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EP 2 580 475 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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30.04.2014 Bulletin 2014/18 |
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Date of filing: 09.06.2011 |
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International Patent Classification (IPC):
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International application number: |
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PCT/EP2011/059552 |
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International publication number: |
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WO 2011/154474 (15.12.2011 Gazette 2011/50) |
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A HERMETIC COMPRESSOR
HERMETISCHER VERDICHTER
COMPRESSEUR HERMÉTIQUE
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Designated Contracting States: |
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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 |
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Priority: |
09.06.2010 TR 201004656
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Date of publication of application: |
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17.04.2013 Bulletin 2013/16 |
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Proprietor: Arçelik Anonim Sirketi |
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34950 Istanbul (TR) |
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Inventors: |
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- KASAPOGLU, Erhan
34950 Istanbul (TR)
- SAHIN, Yusuf
34590 Istanbul (TR)
- HACIOGLU, Bilgin
34950 Istanbul (TR)
- ABDIK, Bora
34950 Istanbul (TR)
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References cited: :
EP-A1- 1 808 602 US-A- 3 193 193
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EP-A2- 0 588 381
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
[0001] The present invention relates to a compressor comprising an exhaust muffler.
[0002] In reciprocating hermetic compressors, the pressure of the refrigerant fluid sucked
from the suction muffler is increased as a result of the reciprocating motion made
by the piston inside the cylinder and the high pressure fluid is delivered to the
exhaust muffler to be sent to the refrigeration cycle from there. The pressure of
the refrigerant fluid delivered to the exhaust muffler is 5 to 20 times more than
the pressure of the fluid in the suction muffler depending on working conditions of
the cooling device.
[0003] Under high pressure, pressure fluctuations occur in the refrigerant fluid upon exit
from the cylinder originating from the reciprocating motion of the piston. Noise is
generated resulting from these pressure fluctuations and flow of the refrigerant during
passage of the fluid into the exhaust muffler. The exhaust muffler provides attenuation
in certain frequencies of the generated noise and the pressure fluctuations thus providing
the noise power level to be kept at the desired level. However, while this function
is implemented, the fluid pressure loss is desired to be low during the flow of the
high pressure gas through the exhaust muffler.
[0004] The exhaust mufflers (2') in the state of the art hermetic compressors (1') generally
have a cylindrical shape (Figure 1). The pressure losses of the refrigerant fluid
are aimed to be decreased by increasing the inner volume of the exhaust mufflers.
Because the losses incurred in the refrigerant fluid pressure adversely affect the
compressor efficiency. Increasing dimensions of the exhaust muffler is an undesired
situation since it will also increase the size of the compressor. Furthermore, it
is not possible to increase the dimensions of the exhaust muffler by maintaining its
present shape due to space limitations inside the compressor casing. When the dimensions
of the exhaust muffler are desired to be increased by keeping the size of the compressor
constant, the problem of the exhaust muffler bumping into the crankshaft and the piston
rod connected thereto inside the casing arises.
[0005] In the state of the art Japanese Patent Document No.
JP58128481, a compressor is defined which comprises an exhaust muffler having a cylindrical
body.
EP 0588381 discloses the closest prior art.
[0006] The aim of the present invention is the realization of a hermetic compressor the
refrigeration capacity of which is increased and efficiency of which is improved.
[0007] The hermetic compressor realized in order to attain the aim of the present invention,
explicated in the first claim and the respective claims thereof, comprises a suction
muffler disposed in the casing, that provides the noise generated during suction of
the refrigerant fluid to be attenuated, an exhaust muffler disposed on the block wherein
the basic mechanical elements like the cylinder, piston, crankshaft and piston rod
are borne, providing the noise generated during pumping of the refrigerant fluid to
be attenuated. The cross section length of the exhaust muffler in the horizontal plane
is longer than its width. The cross sectional area in the horizontal plane of the
exhaust muffler, having a hollow, closed volume, is increased such that the total
width of the hermetic compressor does not change. Consequently, the interior volume
of the exhaust muffler is enlarged. Accordingly, the pressure fluctuations and the
pressure decrease occurring in the exhaust muffler are diminished. Furthermore, the
feature of the exhaust muffler for attenuating noises at certain frequencies is improved.
[0008] In an embodiment of the present invention, the base of the exhaust muffler seated
on the block is in elliptical form. The side walls surrounding the base extend almost
perpendicularly to the base. The cross section of the side walls in the horizontal
plane has an oval form. Thus, the base area of the exhaust muffler is enlarged without
changing the dimensions of the hermetic compressor. Consequently, the feature of the
exhaust muffler for attenuating noises at certain frequencies is improved.
[0009] In another embodiment of the present invention, the base of the exhaust muffler is
in oblong form, such that the short sides are rounded to be almost semicircular. Thus,
the production of the exhaust muffler is facilitated.
[0010] In another embodiment of the present invention, the base of the exhaust muffler is
in rectangular form with rounded corners.
[0011] By the present invention, the pressure loss occurring in the exhaust muffler is decreased
and hence the efficiency of the hermetic compressor is increased by enlarging the
interior volume of the exhaust muffler by means of its configuration. Furthermore,
the feature of the exhaust muffler for attenuating noises at certain frequencies is
improved.
[0012] The hermetic compressor realized in order to attain the aim of the present invention
is illustrated in the attached figures, where:
Figure 1 - is the top view of a state of the art hermetic compressor.
Figure 2 - is the cross sectional view of a hermetic compressor.
Figure 3 - is the top view of the hermetic compressor related to an embodiment of
the present invention.
Figure 4 - is the perspective view of the exhaust muffler and some portion of the
block related to an embodiment of the present invention.
Figure 5 - is the top view of the exhaust muffler and some portion of the block related
to an embodiment of the present invention.
[0013] The elements illustrated in the figures are numbered as follows:
- 1. Hermetic compressor
- 2. Casing
- 3. Suction muffler
- 4. Exhaust muffler
- 5. Motor
- 6. Cylinder
- 7. Piston
- 8. Crankshaft
- 9. Piston rod
- 10. Block
- 11. Cylinder head
- 12. Valve table
- 13. Suction valve
- 14. Exhaust valve
- 15. Lid
- 16. Duct
- 17. Base
- 18. Side wall
[0014] In cooling devices, for example in refrigerators, the circulation of the refrigerant
fluid is provided by a hermetic compressor (1).
[0015] The hermetic compressor (1) comprises a casing (2) which carries the components therein,
a motor (5) disposed inside the casing (2), a cylinder (6) providing the refrigerant
fluid to be pumped, a piston (7) functioning in the cylinder (6), providing the refrigerant
fluid to be compressed into the cylinder (6) hole, a crankshaft (8) that transfers
the motion delivered from the motor (5) and a piston rod (9) that transfers the motion
received from the crankshaft (8) to the piston (7) (Figure 2). The rotational motion
in the motor (5) is delivered to the piston (7) by the crankshaft (8)-piston rod (9)
mechanism and thus the reciprocating motion of the piston (7) is provided.
[0016] The hermetic compressor (1) furthermore comprises a cylinder head (11) that provides
circulation of the refrigerant fluid which is sucked and pumped by the motion of the
piston (7), a valve table (12) disposed between the cylinder (6) and the cylinder
head (11), the suction valve (13) and the exhaust valve (14) disposed on the valve
table (12) (Figure 2).
[0017] The compressor (1) furthermore comprises a block (10) disposed inside the casing
(2) that carries and/or bears the basic mechanical components like the cylinder (6),
the piston (7), the crankshaft (8) and the piston rod (9), a suction muffler (3),
disposed in the casing (2), providing the noise generated during suction of the refrigerant
fluid to be attenuated and at least one exhaust muffler (4), disposed on the block
(10), having a hollow, closed volume, providing the noise generated during pumping
of the refrigerant fluid to be attenuated (Figure 2, Figure 3 and Figure 4). The pressure
of the refrigerant fluid, sucked by means of the suction valve (13) from the suction
muffler (3) that is disposed under the cylinder head (11), through which the sucked
refrigerant fluid passes, is increased as a result of the motion made by the piston
(7) in the cylinder (6). The refrigerant fluid having high pressure is pumped into
the exhaust muffler (4) by means of the exhaust valve (14). The refrigerant fluid
delivered to the exhaust muffler (4) joins the refrigeration cycle from there.
[0018] In the compressor (1) of the present invention, the cross sectional length (I) of
the exhaust muffler (4) in the horizontal plane is more than its width (w) (Figure
3, Figure 4 and Figure 5). The exhaust muffler (4) is produced on the block (10),
shaped as a framework and that is preferably produced of cast material, and integrated
with the block (10). The exhaust muffler (4) has a base (17) that is disposed on the
block (10), the side walls (18) surrounding the base (17), a lid (15) covering its
upper surface and a duct (16) attached to the lid (15). A hollow, closed volume is
obtained by mounting the lid (15) with a method like screwing etc. on the upper surface
of the exhaust muffler (4).
[0019] Entry of the refrigerant fluid into the exhaust muffler (4) is provided by an opening
arranged thereon that communicates with the cylinder head (11). The refrigerant fluid
compressed in the cylinder (6) hole by the motion of the piston (7) fills into the
cylinder head (11) upon opening of the exhaust valve (14) and passes into the exhaust
muffler (4) from there by means of the opening. The refrigerant fluid inside the exhaust
muffler (4) reaches the outlet duct of the hermetic compressor (1) by passing through
the duct (16) disposed on the lid (15) and is delivered to the cooling device refrigeration
system from there.
[0020] The interior volume of the exhaust muffler (4) is enlarged by means of the cross
sectional length (I) extending in the horizontal plane of the exhaust muffler (4)
of the present invention being larger than its width (w). Consequently, the pressure
fluctuations occurring in the exhaust muffler (4) are decreased and the refrigerant
fluid pressure decrease resulting from pressure fluctuations is minimized. Improvement
in compressor (1) efficiency is provided by minimizing the pressure decrease in the
exhaust muffler (4). Furthermore, attenuation of noise at a certain frequency is realized
more effectively by means of the exhaust muffler (4) configuration. Consequently,
an improvement is also provided in the vibrational acoustic properties of the com
pressor (1).
[0021] The distance between the outer periphery of the exhaust muffler (4) seated on the
block (10) and the crankshaft (8) is one of the factors that determine the width of
the compressor (1). Decreasing the width (w) of the hermetic compressor (1) is possible
without decreasing the interior volume of the exhaust muffler (4) by means of decreasing
the cross sectional width (w) of the exhaust muffler (4) in the horizontal plane with
respect to its length (I). Furthermore, by producing the exhaust muffler (4) with
the cross sectional width (w) unequal to the length (I), the possibility of the exhaust
muffler (4), with increased cross sectional area and hence interior volume, bumping
to the crankshaft (8) and the piston rod (9) connected to the crankshaft (8) due to
space limitation in the casing (2) is eliminated.
[0022] The length (I) of the exhaust muffler (4) in the movement direction of the piston
(7) is longer than its length (I) that is perpendicular to the movement direction
of the piston (7). Thus, the cross sectional area of the exhaust muffler (4) in the
horizontal plane and hence the interior volume is increased without the possibility
of the exhaust muffler (4) bumping to the crankshaft (8) in the casing (2) and to
the piston rod (9) transferring the motion received from the crankshaft (8) to the
piston (7).
[0023] In an embodiment of the present invention, the exhaust muffler (4) has an elliptical
base (17) and side walls (18) that extend almost perpendicularly to the base (17).
The cross section of the side walls (18) that extend almost parallel to the base (17)
are also in elliptical form. Accordingly, attenuation of the noise generated during
pumping of the refrigerant fluid is made effective by increasing the cross sectional
area of the exhaust muffler (4) in the horizontal plane and hence the volume.
[0024] In an embodiment of the present invention, the exhaust muffler (4) has an oblong
base (17) and side walls (18) that extend almost perpendicularly to the base (17)
(Figure 3, Figure 4 and Figure 5). The cross section of the exhaust muffler (4) in
the horizontal plane is in form of a rectangular with the short sides rounded in almost
semicircular form. Accordingly, when space limitations in the casing (2) are taken
into account, the cross section of the exhaust muffler (4) in the horizontal plane
is provided to be in the largest value as possible. Thus, on one hand the pressure
decrease of the refrigerant fluid in the exhaust muffler (4) is minimized and on the
other hand the production of the exhaust muffler (4) is facilitated.
[0025] In another embodiment of the present invention, the exhaust muffler (4) has a rectangular
base (17) with rounded corners and side walls (18) that extend almost perpendicularly
to the base (17). Thus, the production of the exhaust muffler (4) is facilitated.
[0026] In the hermetic compressor (1) of the present invention, not only efficiency of the
hermetic compressor (1) is increased but also the ability of the exhaust muffler (4)
to attenuate noises at certain frequencies is improved by means of the exhaust muffler
(4) configuration.
[0027] It is to be understood that the present invention is not limited to the embodiments
disclosed above and a person skilled in the art can easily introduce different embodiments.
These different embodiments should also be considered within the scope of the claims
of the present invention.
1. A hermetic compressor (1) comprising a casing (2), defining a predetermined set-up
orientation of the hermetic compressor (1) when arranged on a plane surface, said
hermetic compressor (1) further comprising a motor (5) disposed inside the casing
(2), a cylinder (6) providing the refrigerant fluid to be pumped, a piston (7) functioning
in the cylinder (6) and being movable in a horizontal plane parallel to the plane
surface when the hermetic compressor (1) has its set-up orientation and providing
the refrigerant fluid to be compressed into the cylinder (6) hole, a crankshaft (8)
that transfers the motion delivered from the motor (5) and a piston rod (9) that transfers
the motion received from the crankshaft (8) to the piston (7), a block (10) disposed
inside the casing (2) that carries and/or bears the cylinder (6), the piston (7),
the crankshaft (8) and the piston rod (9), wherein further a suction muffler (3) is
disposed in the casing (2), providing the noise generated during suction of the refrigerant
fluid to be attenuated, and at least one exhaust muffler (4), disposed on the block
(10) adjacent to the piston (7), said exhaust muffler (4) having a hollow, closed
volume, providing the noise generated during pumping of the refrigerant fluid to be
attenuated, characterized in that the exhaust muffler (4) has a cross sectional length (I) in the horizontal plane
in which the piston (7) is movable which is greater than a cross sectional width (w)
in said horizontal plane.
2. A hermetic compressor (1) as in Claim 1, characterized by the exhaust muffler (4) having a base (17) disposed on the block (10), side walls
(18) surrounding the base (17), a lid (15) covering its upper surface and a duct (16)
attached to the lid (15).
3. A hermetic compressor (1) as in Claim 1 or 2, characterized in that in the exhaust muffler (4) the length (I) in the movement direction of the piston
(7) is longer than its width perpendicular to the movement direction of the piston
(7).
4. A hermetic compressor (1) as in any of Claims 1 to 3, characterized in that the exhaust muffler (4) is integrated with the block (10).
5. A hermetic compressor (1) as in any one of the Claims 1 to 4, characterized by the exhaust muffler (4) having an elliptic base (17) and side walls (18) that extend
perpendicularly to the base (17).
6. A hermetic compressor (1) as in any one of the Claims 1 to 4, characterized by the exhaust muffler (4) having an oblong base (17) and side walls (18) that extend
perpendicularly to the base (17).
7. A hermetic compressor (1) as in any one of the Claims 1 to 4, characterized by the exhaust muffler (4) having a rectangular base (17) with rounded corners and side
walls (18) that extend perpendicularly to the base (17).
1. Hermetischer Kompressor (1), umfassend ein Gehäuse (2), das eine im Voraus festgelegte
Aufstellungsausrichtung des hermetischen Kompressors (1) definiert, wenn dieser auf
einer ebenen Fläche angeordnet ist, wobei der hermetische Kompressor (1) ferner einen
Motor (5), der im Gehäuse (2) angeordnet ist, einen Zylinder (6), der für das Pumpen
des Kühlfluids sorgt, einen Kolben (7) zum Betätigen des Zylinders (6), der in einer
horizontalen Ebene parallel zur ebenen Fläche beweglich ist, wenn der hermetische
Kompressor (1) seine Aufstellungsausrichtung aufweist, und dafür sorgt, dass das Kühlfluid
in die Öffnung des Zylinders (6) verdichtet wird, eine Kurbelwelle (8), die die Bewegung
vom Motor (5) überträgt, und eine Kolbenstange (9), die die Bewegung von der Kurbelwelle
(8) an den Kolben (7) überträgt, einen Block (10), der im Gehäuse (2) angeordnet ist
und den Zylinder (6), den Kolben (7), die Kurbelwelle (8) und die Kolbenstange (9)
trägt und/oder lagert, umfasst, wobei ferner ein Ansaugschalldämpfer (3) im Gehäuse
(2) angeordnet ist und dafür sorgt, dass das Geräusch, das beim Ansaugen des Kühlfluids
erzeugt wird, abgeschwächt wird, und wenigstens ein Auslassschalldämpfer (4) am Block
(10) benachbart zum Kolben (7) angeordnet ist, wobei der Auslassschalldämpfer (4)
ein hohles geschlossenes Volumen aufweist und dafür sorgt, dass das Geräusch,das beim
Pumpen des Kühlfluids erzeugt wird, abgeschwächt wird, dadurch gekennzeichnet, dass der Auslassschalldämpfer (4) eine Querschnittlänge (1) in der horizontalen Ebene
aufweist, in der der Kolben (7) beweglich ist, die größer als eine Querschnittsbreite
(w) in der horizontalen Ebene ist.
2. Hermetischer Kompressor (1) nach Anspruch 1, dadurch gekennzeichnet, dass der Auslassschalldämpfer (4) eine Basis (17), die am Block (10) angeordnet ist, Seitenwände
(18), die die Basis (17) umgeben, einen Deckel (15), der seine Oberfläche abdeckt,
und eine Leitung (16) aufweist, die am Deckel (15) angebracht ist.
3. Hermetischer Kompressor (1) nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass bei dem Auslassschalldämpfer (4) die Länge (1) in Bewegungsrichtung des Kolbens (7)
länger als die Breite senkrecht zur Bewegungsrichtung des Kolbens (7) ist.
4. Hermetischer Kompressor (1) nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, dass der Auslassschalldämpfer (4) einstückig mit dem Block (10) gebildet ist.
5. Hermetischer Kompressor (1) nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass der Auslassschalldämpfer (4) eine elliptische Basis (17) und Seitenwände (18) aufweist,
die sich senkrecht zur Basis (17) erstrecken.
6. Hermetischer Kompressor (1) nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass der Auslassschalldämpfer (4) eine längliche Basis (17) und Seitenwände (18) aufweist,
die sich senkrecht zur Basis (17) erstrecken.
7. Hermetischer Kompressor (1) nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass der Auslassschalldämpfer (4) eine rechteckige Basis (17) mit abgerundeten Ecken und
Seitenwände (18) aufweist, die sich senkrecht zur Basis (17) erstrecken.
1. Un compresseur hermétique (1) comprenant un boîtier (2) qui définit une orientation
d'installation prédéterminée du compresseur hermétique (1) lorsqu'il est disposé sur
une surface plane, ledit compresseur hermétique (1) comprenant en outre un moteur
(5) qui est disposé dans le boîtier (2), un cylindre (6) qui permet le pompage du
fluide frigorigène, un piston (7) qui fonctionne dans le cylindre (6) et qui se déplace
dans un plan horizontal parallèle à la surface plane lorsque le compresseur hermétique
(1) est dans l'orientation d'installation et qui permet au fluide frigorigène d'être
comprimé dans le trou du cylindre (6), un vilebrequin (8) qui transmet le mouvement
reçu du moteur (5) et une tige de piston (9) qui transmet le mouvement reçu du vilebrequin
(8) au piston (7), un bloc (10) qui est disposé dans le boîtier (2) et qui supporte
et/ou porte le cylindre (6), le piston (7), le vilebrequin (8) et la tige de piston
(9), où en outre un silencieux d'aspiration (3) est disposé dans le boîtier (2), qui
permet l'atténuation du bruit généré pendant l'aspiration du fluide frigorigène, et
au moins un silencieux d'échappement (4) qui est disposé sur le bloc (10) adjacent
au piston (7), ledit silencieux d'échappement (4) présentant un volume creux et fermé,
permettant l'atténuation du bruit généré pendant le pompage du fluide frigorigène,
caractérisé en ce que le silencieux d'échappement (4) présente une longueur transversale (1) dans le plan
horizontal dans lequel le piston (7) se déplace, qui est supérieure à une largeur
transversale (w) dans ledit plan horizontal.
2. Un compresseur hermétique (1) selon la Revendication 1, caractérisé par le silencieux d'échappement (4) qui présente une base (17) disposée sur le bloc (10),
des parois latérales (18) entourant la base (17), un couvercle (15) couvrant sa surface
supérieure et une conduite (16) fixée au couvercle (15).
3. Un compresseur hermétique (1) selon la Revendication 1 ou 2, caractérisé en ce que dans le silencieux d'échappement (4), la longueur (1) dans le sens de mouvement du
piston (7) est supérieure à sa largeur perpendiculaire au sens de mouvement du piston
(7).
4. Un compresseur hermétique (1) selon l'une quelconque des revendications de 1 à 3,
caractérisé en ce que le silencieux d'échappement (4) est intégré avec le bloc (10).
5. Un compresseur hermétique (1) selon l'une quelconque des revendications de 1 à 4,
caractérisé par le silencieux d'échappement (4) présentant une base elliptique (17) et des parois
latérales (18) qui s'étendent perpendiculairement à la base (17).
6. Un compresseur hermétique (1) selon l'une quelconque des revendications de 1 à 4,
caractérisé par le silencieux d'échappement (4) présentant une base oblongue (17) et des parois latérales
(18) qui s'étendent perpendiculairement à la base (17).
7. Un compresseur hermétique (1) selon l'une quelconque des revendications de 1 à 4,
caractérisé par le silencieux d'échappement (4) présentant une base rectangulaire (17) dont les coins
sont arrondis et des parois latérales (18) qui s'étendent perpendiculairement à la
base (17).
REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only.
It does not form part of the European patent document. Even though great care has
been taken in compiling the references, errors or omissions cannot be excluded and
the EPO disclaims all liability in this regard.
Patent documents cited in the description