IP Library Granted Patent US 7,934,425
Granted Patent B2
US 7,934,425 · App. 11/930,276 · Granted May 3, 2011

Non-destructive ultrasound inspection method and measurement probe for implementing the method

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 7,934,425
App. No.
11/930,276
Granted
May 3, 2011
Kind
B2
Abstract

A method for inspecting a part by a non-destructive ultrasound inspection, the part is immersed in an acoustic wave conducting medium and an incident ultrasound wave having a wide beam of section Σ is emitted into the ultrasound-conducting medium towards the part. The characteristics of the waves reflected by faces of the part to be inspected are measured on at least a small section σ, the characteristic dimensions of which are substantially less than those of the section Σ. The location of the section or sections σ is determined such that, despite the possible variations of the position of the part and the relative slopes of its faces, the section σ is always located in the volumes passed through by the reflected waves, for example substantially in an area close to the axis of the incident beam when the incident beam is controlled to be oriented substantially in a direction perpendicular to a face of the part.

Claims (13)

1. Non-destructive ultrasound inspection method for inspecting a part with a front face and a rear face, the method comprising:

immersing the part to be inspected in an ultrasonic conducting medium;

emitting in said medium an incident ultrasonic beam oriented along an incident axis with a first section Σ orthogonal to the incident axis of the incident ultrasonic beam in the direction of the front face of the part;

measuring reflected waves by the part within at least one second section σ, said second section σ being:

substantially smaller than first section Σ of the incident ultrasonic beam;

located in space such that it is inside a volume where waves of the incident ultrasonic beam are reflected by the front face and inside a volume where waves of the incident ultrasonic beam are reflected by the rear face.

2. Method according to claim 1 , comprising measuring the reflected waves simultaneously on several second sections σ 1 , σ 2 , . . . σn.

3. Method according to claim 1 , comprising measuring the reflected waves close to the axis of the incident beam.

4. Method according to claim 1 , comprising orienting the incident axis orthogonally to a theoretical surface of the part.

5. Method according to claim 1 , further comprising conforming a wavefront of the incident ultrasonic beam in accordance with curves of surfaces of the part being inspected.

6. Method according to claim 2 , comprising measuring the reflected waves on several second sections σ 1 , σ 2 , . . . σn, and storing characteristics of the reflected waves for off-line processing.

7. Method according to claim 2 , comprising measuring the reflected waves simultaneously on several second sections σ 1 , σ 2 , . . . σn, and combining characteristics of the reflected waves in real time.

8. Method according to claim 5 , comprising measuring the curves of the surfaces of the part to be inspected by ultrasound before conforming the wavefront.

Assignments (2)
MERGER Recorded May 18, 2011
From: AIRBUS FRANCE
To: AIRBUS OPERATIONS SAS
Reel/Frame 026298/0269 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 11, 2008
From: BARBEAU, PIERRE; ITHURRALDE, GUILLAUME
To: AIRBUS FRANCE
Reel/Frame 020631/0777 →