Abstract:
This method serves to manufacture a coating gun, this gun comprising an injector for spraying a round jet along a spray axis and a cap arranged coaxially around the injector, this cap being provided to form an air knife around the jet. This method comprises a step consisting of sizing an axial excess dimension of the injector relative to the cap based on the diameter of the injector. The coating gun comprises an injector for spraying a round jet along a spray axis, a cap arranged coaxially around the injector, provided to form an air knife around the jet. The injector protrudes axially relative to the cap and the axial excess dimension of the injector relative to the cap can be adjusted between a minimum value and a maximum value that are determined based on the diameter of the injector.
Abstract:
A nozzle of a spray gun includes an air cap, a board, a cover and a nozzle. The air cap has a central path. The central path has a first inner periphery and a second inner periphery which is larger than the first inner periphery. Two guide faces each are a tapered face which is connected between the first and second inner peripheries of the central path of the air cap. The two guide faces are located symmetrically relative to the central path. Two air holes are respectively defined between the two guide faces and the nozzle. The air flow from the guide faces interests the air flow form the air holes to increase the range of the air flow to guide the paint in the paint path to be ejected from the nozzle.
Abstract:
The present disclosure generally relates to a sprayer for a fluid delivery system. In one example, a sprayer for a fluid delivery system is provided. The sprayer includes a main body having a handle and a trigger. The sprayer also includes a spray head having a fluid input for receiving fluid material and a fluid output for spraying the fluid material. The spray head is removably couplable to the main body by rotating the spray head with respect to the main body to engage a connection component of the spray head to a corresponding connection component of the main body. The sprayer also includes a spray head locking mechanism on the main body that extends to engage a portion of the spray head.
Abstract:
The present invention is to provide a paint spray-gun housing structure, in particular an innovative design to improve atomization result in spraying paint, mainly a protruding installation at internal edge of the flank section on both sides of spray-gun housing for expanding diameter in the outer section of atomization airflow channel, in particular to expand diameter horizontally oval hole in order to add at least two atomizing holes at the wider and thicker position near the base of the flank section, and enable the atomizing holes aligned in horizontal direction, thereby the atomization airflow passing through the two flank sections of the spray-gun housing is directed to spit out from the atomizing hole, in particular for the paint spitted from the center of the spray-gun housing to form still wider and more even results, so that while expanding and adding the spraying area the spraying quality can be maintained.
Abstract:
The present disclosure generally relates to a sprayer for a fluid delivery system. In one example, a sprayer for a fluid delivery system is provided. The sprayer includes a main body having a handle and a trigger. The sprayer also includes a spray head having a fluid input for receiving fluid material and a fluid output for spraying the fluid material. The spray head is removably couplable to the main body by rotating the spray head with respect to the main body to engage a connection component of the spray head to a corresponding connection component of the main body. The sprayer also includes a spray head locking mechanism on the main body that extends to engage a portion of the spray head.
Abstract:
An apparatus for use with a paint container includes a nozzle and a housing. The nozzle receives paint from the container. The housing has a handle, an air inlet, and an air flow path configured to direct air from the inlet into the container. A valve body opens and closes the air flow path into the container upon moving back and forth between open and closed positions. The valve body moves between those positions by rotating about an axis without moving along the axis.
Abstract:
In a spray gun (1) for spraying paint with a gun housing (2) provided with a handle (3) with a union nut (10) screwed onto it that holds an air cap (11) provided with offset outlet openings (14, 15) for compressed air, the union nut (10) is positively connected to the air cap (11) in a circumferential direction. This embodiment makes it possible for the spray jet to be set in a brief time and without difficulties without having to put up with getting dirty. It is merely necessary to turn the union nut (10) accordingly in order to control the air supply to the outlet openings (14, 15) of the air cap (11) and therefore to influence the formation of the spray jet.
Abstract:
A high-volume, low-pressure(HVLP) spray gun coupled with quick connect ring nut and a spring-loaded air diverter and a method for assembling the same applies, for example, non-latex paints, such as, for example, automobile paints, thinner-based paints and/or the like to surfaces. A barrel attaches to a body of the spray gun which has an air cap attached to a ring nut with a retaining ring and the spring-loaded air diverter. The air diverter then abuts the air cap. The diverter has intermediate channels therein. A trigger engages a two-stage air bypass valve which allows air from an air source to move through a bypass channel, a top channel and/or diverter channels to exit through a pair of diverter orifices and an opening in the air cap. The air atomizes the paint in a nozzle channel of the gun and exits the opening in a conically diverging spray pattern. The air from the diverter orifices forces the diverging spray pattern into a different spray pattern.