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(11) | EP 3 412 916 A1 |
(12) | EUROPEAN PATENT APPLICATION |
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(54) | CENTRIFUGAL COMPRESSOR, SUPERCHARGER, AND METHOD FOR MANUFACTURING CENTRIFUGAL COMPRESSOR |
(57) There is provided a centrifugal compressor (10) including: an impeller (11) that
is mounted on a rotor shaft (30), and compresses air flowing in from an intake (11a),
and then discharges the compressed air from a discharge port (11b); an air inlet casing
(12) that houses the impeller (11); a scroll section (13) which is disposed on an
outer peripheral side with respect to the air inlet casing (12), and into which the
compressed air discharged from the discharge port (11b) flows; a plurality of partition
plates (14) provided on an upstream side in an air circulation direction with respect
to the intake (11a), and each having a predetermined length in a direction of an axial
line of the rotor shaft (30); and a silencer (15) having a silencer casing (15a) for
housing the plurality of partition plates, wherein the plurality of partition plates
(14) are radially disposed about the axial line (X), and each are a rolled steel material
having a plate thickness of 4 mm or more and 9 mm or less.
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{Technical Field}
{Background Art}
{Citation List}
{Patent Literature}
{PTL 1} Japanese Unexamined Patent Application, Publication No. 2011-117417
{PTL 2} Japanese Unexamined Patent Application, Publication No. 2001-132465
{Summary of Invention}
{Technical Problem}
{Solution to Problem}
{Advantageous Effects of Invention}
{Brief Description of Drawings}
{Fig. 1} Fig. 1 is a longitudinal sectional view illustrating an embodiment of a supercharger.
{Fig. 2} Fig. 2 is a sectional view taken along the A-A arrow of a silencer illustrated in Fig. 1.
{Fig. 3} Fig. 3 is a sectional view taken along the B-B arrow of the silencer illustrated in Fig. 2.
{Fig. 4} Fig. 4 is a partial enlarged view illustrating the vicinity of a fastening position of the silencer casing and a scroll casing illustrated in Fig. 1.
{Fig. 5} Fig. 5 is a partial enlarged view illustrating the vicinity of a fastening position of the scroll casing and a flange section illustrated in Fig. 1.
{Fig. 6} Fig. 6 is a diagram of outer peripheral edges of the scroll casing and the flange section as viewed from the P direction illustrated in Fig. 1.
{Fig. 7} Fig. 7 is a sectional view taken along the C-C arrow of the outer peripheral edges of the scroll casing and the flange section illustrated in Fig. 6, which illustrates a state where the scroll casing and the flange section are in contact with each other.
{Fig. 8} Fig. 8 is a sectional view taken along the C-C arrow of the outer peripheral edges of the scroll casing and the flange section illustrated in Fig. 6, which illustrates a state where the scroll casing and the flange section are separated from each other.
{Description of Embodiments}
Other Embodiment
{Reference Signs List}
{FURTHER EMBODIMENTS}
an impeller that is mounted on a rotor shaft, and compresses fluid flowing in from an intake, and then discharges the compressed fluid from a discharge port;
an inlet casing that houses the impeller;
a scroll section which is disposed on an outer peripheral side with respect to the inlet casing, and into which the compressed fluid discharged from the discharge port flows;
a plurality of partition plates provided on an upstream side in a fluid circulation direction with respect to the intake, and each having a predetermined length in a direction of an axial line of the rotor shaft; and
a silencer having a silencer casing for housing the plurality of partition plates, wherein
the plurality of partition plates are radially disposed about the axial line, and each are a rolled steel material having a plate thickness of 4 mm or more and 9 mm or less.
an impeller that is mounted on a rotor shaft, and compresses fluid flowing in from an intake, and then discharges the compressed fluid from a discharge port;
an inlet casing that houses the impeller;
a scroll section that is disposed on an outer peripheral side with respect to the inlet casing, and has a scroll casing forming a volute chamber into which the compressed fluid discharged from the discharge port flows;
a bearing pedestal having a bearing section for supporting the rotor shaft, and a flange section for supporting the scroll section;
a plurality of flange section fastening bolts that fasten the flange section to the scroll casing at a plurality of fastening positions around the axial line of the rotor shaft, and extend in the direction of the axial line; and
a plurality of clamp members having recesses which surround an outer peripheral edge of the flange section and an outer peripheral edge of the scroll casing from an outer peripheral side, and through holes which are opened to the recesses, and extend in the direction of the axial line, wherein
one of either the flange section or the scroll casing has a plurality of fastening holes extending in the direction of the axial line, in a peripheral direction around the axial line,
one of either the flange section or the scroll casing, and the clamp members are fastened to each other by clamp member fastening bolts inserted into the through holes and the fastening holes, and
predetermined gaps are provided between an end face in the direction of the axial line of the other of either the flange section or the scroll casing, and end faces in the direction of the axial line of the recesses.
a centrifugal compressor according to any one of embodiments 1 to 8; and
a turbine that is rotated around the axial line by exhaust gas exhausted from an internal combustion engine, and is connected to the rotor shaft.
mounting an impeller on a rotor shaft, the impeller for compressing fluid flowing in from an intake and then discharging the compressed fluid from a discharge port;
mounting an inlet casing so as to house the impeller, and forming a flow passage for leading the fluid flowing in from the intake to the discharge port;
disposing a scroll section, into which the compressed fluid discharged from the discharge port flows, on an outer peripheral side in a radial direction orthogonal to the direction of the axial line with respect to the inlet casing; and
providing a plurality of partition plates on an upstream side in a fluid circulation direction with respect to the intake, and radially disposing about the axial line so as to each have a predetermined length in the direction of the axial line, each of the plurality of partition plates having a plate thickness of 4 mm or more and 9 mm or less.
an impeller (11) that is mounted on a rotor shaft (30), and compresses fluid flowing in from an intake, and then discharges the compressed fluid from a discharge port;
an inlet casing (12) that houses the impeller (11);
a scroll section (13) that is disposed on an outer peripheral side with respect to the inlet casing (12), and has a scroll casing (13b) forming a volute chamber into which the compressed fluid discharged from the discharge port flows;
a bearing pedestal (20) having a bearing section for supporting the rotor shaft, and a flange section (20a) for supporting the scroll section (13);
a plurality of flange section fastening bolts (41) that fasten the flange section (20a) to the scroll casing (13b) at a plurality of fastening positions around the axial line of the rotor shaft (30), and extend in the direction of the axial line; and
a plurality of clamp members (60) having recesses which surround an outer peripheral edge of the flange section (20a) and an outer peripheral edge of the scroll casing (13b) from an outer peripheral side, and through holes which are opened to the recesses, and extend in the direction of the axial line, wherein
one of either the flange section (20a) or the scroll casing (13b) has a plurality of fastening holes extending in the direction of the axial line, in a peripheral direction around the axial line,
one of either the flange section (20a) or the scroll casing (13b), and the clamp members (60) are fastened to each other by clamp member fastening bolts (43) inserted into the through holes and the fastening holes, and
predetermined gaps are provided between an end face in the direction of the axial line of the other of either the flange section (20a) or the scroll casing (13b), and end faces in the direction of the axial line of the recesses.
a centrifugal compressor (10) according to any one of claims 1 to 3; and
a turbine that is rotated around the axial line by exhaust gas exhausted from an internal combustion engine, and is connected to the rotor shaft (30).
REFERENCES CITED IN THE DESCRIPTION
Patent documents cited in the description