Hole boring device
10961783 ยท 2021-03-30
Inventors
Cpc classification
E21B7/18
FIXED CONSTRUCTIONS
E21B7/028
FIXED CONSTRUCTIONS
International classification
E21B7/18
FIXED CONSTRUCTIONS
E21B7/02
FIXED CONSTRUCTIONS
Abstract
A hole boring device includes a housing including a proximal end, an open distal end, and a bore extending longitudinally from the distal end to the proximal end. An inlet connectable to a pressurized water source is disposed on the proximal end of the housing. A spraying device in fluid communication with the inlet is disposed in the bore and is oriented towards the open distal end of the housing. The spraying device is configured discharge a stream of water passing therethrough so as to form a boring stream configured to bore a hole in a ground surface. In some embodiments, the spraying device is configured to rotatably discharge the pressurized stream of water. A depth collar disposed annularly about the housing defines the depth of the bored hole. A slot disposed along the housing allows debris from the boring process to exit the housing, leaving an empty bored hole.
Claims
1. A hole boring device, comprising: a linear housing including a proximal end, an open distal end, and a bore extending longitudinally from the distal end to the proximal end; an inlet disposed on the proximal end, the inlet configured to receive a connection to a pressurized water source; a spraying device disposed in the bore and oriented towards the open distal end, the spraying device in fluid communication with the inlet; wherein the spraying device is configured discharge a stream of water passing therethrough so as to form a boring stream configured to bore a hole in a soil surface; a collar disposed annularly about the housing, wherein the collar is slidable along a longitudinal length of the housing, the collar comprising a ring having a planar upper surface and a planar lower surface, the collar configured to define boring depth; a plurality of collar apertures disposed on an outer side of the collar, each of the plurality of collar apertures configured to receive a collar set screw, wherein each collar set screw is configured to secure the collar in a desired position along the housing; and a slot extending along the longitudinal length of the housing and disposed between the proximal end and the open distal end, the slot in communication with the longitudinal bore such that debris entering the longitudinal bore during the hole boring process translates from the longitudinal bore through the slot and out of the housing, wherein the slot includes an upper slot opening, a lower slot opening, and a transverse member disposed therebetween, such that opposing ends of the transverse member are connected to opposing sides of the slot, wherein both the upper and lower slot openings extend from the longitudinal bore and the exterior out of the housing.
2. The hole boring device of claim 1, wherein the spraying device comprises a rotating nozzle configured to automatically rotate as a fluid passes therethrough, so as to rotate the boring fluid upon discharge from the nozzle.
3. The hole boring device of claim 1, further comprising: a cover disposed within the bore at the proximal end of the housing, wherein the inlet extends through a central opening of the cover, the cover configured to seal the bore at the proximal end of the housing.
4. The hole boring device of claim 3, further comprising: a plurality of cover apertures disposed on the proximal end of the housing; a plurality of sidewall apertures disposed on a sidewall of the cover, the plurality of sidewall apertures corresponding to and aligning with the plurality of cover apertures; a plurality of cover fasteners, each cover fastener insertable through one of the cover apertures and one of the sidewall apertures so as to secure the cover in place within the bore.
5. The hole boring device of claim 3, wherein the cover includes a planar perimeter portion disposed annularly about a central face that is offset from the planar perimeter portion.
6. The hole boring device of claim 3, wherein the central opening of the cover comprises a female threaded bore and the inlet comprises a male quick disconnect inlet configured to threadably engage the female threaded bore for removably securing the inlet to the proximal end of the elongated housing.
7. The hole boring device of claim 1 wherein the slot includes a length less than a longitudinal length of the housing, such that the slot is coterminous with neither the proximal end nor the open distal end.
8. The hole boring device of claim 1, wherein the spraying device includes a nipple in fluid communication with the inlet.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Although the characteristic features of this invention will be particularly pointed out in the claims, the invention itself and manner in which it may be made and used may be better understood after a review of the following description, taken in connection with the accompanying drawings wherein like numeral annotations are provided throughout.
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DETAILED DESCRIPTION OF THE INVENTION
(11) Reference is made herein to the attached drawings. Like reference numerals are used throughout the drawings to depict like or similar elements of the hole boring device. The figures are intended for representative purposes only and should not be considered to be limiting in any respect.
(12) Referring now to
(13) In the shown embodiment, the hole boring device 10 includes a slot 45 in communication with the bore 35 that extends along the longitudinal length of the housing 15. The slot 45 is configured to provide egress for mud and debris that accumulates in the bore 35 while utilizing the hole boring device 10 to bore holes in the ground. The slot 45 allows debris entering the bore 35 during the hole boring process to translate from the bore 35 through the slot 45 and out of the housing 15. In one embodiment, the slot 45 includes a longitudinal length less than the longitudinal length of the housing 15 and is disposed between the proximal end 20 and open distal end 30 such that the slot 45 is coterminous with neither the proximal end 20 nor the open distal end 30.
(14) A cover 50 is fastened to the proximal end 20 of the housing 15. The cover 50 includes a central aperture 32 through which the inlet 25 extends, as shown in
(15) In the depicted embodiment, the cover 50 includes a diameter less than a diameter of the bore 35, such that the cover 50 is configured to be inserted into the bore 35 at the proximal end 20 in order to block or seal the proximal end 20 of the housing 15. The cover can be secured within the bore 35 via a threaded connection therewith. In the shown embodiment, an upper surface of the cover 50 is flush with an upper edge of the proximal end 20 of the housing 15. However, in alternate embodiments, the cover 50 can be recessed into the proximal end 20 of the housing 15 or extend upwardly therefrom. In one embodiment, the cover 50 includes one or more fasteners 55 configured to removably secure to one or more apertures 58 disposed annularly around the cover 50 so as to removably secure the cover 50 within the proximal end 20 of the housing 15, as shown in
(16) In the depicted embodiment, the inlet 25 comprises a male quick disconnect inlet 28 threadably coupled the central cover aperture 32, which includes a female threaded bore configured for removably attaching and interchanging the inlet 25 in order to facilitate compatibility with a variety of pressurized washers, as shown in
(17) Referring now to
(18) The spraying device 40 is orientated vertically downwardly towards the open distal end 30 of the housing 15, such that the spraying device 40 sprays a stream of water downwardly out through the open distal end 30 when a pressurized water source is connected to the inlet 25. In the shown embodiment, the spraying device 40 includes internal components that rotate to create a revolving fluid stream, such that the stream is rotatably discharged from the spraying device. In operation, the revolving fluid stream punctures a ground surface and bores a hole therein. The revolving fluid stream covers a larger or wider area than a linear stream of water, thereby optimizing boring. The housing 15 restricts the lateral reach of the revolving fluid stream of the spraying device 40, such that the diameter of the bore 35 defines the area in which the spraying device 40 ejects water. In other words, the size of a hole bored by the hole boring device 10 is dependent upon the size of the diameter of the bore 35. For instance, the hole boring device 10 can include larger housings including bores of larger diameters, which allows the hole boring device 10 to bore wider holes.
(19) In the depicted embodiment, the spraying device 40 includes a rotary nozzle with internal components that are configured to rotate to create a revolving fluid stream. However, alternate embodiments of the invention may include different types of spraying devices 40. For example, in another embodiment, the present invention utilizes multiple spraying devices 40 such that there are a plurality of nozzles each configured to rotatably discharge a stream of water passing therethrough. In yet another embodiment, the spraying device 40 includes a rotating spray ball apparatus including a shaft having a ball rotatably coupled to an end thereof. In some embodiments, the spraying device 40 can also be coupled to a motor configured to rotate the spraying device 40 in order to form the revolving boring stream.
(20) An adjustable depth collar 65 is disposed annularly around the housing 15 and is slidable along the longitudinal length thereof, such that a user may adjust the position of the depth collar 65. The position of the depth collar 65 defines the depth to which the hole boring device 10 may bore, because the lower end of the depth collar 65 contacts the ground and prevents further insertion of the housing 15 into the ground. In the shown embodiment, the depth collar 65 includes a circular outer perimeter. However, as long as the inner perimeter of the depth collar 65 is circular such that it can receive the housing 15, the shape of the outer perimeter of the depth collar 65 can vary.
(21) The depth collar 65 includes a plurality of collar apertures disposed on an outer side of the collar 65, and each collar aperture is configured to receive a set screw 70. The set screws 70 secure the collar in a desired position along the housing 15. In alternate embodiments, the housing 15 or the depth collar 65 may include markings, grooves, or detents that allow the depth collar 65 to be positioned precisely about the housing 15, such that the depth collar 65 is unable to rotate about the housing 15.
(22) Referring now to
(23) The spraying devices 40 each include a nipple 60 in fluid communication with the inlet 25, such that the nipples 60 can receive water when the inlet 25 is coupled to a pressurized water source. For example, the nipples 60 can each be connected to a manifold that distributes water equally from the inlet 25 to the nipples 60. The shown embodiment further includes a variation on the slot that allows debris to exit the housing 15. As shown, the slot includes an upper slot 35A and a lower slot 35B separated by a transverse member 350 that extends across opposing sides of the slot. The transverse member 350 provides additional structural strength to the housing 15.
(24) Referring now to
(25) The cover 150 includes a central aperture through which the shaft 90 extends. The cover 150 further includes a plurality of water apertures 155 disposed annularly about the central aperture, which are in fluid communication with the inlet 25. In the shown embodiment, the cover 150 includes one or more fasteners 70 configured and one or more apertures 158 disposed annularly around the cover 150. The fasteners 70 are insertable through corresponding apertures on the housing 15 so as to removably secure to one or more apertures 158 disposed annularly around the cover 150, securing the cover 150 within the housing 15. In the shown embodiment, the cover further includes a channel having an O-ring 80 therein. The O-ring 80 creates a watertight seal between the motor housing 75 and the cover 150.
(26) In the shown embodiment, the spraying device is a rotary spray ball 140, which includes an inlet 145 configured to receive a connection to a pressurized water source, wherein the inlet 145 is in fluid communication with the water apertures 155 of the cover 150. As shown, a nipple 60 connects the cover 150 to the rotary spray ball and allows water to flow thereto. The rotary spray ball 140 is operably connected to the shaft 90, such that actuation of the motor causes the shaft 90 and the coupled rotary spray ball 140 to rotate, forming a rotating discharge stream of water that exits through a plurality of outlets on the rotary spray ball 140 and out of the open distal end of the housing 15. The shown embodiment also includes the slot extending along the longitudinal length of the housing 15 which allows debris entering the bore to exit therethrough during the boring process. In some embodiments, the motor can be powered by an internal power source, such as a battery.
(27) Referring now to
(28) In operation, a user 201 may position the depth collar 65 at a point along the housing 15 corresponding to a desired boring depth, and then connect the hole boring device 10 to a pressurized water source, which is shown as a power washer 202 in the illustrated embodiment. The power washer 202 includes a connecting hose 203 that connects to a handle 204, which includes controls for selectively activating or deactivating the pressurized water spray. An extension 205 extends from the handle and includes a coupler 206 configured to connect to the inlet of the hole boring device 10.
(29) After connecting to the power washer 202, the user then places the open distal end of the housing 15 perpendicularly above or against a ground surface and activates the power washer. Once the power washer is activated, the spraying device rotatably discharges pressurized water vertically downward through the ground surface, thereby forming a revolving, boring stream that bores a hole in the ground surface. The user applies a downward force to the hole boring device 10 via the handle 204 of the power washer 204, causing the housing 15 to enter the ground until the depth collar 65 makes contact with the perimeter edge of the bored hole, or the surface immediately adjacent the perimeter edge of the bored hole. In this way, the hole boring device 10 can be utilized to quickly and easily bore a hole of a desired depth via a rotating, pressurized water stream. Additionally, since water is being used to bore the hole, the present invention provides initial watering of the plant or bulb, thereby simultaneously completing the two tasks of hole drilling and initial watering. In some embodiments, a liquid fertilizer tank may be operably coupled to the pressurized water source, such that liquid fertilizer is mixed into the pressurized water stream that bores the hole. In this way, an individual can bore a hole, provide initial watering for the plant or bulb, and fertilize the plant or bulb with a single device.
(30) It is therefore submitted that the instant invention has been shown and described in various embodiments. It is recognized, however, that departures may be made within the scope of the invention and that obvious modifications will occur to a person skilled in the art. With respect to the above description then, it is to be realized that the optimum dimensional relationships for the parts of the invention, to include variations in size, materials, shape, form, function and manner of operation, assembly and use, are deemed readily apparent and obvious to one skilled in the art, and all equivalent relationships to those illustrated in the drawings and described in the specification are intended to be encompassed by the present invention.
(31) Therefore, the foregoing is considered as illustrative only of the principles of the invention. Further, since numerous modifications and changes will readily occur to those skilled in the art, it is not desired to limit the invention to the exact construction and operation shown and described, and accordingly, all suitable modifications and equivalents may be resorted to, falling within the scope of the invention.