Exhaust gas turbocharger shaft having an impeller
09879693 ยท 2018-01-30
Assignee
Inventors
Cpc classification
F04D29/266
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/403
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2220/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D29/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An exhaust gas turbocharger shaft has an impeller connected to the exhaust gas turbocharger shaft in a form-locking manner and is connected to a shaft nut provided on an outer shell surface of the exhaust gas turbocharger shaft. The shaft nut is inserted into a central bore of the impeller in such a way that the impeller forms a form-locking connection with the shaft nut in the radial direction and the circumferential direction.
Claims
1. An exhaust-gas turbocharger shaft assembly comprising: an exhaust-gas turbocharger shaft having an outer shell formed with an external thread; an impeller formed with a central bore, said impeller connected to said exhaust gas turbocharger shaft; and a shaft nut having with an inner shell formed with a thread and being disposed on said outer shell of said turbocharger shaft; said shaft nut connected to said exhaust-gas turbocharger shaft by being screwed onto said exhaust-gas turbocharger shaft; shaft nut having an external shell shape, and said central bore of said impeller having a receiving section with an internal shell shape corresponding to said external shape of said shaft nut; said shaft nut inserted into said central bore of said impeller and forming a form-locking connection in a radial direction and in a circumferential direction with said impeller, said shaft nut having an axial direction and two sections extending along said axial direction, a first one of said two sections inserted into said central bore of said impeller, and second one of said two sections disposed outside said central bore of said impeller in said axial direction; said second one of said two sections of said shaft nut having a cylindrical outer shell; and said first one of said two sections of said shaft nut being inserted into said central bore of said impeller and having a hexagonal external shell shape.
2. The exhaust-gas turbocharger shaft assembly according to claim 1, wherein said exhaust-gas turbocharger shaft is cohesively connected to said shaft nut provided on said outer shell.
3. The exhaust-gas turbocharger shaft assembly according to claim 1, wherein said central bore of said impeller has an internal shell with an axial abutment surface disposed adjacent said receiving section and abutting said shaft nut.
4. The exhaust-gas turbocharger shaft assembly according to claim 3, wherein said axial abutment surface is an encircling step on said internal shell of said central bore of said impeller.
5. The exhaust-gas turbocharger shaft assembly according to claim 1, which further comprises a closure cap covering said other section of said shaft nut disposed outside said central bore of said impeller.
6. The exhaust-gas turbocharger shaft assembly according to claim 5, wherein said closure cap is made of a material and said shaft nut is made of a material that is different from the material of said closure cap.
7. The exhaust-gas turbocharger shaft assembly according to claim 6, wherein said shaft nut is made of metal, said closure cap is made of plastic, and said second section of said shaft nut, which is disposed outside said central bore of said impeller, is encapsulated by said closure cap.
8. The exhaust-gas turbocharger shaft assembly according to claim 5, wherein said closure cap is made of a material and said shaft nut is also made of the material.
9. The exhaust-gas turbocharge shaft assembly according to claim 5, wherein said closure cap is formed without an offset relative to said impeller.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING
(1) Further advantageous properties of the invention will emerge from the following exemplary explanation thereof on the basis of the figures, in which:
(2)
(3)
(4)
(5)
(6)
DESCRIPTION OF THE INVENTION
(7) The invention relates to an exhaust-gas turbocharger shaft which has an impeller connected in form-locking fashion thereto and which is connected to a shaft nut provided on the outer shell thereof, wherein the shaft nut is inserted into a central bore of the impeller such that the impeller forms a form-locking connection in a radial direction and in a circumferential direction with the shaft nut.
(8) The description below is based on the impeller being the compressor wheel of an exhaust-gas turbocharger. The invention may however also be used in the case of the impeller being the turbine wheel of an exhaust-gas turbocharger.
(9) In the invention, a shaft nut is attached to the outer shell of an exhaust-gas turbocharger shaft. This is realized for example by virtue of the shaft nut, which is a hexagonal nut, being equipped on its internal shell with a thread, the exhaust-gas turbocharger shaft having an external thread on its outer shell, the hexagonal nut being screwed onto the exhaust-gas turbocharger shaft, and subsequently the shaft nut that has been screwed onto the exhaust-gas turbocharger shaft being cohesively connected to the exhaust-gas turbocharger shaft. It is alternatively also possible for the shaft nut to be of smooth form on its internal shell, for the external shell of the exhaust-gas turbocharger shaft to likewise be of smooth form, and for the shaft nut to be pushed onto the exhaust-gas turbocharger shaft and then cohesively connected thereto, for example by virtue of the shaft nut being welded to the exhaust-gas turbocharger shaft.
(10) An exhaust-gas turbocharger shaft of said type which is connected to a shaft nut provided on its outer shell is inserted into a specially shaped central bore of the impeller such that the impeller forms a form-locking connection in the radial direction and in the circumferential direction with the shaft nut.
(11)
(12) The shape of the internal shell 5a of the receiving section 5 corresponds to the external shell shape of a hexagonal bolt, such that the hexagonal nut that has been fastened on the exhaust-gas turbocharger shaft can be inserted in an axial direction into the receiving section 5, such that in the inserted state, said hexagonal nut bears against the axial abutment surface 6 and forms a form-locking connection in the radial direction R and circumferential direction U with the impeller.
(13) The receiving section 5 may be formed into the impeller 2 by way of a known deformation process, a known cutting process or a known primary forming process.
(14)
(15) It can also be seen from
(16) As an alternative to the example shown in
(17)
(18) It can also be seen from
(19) It can furthermore be seen from
(20)
(21) It can furthermore be seen from
(22)
(23) The closure cap 7 and the shaft nut may be composed of different materials or may be composed of one and the same material. They may be produced as a unipartite component or else may be assembled from two different components.
(24) It is for example the case that the shaft nut is composed of a metal and the closure cap is composed of plastic, wherein, in the installed state, the shaft nut has a section which is arranged outside the central bore of the impeller and which is encapsulated by the closure cap.
(25) By means of the above-described arrangement of the shaft nut in the internal region of the impeller and the form-locking connection in the radial and circumferential directions between the shaft nut, which is fastened to the exhaust-gas turbocharger shaft, and the impeller, the torsional strength of the rotating parts of an exhaust-gas turbocharger is improved. Furthermore, new design possibilities are opened up. The rotating parts can for example be optimized in terms of flow and designed so as not to have an offset with respect to the impeller.