CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present invention is based on and claims priority to U.S. Provisional Patent
Application No. 60/515,356 filed October 28, 2003 entitled INTERSECTING JET -WATERJET
NOZZLE, the entire disclosure of which is incorporated herein by reference.
BACKGROUND OF THE INVENTION
[0002] The present invention relates to a liquid jet nozzle, and more particularly to a
liquid jet nozzle which causes the fluid exiting the nozzle to have a fan pattern.
[0003] Numerous types of nozzles for fluids are presently known, and are used for various
different purposes. For example, U.S. Patent Application Publication No. US2003/0015604
discloses a nozzle to promote a flat fluid stream. The nozzle of this reference relates
to an atomizing nozzle for injecting fuel into, for example, a furnace. In this nozzle,
a central liquid stream is impacted on two sides by air jets in order to shape the
spray pattern of the liquid stream.
[0004] U.S. Patent No. 6,267,301 also shows an atomizing nozzle. In this construction once
again, two air flow paths are directed toward a central liquid flow to shape the spray
pattern of the liquid.
[0005] U.S. Patent No. 6,161,778 also shows an atomizing nozzle. In this construction, however,
the mixed flow of air and liquid exits from two orifices that are directed toward
one another.
[0006] U.S. Patent No. 5,435,491 teaches another type of spray nozzle which produces a fan-shaped
pattern by surrounding the central liquid emitting orifice with air emitting orifices
so that the compressed air changes the shape of the spray pattern.
[0007] All of the above discussed references utilize air and a liquid and are intended for
relatively low nozzle discharge pressures.
[0008] A nozzle for a different purpose is disclosed in U.S. Patent No. 3,927,833. This
nozzle is intended for providing a mixed spray of a plural component liquid resin
and a curing agent with granular and fiber material entrained in the mixed spray.
[0009] The nozzle of the present invention is intended for use as a waterjet cutting nozzle.
Such a nozzle and the equipment it is used with is disclosed in U.S. Patent Application
Publication No. U.S. 2002/0066345. As can be seen from this reference, a typical waterjet
system includes a waterjet head that is supplied with liquid at an ultra high pressure,
for example, 10,000-60,000 per square inch. The ultra high pressure liquid is discharged
from the head in a high velocity stream against the work piece. The liquid stream
is used to cut through the work piece.
[0010] A conventional waterjet nozzle has a round sapphire orifice. A known problem encountered
with using such a nozzle is a taper being formed at the cut. In order to address this
problem, fan jet nozzles have been used which provide a fan-shaped stream. These known
nozzles are not durable and have a limited life span when used at pressures above
20,000 pounds per square inch (psi). The life expectancy of presently available fan
jets above 20,000 psi (more importantly in the 30,000-40,000 psi range) is nowhere
near what commercially available round sapphire orifice nozzles can produce.
SUMMARY OF THE INVENTION
[0011] Accordingly, it is an object of the present invention to provide a waterjet nozzle
that outputs a fan-shaped stream and has a working life expectancy that is greater
than existing fan jet nozzles.
[0012] Pursuant to this object, and others which will become apparent hereafter, one aspect
of the present invention resides in a waterjet nozzle constructed to have two round
water jets directed toward one another so that fluid leaving the jets intersects to
form a fan jet pattern. By creating the fan jet pattern with two round orifices, namely,
round sapphire orifices, the fan jet nozzle of the invention has a much longer useful
life than conventional fan jet nozzles at operating pressures above 20,000 psi.
[0013] Furthermore, due to the highly cohesive nature of the round jets formed prior to
intersection, the resulting combined or intersected jet retains a very high percentage
of the energy available prior to intersection.
[0014] Additionally, it is an easy matter to vary the resulting angle of the fan jet by
changing the angle between the nozzles forming the round jets.
[0015] Other features and advantages of the present invention will become apparent from
the following description of the invention which refers to the accompanying drawings.
BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Fig. 1 is a cross-section through the inventive nozzle;
[0017] Fig. 2 is a view of the fan jet along the arrow A in Fig. 1; and
[0018] Fig. 3 is a schematic view of the pattern of the fan jet produced by the inventive
nozzle.
DETAILED DESCRIPTION OF THE INVENTION
[0019] Fig. 1 shows a cross-section through the fan jet nozzle 1 of the present invention.
The nozzle 1 has a housing 2 with a central channel 3 via which water enters the nozzle
and an outlet 4 via which the formed fan jet 5 exits the nozzle. A subnozzle 6 is
arranged in the central channel 3 and has two converging sections 7. The subnozzle
6 has a round sapphire orifice 8 arranged in each converging section 7 for forming
a round jet 9. The orifices 8 are arranged on converging axes so that the two round
water jets 9 leaving the orifices 8 collide with one another at a distance from the
exit of the orifices 8. By properly aligning the orifices 8 of the subnozzle 6 the
horizontal component of the left orifice in Fig. 1 cancels the corresponding horizontal
component of the right orifice. This results in a combined jet 5 that consists completely
of vertical components of the two round forming jets 9. Also, the resulting combined
jet 5 is substantially at the center space between the two initial forming jets 9.
[0020] The resulting single vertical jet 5 is shown in Fig. 2, where it is seen to have
a fan-shape, instead of remaining circular. The angle a of the fan jet results from
the intersection of the forming jets 9 and is mainly a function of the angle θ between
the initial forming jets 9.
[0021] Although the round orifices can be constructed of any suitable material, sapphire
is desirable due to its relatively long working life.
[0022] Fig. 3 is a top view of the fan jet 5 produced by the intersecting initial jets 9.
[0023] Although the present invention has been described in relation to particular embodiments
thereof, many other variations and modifications and other uses will become apparent
to those skilled in the art. It is preferred, therefore, that the present invention
be limited not by the specific disclosure herein, but only by the appended claims.
1. A liquid fan jet nozzle, comprising:
a housing having a central passage with an inlet and an outlet; and
a subnozzle arranged in the central passage, the subnozzle having two round orifices
arranged along converging axes so that round liquid jets exiting the round orifices
collide at a distance from the orifices and form a fan-shaped jet.
2. The nozzle according to claim 1, wherein the round orifices are sapphire orifices.
3. The nozzle according to claim 1, wherein the round orifices of the subnozzle are aligned
so that a horizontal component of a first of the orifices cancels a horizontal component
of a second of the orifices.
4. The nozzle according to claim 3, wherein an angle that encompasses the fan jet is
a function of an angle between the converging axes of the round orifices in the subnozzle.