IP Library Granted Patent US 8,651,806
Granted Patent B2
US 8,651,806 · App. 12/858,415 · Granted Feb 18, 2014

Air turbine starter inlet housing assembly airflow path

Inventors: David J. Zawilinski (W. Granby, CT); Jeffrey M. Makulec (Rockford, IL); Matthew Slayter (Rockford, IL)
Assignee: Hamilton Sundstrand Corporation
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,651,806
App. No.
12/858,415
Granted
Feb 18, 2014
Kind
B2
Abstract

An inlet housing assembly for an Air Turbine Starter includes an outer flowpath curve of an inlet flowpath defined by a multiple of arcuate surfaces in cross-section.

Claims (36)

1. An inlet housing assembly for an Air Turbine Starter comprising:

an outer flowpath curve of an inlet flowpath defined by a multiple of arcuate surfaces in cross-section; and

an inner flowpath curve of said inlet flowpath defined by a central dome shape, wherein said central dome shape is defined by Table X scaled by a desired factor.

2. The inlet housing assembly for an Air Turbine Starter as recited in claim 1 , wherein said multiple of arcuate surfaces in cross-section include:

a first convex arcuate surface;

a second convex arcuate surface downstream of said first convex arcuate surface;

a third convex arcuate surface downstream of said second convex arcuate surface;

a first concave arcuate surface downstream of said third convex arcuate surface;

a second concave arcuate surface downstream of said first concave arcuate surface; and

a third concave arcuate surface downstream of said second concave arcuate surface.

3. The inlet housing assembly for an Air Turbine Starter as recited in claim 1 , further comprising a multiple of turbine vanes which radially extend from said central dome shape toward said inlet housing.

4. An inlet housing assembly for an Air Turbine Starter comprising:

an inlet housing which defines an outer flowpath curve of an inlet flowpath, said outer flowpath curve defined at least partially by a multiple of arcuate surfaces in cross-section; and

a nozzle which defines an inner flowpath curve of said inlet flowpath, said inner flowpath curve at least partially defined by a central dome shape, wherein said central dome shape is defined by Table X scaled by a desired factor.

5. The inlet housing assembly for an Air Turbine Starter as recited in claim 4 , wherein said multiple of arcuate surfaces in cross-section include:

a first convex arcuate surface;

a second convex arcuate surface downstream of said first convex arcuate surface;

a third convex arcuate surface downstream of said second convex arcuate surface;

a first concave arcuate surface downstream of said third convex arcuate surface;

a second concave arcuate surface downstream of said first concave arcuate surface; and

a third concave arcuate surface downstream of said second concave arcuate surface.

6. An Air Turbine Starter comprising:

a turbine rotor;

an inlet housing which at least partially surrounds said turbine rotor to define an outer flowpath curve of an inlet flowpath in communication with said turbine rotor, said outer flowpath curve defined at least partially by a multiple of arcuate surfaces in cross-section; and

a nozzle upstream of said turbine rotor, said nozzle defines an inner flowpath curve of said inlet flowpath in communication with said turbine rotor, said inner flowpath curve at least partially defined by a central dome shape, wherein said central dome shape is defined by Table X scaled by a desired factor.

7. The Air Turbine Starter as recited in claim 6 , wherein said multiple of arcuate surfaces in cross-section include:

a first convex arcuate surface;

a second convex arcuate surface downstream of said first convex arcuate surface;

a third convex arcuate surface downstream of said second convex arcuate surface;

a first concave arcuate surface downstream of said third convex arcuate surface;

a second concave arcuate surface downstream of said first concave arcuate surface; and

a third concave arcuate surface downstream of said second concave arcuate surface.

8. The Air Turbine Starter as recited in claim 6 , further comprising a multiple of turbine vanes which extend in a radial manner from said central dome shape, each of said multiple of turbine vanes extend from said central dome shape to define an airfoil profile section through a leading edge and a trailing edge, said airfoil profile section defined by a set of X-coordinates and Y-coordinates defined in any of Table V; Table VI; Table VII; Table VIII; or Table IX scaled by a desired factor, said X-coordinate is the tangential direction, and said Y-coordinate is the axial direction.

9. A method of assembling an Air Turbine Starter comprising:

fixing a turbine nozzle that includes a central dome shape with a multiple of turbine vanes which extend in a radial manner therefrom into an inlet housing; and

rotationally mounting a turbine rotor into said inlet housing downstream of the turbine nozzle, the inlet housing at least partially surrounds the turbine rotor, the inlet housing defines an outer flowpath curve of an inlet flowpath in communication with the turbine rotor, the outer flowpath curve defined at least partially by a multiple of arcuate surfaces in cross-section, the nozzle defines an inner flowpath curve of the inlet flowpath in communication with the turbine rotor, the inner flowpath curve at least partially defined by the central dome shape, wherein the central dome shape is defined by Table X scaled by a desired factor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 17, 2010
From: ZAWILINSKI, DAVID J.; MAKULEC, JEFFREY M.; SLAYTER, MATTHEW
To: HAMILTON SUNDSTRAND CORPORATION
Reel/Frame 024849/0630 →
Continuity (1)
Related Publication 20120042659A1 · Feb 23, 2012