Abstract:
An embodiment gas treatment system (10) includes a gas treatment chamber (12). The gas treatment chamber (12) is separated into (i) a chemical agent chamber (14) adapted to store a liquid chemical agent and (ii) a gas/chemical agent mixing chamber (18) in fluid communication with the chemical agent chamber (14). The system (10) includes an atomising assembly (20) operatively associated with the gas/chemical agent mixing chamber (18) and a pressurised gas supply assembly (22) in operative fluid communication with the atomising assembly (20). The system also includes a chemical agent supply assembly (24) to provide fluid communication between the chemical agent chamber (14) and the atomising assembly (20) wherein the atomising assembly (20) is operatively adapted to atomise liquid chemical agent into a stream of pressurised gas fed from the pressurised gas supply assembly (22) into the gas/chemical mixing agent chamber (18).
Abstract:
A method for producing particles, which contains: bringing a compressive fluid and a pressure plastic material into contact with each other to melt the pressure plastic material; and jetting a melt obtained by melting the pressure plastic material to form particles, wherein the jetting the melt is performed by a two-fluid nozzle or three-fluid nozzle.
Abstract:
Turbines and associated equipment are normally cleaned via water or chemical pressure washing via a mist, spray systems. However, these systems fail to reach deep across the gas path to remove fouling materials. Various embodiments herein pertain to apparatus and methods that utilize the water and existing chemicals to generate a foam. The foam can be introduced at that gas-path entrance of the equipment, where it contacts the stages and internal surfaces, to contact, scrub, carry, and remove fouling away from equipment to restore performance.
Abstract:
The purpose of the present invention is to provide a urea solution injection nozzle in which deposition and growth of urea on the surface of the urea solution injection nozzle are minimized. A urea solution injection nozzle is provided with urea solution flow paths and gas flow paths. A mixture of urea solution and gas are injected from an injection port. A slit that is a side-surface discharge port is configured so that gas is discharged along a curved surface on the outer surface of the urea solution injection nozzle in the same direction as the injection direction of the urea solution. The slit and the flow path are connected by a branching flow path.
Abstract:
In order to improve the efficiency of a method for supplying a cleaning medium, it is suggested that a cleaning gas, in particular, air be introduced into a reservoir (6) and that a cleaning liquid (38) subject to pressure be introduced into the reservoir for acting on the cleaning gas with pressure, said cleaning gas being subject to an initial pressure. Furthermore, a method for cleaning a workpiece and a cleaning device are suggested.
Abstract:
A hot melt dispensing system includes a melter for heating adhesive pellets into liquefied adhesive pellets and a feed cap connected to the melter. The melter includes a collection surface defining a melter collection area. The feed cap has a feed inlet for receiving a supply of adhesive pellets and air. The feed cap also has a ventilation window system positioned with respect to the feed inlet so as to induce air flow out the ventilation window system and to induce the distribution of the adhesive pellets throughout the melter collection area.
Abstract:
For producing a polyurethane layer by spraying a polyurethane reaction mixture, this mixture is supplied under pressure to a spray nozzle, within the nozzle the reaction mixture is accelerated by passing it through one or more channels having a reduced cross-sectional area, and the accelerated reaction mixture is sprayed, with a predetermined amount of kinetic energy, through a spray opening out of the spray nozzle onto a surface. The channels wherein the reaction mixture is accelerated have a total minimum cross-sectional area of S mm2, S being a value smaller than 1.0, the reaction mixture is sprayed out of the nozzle at a flow rate of between 10×S and 80×S g/sec, and, per gram reaction mixture, an amount of 0.05 to 2.5 mmol of a pressurized gas is sprayed together with the reaction mixture through said spray opening out of the nozzle to increase the kinetic energy of the reaction mixture which is sprayed out of the nozzle. By the addition of a pressurized gas to the reaction mixture, a same or even a better spray pattern can be achieved and the reaction mixture can be sprayed at a smaller flow rate.
Abstract translation:为了通过喷涂聚氨酯反应混合物制备聚氨酯层,将该混合物在压力下供给喷嘴,在喷嘴内,通过使反应混合物通过具有减小的横截面积的一个或多个通道来加速反应混合物,并加速 反应混合物以预定量的动能通过喷雾器喷射出喷射到表面上。 其中反应混合物被加速的通道的总最小横截面积S mm2,S小于1.0,反应混合物以10×S和80×S之间的流速从喷嘴喷出 g /秒,并且每克反应混合物中,将0.05-2.5mmol加压气体与反应混合物一起通过喷嘴从喷嘴喷出,以增加被喷出的反应混合物的动能 的喷嘴。 通过向反应混合物中加入加压气体,可以实现相同或甚至更好的喷雾形式,并且可以以较小的流速喷雾反应混合物。
Abstract:
A device may include one or more fluid containers, compressor vessels and/or conduit systems. A fluid container may be configured to house a fluid, for example an incompressible fluid, and/or may include one or more bags. A compressor vessel configured to fluidly connect one or more fluid containers, and/or house a fluid, for example a compressible fluid. A conduit system may include one or more fluid lines. A fluid line may be configured to fluidly connect to one or more fluid containers, and/or include an outlet portion. Fluid housed in a fluid container may be actuated through a fluid line and out of an outlet portion thereof by a force supplied by a compressible fluid. A process may include dispensing and/or applying one or more fluids to a subject. A process may include selecting and/or adjusting a fluid. A process may include processing one or more factors.
Abstract:
An oil-spraying apparatus includes: a base frame provided with a guide rail on an upper surface thereof; a mounting plate movably mounted on the guide rail by a rail block; a moving unit mounted at one side of the base frame so as to reciprocate the mounting plate on the base frame; and an oil-spraying unit mounted on an upper portion of the mounting plate, receiving compressed air and oil respectively from an air compressor and an oil distributor connected to an oil tank through an oil hose and an air hose. The apparatus can spray the oil to both the oil seal mounting hole and the one end portion of the crankshaft.