IP Library Granted Patent US 9,816,905
Granted Patent B2
US 9,816,905 · App. 14/785,525 · Granted Nov 14, 2017

Method for analysing a fracture face of a part of a turbine engine

Inventor: Fabrice Colladon (Dammarie-les-Lys, FR)
Assignee: SNECMA
G01N3/068G01M5/0016G01M5/0033G01N21/25G01N33/20G06K9/00147H01J37/26G01N2203/0062G01N2203/0067G01N2203/0226G01N2203/0647
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Quick Facts
Patent No.
US 9,816,905
App. No.
14/785,525
Granted
Nov 14, 2017
Kind
B2
Abstract

A process for analyzing a fracture or crack surface of a TiAl turbomachine part is provided. The process includes: marking on the surface the position and the orientation of cleavage facets, so as to identify a region of fracture or crack initiation and to determine the direction of propagation of this fracture or crack; examining the surface and detecting the regions with the presence of equiaxed grains and/or lamellar grains, so as to evaluate the temperature at which the fracture or crack has taken place, and comparing the heat tintings of the surface with those of samples from a heat tinting color chart so as to evaluate the speed of propagation of the fracture or crack.

Claims (20)

1. A method for analyzing a fracture or crack face of a metal part of a turbine engine, said face corresponding to a fracture surface or to a cracking surface before opening in a laboratory for an unbroken cracked part, the method comprising:

a) identifying on the face a position and orientation of cleavage facets so as to identify an initiation region of the fracture or crack and to determine a direction of propagation of said fracture or crack,

b) examining the face and detecting regions where at least one of equiaxed grains and lamellar grains are present, so as to evaluate a temperature at which the fracture or crack was made, and

c) comparing a heat tint of the face with heat tints of samples from a heat tint color chart, said samples being produced from the same material as the part and being subjected to oxidizing heat treatments at predetermined temperatures and for predetermined periods of time, so as to evaluate a speed of propagation of the fracture or crack,

steps a), b) and c) being carried out in any order.

2. The method according to claim 1 , wherein step a) further includes determining at least one geometrical or metallurgical fault which is able to explain an appearance of the crack or fracture.

3. The method according to claim 1 , wherein step a) comprises identifying and directly tracing, in a video image of the face, the position and orientation of the cleavage facets.

4. The method according to claim 1 , wherein at least one of steps a) and b) is carried out using at least one of a binocular loupe and a scanning electron microscopy imaging system.

5. The method according to claim 1 , wherein step b) further comprises determining whether the fracture or crack took place when hot during use or when cold during manufacture.

6. The method according to claim 1 , wherein step b) comprises determining whether the fracture or crack was made above or below 500° C.

7. The method according to claim 1 , wherein step b) comprises evaluating the temperature by estimating a density of the equiaxed grains on the face.

8. The method according to claim 1 , wherein step b) comprises examining the face and detecting regions where ductile dimples are present.

9. The method according to claim 1 , wherein, in step c), before the samples are subjected to heat treatments, a notch is made in each sample which is then subjected to stresses to produce a fracture or crack in a region of said notch.

10. The method according to claim 1 , wherein step c) further comprises comparing heat tints on a surface of the part with heat tints of the samples so as to evaluate the temperature level reached by the part.

11. A method for analyzing a fracture or crack face of a metal part of a turbine engine, said face corresponding to a fracture surface or to a cracking surface before opening in a laboratory for an unbroken cracked part, the method comprising:

a) identifying on the face a position and orientation of cleavage facets so as to identify an initiation region of the fracture or crack and to determine a direction of propagation of said fracture or crack,

b) examining the face and detecting regions where at least one of equiaxed grains and lamellar grains are present, so as to evaluate a temperature at which the fracture or crack was made, and

c) comparing a heat tint of the face with heat tints of samples from a heat tint color chart, said samples being produced from the same material as the part and being subjected to oxidizing heat treatments at predetermined temperatures and for predetermined periods of time, so as to evaluate a speed of propagation of the fracture or crack,

steps a), b) and c) being carried out in any order,

wherein step b) further comprises determining whether the fracture or crack took place when hot during use or when cold during manufacture.

Assignments (3)
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 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 19, 2015
From: COLLADON, FABRICE
To: SNECMA
Reel/Frame 036823/0587 →
Priority Claims (1)
FR 13 53660 · Apr 22, 2013 · national
Continuity (1)
Related Publication 20160061699A1 · Mar 3, 2016