Abstract:
An atomizer nozzle system, in particular for an electrohydrodynamic atomizer (1), wherein a nozzle cap (40) comprises a plurality of nozzles (10, 11, 12) and, in order to form a nozzle (10, 11, 12) comprises at least one nozzle opening (21, 22, 23), at least one nozzle channel and at least one nozzle socket, wherein the nozzle cap is arranged on at least one carrier and wherein the carrier comprises a nozzle connector for each nozzle socket, wherein the nozzle cap is arranged on the carrier in a releasably fastened manner.
Abstract:
A fluid nozzle assembly (10) for cleaning a LIDAR sensor is provided. The nozzle assembly includes a plurality of spray nozzles (14) that are interchangeably received within press-fit openings of a nozzle manifold. At least one of the spray nozzles provides a flat fan spray pattern and another one of the spray nozzles provides a narrow jet, collectively creating a multi-functional spray pattern. In another embodiment, a blower bracket is provided. The blower bracket includes a blower box and a plurality of selectable air nozzle adaptors. The air nozzle adaptors are joined to the blower box along a periphery of the blower box sidewall. The air nozzle adaptors include at least one barbed fitting for attachment to an air hose. The blower bracket provides a variety of configurations for use in specific locations in an overhead or rear tiara.
Abstract:
A dispensing head for a supply tube that enables material to be evenly applied adjacent to the peripheral edge of a thin structure, such as a vehicle door. The dispensing head has a first end with a first opening and a second end with a discharge opening. A guide extends from the second end. The guide includes a descending element and a lateral foot element, wherein the bottom surface of the second end, the descending element, and the lateral foot element define three sides of an open gap space. The dispensing head is attached to a supply tube. The thin structure is positioned within the guide. The hook shaped guide positions the discharge opening a set distance from the application surface on the thin structure. The guide is moved along the peripheral edge where the material can be dispensed evenly at a set distance from the peripheral edge.
Abstract:
A rotary metering head comprises a platform which is rotatable about an axis of rotation and on which a jet valve is arranged that serves for the jetting of fluid materials.
Abstract:
A toilet assembly includes a toilet body and a nozzle system. The toilet body defines a toilet bowl and a rim area disposed along an upper edge of the toilet bowl. The rim area includes a flange defining an opening. The nozzle system includes a nozzle having a first end configured to be fluidly coupled to a water supply conduit and a second end fluidly coupled to the rim area. The second end defines an outlet formed at a compound angle. The connector assembly detachably couples the nozzle to the flange such that the nozzle extends through the opening.
Abstract:
A chip for a windshield washer system of a vehicle front or rear window, wherein the chip is injection-molded by an injection molding process, the chip being arranged to be inserted into a chip holder of the windshield washer system, wherein the chip has a structure for generating a spray beam, wherein the structure has at an end face of the chip an outlet opening having an opening edge, wherein the outlet opening is configured to allow the spray beam to emerge from the chip during operation of the windshield washer nozzle system onto the vehicle front or rear window, wherein the outlet opening is delimited by the opening edge all around the complete opening circumference by the chip, and the opening and the opening edge are formed all around and integrally by the injection molding process.
Abstract:
A washer nozzle for a screen wash system of a motor vehicle has a pre-assembled structural unit of a jet insert and a check valve. This structural unit is pressed into a shaft of a housing. This makes the washer nozzle particularly easy to install.
Abstract:
An insert body (10) for a spray nozzle assembly (1) has a fan jet producing section (17) for producing an oscillating, large-area fan jet and a point jet producing section (18) for producing at least one point jet located in the wetting area of the fan jet. It is thereby ensured that even if the fan jet collapses or is pushed aside, the surface is wetted at least by the or each point jet, which are much more forgiving from a fluid dynamics standpoint.
Abstract:
An insert body (10) for a spray nozzle assembly (1) has a fan jet producing section (17) for producing an oscillating, large-area fan jet and a point jet producing section (18) for producing at least one point jet located in the wetting area of the fan jet. It is thereby ensured that even if the fan jet collapses or is pushed aside, the surface is wetted at least by the or each point jet, which are much more forgiving from a fluid dynamics standpoint.
Abstract:
An integrally formed, one-piece construction nozzle body having a primary flow channel and associated secondary flow channel and outlet configuration which cooperate to produce a jet of fluid having a predetermined geometric configuration. A system and method are also shown for creating the one-piece construction nozzle body.