A system for controlled dispensing of a material onto an elongated window component. A nozzle dispenses the material into contact with a surface of the elongated window component at a delivery site located along a path of travel of the elongated window component. A conveyer moves the elongated windo
A system for controlled dispensing of a material onto an elongated window component. A nozzle dispenses the material into contact with a surface of the elongated window component at a delivery site located along a path of travel of the elongated window component. A conveyer moves the elongated window component along the path of travel relative to the nozzle at a controlled speed. A metering pump delivers controlled amounts of the material to the nozzle. A pressurized bulk supply delivers the material to an inlet to the metering pump. A controller regulates the speed of the metering pump to control the flow rate of the material dispensed by the nozzle.
대표청구항▼
A system for controlled dispensing of a material onto an elongated window component. A nozzle dispenses the material into contact with a surface of the elongated window component at a delivery site located along a path of travel of the elongated window component. A conveyer moves the elongated windo
A system for controlled dispensing of a material onto an elongated window component. A nozzle dispenses the material into contact with a surface of the elongated window component at a delivery site located along a path of travel of the elongated window component. A conveyer moves the elongated window component along the path of travel relative to the nozzle at a controlled speed. A metering pump delivers controlled amounts of the material to the nozzle. A pressurized bulk supply delivers the material to an inlet to the metering pump. A controller regulates the speed of the metering pump to control the flow rate of the material dispensed by the nozzle. biologically active metal; and forming the treated active particles into a microporous structure having a mean flow path of less than about 2 microns. 21. The process of claim 20 wherein the step of providing active particles comprises providing active particles of activated carbon, activated alumina, zeolites, diatomaceous earth, silicates, aluminosilicates, bone char, calcium hydroxyapatite, manganese oxides, magnesia, perlite, talc, polymeric particulates, clay, or combinations thereof. 22. The process of claim 20 wherein in the step of treating the active particles with a microbiological interception enhancing agent, the cationic material is selected from the group consisting of amines, amides, quaternary ammonium salts, imides, benzalkonium compounds, biguanides, aminosilicon compounds, polymers thereof, and combinations thereof. 23. The process of claim 20 wherein in the step of treating the active particles with a microbiological interception enhancing agent, the biologically active metal is selected from the group consisting of silver, copper, zinc, cadmium, mercury, antimony, gold, aluminum, platinum, palladium, and combinations thereof. 24. The process of claim 20 wherein the step of forming the treated active particles into a microporous structure further includes the addition of a binder. 25. The process of claim 24 wherein the step of forming the treated active particles into
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