Device for lowering flow noises
10794341 ยท 2020-10-06
Assignee
Inventors
- Ralf Buck (Kipfenberg/Schelldorf, DE)
- Michael Heuer (Kassel, DE)
- Dirk Nagel (Dassel, DE)
- Philipp Troeger (Hannover, DE)
- Norbert Luebbe (Roedinghausen, DE)
Cpc classification
F16L55/02781
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L55/033
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/022
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M35/10157
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M35/10295
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/102
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M35/1266
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M35/1283
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M35/10144
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/104
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/0893
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02M35/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L55/027
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M35/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L55/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A device (1) for lowering flow noises has opposed first and second connection pieces (2, 3), and outer and inner sleeves (4, 5) between the connection pieces. A radial collar (6) is between the sleeves (4, 5) and forms separated volume chambers. Openings (11) in the inner sleeve (5) connect the volume chambers to a line space (13) enclosed by the inner sleeve (5). A sealing ring (15) at the free end (14) of the collar (6) defines a ring cap with a lateral surface (21) that reaches over the collar (6) and seals against the sleeve (4, 5) adjacent the free end (14) of the collar (6) and that has a surface (23, 26) that seals against either an end face (25) of the collar (6) or a side surface (28) of the collar (6) extending parallel to the radial collar (6).
Claims
1. A device (1, 1) for lowering flow noises, comprising a first connection piece (2, 2), a second connection piece (3, 3) facing away from the first connection piece (2, 2), an outer sleeve (4, 4) and an inner sleeve (5, 5) arranged between the first connection piece (2, 2) and the second connection piece (3, 3), at least one peripherally extending radial collar (6, 6) arranged between the inner sleeve (5, 5) and the outer sleeve (4, 4) and defining at least two volume chambers (7, 7, 8, 8, 9, 9, 10, 10) separated from each other by the at least one radial collar (6, 6), openings (11, 11) in a wall (12, 12) of the inner sleeve (5, 5) and connecting the volume chambers to a line space (13, 13) enclosed by the inner sleeve (5, 5), and a sealing ring (15, 15) at a free end (14, 14) of the radial collar, wherein the sealing ring (15, 15) is a ring cap that reaches over the collar (6, 6) and lies against a wall surface (22, 35) of the sleeve (4, 4, 5, 5) adjacent to the free end (14, 14) of the collar (6, 6) in a sealing manner by means of a peripherally extending outer lateral surface (21, 21) of the ring cap, and wherein the ring cap lies under tension against the peripherally extending end face (25, 25) of the free end (14, 14) of the collar (6, 6) in a sealing manner by means of an inner lateral surface (23, 23) of the sealing ring facing away from the outer lateral surface (21, 21) or lies against the side surface (28) of the collar (6, 6) facing the ring cap in a sealing manner by means of an annular radial contact surface (26 extending parallel to the radial collar (6, 6), and the sealing ring (15, 15) is constructed from a wire mesh, a mesh made of silicate fibers or a compound mesh made or wire and silicate fibers.
2. The device of claim 1, wherein the sealing ring (15, 15, 15) has elastic properties.
3. The device of claim 1, wherein the peripherally extending radial collar (6) has a fixed end facing away from the free end (14), the fixed end is securely arranged at the inner sleeve (5) and the free end (14) is sealed against the outer sleeve (4) by means of the sealing ring (15).
4. The device of claim 1, wherein the peripherally extending radial collar (6) has a fixed end facing away from the free end (14), the fixed end being securely arranged at the outer sleeve (4) and with the free end (14) being sealed against the inner sleeve (5) by means of the sealing ring (15).
5. The device of claim 1, wherein the sleeve (5, 4) connected to the fixed end of the collar (6, 6) and the collar (6, 6) are made of plastic.
6. The device of claim 1, wherein the sleeve (4, 5) that is not connected to the free end of the collar (6, 6) is made of metal.
7. A device (1) for lowering flow noises, comprising: a first connection piece (2), a second connection piece (3) facing away from the first connection piece (2), an outer sleeve (4) arranged between the first connection piece (2) and the second connection piece (3) and an inner sleeve (5) arranged between the first connection piece (2) and the second connection piece (3), at least two volume chambers (7, 8, 9, 10) arranged between the inner sleeve (5) and the outer sleeve (4) and separated from each other by at least one peripherally extending radial collar (6), the inner sleeve (5) having a wall (12) enclosing a line space (13), the wall (12) having openings (11) that connect the line space (13) to the volume chambers (7, 8, 9, 10), the radial collar (6) having a sealing ring (15) at a free end (14) of the radial collar (6), the sealing ring (15) being a ring cap that reaches over the radial collar (6) and lies against a wall surface (22) of the sleeve (4) opposed to the free end (14) of the radial collar (6) in a sealing manner by means of a peripherally extending outer lateral surface (21) of the ring cap, wherein: the sealing ring (15) has an annular radial contact surface (26) extending parallel to the radial collar (6) and lying under tension in a sealing manner against a first radial side surface (28) of the radial collar (6) facing toward the ring cap, and wherein: the sealing ring (15) has a jacket (24) with clamp profiles (29, 30) formed by lateral surfaces (21, 23) at an end facing away from the annular radial contact surface (26), the clamp profiles (29, 30), in a mounted state, abut under tension with a second radial side surface (36) of the collar (6) facing away from the first radial side surface (28), and the contact surface (26) of the ring cap being tensioned with corresponding tension against the first radial side surface (28) facing toward the contact surface (26).
8. The device of claim 7, wherein the sealing ring (15) is constructed of a resilient stainless steel.
9. The device of claim 7, wherein the peripherally extending radial collar (6) has a fixed end facing away from the free end (14), the fixed end is securely arranged at the inner sleeve (5) and the free end (14) is sealed against the outer sleeve (4) by means of the sealing ring (15).
10. The device of claim 7, wherein the peripherally extending radial collar has a fixed end facing away from the free end, the fixed end being securely arranged at the outer sleeve and with the free end being sealed against the inner sleeve by means of the sealing ring.
11. The device of claim 7, wherein the sleeve (5) connected to the fixed end of the collar (6) and the collar (6) are made of plastic.
12. The device of claim 7, wherein the sleeve (4) that is not connected to the fixed end of the collar (633333333333) is made of aluminum or metal.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(12) A device 1 for lowering flow noises (silencer) essentially comprises a first connection piece 2, a second connection piece 3, an outer sleeve 4 and an inner sleeve 5.
(13) In the exemplary embodiments, the outer sleeve 4 and the inner sleeve 5 are arranged concentrically with respect to each other and between the first connection piece 2 and the second connection piece 3. In particular, the outer sleeve 4 can differ from the circular shape and can, for example, be constructed from two half shells (not shown). Between the inner sleeve 5 and the outer sleeve 4, in each case two adjacent volume chambers 7, 8, 9, 10 separated from each other by a peripherally extending radial collar 6 are arranged, said volume chambers being connected to the line space 13, which is enclosed by the inner sleeve 5, by means of openings 11 in the wall 12 of the inner sleeve 5. In the exemplary embodiments, the openings 11 are shown as slits. However, they can also be configured as holes, for example.
(14) The first connection piece 2 forms an inlet piece and the second connection piece 3 forms an outlet piece. In principle, the first connection piece 2 can also form the outlet piece, and the second connection piece 3 can form the inlet piece.
(15) According to the exemplary embodiment in
(16) According to the exemplary embodiment from
(17) According to the device 1 of the exemplary embodiment from
(18) According to the exemplary embodiment in
(19) The sealing ring 15 has, at its jacket 24 formed by the lateral surfaces 21 and 23, at its end facing away from the contact surface 26, a plurality of clamp profiles 29, 30 that in the mounted state lie under tension against the second side surface 35 of the collar 6 facing away from the side surface 28 and by means of which the contact surface 26 of the ring cap is placed under corresponding tension against the lateral surface 28 facing toward the contact surface 26.
(20) The sealing ring 15 preferably has a second ring cap arranged with mirror symmetry (without clamp profiles) that has a second jacket 31 which, with its outer lateral surface 32, also lies under tension in a sealing manner against the wall surface 22. In the direction toward the ring wall 27, the second jacket 31 transitions into a second ring wall 33 that extends parallel to the first ring wall 27 and which at its end 34 facing away from the second jacket 31 transitions arcuately into the first ring wall 27.
(21) Of course, the embodiments discussed in the specific description and shown in the figures are merely illustrative exemplary embodiments of the present invention. For example, the inlet and outlet, i.e. the flow direction, can be reversed. In addition to being applied to cylindrical cross-sections, the functional principle can also be used in connection with other cross-sectional shapes. In light of this disclosure, a person skilled in the art is given a wide range of possible variations.
LIST OF REFERENCE NUMBERS
(22) 1, 1, 1 Device 2, 2, first connection piece 3, 3 second connection piece 4, 4, outer sleeve 5, 5 inner sleeve 6, 6 collar 7, 7 volume chamber 8, 8 volume chamber 9, 9 volume chamber 10, 10 volume chamber 11, 11 opening 12 wall of 5 13, 13 line space of 5 14, 14 free end of 6 15, 15, 15 sealing ring 16, 16 side wall of 2 17 first end of 4 18 seal of 17 19, 19 second end of 4 20 side wall of 3 21, 21, outer lateral surface of 15 22 wall surface of 4 23, 23, 23 inner lateral surface of 15 24, 24, 24 jacket of 15 25, 25 end face of 14 26, 26 radial contact surface of 27 27, 27, 27 ring wall of 15 28 side surface of 6 29 clamp profile of 15 30 clamp profile of 15 31 second jacket of 15 32 outer lateral surface of 31 33 second ring wall of von 15 34 End of 33 35 wall surface of 5 36 second side surface of 6