Abstract:
A system and method for the application of friction-modifying coatings to roadways, walkways, pathways and other areas subject to vehicular, human or animal traffic, the system and method comprising the controlled, simultaneous application of binder and filler to a surface of a substrate, using a mobile device which passes over the substrate as the binder and filler are being applied. The system includes a frame coupled to a vehicle. A spray bar is mounted on the frame and includes an array of spray nozzles coupled to a resin container. An air knife is mounted on the frame and coupled to an air compressor for generating an air curtain. An aggregate dispenser bar including at least one aggregate dispenser is coupled to an aggregate bin and mounted on the frame for dispensing aggregate.
Abstract:
An upper treatment solution nozzle discharges a treatment solution at a treatment position above a substrate. A reference image and a test image are cut out from an image captured after the upper treatment solution nozzle receives an instruction to start discharging the treatment solution. The test image is an image including an area of a surface of a substrate, in which a liquid flow of the treatment solution from the upper treatment solution nozzle is to be formed. The reference image is an image of an area of the surface of the substrate except for the area in which the liquid flow of the treatment solution from the upper treatment solution nozzle is to be formed. Through the comparison between the reference image and the test image, a discharge of the treatment solution from the upper treatment solution nozzle is determined.
Abstract:
A method, a device and a computer program for manufacturing a pre-insulated skeleton framing segment for a building to be constructed, wherein an assembly with a hollow space is provided, to which a data carrier is fitted including data from which a quantity of raw materials required for forming a foam insulation layer of a thickness in the hollow space can be determined, which quantity is calculated, and which raw materials are inserted in the hollow space, and foam and harden there during a period.
Abstract:
An apparatus includes a housing, a gantry system supported by the housing, a movement mechanism coupled to the gantry system, and a dispensing unit coupled to the movement mechanism and configured to deposit material. The dispensing unit assumes an increasing angle of tilt by manipulating the movement mechanism. Embodiments of the movement mechanism are further disclosed.
Abstract:
A sprinkler adjustment member includes a plurality of nozzle tubes aligned in a sprinkler base. An adjustment piece is assembled with the sprinkler base. The adjustment piece controls and guide the plurality of nozzle tubes correspondingly and the adjustment piece swings so as to drive the plurality of nozzle tubes moving at an angle and different water distribution patterns are provided. The sprinkler base is pivotally disposed on a receiving member and for adjustment angle with a pendulum movement. A place base is connected with the receiving member and the receiving member is capable of pivoting on the place base, such that the sprinkler moves and tilts at multi-angles and multi-directions for providing various sprinkling patterns.
Abstract:
A system and method for the application of friction-modifying coatings to roadways, walkways, pathways and other areas subject to vehicular, human or animal traffic, the system and method comprising the controlled, simultaneous application of binder and filler to a surface of a substrate, using a mobile device which passes over the substrate as the binder and filler are being applied. The system includes a frame coupled to a vehicle. A spray bar is mounted on the frame and includes an array of spray nozzles coupled to a resin container. An air knife is mounted on the frame and coupled to an air compressor for generating an air curtain. An aggregate dispenser bar including at least one aggregate dispenser is coupled to an aggregate bin and mounted on the frame for dispensing aggregate.
Abstract:
A method of covering a surface of a building, the method comprising spraying an expandable foam material onto the surface and allowing the foam material to solidify whereby to form a covering of the surface and a robotic vehicle configured to carry out the method.
Abstract:
A method, a device and a computer program for manufacturing a pre-insulated skeleton framing segment (1) for a building to be constructed, wherein an assembly (2) with a hollow space (14) is provided, to which a data carrier (40) is fitted including data from which a quantity of raw materials required for forming a foam insulation layer of a thickness (15) in the hollow space (14) can be determined, which quantity is calculated, and which raw materials are inserted in the hollow space (14), and foam and harden there during a period (T).
Abstract:
A system and method for applying a fluid to a surface. The method includes the steps of: providing a deposition system; discharging fluid from the deposition system at a first, non-zero rate; detecting movement of the deposition system in proximity to a surface; and discharging fluid at a second rate while the deposition system is moving in proximity to the surface. The system comprises: a MEMS element coupled to a fluid reservoir and adapted to dispense fluid at a plurality of non-zero rates; at least one sensor; and a controller in communication with the MEMS element and at least one sensor and adapted to receive an output from the sensor and to alter the deposition rate of the MEMS element according to the sensor output.
Abstract:
A fluid spraying nozzle may include a flexible spray tube, and a guide which is disposed so as to surround the outside of said spray tube in the diametral direction. The ring-shaped tube side magnet may be provided on the spray tube. A ring-shaped guide side magnet may be provided on the guide. A polarity of an outer peripheral side of the tube side magnet and a polarity of an inner peripheral side of the guide side magnet may have the same polarity.