EP3229972A1 - Spray head and spraying apparatus - Google Patents

Spray head and spraying apparatus

Info

Publication number
EP3229972A1
EP3229972A1 EP15715227.3A EP15715227A EP3229972A1 EP 3229972 A1 EP3229972 A1 EP 3229972A1 EP 15715227 A EP15715227 A EP 15715227A EP 3229972 A1 EP3229972 A1 EP 3229972A1
Authority
EP
European Patent Office
Prior art keywords
spray head
entity
adjustment
guiding
liguid
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.)
Granted
Application number
EP15715227.3A
Other languages
German (de)
French (fr)
Other versions
EP3229972B1 (en
Inventor
Rainer Kaupp
Thomas Renner
Michael Kistler
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.)
Husqvarna AB
Original Assignee
Husqvarna AB
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 Husqvarna AB filed Critical Husqvarna AB
Priority to PL15715227T priority Critical patent/PL3229972T3/en
Publication of EP3229972A1 publication Critical patent/EP3229972A1/en
Application granted granted Critical
Publication of EP3229972B1 publication Critical patent/EP3229972B1/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B1/00Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means
    • B05B1/14Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening
    • B05B1/18Roses; Shower heads
    • B05B1/185Roses; Shower heads characterised by their outlet element; Mounting arrangements therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B15/00Details of spraying plant or spraying apparatus not otherwise provided for; Accessories
    • B05B15/60Arrangements for mounting, supporting or holding spraying apparatus
    • B05B15/65Mounting arrangements for fluid connection of the spraying apparatus or its outlets to flow conduits
    • B05B15/652Mounting arrangements for fluid connection of the spraying apparatus or its outlets to flow conduits whereby the jet can be oriented
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B15/00Details of spraying plant or spraying apparatus not otherwise provided for; Accessories
    • B05B15/60Arrangements for mounting, supporting or holding spraying apparatus
    • B05B15/68Arrangements for adjusting the position of spray heads

Definitions

  • the present invention relates generally to the field of spray heads . More specifically, the present invention is related to a spray head being adapted to change the irrigation area size.
  • Spraying apparatuses specifically spraying apparatuses for wa- tering flowers or plants, are well known in prior art.
  • Said spraying apparatuses comprise a housing with a liguid inlet, at least one liguid channel for guiding liguid through the spraying apparatus and a liguid outlet for providing liguid, specifically water, to the flowers or plants.
  • Said spraying apparatuses may comprise a valve for enabling/disabling the liguid flow through the liguid channel.
  • spraying apparatuses of shower spray head type are known which comprise a spray head with a plurality liguid outlets and which comprise means for changing the size of irrigation area.
  • the invention relates to a spray head for a spraying apparatus.
  • the spray head comprises a spray head base body including a spray head fluid channel.
  • the spray head further comprises a plurality of nozzles which are arranged at the spray head base body.
  • Each nozzle comprises a nozzle fluid channel.
  • the nozzle fluid channels are coupled with the spray head fluid channel and the free ends of the noz- zle fluid channels form liguid outlets of the spray head.
  • the nozzles are circumferentially arranged around a central axis of the spray head. In other words, the nozzles are distributed over a front side of the spray head.
  • the nozzles are ar ⁇ ranged in multiple concentric nozzle rings.
  • Each nozzle comprise a liguid guiding portion, said liguid guiding portion including said nozzle fluid channel and being made of an elastic, flexible material. Said material may be, for example, an elastomer.
  • the spray head further includes an adjustment unit comprising an adjustment entity, said adjustment entity being movably mounted at the spray head base body.
  • the adjustment entity comprises a plurality of apertures for providing passages for said flexible liguid guiding portions.
  • the spray head is adapted to change the spraying pattern by moving the adjustment entity with respect to the spray head base body, said movement causing a bending of the flexible liguid guiding portions of said nozzles.
  • the adjustment entity is adapted to change the radial distance of the liguid outlets with respect to the spray head central axis.
  • the liguid guiding portions are bent in order to direct the liguid jet provided by the respective nozzle in a certain direction, wherein the radial distance of the free ends of the liguid guiding portions with respect to the spray head central axis is changed.
  • the adjustment entity is rotatably ar ⁇ ranged at the spray head base body.
  • the adjustment entity may rotate around a rotation axis which may be the spray head cen- tral axis.
  • the adjustment entity may comprise guiding means for transforming the rotary movement of the adjustment entity into a radial movement (with respect to the spray head central axis) of liquid outlets.
  • the adjustment entity may be a circular plate. Thereby, a compact design of the spray head is achieved.
  • said liquid guiding portions are arranged par ⁇ allel to each other.
  • the liquid guiding portions of all nozzles may be arranged parallel to each other.
  • the smallest irrigation area size is obtained because the liquid outlets of the nozzles are arranged in a position close to the spray head central axis.
  • the adjustment entity comprises a plu- rality of oblong apertures, wherein the distance between a first end an oblong aperture and a rotating axis of the adjustment en ⁇ tity is greater than the distance between the second end of said oblong aperture and said rotating axis. Due to said distance difference, the liquid guiding portions are deformed when rotat- ing the adjustment entity and the liquid outlets provided at the free ends of the nozzles are moved radially with respect to the spray head central axis.
  • the oblong apertures have a curved shape. Thereby, a smooth bending of the liquid guiding portions is obtained.
  • the oblong aper ⁇ tures have a linear shape.
  • the longitudinal axis of the oblong apertures is slanted with respect to a radial direction, said radial direction referring to the rotating axis of the adjust ⁇ ment entity.
  • the slanting angle may be close to 90°, e.g. in the range of 70° to 89°, wherein the slanting angle opens outwardly (in a direction opposite to the spray head central axis or rota- tion axis) .
  • the adjustment entity is adapted to bend the liguid guiding portions in circumferential direction with respect to the rotational axis of the adjustment entity.
  • the liguid guiding portions of the nozzles are bent in rotational direction. Said bending is achieved by edges of apertures provided within the adjustment entity.
  • the adjustment entity is slidably mounted within the spray head, wherein the sliding direction is parallel or essentially parallel to the spray head central axis.
  • the adjustment entity may comprise nozzle passages, said nozzle passages applying a radially inwardly or radially outwardly di ⁇ rected force to the liguid guiding portions when sliding the ad ⁇ justment entity.
  • the liguid guiding portions of the nozzles are slanted with respect to the sliding direction. Said slanting refers to non-bent liguid guiding portions (without ap ⁇ plying external force to the liguid guiding portions) .
  • the nozzles are tilted at an angle of 10° to 30°, prefera ⁇ bly, 15° to 25°, most preferably, 16°, 17°, 18°, 19°, 20°, 21°, 22°, 23° or 24°.
  • the adjustment entity comprises a plu ⁇ rality of apertures, the edges of the apertures providing a close fit to the liquid guiding portions.
  • Said apertures provide the upper-mentioned nozzle passages.
  • Close fit as used in the present disclosure means that the aperture dimension is adapted to the dimensions of the liquid guiding portion such that the adjustment entity can be easily moved with respect to the liquid guiding portions but there is only a small gap between the aper ⁇ ture edge and the liquid guiding portion in order to achieve up- per-mentioned liquid guiding portion deformation when moving the adjustment entity.
  • the adjustment unit comprises an ad ⁇ justment portion, said adjustment portion being rotatably mount- ed at the spray head, wherein the adjustment portion is coupled with the adjustment entity such that the adjustment entity is shifted when rotating the adjustment portion.
  • the adjustment portion may be an adjusting ring.
  • the adjustment portion may comprise an internal thread which is coupled with a lateral pro- trusion or edge of the adjustment entity in order to transform the rotary movement of the adjustment portion into a transversal movement (shifting) of the adjustment entity.
  • a guiding entity is provided, said guiding entity being arranged between the adjustment entity and the liquid outlets of the nozzles. Said guiding entity is adapted to provide a lateral guide for the liquid guiding por ⁇ tions . Thereby an enhanced and guided movement of the liquid guiding portions is obtained.
  • said guiding entity is fixedly ar ⁇ ranged with respect to the spray head base body.
  • the guiding entity does not move when rotating or sliding the adjustment entity.
  • the liquid guiding portions of the nozzles are guided or fixed at both ends and deformed by means of the adjustment entity which is arranged between those ends thereby achieving a well-defined movement of the liquid guiding portions .
  • the guiding entity comprises oblong apertures, the longitudinal axes of said oblong apertures being radially arranged with respect to the spray head central axis.
  • the liquid guiding portions can move in a radial direc ⁇ tion and guided in a direction perpendicular to said radial di- rection.
  • the adjustment entity is adapted such that only some of the nozzles are bent by the adjustment entity or the bending angle is different.
  • nozzles which are arranged opposite to each other are bent by the same bending angle. Thereby, a spray pattern with an oval cross section is obtained.
  • the invention relates to a spray- ing apparatus.
  • the spraying apparatus comprises a spray head ac ⁇ cording to anyone of the above-mentioned embodiments.
  • Fig. 1 shows an example perspective view of a spray head accord ⁇ ing to a first embodiment
  • Fig. 2 shows an example front view of the spray head according to the first embodiment
  • Fig. 3 shows an example front view of the spray head according to the first embodiment when removing the guiding entity
  • Fig. 4 shows a sectional view of the spray head according to the first embodiment with non-bent liguid guiding portions
  • Fig. 5 shows a sectional view of the spray head according to the first embodiment with outwardly bent liguid guiding por ⁇ tions ;
  • Fig. 6 shows an example perspective view of a spray head accord ⁇ ing to a first embodiment
  • Fig. 7 shows a sectional view of the spray head according to the second embodiment with non-bent liguid guiding portions
  • Fig. 8 shows a sectional view of the spray head according to the second embodiment with inwardly bent liguid guiding por ⁇ tions ;
  • Fig. 9 shows a sectional view of the spray head according to a third embodiment with non-bent liguid guiding portions
  • Fig. 10 shows a further sectional view of the spray head accord ⁇ ing to the third embodiment with non-bent liguid guiding portions providing liguid jets
  • Fig. 11 shows a further sectional view of the spray head accord ⁇ ing to the third embodiment with bent liquid guiding por ⁇ tions providing slanted liquid jets crossing each other;
  • Fig. 12 shows an example front view of the spray head according to the third embodiment with non-bent liquid guiding por ⁇ tions ;
  • Fig. 12 shows an example front view of the spray head according to the third embodiment with bent liquid guiding por ⁇ tions
  • Fig. 14 shows an example side view of a spraying apparatus.
  • Fig. 1 to 5 show a spray head 1 according to a first embodiment.
  • the spray head 1 comprises a spray head base body 2 which com ⁇ prises a connection portion 2.1 for connecting the spray head 1 with a spraying apparatus base unit.
  • the spray head 1 is directly connected with a wa ⁇ ter hose by means of said connection portion 2.1.
  • the spray head base body 2 includes a spray head fluid channel 3 through which water, in general liquid, is flowing when using the spray head 1.
  • a plurality of nozzles 4 are arranged at the spray head base body 2.
  • Each nozzle 4 comprises a nozzle inlet which is fluidically coupled with the spray head fluid channel 3 and a nozzle outlet which constitutes one of the plurality of liquid outlets 5 of the spray head 1.
  • the nozzle comprises an oblong nozzle fluid channel 4.1 formed within the nozzle 4, the free ends of the nozzle fluid channel 4.1 building the nozzle inlet and the nozzle outlet, wherein the nozzle fluid channel 4.1 is fluidically coupled with the spray head fluid channel 3 for providing a water flow through said nozzle 4.
  • Each nozzle 4 comprises a nozzle base portion 4.3 by means of which the liquid guiding portion 4.2 is coupled to the spray head base body 2.
  • the liquid guiding portion 4.2 may comprise a tubular shape. At least the liquid guiding portion 4.2 is made of a flexible, elastic material, e.g. a elastomer. Preferably, the nozzle 4 is integrally formed and made of a flexible, elas ⁇ tic material (one-piece nozzle) . In addition, it may be possible that multiple nozzles 4 (group of nozzles) or all nozzles 4 of the spray head 1 are integrally formed by a nozzle entity. The liquid guiding portions 4.2 of the nozzles 4 protrude at the front side of the spray head 1.
  • the direction of water flow can be changed by bending the liquid guiding portion 4.2 of the nozzle 4.
  • the nozzles 4 are circumferentially arranged around a central axis CA of the spray head 1.
  • the nozzles 4 are arranged in a ring-shaped area.
  • the nozzles 4 are arranged in multiple concentric rings at the spray head base body 2, i.e. the nozzle rings comprise different sizes (different ring diameters) .
  • the front portion of the spray head 1 comprises a circular or essen ⁇ tially circular shape.
  • the spray head 1 comprises an adjust ⁇ ment unit 6, said adjustment unit 6 being adapted to bend the liquid guiding portions 4.2 in a certain direction in order to change the irrigation area. It is worth mentioning that due to the longitudinal shape of the liquid guiding portions 4.2 of the nozzles 4, the irrigation area can be changed only by changing the alignment of the liquid guiding portions 4.2.
  • the adjustment unit 6 comprises an adjustment entity 7 which is adapted to interact with the liquid guiding portions 4.2 of the nozzles 4 such that the alignment of the liquid guiding portions 4.2 is changed. More in detail, the adjustment entity 7 compris ⁇ es a plurality of apertures 7.1. Said apertures 7.1 are arranged at the adjustment entity 7 such that the liquid guiding portion of each nozzle is received in one aperture 7.1. In other words, the adjustment entity is put on the plurality of liquid guiding portions 4.2 such that said liquid guiding portions 4.2 pass through the adjustment entity 7 and the apertures 7.1 provide the passages for said liquid guiding portions 4.2.
  • the adjust- ment entity 7 may comprise a plate-like, planar shape.
  • the adjustment entity 7 is movably arranged at the spray head 1.
  • the alignment of all liquid guiding portions 4.2 is changed sim ⁇ ultaneously thereby changing the irrigation area affected by the spray head 1.
  • the irrigation area may be changed by changing the radial distance RD of the liquid outlets 5 with respect to the spray head central axis CA.
  • the liquid guiding portions 4.2 are bent such, that the free ends of the liquid guiding portions 4.2 are moved from a position close to the central axis CA to an outer position or from an outer position to a position close to the central axis CA.
  • the adjustment entity 7 is rotatably arranged within the spray head 1 in order to change irrigation area size.
  • the adjustment entity 7 comprises a plurality of oblong apertures 7.1.
  • the narrow side of the oblong aperture 7.1 is adapted to the outer dimensions of the liquid guiding portion 4.2 in order to enable a bending of the liquid guiding portion 4.2 of the nozzle 4 by means of the aperture edges.
  • the longitudinal axes of the oblong apertures 7.1 are slanted with respect to a radial direction, said radial direction referring to the central axis of the spray head 1.
  • the liquid guiding portion 4.2 is bent by the edge of the oblong aperture 7.1.
  • the longitudi ⁇ nal axes of the oblong apertures 7.1 is tilted with respect to the radial direction (referring to central axis CA) an angle be ⁇ tween 70° and 90°, preferably, 70°, 71°, 72°, 73°, 74°, 75°, 76°, 77°, 78°, 79°, 80°, 81°, 82°, 83°, 84°, 85°, 86°, 87°, 88° or 89°, wherein the angle opens in a direction opposite to the central axis CA.
  • the apertures 7.1 may comprise a curved shape.
  • the plurality of oblong apertures 7.1 may form holes comprising a paddle-wheel-like shape.
  • the adjustment unit 6 further comprises an adjustment portion 8.
  • Said adjustment portion 8 may be an adjustment ring being circumferentially arranged at the spray head 1.
  • the adjustment portion 8 is rotatably mounted at said spray head 1 and coupled with the adjustment entity 7 in order to rotate the adjustment entity 7.
  • the adjustment unit 6 further comprises a guiding entity 9.
  • the guiding entity 9 may form the outer entity of the front portion of the spray head 1, i.e. may be arranged close to the liguid outlets 5 of the spray head 1, and the ad ⁇ justment entity 7 may be arranged between the guiding entity 9 and the nozzle base portions 4.3.
  • the guiding entity may com ⁇ prise a plurality of oblong apertures 9.1. Said oblong apertures 9.1 may be radially or essentially radially arranged at the guiding entity 9, i.e.
  • the longitudinal axes of said oblong ap ⁇ ertures 9.1 are radially arranged with respect to the spray head central axis CA. Similar to the adjustment entity 7, the said apertures 9.1 are arranged at the guiding entity 9 such that the liguid guiding portion 4.2 of each nozzle 4 is received in one aperture 9.1.
  • the guiding entity 9 is put on the plurality of liguid guiding portions 4.2 such that said liguid guiding portions 4.2 pass through the guiding entity 9 and the apertures 9.1 provide the passages for the liguid guiding por ⁇ tions 4.2.
  • the guiding entity 9 may also comprise a plate-like, planar shape .
  • the guiding entity 9 is fixedly arranged at the spray head 1, i.e. there is a relative movement between the mov ⁇ able, specifically rotatable adjustment entity 7 and the fixedly arranged guiding entity 9. Due to the slanted arrangement of the oblong apertures 7.1 with respect to the radially arranged ob- long apertures 9.1 of the guiding entity 9 and the arrangement of the adjustment entity 7 and the guiding entity 9 next to each other, a well-defined passage of each liguid guiding portion 4.2 through the adjustment unit 6 is provided, thereby realizing a well-defined guiding of the liguid guiding portion 4.2.
  • Fig. 6 to 8 show a second embodiment of a spray head 1. Similar to the first embodiment, the spray head 1 comprises a spray head base body 2 which comprises a connection portion 2.1 for connecting the spray head 1 with a spraying apparatus base unit or a water hose.
  • the main difference of the spray head 1 according to the second embodiment with respect to the first embodiment is the implementation of the adjustment unit 6. Therefore, in the following the adjustment unit 6 according to the second embodi ⁇ ment is described in closer detail. Apart from that, the de- scription of the technical features of the first embodiment also applies to the second embodiment.
  • a main difference between the first and the second embodiment is the arrangement of the nozzles 4 at the spray head base body 2.
  • the longitudinal axes of the nozzles 4 are slanted with respect to a central axis of the spray head 1.
  • a support portion 4.4 of the nozzles 4 comprise a truncated cone-like shape, such that in the non-bent condition (without external force applied by the adjustment entity 7) all nozzles 4 are slanted by the same angle with respect to the cen ⁇ tral axis CA.
  • the adjustment entity 7 is slidably arranged within the spray head 1 in order to change said irrigation area size.
  • the adjustment entity 7 which is in ⁇ cluded in the spray head 1 comprises a plurality of apertures 7.1, wherein the aperture dimension is adapted to the outer di ⁇ mensions of the liquid guiding portions 4.2 of the nozzles 4 in order to enable a bending of said liquid guiding portions 4.2 by means of the aperture edges. Said bending is achieved by sliding the adjustment entity 7 in a sliding direction SD, said sliding direction SD being parallel to the spray head central axis CA.
  • the distance between a lower portion of the liquid guiding portion 4.2 (e.g. a portion close to the nozzle base portion 4.3) and the central axis CA is dif ⁇ ferent to, preferably smaller than the distance between an upper portion of the liquid guiding portion 4.2 (e.g. a portion close to the liquid outlets 5) and the central axis CA. So, by sliding the adjustment entity 7 in a direction parallel to central axis CA, the nozzles are deformed or bent by the edges of the aper ⁇ tures 7.1 of the adjustment entity 7. Fig.
  • the adjust ⁇ ment entity 7 and 8 illustrate two different positions of the adjust ⁇ ment entity 7, namely a retracted position (the adjustment enti ⁇ ty 7 is located close to the support portion 4.4, Fig. 7) and a forward-pushed position (the adjustment entity 7 is located close to the liquid outlets 5, Fig. 8) .
  • the liquid guiding portions 4.2 are deformed thereby pushing the liquid outlets 5 in closer proximity to the central axis CA.
  • the liquid guiding portion 4.2 may be deformed thereby pushing the liquid outlets 5 away from the central axis CA. Thereby the irrigation pattern of the spray head 1 is changed.
  • the adjustment unit 6 further comprises an adjustment portion 8.
  • Said adjustment por ⁇ tion 8 may be an adjustment ring being circumferentially ar ⁇ ranged at the spray head 1.
  • the adjustment portion 8 is rotata- bly mounted at said spray head 1 and coupled with the adjustment entity 7 in order to shift the adjustment entity 7.
  • the adjustment portion 8 may comprise an inner thread which is coupled with one or more lateral protrusions of the ad ⁇ justment entity 7 in order to transform the rotary movement of the adjustment portion 8 into a transversal movement (shifting) of the adjustment entity 7.
  • the adjustment unit 6 may further comprise a guid ⁇ ing entity 9.
  • the guiding entity 9 may from the outer entity of the front portion of the spray head 1, i.e. may be arranged close to the liquid outlets 5 of the spray head 1, and the ad- justment entity 7 may be arranged between the guiding entity 9 and the nozzle base portions 4.3.
  • the guiding entity 9 may com ⁇ prise a plurality of oblong apertures 9.1. Said oblong apertures 9.1 may be radially or essentially radially arranged at the guiding entity 9, i.e.
  • the longitudinal axes of said oblong ap ⁇ ertures 9.1 are radially arranged with respect to the spray head central axis CA. Similar to the adjustment entity 7, the said apertures 9.1 are arranged at the guiding entity 9 such that the liguid guiding portion 4.2 of each nozzle 4 is received in one aperture 9.1.
  • the guiding entity 9 is put on the plurality of liguid guiding portions 4.2 such that said liguid guiding portions 4.2 pass through the guiding entity 9 and the apertures 9.1 provide the passages for the liguid guiding por ⁇ tions 4.2.
  • the guiding entity 9 may also comprise a plate-like, planar shape .
  • the guiding entity 9 is fixedly arranged at the spray head 1, i.e. there is a relative movement between the mov ⁇ able, specifically shiftable adjustment entity 7 and the fixedly arranged guiding entity 9.
  • Fig. 9 to 13 show a further embodiment of a spray head 1.
  • said further embodiment with re ⁇ spect to the embodiments described before are described.
  • the spray head 1 comprises a spray head base body 2 including a spray head fluid channel 3 and a nozzle entity comprising a plurality of nozzles 4 made of elastic material.
  • the spray head 1 preferably does not comprise any guiding entity 9.
  • the adjustment entity 7 also builds the front-side cover plate of the spray head 1.
  • the ad ⁇ justment entity 7 comprises a plurality of apertures 7.1. Said apertures 7.1 are arranged at the adjustment entity 7 such that the liguid guiding portion 4.2 of each nozzle 4 is received in one aperture 7.1.
  • the adjustment entity 7 is put on the plurality of liguid guiding portions 4.2 such that said liguid guiding portions 4.2 pass through the adjustment entity 7 and the apertures 7.1 provide the passages for said liguid guid ⁇ ing portions 4.2.
  • the liguid guiding portions 4.2 are force-guided within the apertures 7.1 in order to obtain a reproducible spray pattern.
  • the adjustment entity 7 is rotatably mounted at the spray head base body 2 by means of a central bearing 10, i.e. the adjustment entity 7 is able to be rotated around the central axis CA of the spray head 1 wherein the rotating axis RA coincides with the central axis CA.
  • a sealing ring 10.1 may be arranged.
  • Said sealing ring 10.1 may provide friction between the rotatable adjustment entity 7 and the stationarily arranged portion of the connecting piece 13 forming the central bearing 10 in order to avoid an un- desired movement of the adjustment entity 7.
  • frictional forces between the central bearing 10 and the adjustment entity 7 can be obtained by other friction generating means, e.g. by using clamping means, clamping ribs or an interlinking between the adjustment entity 7 and the central bearing 10.
  • the adjustment entity 7 is mounted at the spray head base body 2 by means of a snap-on mechanism.
  • the adjustment en ⁇ tity 7 may comprise at least a pair of snap hooks 11 which are extending from the bottom side of the adjustment entity 7, i.e. at a side opposite to the plate-like portion comprising the ap- ertures 7.1.
  • Said snap hooks 11 interact with grooves or nuts 12 provided at the spray head base body 2 such that the adjustment entity 7 is attached to the spray head base body 2 by the snap hooks 11 engaging into said nuts 12.
  • the nuts may be provided in the spray head base body 2 or in a connecting piece 13 being arranged between the adjustment entity 7 and the spray head base body 2.
  • the connecting piece 13 may be screwed onto the spray head base body 2.
  • the connecting piece 13 may have a ring-like shape and may be used for fixing the nozzles 4, specifically a nozzle entity (nozzle mat) comprising a plurality of nozzles.
  • the grooves or nuts 12 comprise a length (in circum- ferential direction) which is greater than the width of the snap hooks 11.
  • the adjustment entity 7 is rotatable around the rotating axis RA, wherein the rotating angle is limited by the edges of the grooves or nuts 12.
  • the edges of the grooves or nuts 12 form stop portions interacting with the snap hooks 11 such that the rotating angle of the snap hooks 11 is limited to a certain angle.
  • Said angle may be in the range between 5° and 20°, preferably between 10° and 15°, specifically 11°, 12°, 13° or 14° .
  • the 10 and 12 refer to a rotational position of the adjustment entity 7 in which the liguid guiding portions 4.2 of the nozzles 4 are unbent, i.e. the adjustment entity 7 does not apply forces onto the nozzles 4. Therefore, the liguid guiding portions 4.2 of the nozzles 4 are parallel to each other and parallel to the central axis CA.
  • Fig. 11 and 13 shows the spray head 1 with the adjustment entity 7 in a rotational position in which the nozzles 4 are bent by the adjustment entity 7.
  • the tilting angle of the nozzles 4 may be up to 45°. Depending on the position of a certain nozzle 4, the degree of bending is different, i.e. the inner nozzles 4 are tilted or bent by a smaller angle than the outer nozzles 4. In other words, due to the different distances of the nozzles 4 to the rotating axis RA, the tilting angle is different.
  • liguid jets provided by the nozzles are crossing thereby gener ⁇ ating a uniform irrigation pattern and/or a uniform distribution of liguid jets.
  • the diameter of the irrigation area may be in the range between 10cm and 100cm (measured in a distance of lm from the free ends of the nozzles 4) .
  • Fig. 14 shows a hand-held spraying apparatus 100 according to an embodiment.
  • the spraying apparatus 1 may be a handheld device, e.g. a spray gun, for providing liguid, specifically water to water receiving objects, for example, flowers or plants.
  • the spraying apparatus 100 comprises a housing 110 with a grip portion 120 for manually holding the spraying apparatus 100.
  • the spraying apparatus 100 may further comprise activation means 130, for example a button, said activation means 130 being cou ⁇ pled with a valve (not shown) for enabling/disabling or control- ling a liguid flow through the spraying apparatus 100.
  • the spraying apparatus 100 may comprise a spray head according to one of the upper-mentioned embodiments for bringing out the same water flow rate on different irrigation areas (e.g. a small and large irrigation area) . It is worth mentioning that the spray head 1 may be adapted to provide a stepless adaption of the ir ⁇ rigation area by a stepless moving (rotating, sliding) of the adjusting entity .
  • the hand-held spraying apparatus 100 may be arranged by means of a rod at a certain distance above the ground wherein the liguid is sprayed upwardly. Due to the irrigation adjustment mechanism, the diameter of the irrigated area may be continuous ⁇ ly changed between 0.2m and 3m. It should be noted that the description and drawings merely lustrate the principles of the proposed methods and systems. Those skilled in the art will be able to implement various a rangements that, although not explicitly described or shown herein, embody the principles of the invention.

Landscapes

  • Nozzles (AREA)

Abstract

The invention relates to a spray head for a spraying apparatus (100), the spray head comprising: - a spray head base body (2) including a spray head fluid channel (3); - a plurality of nozzles (4), each nozzle (4) comprising a nozzle fluid channel (4.1), wherein said nozzle fluid channels (4.1) being coupled with the spray head fluid channel (3) and the free ends of the nozzle fluid channels (4.1) forming liquid outlets (5) of the spray head (1), wherein the nozzles (4) are circumferentially arranged around a central axis (CA) of the spray head (1), wherein each nozzle (4) comprise a liquid guiding portion (4.2), said liquid guiding portion (4.2) including said nozzle fluid channel (4.1) and being made of a flexible material, - an adjustment unit (6) comprising a adjustment entity (7), said adjustment entity (7) being movably mounted at the spray head base body (2), the adjustment entity (7) comprising a plurality of apertures (7.1) for providing passages for said flexible liquid guiding portions (4.2), wherein the spray head (1) is adapted to change the spraying pattern by moving the adjustment entity (7) with respect to the spray head base body (2), said movement causing a bending of the flexible liquid guiding portions (4.2) of said nozzles (4).

Description

Spray head and spraying apparatus
The present invention relates generally to the field of spray heads . More specifically, the present invention is related to a spray head being adapted to change the irrigation area size.
BACKGROUND OF THE INVENTION
Spraying apparatuses, specifically spraying apparatuses for wa- tering flowers or plants, are well known in prior art. Said spraying apparatuses comprise a housing with a liguid inlet, at least one liguid channel for guiding liguid through the spraying apparatus and a liguid outlet for providing liguid, specifically water, to the flowers or plants. Said spraying apparatuses may comprise a valve for enabling/disabling the liguid flow through the liguid channel. Also, spraying apparatuses of shower spray head type are known which comprise a spray head with a plurality liguid outlets and which comprise means for changing the size of irrigation area.
SUMMARY OF THE INVENTION
It is an objective of the embodiments of the invention to pro¬ vide a technically simple spray head which can be manufactured in a cost-efficient way and which provides a possibility to change the size of irrigation area. The objective is solved by the features of the independent claims. Preferred embodiments are given in the dependent claims. If not explicitly indicated otherwise, embodiments of the invention can be freely combined with each other.
According to an aspect, the invention relates to a spray head for a spraying apparatus. The spray head comprises a spray head base body including a spray head fluid channel. The spray head further comprises a plurality of nozzles which are arranged at the spray head base body. Each nozzle comprises a nozzle fluid channel. The nozzle fluid channels are coupled with the spray head fluid channel and the free ends of the noz- zle fluid channels form liguid outlets of the spray head. The nozzles are circumferentially arranged around a central axis of the spray head. In other words, the nozzles are distributed over a front side of the spray head. Preferably, the nozzles are ar¬ ranged in multiple concentric nozzle rings. Each nozzle comprise a liguid guiding portion, said liguid guiding portion including said nozzle fluid channel and being made of an elastic, flexible material. Said material may be, for example, an elastomer.
The spray head further includes an adjustment unit comprising an adjustment entity, said adjustment entity being movably mounted at the spray head base body. The adjustment entity comprises a plurality of apertures for providing passages for said flexible liguid guiding portions. The spray head is adapted to change the spraying pattern by moving the adjustment entity with respect to the spray head base body, said movement causing a bending of the flexible liguid guiding portions of said nozzles.
Thereby, a technically simple and cost-efficient spray head in¬ cluding an adjustment mechanism for changing the size of irriga- tion area is obtained.
According to embodiments, the adjustment entity is adapted to change the radial distance of the liguid outlets with respect to the spray head central axis. In other words, by moving the ad- justment entity, the liguid guiding portions are bent in order to direct the liguid jet provided by the respective nozzle in a certain direction, wherein the radial distance of the free ends of the liguid guiding portions with respect to the spray head central axis is changed. Thereby, a significant change of irri- gation area size is obtained. According to embodiments, the adjustment entity is rotatably ar¬ ranged at the spray head base body. The adjustment entity may rotate around a rotation axis which may be the spray head cen- tral axis. The adjustment entity may comprise guiding means for transforming the rotary movement of the adjustment entity into a radial movement (with respect to the spray head central axis) of liquid outlets. The adjustment entity may be a circular plate. Thereby, a compact design of the spray head is achieved.
According to embodiments, in a non-bent condition of the liquid guiding portions, said liquid guiding portions are arranged par¬ allel to each other. Preferably, the liquid guiding portions of all nozzles may be arranged parallel to each other. For example, in the non-bent condition, the smallest irrigation area size is obtained because the liquid outlets of the nozzles are arranged in a position close to the spray head central axis.
According to embodiments, the adjustment entity comprises a plu- rality of oblong apertures, wherein the distance between a first end an oblong aperture and a rotating axis of the adjustment en¬ tity is greater than the distance between the second end of said oblong aperture and said rotating axis. Due to said distance difference, the liquid guiding portions are deformed when rotat- ing the adjustment entity and the liquid outlets provided at the free ends of the nozzles are moved radially with respect to the spray head central axis.
According to embodiments, the oblong apertures have a curved shape. Thereby, a smooth bending of the liquid guiding portions is obtained. According to other embodiments, the oblong aper¬ tures have a linear shape.
According to embodiments, the longitudinal axis of the oblong apertures is slanted with respect to a radial direction, said radial direction referring to the rotating axis of the adjust¬ ment entity. The slanting angle may be close to 90°, e.g. in the range of 70° to 89°, wherein the slanting angle opens outwardly (in a direction opposite to the spray head central axis or rota- tion axis) .
According to embodiments, the adjustment entity is adapted to bend the liguid guiding portions in circumferential direction with respect to the rotational axis of the adjustment entity. In other words, when rotating the adjustment entity around its ro¬ tational axis, the liguid guiding portions of the nozzles are bent in rotational direction. Said bending is achieved by edges of apertures provided within the adjustment entity. When rotat¬ ing the adjustment entity, said edges abut against the liguid guiding portions of the nozzles and bend said liguid guiding portions in order to increase/decrease the irrigation area.
According to embodiments, the adjustment entity is slidably mounted within the spray head, wherein the sliding direction is parallel or essentially parallel to the spray head central axis. The adjustment entity may comprise nozzle passages, said nozzle passages applying a radially inwardly or radially outwardly di¬ rected force to the liguid guiding portions when sliding the ad¬ justment entity.
According to embodiments, the liguid guiding portions of the nozzles are slanted with respect to the sliding direction. Said slanting refers to non-bent liguid guiding portions (without ap¬ plying external force to the liguid guiding portions) . For exam- pie, the nozzles are tilted at an angle of 10° to 30°, prefera¬ bly, 15° to 25°, most preferably, 16°, 17°, 18°, 19°, 20°, 21°, 22°, 23° or 24°. By sliding the adjustment entity, an external force is applied to the liguid guiding portions and the tilt an¬ gle is decreased thereby reducing the irrigation area size. According to embodiments, the adjustment entity comprises a plu¬ rality of apertures, the edges of the apertures providing a close fit to the liquid guiding portions. Said apertures provide the upper-mentioned nozzle passages. Close fit as used in the present disclosure means that the aperture dimension is adapted to the dimensions of the liquid guiding portion such that the adjustment entity can be easily moved with respect to the liquid guiding portions but there is only a small gap between the aper¬ ture edge and the liquid guiding portion in order to achieve up- per-mentioned liquid guiding portion deformation when moving the adjustment entity.
According to embodiments, the adjustment unit comprises an ad¬ justment portion, said adjustment portion being rotatably mount- ed at the spray head, wherein the adjustment portion is coupled with the adjustment entity such that the adjustment entity is shifted when rotating the adjustment portion. The adjustment portion may be an adjusting ring. The adjustment portion may comprise an internal thread which is coupled with a lateral pro- trusion or edge of the adjustment entity in order to transform the rotary movement of the adjustment portion into a transversal movement (shifting) of the adjustment entity.
According to embodiments, a guiding entity is provided, said guiding entity being arranged between the adjustment entity and the liquid outlets of the nozzles. Said guiding entity is adapted to provide a lateral guide for the liquid guiding por¬ tions . Thereby an enhanced and guided movement of the liquid guiding portions is obtained.
According to embodiments, said guiding entity is fixedly ar¬ ranged with respect to the spray head base body. In other words, the guiding entity does not move when rotating or sliding the adjustment entity. Thereby, the liquid guiding portions of the nozzles are guided or fixed at both ends and deformed by means of the adjustment entity which is arranged between those ends thereby achieving a well-defined movement of the liquid guiding portions . According to embodiments, the guiding entity comprises oblong apertures, the longitudinal axes of said oblong apertures being radially arranged with respect to the spray head central axis. Thereby, the liquid guiding portions can move in a radial direc¬ tion and guided in a direction perpendicular to said radial di- rection.
According to embodiments, the adjustment entity is adapted such that only some of the nozzles are bent by the adjustment entity or the bending angle is different. Preferably, nozzles which are arranged opposite to each other (point-symmetric with respect to the central axis) are bent by the same bending angle. Thereby, a spray pattern with an oval cross section is obtained.
According to a further aspect, the invention relates to a spray- ing apparatus. The spraying apparatus comprises a spray head ac¬ cording to anyone of the above-mentioned embodiments.
The term "essentially" or "approximately" as used in the present disclosure means deviations from the exact value by +/- 10%, preferably by +/- 5% and/or deviations in the form of changes that are insignificant for the function.
BRIEF DESCRIPTION OF THE DRAWINGS
The various aspects of the invention, including its particular features and advantages, will be readily understood from the following detailed description and the accompanying drawings, in which :
Fig. 1 shows an example perspective view of a spray head accord¬ ing to a first embodiment;
Fig. 2 shows an example front view of the spray head according to the first embodiment;
Fig. 3 shows an example front view of the spray head according to the first embodiment when removing the guiding entity;
Fig. 4 shows a sectional view of the spray head according to the first embodiment with non-bent liguid guiding portions;
Fig. 5 shows a sectional view of the spray head according to the first embodiment with outwardly bent liguid guiding por¬ tions ;
Fig. 6 shows an example perspective view of a spray head accord¬ ing to a first embodiment;
Fig. 7 shows a sectional view of the spray head according to the second embodiment with non-bent liguid guiding portions;
Fig. 8 shows a sectional view of the spray head according to the second embodiment with inwardly bent liguid guiding por¬ tions ;
Fig. 9 shows a sectional view of the spray head according to a third embodiment with non-bent liguid guiding portions;
Fig. 10 shows a further sectional view of the spray head accord¬ ing to the third embodiment with non-bent liguid guiding portions providing liguid jets; Fig. 11 shows a further sectional view of the spray head accord¬ ing to the third embodiment with bent liquid guiding por¬ tions providing slanted liquid jets crossing each other;
Fig. 12 shows an example front view of the spray head according to the third embodiment with non-bent liquid guiding por¬ tions ;
Fig. 12 shows an example front view of the spray head according to the third embodiment with bent liquid guiding por¬ tions; and
Fig. 14 shows an example side view of a spraying apparatus.
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
The present invention will now be described more fully with ref- erence to the accompanying drawings, in which example embodi¬ ments are shown. However, this invention should not be construed as limited to the embodiments set forth herein. Throughout the following description similar reference numerals have been used to denote similar elements, parts, items or features, when ap- plicable.
Fig. 1 to 5 show a spray head 1 according to a first embodiment. The spray head 1 comprises a spray head base body 2 which com¬ prises a connection portion 2.1 for connecting the spray head 1 with a spraying apparatus base unit. Alternatively, it may be possible that the spray head 1 is directly connected with a wa¬ ter hose by means of said connection portion 2.1. The spray head base body 2 includes a spray head fluid channel 3 through which water, in general liquid, is flowing when using the spray head 1.
At the opposite side of the connection portion 2.1, a plurality of nozzles 4 are arranged at the spray head base body 2. Each nozzle 4 comprises a nozzle inlet which is fluidically coupled with the spray head fluid channel 3 and a nozzle outlet which constitutes one of the plurality of liquid outlets 5 of the spray head 1. In other words, the nozzle comprises an oblong nozzle fluid channel 4.1 formed within the nozzle 4, the free ends of the nozzle fluid channel 4.1 building the nozzle inlet and the nozzle outlet, wherein the nozzle fluid channel 4.1 is fluidically coupled with the spray head fluid channel 3 for providing a water flow through said nozzle 4. Each nozzle 4 comprises a nozzle base portion 4.3 by means of which the liquid guiding portion 4.2 is coupled to the spray head base body 2. The liquid guiding portion 4.2 may comprise a tubular shape. At least the liquid guiding portion 4.2 is made of a flexible, elastic material, e.g. a elastomer. Preferably, the nozzle 4 is integrally formed and made of a flexible, elas¬ tic material (one-piece nozzle) . In addition, it may be possible that multiple nozzles 4 (group of nozzles) or all nozzles 4 of the spray head 1 are integrally formed by a nozzle entity. The liquid guiding portions 4.2 of the nozzles 4 protrude at the front side of the spray head 1. Due to the elastic, flexible ma¬ terial of the liquid guiding portion 4.2 of the nozzles 4, the direction of water flow can be changed by bending the liquid guiding portion 4.2 of the nozzle 4. The nozzles 4 are circumferentially arranged around a central axis CA of the spray head 1. According to the present embodi¬ ment, the nozzles 4 are arranged in a ring-shaped area. For ex¬ ample, the nozzles 4 are arranged in multiple concentric rings at the spray head base body 2, i.e. the nozzle rings comprise different sizes (different ring diameters) . Preferably, also the front portion of the spray head 1 comprises a circular or essen¬ tially circular shape.
In order to change the irrigation area size for enabling at least a soft and a hard irrigation of a water receiving object (e.g. a flower or plant), the spray head 1 comprises an adjust¬ ment unit 6, said adjustment unit 6 being adapted to bend the liquid guiding portions 4.2 in a certain direction in order to change the irrigation area. It is worth mentioning that due to the longitudinal shape of the liquid guiding portions 4.2 of the nozzles 4, the irrigation area can be changed only by changing the alignment of the liquid guiding portions 4.2.
The adjustment unit 6 comprises an adjustment entity 7 which is adapted to interact with the liquid guiding portions 4.2 of the nozzles 4 such that the alignment of the liquid guiding portions 4.2 is changed. More in detail, the adjustment entity 7 compris¬ es a plurality of apertures 7.1. Said apertures 7.1 are arranged at the adjustment entity 7 such that the liquid guiding portion of each nozzle is received in one aperture 7.1. In other words, the adjustment entity is put on the plurality of liquid guiding portions 4.2 such that said liquid guiding portions 4.2 pass through the adjustment entity 7 and the apertures 7.1 provide the passages for said liquid guiding portions 4.2. The adjust- ment entity 7 may comprise a plate-like, planar shape.
For achieving a bending of said liquid guiding portions 4.2 of the nozzles 4, the adjustment entity 7 is movably arranged at the spray head 1. Preferably, by moving the adjustment entity 7, the alignment of all liquid guiding portions 4.2 is changed sim¬ ultaneously thereby changing the irrigation area affected by the spray head 1. The irrigation area may be changed by changing the radial distance RD of the liquid outlets 5 with respect to the spray head central axis CA. In other words, by moving the ad- justment entity 7, the liquid guiding portions 4.2 are bent such, that the free ends of the liquid guiding portions 4.2 are moved from a position close to the central axis CA to an outer position or from an outer position to a position close to the central axis CA. According to the present embodiment, the adjustment entity 7 is rotatably arranged within the spray head 1 in order to change irrigation area size. As shown in Fig. 3, the adjustment entity 7 comprises a plurality of oblong apertures 7.1. The narrow side of the oblong aperture 7.1 is adapted to the outer dimensions of the liquid guiding portion 4.2 in order to enable a bending of the liquid guiding portion 4.2 of the nozzle 4 by means of the aperture edges. According to the present embodiment, the longitudinal axes of the oblong apertures 7.1 are slanted with respect to a radial direction, said radial direction referring to the central axis of the spray head 1. By means of said slanted arrangement of the oblong apertures 7.1, the liquid guiding portion 4.2 is bent by the edge of the oblong aperture 7.1. For example, the longitudi¬ nal axes of the oblong apertures 7.1 is tilted with respect to the radial direction (referring to central axis CA) an angle be¬ tween 70° and 90°, preferably, 70°, 71°, 72°, 73°, 74°, 75°, 76°, 77°, 78°, 79°, 80°, 81°, 82°, 83°, 84°, 85°, 86°, 87°, 88° or 89°, wherein the angle opens in a direction opposite to the central axis CA. The apertures 7.1 may comprise a curved shape. In other words, the plurality of oblong apertures 7.1 may form holes comprising a paddle-wheel-like shape. For enabling rotation of the adjustment entity 7 arranged in the interior of the adjustment unit 6, the adjustment unit 6 further comprises an adjustment portion 8. Said adjustment portion 8 may be an adjustment ring being circumferentially arranged at the spray head 1. The adjustment portion 8 is rotatably mounted at said spray head 1 and coupled with the adjustment entity 7 in order to rotate the adjustment entity 7.
In order to avoid an undesired deformation of the liquid guiding portions 4.2 laterally with respect to the longitudinal axis of the aperture 7.1, the adjustment unit 6 further comprises a guiding entity 9. The guiding entity 9 may form the outer entity of the front portion of the spray head 1, i.e. may be arranged close to the liguid outlets 5 of the spray head 1, and the ad¬ justment entity 7 may be arranged between the guiding entity 9 and the nozzle base portions 4.3. The guiding entity may com¬ prise a plurality of oblong apertures 9.1. Said oblong apertures 9.1 may be radially or essentially radially arranged at the guiding entity 9, i.e. the longitudinal axes of said oblong ap¬ ertures 9.1 are radially arranged with respect to the spray head central axis CA. Similar to the adjustment entity 7, the said apertures 9.1 are arranged at the guiding entity 9 such that the liguid guiding portion 4.2 of each nozzle 4 is received in one aperture 9.1. In other words, the guiding entity 9 is put on the plurality of liguid guiding portions 4.2 such that said liguid guiding portions 4.2 pass through the guiding entity 9 and the apertures 9.1 provide the passages for the liguid guiding por¬ tions 4.2. The guiding entity 9 may also comprise a plate-like, planar shape . Preferably, the guiding entity 9 is fixedly arranged at the spray head 1, i.e. there is a relative movement between the mov¬ able, specifically rotatable adjustment entity 7 and the fixedly arranged guiding entity 9. Due to the slanted arrangement of the oblong apertures 7.1 with respect to the radially arranged ob- long apertures 9.1 of the guiding entity 9 and the arrangement of the adjustment entity 7 and the guiding entity 9 next to each other, a well-defined passage of each liguid guiding portion 4.2 through the adjustment unit 6 is provided, thereby realizing a well-defined guiding of the liguid guiding portion 4.2.
Fig. 6 to 8 show a second embodiment of a spray head 1. Similar to the first embodiment, the spray head 1 comprises a spray head base body 2 which comprises a connection portion 2.1 for connecting the spray head 1 with a spraying apparatus base unit or a water hose. The main difference of the spray head 1 according to the second embodiment with respect to the first embodiment is the implementation of the adjustment unit 6. Therefore, in the following the adjustment unit 6 according to the second embodi¬ ment is described in closer detail. Apart from that, the de- scription of the technical features of the first embodiment also applies to the second embodiment.
A main difference between the first and the second embodiment is the arrangement of the nozzles 4 at the spray head base body 2. In a non-bent condition, the longitudinal axes of the nozzles 4 are slanted with respect to a central axis of the spray head 1. For example, a support portion 4.4 of the nozzles 4 comprise a truncated cone-like shape, such that in the non-bent condition (without external force applied by the adjustment entity 7) all nozzles 4 are slanted by the same angle with respect to the cen¬ tral axis CA.
According to the second embodiment, the adjustment entity 7 is slidably arranged within the spray head 1 in order to change said irrigation area size. The adjustment entity 7 which is in¬ cluded in the spray head 1 comprises a plurality of apertures 7.1, wherein the aperture dimension is adapted to the outer di¬ mensions of the liquid guiding portions 4.2 of the nozzles 4 in order to enable a bending of said liquid guiding portions 4.2 by means of the aperture edges. Said bending is achieved by sliding the adjustment entity 7 in a sliding direction SD, said sliding direction SD being parallel to the spray head central axis CA.
Due to the slanted arrangement of the nozzles 4 with respect to said central axis or sliding axis, the distance between a lower portion of the liquid guiding portion 4.2 (e.g. a portion close to the nozzle base portion 4.3) and the central axis CA is dif¬ ferent to, preferably smaller than the distance between an upper portion of the liquid guiding portion 4.2 (e.g. a portion close to the liquid outlets 5) and the central axis CA. So, by sliding the adjustment entity 7 in a direction parallel to central axis CA, the nozzles are deformed or bent by the edges of the aper¬ tures 7.1 of the adjustment entity 7. Fig. 7 and 8 illustrate two different positions of the adjust¬ ment entity 7, namely a retracted position (the adjustment enti¬ ty 7 is located close to the support portion 4.4, Fig. 7) and a forward-pushed position (the adjustment entity 7 is located close to the liquid outlets 5, Fig. 8) . By sliding the adjust- ment entity 7 from the retracted position to the forward-pushed position, the liquid guiding portions 4.2 are deformed thereby pushing the liquid outlets 5 in closer proximity to the central axis CA. According to another configuration, the liquid guiding portion 4.2 may be deformed thereby pushing the liquid outlets 5 away from the central axis CA. Thereby the irrigation pattern of the spray head 1 is changed.
For enabling said shifting of the adjustment entity 7 arranged in the interior of the adjustment unit 6, the adjustment unit 6 further comprises an adjustment portion 8. Said adjustment por¬ tion 8 may be an adjustment ring being circumferentially ar¬ ranged at the spray head 1. The adjustment portion 8 is rotata- bly mounted at said spray head 1 and coupled with the adjustment entity 7 in order to shift the adjustment entity 7. More in de- tail, the adjustment portion 8 may comprise an inner thread which is coupled with one or more lateral protrusions of the ad¬ justment entity 7 in order to transform the rotary movement of the adjustment portion 8 into a transversal movement (shifting) of the adjustment entity 7.
In order to avoid an undesired deformation of the liquid guiding portions 4.2, the adjustment unit 6 may further comprise a guid¬ ing entity 9. The guiding entity 9 may from the outer entity of the front portion of the spray head 1, i.e. may be arranged close to the liquid outlets 5 of the spray head 1, and the ad- justment entity 7 may be arranged between the guiding entity 9 and the nozzle base portions 4.3. The guiding entity 9 may com¬ prise a plurality of oblong apertures 9.1. Said oblong apertures 9.1 may be radially or essentially radially arranged at the guiding entity 9, i.e. the longitudinal axes of said oblong ap¬ ertures 9.1 are radially arranged with respect to the spray head central axis CA. Similar to the adjustment entity 7, the said apertures 9.1 are arranged at the guiding entity 9 such that the liguid guiding portion 4.2 of each nozzle 4 is received in one aperture 9.1. In other words, the guiding entity 9 is put on the plurality of liguid guiding portions 4.2 such that said liguid guiding portions 4.2 pass through the guiding entity 9 and the apertures 9.1 provide the passages for the liguid guiding por¬ tions 4.2. The guiding entity 9 may also comprise a plate-like, planar shape .
Preferably, the guiding entity 9 is fixedly arranged at the spray head 1, i.e. there is a relative movement between the mov¬ able, specifically shiftable adjustment entity 7 and the fixedly arranged guiding entity 9.
Fig. 9 to 13 show a further embodiment of a spray head 1. In the following, only differences of said further embodiment with re¬ spect to the embodiments described before are described. Apart from that, reference is made to the features of the upper- mentioned embodiments.
Similar to the embodiments above, the spray head 1 comprises a spray head base body 2 including a spray head fluid channel 3 and a nozzle entity comprising a plurality of nozzles 4 made of elastic material.
In contrast to the embodiments described before, the spray head 1 preferably does not comprise any guiding entity 9. So, accord- ing to the present embodiment, the adjustment entity 7 also builds the front-side cover plate of the spray head 1. The ad¬ justment entity 7 comprises a plurality of apertures 7.1. Said apertures 7.1 are arranged at the adjustment entity 7 such that the liguid guiding portion 4.2 of each nozzle 4 is received in one aperture 7.1. In other words, the adjustment entity 7 is put on the plurality of liguid guiding portions 4.2 such that said liguid guiding portions 4.2 pass through the adjustment entity 7 and the apertures 7.1 provide the passages for said liguid guid¬ ing portions 4.2. Preferably, the liguid guiding portions 4.2 are force-guided within the apertures 7.1 in order to obtain a reproducible spray pattern. In addition, due to the minimum gap between the liguid guiding portions 4.2 and the edges of the ap¬ ertures 7.1, also the penetration of sand and dirt is minimized. As shown in Fig. 9, the adjustment entity 7 is rotatably mounted at the spray head base body 2 by means of a central bearing 10, i.e. the adjustment entity 7 is able to be rotated around the central axis CA of the spray head 1 wherein the rotating axis RA coincides with the central axis CA. In the area of said central bearing 10 a sealing ring 10.1 may be arranged. Said sealing ring 10.1 may provide friction between the rotatable adjustment entity 7 and the stationarily arranged portion of the connecting piece 13 forming the central bearing 10 in order to avoid an un- desired movement of the adjustment entity 7. According to other embodiments, frictional forces between the central bearing 10 and the adjustment entity 7 can be obtained by other friction generating means, e.g. by using clamping means, clamping ribs or an interlinking between the adjustment entity 7 and the central bearing 10.
Preferably, the adjustment entity 7 is mounted at the spray head base body 2 by means of a snap-on mechanism. The adjustment en¬ tity 7 may comprise at least a pair of snap hooks 11 which are extending from the bottom side of the adjustment entity 7, i.e. at a side opposite to the plate-like portion comprising the ap- ertures 7.1. Said snap hooks 11 interact with grooves or nuts 12 provided at the spray head base body 2 such that the adjustment entity 7 is attached to the spray head base body 2 by the snap hooks 11 engaging into said nuts 12.
The nuts may be provided in the spray head base body 2 or in a connecting piece 13 being arranged between the adjustment entity 7 and the spray head base body 2. For example, the connecting piece 13 may be screwed onto the spray head base body 2. The connecting piece 13 may have a ring-like shape and may be used for fixing the nozzles 4, specifically a nozzle entity (nozzle mat) comprising a plurality of nozzles.
Preferably, the grooves or nuts 12 comprise a length (in circum- ferential direction) which is greater than the width of the snap hooks 11. Thereby, the adjustment entity 7 is rotatable around the rotating axis RA, wherein the rotating angle is limited by the edges of the grooves or nuts 12. In other words, the edges of the grooves or nuts 12 form stop portions interacting with the snap hooks 11 such that the rotating angle of the snap hooks 11 is limited to a certain angle. Said angle may be in the range between 5° and 20°, preferably between 10° and 15°, specifically 11°, 12°, 13° or 14° . Fig. 10 and 12 refer to a rotational position of the adjustment entity 7 in which the liguid guiding portions 4.2 of the nozzles 4 are unbent, i.e. the adjustment entity 7 does not apply forces onto the nozzles 4. Therefore, the liguid guiding portions 4.2 of the nozzles 4 are parallel to each other and parallel to the central axis CA.
Fig. 11 and 13 shows the spray head 1 with the adjustment entity 7 in a rotational position in which the nozzles 4 are bent by the adjustment entity 7. The tilting angle of the nozzles 4 may be up to 45°. Depending on the position of a certain nozzle 4, the degree of bending is different, i.e. the inner nozzles 4 are tilted or bent by a smaller angle than the outer nozzles 4. In other words, due to the different distances of the nozzles 4 to the rotating axis RA, the tilting angle is different. Thereby liguid jets provided by the nozzles are crossing thereby gener¬ ating a uniform irrigation pattern and/or a uniform distribution of liguid jets. The diameter of the irrigation area may be in the range between 10cm and 100cm (measured in a distance of lm from the free ends of the nozzles 4) .
Fig. 14 shows a hand-held spraying apparatus 100 according to an embodiment. The spraying apparatus 1 may be a handheld device, e.g. a spray gun, for providing liguid, specifically water to water receiving objects, for example, flowers or plants. The spraying apparatus 100 comprises a housing 110 with a grip portion 120 for manually holding the spraying apparatus 100. The spraying apparatus 100 may further comprise activation means 130, for example a button, said activation means 130 being cou¬ pled with a valve (not shown) for enabling/disabling or control- ling a liguid flow through the spraying apparatus 100. The spraying apparatus 100 may comprise a spray head according to one of the upper-mentioned embodiments for bringing out the same water flow rate on different irrigation areas (e.g. a small and large irrigation area) . It is worth mentioning that the spray head 1 may be adapted to provide a stepless adaption of the ir¬ rigation area by a stepless moving (rotating, sliding) of the adjusting entity .
Optionally, the hand-held spraying apparatus 100 may be arranged by means of a rod at a certain distance above the ground wherein the liguid is sprayed upwardly. Due to the irrigation adjustment mechanism, the diameter of the irrigated area may be continuous¬ ly changed between 0.2m and 3m. It should be noted that the description and drawings merely lustrate the principles of the proposed methods and systems. Those skilled in the art will be able to implement various a rangements that, although not explicitly described or shown herein, embody the principles of the invention.
List of reference numerals
1 spray head
2 spray head base body 2.1 connection portion
3 spray head fluid channel
4 nozzle
4.1 nozzle fluid channel
4.2 liquid guiding portion 4.3 nozzle base portion
4.4 support portion
5 liquid outlet
6 adjustment unit
7 adjustment entity
7.1 aperture
8 adjustment portion
9 guiding entity
9.1 aperture
10 bearing
10.1 sealing ring
11 snap hook
12 nut
13 connecting piece
100 spraying apparatus 110 housing
120 grip portion
130 activation means
CA central axis
dl, d2 distance
FD fluid flow direction
RA rotating axis
RD radial distance
SD sliding direction

Claims

Claims
1. Spray head for a spraying apparatus (100), the spray head comprising :
- a spray head base body (2) including a spray head fluid channel ( 3 ) ;
- a plurality of nozzles (4), each nozzle (4) comprising a nozzle fluid channel (4.1), wherein said nozzle fluid channels (4.1) being coupled with the spray head fluid channel (3) and the free ends of the nozzle fluid chan¬ nels (4.1) forming liquid outlets (5) of the spray head (1), wherein the nozzles (4) are circumferentially ar¬ ranged around a central axis (CA) of the spray head (1), wherein each nozzle (4) comprise a liquid guiding portion (4.2), said liquid guiding portion (4.2) including said nozzle fluid channel (4.1) and being made of a flexible material,
- an adjustment unit (6) comprising an adjustment entity (7), said adjustment entity (7) being movably mounted at the spray head base body (2), the adjustment entity (7) comprising a plurality of apertures (7.1) for providing passages for said flexible liquid guiding portions
(4.2) ,
wherein the spray head (1) is adapted to change the spraying pattern by moving the adjustment entity (7) with respect to the spray head base body (2), said movement causing a bending of the flexible liquid guiding portions (4.2) of said nozzles (4) .
2. Spray head according to claim 1, wherein the adjustment enti¬ ty (7) is adapted to change the radial distance (RD) of the liquid outlets (5) with respect to the spray head central ax¬ is (CA) .
3. Spray head according to claim 1 or 2, wherein the adjustment entity (7) is rotatably arranged at the spray head base body (2) .
4. Spray head according to anyone of the preceding claims,
wherein in a non-bent condition of the liguid guiding portions (4.2), said liguid guiding portions (4.2) are arranged parallel to each other.
5. Spray head according to claim 3 or 4, wherein the adjustment entity (7) comprises a plurality of oblong apertures (7.1), wherein the distance (dl) between a first end an oblong aperture (7.1) and a rotating axis (RA) of the adjustment entity (7) is greater than the distance (d2) between the second end of said oblong aperture (7.1) and said rotating axis (RA) .
6. Spray head according to claim 5, wherein the oblong apertures
(7.1) have a curved shape.
7. Spray head according to claims 5 or 6, wherein the longitudi¬ nal axis of the oblong apertures (7.1) is slanted with re¬ spect to a radial direction, said radial direction referring to the rotating axis (RA) of the adjustment entity (7) .
8. Spray head according to claim 3 or 4, wherein the adjustment entity (7) is adapted to bend the liguid guiding portions
(4.2) in circumferential direction with respect to the rota¬ tional axis (RA) of the adjustment entity (7) .
9. Spray head according to claim 1 or 2, wherein the adjustment entity (7) is slidably mounted within the spray head (1), wherein the sliding direction (SD) is parallel or essentially parallel to the fluid flow direction (FD) .
10. Spray head according to claim 9, wherein the liguid guiding portions (4.2) of the nozzles (4) are slanted with respect to the sliding direction (SD) .
11. Spray head according to claim 9 or 10, wherein the adjustment entity (7) comprises a plurality of apertures (7.1), the edg¬ es of the apertures (7.1) providing a close fit to the liguid guiding portions (7.2) .
12. Spray head according to anyone of the preceding claims 9 to 11, wherein the adjustment unit (6) comprises an adjustment portion (8), said adjustment portion (8) being rotatably mounted at the spray head (1), wherein the adjustment portion
(8) is coupled with the adjustment entity (7) such that the adjustment entity (7) is shifted when rotating the adjustment portion (8) .
13. Spray head according to anyone of the preceding claims 5 to 7 and 9 to 12, wherein a guiding entity (9) is provided, said guiding entity (9) being arranged between the adjustment en¬ tity (7) and the liguid outlets (5) of the nozzles (4), said guiding entity (9) preferably being fixedly arranged with re¬ spect to the spray head base body (2) .
14. Spray head according to claim 13, wherein the guiding entity
(9) comprises oblong apertures (9.1), the longitudinal axes of said oblong apertures (9.1) being radially arranged with respect to the spray head central axis (CA) .
15. Spraying apparatus comprising a spray head according to anyone of the preceding claims .
EP15715227.3A 2014-12-11 2015-04-07 Spray head and spraying apparatus Active EP3229972B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL15715227T PL3229972T3 (en) 2014-12-11 2015-04-07 Spray head and spraying apparatus

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
EP2014077308 2014-12-11
PCT/EP2015/057483 WO2016091398A1 (en) 2014-12-11 2015-04-07 Spray head and spraying apparatus

Publications (2)

Publication Number Publication Date
EP3229972A1 true EP3229972A1 (en) 2017-10-18
EP3229972B1 EP3229972B1 (en) 2019-06-19

Family

ID=52144664

Family Applications (1)

Application Number Title Priority Date Filing Date
EP15715227.3A Active EP3229972B1 (en) 2014-12-11 2015-04-07 Spray head and spraying apparatus

Country Status (5)

Country Link
EP (1) EP3229972B1 (en)
CN (1) CN106999961B (en)
PL (1) PL3229972T3 (en)
TW (1) TWI670119B (en)
WO (1) WO2016091398A1 (en)

Families Citing this family (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10987680B2 (en) 2015-12-16 2021-04-27 Kohler Co. Spray head with hyperboloid spray pattern
CN109833983B (en) * 2017-11-24 2023-10-13 厦门松霖科技股份有限公司 The water outlet area can be adjusted by the water outlet mechanism.
US11383114B2 (en) * 2017-11-28 2022-07-12 Senju Sprinkler Co., Ltd. Sprinkler head
US11097289B2 (en) 2018-04-23 2021-08-24 Kohler Co. Sprayer
CN109365360B (en) * 2018-10-23 2021-07-06 广东顺德蓝导电器科技有限公司 A home appliance cleaning machine
GB2578593B (en) * 2018-10-31 2020-11-25 Kohler Mira Ltd Spray head
GB2587104B (en) * 2018-10-31 2021-11-10 Kohler Mira Ltd Spray head
JP6990887B2 (en) * 2019-01-31 2022-01-12 パナソニックIpマネジメント株式会社 Sprinkler and shower equipment
GB2589318B (en) * 2019-11-22 2021-11-24 Kohler Mira Ltd Spray Head
CN113198033B (en) * 2021-05-19 2023-04-25 长江师范学院 A kind of walking equipment for epidemic prevention and disinfection of place environment
TWI762374B (en) * 2021-07-08 2022-04-21 源美股份有限公司 sprinkler
CN115382678B (en) * 2022-09-14 2023-12-08 江苏沣田农业装备机械有限公司 Irrigation nozzle and production and assembly method thereof

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU5172196A (en) * 1995-02-27 1996-09-18 Randy J. Cooper Lawn and garden sprinkler with bendable tubes
US7278591B2 (en) * 2004-08-13 2007-10-09 Clearman Joseph H Spray apparatus
US8733675B2 (en) * 2006-04-20 2014-05-27 Water Pik, Inc. Converging spray showerhead
US8985483B2 (en) * 2012-01-24 2015-03-24 John E. Petrovic Adjustable trajectory spray nozzles
WO2014132384A1 (en) * 2013-02-28 2014-09-04 株式会社ケーエスケー Nozzle device

Also Published As

Publication number Publication date
TWI670119B (en) 2019-09-01
EP3229972B1 (en) 2019-06-19
CN106999961B (en) 2019-02-15
PL3229972T3 (en) 2019-11-29
WO2016091398A1 (en) 2016-06-16
TW201622824A (en) 2016-07-01
CN106999961A (en) 2017-08-01

Similar Documents

Publication Publication Date Title
WO2016091398A1 (en) Spray head and spraying apparatus
WO2016162048A1 (en) Spray head and spraying apparatus
US20140027526A1 (en) Rotary nozzle
US20140027527A1 (en) Rotary nozzle
US7703706B2 (en) Variable arc nozzle
US10507476B2 (en) Sprinkler with brake assembly
US9427751B2 (en) Irrigation sprinkler nozzle having deflector with micro-ramps
US8651400B2 (en) Variable arc nozzle
US7445166B2 (en) Adjustable solid-flow nozzle and method
US8985483B2 (en) Adjustable trajectory spray nozzles
EP2551022A1 (en) Sprinkler linear side-load, multi-nozzle system
US11154877B2 (en) Rotary strip nozzles
EP3375528B1 (en) Dispenser device of a jet of water in the form of a vortex
US11247219B2 (en) Reduced precipitation rate nozzle
US20040195359A1 (en) Fluid distributing apparatus
EP2038066B1 (en) Spray device
US10335807B2 (en) Shower head
AU2018203585A1 (en) Sprinkler with brake assembly
KR20140066990A (en) Hydraulic flow regulator
US11173504B2 (en) Driving structure of a garden sprinkler
EP3277432B1 (en) Water outlet device
US11059056B2 (en) Rotary strip nozzles and deflectors
EP3873675B1 (en) Spray head
CA2948670C (en) Nozzle
TW201632264A (en) Spraying apparatus

Legal Events

Date Code Title Description
STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: THE INTERNATIONAL PUBLICATION HAS BEEN MADE

PUAI Public reference made under article 153(3) epc to a published international application that has entered the european phase

Free format text: ORIGINAL CODE: 0009012

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: REQUEST FOR EXAMINATION WAS MADE

17P Request for examination filed

Effective date: 20170505

AK Designated contracting states

Kind code of ref document: A1

Designated state(s): AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR

AX Request for extension of the european patent

Extension state: BA ME

DAV Request for validation of the european patent (deleted)
DAX Request for extension of the european patent (deleted)
RIC1 Information provided on ipc code assigned before grant

Ipc: B05B 15/652 20180101ALI20190207BHEP

Ipc: B05B 1/18 20060101AFI20190207BHEP

Ipc: B05B 15/68 20180101ALI20190207BHEP

GRAP Despatch of communication of intention to grant a patent

Free format text: ORIGINAL CODE: EPIDOSNIGR1

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: GRANT OF PATENT IS INTENDED

INTG Intention to grant announced

Effective date: 20190319

GRAS Grant fee paid

Free format text: ORIGINAL CODE: EPIDOSNIGR3

GRAA (expected) grant

Free format text: ORIGINAL CODE: 0009210

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: THE PATENT HAS BEEN GRANTED

AK Designated contracting states

Kind code of ref document: B1

Designated state(s): AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR

REG Reference to a national code

Ref country code: GB

Ref legal event code: FG4D

REG Reference to a national code

Ref country code: CH

Ref legal event code: EP

REG Reference to a national code

Ref country code: IE

Ref legal event code: FG4D

REG Reference to a national code

Ref country code: DE

Ref legal event code: R096

Ref document number: 602015032234

Country of ref document: DE

REG Reference to a national code

Ref country code: AT

Ref legal event code: REF

Ref document number: 1144823

Country of ref document: AT

Kind code of ref document: T

Effective date: 20190715

REG Reference to a national code

Ref country code: NL

Ref legal event code: MP

Effective date: 20190619

PG25 Lapsed in a contracting state [announced via postgrant information from national office to epo]

Ref country code: AL

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

Ref country code: SE

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

Ref country code: NO

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190919

Ref country code: HR

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

Ref country code: LT

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

REG Reference to a national code

Ref country code: LT

Ref legal event code: MG4D

PG25 Lapsed in a contracting state [announced via postgrant information from national office to epo]

Ref country code: RS

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

Ref country code: GR

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190920

Ref country code: BG

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190919

Ref country code: LV

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

REG Reference to a national code

Ref country code: AT

Ref legal event code: MK05

Ref document number: 1144823

Country of ref document: AT

Kind code of ref document: T

Effective date: 20190619

PG25 Lapsed in a contracting state [announced via postgrant information from national office to epo]

Ref country code: NL

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

Ref country code: PT

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20191021

Ref country code: AT

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

Ref country code: EE

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

Ref country code: SK

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

Ref country code: RO

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

Ref country code: CZ

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

PG25 Lapsed in a contracting state [announced via postgrant information from national office to epo]

Ref country code: IS

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20191019

Ref country code: SM

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

Ref country code: ES

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

PG25 Lapsed in a contracting state [announced via postgrant information from national office to epo]

Ref country code: TR

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

PG25 Lapsed in a contracting state [announced via postgrant information from national office to epo]

Ref country code: DK

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

PG25 Lapsed in a contracting state [announced via postgrant information from national office to epo]

Ref country code: IS

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20200224

REG Reference to a national code

Ref country code: DE

Ref legal event code: R097

Ref document number: 602015032234

Country of ref document: DE

PLBE No opposition filed within time limit

Free format text: ORIGINAL CODE: 0009261

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: NO OPPOSITION FILED WITHIN TIME LIMIT

PG2D Information on lapse in contracting state deleted

Ref country code: IS

26N No opposition filed

Effective date: 20200603

PG25 Lapsed in a contracting state [announced via postgrant information from national office to epo]

Ref country code: SI

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

PG25 Lapsed in a contracting state [announced via postgrant information from national office to epo]

Ref country code: MC

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

REG Reference to a national code

Ref country code: CH

Ref legal event code: PL

PG25 Lapsed in a contracting state [announced via postgrant information from national office to epo]

Ref country code: LI

Free format text: LAPSE BECAUSE OF NON-PAYMENT OF DUE FEES

Effective date: 20200430

Ref country code: CH

Free format text: LAPSE BECAUSE OF NON-PAYMENT OF DUE FEES

Effective date: 20200430

Ref country code: LU

Free format text: LAPSE BECAUSE OF NON-PAYMENT OF DUE FEES

Effective date: 20200407

REG Reference to a national code

Ref country code: BE

Ref legal event code: MM

Effective date: 20200430

PG25 Lapsed in a contracting state [announced via postgrant information from national office to epo]

Ref country code: BE

Free format text: LAPSE BECAUSE OF NON-PAYMENT OF DUE FEES

Effective date: 20200430

PG25 Lapsed in a contracting state [announced via postgrant information from national office to epo]

Ref country code: IE

Free format text: LAPSE BECAUSE OF NON-PAYMENT OF DUE FEES

Effective date: 20200407

PG25 Lapsed in a contracting state [announced via postgrant information from national office to epo]

Ref country code: MT

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

Ref country code: CY

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

PG25 Lapsed in a contracting state [announced via postgrant information from national office to epo]

Ref country code: MK

Free format text: LAPSE BECAUSE OF FAILURE TO SUBMIT A TRANSLATION OF THE DESCRIPTION OR TO PAY THE FEE WITHIN THE PRESCRIBED TIME-LIMIT

Effective date: 20190619

P01 Opt-out of the competence of the unified patent court (upc) registered

Effective date: 20230419

PGFP Annual fee paid to national office [announced via postgrant information from national office to epo]

Ref country code: DE

Payment date: 20250313

Year of fee payment: 11

PGFP Annual fee paid to national office [announced via postgrant information from national office to epo]

Ref country code: GB

Payment date: 20260311

Year of fee payment: 12

PGFP Annual fee paid to national office [announced via postgrant information from national office to epo]

Ref country code: FI

Payment date: 20260311

Year of fee payment: 12

Ref country code: IT

Payment date: 20260312

Year of fee payment: 12

PGFP Annual fee paid to national office [announced via postgrant information from national office to epo]

Ref country code: FR

Payment date: 20260311

Year of fee payment: 12

PGFP Annual fee paid to national office [announced via postgrant information from national office to epo]

Ref country code: PL

Payment date: 20260306

Year of fee payment: 12