B05B12/36

MODULAR HOOD FOR COATING GLASS CONTAINERS
20210370333 · 2021-12-02 ·

A modular apparatus for coating glass articles with a chemical compound includes a coating hood section (10a) including a series of interconnected walls (12) defining an interior chamber (18, 20a, 20b) having an inlet (32) and an outlet (44), a blower (24) positioned at least partially in the interior chamber (18, 20a, 20b) to carry air from the inlet (32) towards the outlet (44); and a connector (50) for connecting the coating hood section (10a) to an identical coating hood section (10b). The connector (50) for connecting being defined on at least one of the interconnected walls (12) of the coating hood section (10a).

Ultrasonic atomizer with acoustic focusing device

An atomizer for applying a coating includes a nozzle plate, an actuator, and an acoustic focusing device. The nozzle plate defines at least one aperture. The actuator is configured to oscillate to form pressure waves within a fluid to eject the fluid from the nozzle plate. The acoustic focusing device focuses the pressure waves toward the apertures.

Ultrasonic atomizer with acoustic focusing device

An atomizer for applying a coating includes a nozzle plate, an actuator, and an acoustic focusing device. The nozzle plate defines at least one aperture. The actuator is configured to oscillate to form pressure waves within a fluid to eject the fluid from the nozzle plate. The acoustic focusing device focuses the pressure waves toward the apertures.

Modular hood for coating glass containers including removable dividers for affecting air flow through the hood
11731154 · 2023-08-22 · ·

A modular apparatus for coating glass articles with a chemical compound includes a coating hood section (10a) including a series of interconnected walls (12) defining an interior chamber (18, 20a, 20b) having an inlet (32) and an outlet (44), a blower (24) positioned at least partially in the interior chamber (18, 20a, 20b) to carry air from the inlet (32) towards the outlet (44); and a connector (50) for connecting the coating hood section (10a) to an identical coating hood section (10b). The connector (50) for connecting being defined on at least one of the interconnected walls (12) of the coating hood section (10a).

Modular hood for coating glass containers including removable dividers for affecting air flow through the hood
11731154 · 2023-08-22 · ·

A modular apparatus for coating glass articles with a chemical compound includes a coating hood section (10a) including a series of interconnected walls (12) defining an interior chamber (18, 20a, 20b) having an inlet (32) and an outlet (44), a blower (24) positioned at least partially in the interior chamber (18, 20a, 20b) to carry air from the inlet (32) towards the outlet (44); and a connector (50) for connecting the coating hood section (10a) to an identical coating hood section (10b). The connector (50) for connecting being defined on at least one of the interconnected walls (12) of the coating hood section (10a).

Hot water steam cover for protecting plants while spraying

A system and method of protecting plants while spraying having a hood mounted to a farm implement and positioned between plant rows and below plant vegetation. Extending through the hood into a hollow chamber is a hydraulic fitting having a spray nozzle. Heated water is supplied to the hydraulic fitting.

Hot water steam cover for protecting plants while spraying

A system and method of protecting plants while spraying having a hood mounted to a farm implement and positioned between plant rows and below plant vegetation. Extending through the hood into a hollow chamber is a hydraulic fitting having a spray nozzle. Heated water is supplied to the hydraulic fitting.

AUTOMATICALLY MOVING DISINFECTION ROBOT FOR DISINFECTING SURFACES

An automatically moving disinfection robot for disinfecting surfaces has a device housing, a drive means for the movement of the disinfection robot within a surrounding area comprising at least one room, a navigation means for the navigation and self-localization of the disinfection, a disinfection means, and a control means for controlling the disinfection activity. The control means controls a locally limited disinfection in only one subregion of the room, or a locally limited disinfection of only one object, in a fully automated manner. The disinfection means has a shielding means for separating the locally limited subregion to be disinfected from adjacent subregions of the same room. The shielding means is a housing, which is open only on one side and which is placed around the object or against the surface to be disinfected, so that the disinfection only takes place within the housing, but not outside of the housing.

COMPOSITE ULTRASONIC MATERIAL APPLICATORS WITH INDIVIDUALLY ADDRESSABLE MICRO-APPLICATORS AND METHODS OF USE THEREOF

A material applicator for controlling application of at least one material on a substrate includes a housing and an array plate with an applicator array positioned within the housing. The applicator array has a plurality of micro-applicators and each of the plurality of micro-applicators has an ultrasonic transducer, a material inlet, a reservoir, and a micro-applicator plate with a plurality of apertures. The applicator plate is in mechanical communication with the ultrasonic transducer such that at least one material is ejected through the plurality of apertures as atomized droplets when the ultrasonic transducer vibrates the micro-applicator plate.

COMPOSITE ULTRASONIC MATERIAL APPLICATORS WITH INDIVIDUALLY ADDRESSABLE MICRO-APPLICATORS AND METHODS OF USE THEREOF

A material applicator for controlling application of at least one material on a substrate includes a housing and an array plate with an applicator array positioned within the housing. The applicator array has a plurality of micro-applicators and each of the plurality of micro-applicators has an ultrasonic transducer, a material inlet, a reservoir, and a micro-applicator plate with a plurality of apertures. The applicator plate is in mechanical communication with the ultrasonic transducer such that at least one material is ejected through the plurality of apertures as atomized droplets when the ultrasonic transducer vibrates the micro-applicator plate.