The present invention relates to agricultural product application system and, more particularly, a movable agricultural product applicator system for dispensing various agricultural-related products along the ground surface of agricultural crops.
Current agricultural applicators are inefficient because the weight and rigidity of their applicator and delivery apparatus as well as these components' connection with their supporting boom causes at least the following problems: crop damage during use, damage to the applicator as it traverses varied terrain, attachment to and removal of the boom to the applicator and/or delivery apparatus is time-consuming, poor placement of the applicator relative to the boom and the crops, and the imposition of limits on the width of the boom.
As can be seen, there is a need for a movable agricultural product applicator system for dispensing various agricultural-related products along the ground surface of agricultural crops so as to overcome the above-mentioned problems.
In one aspect of the present invention, a system for dispersing product along a ground surface of a field of crops using a mobile supporting boom spanning portions of the field of crops includes a hose assembly extending from a proximal end to a distal end; a swivel connection rotatably connecting the proximal end to the supporting boom, wherein the swivel connection is movable from a retracted position to an extended position; and an applicator connected to the distal end, whereby the applicator drags along the ground surface.
In another aspect of the present invention, system for dispersing product along a ground surface of a field of crops using a mobile supporting boom spanning portions of the field of crops having a hose assembly extending from a proximal end to a distal end, wherein the hose assembly includes a plurality of tubular components, wherein at least one of the plurality of tubular components extends along a longitudinal axis, and wherein the at least one of the plurality of tubular components is adapted to bend about the longitudinal axis in any direction; a swivel connection rotatably connecting the proximal end to the supporting boom, wherein the swivel connection is movable from a retracted position to an extended position, and wherein the swivel connection includes a boom extension plate interconnecting the hose assembly and the supporting boom, wherein the boom extension plate forms a bearing hole; a tube bracket joined to a plate post, wherein the tube bracket attaches to the proximal end, wherein the plate post extends through the bearing hole so that a protruding portion of the plate post is provided; and a spring disposed on the protruding portion so as to bias the swivel connection in the retracted position; a hang hook connected to the tube bracket; an applicator connected to the distal end; and a mounting assembly for removably securing the swivel connection to the supporting boom, wherein the swivel connection is rotatable so that a portion of the applicator can be supported by the hang hook of an adjacent tube bracket.
These and other features, aspects and advantages of the present invention will become better understood with reference to the following drawings, description and claims.
The following detailed description is of the best currently contemplated modes of carrying out exemplary embodiments of the invention. The description is not to be taken in a limiting sense, but is made merely for the purpose of illustrating the general principles of the invention, since the scope of the invention is best defined by the appended claims.
Broadly, an embodiment of the present invention provides a movable agricultural product applicator system for dispensing various agricultural-related products along the ground surface of agricultural crops. The application system provides a hose assembly interconnecting a supporting boom and an applicator, wherein the applicator drags along the ground surface dispensing product as the supporting boom spans across the crop field as it is moved by a carrier. The application system may include a swivel connection facilitating a rotational and pivotal connection of the hose assembly to the supporting boom, wherein a mounting assembly removably mounts the application system to the supporting boom. The hose assembly is designed with bending properties that enable the applicator to self-center and locate rows between crops as it is being dragged along the ground surface, as well as enable the applicator to surf above obstacles.
Referring to
The mounting assembly 78 may interconnect the hose assembly 80 and the applicator 90 to the supporting boom 18. The mounting assembly 78 may enable an extendable connection between the hose assembly 80 and the supporting boom 18. The mounting assembly 78 may include a boom extension 21, a first fastener 12—such as a u-clip bolt, for removably securing the boom extension 21 the supporting boom 18—second fasteners 14 and a boom extension 21 to secure the first fastener 12 to the boom extension 21, as illustrated in
An extendable connector 22 may telescopically slide into a cavity of the boom extension 21 so that the extendable connector 22 moves from a retracted position to an extended position, wherein the extended position may be secured by a retainer clip 20, as illustrated in
The swivel connection 10 may interconnect the mounting assembly 78/extendable connector 22 and the hose assembly 80 so that the latter can rotate 360 degrees relative to a longitudinal axis of the former, whereby the hose assembly 80 is movable to a rotated configuration as illustrated in
The tube plate 36 may be joined to a tube bracket 24 dimensioned and adapted to slidably receive and secure to the hose assembly 80 or a portion thereof, such as an upper rigid tube 38. A hang hook 70 may be connected to the tube plate by the same means for securing the rigid tube 38, for example by a lock fastener 34 and nut 62. The hang hook 70 may be disposed so as to support a portion of the hose assembly 80 when in the rotated configuration, as illustrated in
The hose assembly 80 may include a plurality of modular tubular components 82 removably attachable to each other in various configurations by a plurality of clamps 44 so that the plurality of modular tubular components 82 slidably receive a plurality of product delivery hoses 40, protecting said delivery hoses 40 as they fluidly interconnect a product source and the applicator 90. The product delivery hoses 40, the hose assembly 80, the applicator 90, and components thereof are made of lightweight, durable and resilient material. In certain embodiments, the plurality of interchangeable modular tubular components 82 may include the upper rigid tube 38, an upper flex hose 42, a middle rigid tube 46, a middle flex hose 48 and a lower rigid tube 50 sequentially interconnected by the plurality of clamps 44. The flex hoses 42, 48 are adapted to be bend about their longitudinal axis in any direction so that when portions of the hose assembly 80 encounters resistance—be it the crops 72 or obstacles like terrain 76 of a higher elevation—at least one flex hose 42, 48 bends so that the applicator 90 lifts up against said resistance, as illustrated in
The applicator 90 may be attached to the distal end of the hose assembly 80 by a reinforcement plate 52. The reinforcing plate 52 may form two rigid tubes 68 wherein the two rigid tubes are divergently oriented. The reinforcement plate 52 may be dimensioned and adapted to support the plurality of product delivery hoses 40 and/or lower rigid tube 50. The plurality of product delivery hoses may transition from the lower rigid tube 50 to the applicator 90, wherein at least one product delivery hose 40 continues through each rigid tube 68 and where two product delivery hoses 40 terminate at opposing nozzles 66 between the rigid tubes 68 and the lower rigid tube 50, as illustrated in
A method of using the present invention may include the following. The application system 100 disclosed above may be provided. A user may mount the application system 100 to the boom 18 using the mounting assembly 78, wherein the boom 18 is connected to heavy duty carrier (not shown), such as a tractor. Then the user may connect the plurality of product delivery hoses 40 protruding through the upper rigid tube 38 to the product source, possibly also located on the heavy duty carrier. Then the user may adjust the length of the hose assembly 80 by selectively interconnecting specific plurality of modular tubular components 82 so that the applicator 90 drags along the terrain 76 when in use. In certain embodiments, the applicator 90 may drag along at an approximately 60 degree angle to the terrain 76, as illustrated in
It should be understood, of course, that the foregoing relates to exemplary embodiments of the invention and that modifications may be made without departing from the spirit and scope of the invention as set forth in the following claims.
This application claims the benefit of priority of U.S. provisional application No. 62/074,217, filed 3 Nov. 2014, the contents of which are herein incorporated by reference.
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