Patent classifications
E01C19/17
METHODS AND APPARATUS FOR MOBILE ADDITIVE MANUFACTURING
The present disclosure provides various advancements for mobile and automated processing utilizing additive manufacturing. The present disclosure includes methods for the utilization of mobile and automated processing apparatus and may include examples of sealcoating operations. In some examples, omnidirectional drive systems such as Mecanum wheels may create novel operational aspects. Artificial intelligence techniques may enhance operations and may be used to create model for the processing apparatus.
Methods and apparatus for mobile additive manufacturing
The present disclosure provides various advancements for mobile and automated processing utilizing additive manufacturing. The present disclosure includes methods for the utilization of mobile and automated processing apparatus and may include examples of sealcoating operations. In some examples, omnidirectional drive systems such as Mecanum wheels may create novel operational aspects. Artificial intelligence techniques may enhance operations and may be used to create model for the processing apparatus.
Methods and apparatus for mobile additive manufacturing
The present disclosure provides various advancements for mobile and automated processing utilizing additive manufacturing. The present disclosure includes methods for the utilization of mobile and automated processing apparatus and may include examples of sealcoating operations. In some examples, omnidirectional drive systems such as Mecanum wheels may create novel operational aspects. Artificial intelligence techniques may enhance operations and may be used to create model for the processing apparatus.
Automatic water spray milling for cold planer
A spray system for a cold planer machine includes a spray bank disposed inside a housing and arranged to spray fluid directed at a drum and a spray controller. The spray controller is configured to receive an indication of either one of a milling operation and a plunge cut operation is occurring and actuate fluid spray via the spray bank based at least in part on the received indication.
SPRAYING DEVICE FOR A CONSTRUCTION MACHINE FOR PROCESSING THE GROUND, A CONSTRUCTION MACHINE WITH A SPRAYING DEVICE AND A METHOD FOR OPERATING A SPRAYING DEVICE
A spraying device for introducing a fluid into the working chamber of a construction machine for processing the ground or road surfaces, comprises two fluid delivery apparatuses, a line system and a control unit. The present invention further relates to a construction machine, especially a recycler, a stabilizer or a cold milling machine, comprising such a spraying device and a method for operating such a spraying device.
SPRAYING DEVICE FOR A CONSTRUCTION MACHINE FOR PROCESSING THE GROUND, A CONSTRUCTION MACHINE WITH A SPRAYING DEVICE AND A METHOD FOR OPERATING A SPRAYING DEVICE
A spraying device for introducing a fluid into the working chamber of a construction machine for processing the ground or road surfaces, comprises two fluid delivery apparatuses, a line system and a control unit. The present invention further relates to a construction machine, especially a recycler, a stabilizer or a cold milling machine, comprising such a spraying device and a method for operating such a spraying device.
METHODS AND APPARATUS FOR MOBILE ADDITIVE MANUFACTURING
The present disclosure provides various advancements for mobile and automated processing utilizing additive manufacturing. The present disclosure includes methods for the utilization of mobile and automated processing apparatus and may include examples of sealcoating operations. In some examples, omnidirectional drive systems such as Mecanum wheels may create novel operational aspects. Artificial intelligence techniques may enhance operations and may be used to create model for the processing apparatus.
METHODS AND APPARATUS FOR MOBILE ADDITIVE MANUFACTURING
The present disclosure provides various advancements for mobile and automated processing utilizing additive manufacturing. The present disclosure includes methods for the utilization of mobile and automated processing apparatus and may include examples of sealcoating operations. In some examples, omnidirectional drive systems such as Mecanum wheels may create novel operational aspects. Artificial intelligence techniques may enhance operations and may be used to create model for the processing apparatus.
CLEANING SYSTEM AND METHOD FOR A SPRAYING SYSTEM
A spraying system for a road construction machine includes an emulsion fluid delivery system including an emulsion fluid supply, an emulsion pump, at least one spray bar with one or more nozzles, and flow conduits arranged to convey emulsion through the emulsion fluid delivery system. The spraying system may include a cleaning fluid tank containing a cleaning fluid, where the cleaning fluid tank is fluidly coupled to the emulsion fluid delivery system during a cleaning process. The spraying system may also include a flow monitoring system configured to monitor the amount of cleaning fluid delivered from the cleaning fluid tank to the emulsion fluid delivery system, where the flow monitoring system is configured to provide an indication regarding the amount of cleaning fluid delivered to the emulsion fluid delivery system during the cleaning process.
CALIBRATION SYSTEM AND METHOD FOR A SPRAYING MACHINE
A paving system may include a paving machine, including a paving material delivery assembly, including a hopper, a conveyor assembly, an auger, and a screed. The paving machine may also include an emulsion fluid delivery assembly including a plurality of spray bars, wherein each spray bar includes one or more nozzles. The paving system may also include a controller and a display interface. The controller may be configured to receive inputs from the display interface indicative of a mass and an area of emulsion fluid delivered from one active nozzle in order to calibrate the emulsion fluid delivery assembly.