With Signal Analyzing Or Mathematical Processing Patents (Class 73/602)
  • Patent number: 8241218
    Abstract: A probe includes a transducer unit including a plurality of transducers which are arrayed in the first direction, transmit ultrasonic waves and receive echo signals, and a moving mechanism for continuously moving the transducer unit in the second direction crossing the first direction. A movement control unit controls the moving mechanism to continuously move the transducer unit in the second direction. A transmission unit causes the transducer unit to generate ultrasonic waves. A scan line signal generation unit generates a plurality of actual measurement scan line signals by delaying and adding a plurality of echo signals from the transducer unit. A scan line signal calculation unit calculates a plurality of mathematical scan line signals constituting a plurality of mathematical electronic scan planes from the plurality of actual measurement scan line signals. An image generation unit generates multislice tomograms on the basis of the plurality of calculated mathematical scan line signals.
    Type: Grant
    Filed: July 24, 2008
    Date of Patent: August 14, 2012
    Assignees: Kabushiki Kaisha Toshiba, Toshiba Medical Systems Corporation
    Inventor: Makoto Hirama
  • Patent number: 8234922
    Abstract: Provided is ultrasonic diagnostic equipment including: an equipment body; a display unit provided to the equipment body and configured to display an ultrasonic image; an equipment-side connector provided in the equipment body; and an ultrasonic probe having a probe-side connector to be connected to the equipment-side connector in a detachable manner. The ultrasonic probe is connected to the probe-side connector through a cable and configured to send and receive ultrasonic waves. The probe-side connector and the equipment-side connector are formed in structures capable of sending and receiving the ultrasonic waves even in the case of a 180-degree reverse connection of the probe-side connector to the equipment-side connector.
    Type: Grant
    Filed: July 13, 2009
    Date of Patent: August 7, 2012
    Assignees: Kabushiki Kaisha Toshiba, Toshiba Medical Systems Corporation
    Inventors: Yutaka Oonuki, Muneki Kataguchi, Yasuhisa Makita
  • Publication number: 20120192650
    Abstract: A signal processing method is adapted for dealing with a plurality of vector matrixes to detect the image of a predetermined range, and the vector matrix data are generated by reflecting a plurality of ultrasonic beams in the predetermined range. The signal processing method of the present invention is that summing all vector matrix data in a predetermined time interval so as to generate a total correlation matrix. In addition, obtaining a correlation matrix through the total vector matrix multiplied by a transposed total vector matrix, and obtaining a weight value according to inversion correlation matrix. Then, a weighting operation is performed for the vector matrix data in the predetermined time interval according to the weight value, so as to obtain a weighting operation result for performing an image synthesis procedure.
    Type: Application
    Filed: January 20, 2012
    Publication date: August 2, 2012
    Applicant: National Taiwan University
    Inventors: Ming-Chia Tsai, An-Yeu Wu, Pai-Chi Li, Cheng-Zhou Chan, Yu-Hao Chen
  • Patent number: 8225665
    Abstract: A method is described for measuring an amount of loss of material thickness from a solid structure in which acoustic waves can propagate. The structure is in operation in contact with substances susceptible to changing a thickness of the structure. A system operable to implement the method is also described. The system comprises acoustic transducers arranged in operation in contact with a surface of the solid structure. The system comprises a processing unit operable to drive one or more of the transducers to excite acoustic signals in a wall of the structure. The acoustic signals travel a distance within the structure and are received at the transducers to generate corresponding received signals for the processing unit to process and analyze. The analysis enables a degree of material loss from the structure to be computed and then optionally displayed on a display unit.
    Type: Grant
    Filed: May 30, 2007
    Date of Patent: July 24, 2012
    Assignee: Clampon AS
    Inventors: Instanes Geir, Mads Andre Toppe, Peter B. Nagy
  • Patent number: 8225666
    Abstract: A method for determining a shear modulus of an elastic material with a known density value is provided. In this method, a spatially modulated acoustic radiation force is used to initially generate a disturbance of known spatial frequency or wavelength. The propagation of this initial displacement as a shear wave is measured using ultrasound tracking methods. A temporal frequency is determined based on the shear wave. The shear modulus of the elastic material at the point of excitation may be calculated using the values of the spatial wavelength, material density, and temporal frequency.
    Type: Grant
    Filed: May 9, 2008
    Date of Patent: July 24, 2012
    Assignee: University of Rochester
    Inventor: Stephen McAleavey
  • Patent number: 8225671
    Abstract: An apparatus and method for non-contact blade vibration measurement is disclosed. The apparatus and method includes sensors which are arranged around the circumference of a rotor which is formed with rotor blades, a signal detection unit, and an evaluation unit. Devices are provided to determine the rotor position and/or the housing deformation. This avoids the technical problems of the prior art, and provides an improved apparatus and an improved method for non-contact blade vibration measurement. In particular, the attainment according to the invention eliminates the effect of rotor radial movements and housing deformations, i.e., oval deformations, on the measurement data, thereby ensuring high amplitude resolution for the vibration analysis under all conditions.
    Type: Grant
    Filed: December 12, 2007
    Date of Patent: July 24, 2012
    Assignee: MTU Aero Engines GmbH
    Inventors: Michael Zielinski, Gerhard Ziller
  • Patent number: 8226559
    Abstract: The invention is disclosed to design a real-time pulse/echo system to perform 1-D real-time temperature measurement and integrate in the high-intensity focused ultrasound system. In the invention, a modified echo-time shifting algorithm is developed to calculate the corresponding phase shift from echo signal, which correlates with the instantaneous temperature change during heating process.
    Type: Grant
    Filed: June 9, 2008
    Date of Patent: July 24, 2012
    Assignee: Chang Gung University
    Inventors: Hao-Li Liu, I-Yeh Lu, Sheng-Min Huang
  • Patent number: 8220334
    Abstract: The disclosed embodiments include a method, system, and device for conducting ultrasound interrogation of a medium. The novel method includes transmitting a non-beamformed or beamformed ultrasound wave into the medium, receiving more than one echoed ultrasound wave from the medium, and converting the received echoed ultrasound wave into digital data. The novel method may further transmit the digital data. In some embodiments, the transmitting may be wireless. The novel device may include transducer elements, an analog-to-digital converter in communication with the transducer elements, and a transmitter in communication with the analog-to-digital converter. The transducers may operate to convert a first electrical energy into an ultrasound wave. The first electrical energy may or may not be beamformed. The transducers also may convert an echoed ultrasound wave into a second electrical energy.
    Type: Grant
    Filed: November 10, 2006
    Date of Patent: July 17, 2012
    Assignee: Penrith Corporation
    Inventors: Jodi Schwartz Klessel, Kevin S. Randall, Joseph A. Urbano
  • Patent number: 8215172
    Abstract: The invention relates to the determination of the dynamic elastic modulus of a material, such as a material comprising a mineral binder like cement, or gypsum, or the like, or a polymer, or ceramic, preferably mortar or concrete, in particular shotcrete, using sound, preferably ultrasound waves which penetrate the material and are continuously measured and analyzed. In particular, the invention relates to an apparatus, to a measuring device, and to a method for determining the dynamic elastic modulus of a material using the apparatus.
    Type: Grant
    Filed: April 20, 2006
    Date of Patent: July 10, 2012
    Assignee: Sika Technology AG
    Inventors: Didier Lootens, Julien Lopez Rios, Robert Flatt, Norman Blank
  • Publication number: 20120167688
    Abstract: A high-precision corrosion monitoring sensor assembly is provided for permanent mounting on a vessel to measure wall thickness of the vessel. The assembly includes an ultrasonic transducer and a delay line, which are bonded to the vessel wall a first location. The assembly is further bonded to the vessel by an adjustable fixture. The assembly includes a cross-member attached to the ultrasonic transducer, having a pivot pin at each distal end. The pivot pins are attached to a first tower and a second tower, which bond to the outer vessel wall at a second location and a third location. The position of the first and second towers can be adjusted with respect to angle and placement about the pivot pins. Fasteners are attached to the pivot pins and can be tightened to make rigid the fixture, thereby allowing configuration of the assembly for use on flat surfaces and small-diameter pipes.
    Type: Application
    Filed: January 4, 2011
    Publication date: July 5, 2012
    Inventors: Ali Minachi, Ghazzay M. Al-Subaii, Ayedh S. Saleh, Erika Laiche, Glenn Light
  • Patent number: 8210043
    Abstract: An ultrasonic measurement method and an ultrasonic measurement apparatus are capable of performing an inspection for a short time with a high SN ratio and a small variation (that depends on an inspection direction) in sensitivity in a process for detecting a defect in all directions at 360 degrees using a matrix array sensor without performing mechanical scanning in all directions, while reducing noise that is caused by a bottom surface echo. An element selecting circuit selects a group of a plurality of ultrasonic transducer elements for transmission from among ultrasonic transducer elements that constitute a two-dimensional array sensor so that the ultrasonic transducer elements for selected for transmission are arranged in line symmetry with respect to a first line symmetric axis to set the group selected for transmission.
    Type: Grant
    Filed: April 5, 2010
    Date of Patent: July 3, 2012
    Assignee: Hitachi-GE Nuclear Energy, Ltd.
    Inventors: Hirohisa Mizota, Naoyuki Kono, Atsushi Baba
  • Patent number: 8205500
    Abstract: An ultrasound inspection system is provided for inspecting an object. The inspection system includes an ultrasound probe configured to scan the object and acquire a plurality of ultrasound scan data. The inspection system further includes a processor coupled to the ultrasound probe and configured to apply a transfer function to the ultrasound scan data to compensate for distortion of a plurality of ultrasound signals through the object and thereby generate a plurality of compensated ultrasound scan data, and to process the compensated ultrasonic scan data to characterize a feature in the object.
    Type: Grant
    Filed: November 25, 2008
    Date of Patent: June 26, 2012
    Assignee: General Electric Company
    Inventors: Yanyan Wu, Edward James Nieters, Thomas James Batzinger, Nicholas Joseph Kray, James Norman Barshinger, Jian Li, Waseem Ibrahim Faidi, Prabhjot Singh, Francis Howard Little, Michael Everett Keller, Timothy Jesse Sheets
  • Publication number: 20120158323
    Abstract: Methods and systems for improving correlation of shear displacement waveforms are presented. The method includes delivering one or more reference pulses to a plurality of target regions to detect corresponding initial positions. Further, a plurality of pushing pulse segments are delivered to one or more pushing locations, where one or more parameters corresponding to the plurality of pushing pulse segments are adapted for generating a shear displacement waveform with a desired wave shape. Additionally, one or more tracking pulses may be delivered to the plurality of target regions for detecting displacements of at least a subset of the target regions as a function of time. Particularly, the displacements are determined as time samples of the shear displacement waveform. Subsequently, a shift between the shear displacement waveform detected at least two different target regions in the subset of the plurality of target regions is detected.
    Type: Application
    Filed: December 16, 2010
    Publication date: June 21, 2012
    Applicant: GENERAL ELECTRIC COMPANY
    Inventors: Christopher Robert Hazard, Kenneth Wayne Rigby
  • Patent number: 8196469
    Abstract: A rail scanning system and certified method of use thereof are described. The rail scanning system comprises a control unit, a probe carriage, and an encoder. The probe carriage comprises two or more phased array probes. The control unit is communicatively coupled with the encoder and phased array probes of the probe carriage.
    Type: Grant
    Filed: January 20, 2009
    Date of Patent: June 12, 2012
    Assignee: National Railroad Passenger Corporation
    Inventors: John A. Pielli, Kenneth Gaglione
  • Patent number: 8183493
    Abstract: A system for monitoring a weld operation is provided. The system includes an ultrasonic wave generator adapted to deliver an ultrasonic wave to a target material during the weld operation and an ultrasonic receiver adapted to receive the ultrasonic wave propagated through the target material. The system also includes a signal processor adapted to determine a quality level of a weld created during the weld operation by extracting data corresponding to a torsional mode from the ultrasonic wave and comparing the data to a profile that corresponds to an acceptable quality level.
    Type: Grant
    Filed: September 28, 2005
    Date of Patent: May 22, 2012
    Assignee: General Electric Company
    Inventors: Thomas James Batzinger, Waseem I. Faidi, Sivaramanivas Ramaswamy, Manoj Kumar Koyithitta Meethal, York Oberdoerfer, Gerhard Splitt, Werner Roye, Johannes Buechler, Rajagopalan Chandrasekharan
  • Patent number: 8176783
    Abstract: Apparatus and method for non-contact (stand-off) ultrasonic determination of certain characteristics of fluids in containers or pipes are described. A combination of swept frequency acoustic interferometry (SFAI), wide-bandwidth, air-coupled acoustic transducers, narrowband frequency data acquisition, and data conversion from the frequency domain to the time domain, if required, permits meaningful information to be extracted from such fluids.
    Type: Grant
    Filed: September 25, 2007
    Date of Patent: May 15, 2012
    Assignee: Los Alamos National Security, LLC
    Inventor: Dipen N. Sinha
  • Patent number: 8179132
    Abstract: A method for integrating a measurement device for use in measuring a machine component includes providing a coordinate measuring machine (CMM) and combining eddy current (EC) capabilities and CMM capabilities to form an inspection probe. The method further includes installing the inspection probe on the CMM so that the inspection probe measures external boundaries of the machine component with the CMM capabilities and substantially simultaneously measures at least one of internal boundaries, internal defects, surface defects, and material properties of the machine component with the EC capabilities, which are directly linked to actual component dimensional information provided by CMM. The inspection data can be simultaneously linked to and/or displayed with a CAD model to enable a direct comparison between the inspection data and the nominal requirements specified on the CAD model.
    Type: Grant
    Filed: February 18, 2009
    Date of Patent: May 15, 2012
    Assignee: General Electric Company
    Inventors: Yanyan Wu, Thomas James Batzinger, Nicholas Joseph Kray, Changting Wang, Haiyan Sun, Francis Howard Little, David Paul Lappas, David Michael Dombrowski
  • Patent number: 8176786
    Abstract: Methods, apparatuses, and systems for damage detection and for other detection of the state of a structure or material. Such damage detection and detection of the state of a structure may be performed and operated without the use of baseline data. The present invention may operate using time reversal acoustics or polarization characteristics of piezoelectric devices. The present invention may include a piezoelectric device including two or more piezoelectric transducers.
    Type: Grant
    Filed: June 29, 2007
    Date of Patent: May 15, 2012
    Assignee: Carnegie Mellon University
    Inventors: Hoon Sohn, Seungbum Kim
  • Patent number: 8166822
    Abstract: The embodiments contemplate methods and devices for communicating an acoustic emission via an array of transducers and wirelessly communicating data via a transceiver. The transceiver may be in communication with the array of transducers. The embodiments also contemplate providing power for the acoustic emission via a power source and processing the data at a relatively remote location with respect to the power source. In addition, the embodiments contemplate providing an indication at a relatively remote location with respect to the power source. The indication may provide, at least in part, numerical information regarding the acoustic emission.
    Type: Grant
    Filed: December 16, 2011
    Date of Patent: May 1, 2012
    Assignee: Penrith Corporation
    Inventors: Joseph A. Urbano, Kevin S. Randall, Jodi Schwartz Klessel, Michael G. Cannon
  • Patent number: 8166821
    Abstract: A method of maintaining a rod of a hydraulic cylinder for a motion compensation system of an offshore platform includes non-destructive testing of a metallic cladding deposited onto the rod. An inspection crawler includes a visual inspection device, an eddy current inspection device and an ultrasonic inspection device. The method includes rotating the visual inspection device, the eddy current inspection device and the ultrasonic inspection device around a circumference of the rod while moving the inspection crawler along a longitudinal axis of the rod to simultaneously collect data related to the metallic cladding from the visual inspection device, the eddy current inspection device and the ultrasonic inspection device. The data is analyzed to detect any discontinuities, i.e., defects, in the metallic cladding.
    Type: Grant
    Filed: June 29, 2009
    Date of Patent: May 1, 2012
    Assignee: Eaton Corporation
    Inventors: Michael Killian, Aquil Ahmad
  • Patent number: 8166823
    Abstract: An ultrasonic probe apparatus for detecting flaws in a tubular includes a probe housing. The probe housing has an axial axis, a central cavity lying along the axial axis, and a bottom face adapted for placement on the tubular. The bottom face of the probe housing has an opening in the middle. A probe support is disposed within the central cavity and rotatable about the axial axis of the probe housing. An ultrasonic probe is mounted on the probe support and has a scanning face exposed to the opening of the bottom face of the probe housing, and may be coupled to the pipe with a liquid acoustic couplant medium.
    Type: Grant
    Filed: June 8, 2010
    Date of Patent: May 1, 2012
    Assignee: National Oilwell Varco, L.P.
    Inventors: Clive C. Lam, Yanming Guo, Kevin D. Logan, Qingshan Yuan
  • Patent number: 8156813
    Abstract: An apparatus for performing ultrasonic inspection of an object, during one measurement on the object, triggers a sequence of excitations of the probe system and receives a sequence of substantially identical echo signals reflected from the object, and further scales each echo signal to different degrees to increase and extend the dynamic range of the echo signals. An A/D converter is then used to digitize the scaled signal sequentially in a manner which dispenses the need for using numerous A/D converters and the associated filters. The digitized signal samples are then combined to produce a single digital output in a manner that is not over-flowed and with desirable resolution. A sequence of successive acquisitions of the scaled signal with the highest sensitivity are averaged to reduce system noise.
    Type: Grant
    Filed: December 3, 2009
    Date of Patent: April 17, 2012
    Assignee: Olympus NDT Inc.
    Inventor: Andrew Thomas
  • Patent number: 8156812
    Abstract: Method for non-destructive inspection of defects in a surface of a pipeline or storage tank. The method includes carrying out a first way of non-destructive inspection for determining a first defect pattern and carrying out a second way of non-destructive inspection for determining a second defect pattern. The method includes identifying at least one defect of the first defect pattern and at least one defect of the second defect pattern which represent one and the same defect, and comparing the dimensions and optionally also the positions of the identified defects so as to obtain a difference in dimensions and optionally also in the positions. The method also includes obtaining a plurality of such differences and obtaining at least one parameter representing said differences, and correcting the dimensions and optionally also the positions of defects of the first defect pattern by using the at least one parameter.
    Type: Grant
    Filed: March 4, 2009
    Date of Patent: April 17, 2012
    Assignee: Röntgen Technische Dienst B.V.
    Inventors: Munendra S. Tomar, Martin Fingerhut, Deli Yu
  • Publication number: 20120085174
    Abstract: The embodiments contemplate methods and devices for communicating an acoustic emission via an array of transducers and wirelessly communicating data via a transceiver, where the transceiver may be in communication with the array of transducers. Embodiments also contemplate providing power for the acoustic emission via a power source and providing information regarding a temperature sensor to the transceiver. The wirelessly communicated data may include the information regarding the temperature sensor. Embodiments also contemplate processing the wirelessly communicated data at a relatively remote location with respect to both the power source and the temperature sensor.
    Type: Application
    Filed: December 16, 2011
    Publication date: April 12, 2012
    Applicant: PENRITH CORPORATION
    Inventors: Joseph A. Urbano, Kevin S. Randall, Jodi Schwartz Klessel, Michael G. Cannon
  • Patent number: 8154417
    Abstract: The present invention provides a new and unique method and apparatus for monitoring a device, such as a pump. The device may also include a fan, compressor, turbine or other rotating or reciprocating piece of machinery. In one embodiment, the method features sensing in a first device both a start-up vibration at a start-up time after the first device is affixed to a second device to be monitored and a subsequent vibration level at a subsequent time after the start-up time, and providing both a start-up vibration level signal containing information about the start-up vibration level of the second device, and a subsequent vibration level signal containing information about the subsequent vibration level of the second device; and monitoring in the first device the condition of operation of the second device based on a comparison of the start-up vibration level signal in relation to the subsequent vibration level signal.
    Type: Grant
    Filed: September 29, 2008
    Date of Patent: April 10, 2012
    Assignee: ITT Manufacturing Enterprises, Inc.
    Inventors: Kenneth Lee Hauenstein, Douglas Paddock, Mark Alexander Playford, Jermiah Dennis Quill, David A. Rice, Patrick J. Brusa
  • Patent number: 8152728
    Abstract: A probe includes a transducer unit including a plurality of transducers which are arrayed in the first direction, transmit ultrasonic waves and receive echo signals, and a moving mechanism for continuously moving the transducer unit in the second direction crossing the first direction. A movement control unit controls the moving mechanism to continuously move the transducer unit in the second direction. A transmission unit causes the transducer unit to generate ultrasonic waves. A scan line signal generation unit generates a plurality of actual measurement scan line signals by delaying and adding a plurality of echo signals from the transducer unit. A scan line signal calculation unit calculates a plurality of mathematical scan line signals constituting a plurality of mathematical electronic scan planes from the plurality of actual measurement scan line signals. An image generation unit generates multislice tomograms on the basis of the plurality of calculated mathematical scan line signals.
    Type: Grant
    Filed: July 24, 2008
    Date of Patent: April 10, 2012
    Assignees: Kabushiki Kaisha Toshiba, Toshiba Medical Systems Corporation
    Inventor: Makoto Hirama
  • Patent number: 8146429
    Abstract: A method for determining the type of a defect in a weld may include determining a defect location and a corresponding defect signal by analyzing ultrasonic response signals collected from a plurality of measurement locations along the weld. The defect signal and the plurality of defect proximity signals corresponding to ultrasonic response signals from measurement locations on each side of the defect location may then be input into a trained artificial neural network. The trained artificial neural network may be operable to identify the type of the defect located at the defect location based on the defect signal and the plurality of defect proximity signals and output the type of the defect located at the defect location. The trained artificial neural network may also be operable to determine a defect severity classification based on the defect signal and the plurality of defect proximity signals and output the severity classification.
    Type: Grant
    Filed: August 3, 2009
    Date of Patent: April 3, 2012
    Assignee: Georgia Tech Research Corporation
    Inventors: Ifeanyi Charles Ume, Renfu Li, Matthew Rogge, Tsun-Yen Wu
  • Publication number: 20120073374
    Abstract: An ultrasonic imaging apparatus is disclosed that is capable of eliminating deterioration of the S/N of the ultrasonic image while suppressing enlargement of the circuit size. The ultrasonic imaging apparatus includes an ultrasonic probe having a plurality of transducers arranged for transmitting and receiving ultrasonic waves to/from an object to be examined. A transmission unit is provided for supplying a drive signal to each of the transducers, and a reception unit is provided for phasing/adding and receiving a reflected echo signal received by each transducer. The apparatus also includes an image processing unit for reconfiguring an ultrasonic image based on the reflected echo signal received. The transmission unit divides the plurality of transducers into a plurality of groups, supplies a common drive signal to the transducers belonging to the same group, and performs focus control by group units.
    Type: Application
    Filed: September 22, 2011
    Publication date: March 29, 2012
    Inventors: Ryuichi Shinomura, Kaisunori Asafusa, Mitsuhiro Oshiki
  • Patent number: 8132463
    Abstract: An apparatus for detecting and measuring gas voids in a pipe with a fluid includes a first ultrasonic transducer externally disposed on the pipe. The apparatus includes a second ultrasonic transducer externally disposed on the pipe. The apparatus includes a multiplexer, transmitter, receiver, controller and processor in communication with the first transducer and the second transducer which in combination identify a void in the pipe from ultrasonic measurements of properties of the fluid in the pipe. A method for detecting and measuring gas voids in a pipe with a fluid includes the steps of measuring properties of the fluid internal to the pipe with transmissions of ultrasonic energy from transducers externally disposed on the pipe. There is the step of identifying a void in the pipe from the properties of the fluid internal to the pipe using signals processed by processor.
    Type: Grant
    Filed: December 18, 2008
    Date of Patent: March 13, 2012
    Assignee: Cameron International Corporation
    Inventors: Herbert Estrada, Ernest Hauser, Matthew Mihalcin, Donald R. Augenstein
  • Patent number: 8127610
    Abstract: A method is present for monitoring a structure. A plurality of modes is identified for a first response for the structure at a first temperature. Each mode in the plurality of modes is adjusted from the first temperature to the second temperature to form a plurality of temperature adjusted modes. A temperature adjusted response is formed from the plurality of temperature adjusted modes in which the temperature adjusted response is adjusted to a second temperature from the first temperature. The temperature adjusted response is compared to a second response to evaluate the changes in the structure between the two sets of measurements.
    Type: Grant
    Filed: August 11, 2008
    Date of Patent: March 6, 2012
    Assignee: The Boeing Company
    Inventor: V. John Mathews
  • Patent number: 8109147
    Abstract: A method for an imaging ultrasonic inspection of a three-dimensional workpiece, in which ultrasonic waves are coupled into the workpiece with at least one ultrasonic transducer and ultrasonic waves reflected within the workpiece are received by ultrasonic transducers and converted into ultrasonic signals forming the basis of the non-destructive imaging ultrasonic inspection.
    Type: Grant
    Filed: September 29, 2006
    Date of Patent: February 7, 2012
    Assignee: Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V.
    Inventors: Michael Kröning, Andrey Bulavinov, Krishna Mohan Reddy, Ludwig Von Bernus
  • Patent number: 8104347
    Abstract: A method and system for ultrasonic time of flight diffraction inspection of a plastics wall, such as a pipe wall. The method includes providing an ultrasound transmitter and transmitting an ultrasound signal having a nominal frequency into the wall, providing an ultrasound receiver and receiving the ultrasound signal transmitted through the wall. The ultrasound signal provided by the transmitter has a bandwidth of more than 80%, preferably more than 100% of the nominal frequency of the ultrasound signal provided by the transmitter.
    Type: Grant
    Filed: July 16, 2008
    Date of Patent: January 31, 2012
    Assignee: Röntgen Technische Dienst B.V.
    Inventor: Peter Christian Den Boer
  • Patent number: 8100014
    Abstract: A plurality of ultrasonic flaw detection methods can be switched and executed by a simple operation. An ultrasonic flaw detection apparatus includes a switching circuit 3 for permitting an angle probe 1 and a normal probe 2 to be arbitrarily switched to a transmission unit T and a reception unit R of a flaw detector. The switching circuit 3 can select an angle flaw detection mode for transmitting and receiving an ultrasonic beam only by the angle probe, an SPOD mode for transmitting the ultrasonic beam by the angle probe and receiving a diffracted wave by the normal probe and a flaw detection mode executed by a combination of angle flaw detection mode.
    Type: Grant
    Filed: May 23, 2007
    Date of Patent: January 24, 2012
    Assignee: Central Research Institute of Electric Power Industry
    Inventors: Hiroyuki Fukutomi, Shan Lin
  • Patent number: 8100015
    Abstract: An ultrasonic inspection apparatus includes an ultrasonic probe including an ultrasonic transducer, a position detection device, a drive element selector which is connected to the plurality of piezoelectric elements of the ultrasonic transducer provided so as to select a required piezoelectric element, a signal detection circuit which allows the piezoelectric element selected by the drive element selector to transmit ultrasonic wave to an inspection object through an acoustic transmission medium, which receives reflection echo thereof, and which detects an electric signal of the reflection echo through, a signal processor which generates three-dimensional imaging data inside of the inspection object by processing the electric signal of the detected reflection echo, a position converting circuit which outputs an imaging-start trigger signal to a signal generator in response to a position detection signal, and a display device which displays an imaging result.
    Type: Grant
    Filed: November 20, 2007
    Date of Patent: January 24, 2012
    Assignees: Kabushiki Kaisha Toshiba, Toshiba Plant Systems & Service Corporation
    Inventors: Hirokazu Karasawa, Hideo Isobe
  • Publication number: 20120016600
    Abstract: A defect detection system and method enable a fastened crystalline silicon product to generate micro-vibration by a micro-vibration excitation device, so as to enable the crystalline silicon product to generate an excitation signal, then to acquire the excitation signal by a acquisition device, so as to analyze the excitation signal acquired by the acquisition device in the time and frequency domain by an analysis detection device with a specific analysis, and to obtain an analysis result, at last, determine a defect state of the crystalline silicon product according to the analysis result.
    Type: Application
    Filed: September 10, 2010
    Publication date: January 19, 2012
    Applicant: INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE
    Inventors: Jui-Yiao SU, Yu-Liang Chung, Chun-Chieh Wang, Chien-Feng Wu, Yan-Chen Liu
  • Patent number: 8096183
    Abstract: The present invention relates to a method for determining the height of objects disposed on a conveying device, in which an ultrasonic sensor positioned in a specific relationship to the conveying device repetitively transmits ultrasonic pulses directed toward the conveying device and any objects disposed thereon to be detected, wherein the ultrasonic pulses are then reflected from a surface of the conveying device or from surfaces of the objects to be detected and are detected by the ultrasonic sensor, wherein from the moments of transmission and moments of detection of the ultrasonic pulses, delay times of the ultrasonic pulses are determined and the height of an object surface relative to the surface of the conveying device is determined from the delay times of the ultrasonic pulses reflected from a surface of an object.
    Type: Grant
    Filed: July 8, 2009
    Date of Patent: January 17, 2012
    Assignee: PEPPERL + FUCHS GmbH
    Inventors: Thomas Knittel, Jens Scherer
  • Patent number: 8091421
    Abstract: A system for measuring the height of bin content includes a transmitter for transmitting an acoustic pulse towards the upper surface of the content, a non-collinear receiver array for receiving an echo of the pulse and producing signals in response to the echo, and a processing apparatus for computing one or more directions of arrival of the signals from the upper surface to the array along with corresponding measured distances. Preferably, the receivers are transducers that also serve as transmitters. Two or more such measured distances constitute a map of the upper surface for estimating the quantity of the bin content. Preferably, the system includes a pulse shaper and repeater for optimizing the pulse shape relative to the signals.
    Type: Grant
    Filed: February 27, 2006
    Date of Patent: January 10, 2012
    Assignee: A.P.M. Automation Solutions Ltd.
    Inventors: Ofir Perl, Yossi Zlotnick
  • Patent number: 8091427
    Abstract: Disclosed herein are an apparatus and a technique for quickly detecting a defective portion including wastage, which has occurred in piping having a straight piping portion or a bending zone, in the nondestructive inspection using a guided wave. A guided wave sensor 3 included in a guided wave inspection device 4 is mounted to the outer surface of piping 1. A guided wave is propagated to an inspection area of the piping 1. If a defective portion exists, the guided wave sensor 3 receives the guided wave that has been reflected from the defective portion. As a result, the guided wave inspection device 4 can acquire receive information including receive information derived from the defect.
    Type: Grant
    Filed: July 21, 2008
    Date of Patent: January 10, 2012
    Assignee: Hitachi-GE Nuclear Energy, Ltd.
    Inventors: Masahiro Miki, Yoshiaki Nagashima, Masao Endou, Kojiro Kodaira, Mitsuru Odakura
  • Patent number: 8091426
    Abstract: In a comparison between master data created from a waveform signal of an observed object of an acceptable article and a waveform signal obtained from a non-measured observed object, time phase difference generated in the observed object is corrected, and difference with the master data is detected. As a first stage, quality determination is performed on the non-measured observed object with a long interval master data using the created master data, and the time phase difference is corrected. Then, as a second stage, quality determination is performed with the short interval master data divided on a time axis and the similarly divided waveform signal of the observed object. The time phase difference generated between the observed objects (acceptable article and defective article) is thereby corrected, and quality determination of high accuracy can be performed from the comparison with the waveform signal of the acceptable article.
    Type: Grant
    Filed: March 26, 2008
    Date of Patent: January 10, 2012
    Assignee: Panasonic Corporation
    Inventors: Shinsuke Komatsu, Yoichiro Ueda
  • Patent number: 8090547
    Abstract: An ultrasonic measurement method, including: receiving a plurality of ultrasonic waves that have been spectrum-spread with different codes by first and second wave-receivers; de-spreading the first and second receive signals respectively with a selected code and a non-selected code; obtaining an amplitude ratio between the produced selected de-spread signal and the non-selected de-spread signal; determining a threshold value based on the amplitude ratio; extracting a signal having an amplitude greater than or equal to the threshold value from the non-selected de-spread signal to thereby produce an interfering signal; spreading the interfering signal with a corresponding non-selected code and then removing the interfering signal from the first and second receive signals to thereby produce first and second receive signals from which the interfering signal has been removed; de-spreading the first and second receive signals from which the interfering signal has been removed each with the selected code to thereby
    Type: Grant
    Filed: September 29, 2008
    Date of Patent: January 3, 2012
    Assignee: Panasonic Corporation
    Inventors: Takehiko Suginouchi, Yong Wang, Masahiko Hashimoto
  • Patent number: 8079263
    Abstract: The disclosed embodiments include a method, system, and device for conducting ultrasound interrogation of a medium. The novel method includes transmitting a non-beamformed or beamformed ultrasound wave into the medium, receiving more than one echoed ultrasound wave from the medium, and converting the received echoed ultrasound wave into digital data. The novel method may further transmit the digital data. In some embodiments, the transmitting may be wireless. The novel device may include transducer elements, an analog-to-digital converter in communication with the transducer elements, and a transmitter in communication with the analog-to-digital converter. The transducers may operate to convert a first electrical energy into an ultrasound wave. The first electrical energy may or may not be beamformed. The transducers also may convert an echoed ultrasound wave into a second electrical energy.
    Type: Grant
    Filed: November 10, 2006
    Date of Patent: December 20, 2011
    Assignee: Penrith Corporation
    Inventors: Kevin S. Randall, Jodi Schwartz Klessel, Anthony P. Lannutti, Joseph A. Urbano, Raymond F. Weymer, Jr.
  • Patent number: 8074520
    Abstract: A transmission probe and a reception probe for transmitting and receiving a wideband ultrasonic wave are provided. Each time when the locations of the probes and are moved, a received wave Gj(t) is obtained. Based on a spectrum Fj(f) corresponding to the received wave Gj(t), a narrowband spectrum FAj(f) is extracted. A component wave GAj(t) corresponding to the narrowband spectrum FAj(f) is found by inverse Fourier transformation. A longitudinal wave primary resonance frequency f1 having a relationship with a thickness W (mm) of an inspection target and a primary resonance frequency fS1 of a transverse wave generated by mode conversion are calculated. A comparative display of the component waves GAj(t) is presented using f1, fS1 and sizing coefficients ns1, ns2, ns3 and ns4 for high precision inspection.
    Type: Grant
    Filed: May 12, 2006
    Date of Patent: December 13, 2011
    Assignees: H & B System Co., Ltd., The Kansai Electric Power Co., Inc., Kozo Keikaku Engineering Inc.
    Inventors: Masayuki Hirose, Masashi Kameyama, Yukihisa Hasegawa, Nobuki Dohi, Hong Zhang, Mitsuo Okumura
  • Patent number: 8073634
    Abstract: A signal analysis method extracts transient target signals of known type from a raw data source signal that contains an unknown number of target signals. The method can enhance the analysis of data obtained from in-line oil-debris sensors. The method comprises steps of: defining signatures of the known target signal, and of at least one of the intrinsic noise and interfering signals; performing a mathematical transform that decomposes the raw data into distinct data sets; using the signal signatures to identify and nullify the data sets containing noise and interfering signal signatures; using the target signal signatures to identify the data sets containing target signal components, or may further use a thresholding rule to remove intrinsic noise from said data sets, and finally applying the inverse transform to the processed data sets in order to reconstruct an enhanced output signal.
    Type: Grant
    Filed: September 22, 2008
    Date of Patent: December 6, 2011
    Assignee: University of Ottawa
    Inventors: Ming Liang, Tet Hin Yeap, Xianfeng Fan, Iman Soltani Bozchalooi
  • Publication number: 20110290026
    Abstract: Systems and methods are provided for detecting contaminants associated with a target. In one embodiment, a system is provided that comprises a tunable laser configured to transmit an illuminator pulse at a target for a predetermined time duration and a laser Doppler vibrometer system configured to transmit a probe pulse at a surface of the target within the predetermined time duration. The laser Doppler vibrometer system is further configured to detect and analyze at least one return pulse of the probe pulse to determine a surface expansion velocity of contaminants associated with the target due to the illuminator pulse.
    Type: Application
    Filed: June 9, 2008
    Publication date: December 1, 2011
    Inventors: Robert Rex Rice, William Byron Cottingame
  • Publication number: 20110290027
    Abstract: A method for predicting the performance of tubular goods includes using a computer readable three-dimensional representation of tubular good which includes computer readable measurements of discrete segments of the wall of said tubular acquired by ultrasonic detection means, along with associated data representing the position of discrete segment and optionally ovality data to mathematically calculate, by computer means, the effect of stress conditions, including tensile, bending, collapse, burst and aging forces upon said tubular and optionally analyzing sequential inspection of the same tubular good over a period of time predict when failure is likely to occur, and to avoid failure while maximizing the use of the tubular good.
    Type: Application
    Filed: August 10, 2011
    Publication date: December 1, 2011
    Applicant: TECHNICAL INDUSTRIES, INC.
    Inventors: George M. Sfeir, Jeffrey S. Banks, Dennis L. Rogers
  • Patent number: 8065916
    Abstract: Provided is a bearing state diagnostic apparatus in which a sound generated from a bearing is detected by a sound sensor, a detected value of the sound sensor is compared with data which was previously formed, thereby diagnosing a state of the bearing, wherein at least one sound sensor is disposed at a position separated away from an outer surface of a cylindrical support body in which at least one bearing is accommodated, the corresponding bearing and sound sensor are in communication with each other through a detection sound propagation path.
    Type: Grant
    Filed: November 3, 2008
    Date of Patent: November 29, 2011
    Assignee: Okuma Corporation
    Inventors: Naomitsu Yanohara, Takashi Norihisa, Tomoharu Ando
  • Patent number: 8061207
    Abstract: Generally speaking, the method of the present invention is performed by making various ultrasonic scans at preselected orientations along the length of a material being tested. Data from the scans are then plotted together with various calculated parameters that are calculated from this data. Lines or curves are then fitted to the respective plotted points. Review of these plotted curves allows the location and severity of defects within these sections to be determined and quantified. With this information various other decisions related to how, when or whether repair or replacement of a particular portion of a structure can be made.
    Type: Grant
    Filed: February 25, 2009
    Date of Patent: November 22, 2011
    Assignee: Battelle Memorial Institute
    Inventors: Paul D. Panetta, Marino Morra, Kenneth I. Johnson
  • Publication number: 20110261652
    Abstract: In one embodiment, an acoustic distance measurement system can dynamically adjust its measurement frequency to a frequency that is within a preselected bandwidth of the resonant frequency of an acoustic transducer used in making acoustic distance measurements.
    Type: Application
    Filed: April 26, 2010
    Publication date: October 27, 2011
    Inventors: Pavel Horsky, Ivan Koudar, Tomas Suchy
  • Patent number: 8042397
    Abstract: In one embodiment, a system to characterize an anomaly in a laminate structure comprises a plurality of actuators to generate a wave signal into a structure being evaluated, a plurality of sensors to collect scattered wave data caused by energy of the wave signal being at least partially reflected or scattered by an anomaly, and a structural health monitoring unit. In some embodiments the structural health monitoring unit executes a scatter imaging algorithm to generate three dimensional image data for the anomaly from the scattered wave data, extracts a scatter volume from the from the scattered wave data, and generates a damage volume estimate and a damage depth estimate from the scattered wave data. Other embodiments may be described.
    Type: Grant
    Filed: December 1, 2009
    Date of Patent: October 25, 2011
    Assignee: The Boeing Company
    Inventor: Jeong-Beom Ihn
  • Publication number: 20110247418
    Abstract: A system for monitoring compressor anomalies includes an acoustic energy detector connected to the compressor and a controller in communication with the acoustic energy detector. The acoustic energy detector transmits an acoustic energy signal reflective of acoustic energy produced by the compressor to the controller. At least one sensor connected to the compressor measures an operating parameter of the compressor and transmits a parameter signal reflective of the operating parameter to the controller, A method for monitoring compressor anomalies includes sensing acoustic energy produced by the compressor and transmitting an acoustic energy signal reflective of the acoustic energy to a controller. The method further includes sensing at least one operating parameter of the compressor, transmitting a parameter signal reflective of the operating parameter to the controller, and transmitting an output signal based on the acoustic energy signal and the operating parameter signal.
    Type: Application
    Filed: April 8, 2010
    Publication date: October 13, 2011
    Applicant: GENERAL ELECTRIC COMPANY
    Inventors: Scott Mordin Hoyte, Preston Keith Parker, Achalesh Kumar Pandey, Ravi Yoganatha Babu, Bhasker Rao Keely