IP Library › Granted Patent US 8,960,006
Granted Patent B2
US 8,960,006 · App. 12/679,115 · Granted Feb 24, 2015

Ultrasonic inspection apparatus, ultrasonic probe apparatus used for ultrasonic inspection apparatus, and ultrasonic inspection method

Inventors: Hideo Isobe (Tokyo, JP); Takahiro Ikeda (Yokosuka, JP); Ryoichi Arai (Yokohama, JP)
Assignee: Kabushiki Kaisha Toshiba
G01N29/069G01N29/2437G01N2291/011G01N2291/0231G01N2291/0289
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Quick Facts
Patent No.
US 8,960,006
App. No.
12/679,115
Granted
Feb 24, 2015
Kind
B2
Abstract

An ultrasonic inspection apparatus includes: an ultrasonic probe apparatus including an ultrasonic transducer; a drive element selecting section that selects a required piezoelectric vibrator of the ultrasonic transducer; a signal detecting circuit that detects an electric signal dependent on a reflected echo of an ultrasonic wave emitted from the selected piezoelectric vibrator; a signal processing section that produces data on an internal image of the inspection object based on the detected reflected echo; a second display unit that combines multiple pieces of image data acquired from the signal processing section and displays an integrated visualization data result; and an second input unit that is used to perform an operation command such as a command input to start or terminate an inspection or an a command to set inspection condition.

Claims (54)

1. An ultrasonic inspection apparatus comprising:

an ultrasonic probe apparatus comprising

an ultrasonic transducer comprising a plurality of piezoelectric vibrators for

generating an ultrasonic wave,

receiving an ultrasonic echo reflected from an inspection object, and

generating an electric echo signal corresponding to the ultrasonic echo;

a display unit; and

a switch configured to receive at least one of an inspection-starting command or an inspection-terminating command;

a drive element selecting section, connected to the plurality of piezoelectric vibrators, to select a piezoelectric vibrator based on a drive signal from a signal generator;

a signal detecting circuit connected to receive the electric echo signal; and

a signal processing section to:

apply a parallel arithmetic process to the received electric echo signal;

produce, from the electric echo signal, image data corresponding to an internal image of the inspection object; and

supply the image data to the display unit for display of the internal image of the inspection object;

wherein the display unit is configured to display that the ultrasonic transducer properly faces an inspected surface in an inspection region by a cross-sectional image in the inspection region of at least the inspection object as an image based on the internal image of the inspection object produced in the signal processing unit, and

wherein the switch is configured to set the inspection condition including the inspection-starting command, the inspection terminating command, and a position adjustment of an image-starting-position at a time of producing the cross-sectional image.

2. The ultrasonic inspection apparatus according to claim 1 , wherein the image displayed in the display unit includes an echo waveform image of the reflected echo from the inspection object.

3. The ultrasonic inspection apparatus according to claim 1 , wherein the image displayed in the display unit includes a cross-sectional image of the inspection object.

4. The ultrasonic inspection apparatus according to claim 1 , wherein the image displayed in the display unit includes an image produced by extracting an echo peak value in a depth direction of the inspection object.

5. The ultrasonic inspection apparatus according to claim 1 , wherein the image displayed in the display unit includes an image produced by extracting depth data of the reflected echo from the inspection object.

6. The ultrasonic inspection apparatus according to claim 1 , wherein the image displayed in the display unit includes a display of a result of extracting data on the inspection object from the reflected echo from the inspection object and then performing an arithmetical operation on the data.

7. An ultrasonic probe apparatus connected to a main body of an ultrasonic inspection apparatus, comprising:

a probe holder in a shape of a box;

an ultrasonic transducer including a plurality of piezoelectric vibrators incorporated in the probe holder;

a display unit incorporated in the probe holder; and

a switch incorporated in the probe holder, the switch being configured to receive at least one of an inspection-starting command or an inspection-terminating command,

wherein the ultrasonic transducer, the display unit, and the switch are integrally assembled within the probe holder;

wherein the display unit is configured to display that the ultrasonic transducer properly faces an inspected surface in an inspection region by a cross-sectional image in the inspection region of at least the inspection object as an image based on the internal image of the inspection object produced in the signal processing unit, and

wherein the switch is configured to set the inspection condition including the inspection-starting command, the inspection-terminating command, and a position adjustment of an image-starting-position at a time of producing the cross-sectional image.

8. The ultrasonic probe apparatus according to claim 7 , wherein an image displayed in the display unit includes an echo waveform image of a reflected echo from an inspection object.

9. The ultrasonic probe apparatus according to claim 7 , wherein the image displayed in the display unit includes a cross-sectional image of the inspection object.

10. The ultrasonic probe apparatus according to claim 7 , wherein the image displayed in the display unit includes an image produced by extracting an echo peak value in a depth direction of the inspection object.

11. The ultrasonic probe apparatus according to claim 7 , wherein the image displayed in the display unit includes an image produced by extracting depth data of the reflected echo from the inspection object.

12. The ultrasonic probe apparatus according to claim 7 , wherein the image displayed in the display unit includes a display of a result of extracting data on the inspection object from the reflected echo from the inspection object and then performing an arithmetical operation on the data.

13. An ultrasonic inspection method comprising the steps of:

preparing an ultrasonic inspection apparatus comprising:

an ultrasonic probe apparatus comprising:

an ultrasonic transducer comprising a plurality of piezoelectric vibrators for generating an ultrasonic wave, receiving an ultrasonic echo reflected from an inspection object, and generating an electric echo signal corresponding to the ultrasonic echo;

a display unit configured to display that the ultrasonic transducer properly faces an inspected surface in an inspection region by a cross-sectional image in the inspection region of at least the inspection object as an image based on the internal image of the inspection object produced in the signal processing unit; and

a switch configured to receive at least one of an inspection-starting command, an inspection-terminating command, or an inspection-condition-setting command, and set the inspection condition including the inspection-starting command, the inspection-terminating command and position adjustment of image-starting-position at a time of producing the cross-sectional image;

a drive element selecting section connected to the plurality of piezoelectric vibrators and selecting a piezoelectric vibrator based on a drive signal from a signal generator;

a signal detecting circuit receiving the electric echo signal; and

a signal processing section which:

applies a parallel arithmetic process to the received electric echo signal;

produces, from the electric echo signal, image data corresponding to an internal image of the inspection object; and

supplies the image data to the display unit for display of the internal image of the inspection object;

disposing the ultrasonic probe apparatus at a predetermined inspection position of the inspection object;

inputting the inspection-condition-setting command to set inspection conditions through the switch;

repeating the disposing of the ultrasonic probe apparatus and the inputting of the inspection-condition-setting command until a predetermined display is obtained in the display unit;

inputting the inspection-starting command through the switch after the predetermined display is obtained;

inspecting the inspection object for flaws by causing the ultrasonic probe apparatus to scan a predetermined range of the inspection object; and

inputting the inspection-terminating command through the switch after the inspecting the predetermined range of the inspection object is completed.

14. The ultrasonic inspection method according to claim 13 , wherein at least one of inputting the inspection-condition-setting command, inputting the inspection-starting command, or inputting the inspection-terminating command through the switch is performed with the ultrasonic probe apparatus being held.

15. The ultrasonic inspection method according to claim 13 , wherein inputting the inspection-condition-setting command is performed after displaying, in the display unit, an echo waveform image of the reflected echo from the inspection object, or a cross-sectional image of the inspection object.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2010
From: ISOBE, HIDEO; IKEDA, TAKAHIRO; ARAI, RYOICHI
To: KABUSHIKI KAISHA TOSHIBA
Reel/Frame 024108/0490 →
Priority Claims (2)
JP 2007-244910 · Sep 21, 2007 · national
JP 2008-230054 · Sep 8, 2008 · national
Continuity (1)
Related Publication 20100212429A1 · Aug 26, 2010