Abstract:
A method for optimising the amount of slurry that is spread on a soil to be fertilised by means of a vehicle comprising a slurry spreader device fed by a tank through at least one conduit, wherein the concentration of at least one slurry ingredient in the conduit is acquired, a pressure difference between two points in the feed conduit upstream and downstream of a valve and the speed of the vehicle are measured, an effective volumetric flow rate of the slurry is calculated as a function of the measured pressure difference and a target volumetric flow rate of the slurry is calculated as a function of a target spreading factor and concentration of the ingredient, the measured speed and a spreading width of the slurry spreader device, and the valve is adjusted as a function of the difference between the effective volumetric flow rate and the target volumetric flow rate.
Abstract:
Embodiments described herein generally related to a substrate processing apparatus, and more specifically to an improved showerhead assembly for a substrate processing apparatus. The showerhead assembly includes a gas distribution plate and one or more temperature detection assemblies. The gas distribution plate includes a body having a top surface and a bottom surface. The one or more temperature detection assemblies are interfaced with the top surface of the gas distribution plate such that a thermal bond is formed between the gas distribution plate and each of the one or more temperature detection assemblies. Each temperature detection assembly includes a protruded feature and a temperature probe. The protruded feature is interfaced with the top surface of the gas distribution plate such that an axial load is placed on the gas distribution plate along an axis of the protruded feature. The temperature probe is positioned in a body of the protruded feature.
Abstract:
The viscosity feedback temperature control system provides a means for controlling the viscosity of a process fluid about a user-defined setpoint by varying the temperature of the fluid within a user-defined range to take advantage of the viscosity versus temperature characteristics inherent in all fluids.
Abstract:
A method of detecting the presence of a product sprayed onto an application surface, in which the product to be applied to the application surface is sprayed onto a target zone of the application surface in pulses. Before spraying the product it is heated to a temperature higher than a predetermined temperature value. After spraying the product, a value of a parameter representing the temperature of the target zone is measured remotely, and the value of that parameter is compared to a reference value of that parameter. A detection installation including pulsed spraying by way of forming part of a device shared with the heating element.
Abstract:
A valve for use with a showerhead assembly includes a housing having a threaded inlet for connecting to a water source and a distally located front face with nozzles. The nozzles are connected to the threaded inlet by a central conduit which is closeable by an electronically controlled valve. The valve is controlled by a processor which opens the valve based on temperature and audio signals above a predetermined decibel level.
Abstract:
The invention relates to a humidifier configured to humidify an aerosol, the humidifier comprising a first water compartment (100) containing water used to humidify the aerosol; a second water compartment (300) containing water used to humidify the aerosol; an intermediate chamber (200) located between the first and the second water compartment (100, 300), the intermediate chamber (200) comprising an aerosol inlet (210) and an aerosol outlet (220) and providing first boundary surfaces of a passageway (230) through which the aerosol to be humidified passes; a first layer (10) permeable to water vapour and impermeable to liquid water, which is located between the first water compartment (100) and the intermediate chamber (200), wherein a section of the first layer provides a second boundary surface of the passageway; a second layer (20) permeable to water vapour and impermeable to liquid water, which is located between the second water compartment (300) and the intermediate chamber (200), wherein a section of the second layer provides a third boundary surface of the passageway (230) opposed to the second boundary surface.
Abstract:
The method for spraying thermoplastic powders provides to feed a flow of compressed air and/or nitrogen and a liquefied petroleum gas through respective separated discharge chambers (9, 12), shaped inside a mixing device (1) of a spray gun (100), the separated discharge chambers (9, 12) being in communication with a mixing chamber (15). Then a flame is ignited at the mixing chamber, through a flame ignition device (30) connected with the gun (100), said device comprising a spark ignition device (31, 310), and a conductor element (32) associated with the mixing device (1) and connected with the spark ignition device (31, 310). The thermoplastic powders are mixed with a transport inert gas, and fed through a further discharge chamber (7) communicating with the mixing chamber (15). Then the spray gun is operated to spray the thermoplastic powders through the flame onto the surface of the article to be coated, to cause the melting of the same powders.
Abstract:
A coating apparatus and method allow for precise control of the application of a coating material on a substrate and provides a data recording system which is useful for certifying a coating job and assessing when and where any abnormalities occur.
Abstract:
Embodiments disclosed herein propose a precision spray pumping system including a positive displacement pump in fluid communication with at least one spray nozzle. The positive displacement pump includes a displaceable member, and displacement of the displaceable member corresponds to a pumping cycle of the positive displacement pump. A controller is in communication with the positive displacement pump. The controller is operable to apply an actuation parameter to direct a displacement of the displaceable member and is also operable to receive an indication of an actual position of the displaceable member. The controller is further operable to compare a predetermined actuation parameter associated with an expected displacement of the displaceable member to a measured actuation parameter associated with the actual position of the displaceable member.
Abstract:
An aerosol generating device (20) comprises a reservoir(1) for containing a liquid to be atomized and a nebulization chamber (3) for nebulizing a portion of the liquid received from the reservoir. The aerosol device further comprises liquid exchange means (7,8) for exchanging in use a further portion of the liquid received in the nebulization chamber with liquid from the reservoir to reduce a temperature increase of liquid in the nebulization chamber caused by heat produced by the piezo (4).