IP Library › Granted Patent US 9,200,593
Granted Patent B2
US 9,200,593 · App. 12/537,506 · Granted Dec 1, 2015

Energy absorbing fan blade spacer

Inventor: Brian P. Huth (Westfield, MA)
Assignee: HAMILTON SUNDSTRAND CORPORATION
F02K3/06F01D5/22F01D5/225F01D5/30F01D11/008F01D21/045B64D2033/022
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Quick Facts
Patent No.
US 9,200,593
App. No.
12/537,506
Granted
Dec 1, 2015
Kind
B2
Abstract

A gas turbine engine fan section is disclosed that includes a hub. Circumferentially spaced fan blades are supported on the hub. A spacer is arranged between adjacent fan blades and is operatively supported by the hub. The spacer is configured to be collapsible in response to a fan blade load exerted on the spacer in excess of a threshold load. The spacer is generally rigid at fan blade loads below the threshold load.

Claims (13)

1. A gas turbine engine fan section comprising:

a hub having a flange with an aperture;

circumferentially spaced fan blades supported on the hub; and

a spacer arranged between adjacent fan blades and operatively supported by the hub, the spacer configured to be collapsible in response to a fan blade load exerted on the spacer in excess of a threshold load, the spacer generally rigid at fan blade loads below the threshold load, wherein the spacer includes a base with an opening, and a fastener extends through the aperture and the opening to secure the spacer to the hub, wherein the spacer includes a wall providing a cavity, the wall including a notch providing a collapse-inducing structure deforming the cavity in response to the fan blade load.

2. A gas turbine engine fan section comprising:

a hub having a flange with an aperture;

circumferentially spaced fan blades supported on the hub; and

a spacer arranged between adjacent fan blades and operatively supported by the hub, the spacer configured to be collapsible in response to a fan blade load exerted on the spacer in excess of a threshold load, the spacer generally rigid at fan blade loads below the threshold load, wherein the spacer includes a base with an opening, and a fastener extends through the aperture and the opening to secure the spacer to the hub, wherein the spacer includes a wall providing a frangible connection, the frangible connection configured to fracture in response to the fan blade load.

3. A spacer for a gas turbine engine fan section comprising:

structure including a fan blade contact area, the structure configured to be collapsible in response to a fan blade load exerted on the fan blade contact area in excess of a threshold load, the structure generally rigid at fan blade loads below the threshold load;

wherein the structure includes a wall providing a cavity, the wall including a notch providing a collapse-inducing structure deforming the cavity in response to the fan blade load; and

wherein another wall is secured over the notch, the other wall providing a non-structural aerodynamic fairing.

4. The spacer according to claim 3 , wherein the structure is constructed from a material having a modulus of elasticity of less than 20×10 6 PSI (1.4×10 11 N m), the material deforming in response to the fan blade load.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 7, 2009
From: HUTH, BRIAN P.
To: HAMILTON SUNDSTRAND CORPORATION
Reel/Frame 023068/0306 →
Continuity (1)
Related Publication 20110033292A1 · Feb 10, 2011