IP Library Granted Patent US 9,902,142
Granted Patent B2
US 9,902,142 · App. 14/606,251 · Granted Feb 27, 2018

Part comprising a structure and a shape memory alloy element

Inventors: Adrien Fabre (Montrouge, FR); Pierrick Jean (Paris, FR); Jean-Pierre Lombard (Pamfou, FR)
Assignee: SNECMA
B32B38/0012B32B37/18B32B38/0036F01D5/16F01D5/26F04D29/324F04D29/668F16F1/021B32B2038/0028B32B2038/0044B32B2603/00B32B2605/18F05D2260/96F05D2300/505F16F2224/0258Y10T428/22Y10T428/23Y10T428/239Y10T428/249924Y10T428/2964Y10T428/31678
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Quick Facts
Patent No.
US 9,902,142
App. No.
14/606,251
Granted
Feb 27, 2018
Kind
B2
Abstract

A part includes a structure and at least one shape memory alloy element that is prestressed and embedded at least in part within said structure. The shape memory alloy is suitable for dissipating the mechanical energy of said structure when it vibrates in a given frequency band.

Claims (19)

1. A fabrication method for fabricating a composite material structure with at least one shape memory alloy element within said structure, said structure being made up of a plurality of sub-structures, said method comprising:

providing a plurality of sub-structures;

applying prestress to said shape memory alloy element;

placing said at least one shape memory alloy element on one of said sub-structures;

covering said at least one shape memory alloy element at least in part by another one of said sub-structures;

fastening together said shape memory alloy element and said structure, said sub-structures being selected from a group comprising a laminate of unidirectional plies, a woven composite, a braided composite, a uniform material, a film type covering, and a layer-of-paint type covering; and

releasing said prestress,

wherein said structure is a part for an aviation turbine engine.

2. The fabrication method according to claim 1 , wherein said prestress is applied thermally by heating said shape memory alloy element to a temperature higher than the temperature of said structure.

3. A fabrication method according to claim 2 , wherein said shape memory alloy element is heated by causing an electric current to flow along said element.

4. The fabrication method according to claim 1 , wherein said prestress is applied mechanically by increasing the distance between two opposite ends of said shape memory alloy element.

5. A fabrication method for fabricating a fiber structure with at least one shape memory alloy element within said structure, the method comprising:

providing a preform of woven or braided fibers;

applying prestress to said shape memory alloy element;

inserting said at least one shape memory alloy element within said preform;

densifying said preform and said at least one shape memory alloy element; and

releasing said prestress,

wherein said structure is a part for an aviation turbine engine, and

wherein said structure is made up of a plurality of sub-structures, said at least one shape memory alloy element being placed in at least one of interfaces between said sub-structures.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE COVER SHEET TO REMOVE APPLICATION NOS. 10250419, 10786507, 10786409, 12416418, 12531115, 12996294, 12094637 12416422 PREVIOUSLY RECORDED ON REEL 046479 FRAME 0807. ASSIGNOR(S) HEREBY CONFIRMS THE CHANGE OF NAME. Recorded Aug 24, 2018
From: SNECMA
To: SAFRAN AIRCRAFT ENGINES
Reel/Frame 046939/0336 →
CHANGE OF NAME Recorded May 23, 2018
From: SNECMA
To: SAFRAN AIRCRAFT ENGINES
Reel/Frame 046479/0807 →
Priority Claims (1)
FR 09 56469 · Sep 21, 2009 · national
Continuity (2)
Division 13497134
Related Publication 20150144256A1 · May 28, 2015