AIR EXHAUST VALVE FOR VENTILATING ROOMS
20220146142 ยท 2022-05-12
Inventors
- Michael WIND (Malterdingen, DE)
- Andreas HILLER (Mahlberg, DE)
- Valerian RENKE (Steenwijkerwold, NL)
- Remco WALTA (Steenwijkerwold, NL)
Cpc classification
F24F13/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The invention relates to an air exhaust valve (1). The air exhaust valve (1) comprises an inner baffle element (10) located at a radially inside position and an outer baffle element (20) located at a radially outside position and surrounding said inner baffle element (10) for defining an air flow space (70) between said inner baffle element (10) and said outer baffle element (20). There are provided an inner plurality of slits or grooves in said inner baffle element (10) and/or an outer plurality of slits or grooves (21) in said outer baffle element (20).
Claims
1. An air exhaust valve (1) for ventilating rooms and to be installed in a ventilation duct opening in a wall or ceiling of a room, said air exhaust valve (1) comprising an inner baffle element (10) located at a radially inside position and an outer baffle element (20) located at a radially outside position and surrounding said inner baffle element (10) for defining an air flow space (70) between said inner baffle element (10) and said outer baffle element (20), said air flow space having an upstream opening (70a) and a downstream opening (70b) with respect to the exhaust air flow direction through said exhaust air valve, characterized in that an inner plurality of slits or grooves are provided in said inner baffle element (10) and/or an outer plurality of slits or grooves (21) are provided in said outer baffle element (20).
2. The air exhaust valve according to claim 1, wherein said inner plurality of slits or grooves are provided in a downstream end region of said inner baffle element (10).
3. The air exhaust valve according to claim 1, wherein said outer plurality of slits or grooves (21) are provided in a downstream end region of said outer baffle element (20).
4. The air exhaust valve according to claim 1, wherein said inner baffle element (10) and said outer baffle element (20) can be moved relative to each other for changing said air flow space (70) between said inner baffle element (10) and said outer baffle element (20).
5. The air exhaust valve according to claim 1, wherein said inner baffle element (10) is rotationally symmetrical.
6. The air exhaust valve according to claim 5, wherein said inner baffle element (10) is an inner cone element (10).
7. The air exhaust valve according to claim 1, wherein said outer baffle element (20) is rotationally symmetrical.
8. The air exhaust valve according to claim 7, wherein said outer baffle element (20) is an outer cone element (20).
9. The air exhaust valve according to claim 1, wherein at least one of said inner baffle element (10) and said outer baffle element (20) is threadably mounted by a thread element having as its thread axis an axis extending across a center point of a central region of said inner baffle element (10) and said outer baffle element (20).
10. The air exhaust valve according to claim 9, wherein at least one of said inner baffle element (10) and said outer baffle element (20) has angularly spaced surface markings positioned along a circle having as its center said center point of said central region of said inner baffle element (10) and said outer baffle element (20).
11. The air exhaust valve according to claim 9, wherein an axial spacing (distance) between said inner baffle element (10) and said outer baffle element (20) is manually adjustable.
12. The air exhaust valve according to claim 9, wherein the air exhaust valve comprises an adjustment and locking element (30) for locking the adjusted axial spacing (distance) between said inner baffle element (10) and said outer baffle element (20).
13. The air exhaust valve according to claim 1, wherein said air exhaust valve (1) comprises a middle baffle element (60) located at a radially intermediate position between said inner baffle element (10) and said outer baffle element (20) for partially filling said air flow space (70) between said inner baffle element (10) and said outer baffle element (20).
14. The air exhaust valve according to claim 13, wherein a middle plurality of slits or grooves (61) are provided in said middle baffle element (60).
15. The air exhaust valve according to claim 13, wherein said middle plurality of slits or grooves (61) are provided in a downstream end region of said middle baffle element (60).
16. The air exhaust valve according to any one of claim 13, wherein said middle baffle element (60) can be moved relative to said inner baffle element (10) and said outer baffle element (20) for changing said air flow space (70) between said inner baffle element (10) and said outer baffle element (20).
17. The air exhaust valve according to any one of claim 13, wherein said middle baffle element (60) is rotationally symmetrical.
18. The air exhaust valve according to claim 17, wherein said middle baffle element (60) is a middle cone element (60).
19. The air exhaust valve according to claim 13, wherein said middle baffle element (60) comprises a plurality of holes at its surface.
20. The air exhaust valve according to claim 13, wherein said middle baffle element (60) is a solid element having blind holes at its surface.
21. (canceled)
22. (canceled)
23. (canceled)
Description
[0039]
[0040]
[0041]
[0042] Referring to
[0043] The locking element 30 comprises an upper fixing element 31, a thread element 32 and a lower fixing element 33. These three elements 31, 32, 33 are arranged sequentially along the axis of symmetry of the air exhaust valve 1. In their assembled state, these three elements 31, 32, 33 hold all the elements of the exhaust valve 1 together.
[0044] The upper fixing element 31 comprises a first snap formation 31a at its bottom end.
[0045] The thread element 32 is shaped as a circular cylinder or as a cylindrical tube and comprises an outer thread 32a on its outer cylindrical surface. The outer thread 32a as shown is a helical groove in the outer cylindrical surface of the thread element 32. Alternatively, the outer thread may be a helical ridge (not shown) on the outer cylindrical surface of the thread element 32. In addition, the thread element 32 comprises a second snap formation 32b complementary to the first snap formation 31a of the upper fixing element 31.
[0046] The lower fixing element 33 is shaped as a partially cylindrical body with an inner partially cylindrical surface and comprises an inner thread (not shown) on its inner partially cylindrical surface. The inner thread is a helical ridge (not shown) on the inner cylindrical surface of the thread element 32. Alternatively, the inner thread may be a helical groove (not shown) in the outer cylindrical surface of the thread element 32. In addition, the lower fixing element 33 has a first locking formation 33a.
[0047] In the assembled state, the first snap formation 31a of the upper fixing element 31 engages the second snap formation 32b of the thread element 32 in a snap engagement, the corresponding threads of the thread element 32 engage the bottom fixing element 33 in a thread engagement, and the first locking formation 33a of the lower fixing element 33 engages a second locking formation 90a of the bottom plate 90. The second locking formation 90a is complementary to the first locking formation 33a, thus allowing a locking engagement between the lower fixing element 33 and the bottom plate 90. As a result, the fan element 40, the outer baffle element or outer cone element 20 and the inner baffle element or inner cone element 10 are held together. By rotating the lower subunit comprising the lower fixing element 33, the inner baffle element 10 and the bottom plate 90 with respect to the upper subunit comprising the thread element 32, the outer baffle element 20 and the upper fixing element 31, the axial distance between the outer baffle element 20 and the inner baffle element 10 can be adjusted.
[0048] As best seen in
[0049] The ring element 80 comprises two adjacent flange portions spaced along the axis of symmetry of the ring element 80 and extending in a radially outward direction. The axis of symmetry of the ring element 80 is congruent with the axis of symmetry of the air exhaust valve 1 when the ring element 80 is installed in the air exhaust valve 1. One of the two flange portions comprises a plurality of circumferentially spaced indentations 80a.
[0050] Referring to
[0051] Referring to
[0052] Referring to
[0053] Referring to
[0054] Referring to
[0055] Referring to
[0056] Referring to
[0057] Referring to
[0058] Referring to
[0059] The third embodiment is very similar to the first embodiment. However, the third embodiment differs from the first embodiment by having no slits at all, i.e. no slits in the inner baffle element or inner cone element 10 and no slits in the outer baffle element or outer cone element 20.
[0060] All elements of the third embodiment, shown in
[0061] Referring in particular to
REFERENCE NUMERALS
[0062] 1 air exhaust valve [0063] 10 inner baffle element/inner cone element [0064] 20 outer baffle element/outer cone element [0065] 21 slots/slits or grooves [0066] 30 adjustment and locking element [0067] 31 upper fixing element [0068] 31a first snap formation [0069] 32 thread element [0070] 32a outer thread [0071] 32b second snap formation (complementary to 31a) [0072] 33 lower fixing element [0073] 33a first locking formation [0074] 40 fan element [0075] 41 first fan blade [0076] 42 second fan blade [0077] 43 third fan blade [0078] 50 cover plate [0079] 60 middle baffle element/middle cone element [0080] 61 slots/slits or grooves [0081] S10 contour line of inner cone element 10 [0082] S20 contour line S of outer cone element 20 [0083] S60 contour line of middle cone element 60 [0084] 70 air flow space [0085] 70a upstream opening [0086] 70b downstream opening [0087] 80 ring element [0088] 80a indentation [0089] 90 bottom plate [0090] 90a second locking formation (complementary to 33a)