Turbocharger
A turbocharger, with a turbine for expanding a first medium and a compressor for compressing a second medium utilising energy extracted in the turbine during the expansion of the first medium. The turbine has a turbine housing and a turbine rotor. The compressor has a compressor housing and a compressor rotor coupled to the turbine rotor via a shaft. The turbine housing and the compressor housing are each connected to a bearing housing in which the shaft is mounted. The bearing housing is connected to a turbine inflow housing of the turbine housing via a compensation element.
1 . A turbocharger, comprising
a turbine for expanding a first medium comprising:
a turbine housing
a turbine inflow housing of the turbine housing; and
a turbine rotor;
a shaft;
a compressor for compressing a second medium utilising energy extracted in the turbine during expansion of the first medium, comprising
a compressor housing; and
a compressor rotor coupled to the turbine rotor via the shaft;
a bearing housing arranged between the turbine housing and the compressor housing and to which the turbine housing and the compressor housing are each connected, and in which the shaft is mounted; and
a compensation element that connects the bearing housing to the turbine inflow housing of the turbine housing.
2 . The turbocharger according to claim 1 , wherein the compensation element is connected to the turbine inflow housing at a radially outer section.
3 . The turbocharger according to claim 1 , wherein the compensation element is connected to the bearing housing at a radially inner section.
4 . The turbocharger according to claim 1 , wherein the compensation element seen in a radial direction, comprises a wall that is one of:
contoured in a manner of a bellows section and
follows a bent course.
5 . The turbocharger according to claim 1 , further comprising:
a bearing housing cover connected to the bearing housing.
6 . The turbocharger according to claim 1 , wherein the compensation element comprises a nickel-based alloy material.
7 . The turbocharger according to claim 6 , wherein the nickel-based alloy material has a composition in per cent by weight:
50.00-55.00% nickel (NI),
17.00-21.00% chromium (Cr),
4.75-5.50% niobium (Nb),
2.80-3.30% molybdenum (Mo),
0.65-1.15% titanium (Ti),
0.20-0.80% aluminium (Al), and
iron (Fe) in a remainder.
8 . The turbocharger according to claim 7 , wherein the nickel-based alloy material comprises:
maximally 1.00% cobalt (Co),
maximally 0.08% carbon (C),
maximally 0.35% magnesium (Mg),
maximally 0.35% silicon (Si),
maximally 0.015% phosphorus (P),
maximally 0.017% sulphur (S),
maximally 0.006% boron (B), and
maximally 0.30% copper (Cu).
9 . The turbocharger according to claim 1 , wherein the turbine is a radial turbine.