Turbine wheel of turbocharger
A hot wheel of a turbocharger formed by precision casting, including a shaft-shaped hub part disposed at a radially central portion thereof; a plurality of vane parts formed on a periphery of the hub part; an wrench boss formed at a top end of the hub part; and a boss portion formed at a bottom end of the hub part. In the hot wheel having the above-described construction, with an outer configuration of a necessary portion of each of the hub part, the wrench boss, and the boss portion maintained, a cavity open outward is formed at a radially central portion of the hub part with the cavity symmetrically penetrated through the wrench boss.
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1. Field of the Invention
The present invention relates to a turbine wheel of a turbocharger. More particularly, the present invention relates to a turbine wheel for use in a high-temperature gas (hereinafter referred to as a hot wheel), which is manufactured by precision casting process. The present invention is intended to decrease the amount of wax in manufacturing the hot wheel model and decrease the weight of the hot wheel to improve the rotation response thereof.
2. Description of the Related Art
To overcome this problem, in the hot wheel disclosed in Japanese Patent Application Laid-Open publication No. 9-53595, the central portion thereof is formed from a heat-resistant aluminum alloy by forging it, whereas the projected portion thereof is formed from a high-strength heat-resistant alloy by using a liquid quenching method. The central portion and the projected portion are joined with each other by diffusion bonding to make the hotwheel lightweight.
But the hot wheel described in the aforesaid publication has a problem that it has a complicated construction and thus much time and labor are required to manufacture it.
SUMMARY OF THE INVENTIONThe present invention has been made in view of the above-described problems. Therefore it is an object of the present invention to provide a hot wheel, of a turbocharger, which can be easily manufactured by precision casting, has an improved rotation response by making it lightweight, and uses a decreased amount of wax when it is manufactured.
To solve the above-described problems, the present invention provides a hot wheel of a turbocharger formed by precision casting, including a shaft-shaped hub part disposed at a radially central portion thereof; a plurality of vane parts formed on a periphery of said hub part; an wrench boss formed at a top end of said hub part; and a boss portion formed at a bottom end of said hub part. In the hot wheel having the above-described construction, with an outer configuration of a necessary portion of each of the hub part, the wrench boss, and the boss portion maintained, a cavity open outward is formed symmetrically with respect to an axis of the hub part at at least one of the hub part, the wrench boss, and the boss portion. It is advantageous to form the cavities at the central portion of the hub part in terms of the strength of the hot wheel.
In the present invention, with the outer configuration of the necessary portion of each of said hub part, said wrench boss, and said boss portion secured, the cavity open outward is formed symmetrically with respect to the axis of said hub part at at least one of said hub part, said wrench boss, and said boss portion. Therefore it is possible to manufacture the hot wheel easily by precision casting and improve the response capability thereof by making the hot wheel more lightweight than the conventional hot wheel with hardly deteriorating the strength thereof. Further the volume of the solid portion of the hot wheel is decreased owing to the formation of the cavity inside the hot wheel. Therefore it is possible to decrease the amount of wax which is used in manufacturing the hot wheel model and also decrease the amount of a metal material to be cast. Therefore it is possible to manufacture the hot wheel at a low cost. Furthermore because the entire hot wheel is lightweight, it is easy to adjust the rotation balance by grinding the wrench boss in a small amount.
The hot wheel of each of the first through ninth embodiments of the present invention is made of a heat-resistant alloy such as Inconel by precision casting process. The same parts of the hot wheels of the embodiments as those of the above-described conventional hot wheel are denoted by the same reference numerals as those of the conventional hot wheel. The configurations of the following portions are the same as those of the conventional hot wheel: a necessary portion of a hub part 1, namely, a peripheral surface 11 thereof drawing a gentle curved surface in the shape of the base of a mountain, a necessary portion of an wrench boss 3, namely, a peripheral surface 31 thereof having a plurality of approximately triangular concavities and convexities formed thereon, and a necessary portion of a boss portion 4, namely, an end surface 411 of an annular wall 41 thereof. A vane part 2 is identical to that of the conventional hot wheel.
First EmbodimentIn the first embodiment of the present invention, as shown in
In the second embodiment of the present invention, as shown in
In the third embodiment of the present invention, as shown in
In the fourth embodiment of the present invention, as shown in
In the fifth embodiment of the present invention, as shown in
In the sixth embodiment of the present invention, as shown in
In the seventh embodiment of the present invention, as shown in
In the eighth embodiment of the present invention, as shown in
In the ninth embodiment of the present invention, as shown in
Claims
1. A turbine wheel of a turbocharger formed by precision casting, comprising: a shaft-shaped hub part disposed at a radially central portion thereof; a plurality of vane parts formed on a periphery of said hub part; an wrench boss formed at a top end of said hub part; and a boss portion formed at a bottom end of said hub part,
- wherein with an outer configuration of a necessary portion of each of said hub part, said wrench boss, and said boss portion maintained, a cavity open outward is formed symmetrically with respect to an axis of said hub part at at least one of said hub part, said wrench boss, and said boss portion.
2. A turbine wheel of a turbocharger according to claim 1, wherein said cavity is formed at a radially central portion of said hub part.
3. A turbine wheel of a turbocharger according to claim 2, wherein said cavity is symmetrical with respect to said axis of said hub part and cross sectionally circular; and a diameter of a circle of said cavity becomes gradually larger downward along a curved peripheral surface of said hub part.
4. A turbine wheel of a turbocharger according to claim 2, wherein said cavity penetrates through an wrench boss and is open outward.
5. A turbine wheel of a turbocharger according to claim 2, wherein said cavity is open into said boss portion.
6. A turbine wheel of a turbocharger according to claim 1, wherein said cavity is formed at a radially central portion of said hub part; said cavity penetrates through an wrench boss and is open outward; and said cavity is open into said boss portion.
7. A turbine wheel of a turbocharger according to claim 6, wherein said cavity is symmetrical with respect to said axis of said hub part and cross sectionally circular; and a diameter of a circle of said cavity becomes gradually larger downward along a curved peripheral surface of said hub part.
8. A turbine wheel of a turbocharger according to claim 1, wherein a peripheral portion, of a bottom surface of a base portion of said hub part, adjacent to said boss portion disposed on a lower surface of said proximal portion of said hub part is scooped annularly and symmetrically with respect to said axis of said hub part to form said cavity.
9. A turbine wheel of a turbocharger according to claim 8, wherein said cavity is reached to a peripheral portion of a main body of said hub part.
10. A turbine wheel of a turbocharger according to claim 3, wherein said cavity penetrates through an wrench boss and is open outward.
11. A turbine wheel of a turbocharger according to claim 3, wherein said cavity is open into said boss portion.
Type: Application
Filed: Feb 12, 2007
Publication Date: Aug 14, 2008
Applicant: DAIDO CASTINGS CO., LTD. (NAGOYA-SHI)
Inventors: Youji Takeda (Chita-shi), Takashi Ito (Nakatsugawa-shi), Hidemi Kawashiri (Nakatsugawa-shi)
Application Number: 11/705,149
International Classification: F04D 29/18 (20060101);