FLOW REGULATOR
20210277638 ยท 2021-09-09
Assignee
Inventors
Cpc classification
International classification
Abstract
A jet regulator (104) that has a jet regulator housing (1) which on the housing external circumference thereof has an external thread (2) for screw-fitting into an internal thread (3) in the water outlet (4) of a sanitary outlet fitting. The jet regulator (104) includes a housing part-region of the jet regulator housing (1) that is disposed on the outflow side of the external thread (2) in the direction towards the internal circumference of the water outlet (4) that is angled in such a manner that a drainage annular space (8) is formed between said housing part-region and the internal circumference of the water outlet (4).
Claims
1. A jet regulator (101, 104, 111, 115, 127, 130) comprising: a jet regulator housing (1) which on a housing external circumference thereof, spaced apart from an outflow-side housing end side, has an external thread (2) adapted screw-fitting into an internal thread (3) in a water outlet (4) of a sanitary outlet fitting; a housing part-region of the jet regulator housing (1) that is disposed on an outflow side of the external thread (2) in a direction towards an internal circumference of the water outlet (4) is angled and is adapted to form T a drainage annular space (8) between said housing part-region and an internal circumference of the water outlet (4).
2. The jet regulator according to claim 1, wherein an outflow-side housing end periphery of the jet regulator housing (1) is configured as a lip seal (21) which is configured to bear on the internal circumference of the water outlet (4), or lies close to the internal circumference of the water outlet (4).
3. The jet regulator according to claim 1, wherein the jet regulator (101, 104, 111, 115, 127, 130) is configured as a jet aerator which is configured to mix water flowing therethrough with ambient air, and a housing portion of the jet regulator housing (1) that is disposed on an outflow side of the external thread (2), has at least one aeration opening (9) that is provided on the housing circumference or on the housing end side of the jet regulator housing (1).
4. The jet regulator according to claim 3, wherein the jet regulator housing (1) is formed from at least first and second housing parts (10, 11) that are connectable to one another.
5. The jet regulator according to claim 4, wherein the first housing part (10) that is disposed on the outflow side supports the external thread (2).
6. The jet regulator according to claim 5, wherein the outflow-side first housing part (10) on an inflow side thereof is connectable to the second housing part (11) of the jet regulator housing (1), said second housing part (11) supporting a jet splitter which is configured to split water flowing therethrough into a multiplicity of individual jets.
7. The jet regulator according to claim 6, wherein the jet regulator is configured as a diffuser which has a cup-shaped jet splitter insert (12) which on a cup circumference of a cup shape thereof has a plurality of splitter openings (13) and which has a cup base (14) which is configured as an impact face that is configured to deflect inflowing water towards the splitter openings (13).
8. The jet regulator according to claim 7, wherein the second housing part (11) encompasses the jet splitter insert (12), and the second housing part (11) at least in region of the openings (13), which are cylindrical, tapers in such that an annular gap (15) which on the outflow side tapers towards an annular opening (16) that opens into a housing interior is formed between the jet splitter insert (12) and a housing internal circumference of the second housing part (11).
9. The jet regulator according to claim 1, further comprising a sleeve-shaped guide wall (17) in the jet regulator housing (1), at least one aeration duct (18) which extends from at least one aeration opening (9) that is disposed on the housing outflow side or on the housing circumference to the housing interior, and the at least one aeration duct is located between the housing internal circumference of the jet regulator housing (2) and the guide wall (17).
10. The jet regulator according to claim 9, further comprising at least one drainage opening (22) which from the drainage annular space (8) leads to to at least one of the aeration ducts (18), and the at least oe drainage opening is located in a partial-region of the housing wall of the jet regulator housing (1) that is disposed between the outflow-side housing end side and the external thread (2).
11. The jet regulator according to claim 1, wherein the jet regulator housing (1) on the housing external circumference thereof as the external thread (2), has a thread profile which at least in regions deviates from a thread groove that in a helical manner continuously encircles a cylindrical wall and which in said region is adapted to interact in a shape-adapted manner with an internal thread (3) provided in the water outlet (4).
12. The jet regulator according to claim 1, wherein the jet regulator housing (1) has at least one cross-sectional widening (6, 7) which is materially identical and moulded so as to be integral to a housing portion of the jet regulator housing (1) that supports the external thread (2), which cross-sectional widening (6, 7) is adapted to be brought to bear on at least one of an end side or the internal circumferential side of the water outlet (4).
13. The jet regulator according to claim 1, wherein an external envelope circle of the external thread (2) on the jet regulator housing (1) that is specified for screw-fitting into the in the cylindrical internal thread widens conically towards the outflow side.
14. The jet regulator according to claim 1, further comprising at least one moulding (26, 28) which serves as a liquids bulkhead and which projects into at least one thread groove of the external thread (2) provided on the housing external circumference of the jet regulator housing (1).
15. The jet regulator according to claim 14, wherein the at least one moulding (26, 28) reaches up to an envelope circle enveloping the external thread (2) or at least in regions projects beyond said envelope circle.
16. The jet regulator according to claim 14, wherein the at least one moulding is configured as a separation wall (26) that extends across at least two neighbouring thread grooves of the external thread.
17. The jet regulator according to claim 16, wherein the at least one separation wall (26) extends approximately axially parallel to a housing longitudinal axis of the jet regulator housing (1).
18. The jet regulator according to claim 14, wherein the at least one moulding (28) is cam-shaped, and the cam-shaped moulding (28) in the thread groove extends approximately in a groove longitudinal direction.
19. The jet regulator according to claim 1, wherein thread profile of the external thread (2) that projects beyond the thread groove widens at least in regions.
20. The jet regulator according to claim 12, wherein the at least one cross-sectional widening (6; 7) projects with a flange shape on the housing external circumference of the jet regulator housing (1).
21. The jet regulator according to claim 20, wherein the at least one flange-shaped cross-sectional widening (6; 7) in the housing circumferential direction of the jet regulator housing extends across at least one drainage opening (22).
22. The jet regulator according to claim 21, wherein the at least one flange-shaped cross-sectional widening (6; 7) on the housing external circumference of the jet regulator housing is provided between the external thread and the at least one drainage opening (22).
23. The jet regulator according to claim 21, wherein the flange-shaped cross-sectional widening (7) is configured as an annular flange that encircles the jet regulator housing (1).
24. The jet regulator according to claim 21, wherein the at least one flange-shaped cross-sectional widening (6; 7) is configured as a screw-fitting detent which delimits a screw-fitting of the external thread (2) into the internal thread (3) in the water outlet (4) of the outlet fitting.
25. The jet regulator according to claim 9, further comprising a mesh or a net structure (23) formed from webs (24, 25) that intersect one another at intersection nodes (23) integrally moulded to the guide wall (17) on the outflow side.
26. The jet regulator according to claim 25, wherein the guide wall (17) is connected rotationally fixed to the jet regulator housing (1) on the outflow side, and at least one tool engagement face for a driving tool is provided on at least one of the guide wall (17) or on the mesh or net structure (23).
27. The jet regulator according to claim 26, wherein the at least one tool engagement surface comprises at least one slot-shaped recess (29) which is delimited by opposite slot longitudinal walls which form tool engagement faces for insertion of the driving tool in the mesh or net structure.
28. The jet regulator according to claim 1, wherein the jet regulator (101, 104, 111, 115, 127, 130) is designed to be free of and is adapted to be installed without an annular seal that is produced from an elastic material so as to be separate from the jet regulator housing (1).
29. The jet regulator according to claim 6, wherein the jet splitter is configured as a perforated plate (30) which has splitter openings (31).
30. The jet regulator according to claim 29, wherein the splitter openings (31) at least in regions taper in a throughflow direction.
31. The jet regulator according to claim 30, further comprising an insert part (32, 33) disposed downstream in a flow direction of the jet splitter and spaced apart therefrom, said insert part (32, 33) having a mesh or net structure from webs that intersect one another at intersection nodes.
32. The jet regulator according to claim 31, wherein the mesh or net structure that is provided in the at least one insert part (32, 33) has throughflow openings (24).
33. The jet regulator according to claim 32, wherein the throughflow openings (24) have at least one of honeycomb-shaped or hexagonal opening cross sections.
34. The jet regulator according to claim 31, wherein the mesh or net structure provided in the at least one insert part (32, 33) has at least two first webs which at the intersection nodes intersect a group of second webs.
35. The jet regulator according to claim 34, wherein the mesh or net structure is formed from at least two concentrically encircling webs which are connected to a group of radial webs.
36. The jet regulator according to claim 31, wherein the mesh or net structure that is provided in the at least one insert part (32, 33) is formed by a group of axially parallel first webs which intersect a group of axially parallel second webs which are disposed at an angle in relation to said group of axially parallel first webs.
37. The jet regulator according to claim 31, wherein the mesh or net structure that is provided in the at least one insert part (32, 33) are formed from webs which are mutually disposed at an angle in such a manner such that the mesh or net structure is formed in an ornamental manner from non-uniformly shaped throughflow openings.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0039] Refinements according to the invention are derived from the claims in conjunction with the drawing as well as the description. The invention will be described in yet more detail hereunder by means of preferred exemplary embodiments.
[0040] In the drawings:
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DETAILED DESCRIPTION
[0073] Various embodiments 101, 104, 111, 115, 127, and 130 of a jet regulator are illustrated in
[0074] The jet regulators 101, 104, 111, 115, 127, and 130 shown here have a jet regulator housing 1 which on the housing external circumference thereof has an external thread 2. By way of the external thread 2 provided on the housing external circumference, the jet regulators 101, 104, 111, 115, 127, and 130 can in each case be screw-fitted into an internal thread 3 in the water outlet 4 of a sanitary outlet fitting so as to shape the water exiting there so as to form a homogenous, non-spraying and optionally also pearly-soft water jet. In order for the annular zone 5 remaining between the housing external circumference of the jet regulator housing 1 and the internal circumference of the water outlet 4 to be sealed in relation to any uncontrolled exiting of leakage water, the jet regulators 101, 104, 111, and 115 as the external thread 2 have a thread profile which at least in regions deviates from a thread groove that in a helical manner continuously encircles a cylindrical wall. The external thread 2, in said thread profile that at least in regions is designed in a deviating manner, interacts in self-tapping or rather self-adapting manner with the internal thread 3 provided in the water outlet 4 such that said screw connection seals particularly positively in said region. Additionally, or as here alternatively, at least one cross-sectional widening 6 or 7, respectively, is provided in the case of the jet regulators 127 and 130, said cross-sectional widening 6 or 7, respectively, being materially identical with the housing portion of the jet regulator housing that supports the external thread 2 and being moulded so as to be integral thereto, and said cross-sectional widening 6 or 7, respectively, being capable of being brought to bear in a sealing manner on the end side and/or the internal circumferential side of the water outlet 4. By virtue of these particular design features of the jet regulators shown here, any uncontrolled exiting of leakage water through the annular zone 5 provided between the housing external circumference of the jet regulator housing 1 and the internal circumference in the water outlet 4 is effectively avoided at almost all operating conditions even when the jet regulators, like here, are designed without additional elastic annular seals for sealing the jet regulator housing 1 in an axial or radial manner. The annular zone mentioned above in the case of the jet regulators 101, 104, 111, 115, 127, and 130 is reliably tight even when the internal thread 3 in the water outlet cannot be fabricated with high precision, and when the annular shoulder in the water outlet 4 required for axial sealing is to be dispensed with in favour of a lower manufacturing complexity in the production of the outlet fitting.
[0075] As becomes evident from the longitudinal sections in
[0076] The jet regulators 101, 104, 111, 115, 127, and 130 here are in each case configured as a jet aerator which mixes the water flowing therethrough with ambient air. The jet regulators 101, 104, 111, 115, 127, and 130 configured as jet aerators have at least one aeration opening 9 which is disposed on the outflow side of the external thread 2 and is configured so as to be open towards the outflow-side housing end side.
[0077] The jet regulator housing 1 of the jet regulators 101, 104, 111, 115, 127, and 130 illustrated here has at least two housing parts 10, 11 that are capable of being releasably connected to one another and of which a first housing part 10 disposed on the outflow side supports the external thread 2. This outflow-side first housing part 10 at the inflow side is releasably connected to a second housing part 11 of the jet regulator housing 1, said second housing part 11 supporting a jet splitter which splits the water flowing therethrough into a multiplicity of individual jets.
[0078] The jet splitter of the jet regulator 111 shown in
[0079] By contrast, the jet splitter of 101, 104, 115, 127, and 130 is configured as a diffuser which has a cup-shaped jet splitter insert 12 which on the cup circumference of the cup shape thereof has a plurality of splitter openings 13 and which has a cup base 14 which is configured as an impact face that deflects the inflowing water towards the splitter openings 13.
[0080] The second housing part 11 encompasses the jet splitter insert 12 of the jet splitter. The second housing part 11 in terms of the available housing cross section thereof comically tapers in such a manner that an annular gap 15, which on the outlet side tapers towards an annular opening 16 that opens into the housing interior, is formed between the jet splitter insert 12 and the housing internal circumference of the second housing part 11.
[0081] A sleeve-shaped guide wall is provided in the jet regulator housing 1, at least one aeration duct 18 being provided between said guide wall 17 and the housing internal circumference of the jet regulator housing 1. This aeration duct 18 from the at least one aeration opening 9 disposed on the housing outflow side leads to the housing interior. Since the water divided into individual jets in the jet splitter is imparted an increase in velocity in the annular gap 15, a negative pressure which suctions ambient air from the outside through the aeration duct 18 into the p art-region of the housing interior space that serves as a mixing zone 20 is created according to Bernoulli's principle on the outflow side of the annular gap 15 in the region of the annular opening 16. In said mixing zone 20 the water flowing therethrough is mixed with the suctioned ambient air.
[0082] As can be readily seen in the longitudinal sections according to
[0083] As can be seen in the longitudinal sections according to
[0084] A mesh or net structure 23 from webs that intersect one another at intersection nodes is integrally moulded to the guide wall 17 at the outflow side. The throughflow holes 24 of said mesh or net structure 23, which are formed between neighbouring webs and which here have a honeycomb-shaped hexagonal available hole cross section, preferably have a longitudinal extent that is larger in comparison to the hole cross section, but at least have a longitudinal extent which suffices for bringing together the water mixed in the housing interior so as to form a homogenous water jet. The guide wall 17 is connected in a rotationally fixed and preferably integral manner to the jet regulator housing 1 and in particular to the outflow-side first housing part 10. At least one tool engagement face for a driving tool is provided herein on the guide wall 17. To this end, at least one slot-shaped recess 29 for inserting a coin used as the driving tool, or any other driving tool, is provided in the mesh or net structure 23. Said recess 29 is delimited by opposite slot longitudinal walls. These slot longitudinal walls of the recess 24 form tool engagement faces for the driving tool.
[0085] In order for the external thread 2 to be designed having a thread profile that deviates from a thread groove that in a helical manner continuously encircles a cylindrical wall, the external envelope circle of the external thread on the jet regulator housing that is specified for screw-fitting to the internal thread 3 moulded in the cylindrical water outlet 4 in the case of the jet regulator shown in
[0086] A further deviation of the thread profile forming the external thread 2 is shown in the case of the jet regulator 104 according to
[0087] A further deviation in the thread profile forming the external thread 2 is implemented in the case of the jet regulator 111 illustrated in
[0088] The external thread 2 is configured as a thread profile which at least in regions deviates from a thread groove that in a helical manner continuously encircles a cylindrical wall also in the case of the jet regulator 115 shown in
[0089] It is shown by means of the jet regulators 127 and 130 that the jet regulator housing 1 on the housing external circumference thereof can also have at least one cross-sectional widening 6; 7 which is materially identical to the housing portion of the jet regulator housing 1 that supports the external thread 2 and is moulded so as to be integral thereto, and which is capable of being brought to bear in a sealing manner on the end side and/or internal circumferential side of the water outlet 4. These cross-sectional widenings 6; 7 in the case of the jet regulators 127 and 130 are configured in a flange-type manner and in the housing circumferential direction of the jet regulator housing 1 extend across at least one of the drainage openings 22. The flange-type cross-sectional widenings 6; 7 on the housing external circumference of the jet regulator housing 1 of the jet regulators 127, 130 are provided between the external thread 2 and the at least one drainage opening 22. While the flange-type cross-sectional widenings 6 in the case of the jet regulator 127 shown in
[0090] The jet regulators shown here are distinguished by a high degree of sealing in the region of the annular zone 5 that is situated between the housing external circumference of the jet regulator housing 1 and the internal circumference in the water outlet 4 of the outlet fitting, without separate and in particular materially dissimilar annular seals being required for sealing. The jet regulators 101, 104, 111, 115, 127, and 130 illustrated here are therefore configured so as to be free of an annular seal and make do without an annular seal that is produced from an elastic material so as to be separate from the jet regulator housing 1.
LIST OF REFERENCE SIGNS
[0091] 1 Jet regulator housing [0092] 2 External thread [0093] 3 Internal thread [0094] 4 Water outlet [0095] 5 Annular zone [0096] 6 Flange-type cross-sectional widening (on the jet regulator 127 according to