Elevation mechanism for an articulated platform for streets
09951487 ยท 2018-04-24
Inventors
Cpc classification
E01F9/608
FIXED CONSTRUCTIONS
E01F9/529
FIXED CONSTRUCTIONS
International classification
E01F9/00
FIXED CONSTRUCTIONS
Abstract
A selectively activated speed bump is placed on streets to slow down vehicles. The cover has a central part and lateral parts on both sides of the central part. An elevation movement mechanism for the cover is installed in a rectangular pit formed by a box. A shaft has a terminal end joined to pillow blocks inside the box and a plurality of cams, being flexible offset discs, along a length of the shaft. The cams turn to raise the cover to a higher level than the ground and continue to turn in order to return the cover to the same height of the ground. The speed bump slows vehicles on streets and on avenues.
Claims
1. A selectively activated speed bump, comprising: a cover having a raised position and a lowered position and being comprised of a central part and two lateral parts; a metallic rectangular box being mounted underneath said cover, having side walls on longitudinal sides of the box and end walls at opposite ends of the box, and being comprised of a metallic frame inside the box so as to reinforce the box, each lateral part resting on said metallic frame, said metallic frame supporting each lateral part; a plurality of grooves in at least one end wall; a plurality of security plates, each security plate being placed on a respective end wall of the box and having a displaced position when said cover is in said raised position so as to maintain the box sealed; a plurality of safety plates, each safety plate being placed on a respective side wall of the box and being comprised of plastic so as to contact and soften impact on the box; a shaft being comprised of a terminal end supported at one end wall of the box by a pillow block, a center portion being reinforced with a plurality of bearings unit within the box, and an axle end being projected outside of the box; a flexible coupling connected to said axle end so as to join to a second shaft; a control box having a movement mechanism, said second shaft being connected to said control box; a plurality of eccentric cams, each cam having a larger side and a smaller side and being mounted on said central portion of said shaft, wherein the cams are aligned with respective larger sides engaged to said cover in said raised position of said cover; a plurality of load supports between said shaft and a bottom of the box, each load support being comprised of a block with a cross-cut and being placed along said length of said central portion of said shaft within the box; an electric motor being in a rotating connection to said second shaft, said movement mechanism being comprised of said electric motor, wherein said electric motor is rotatably engaged to said shaft so as to rotate the cams, engaging respective larger sides to said cover in said raised position and releasing respective larger sides from said cover in said lowered position; a mass ultrasonic sensor being in communication with said control box, said mass ultrasonic sensor being comprised of a doppler oscillator, wherein microwaves having a distance range of two miles so as to detect objects bigger that 10 cubic feet and being powered by 12 volts DC, are detected by a receiver of said mass ultrasonic sensor when reflected, and wherein signals sent by said mass ultrasonic sensor according to said microwaves are communicated to said control box so as to switch said cover between said raised position and said lowered position; a radar being in communication with said control box, wherein signals sent by said radar are communicated to said control box so as to switch said cover between said raised position and said lowered position; a sound sensor placed at a certain known distance and being in communication with said control box, wherein signals sent by said sound sensor are communicated to said control box so as to switch said cover between said raised position and said lowered position; a light dot matrix panel being in communication with said control box, wherein signals sent by said mass ultrasonic sensor, radar, and sound sensor are communicated to said control box so as to generate a message corresponding to said signals displayed on the dot matrix panel, the dot matrix panel being comprised of at least one of a group consisting of a cluster of light emitting diodes, and monochromatic amber groups of light emitting diodes having a visibility angle of 120 degrees and a vision distance of approximately 500 meters, said message being comprised of less than three text lines; a button station being placed externally from the box and being in communication with said control box, wherein signals sent by said button station are communicated to said control box so as to switch said cover between said raised position and said lowered position, wherein a signal corresponding to a pushed button switches said cover to said raised position for at least 1 to 2 minutes; and a programmable control card being in communication with said control box, wherein signals sent by said programmable control card are communicated to said control box so as to switch said cover between said raised position and said lowered position, wherein a signal corresponding to a vehicle above an allowed limit switches said cover to said raised position, and wherein another signal corresponding to another vehicle lower or equal to said allowed limit switches said cover to said lowered position.
2. The speed bump, according to claim 1, wherein said signal corresponding to a vehicle above an allowed limit and said another signal corresponding to another vehicle lower or equal to said allowed limit are determined by detected audible 34.7 GHz microwaves.
3. The speed bump, according to claim 1, wherein said signal corresponding to a pushed button switches said cover to said raised position and being sent by said button station overrides said signal corresponding to a vehicle above an allowed limit and said another signal corresponding to another vehicle lower or equal to said allowed limit.
4. The speed bump, according to claim 1, wherein said signal corresponding to a pushed button switches said cover to said raised position as a default position, until said another signal corresponding to another vehicle lower or equal to said allowed limit is communicated to said control box.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(18) About the above-mentioned figures, the speed bump comprises a metal rectangular box 10, on the top of which there is a cover having three parts, a central part 30 and two lateral parts 32. The cover in the raised position can form a bump that causes a vehicle to reduce its speed. If speed is not reduced, the lower parts of the vehicle are hit, and this blow can break or damage parts of the vehicle, such as the wheels.
(19) This box 10, from a top view of
(20) On one of the end walls 20 of the box 10, as seen in
(21) The central part 30 and two lateral parts of the cover move between the raised position and the lowered position by eccentric cams 70. Each cam 70 has a larger side 70 and a smaller side 70, as in
(22) Additionally, there are load supports 72 within the box to hold the shaft 60. Each load support 72 is between the shaft 60 and the bottom of the box, as in
(23) An electric motor is connected to the flexible coupling 62 to the shaft 60, forming a rotating connection through the second shaft 120. The electric motor can be the movement mechanism of the control box 120, as in
(24) A mass ultrasonic sensor can be in communication with the control box. The mass ultrasonic sensor can be comprised of a doppler oscillator, which transmits and receives microwaves having a distance range of two miles, such as 34.7 GHz frequency microwaves, to detect objects bigger than 10 cubic feet. The doppler oscillator can be powered or fed by 12 volts DC. Microwaves reflected from vehicles are detected by a receiver of the mass ultrasonic sensor, and the mass ultrasonic sensor sends signals to the control box, according to those microwaves reflected. Those signals switch the cover between the raised position and the lowered position. When the speed bump is installed on a street or avenue with a higher speed limit, the speed bump can include a radar 96, which operates in the same way as the mass ultrasonic sensor. That is, the radar is in communication with the control box. The signals sent by the radar are communicated to the control box to switch the cover between the raised position and the lowered position.
(25) The present invention can also include a light dot matrix panel 92 in communication with the control box, wherein signals sent by the mass ultrasonic sensor, radar, or a sound sensor are communicated to the control box to generate a message corresponding to the signals displayed on the dot matrix panel. For example, the messages resulting from the signals from the radar 92 are displayed on a cluster of light-emitting diodes or groups of monochromatic amber light-emitting diodes with a visibility angle of 120 degrees and a vision distance of approximately 500 meters. In some embodiments, the display has the capacity of showing up to three lines of text.
(26) In the embodiment with the mass ultrasonic sensor, microwaves can be transmitted constantly. If there is no object at the allowed distance of the microwaves, then the microwaves are not reflected to the receiver of the mass ultrasonic sensor. When a vehicle reflects the microwaves back to the receiver, the mass ultra-son sensor will send a signal to the control box to switch the cover to the lowered position so that the vehicle can pass.
(27) In another embodiment, there is a sound sensor 94, as in
(28) The present invention includes a programmable control card in communication with the control box. The signals sent by the programmable control card are communicated to the control box to switch the cover between the raised position and the lowered position. A signal corresponding to a vehicle above an allowed limit switches the cover to the raised position. Another signal corresponding to another vehicle lower or equal to the allowed limit switches the cover to the lowered position. For example, the programmable control card can receive data from two sound sensors for measuring the time that elapses between both sounds detected at the respective sound sensors. Knowing the time and the distance, speed can be calculated. The programmable control card as part of the control box sets the position of the cover.
(29) The same programmable control card can send an activation/deactivation signal that controls the mechanical components of the speed bump, such as operating the electric motor in the control box 120 of
(30) For the pedestrian crossing, there is a button station 98 placed externally as in
Best Way to Implement the Invention
(31) Regarding the way to implement the invention, the box 10 can be placed underground on a street, where reduction of the speed of vehicles, including trucks, is wanted. The speed bump can be installed in any street or avenue, where traffic is heavy, or on those avenues where speed reduction is required for safety, such as a street with hospitals, clinics or schools.
(32) The speed bump has the restriction of not being capable of being activated/deactivated while a vehicle is driving over the speed bump, to avoid situations or accidents that may put the safety of the passenger or possible pedestrians at risk.
(33) All the information collected can be sent to a computer, which stores information on highway administration, such as statistics on peak hours, advances in road safety education, vehicle pollution in the area, and flow of vehicles. The information can be organized by zone or block or street, etc.
(34) Once the vehicle is a few meters away from the speed bump and based on the information received by the sensors, a signal is sent according to whether said vehicle is running within the allowed speed limit for that street and previous street conditions, so that the signal either keeps the cover in the raised position or lowered position or switches from the position. For example, with a button station and a programmable control card, the signal corresponding to a pushed button can switch the cover to the raised position, which overrides the signal corresponding to a vehicle above an allowed limit and another signal corresponding to another vehicle lower or equal to the allowed limit from the programmable control card. Alternatively, the signal corresponding to a pushed button can switch the cover to the raised position as a default position, until another signal corresponding to another vehicle lower or equal to the allowed limit is communicated to the control box by the programmable control card.
(35) Vehicle or truck drivers will initially be able to see LED signs 100 of
(36) This signs 100 are preferably lit and can include information legends such as CAUTION ELEVATING PLATFORM AT X METERS or YOUR AVERAGE SPEED WAS X KM/H.
(37) To allow emergency vehicles, such as police cars, ambulances, fire trucks and other to pass, the sign 92, can also have a sound sensor 94, which sends the signal to the control box to switch the cover the raised position or the lowered position.
(38) In case of placing the speed bump on a highway, where the average speed is high, the sign 92, can include a radar 96.
(39) The light dot matrix panel, where the messages and the result of the communication with the radar appear, is formed by a cluster or groups of amber monochromatic light emitting diodes, having a visibility angle of 120 degrees and a vision distance of approximately 500 meters. The panel can have the capacity to show up to 3 lines of text.