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Kochetov centrifugal atomiser with opposite swirl flows of vzp type

Kochetov centrifugal atomiser with opposite swirl flows of vzp type
IPC classes for russian patent Kochetov centrifugal atomiser with opposite swirl flows of vzp type (RU 2532168):
Another patents in same IPC classes:
Kochetov's nozzle with perforated spraying disc Kochetov's nozzle with perforated spraying disc / 2527812
Nozzle comprises a cylindrical casing with damper rigidly connected to the casing and coaxially located at the top part of the casing and having cylindrical hole for fluid supply connected to diffuser axiosymmetrical to the casing and damper, at the bottom part of the casing via, at least, three needles a sprayer is attached, which is located perpendicular to casing axis and made in a form of perforated disc, and in a cylindrical hole for fluid supply inn line to it the flow twisting element is located, which is fixed by lock washers and is made as a helical cylindrical spring, the coils of which have rectangular section, and the larger side of the rectangle is located perpendicularly to the hole axis.
Kochetov's swirl atomiser Kochetov's swirl atomiser / 2527805
Swirl atomiser comprises housing with auger, located inline in the housing bottom, and located in the top of the housing the choke with a cylindrical hole for fluid supply, connected with a diffuser, axisymmetric to housing and choke, the auger is pressed-in into the housing with formation of the conical camera located above the auger inline with the diffuser and connected with it in series, and the auger is made solid, composed from rigidly connected and coaxial to each other two parts made as solids of revolutions: The top located in the housing, is made in the form cylinder, and the bottom protruding out of the face surface of the housing bottom is made in the form of cone, while on external surfaces of an auger the screw-shaped groove with right or left-hand thread is made, at least, singe, and the cone top is axisymmetrically connected with atomising disk, located perpendicularly to the housing axis and protruding out of the end surface of the housing bottom, and the surface of atomising disk protruding out of the end surface of the housing bottom, is made deflected towards the housing bottom and has on the peripheral part the radial cuts alternating with the solid part of the surface of the atomising disk.
Kochetov vortex nozzle Kochetov vortex nozzle / 2526471
Vortex nozzle comprises a body, a cover with a tap for feeding liquid featuring a central hole, a vortex chamber and an atomiser, a body being made in the form of a sleeve with an atomiser attached to a bottom thereof and with, at least, three through peripheral holes and one axisymmetric central hole provided in the bottom thereof, while the vortex chamber is arranged inside the body and is made in the form of an axisymmetric sleeve featuring a truncated-cone profile with a coarse-pitch screw thread provided at the sleeve inner surface, while its lower base is attached to the sleeve bottom surface and the upper base is arranged with its truncation on the surface of truncation in a central hole of a liquid-feeding tap. A cross-section of the central hole is divided by the sleeve into two passages for liquid flowing: the first passage from the tap to the sleeve, while the second passage from the tap to the sleeve external surface and inside the body. The atomiser consists of at least three tubes with the upper ends thereof connected rigidly to the body bottom axisymmetric to its peripheral holes, while the lower ends are rigidly linked with a kick plate featuring an axisymmetric central hole of truncated-cone profile with its upper base directed towards a body bottom side. The tubes have at least two rows of orifice holes, which axes are perpendicular to the axes of tubes and directed towards the axis of the central hole provided in the body bottom.
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Swirl atomiser comprises case with swirling chamber and nozzle. Said case is composed of feed union with central bore and cylindrical sleeve with inner thread jointed and aligned therewith and expansion surface aligned with case. Note here the nozzle is screwed coaxially with case bottom barrel. Said nozzle represents a turned-up barrel with its bottom accommodating turbulent-flow swirler with at least two cylindrical inlets inclined to nozzle axis. Central cylindrical orifice is also made on nozzle end surface and communicated with nozzle mixing chamber communicated in its turn with diffuser outlet chamber. Said diffuser outlet chamber accommodates splitter composed of at least three spokes. Every said spoke has its one end secured to chamber outer surface perpendicular to its generatrix while opposite end is composed by the body of revolution, for example a ball. Ball axis is aligned with that of diffuser outlet chamber. Note also that said ball is located at lower part, behind the diffuser outlet chamber edge.
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In an air conditioner containing a section of receiving heat-insulated valves, connection sections, the first heating section consisting of heating elements, valves and a bypass channel, the first recirculation section, a spraying chamber, in which injectors and drop catches are installed; besides, a filter tray is located under the spraying chamber, and after the spraying chamber there located is the second recirculation section and a section of filters, which is connected to the second heating section consisting of heating elements and connected to a ventilation unit; drop catchers are made in the form of a pack of partition walls, one of which is a baffle element with a through hole, and the other ones are perforated and have perforation coefficient of 0.5, and at least three rows of plates, which follow them and have an inclination from upper plane to the lower one, and in the cross section perpendicular to length - a wedge-shaped streamlined shape, and the housing is installed on elastic elements, and a suction branch pipe of the fan is connected to the housing by means of an elastic link; besides, the baffle element with the through hole of the pack of partition walls is installed in the pack at the last point, and ratio of its height "b" to height of the through hole "c" is at optimum interval of values: b/c=2…5, and a gap between the partition walls of the pack is 0.01…0.1 of their height.
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Invention refers to fluid supply, particularly in the form of drops, and can be used in pharmaceutics, e.g. for eye or ear drop supply. The fluid supply device comprises a supplied fluid storage container, a dispenser tip mounted on the container and provided with a support and a fluid distribution valve. The valve can be configured to block and to release a fluid by a reaction to the support. The device also comprises a flow reduction unit containing a fluid inclination retainer limiting a flow reduction canal. The flow reduction unit is a component separate from the support and valve. The support comprises a sealing portion, a carrying surface of the valve for blocking a fluid passage if configured to block. The sealing portion has a cylindrical container. A support surface is arranged on a distal end of the cylindrical container of the sealing portion. The valve comprises a substantially cylindrical container and a limiting a fluid flow canal with the cylindrical container; the canal is formed at an outlet of the flow reduction canal. A batch of two devices has one valve and one support of the same shape, and the flow reduction unit of various shapes.
Kochetov's nozzle with perforated spraying disc Kochetov's nozzle with perforated spraying disc / 2527812
Nozzle comprises a cylindrical casing with damper rigidly connected to the casing and coaxially located at the top part of the casing and having cylindrical hole for fluid supply connected to diffuser axiosymmetrical to the casing and damper, at the bottom part of the casing via, at least, three needles a sprayer is attached, which is located perpendicular to casing axis and made in a form of perforated disc, and in a cylindrical hole for fluid supply inn line to it the flow twisting element is located, which is fixed by lock washers and is made as a helical cylindrical spring, the coils of which have rectangular section, and the larger side of the rectangle is located perpendicularly to the hole axis.
Kochetov's swirl atomiser Kochetov's swirl atomiser / 2527805
Swirl atomiser comprises housing with auger, located inline in the housing bottom, and located in the top of the housing the choke with a cylindrical hole for fluid supply, connected with a diffuser, axisymmetric to housing and choke, the auger is pressed-in into the housing with formation of the conical camera located above the auger inline with the diffuser and connected with it in series, and the auger is made solid, composed from rigidly connected and coaxial to each other two parts made as solids of revolutions: The top located in the housing, is made in the form cylinder, and the bottom protruding out of the face surface of the housing bottom is made in the form of cone, while on external surfaces of an auger the screw-shaped groove with right or left-hand thread is made, at least, singe, and the cone top is axisymmetrically connected with atomising disk, located perpendicularly to the housing axis and protruding out of the end surface of the housing bottom, and the surface of atomising disk protruding out of the end surface of the housing bottom, is made deflected towards the housing bottom and has on the peripheral part the radial cuts alternating with the solid part of the surface of the atomising disk.
Multifunctional device with counter swirling flows Multifunctional device with counter swirling flows / 2527472
Invention relates to ventilation and air conditioning. The multifunctional device with counter swirling flows of the processed gas, comprising a housing, upper and lower inlet pipes, an outlet pipe, a liquid supply system, the device consists of two processing stages, at that the first stage of the device comprises upper and lower inlet pipes, equipped with tangential swirlers and centrifugal tangential nozzles, the second stage comprises a centrifugal mixing chamber with an inlet pipe provided with a tangential swirler, a diffuser, a confusor, a straightener and an outlet pipe, the diameter of the centrifugal mixing chamber is greater than the diameter of the housing of the first stage of the device, the device comprises a system of preparing the circulating sprayed water, which comprises a shutoff valve, a settler, a filter, a circulation pump and a feeding valve, at that each of the centrifugal nozzles comprises a housing consisting of a cylindrical part with an external thread and an internal thread, a conical nozzle, a jet, the swirler is mounted in the cylindrical chamber, which is mounted at its lower part through the circular plate to the housing, at that in the circular plate a groove is made in a spiral of Archimedes.
Jet end piece for hydraulic sand jet perforator Jet end piece for hydraulic sand jet perforator / 2247227
In end piece, flow conic slit-like channel of variable section is made screwed with rotation of longitudinal axis for angle 20-60°. Section at output is decreased in comparison to input in 1.5-3 times.

FIELD: machine building.

SUBSTANCE: centrifugal atomiser with opposite swirl flows of the VZP type includes a housing with vortex chambers and a nozzle; the housing is made in the form of a connection pipe with a hole for liquid supply from the main pipeline and a cylindrical coaxial sleeve with an external thread, which is rigidly attached to it; in the above sleeve there in series located are conical and cylindrical cavities coaxial to the liquid supply hole, and coaxially to the housing, in its lower part, there connected is a nozzle made in the form of a two-stage centrifugal cylindrical swirler connected to an outlet conical chamber of the nozzle and separated from the liquid supply hole with a perforated partition wall fixed on the end surface of the swirler housing and facing to the liquid supply side; with that, the first stage of the swirler is located in its upper part and includes a cylindrical chamber, with a stock arranged coaxially in it, and with a screw plate fixed on it; besides, the stock is fixed in the centre of the perforated partition wall, and the second stage of the swirler is located coaxially to the first one and formed with the annular cylindrical chamber connected in series with the cylindrical chamber of the first stage of the swirler and equipped with tangential inlets for liquid supply through the cylindrical annular cavity formed with the swirler housing and the cylindrical cavity of the sleeve, and on the conical surface of the outlet conical chamber of the nozzle there is a screw thread with the flow swirling direction opposite to the direction of the two-stage centrifugal cylindrical swirler.

EFFECT: enlarging functional capabilities.

2 dwg

 

The invention relates to the atomization of liquids, solutions.

The closest technical solution to the declared object is the nozzle on the patent of the Russian Federation No. 2479361, comprising a housing with cameras turbulence and nozzle (prototype).

A disadvantage of the known nozzle is that it does not provide a wide and fine torch raspisivaem liquid.

The technical result - improving the efficiency of atomization by increasing the spray and specially selected size raspisivaem liquid.

This is achieved by the centrifugal atomizer with a counter-swirling flow type VZP, comprising a housing with cameras turbulence and the nozzle, the body is made in the form of a fitting with an opening for supplying liquid from the highway, and rigidly connected with it a cylindrical, coaxial sleeve with an external thread, which consistently are conical and cylindrical cavity coaxially with the bore for supplying fluid, and coaxially to the body, in its lower part connected to the nozzle, made in the form of a two-stage centrifugal cylindrical swirl connected with the output of the conical chamber of the nozzle and separated from the inlets of the liquid perforated wall fixed to the end surface of the casing of the swirl facing the inlet fluid, when the fact is the first step of the swirler is located in its upper part and includes a cylindrical chamber, with coaxially placed in it by the stem, and with a fixed screw plate, and the rod is fixed in the center of the perforated partition, and the second step of the swirler is located coaxially with the first and formed an annular cylindrical chamber, which is connected in series with the cylindrical chamber of the first stage of the swirl and provided with tangential inlets for supplying a fluid through a cylindrical annular cavity formed by the casing of the swirl and the cylindrical cavity of the sleeve, and on the conical surface of the output conical chamber nozzle is screw-thread with the direction of twist of flow opposite to the direction of the two-stage centrifugal cylindrical swirl.

Figure 1 presents the scheme of the centrifugal atomizer with a counter-swirling flow type VZP, figure 2 - section a-a figure 1.

Centrifugal atomizer with a counter-swirling flow type VZP (figure 1) includes a housing 1, which is made in the form of a fitting with a hole 3 for the supply of fluid from the highway, and rigidly connected with it a cylindrical, coaxial sleeve 2 with an external thread, which consistently are tapered 4 and 5 cylindrical cavity coaxial with a hole 3 for the supply of the liquid.

Coaxially to the housing 1, in its lower part connected to the nozzle 6, is made in the form of ductopenia the CSOs centrifugal cylindrical swirl 7, connected to the output conical chamber 8 of the nozzle 6 and separated from the holes 3 for supplying a liquid perforated partition 9, fixed on the end surface of the casing of the swirl 7 facing the inlet fluid.

The first step 10 of the swirler 7 is located in its upper part and includes a cylindrical chamber 10, coaxially with the rod 11 with a fixed screw plate, and the rod 11 is fixed in the center of the perforated partitions 9.

The second stage of the swirler 7 is located coaxially with the first and formed an annular cylindrical chamber 12, which is connected in series with a cylindrical chamber 10 of the first degree of swirl and provided with tangential inlets 13 for supplying a fluid through a cylindrical annular cavity formed by the casing of the swirl 7 and the cylindrical cavity 5 of the sleeve 2.

On the conical surface of the output conical chamber 8 of the nozzle 6 are screw-thread (not shown) with the direction of twist of flow opposite to the direction of the two-stage centrifugal cylindrical swirl.

Centrifugal atomizer with a counter-swirling flow type VZP works as follows.

When applying a fluid under pressure into the cavity of the hole 3 of the housing 1, it is divided into two equal effective area the flow area of flow: the first stream is directed through the perforated partition 9 into the first stage of the swirler 7 liquid and the second is through the tangential inlets 13 to the second stage. The direction of twist of the swirler first and second stages of the opposite, so in the cylindrical chamber 12 is the interaction of eddy flow with their fragmentation into fine thread. In the conical chamber 8 of the nozzle 6 is the fragmentation of liquid droplets in two rotating in the opposite direction of the vortices, with the production of fine phase. The escaping stream of two-stage centrifugal cylindrical swirl has a direction defined by the main vector of the twist of the thread is determined by the twist of the thread to each of the degree of swirl, and screw-thread on the conical surface of the output conical chamber 8 of the nozzle 6, which is opposite the direction of twist compared to the output stream of the two-stage centrifugal cylindrical swirl, allows splitting the total flow more efficiently and turns it into a fine thread.

Centrifugal atomizer with a counter-swirling flow type VZP, comprising a housing with cameras turbulence and the nozzle, and the body is made in the form of a fitting with an opening for supplying liquid from the highway, and rigidly connected with it a cylindrical, coaxial sleeve with an external thread, which is consistently the location is s conical and cylindrical cavity, coaxially with the bore for supplying fluid, and coaxially to the body, in its lower part connected to the nozzle, made in the form of a two-stage centrifugal cylindrical swirl connected with the output of the conical chamber of the nozzle and separated from the inlets of the liquid perforated partition mounted on the end surface of the casing of the swirl facing the inlet fluid, when the first stage of the swirler is located in its upper part and includes a cylindrical chamber coaxially with the rod, and with a fixed screw plate, and the rod is fixed in the center of the perforated partition, and the second step of the swirler is located coaxially with the first and formed an annular cylindrical chamber, which is connected in series with the cylindrical chamber of the first stage of the swirl and provided with tangential inlets for supplying a fluid through a cylindrical annular cavity formed by the casing of the swirl and the cylindrical cavity of the sleeve, characterized in that the conical surface of the output conical chamber nozzle is screw-thread with the direction of twist of flow opposite to the direction of the two-stage centrifugal cylindrical swirl.

 

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