IP Library › Granted Patent US 11,390,333
Granted Patent B2
US 11,390,333 · App. 17/008,846 · Granted Jul 19, 2022

Airfoils and machines incorporating airfoils

Inventors: Michael Suk (Milton, PA); David A. Shoffler (Marion Heights, PA)
Assignee: ESS 2 Tech, LLC
B62D35/001B64C3/14B64C11/18B64C27/467F01D5/145F04D29/281F04D29/384F04D29/422F04D29/681F15D1/00B62D35/007B64C2003/146B64C2003/147F03D1/0683F03D3/061F05B2240/221F05B2250/14F05D2230/54F05D2250/713
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Quick Facts
Patent No.
US 11,390,333
App. No.
17/008,846
Granted
Jul 19, 2022
Kind
B2
Abstract

Various embodiments of an airfoil and machines with airfoils are disclosed. The airfoils include a thicker leading airfoil portion and a thinner trailing airfoil portion. In one embodiment, the leading airfoil portion is formed by bending a body of the airfoil back toward itself. In another embodiment, the leading airfoil portion has a solid geometry and includes two elliptic surfaces. To prevent detachment of airflow, the leading airfoil portion includes at least two arc portions or surfaces that act to direct the airflow down to the trailing airfoil portion in a manner that stabilizes vortexes that may form in the region of changing thickness.

Claims (40)

1. An airfoil, comprising:

a leading edge and a trailing edge;

a suction side and a pressure side;

a leading airfoil portion including the leading edge and a trailing airfoil portion including the trailing edge;

the leading airfoil portion including a pressure side surface, a first surface, a suction side surface and a second surface;

the first surface connecting the pressure side surface with the suction side surface and the second surface connecting the suction side surface with the suction side of the trailing airfoil portion;

wherein the first surface is a first elliptic surface and the second surface is a second elliptic surface, the second elliptic surface defining a convex surface; and

wherein a thickness of the airfoil decreases from the leading airfoil portion to the trailing airfoil portion.

2. The airfoil according to claim 1 , wherein the suction side surface is comprised of an arc having a first radius of curvature, and wherein the second surface has a second radius of curvature that is different from the first radius of curvature.

3. The airfoil according to claim 2 , wherein the second radius of curvature is substantially less than the first radius of curvature.

4. The airfoil according to claim 1 , wherein the first elliptic surface has a larger radius of curvature than the second elliptic surface.

5. The airfoil according to claim 1 , wherein the airfoil has a solid geometry.

6. The airfoil according to claim 5 , wherein the leading airfoil portion has a variable thickness, and wherein the thickness decreases from the first elliptic surface to the second elliptic surface.

7. The airfoil according to claim 6 , wherein the trailing airfoil portion has an approximately constant thickness.

8. The airfoil according to claim 7 , wherein a change in the thickness between the leading airfoil portion and the trailing airfoil portion creates a step-down region with a solid, continuous and convex surface such that, when air flows over the step-down region, a vortex is created at the step-down region.

9. The airfoil according to claim 1 , wherein the airfoil curves gradually through the trailing airfoil portion.

10. The airfoil according to claim 1 , wherein the trailing airfoil portion includes an arc portion immediately adjacent the trailing edge.

11. A turbine comprising:

a plurality of turbine rotors, each of said plurality of turbine rotors including a plurality of airfoil blades;

wherein each of said plurality of airfoil blades includes:

a leading edge and a trailing edge;

a suction side and a pressure side;

a leading airfoil portion including the leading edge and a trailing airfoil portion including the trailing edge;

the leading airfoil portion including a pressure side surface, a first curved surface, a suction side surface and a second curved surface;

the first curved surface connecting the pressure side surface with the suction side surface and the second curved surface connecting the suction side surface with the suction side of the trailing airfoil portion;

wherein the first surface is a first elliptic surface and the second surface is

a second elliptic surface, the second elliptic surface defining a convex surface; and

wherein a thickness of each of the airfoil blades decreases from the leading airfoil portion to the trailing airfoil portion.

12. The turbine according to claim 11 , wherein the plurality of turbine rotors includes at least one turbine rotor wherein the plurality of airfoil blades are configured in a first orientation and at least another one turbine rotor wherein the plurality of airfoil blades are configured in a second orientation, the second orientation being different from the first orientation.

13. The turbine according to claim 12 , wherein said at least one turbine rotor is configured to rotate in a first direction and said at least another one turbine rotor is configured to rotate in a second direction, the second direction being different from the first orientation.

14. The turbine according to claim 12 , wherein said at least one turbine rotor comprises a first rotor, a third rotor and a fifth rotor and said at least another turbine rotor comprises a second rotor and a fourth rotor.

15. The turbine according to claim 11 , wherein the trailing airfoil portion has an approximately constant thickness.

16. An airfoil system for use with an engine having a first turbine rotor and a second turbine rotor, the airfoil system comprising:

a plurality of airfoils configured to be attached to the first turbine rotor and the second turbine rotor;

wherein each of the plurality of airfoils includes a leading airfoil portion and a trailing airfoil portion, wherein the trailing airfoil portion has an approximately constant thickness; and

wherein the leading airfoil portion includes a first curved surface having a first radius of curvature and a second curved surface having a second radius of curvature, the first curved surface and the second curved surface having substantially different curvatures.

17. The airfoil system according to claim 16 , wherein the leading airfoil portion further includes a pressure side surface and a suction side surface, the first curved surface connecting the pressure side surface with the suction side surface and the second curved surface connecting the suction side surface with a suction side of the trailing airfoil portion.

18. The airfoil system according to claim 16 , wherein the first curved surface includes a first elliptic surface and the second curved surface includes a second elliptic surface.

19. The airfoil system according to claim 18 , wherein the second elliptic surface defines a convex surface.

20. The airfoil system according to claim 16 , wherein the plurality of airfoils are configured in a first orientation on the first turbine rotor and the plurality of airfoil blades are configured in a second orientation on the second turbine rotor, the second orientation being different from the first orientation, whereby the first turbine rotor is configured to rotate in a first direction and the second turbine rotor is configured to rotate in a second direction, the second direction being different from the first orientation.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 1, 2020
From: SUK, MICHAEL; SHOFFLER, DAVID A.
To: ESS 2 TECH, LLC
Reel/Frame 053657/0260 →
Continuity (3)
Division 15969347 · May 2, 2018
Provisional Application 62611890 · Dec 29, 2017
Related Publication 20200398908A1 · Dec 24, 2020
Cited By (6)
US 1,070,692 US 1,070,693 US 12,409,945 US 12,415,615 US 12,503,249 US 12,529,317