Abstract:
Equipment for delivering fluids such as herbicides comprises a handset which supports delivery means such as a spraying head on a support tube 4. The handset receives a container 134 of fluid which is to be distributed, this container being received within a cavity 132 in the handset. The container is retained within the cavity 132 by latching elements 166 provided on a pivotable lever 162. As the container 134 is inserted into the cavity 132, the container engages a cam 168 which causes the lever 162 to pivot into the engaged position. An outlet fitting 150 provided on the container is automatically engaged with an inlet fitting communicating with a supply duct 10 for supplying fluid from the container to the spraying head.
Abstract:
Equipment for spraying a fluid such as a herbicide comprises a support tube on which is mounted a head comprising a body and a rotatable disc. Electrical supply leads and a supply hose for fluid pass to the head through the support tube. The head and the body define between them a narrow annular gap. Fluid is supplied to the disc at a position radially inwards of the gap and flows through the gap to be discharged as fine droplets form the periphery of the disc. The width of the gap is such that the fluid passing through it is wiped circumferentially so that it is distributed around the disc. This promotes an even spray of fluid from all parts of the periphery of the disc. Special shapes for the disc are proposed in order to promote the formation of small droplets of uniform size.
Abstract:
A method and apparatus for broadcast dispersion of biologically active encapsulated dispensers over preselected areas in a preselected pattern which utilizes a primary rotating applicator. The apparatus includes a hopper for the encapsulated dispensers and means for moving the dispensers onto a surface of the primary applicator from there to be discharged tangentially. A "sticker" substance is mixed with the dispensers. The distribution pattern is modified by one or more secondary directional spreaders located adjacent the primary applicator which serve to deflect and re-direct the dispensers.
Abstract:
A fluid sprayer includes a fluid storage module having at least one fluid tank, and a dispersion module having a rotary spray head assembly in fluid communication with the tank to receive fluid therefrom. The rotary spray head assembly further atomizes the fluid, and the dispersion module further includes a blower assembly positioned upstream of the rotary spray head assembly for dispersing the atomized fluid from the rotary spray head assembly into the surroundings of the fluid sprayer. The fluid storage module is detachably coupled to the dispersion module to effect reconfiguration of the fluid sprayer between a first configuration in which the fluid storage module and the dispersion module are positioned in a side-by-side manner, and a second configuration in which the fluid storage module and the dispersion module are positioned in-line with each other.
Abstract:
A rotary spray head assembly includes a motor having an output shaft and a housing through which the output shaft at least partially extends. The housing includes an inlet communicable with a source of fluid. The rotary spray head assembly also includes an annular skirt extending from the housing, a passageway through the skirt having a first end in fluid communication with the inlet and a second end, and a hub coupled for co-rotation with the output shaft. The hub includes an annular groove into which the annular skirt at least partially extends, a circumferential interior surface at least partially defining the groove, and an aperture through the circumferential interior surface. Fluid introduced into the annular groove through the second end of the passageway is discharged outwardly through the aperture.
Abstract:
An apparatus and method for applying an agricultural management material to targeted area. Exemplary agricultural management materials include viscous materials.
Abstract:
Equipment for spraying a fluid such as a herbicide comprises a support tube on which is mounted a head comprising a body and a rotatable disc. Electrical supply loads and a supply hose for fluid pass to the head through the support tube. The head and the body define between them a narrow annular gap. Fluid is supplied to the disc at a position radially inwards of the gap and flows through the gap to be discharged as fine droplets from the periphery of the disc. The width of the gap is such that the fluid passing through it is wiped circumferentially so that it is distributed around the disc. This promotes an even spray of fluid from all parts of the periphery of the disc. Special shapes for the disc are proposed in order to promote the formation of small droplets of uniform size.
Abstract:
Spraying equipment, for example for herbicides, comprises a head for carrying a rotatable disc from which, in operation, fluid is delivered by centrifugal force. The head comprises a first cmponent (4) and a second component (2) which are relatively rotatable about axis (A). The first component (4) has an inlet aperture (33) and the second component (2) has an outlet aperture (40). The second component (2) also has a recess (44) which provides a passage connecting the inlet aperture (33) to the outlet aperture (40). Relative rotation of the components (2 and 4) varies the length and/or the flow cross-section of the passage, so as to regulate the flow of fluid to the rotatable disc.
Abstract:
Equipment for spraying a fluid such as a herbicide comprises a support tube on which is mounted a head comprising a body and a rotatable disc. Electrical supply leads and a supply hose for fluid pass to the head through the support tube. The head and the body define between them a narrow annular gap. Fluid is supplied to the disc at a position radially inwards of the gap and flows through the gap to be discharged as fine droplets from the periphery of the disc. The width of the gap is such that the fluid passing through it is wiped circumferentially so that it is distributed around the disc. This promotes an even spray of fluid from all parts of the periphery of the disc. Special shapes for the disc are proposed in order to promote the formation of small droplets of uniform size.