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A VEHICLE SYSTEM FOR AUTOMATIC REPAIRING OF ROAD POTHOLES
The vehicle system of this invention for automatic repairing of road potholes is characterized by a vehicle that transports asphalt concrete to the pothole, a laser camera attached to the vehicle that measures distance from the vehicle to the pothole, takes image of the pothole, calculates surface area based on the image and distance information and sends pothole surface area and image information to a device on the vehicle, a first support shaft installed on a multi main shaft of the vehicle that moves back and forth, a multi operation device that can cut and crush asphalt and flatten asphalt concrete by vertically moving with the operation of a first rotation motor connected to the first support shaft, a heating device connected to front bottom side of the vehicle body for heating and melting of asphalt that moves vertically or back and forth using vertical operating cylinder and forward-reverse operating cylinder, an asphalt vacuum suction device that sucks in asphalt finely crushed by vacuum pump inside the vehicle and stores fragments in a residue storage tank, an asphalt concrete storage tank installed on the vehicle to store asphalt concrete and supply asphalt concrete around the road pothole using an asphalt concrete supply pump, a residue storage tank that collects and stores crushed asphalt sucked in by the asphalt vacuum suction device, an oil supply nozzle used to operate the oil supply tank and supply oil stored in an oil tank to around the pothole, an air supply pump that supplies strong air through an air supply nozzle for cleaning, and a vehicle device installed on driver's seat of the vehicle that operates a power switch connected to the heating device for power supply, controls laser camera operation, displays image information received from the laser camera on the display part, stores image information on DB, stores surface area of the pothole received from the laser camera on surface area DB, operates the cutting device motor to cut asphalt into size equivalent to surface area of the pothole based on image information, operates the crushing device motor to crush asphalt, operates the asphalt vacuum suction device to suck in crushed asphalt and store in the residue storage tank, operates the air supply pump to supply air through the air nozzle and clean the pothole, controls the asphalt concrete volume calculation part to calculate the amount of asphalt concrete required based on surface area of the pothole received from the laser camera, operates the asphalt concrete supply pump to supply asphalt concrete into the pothole, stores the amount of asphalt concrete on asphalt concrete DB, and controls operation of the roller part.
Un système de véhicule pour réparer de manière automatisée des nids-de-poule sur la chaussée est caractérisé selon la présente invention par le fait qu'il comprend : un véhicule qui charge du béton bitumineux et qui se déplace jusqu'à un nid-de-poule, une unité caméra laser montée sur le véhicule; un premier arbre-support monté sur un arbre principal à parties mulitples fixé au véhicule; un dispositif multifonction capable de se déplacer vers l'avant/vers l'arrière dans la direction montante/descendante haut/vers le bas par actionnement d'un moteur d'entraînement d'une première unité de rotation/d'entraînement fixée au premier arbre-support; un dispositif de chauffage fixé à la carrosserie du véhicule; un dispositif d'aspiration d'asphalte sous vide; un réservoir de stockage de béton bitumineux; un réservoir de stockage de résidu; une buse d'alimentation en huile; une pompe d'alimentation en air; et un terminal de véhicule installé sur un siège conducteur à l'intérieur du véhicule.
A VEHICLE SYSTEM FOR AUTOMATIC REPAIRING OF ROAD POTHOLES
The vehicle system of this invention for automatic repairing of road potholes is characterized by a vehicle that transports asphalt concrete to the pothole, a laser camera attached to the vehicle that measures distance from the vehicle to the pothole, takes image of the pothole, calculates surface area based on the image and distance information and sends pothole surface area and image information to a device on the vehicle, a first support shaft installed on a multi main shaft of the vehicle that moves back and forth, a multi operation device that can cut and crush asphalt and flatten asphalt concrete by vertically moving with the operation of a first rotation motor connected to the first support shaft, a heating device connected to front bottom side of the vehicle body for heating and melting of asphalt that moves vertically or back and forth using vertical operating cylinder and forward-reverse operating cylinder, an asphalt vacuum suction device that sucks in asphalt finely crushed by vacuum pump inside the vehicle and stores fragments in a residue storage tank, an asphalt concrete storage tank installed on the vehicle to store asphalt concrete and supply asphalt concrete around the road pothole using an asphalt concrete supply pump, a residue storage tank that collects and stores crushed asphalt sucked in by the asphalt vacuum suction device, an oil supply nozzle used to operate the oil supply tank and supply oil stored in an oil tank to around the pothole, an air supply pump that supplies strong air through an air supply nozzle for cleaning, and a vehicle device installed on driver's seat of the vehicle that operates a power switch connected to the heating device for power supply, controls laser camera operation, displays image information received from the laser camera on the display part, stores image information on DB, stores surface area of the pothole received from the laser camera on surface area DB, operates the cutting device motor to cut asphalt into size equivalent to surface area of the pothole based on image information, operates the crushing device motor to crush asphalt, operates the asphalt vacuum suction device to suck in crushed asphalt and store in the residue storage tank, operates the air supply pump to supply air through the air nozzle and clean the pothole, controls the asphalt concrete volume calculation part to calculate the amount of asphalt concrete required based on surface area of the pothole received from the laser camera, operates the asphalt concrete supply pump to supply asphalt concrete into the pothole, stores the amount of asphalt concrete on asphalt concrete DB, and controls operation of the roller part.
Un système de véhicule pour réparer de manière automatisée des nids-de-poule sur la chaussée est caractérisé selon la présente invention par le fait qu'il comprend : un véhicule qui charge du béton bitumineux et qui se déplace jusqu'à un nid-de-poule, une unité caméra laser montée sur le véhicule; un premier arbre-support monté sur un arbre principal à parties mulitples fixé au véhicule; un dispositif multifonction capable de se déplacer vers l'avant/vers l'arrière dans la direction montante/descendante haut/vers le bas par actionnement d'un moteur d'entraînement d'une première unité de rotation/d'entraînement fixée au premier arbre-support; un dispositif de chauffage fixé à la carrosserie du véhicule; un dispositif d'aspiration d'asphalte sous vide; un réservoir de stockage de béton bitumineux; un réservoir de stockage de résidu; une buse d'alimentation en huile; une pompe d'alimentation en air; et un terminal de véhicule installé sur un siège conducteur à l'intérieur du véhicule.
A VEHICLE SYSTEM FOR AUTOMATIC REPAIRING OF ROAD POTHOLES
SYSTEME DE VEHICULE POUR REPARATION AUTOMATISEE DE NIDS-DE-POULE SUR LA CHAUSSEE
YUN KYUNG WON (Autor:in) / PARK IN SONG (Autor:in)
30.07.2019
Patent
Elektronische Ressource
Englisch
IPC:
E01C
Bau von Straßen, Sportplätzen oder dgl., Decken dafür
,
CONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE
Vehicle system for automatic repairing of road potholes
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