut situation detecting road surface, start the
One motor 32 so that described first rotating shaft 33 rotates counterclockwise, and then make described first retainer ring 23 by the first bracing wire 34
Move up so that described first framework 21 moves up, until described first framework 21 moves to the top of described base plate 1,
Then start the first cylinder 42 so that described first catch bar 43 moves right, make described by described starting stave 45
One baffle plate 46 moves right so that described first baffle plate 46 is contained in described first support 25 through described second groove 252,
Make described first baffle plate 46 be positioned at the lower section of described first framework 21, thus cannot make the described supersonic reflectoscope 22 cannot
The crack situation on detection road surface, obtains the rut data on road surface now by infrared detector 52 and transmits to memorizer
85, transmit to display screen 89 after processor 83 processes, display screen 89 show.Need to detect the crack on road surface at once
By when needing the rut situation detecting road surface, now it is started without the first motor 32 and the second motor 61 so that described ultrasound wave
Detector 22 and infrared detector 52 road pavement detect, and send data in memorizer 85, through processor
Being shown by display screen 89 after 83 process, thus facilitate user to observe, high-definition camera 14 road pavement shoots simultaneously,
And by the video data transmission of shooting to memorizer 85, transmit after the process of processor 83 to display screen 89, by showing
Display screen 89 shows.So far, this utility model road automated detection system uses process prescription complete.
The above, detailed description of the invention the most of the present utility model, but protection domain of the present utility model does not limit to
In this, any those skilled in the art, in the technical scope that the invention discloses, can readily occur in change or replace,
Should contain within protection domain of the present utility model.Therefore, protection domain of the present utility model should be with described claim
Protection domain is as the criterion.
Claims (9)
1. a road automated detection system, it is characterised in that: described road automated detection system includes base plate, is arranged at
Fracture detection device on described base plate, it is positioned at the first electric machine above described fracture detection device, is positioned at described crack
Detection device on the left of the first air cylinder device, be positioned on the right side of described fracture detection device rut detection device, be positioned at described car
Rut detects the second electric machine above device, is positioned at the second air cylinder device on the right side of described rut detection device and is positioned at described
Display device above second electric machine, described base plate is provided with and is disposed below first bracer of the left and right sides, is positioned at
The first roller below described first bracer, the high-definition camera between described first bracer and be positioned at described high definition
Bell glass below photographic head, described fracture detection device includes the first framework, the ultrasound wave being contained in described first framework
Detector, be positioned at the first retainer ring above described first framework, be positioned at the described first retainer ring left and right sides the first spring,
Being positioned at the first support above described base plate, described first electric machine includes the first motor, is positioned at about described first motor
Second support of both sides, the first rotating shaft being arranged on described first motor, the first bracing wire of being arranged in described first rotating shaft,
Described first air cylinder device includes the first cylinder, is positioned at the 3rd support above described first cylinder, is positioned at described first cylinder
First catch bar on right side, it is positioned at the first montant on the right side of described first catch bar, is positioned at first below described first montant
Baffle plate, it is positioned at the 4th support on the left of described first cylinder and is positioned at the first cross bar below described first cylinder, described rut
Detection device includes the second framework, the infrared detector being contained in described second framework, is positioned at above described second framework
The second retainer ring, be positioned at the second spring of the described second retainer ring left and right sides, be positioned at the 5th above described second spring
Support, described second electric machine includes the second motor, the second rotating shaft being arranged on described second motor, is arranged at described
The second bracing wire in two rotating shafts and be positioned at the 6th support of the described second motor left and right sides, described second air cylinder device includes
Two cylinders, be positioned at the 7th support above described second cylinder, be positioned at the 8th support on the right side of described second cylinder, be positioned at described
The second catch bar on the left of second cylinder, it is positioned at the second montant on the left of described second catch bar, is positioned under described second montant
Side second baffle and be positioned at the second cross bar below described second cylinder, described display device includes the 9th support, is positioned at institute
State the 3rd framework above the 9th support, the processor being contained in described 3rd framework, power supply, memorizer, GPS position mould
Block, it is positioned at the 3rd cross bar on the right side of described 3rd framework, is positioned at the riser on the right side of described 3rd cross bar and is arranged at described riser
The display screen on right surface.
2. road automated detection system as claimed in claim 1, it is characterised in that: described first bracer is provided with two,
The upper surface of described first bracer and the lower surface of described base plate are fixing to be connected, and the lower surface of described first bracer is provided with the
One groove, described first roller is provided with two, and described first roller is cylinder, and described first roller is contained in described first recessed
In groove and turning with described first bracer axle and be connected, described bell glass is hollow hemispherical, the upper surface of described bell glass with
The lower surface of described base plate is fixing to be connected.
3. road automated detection system as claimed in claim 2, it is characterised in that: described first framework is hollow rectangular
Body, described first framework runs through the upper and lower surface of described base plate and slides with it, and the lower surface of described first framework is provided with first
Dead slot, fixes in described supersonic reflectoscope is contained in described first dead slot and with the inner surface of described first framework and is connected, institute
Stating the first retainer ring is semi-annular shape, and the two ends of described first retainer ring are fixing with the upper surface of described first framework to be connected, institute
The upper surface at the two ends and described base plate of stating the first support is fixed and is connected, and described first support is positioned at the upper of described first framework
Side, described first support is provided with the first through hole being positioned at its upper surface and the second groove being positioned at its left surface, and described first
Spring is provided with two, and described first spring is vertical shape, and the upper end of described first spring is fixing with described first support to be connected, institute
The upper surface of the lower end and described first framework of stating the first spring is fixed and is connected.
4. road automated detection system as claimed in claim 3, it is characterised in that: the lower surface of described first motor and institute
Stating the fixing connection of upper surface of the first support, described second support is provided with two, and described second support is L-shaped, described second
One end of frame is fixing with the upper surface of described first support to be connected, the other end of described second support and the side of described first motor
Face is fixing to be connected, and described first rotating shaft is cylinder, and described first rotating shaft is connected with described first motor, described first bracing wire
Upper end and described first rotating shaft are fixing to be connected, and described first is drawstring through described first through hole, the lower end of described first bracing wire and
Described first retainer ring is fixing to be connected.
5. road automated detection system as claimed in claim 4, it is characterised in that: described first cross bar is cuboid, institute
Stating the first cross bar horizontal positioned, the right-hand member of described first cross bar is fixing with the left surface of described base plate to be connected, described first cylinder
The upper surface of lower surface and described first cross bar fixing is connected, described 3rd support is L-shaped, one end of described 3rd support and
The upper surface of described first cylinder is fixing to be connected, and the other end of described 3rd support is fixing with the left surface of described first support even
Connecing, described first catch bar is cuboid, and the left end of described first catch bar is connected with described first cylinder, and described first promotes
The left surface of the right-hand member of bar and described first montant is fixing to be connected, and described first montant is cuboid and vertically places, and described the
One baffle plate is cuboid, and the lower end of described first montant is fixing with the upper surface of described first baffle plate to be connected, described first baffle plate
Lower surface be connected with the upper surface slide of described base plate, described first baffle plate pass described second groove, described 4th support
L-shaped, one end of described 4th support and the upper surface of described first cross bar are fixing to be connected, the other end of described 4th support and
The side of described first cylinder is fixing to be connected.
6. road automated detection system as claimed in claim 5, it is characterised in that: described second framework is hollow rectangular
Body, described second framework runs through the upper and lower surface of described base plate and is slidably connected with it, and the lower surface of described second framework is provided with
Second dead slot, it is fixing even that described infrared detector is contained in interior and with described second framework the inner surface of described second dead slot
Connecing, described second retainer ring is semi-annular shape, and the two ends of described second retainer ring are fixing with the upper surface of described second framework to be connected
Connecing, the two ends of described 5th support are fixing with the upper surface of described base plate to be connected, and described 5th support is positioned at described second framework
Top, described 5th support is provided with the second through hole being positioned at its upper surface and the 3rd groove being positioned at its right surface, described
Second spring is provided with two, and described second spring is vertical shape, the lower end of described second spring and the upper table of described second framework
Face is fixing to be connected, and the upper end of described second spring is fixing with described 5th support to be connected.
7. road automated detection system as claimed in claim 6, it is characterised in that: the lower surface of described second motor and institute
Stating the fixing connection of upper surface of the 5th support, described second rotating shaft is cylinder, and described second rotating shaft is with described second motor even
Connecing, the upper end of described second bracing wire is fixing with described second rotating shaft to be connected, and the lower end of described second bracing wire leads to through described second
Hole and fixing with described second retainer ring is connected, described 6th support is provided with two, one end of described 6th support and described the
The upper surface of five supports is fixing to be connected, and the other end of described 6th support is fixing with the side of described second motor to be connected.
8. road automated detection system as claimed in claim 7, it is characterised in that: described second cross bar is cuboid and water
Placing flat, the left end of described second cross bar is fixing with the right surface of described base plate to be connected, the lower surface of described second cylinder and institute
Stating the fixing connection of upper surface of the second cross bar, described 8th support is L-shaped, one end of described 8th support and described second cross bar
Upper surface fixing connect, the other end of described 8th support is fixed with the right surface of described second cylinder and is connected, the described 7th
Support is L-shaped, and one end of described 7th support and the upper surface of described second cylinder are fixing to be connected, another of described 7th support
Holding the right surface with described 5th support to fix to be connected, described second catch bar is cuboid and horizontal positioned, and described second pushes away
The right-hand member of lever is connected with described second cylinder, and the left end of described second catch bar is fixing with the right surface of described second montant to be connected
Connecing, described second montant is cuboid and vertically places, and the lower end of described second montant is solid with the upper surface of described second baffle
Fixed connection, described second baffle is cuboid, and the lower surface of described second baffle is connected with the upper surface slide of described base plate, institute
State second baffle through described 3rd groove.
9. road automated detection system as claimed in claim 8, it is characterised in that: one end of described 9th support is with described
The upper surface of the first motor is fixing to be connected, and the other end of described 9th support is fixing with the upper surface of described second motor to be connected,
Described 3rd framework is hollow cuboid, and the lower surface of described 3rd framework is fixing with the upper surface of described 9th support even
Connecing, described processor and described power supply, memorizer, GPS locating module are electrically connected with, and described power supply and described memorizer, GPS are fixed
Position module is electrically connected with, and described memorizer is electrically connected with described GPS locating module, described high-definition camera and described process
Device, power supply, memorizer are electrically connected with, and described supersonic reflectoscope is electrically connected with described processor, power supply, memorizer, described
Infrared detector is electrically connected with described processor, power supply and memorizer, and described 3rd cross bar is cuboid and horizontal positioned,
The left end of described 3rd cross bar is fixing with the right surface of described 3rd framework to be connected, the right-hand member of described 3rd cross bar and described riser
Left surface fixing connect, described riser is cuboid and vertically places, and the lower end of described riser is upper with described 6th support
Surface is fixing to be connected, and described display screen is fixing with described riser to be connected, described display screen and described processor, power supply and memorizer
It is electrically connected with.
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN109459264A (en) * | 2018-12-12 | 2019-03-12 | 郭桂林 | A kind of experimental detection device for road compaction degree |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN109459264A (en) * | 2018-12-12 | 2019-03-12 | 郭桂林 | A kind of experimental detection device for road compaction degree |
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