EP2914784B1 - Jet regulator - Google Patents

Jet regulator Download PDF

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Publication number
EP2914784B1
EP2914784B1 EP13753278.4A EP13753278A EP2914784B1 EP 2914784 B1 EP2914784 B1 EP 2914784B1 EP 13753278 A EP13753278 A EP 13753278A EP 2914784 B1 EP2914784 B1 EP 2914784B1
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EP
European Patent Office
Prior art keywords
jet regulator
housing
jet
perforated plate
outflow
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Application number
EP13753278.4A
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German (de)
French (fr)
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EP2914784A1 (en
Inventor
Marc Tempel
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Neoperl GmbH
Original Assignee
Neoperl GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Neoperl GmbH filed Critical Neoperl GmbH
Priority to EP15003211.8A priority Critical patent/EP3009571B1/en
Priority to PL13753278T priority patent/PL2914784T3/en
Priority to PL15003211T priority patent/PL3009571T3/en
Publication of EP2914784A1 publication Critical patent/EP2914784A1/en
Application granted granted Critical
Publication of EP2914784B1 publication Critical patent/EP2914784B1/en
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    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/02Plumbing installations for fresh water
    • E03C1/08Jet regulators or jet guides, e.g. anti-splash devices
    • E03C1/084Jet regulators with aerating means
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/02Plumbing installations for fresh water
    • E03C1/08Jet regulators or jet guides, e.g. anti-splash devices
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/02Plumbing installations for fresh water
    • E03C1/08Jet regulators or jet guides, e.g. anti-splash devices
    • E03C1/086Jet regulators or jet guides, easily mountable on the outlet of taps

Definitions

  • the invention relates to a jet regulator with a jet regulator housing, in the housing interior of which a perforated plate having a plurality of flow holes for dividing the water flowing through is provided.
  • Jet regulator of the type mentioned are already known in various designs. Such jet regulators are mounted on the water outlet of a sanitary outlet fitting to produce a homogeneous and laterally non-splashing water jet there. It has also procured jet regulator, which ventilate the escaping water steel and to mix the water flowing through it with the ambient air.
  • a jet regulator with a jet regulator housing in the housing interior a perforated plate is provided which has flow holes, which have a constant clear cross-section in the flow direction.
  • the perforated plate is followed by a baffle cone in the flow direction, which forms a constriction in the flow area of the previously known jet regulator.
  • the individual beams generated in the perforated plate can tear the ambient air in the housing interior of the jet regulator housing with it and then hit on the inclined surface of the impact cone so that the ventilated individual jets are broken up and mixed with the entrained air.
  • the prior art jet regulators require a certain flow and sufficient water pressure in the pipeline network, so that sufficient negative pressure is generated on the downstream side of serving as a jet separator perforated plate to suck ambient air into the housing interior of the jet regulator housing.
  • the negative pressure formed at low flow and low water pressures is usually not sufficient to the ambient air with the flowing through To be able to mix water.
  • jet regulator of the type mentioned, which is also at low flow and / or low water pressures, as they are often sought, for example, for water saving purposes, a sufficiently ventilated and accordingly perlender-soft water jet is able to produce.
  • the jet regulator according to the invention should preferably be interchangeable with the known jet regulator designs.
  • the inventive solution to this problem is in the jet regulator of the type mentioned in the combination of features of claim 1.
  • the jet regulator according to the invention has a jet regulator housing, in the housing interior is provided, for example, over the housing cross-section extending perforated plate.
  • the perforated plate has a plurality of flow holes, which are intended for dividing the water flowing through. At least one of the provided in the perforated plate Flow holes expand towards its downstream side, and preferably to the downstream side increasingly conical or conical. As a result of the conical or conical spreading of the water emerging from the perforated plate, it can mix with the ambient air sucked into the jet regulator housing, even at low flow rates and low water pressures, practically over the entire housing cross section of the jet regulator housing.
  • the good air mixing of the water flowing through is favored even at low flow rates and low water pressures, if at least one flow hole to such a conical or conical widened to its downstream side, that emerging from the flow hole and by the conical shape or conicity widening single beam itself in the housing interior even before the impingement of individual jets on at least one disposed in the housing interior beam molding with the single beam at least one adjacent naturalflußloches mixed.
  • flow obstacles are provided on the outflow side of the perforated plate in the jet regulator housing and / or on the Abströmstirn design the jet regulator housing, which are arranged or concentrated there in a central or central region and redirect the water flowing through into an outer annular zone, on the other hand has no or a smaller number or total area of flow obstacles.
  • a water jet which appears comparably voluminous in cross-section
  • the water flowing through the flow obstacles from a central or central area at least partially deflected into an outer annular zone, which forms the outer periphery of the exiting water jet.
  • An advantageous embodiment according to the invention provides that on the downstream side of the perforated plate at a distance from this on the housing inner circumference a circumferential baffle slope is provided, which increasingly narrows the clear housing cross-section in this area in the flow direction.
  • the exiting from the flow holes and already enriched with air water meets at a distance to the perforated plate on a baffle, which additionally mixes and divides the already treated water before the thus enriched with air water as a homogeneous, non- spouting and pearly-soft water jet can escape from the jet regulator.
  • a particularly easy to manufacture embodiment according to the invention provides that the baffle slope forms the inflow side of a Wandungsabitess, which is configured as at least one wavy constriction in longitudinal section.
  • the impact bevel can be designed as an inner peripheral side projection or inner peripheral side projection of the housing peripheral wall and can be integrally connected to the jet regulator housing or a jet regulator housing part.
  • baffle slope is preferred as a wall section of an annular or sleeve-shaped insertion part which can be inserted into the jet regulator housing is preferred is trained.
  • the jet regulator housing is designed in several parts and has at least two, preferably releasably connectable housing parts.
  • the impact bevel is integrally formed on the housing inner circumference of a downstream housing part and / or that the perforated plate is integrally formed in the housing interior of an inflow-side housing part.
  • the perforated plate can be connected downstream of at least one mesh or lattice structure in the flow direction.
  • the tapered or conically emerging from the flow holes and impinging on the at least one network or lattice water is braked there and decomposed with the adjacent disassembled portions of emerging from the adjacent flow holes water to then emerge as a soft overall beam from the jet regulator can.
  • Such a lattice structure can also be formed by an inserted metal mesh, which is formed from two sets of preferably rectangularly interwoven metal wires, - preferred is an embodiment in which the network or lattice structure of two flocks, at intersection nodes intersecting webs is formed.
  • Such a network or lattice structure, consisting of two flocks, at crossing nodes formed crossing webs can be produced in a simple manner as a plastic injection molded part.
  • a preferred embodiment according to the invention provides that the at least one, the perforated plate in the flow direction downstream network structure of radial webs and thus crossing at crossing nodes concentric webs is formed.
  • the perforated plate is followed in the direction of flow by at least two network or grid structures spaced apart from one another.
  • a preferred development according to the invention provides that at least one flow hole in the flow direction is aligned with a radial web of a network structure and with a concentric web of an adjacent network structure.
  • the divided in the perforated plate water flows out of the flow holes of the perforated plate less than single jet and rather than spray cone.
  • each Mesh or grid structure is formed by an insertable into the housing interior of the jet regulator housing insert.
  • each insert part has on the outer peripheral side a circumferential annular wall, to which webs of the mesh or grid structure are held and preferably integrally formed.
  • the breaking up and dividing of the spray cone emerging from the throughflow holes of the perforated plate is further promoted if at least the concentric webs and preferably also the radial webs of a network structure in front in the direction of flow has an equal or smaller web thickness compared to the webs of a network structure adjacent downstream.
  • the flow holes provided in the perforated plate can be arranged on concentric hole circles.
  • the perforated plate has a central hole-free baffle which defines at least one annular wall, that the at least one annular wall has radially oriented passage openings, and that on the arranged in the baffle plane side of the flow openings each have a flow hole the perforated plate is provided.
  • the deflected in this way in the region of the ring wall water is first braked, deflected to the side and mixed by optionally in opposite directions to each other inflowing streams before flowing through the through holes of the perforated plate and on the downstream side of the perforated plate in the form of a corresponding number of Sprühkegeln can escape.
  • Honeycomb cell structure is formed, and when the outgoing end face forming net or honeycomb cell structure either inextricably connected to the jet regulator housing and in particular integrally formed or formed by an insertable into the jet regulator housing insert.
  • the jet regulator according to the invention is designed as a ventilated jet regulator, in whose housing interior at least one ventilation opening opens, which connects the housing interior with the atmosphere.
  • at least one ventilation channel can be provided in a double-walled section of the jet regulator housing or in an annular gap surrounding the jet regulator housing, which is designed to be open towards the atmosphere.
  • FIGS. 1 to 13 three embodiments 1, 10, 100 of a jet regulator are shown.
  • the jet regulator designs 1, 10, 100 are intended to be mounted on the water outlet of a sanitary outlet fitting in order to form a homogeneous and laterally non-splashing water jet there.
  • the jet regulator designs 1, 10, 100 are designed as aerated jet regulators, in which the water flowing through is mixed with ambient air and enriched.
  • the jet regulator embodiments 1, 10, 100 have a sleeve-shaped and in cross section round jet regulator housing 2.
  • the in the FIGS. 1 to 5 shown Strahlregleraus arrangement 1 has on the housing outer circumference of the jet regulator housing 2 on an external thread 3, which cooperates with an internal thread, which is arranged on the inner peripheral side at the water outlet of the outlet fitting not shown here.
  • the jet regulator embodiment 1 illustrated here can be screwed into the water outlet in such a way that the downstream end face of the jet regulator housing 2 is arranged practically in one plane with the downstream end edge of the outlet fitting.
  • a perforated plate 5 In the housing interior of the jet regulators 1, 10, 100, a perforated plate 5 is provided, which carries a plurality of naturalflußlöchern 6. At least one through-hole 6 and preferably all through-holes 6 of the perforated plate 5 extend conically or conically at least in an outflow-side partial region to their downstream side.
  • the provided in the perforated plate 5 through holes 6 are intended for dividing the water flowing through. Due to the conical or conical spreading of the water emerging from the perforated plate, it can mix with the ambient air trapped in the jet regulator housing, even at low flow rates and low water pressures practically over the entire cross section of the jet regulator housing 2.
  • the flow holes 6 extend conically or conically in such a way that the water jet emerging from the flow holes 6 and widening due to the conical shape or conicity becomes at least one beam-shaped part with at least one beam preform arranged in the interior of the housing prior to the impact of individual jets on at least one beam molding part mixed through adjacent flow hole.
  • FIGS. 1 to 6 In order to divide the water flowing through even more and to mix with ambient air, is in the in the FIGS. 1 to 6 shown aerator embodiments 1, 10 of the perforated plate 2 in the flow direction downstream of at least one and preferably at least two network structures, which are formed of radial webs 7 and thus crossing nodes 8 concentric webs 9.
  • At least one throughflow hole 6 and preferably all throughflow holes 6 are aligned in the flow direction with a radial web 7 of a network structure and here the network structure arranged downstream in the flow direction and with a concentric web 9 of an adjacent and here arranged on the inflow network structure.
  • the respectively aligned with one of the flow holes 6 webs 7, 9 cover or intersect here in a central or central region of the associated fürflußloches 6 in the different levels of these network structures.
  • each of the network structures forming a jet regulator device is formed by an insertion part 11, 12 which can be inserted into the housing interior of the jet regulator housing 2.
  • Each of these insert parts 11, 12 has on the outer peripheral side a peripheral annular wall 13, to which the radial webs 7 of the network structure crossing with the concentric webs 9 are connected and integrally formed here.
  • each flow hole 6 in the perforated plate 5 in the flow direction appears to divide into a plurality of further smaller flow openings.
  • the perforated plates 2 provided in the jet regulator embodiments 1, 10, 100 have a central baffle surface 14, which is bounded by at least one annular wall 15.
  • This annular wall 15 has oriented in the radial direction through openings 16, which are spaced apart here over the circumference of the annular wall 15 from each other.
  • the at least one ventilation opening 17 at the in Figure 1 to 5 shown jet regulator embodiment 1 is connected here via a double-walled portion 18 of the housing peripheral wall on the downstream side of the jet regulator 1 with the atmosphere, prevail in the in the FIGS. 6 to 13 shown jet regulator embodiments 10, 100, the ventilation openings 17, the jet regulator housing 2 in the radial direction and are on the outside of the jet regulator housing 2 with a Bellustungskanal connected, which is formed as an annular gap between the housing outer circumference of the jet regulator housing 2 and the inner circumference of the outlet nozzle and which is open to the downstream end of the outlet nozzle and jet regulator 10, 100 to the atmosphere.
  • FIGS. 7 to 13 shown Strahlregler-Aüs operation 100 on the downstream side of the perforated plate 2 at a distance from this on the housing inner circumference a circumferential baffle slope 19, which increasingly narrows the clear housing cross-section in this area in the flow direction.
  • This baffle slope 19 is formed by the inflow side of a wall section designed as a wavy constriction in longitudinal section.
  • the wall portion having the baffle slope 19 is configured here as a ring-shaped or sleeve-shaped insertion part 20 which can be inserted into the jet regulator housing 2.
  • the downstream end face of the jet regulators 1, 10, 100 is formed by a mesh structure 22 or a honeycomb cell structure 21. While the net or honeycomb cell structure 22, 21 forming the outflow-side end face of the jet regulators 1, 100 is permanently connected to the jet regulator housing 2, the outlet structure 22 of the in-net structure FIG. 6 shown jet regulator 10 formed by an insertable into the jet regulator housing 2 insert 23. From a comparison of FIGS. 8 and 10 It can be seen that the network structure 22 forming the outflow-side end face of the jet regulator 100 is formed by radial and concentric webs 24, 25 which taper at least in an outflow-side subregion in the flow direction. Since these webs 24, 25 at least in a downstream Rejuvenate portion in the flow direction, a homogenization and homogenization of the exiting through the network structure of the jet regulator housing 2 water in the form of a homogeneous total beam is additionally favored.
  • the jet regulator housing 2 is formed here by two housing parts 26, 27 which can be detachably connected to one another and are preferably latchable with one another, of which the front housing part 26 on the inflow side is integrally connected to the perforated plate 6. So that the dirt particles possibly entrained in the water can not impair the proper functioning of the jet regulator, the jet regulator housing 2 is preceded by an attachment or filter screen 28, which is held detachably on the inflow-side housing part 26 here.
  • This attachment or filter screen 28 has a multiplicity of round or rectangular, in particular hexagonal, filter or sieve openings.

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • Nozzles (AREA)
  • Pipe Accessories (AREA)

Description

Die Erfindung betrifft einen Strahlregler mit einem Strahlreglergehäuse, in dessen Gehäuseinnenraum eine Lochplatte mit einer Mehrzahl von Durchflußlöchern zum Aufteilen des durchströmenden Wassers vorgesehen ist.The invention relates to a jet regulator with a jet regulator housing, in the housing interior of which a perforated plate having a plurality of flow holes for dividing the water flowing through is provided.

Strahlregler der eingangs erwähnten Art sind bereits in den verschiedensten Ausführungen bekannt. Solche Strahlregler werden an dem Wasserauslauf einer sanitären Auslaufarmatur montiert, um dort einen homogenen und seitlich nicht-spritzenden Wasserstrahl zu erzeugen. Man hat auch Strahlregler beschaffen, die den austretenden Wasserstahl belüften und das durchströmende Wasser dazu mit der Umgebungsluft durchmischen sollen.Jet regulator of the type mentioned are already known in various designs. Such jet regulators are mounted on the water outlet of a sanitary outlet fitting to produce a homogeneous and laterally non-splashing water jet there. It has also procured jet regulator, which ventilate the escaping water steel and to mix the water flowing through it with the ambient air.

So ist aus der DE 30 00 799 A1 bereits ein belüfteter Strahlregler vorbekannt, der in seinem Strahlreglergehäuse eine Lochplatte hat, die eine Vielzahl von Durchflußlöchern aufweist, welche in konzentrischen Lochkreisen auf der Lochplatte angeordnet sind und welche das durch das Strahlreglergehäuse strömende Wasser in eine entsprechende Anzahl von Einzelstrahlen aufteilen sollen. Da die Durchflußlöcher den lichten Durchflußquerschnitt im Bereich der Lochplatte verengen, erfährt das durchströmende Wasser in den Durchflußlöchern eine Geschwindigkeitserhöhung, die gemäß der Bernoullischen Gleichung auf der Abströmseite der Lochplatte einen Unterdruck bewirkt. Durch den auf der Abströmseite der Lochplatte erzeugten Unterdruck wird Umgebungsluft angesaugt, die durch in der Gehäusewandung vorgesehene Belüftungsöffnungen in das Gehäuseinnere des Strahlreglergehäuses eindringen und dort mit dem durchströmenden Wasser vermischt werden kann. Damit das durchströmende Wasser mittels der Lochplatte geräuscharm in Einzelstrahlen aufgeteilt wird, ist bei dem aus DE 30 00 799 A1 vorbekannten Strahlregler unter anderem vorgesehen, dass die Durchflußlöcher einen im Querschnitt mehrkantigen Lochabschnitt haben, dem ein im Querschnitt zunehmend erweiterter und abströmseitig zylindrischer Lochabschnitt nachgeschaltet ist (vergleiche Figur 4 in DE 30 00 799 A1 ) . Durch solche, verschiedene Abschnitte aufweisende Durchflußlöcher wird in den Durchflußlöchern jeweils ein im Querschnitt runder und linear ausströmende Einzelstrahl erzeugt.So is out of the DE 30 00 799 A1 already a ventilated jet regulator previously known, which has in its jet regulator housing a perforated plate having a plurality of Durchflußlöchern, which are arranged in concentric hole circles on the perforated plate and which should divide the water flowing through the jet regulator housing into a corresponding number of individual beams. Since the flow-through holes narrow the clear flow area in the area of the perforated plate, the water flowing through in the flow-through holes experiences an increase in speed, which causes a negative pressure on the outflow side of the perforated plate according to the Bernoulli equation. By the negative pressure generated on the downstream side of the perforated plate ambient air is sucked in, which penetrate through openings provided in the housing ventilation openings in the housing interior of the jet regulator housing and mixed there with the water flowing through. So that the flowing water is divided by the perforated plate with little noise in individual beams is in the off DE 30 00 799 A1 previously provided jet regulator, inter alia, provided that the flow holes have a polygonal cross-section hole portion, which is followed by a cross-section increasingly extended and downstream cylindrical portion of the hole (see FIG. 4 in DE 30 00 799 A1 ). Through such, different sections having flow holes in each of the flow holes a circular cross-section and linear outflowing single beam is generated.

Aus der EP 1 273 724 B1 (= DE 601 01 909 T2 ) kennt man bereits einen Strahlregler mit einem Strahlreglergehäuse, in dessen Gehäuseinnenraum eine Lochplatte vorgesehen ist, die Durchflußlöcher hat, welche in Durchflußrichtung einen gleichbleibenden lichten Querschnitt aufweisen. Der Lochplatte ist ein Prallkonus in Durchströmrichtung nachgeschaltet, der eine Einschnürung im Durchflußquerschnitt des vorbekannten Strahlreglers bildet. Die in der Lochplatte erzeugten Einzelstrahlen können die Umgebungsluft im Gehäuseinnenraum des Strahlreglergehäuses mit sich reißen und treffen anschließend derart auf der Schrägfläche des Prallkonus auf, dass die belüfteten Einzelstrahlen mit der mitgerissenen Luft aufgebrochen und durchmischt werden.From the EP 1 273 724 B1 (= DE 601 01 909 T2 ) is already known a jet regulator with a jet regulator housing, in the housing interior a perforated plate is provided which has flow holes, which have a constant clear cross-section in the flow direction. The perforated plate is followed by a baffle cone in the flow direction, which forms a constriction in the flow area of the previously known jet regulator. The individual beams generated in the perforated plate can tear the ambient air in the housing interior of the jet regulator housing with it and then hit on the inclined surface of the impact cone so that the ventilated individual jets are broken up and mixed with the entrained air.

Die vorbekannten Strahlregler setzen jedoch einen gewissen Durchfluß und einen ausreichenden Wasserdruck im Leitungsnetz voraus, damit auf der Abströmseite der als Strahlzerleger dienenden Lochplatte ein ausreichender Unterdruck erzeugt wird, um Umgebungsluft in den Gehäuseinnenraum des Strahlreglergehäuses zu saugen. Demgegenüber ist der bei geringem Durchfluß und niedrigen Wasserdrücken gebildete Unterdruck meist nicht ausreichend, um die Umgebungsluft mit dem durchströmenden Wasser vermischen zu können.However, the prior art jet regulators require a certain flow and sufficient water pressure in the pipeline network, so that sufficient negative pressure is generated on the downstream side of serving as a jet separator perforated plate to suck ambient air into the housing interior of the jet regulator housing. In contrast, the negative pressure formed at low flow and low water pressures is usually not sufficient to the ambient air with the flowing through To be able to mix water.

Es besteht daher die Aufgabe, einen Strahlregler der eingangs erwähnten Art zu schaffen, der auch bei geringem Durchfluß und/oder niedrigen Wasserdrücken, wie sie beispielsweise auch zu Wassersparzwecken häufig angestrebt werden, einen ausreichend belüfteten und dementsprechend perlend-weichen Wasserstrahl zu erzeugen vermag. Dabei wird auch die Erzeugung eines möglichst voluminösen Strahles angestrebt, der für den Benutzer sich visuell und haptisch nicht vom gewohnten Stand der Technik unterscheidet, wobei der erfindungsgemäße Strahlregler vorzugsweise austauschbar mit den bekannten Strahlreglerausführungen sein soll.It is therefore an object to provide a jet regulator of the type mentioned, which is also at low flow and / or low water pressures, as they are often sought, for example, for water saving purposes, a sufficiently ventilated and accordingly perlender-soft water jet is able to produce. In this case, the generation of a possible voluminous beam is sought, which does not differ visually and haptically from the usual state of the art for the user, the jet regulator according to the invention should preferably be interchangeable with the known jet regulator designs.

Die erfindungsgemäße Lösung dieser Aufgabe besteht bei dem Strahlregler der eingangs erwähnten Art in der Merkmalskombination von Anspruch 1. Der erfindungsgemäße Strahlregler hat ein Strahlreglergehäuse, in dessen Gehäuseinnenraum eine sich beispielsweise über den Gehäusequerschnitt erstreckende Lochplatte vorgesehen ist. Die Lochplatte hat eine Mehrzahl von Durchflußlöchern, die zum Aufteilen des durchströmenden Wassers bestimmt sind. Zumindest eines der in der Lochplatte vorgesehenen Durchflußlöcher erweitert sich zu seiner Abströmseite hin und vorzugsweise bis zur Abströmseite hin zunehmend kegelförmig oder konisch. Durch das kegelförmige oder konische Aufspreizen des aus der Lochplatte austretenden Wassers kann sich dieses selbst bei geringen Durchflüssen und niedrigen Wasserdrücken praktisch über den gesamten Gehäusequerschnitt des Strahlreglergehäuses mit der in das Strahlreglergehäuse eingesaugten Umgebungsluft vermischen.The inventive solution to this problem is in the jet regulator of the type mentioned in the combination of features of claim 1. The jet regulator according to the invention has a jet regulator housing, in the housing interior is provided, for example, over the housing cross-section extending perforated plate. The perforated plate has a plurality of flow holes, which are intended for dividing the water flowing through. At least one of the provided in the perforated plate Flow holes expand towards its downstream side, and preferably to the downstream side increasingly conical or conical. As a result of the conical or conical spreading of the water emerging from the perforated plate, it can mix with the ambient air sucked into the jet regulator housing, even at low flow rates and low water pressures, practically over the entire housing cross section of the jet regulator housing.

Dabei wird die gute Luftdurchmischung des durchströmenden Wassers auch bei geringen Durchflüssen und niedrigen Wasserdrücken zusätzlich begünstigt, wenn zumindest ein Durchflußloch sich zu seiner Abströmseite hin derart kegelförmig oder konisch erweitert, dass der aus dem Durchflußloch austretende und durch die Kegelform oder die Konizität sich erweiternde Einzelstrahl sich im Gehäuseinnenraum noch vor dem Auftreffen von Einzelstrahlen auf wenigstens ein im Gehäuseinnenraum angeordnetes Strahlformteil mit dem Einzelstrahl wenigstens einen benachbarten Durchflußloches durchmischt.In this case, the good air mixing of the water flowing through is favored even at low flow rates and low water pressures, if at least one flow hole to such a conical or conical widened to its downstream side, that emerging from the flow hole and by the conical shape or conicity widening single beam itself in the housing interior even before the impingement of individual jets on at least one disposed in the housing interior beam molding with the single beam at least one adjacent Durchflußloches mixed.

Es kann weiter erfindungsgemäß vorgesehen sein, dass auf der Abströmseite der Lochplatte im Strahlreglergehäuse und/oder an der Abströmstirnfläche des Strahlreglergehäuses Strömungshindernisse vorgesehen sind, die dort in einem zentralen oder mittigen Bereich angeordnet oder konzentriert sind und die das durchströmende Wasser in eine äußere Ringzone umlenken, die demgegenüber keine oder eine geringere Anzahl oder Gesamtfläche von Strömungshindernissen aufweist. Um den Strahlregler mit einem Strahlreglergehäuse zu schaffen, das aus Kompatibilitätsgründen in seinen Abmessungen den Abmessungen handelsüblicher Strahlregler entspricht und um dennoch auch bei geringen Durchflüssen einen im Querschnitt vergleichbar voluminös erscheinenden Wasserstrahl zu formen, wird das durchströmende Wasser mittels der Strömungshindernisse von einem zentralen oder mittigen Bereich aus zumindest teilweise auch in eine äußere Ringzone umgelenkt, die den Außenumfang des austretenden Wasserstrahles formt.It may further be provided according to the invention that flow obstacles are provided on the outflow side of the perforated plate in the jet regulator housing and / or on the Abströmstirnfläche the jet regulator housing, which are arranged or concentrated there in a central or central region and redirect the water flowing through into an outer annular zone, on the other hand has no or a smaller number or total area of flow obstacles. In order to create the jet regulator with a jet regulator housing, which corresponds in terms of compatibility reasons in its dimensions to the dimensions of commercially available jet regulators, and still at low flow rates, a water jet which appears comparably voluminous in cross-section To form, the water flowing through the flow obstacles from a central or central area at least partially deflected into an outer annular zone, which forms the outer periphery of the exiting water jet.

Ein vorteilhaftes Ausführungsbeispiel gemäß der Erfindung sieht vor, dass auf der Abströmseite der Lochplatte mit Abstand von dieser am Gehäuseinnenumfang eine umlaufende Prallschräge vorgesehen ist, die den lichten Gehäusequerschnitt in diesem Bereich in Strömungsrichtung zunehmend verengt. Bei dieser vorteilhaften Ausführungsform trifft das aus den Durchflußlöchern austretende und bereits mit Luft angereicherte Wasser mit Abstand nach der Lochplatte auf einer Prallschräge auf, die das bereits derart aufbereitete Wasser noch zusätzlich vermischt und aufteilt, bevor das derart mit Luft angereicherte Wasser als homogener, nicht-spritzender und perlend-weicher Wasserstrahl aus dem Strahlregler austreten kann.An advantageous embodiment according to the invention provides that on the downstream side of the perforated plate at a distance from this on the housing inner circumference a circumferential baffle slope is provided, which increasingly narrows the clear housing cross-section in this area in the flow direction. In this advantageous embodiment, the exiting from the flow holes and already enriched with air water meets at a distance to the perforated plate on a baffle, which additionally mixes and divides the already treated water before the thus enriched with air water as a homogeneous, non- spouting and pearly-soft water jet can escape from the jet regulator.

Eine besonders einfach herstellbare Ausführungsform gemäß der Erfindung sieht vor, dass die Prallschräge die Zuströmseite eines Wandungsabschnitts bildet, der als zumindest eine im Längsschnitt wellenförmige Einschnürung ausgestaltet ist.A particularly easy to manufacture embodiment according to the invention provides that the baffle slope forms the inflow side of a Wandungsabschnitts, which is configured as at least one wavy constriction in longitudinal section.

Dabei kann die Prallschräge als innenumfangsseitige Ausformung oder innenumfangsseitiger Vorsprung der Gehäuseumfangswandung ausgestaltet und mit dem Strahlreglergehäuse oder einem Strahlreglergehäuseteil einstückig verbunden sein.In this case, the impact bevel can be designed as an inner peripheral side projection or inner peripheral side projection of the housing peripheral wall and can be integrally connected to the jet regulator housing or a jet regulator housing part.

Bevorzugt wird jedoch eine Ausführung, bei der die Prallschräge als Wandungsabschnitt eines in das Strahlreglergehäuse einsetzbaren ringförmigen oder hülsenförmigen Einsetzteiles ausgebildet ist.However, an embodiment in which the baffle slope is preferred as a wall section of an annular or sleeve-shaped insertion part which can be inserted into the jet regulator housing is preferred is trained.

Um auch in das Gehäuseinnere des Strahlreglergehäuses zumindest ein Strahlformteil einsetzen zu können, selbst wenn die als Strahlzerleger dienende Lochplatte an das Strahlreglergehäuse einstückig angeformt ist, ist es vorteilhaft, wenn das Strahlreglergehäuse mehrteilig ausgestaltet ist und zumindest zwei, vorzugsweise lösbar miteinander verbindbare Gehäuseteile hat.In order to use at least one beam molding in the housing interior of the jet regulator housing, even if the perforated plate serving as a jet splitter is integrally formed on the jet regulator housing, it is advantageous if the jet regulator housing is designed in several parts and has at least two, preferably releasably connectable housing parts.

Dabei sehen besonders vorteilhafte Ausführungsformen gemäß der Erfindung, vor, dass die Prallschräge am Gehäuseinnenumfang eines abströmseitigen Gehäuseteiles einstückig angeformt ist und/oder dass die Lochplatte in dem Gehäuseinnenraum eines zuströmseitigen Gehäuseteiles einstückig eingeformt ist.In this case, particularly advantageous embodiments according to the invention, provide that the impact bevel is integrally formed on the housing inner circumference of a downstream housing part and / or that the perforated plate is integrally formed in the housing interior of an inflow-side housing part.

Zusätzlich zu oder vorzugsweise statt einer Prallschräge kann der Lochplatte in Strömungsrichtung wenigstens eine Netz- oder Gitterstruktur nachgeschaltet sein. Das aus den Durchflußlöchern kegelförmig oder konisch austretende und auf der wenigstens einen Netz- oder Gitterstruktur auftreffende Wasser wird dort abgebremst und mit den nebenliegenden zerlegten Anteilen des aus den benachbarten Durchflußlöchern austretenden Wassers zerlegt, um anschließend als weicher Gesamtstrahl aus dem Strahlregler austreten zu können.In addition to or preferably instead of a baffle slope, the perforated plate can be connected downstream of at least one mesh or lattice structure in the flow direction. The tapered or conically emerging from the flow holes and impinging on the at least one network or lattice water is braked there and decomposed with the adjacent disassembled portions of emerging from the adjacent flow holes water to then emerge as a soft overall beam from the jet regulator can.

Zwar kann eine solche Gitterstruktur auch durch ein eingelegtes Metallsieb gebildet werden, das aus zwei Scharen vorzugsweise rechtwinklig verwobener Metalldrähte gebildet ist, - bevorzugt wird jedoch eine Ausführungsform, bei der die Netz- oder Gitterstruktur aus zwei Scharen, an Kreuzungsknoten aneinander kreuzenden Stegen gebildet ist. Eine solche Netz- oder Gitterstruktur, die aus zwei Scharen, an Kreuzungsknoten einander kreuzenden Stegen gebildet ist, lässt sich auf einfache Weise auch als Kunststoffspritzgußteil herstellen.Although such a lattice structure can also be formed by an inserted metal mesh, which is formed from two sets of preferably rectangularly interwoven metal wires, - preferred is an embodiment in which the network or lattice structure of two flocks, at intersection nodes intersecting webs is formed. Such a network or lattice structure, consisting of two flocks, at crossing nodes formed crossing webs can be produced in a simple manner as a plastic injection molded part.

Dabei sieht eine bevorzugte Ausführungsform gemäß der Erfindung vor, dass die wenigstens eine, der Lochplatte in Strömungsrichtung nachgeschaltete Netzstruktur aus radialen Stegen und damit an Kreuzungsknoten kreuzenden konzentrischen Stegen gebildet ist.In this case, a preferred embodiment according to the invention provides that the at least one, the perforated plate in the flow direction downstream network structure of radial webs and thus crossing at crossing nodes concentric webs is formed.

Um die Zerlegung des von der Lochplatte kommenden Wassers noch zusätzlich zu begünstigen, kann es vorteilhaft sein, wenn der Lochplatte in Strömungsrichtung wenigstens zwei voneinander beabstandete Netz- oder Gitterstrukturen nachgeschaltet sind.In order to further promote the decomposition of the water coming from the perforated plate, it may be advantageous if the perforated plate is followed in the direction of flow by at least two network or grid structures spaced apart from one another.

Dabei sieht eine bevorzugte Weiterbildung gemäß der Erfindung vor, dass wenigstens ein Durchflußloch in Strömungsrichtung mit einem radialen Steg der einen Netzstruktur sowie mit einem konzentrischen Steg einer benachbarten Netzstruktur fluchtet.In this case, a preferred development according to the invention provides that at least one flow hole in the flow direction is aligned with a radial web of a network structure and with a concentric web of an adjacent network structure.

Das in der Lochplatte aufgeteilte Wasser strömt aus den Durchflußlöchern der Lochplatte weniger als Einzelstrahl und vielmehr als Sprühkegel aus. Um die aus den Durchflußlöchern austretenden Sprühkegel noch weiter aufzubrechen und aufzuteilen, ist es vorteilhaft, wenn die jeweils mit einem Durchflußloch fluchtenden Stege sich in Strömungsrichtung des wenigstens einen Durchflußloches in den verschiedenen Ebenen dieser Netz- oder Gitterstrukturen überdecken oder kreuzen.The divided in the perforated plate water flows out of the flow holes of the perforated plate less than single jet and rather than spray cone. In order to further break up and divide the spray cones emerging from the flow holes, it is advantageous if the webs each aligned with a flow hole overlap or intersect in the flow direction of the at least one flow hole in the various planes of these mesh or grid structures.

Um den erfindungsgemäßen Strahlregler mit vergleichsweise geringem Aufwand beispielsweise aus einzelnen Kunststoffteilen herstellen zu können, kann es vorteilhaft sein, wenn jede Netz- oder Gitterstruktur durch ein in den Gehäuseinnenraum des Strahlreglergehäuses einsetzbares Einsetzteil gebildet ist.In order to produce the jet regulator according to the invention with relatively little effort, for example, from individual plastic parts, it may be advantageous if each Mesh or grid structure is formed by an insertable into the housing interior of the jet regulator housing insert.

Dabei sieht eine bevorzugte Ausführungsform vor, dass jedes Einsetzteil außenumfangsseitig eine umlaufende Ringwandung hat, an welche Stege der Netz- oder Gitterstruktur gehalten und vorzugsweise einstückig angeformt sind.In this case, a preferred embodiment provides that each insert part has on the outer peripheral side a circumferential annular wall, to which webs of the mesh or grid structure are held and preferably integrally formed.

Das Aufbrechen und Zerteilen der aus den Durchflußlöchern der Lochplatte austretenden Sprühkegel wird noch begünstigt, wenn zumindest die konzentrischen Stege und vorzugsweise auch die radialen Stege einer in Strömungsrichtung vorderen Netzstruktur im Vergleich zu den Stegen einer in Strömungsrichtung abströmseitig benachbarten Netzstruktur eine gleiche oder kleinere Stegdicke aufweist.The breaking up and dividing of the spray cone emerging from the throughflow holes of the perforated plate is further promoted if at least the concentric webs and preferably also the radial webs of a network structure in front in the direction of flow has an equal or smaller web thickness compared to the webs of a network structure adjacent downstream.

Die in der Lochplatte vorgesehenen Durchflußlöcher können auf konzentrischen Lochkreisen angeordnet sein. Bei dem erfindungsgemäßen Strahlregler ist vorgesehen, dass die Lochplatte eine zentrale lochfreie Prallfläche hat, die zumindest eine Ringwandung umgrenzt, dass die zumindest eine Ringwandung in radialer Richtung orientierte Durchtrittsöffnungen aufweist, und dass auf der in der Prallflächen-Ebene angeordneten Seite der Durchflußöffnungen jeweils ein Durchflußloch der Lochplatte vorgesehen ist. Das auf diese Weise im Bereich der Ringwandung umgelenkte Wasser wird zunächst abgebremst, zur Seite hin ausgelenkt und durch gegebenenfalls in gegensinnigen Richtungen aufeinander zuströmende Teilströme durchmischt, bevor es durch die Durchflußlöcher der Lochplatte hindurchfließen und auf der Abströmseite der Lochplatte in Form einer entsprechenden Anzahl von Sprühkegeln austreten kann.The flow holes provided in the perforated plate can be arranged on concentric hole circles. In the jet regulator according to the invention it is provided that the perforated plate has a central hole-free baffle which defines at least one annular wall, that the at least one annular wall has radially oriented passage openings, and that on the arranged in the baffle plane side of the flow openings each have a flow hole the perforated plate is provided. The deflected in this way in the region of the ring wall water is first braked, deflected to the side and mixed by optionally in opposite directions to each other inflowing streams before flowing through the through holes of the perforated plate and on the downstream side of the perforated plate in the form of a corresponding number of Sprühkegeln can escape.

Um das im Gehäuseinnenraum des Strahlreglergehäuses mit Umgebungsluft durchmischte und entsprechend aufgewirbelte Wasser auf der Abströmseite des Strahlreglers wieder zu einem homogenen Gesamtstrahl zu formen und um das aus dem Strahlregler austretende Wasser in einer abströmseitigen Homogenisierungseinrichtung zu einem nicht-spritzend austretenden Wasserstrahl formen zu können, ist es zweckmäßig, wenn die abströmseitige Stirnfläche des Strahlreglergehäuse durch eine Netz- oderIn order to reshape in the housing interior of the jet regulator housing with ambient air and correspondingly fluidized water on the outflow side of the jet regulator back to a homogeneous overall jet and to be able to shape the emerging from the jet regulator water in a downstream homogenizer to a non-squirting emerging water jet, it is expedient if the outflow-side end face of the jet regulator housing by a net or

Wabenzellenstruktur gebildet ist, und wenn die die abströmseitige Stirnfläche bildende Netz- oder Wabenzellenstruktur entweder mit dem Strahlreglergehäuse unlösbar verbunden und insbesondere einstückig angeformt oder durch ein in das Strahlreglergehäuse einsetzbares Einlegeteil gebildet ist.Honeycomb cell structure is formed, and when the outgoing end face forming net or honeycomb cell structure either inextricably connected to the jet regulator housing and in particular integrally formed or formed by an insertable into the jet regulator housing insert.

Die Vergleichmäßigung des aus dem Strahlregler austretenden Gesamtstrahles wird noch begünstigt, wenn die die abströmseitige Stirnfläche des Strahlreglergehäuses bildenden Netz- oder Wabenzellenstruktur durch Stege gebildet ist, die sich zumindest in einem abströmseitigen Teilbereich in Strömungsrichtung verjüngen. Die Erfindung sieht vor, dass der erfindungsgemäße Strahlregler als belüfteter Strahlregler ausgebildet ist, in dessen Gehäuseinnenraum zumindest eine Belüftungsöffnung mündet, die den Gehäuseinnenraum mit der Atmosphäre verbindet. Damit die zumindest eine Belüftungsöffnung den Gehäuseinnenraum mit der Atmosphäre verbinden kann, kann in einem doppelwandigen Teilbereich des Strahlreglergehäuses oder in einem das Strahlreglergehäuse umgrenzenden Ringspalt wenigstens ein Belüftungskanal vorgesehen sein, der zur Atmosphäre hin offen ausgestaltet ist. Weiterbildungen gemäß der Erfindung ergeben sich aus den Ansprüchen in Verbindung mit den Figuren und der Figurenbeschreibung. Nachstehend wird die vorliegende Erfindung anhand bevorzugter Ausführungsbeispiele noch näher beschrieben.The equalization of the exiting from the jet regulator overall jet is still favored when the downstream or the end face of the jet regulator housing forming net or honeycomb cell structure is formed by webs, which taper at least in a downstream partial region in the flow direction. The invention provides that the jet regulator according to the invention is designed as a ventilated jet regulator, in whose housing interior at least one ventilation opening opens, which connects the housing interior with the atmosphere. In order for the at least one ventilation opening to be able to connect the interior of the housing to the atmosphere, at least one ventilation channel can be provided in a double-walled section of the jet regulator housing or in an annular gap surrounding the jet regulator housing, which is designed to be open towards the atmosphere. Further developments according to the invention will become apparent from the claims in conjunction with the figures and the description of the figures. Hereinafter, the present invention will be described in more detail with reference to preferred embodiments.

Es zeigt:

Fig. 1
einen, in einem perspektivischen Teil-Längsschnitt gezeigten Strahlregler, der am Außenumfang seines Strahlreglergehäuses ein Außengewinde trägt, mit dem der Strahlregler in ein Innengewinde am Wasserauslauf einer sanitären Auslaufarmatur lösbar eingeschraubt werden kann,
Fig. 2
den Strahlregler aus Figur 1 in einem Längsschnitt, wobei im Gehäuseinnenraum des Strahlreglergehäuses eine mit einem zuströmseitigen Gehäuseteil einstückig verbundene Lochplatte zu erkennen ist, die Durchflußlöcher trägt, welche sich zur Abströmseite der Lochplatte hin kegelförmig oder konisch erweitern,
Fig. 3
den Strahlregler aus Figur 1 und 2 in einem Längsschnitt durch Schnittebene III-III aus Figur 2, wobei durch die Durchflußlöcher der quergeschnittenen Lochplatte auch die der Lochplatte nachfolgenden Strukturen zu erkennen sind,
Fig. 4
eine Detailansicht der in Figur 3 gezeigten Querschnittsdarstellung im Bereich eines Durchflußloches der quergeschnittenen Lochplatte,
Fig. 5
den Strahlregler aus Figur 1 bis 4 in einer auseinandergezogenen perspektivischen Einzelteildarstellung,
Fig. 6
einen, mit dem Strahlregler gemäß Figur 1 bis 5 vergleichbar ausgestalteten Strahlregler, wobei der in Figur 6 gezeigte Strahlregler mit Hilfe eines hier nicht weiter gezeigten Auslaufmundstücks am Wasserauslauf einer sanitären Auslaufarmatur montierbar ist und wobei die abströmseitige Stirnfläche des in Figur 6 gezeigten Strahlreglers durch ein in das Strahlreglergehäuse einsetzbares Einsetzteil gebildet wird, welches eine Netzstruktur aufweist,
Fig. 7
die zuströmseitige Ansicht eines weiteren Strahlreglers, wobei diese zuströmseitige Ansicht vor allem ein dem Strahlregler zuströmseitig vorgeschaltetes Vorsatz- oder Filtersieb zeigt,
Fig. 8
den Strahlregler aus Figur 7 in einem Längsschnitt durch Schnittebene VIII-VIII aus Figur 7, wobei zu erkennen ist, dass der in Figur 8 gezeigte Strahlregler eine von der Abströmseite der Lochplatte beabstandete Prallschräge hat, die eine den lichten Durchflußquerschnitt des Strahlreglers in Strömungsrichtung verengende Einschnürung bildet,
Fig. 9
die Lochplatte des in Figur 7 und 8 gezeigten Strahlreglers in einem perspektivischen Teil-Längsschnitt,
Fig. 10
die abströmseitige Stirnfläche des in den Figuren 7 bis 9 gezeigten Strahlreglers in einer Unteransicht,
Fig. 11
den Stahlregler gemäß den Figuren 7 bis 10 in einer auseinandergezogenen perspektivischen Einzelteildarstellung,
Fig. 12
den Strahlregler aus den Figuren 7 bis 11 in einem vergrößerten Längsschnitt, wobei die Strömungsrichtung des den Strahlregler durchfließenden Wassers durch entsprechende Pfeile angedeutet ist, und
Fig. 13
die Lochplatte des in den Figuren 7 bis 12 gezeigten Strahlreglers in einem vergrößerten perspektivischen Teil-Längsschnitt.
It shows:
Fig. 1
one, in a perspective partial longitudinal section shown jet regulator, which carries on the outer circumference of its jet regulator housing an external thread with which the jet regulator can be detachably screwed into an internal thread at the water outlet of a sanitary outlet fitting,
Fig. 2
off the jet regulator FIG. 1 in a longitudinal section, wherein in the housing interior of the jet regulator housing a perforated plate integrally connected to an inflow-side housing part can be seen, which carries through-holes which extend conically or conically towards the downstream side of the perforated plate,
Fig. 3
off the jet regulator FIGS. 1 and 2 in a longitudinal section through section plane III-III FIG. 2 in which the through-holes of the cross-cut perforated plate also show the structures following the perforated plate,
Fig. 4
a detailed view of in FIG. 3 shown cross-sectional view in the region of a flow hole of the cross-cut perforated plate,
Fig. 5
off the jet regulator Figure 1 to 4 in an exploded perspective detail view,
Fig. 6
one, with the jet regulator according to Figure 1 to 5 similarly designed jet regulator, wherein the in FIG. 6 shown jet regulator with the aid of an outlet nozzle not shown here at the water outlet of a sanitary outlet fitting is mounted and wherein the downstream end face of in FIG. 6 shown jet regulator is formed by an insertable into the Strahlreglergehäuse insert part, which has a network structure,
Fig. 7
the inflow-side view of a further jet regulator, wherein this inflow-side view primarily shows an attachment or filter screen upstream of the jet regulator on the upstream side,
Fig. 8
off the jet regulator FIG. 7 in a longitudinal section through section plane VIII-VIII FIG. 7 , where it can be seen that the in FIG. 8 shown jet regulator has a spaced from the downstream side of the perforated plate baffle slope, which forms a narrow flow area of the jet regulator in the flow direction narrowing constriction,
Fig. 9
the perforated plate of in FIGS. 7 and 8 shown jet regulator in a perspective partial longitudinal section,
Fig. 10
the downstream end face of the in the FIGS. 7 to 9 shown jet controller in a bottom view,
Fig. 11
the steel regulator according to FIGS. 7 to 10 in an exploded perspective detail view,
Fig. 12
the jet regulator from the FIGS. 7 to 11 in an enlarged longitudinal section, wherein the flow direction of the jet regulator flowing through the water is indicated by corresponding arrows, and
Fig. 13
the perforated plate in the FIGS. 7 to 12 shown Beam regulator in an enlarged perspective partial longitudinal section.

In den Figuren 1 bis 13 sind drei Ausführungsbeispiele 1, 10, 100 eines Strahlreglers dargestellt. Die Strahlregler-Ausführungen 1, 10, 100 sind dazu bestimmt, am Wasserauslauf einer sanitären Auslaufarmatur montiert zu werden, um dort einen homogenen und seitlich nicht-spritzenden Wasserstrahl zu formen. Um den Wasserstrahl als perlend-weichen Wasserstrahl austreten zu lassen, sind die Strahlregler-Ausführungen 1, 10, 100 als belüfteter Strahlregler ausgebildet, bei dem das durchströmende Wasser mit Umgebungsluft durchmischt und angereichert wird.In the FIGS. 1 to 13 three embodiments 1, 10, 100 of a jet regulator are shown. The jet regulator designs 1, 10, 100 are intended to be mounted on the water outlet of a sanitary outlet fitting in order to form a homogeneous and laterally non-splashing water jet there. In order to allow the jet of water to emerge as a pearly-soft water jet, the jet regulator designs 1, 10, 100 are designed as aerated jet regulators, in which the water flowing through is mixed with ambient air and enriched.

Die Strahlregler-Ausführungen 1, 10, 100 weisen ein hülsenförmiges und im Querschnitt rundes Strahlreglergehäuse 2 auf. Die in den Figuren 1 bis 5 gezeigte Strahlreglerausführung 1 weist am Gehäuseaußenumfang des Strahlreglergehäuses 2 ein Außengewinde 3 auf, das mit einem Innengewinde zusammenwirkt, welches an dem Wasserauslauf der hier nicht weiter gezeigten Auslaufarmatur innenumfangsseitig angeordnet ist. Dabei lässt sich die hier dargestellte Strahlregler-Ausführung 1 derart in den Wasserauslauf einschrauben, dass die abströmseitige Stirnfläche des Strahlreglergehäuses 2 mit dem abströmseitigen Stirnrand der Auslaufarmatur praktisch in einer Ebene angeordnet ist.
Demgegenüber sind die in den Figuren 6 bis 13 gezeigten Strahlreglerausführungen 10, 100 mit einem hier nicht weiter dargestellten hülsenförmigen Auslaufmundstück am Wasserauslauf der Auslaufarmatur zu montieren, nachdem der Strahlregler 10, 100 von der zuströmseitigen Hülsenöffnung des Auslaufmundstücks aus in dessen Hülseninnenraum eingesetzt wurde, bis ein Ringabsatz 4 am Außenumfang des Strahlreglergehäuses 2 auf einen im Auslaufmundstück innenumfangsseitig angeordneten Auflager aufliegt.
The jet regulator embodiments 1, 10, 100 have a sleeve-shaped and in cross section round jet regulator housing 2. The in the FIGS. 1 to 5 shown Strahlreglerausführung 1 has on the housing outer circumference of the jet regulator housing 2 on an external thread 3, which cooperates with an internal thread, which is arranged on the inner peripheral side at the water outlet of the outlet fitting not shown here. In this case, the jet regulator embodiment 1 illustrated here can be screwed into the water outlet in such a way that the downstream end face of the jet regulator housing 2 is arranged practically in one plane with the downstream end edge of the outlet fitting.
In contrast, those in the FIGS. 6 to 13 shown jet regulator versions 10, 100 with a sleeve-shaped outlet nozzle not shown here to assemble at the water outlet of the outlet fitting after the jet regulator 10, 100 was inserted from the inflow-side sleeve opening of the outlet mouthpiece in the sleeve interior to an annular shoulder 4 on the outer circumference of the jet regulator housing 2 a bearing in the outlet mouthpiece inner peripheral side bearing rests.

Im Gehäuseinnenraum der Strahlregler 1, 10, 100 ist eine Lochplatte 5 vorgesehen, die eine Mehrzahl von Durchflußlöchern 6 trägt. Zumindest ein Durchflußloch 6 und vorzugsweise alle Durchflußlöcher 6 der Lochplatte 5 erweitern sich zumindest in einem abströmseitigen Teilbereich zu ihrer Abströmseite hin kegelförmig oder konisch. Die in der Lochplatte 5 vorgesehenen Durchflußlöcher 6 sind zum Aufteilen des durchströmenden Wassers bestimmt. Durch das kegelförmige oder konische Aufspreizen des aus der Lochplatte austretenden Wassers kann sich dieses selbst bei geringen Durchflußleistungen und niedrigen Wasserdrücken praktisch über den gesamten Querschnitt des Strahlreglergehäuses 2 mit der in das Strahlreglergehäuse eingesangten Umgebungsluft vermischen.In the housing interior of the jet regulators 1, 10, 100, a perforated plate 5 is provided, which carries a plurality of Durchflußlöchern 6. At least one through-hole 6 and preferably all through-holes 6 of the perforated plate 5 extend conically or conically at least in an outflow-side partial region to their downstream side. The provided in the perforated plate 5 through holes 6 are intended for dividing the water flowing through. Due to the conical or conical spreading of the water emerging from the perforated plate, it can mix with the ambient air trapped in the jet regulator housing, even at low flow rates and low water pressures practically over the entire cross section of the jet regulator housing 2.

Dabei erweitern sich die Durchflußlöcher 6 derart kegelförmig oder konisch, dass der aus den Durchflußlöchern 6 austretende und durch die Kegelform oder die Konizität sich erweiternde Wasserstrahl sich im Gehäuseinnenraum noch vor dem Auftreffen von Einzelstrahlen auf wenigstens ein im Gehäuseinnenraum angeordnetes-Strahlformteil mit dem Einzelstrahl wenigstens eines benachbarten Durchflußloches durchmischt.The flow holes 6 extend conically or conically in such a way that the water jet emerging from the flow holes 6 and widening due to the conical shape or conicity becomes at least one beam-shaped part with at least one beam preform arranged in the interior of the housing prior to the impact of individual jets on at least one beam molding part mixed through adjacent flow hole.

Um das durchströmende Wasser noch zusätzlich aufteilen und mit Umgebungsluft durchmischen zu können, ist bei den in den Figuren 1 bis 6 gezeigten Strahlregler-Ausführungen 1, 10 der Lochplatte 2 in Strömungsrichtung wenigstens eine und vorzugsweise zumindest zwei Netzstrukturen nachgeschaltet, die aus radialen Stegen 7 und damit an Kreuzungsknoten 8 kreuzenden konzentrischen Stegen 9 gebildet sind.In order to divide the water flowing through even more and to mix with ambient air, is in the in the FIGS. 1 to 6 shown aerator embodiments 1, 10 of the perforated plate 2 in the flow direction downstream of at least one and preferably at least two network structures, which are formed of radial webs 7 and thus crossing nodes 8 concentric webs 9.

In den Figuren 3 und 4 ist beispielhaft erkennbar, dass wenigstens ein Durchflußloch 6 und vorzugsweise alle Durchflußlöcher 6 in Strömungsrichtung mit einem radialen Steg 7 der einen Netzstruktur und hier der in Strömungsrichtung nachgeschalteten Netzstruktur sowie mit einem konzentrischen Steg 9 einer benachbarten und hier der zuströmseitig angeordneten Netzstruktur fluchten. Die jeweils mit einem der Durchflußlöcher 6 fluchtenden Stege 7, 9 decken oder kreuzen sich hier in einem zentralen oder mittigen Bereich des zugeordneten Durchflußloches 6 in den verschiedenen Ebenen dieser Netzstrukturen.In the FIGS. 3 and 4 By way of example, it can be seen that at least one throughflow hole 6 and preferably all throughflow holes 6 are aligned in the flow direction with a radial web 7 of a network structure and here the network structure arranged downstream in the flow direction and with a concentric web 9 of an adjacent and here arranged on the inflow network structure. The respectively aligned with one of the flow holes 6 webs 7, 9 cover or intersect here in a central or central region of the associated Durchflußloches 6 in the different levels of these network structures.

Aus einem Vergleich der Figuren 2, 5 und 6 wird deutlich, dass jede der gemeinsam eine Strahlreguliereinrichtung bildenden Netzstrukturen durch ein in den Gehäuseinnenraum des Strahlreglergehäuses 2 einsetzbares Einsetzteil 11, 12 gebildet ist. Dabei hat jedes dieser Einsetzteile 11, 12 außenumfangsseitig eine umlaufende Ringwandung 13, an welche die sich mit den konzentrischen Stegen 9 kreuzenden radialen Stege 7 der Netzstruktur verbunden und hier einstückig angeformt sind.From a comparison of Figures 2 . 5 and 6 It is clear that each of the network structures forming a jet regulator device is formed by an insertion part 11, 12 which can be inserted into the housing interior of the jet regulator housing 2. Each of these insert parts 11, 12 has on the outer peripheral side a peripheral annular wall 13, to which the radial webs 7 of the network structure crossing with the concentric webs 9 are connected and integrally formed here.

In Figur 4 ist besonders gut erkennbar, dass zumindest die konzentrischen Stege 9 und vorzugsweise auch die radialen Stege 7 einer in Strömungsrichtung vorderen Netzstruktur im Vergleich zu den Stegen 9, 7 einer in Strömungsrichtung abströmseitig benachbarten Netzstruktur eine größere Stegdicke aufweisen. Auf diese Weise scheint sich jedes Durchflußloch 6 in der Lochplatte 5 in Durchströmrichtung in eine Mehrzahl weiterer kleinerer Durchflußöffnungen aufzuteilen.In FIG. 4 It can be seen particularly clearly that at least the concentric webs 9 and preferably also the radial webs 7 of a network structure in front in the direction of flow have a greater web thickness in comparison to the webs 9, 7 of a network structure adjacent downstream. In this way, each flow hole 6 in the perforated plate 5 in the flow direction appears to divide into a plurality of further smaller flow openings.

Aus einem Vergleich der Figuren 2, 5, 6, 8 und 9 ist erkennbar, dass die in den Strahlregler-Ausführungen 1, 10, 100 vorgesehenen Lochplatten 2 eine zentrale Prallfläche 14 haben, die von zumindest einer Ringwandung 15 umgrenzt wird. Diese Ringwandung 15 weist in radialer Richtung orientierte Durchtrittsöffnungen 16 auf, die hier über den Umfang der Ringwandung 15 voneinander beabstandet sind. Bodenseitig und somit auf der in der Prallflächen-Ebene angeordneten Seite der Durchtrittsöffnungen 16 ist jeweils eines der Durchflußlöcher 6 der Lochplatte 2 vorgesehen. Durch diese Umlenkung des anströmenden Wassers im Bereich der Durchflußlöcher 6 wird das Wasser abgebremst, zur Seite hin ausgelenkt und gegebenenfalls durch, in gegensinnige Richtungen aufeinander zuströmende Teilströme durchmischt, um anschließend in Folge der Verengung des Durchflußquerschnitts in den Durchflußlöchern 6 wieder eine Geschwindigkeitserhöhung zu erfahren. Gemäß der Bernoullischen Gleichung wird durch diese Geschwindigkeitserhöhung auf der Abströmseite der Lochplatte 5 ein Unterdruck erzeugt, mittels dem Umgebungsluft in den Gehäuseinnenraum des Strahlreglergehäuses 2 eingesaugt werden kann. In der Gehäuseumfangswandung des Strahlreglergehäuses 2 ist dazu zumindest eine auf der Abströmseite der Lochplatte 5 im Gehäuseinnenraum mündende Belüftungsöffnung 17 vorgesehen. Über die zentrale Prallfläche 14 hinaus kann zumindest eine, hier außenseitig umlaufende weitere Prallfläche 29 vorgesehen sein, die vorzugsweise in der Ebene der zentralen Prallfläche 14 angeordnet ist.From a comparison of Figures 2 . 5 . 6 . 8 and 9 it can be seen that the perforated plates 2 provided in the jet regulator embodiments 1, 10, 100 have a central baffle surface 14, which is bounded by at least one annular wall 15. This annular wall 15 has oriented in the radial direction through openings 16, which are spaced apart here over the circumference of the annular wall 15 from each other. On the bottom side and thus on the arranged in the baffle plane side of the passage openings 16 each one of the through holes 6 of the perforated plate 2 is provided. By this deflection of the inflowing water in the region of the flow holes 6, the water is braked, deflected to the side and optionally mixed by, in opposite directions to each other inflowing streams to then experience as a result of narrowing of the flow in the flow holes 6 again an increase in speed. According to the Bernoulli equation, a vacuum is generated by this speed increase on the outflow side of the perforated plate 5, by means of which ambient air can be sucked into the housing interior of the jet regulator housing 2. In the housing peripheral wall of the jet regulator housing 2, at least one ventilation opening 17 which opens out on the outflow side of the perforated plate 5 in the interior of the housing is provided for this purpose. Beyond the central baffle surface 14, at least one further baffle surface 29, which circulates on the outside, may be provided, which is preferably arranged in the plane of the central baffle surface 14.

Während die zumindest eine Belüftungsöffnung 17 bei der in Figur 1 bis 5 gezeigten Strahlreglerausführung 1 hier über einen doppelwandigen Abschnitt 18 der Gehäuse-Umfangswandung auf der Abströmseite des Strahlreglers 1 mit der Atmosphäre verbunden ist, durchsetzen bei den in den Figuren 6 bis 13 gezeigten Strahlreglerausführungen 10, 100 die Belüftungsöffnungen 17 das Strahlreglergehäuse 2 in radialer Richtung und sind an der Außenseite des Strahlreglergehäuses 2 mit einem Belüftungskanal verbunden, der als Ringspalt zwischen dem Gehäuseaußenumfang des Strahlreglergehäuses 2 und dem Innenumfang des Auslaufmundstücks gebildet wird und der zur abströmseitigen Stirnseite von Auslaufmundstück und Strahlregler 10, 100 zur Atmosphäre hin offen ist.While the at least one ventilation opening 17 at the in Figure 1 to 5 shown jet regulator embodiment 1 is connected here via a double-walled portion 18 of the housing peripheral wall on the downstream side of the jet regulator 1 with the atmosphere, prevail in the in the FIGS. 6 to 13 shown jet regulator embodiments 10, 100, the ventilation openings 17, the jet regulator housing 2 in the radial direction and are on the outside of the jet regulator housing 2 with a Belüftungskanal connected, which is formed as an annular gap between the housing outer circumference of the jet regulator housing 2 and the inner circumference of the outlet nozzle and which is open to the downstream end of the outlet nozzle and jet regulator 10, 100 to the atmosphere.

Statt der Einsetzteile 11, 12 weist die in Figur 7 bis 13 gezeigte Strahlregler-Aüsführung 100 auf der Abströmseite der Lochplatte 2 mit Abstand von dieser am Gehäuseinnenumfang eine umlaufende Prallschräge 19 auf, die den lichten Gehäusequerschnitt in diesem Bereich in Strömungsrichtung zunehmend verengt. Diese Prallschräge 19 wird durch die Zuströmseite eines als im Längsschnitt wellenförmige Einschnürung ausgestalteten Wandungsabschnitt gebildet. Der die Prallschräge 19 aufweisende Wandungsabschnitt ist hier als ein in das Strahlreglergehäuse 2 einsetzbares ring- oder hülsenförmiges Einsetzteil 20 ausgestaltet.Instead of the insert parts 11, 12, the in FIGS. 7 to 13 shown Strahlregler-Aüsführung 100 on the downstream side of the perforated plate 2 at a distance from this on the housing inner circumference a circumferential baffle slope 19, which increasingly narrows the clear housing cross-section in this area in the flow direction. This baffle slope 19 is formed by the inflow side of a wall section designed as a wavy constriction in longitudinal section. The wall portion having the baffle slope 19 is configured here as a ring-shaped or sleeve-shaped insertion part 20 which can be inserted into the jet regulator housing 2.

Aus einem Vergleich der Figuren 6 und 11 einerseits sowie der Figur 5 andererseits wird deutlich, dass die abströmseitige Stirnfläche der Strahlregler 1, 10, 100 durch eine Netzstruktur 22 oder eine Wabenzellenstruktur 21 gebildet ist. Während die die abströmseitige Stirnfläche der Strahlregler 1, 100 bildende Netz- oder Wabenzellenstruktur 22, 21 mit dem Strahlre-glergehäuse 2 unlösbar verbunden ist, ist die Auslaufstruktur 22 des in Figur 6 gezeigten Strahlreglers 10 durch ein in das Strahlreglergehäuse 2 einsetzbares Einlegeteil 23 gebildet. Aus einem Vergleich der Figuren 8 und 10 ist erkennbar, dass die die abströmseitige Stirnfläche des Strahlreglers 100 bildende Netzstruktur 22 durch radiale und konzentrische Stege 24, 25 gebildet ist, die sich zumindest in einem abströmseitigen Teilbereich in Strömungsrichtung verjüngen. Da diese Stege 24, 25 sich zumindest in einem abströmseitigen Teilbereich in Strömungsrichtung verjüngen, wird eine Homogenisierung und Vergleichmäßigung des durch die Netzstruktur aus dem Strahlreglergehäuse 2 austretenden Wassers in Form eines homogenen Gesamtstrahles zusätzlich begünstigt.From a comparison of FIGS. 6 and 11 on the one hand and the FIG. 5 On the other hand, it is clear that the downstream end face of the jet regulators 1, 10, 100 is formed by a mesh structure 22 or a honeycomb cell structure 21. While the net or honeycomb cell structure 22, 21 forming the outflow-side end face of the jet regulators 1, 100 is permanently connected to the jet regulator housing 2, the outlet structure 22 of the in-net structure FIG. 6 shown jet regulator 10 formed by an insertable into the jet regulator housing 2 insert 23. From a comparison of FIGS. 8 and 10 It can be seen that the network structure 22 forming the outflow-side end face of the jet regulator 100 is formed by radial and concentric webs 24, 25 which taper at least in an outflow-side subregion in the flow direction. Since these webs 24, 25 at least in a downstream Rejuvenate portion in the flow direction, a homogenization and homogenization of the exiting through the network structure of the jet regulator housing 2 water in the form of a homogeneous total beam is additionally favored.

In den Figuren 10 und 11 wird deutlich, dass auf der Abströmseite der Lochplatte im Strahlreglergehäuse und/oder - wie hier - an der Abströmstirnfläche des Strahlreglergehäuses 2 Strömungshindernisse vorgesehen sein können, die dort in einem zentralen oder mittigen Bereich angeordnet oder konzentriert sind und die das durchströmende Wasser in eine äußere Ringzone umlenken, die demgegenüber keine oder eine geringere Anzahl oder Gesamtfläche von Strömungshindernissen aufweist. Bei dem in den Figuren 10 und 11 gezeigten Strahlregler 100 werden diese Strömungshindernisse durch die konzentrischen Stege 25 gebildet, die an der Abströmstirnfläche des Strahlreglergehäuses 2 auf einen zentralen oder mittigen Bereich konzentriert sind, während eine äußere Ringzone frei von solchen konzentrischen Stegen ist.In the Figures 10 and 11 It is clear that 2 flow obstacles can be provided on the downstream side of the perforated plate in the jet regulator housing and / or - as here - at the Abströmstirnfläche the jet regulator housing, which are arranged or concentrated there in a central or central region and the water flowing through into an outer annular zone deflect, which in contrast has no or a smaller number or total area of flow obstacles. In the in the Figures 10 and 11 As shown in FIG. 2, these flow obstacles are formed by the concentric webs 25, which are concentrated at the outflow end face of the jet regulator housing 2 to a central or central area, while an outer ring zone is free from such concentric webs.

In den Figuren 5, 6 und 11 wird deutlich, dass das Strahlreglergehäuse 2 hier durch zwei miteinander lösbar verbindbare und vorzugsweise miteinander verrastbare Gehäuseteile 26, 27 gebildet ist, von denen hier das zuströmseitig vordere Gehäuseteil 26 mit der Lochplatte 6 einstückig verbunden ist. Damit die im Wasser eventuell mitgeführten Schmutzpartikel nicht die ordnungsgemäße Funktion des Strahlreglers beeinträchtigen können, ist dem Strahlreglergehäuse 2 ein Vorsatz- oder Filtersieb 28 vorgeschaltet, das hier lösbar am zuströmseitigen Gehäuseteil 26 gehalten ist. Dieses Vorsatz- oder Filtersieb 28 weist eine Vielzahl, im Querschnitt runder oder eckiger und insbesondere sechseckiger Filter- oder Sieböffnungen auf.In the Figures 5 . 6 and 11 It is clear that the jet regulator housing 2 is formed here by two housing parts 26, 27 which can be detachably connected to one another and are preferably latchable with one another, of which the front housing part 26 on the inflow side is integrally connected to the perforated plate 6. So that the dirt particles possibly entrained in the water can not impair the proper functioning of the jet regulator, the jet regulator housing 2 is preceded by an attachment or filter screen 28, which is held detachably on the inflow-side housing part 26 here. This attachment or filter screen 28 has a multiplicity of round or rectangular, in particular hexagonal, filter or sieve openings.

BezugszeichenlisteLIST OF REFERENCE NUMBERS

11
Strahlregler (gemäß den Figuren 1 bis 5)Jet regulator (according to the FIGS. 1 to 5 )
22
StrahlreglergehäuseFlow regulator housing
33
Außengewindeexternal thread
44
Ringabsatzannular shoulder
55
Lochplatteperforated plate
66
Durchflußlöcher (in der Lochplatte 5)Flow holes (in the perforated plate 5)
77
(radiale) Stege(radial) webs
88th
Kreuzungsknotenintersection node
99
(konzentrische) Stege(concentric) webs
1010
Strahlregler (gemäß Figur 6)Jet regulator (acc FIG. 6 )
1111
(zuströmseitiges) Einsetzteil(upstream) insert part
1212
(abströmseitiges) Einsetzteil(downstream) insert part
1313
Ringwandung (an den Einsetzteilen 11, 12)Ring wall (on the inserts 11, 12)
1414
Prallfläche (zentral auf der Lochplatte 5)Baffle (centrally on the perforated plate 5)
1515
Ringwandung (zuströmseitig auf der Lochplatte 5)Ring wall (on the inflow side on the perforated plate 5)
1616
Durchtrittsöffnungen (in der Ringwandung 15)Passage openings (in the annular wall 15)
1717
Belüftungsöffnung (im Strahlreglergehäuse 2)Ventilation opening (in the jet regulator housing 2)
1818
(doppelwandiger) Abschnitt (der Gehäuseumfangswandung)(double-walled) section (the housing peripheral wall)
1919
Prallschrägeimpact slope
2020
Einsetzteil (mit Prallschräge 19)Insertion part (with baffle slope 19)
2121
Wabenzellenstruktur (als abströmseitige Stirnfläche des Strahlreglers)Honeycomb cell structure (as a downstream face of the jet regulator)
2222
Netzstruktur (als abströmseitige Stirnfläche des Strahl reglers)Net structure (as the downstream face of the jet regulator)
2323
Einlegeteil (als abströmseitige Stirnfläche des Stahlreglers 10)Insert (as a downstream end face of the steel regulator 10)
2424
(radiale) Stege (der abströmseitigen Stirnfläche des Strahlreglers 100)(radial) webs (the downstream end face of the jet regulator 100)
2525
(konzentrische) Stege (an der abströmseitigen Stirnfläche des Strahlreglers 100)(concentric) webs (at the downstream end face of the jet regulator 100)
2626
(zuströmseitiges) Gehäuseteil(upstream) housing part
2727
(abströmseitiges) Gehäuseteil(downstream) housing part
2828
Vorsatz- oder FiltersiebAttachment or filter screen
2929
(außenseitig umlaufende) Prallfläche (der Lochplatte 5)(outside circumferential) baffle (the perforated plate 5)
100100
Strahlregler (gemäß den Figuren 7 bis 13)Jet regulator (according to the FIGS. 7 to 13 )

Claims (19)

  1. Jet regulator (1, 10, 100) comprising a jet regulator housing (2), in a housing interior of which a perforated plate (5) is provided having a plurality of through-flow holes (6) for dividing water flowing therethrough, wherein at least one through-flow hole (6), at least in an outflow-side hole section, widens in a tapered or conical manner towards the outflow side thereof, and the jet regulator is configured as an aerated jet regulator which has at least one aeration opening (17), characterised in that the perforated plate (5) has a central, hole-free impingement surface (14) which is bordered by at least one annular wall (15), in that the annular wall (15) has passage openings (16) oriented in a radial direction, in that in each case one through-flow hole (6) of the perforated plate (5) is provided on the side of the passage openings (16) which is arranged in an impingement surface plane, and in that the annular wall (15) is bordered, on the outer peripheral side, by a circumferential impingement surface (29), and in that the aeration opening (17) issues into the housing interior on the outflow side of the perforated plate (5) and connects the housing interior to atmosphere.
  2. Jet regulator as claimed in claim 1, characterised in that at least one through-flow hole (6), at least in an outflow-side hole section, widens in a tapered or conical manner towards the outflow side thereof such that the individual jet or spray jet which emerges from the through-flow hole (6) and widens by reason of the tapered shape or conicity, mixes in the housing interior with the individual jet of at least one adjacent through-flow hole (6) preferably even prior to impingement of individual jets upon at least one jet forming part arranged in the housing interior.
  3. Jet regulator (100) as claimed in claim 1 or 2, characterised in that, on the outflow side of the perforated plate (5), flow obstructions are provided in the jet regulator housing (2) and/or on the outflow face surface of the jet regulator housing (2), said flow obstructions being arranged or concentrated at this location in a central or middle region and diverting the through-flowing water into an outer annular zone.
  4. Jet regulator as claimed in any one of claims 1 to 3, characterised in that, on the outflow side of the perforated plate (5) and at a distance therefrom, a circumferential impingement bevel (19) is provided which narrows the clear housing cross-section in this region progressively in the flow direction.
  5. Jet regulator as claimed in claim 4, characterised in that the impingement bevel (19) forms the inflow side of a wall section which is formed as at least one constriction which has a wavelike longitudinal section.
  6. Jet regulator as claimed in any one of claims 1 to 5, characterised in that the jet regulator housing (2) is formed in multiple parts and has at least two housing parts (26, 27) which can be connected to one another in a detachable manner.
  7. Jet regulator as claimed in any one of claims 4 to 6, characterised in that the impingement bevels (19) are formed integrally on the housing inner periphery of an outflow-side housing part (27) and/or in that the perforated plate (5) is formed integrally in the housing interior of an inflow-side housing part (26).
  8. Jet regulator as claimed in any one of claims 1 to 7, characterised in that at least one mesh or lattice structure is connected downstream of the perforated plate (5) in the flow direction.
  9. Jet regulator as claimed in claim 8, characterised in that the mesh or lattice structure is formed from two sets of webs (7, 9) which intersect at intersection nodes (8).
  10. Jet regulator as claimed in claim 9, characterised in that the mesh structure is formed from radial webs (7) and from concentric webs (9) which intersect therewith at the intersection nodes (8).
  11. Jet regulator as claimed in any one of claims 8 to 10, characterised in that at least two mutually spaced apart mesh or lattice structures are connected downstream of the perforated plate (5) in the flow direction.
  12. Jet regulator as claimed in claim 10 or 11, characterised in that at least one through-flow hole (6) is aligned, in the flow direction, with a radial web (7) of one mesh structure and with a concentric web (9) of an adjacent mesh structure.
  13. Jet regulator as claimed in any one of claims 10 to 12, characterised in that the webs (7, 8) which are aligned in each case with a through-flow hole (6) overlap or intersect, in the flow direction of the at least one through-flow hole (6), in the different planes of these mesh structures.
  14. Jet regulator as claimed in any one of claims 10 to 13, characterised in that each mesh structure is formed by an insert part (11, 12) which can be inserted into the housing interior of the jet regulator housing (2).
  15. Jet regulator as claimed in any one of claims 9 to 14, characterised in that each insert part (11, 12) has, on the outer peripheral side, a circumferential annular wall (13), on which webs (7) of the mesh or lattice structure are connected and preferably integrally formed.
  16. Jet regulator as claimed in any one of claims 10 to 15, characterised in that at least the concentric webs (9) and preferably also the radial webs (7) of a mesh structure which is upstream in the flow direction has an identical or smaller web thickness in comparison with the webs (7, 9) of an adjacent mesh structure which is on the outflow side in the flow direction.
  17. Jet regulator as claimed in any one of claims 1 to 16, characterised in that the impingement surface which encircles the annular wall (15) on the outer peripheral side is annular.
  18. Jet regulator as claimed in any one of claims 1 to 17, characterised in that the outflow-side face surface of the jet regulator housing (2) is formed by a mesh or honeycomb structure (21; 22), and in that the mesh or honeycomb structure (21; 22) which forms the outflow-side face surface is either non-detachably connected to the jet regulator housing (2) and in particular is integrally formed therewith or is formed by means of an insert part (23) which can be inserted into the jet regulator housing (2).
  19. Jet regulator as claimed in claim 18, characterised in that the mesh or honeycomb structure (21; 22) which forms the outflow-side face surface of the jet regulator housing (2) is formed by webs (24, 25) which, at least in an outflow-side sub-region, narrow in the flow direction.
EP13753278.4A 2012-11-02 2013-08-21 Jet regulator Active EP2914784B1 (en)

Priority Applications (3)

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EP15003211.8A EP3009571B1 (en) 2012-11-02 2013-08-21 Flow regulator
PL13753278T PL2914784T3 (en) 2012-11-02 2013-08-21 Jet regulator
PL15003211T PL3009571T3 (en) 2012-11-02 2013-08-21 Flow regulator

Applications Claiming Priority (2)

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DE201220010420 DE202012010420U1 (en) 2012-11-02 2012-11-02 aerator
PCT/EP2013/002520 WO2014067594A1 (en) 2012-11-02 2013-08-21 Jet regulator

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EP15003211.8A Division EP3009571B1 (en) 2012-11-02 2013-08-21 Flow regulator
EP15003211.8A Division-Into EP3009571B1 (en) 2012-11-02 2013-08-21 Flow regulator

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EP2914784A1 EP2914784A1 (en) 2015-09-09
EP2914784B1 true EP2914784B1 (en) 2017-11-01

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EP13753278.4A Active EP2914784B1 (en) 2012-11-02 2013-08-21 Jet regulator

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US (2) US10280600B2 (en)
EP (2) EP3009571B1 (en)
BR (1) BR112014025582B1 (en)
DE (1) DE202012010420U1 (en)
ES (2) ES2654183T3 (en)
MX (1) MX348998B (en)
PL (2) PL3009571T3 (en)
TR (1) TR201808463T4 (en)
WO (1) WO2014067594A1 (en)

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Also Published As

Publication number Publication date
EP3009571A1 (en) 2016-04-20
EP3009571B1 (en) 2018-03-28
US20150102133A1 (en) 2015-04-16
US20190211538A1 (en) 2019-07-11
BR112014025582A2 (en) 2017-06-20
MX348998B (en) 2017-07-06
US10280600B2 (en) 2019-05-07
ES2674646T3 (en) 2018-07-03
PL3009571T3 (en) 2018-08-31
PL2914784T3 (en) 2018-03-30
ES2654183T3 (en) 2018-02-12
BR112014025582B1 (en) 2021-06-29
DE202012010420U1 (en) 2014-02-03
WO2014067594A1 (en) 2014-05-08
TR201808463T4 (en) 2018-07-23
MX2014012878A (en) 2015-02-12
EP2914784A1 (en) 2015-09-09

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