Certain microstructural features of materials, such as grain size in metals, porosity in ceramics, and structural phase compositions, are important for determining mechanical properties. Many of these microstructural features have been characterized by ultrasonic wave propagation measurements, such as wave velocity and attenuation. Real-time monitoring of ultrasonic wave propagation during the processing stage would be valuable for following the evolution of these features. This paper describes the application of laser ultrasonic techniques to the monitoring of ceramic sintering. Prior to this work, ultrasonic wave measurements of the sintering of ceramics have been made only through direct contact with the material with a buffer rod [1,2]....
Recent developments in laser-ultrasonic technology have made it possible to remotely inspect large a...
A noncontact ultrasonic technique for the characterization of piezoelectric ceramics is described. T...
Some laser-based techniques for the characterization of ceramic materials fired at different tempera...
Certain microstructural features of materials, such as grain size in metals, porosity in ceramics, a...
Localized heating produced by absorption from a pulsed laser provides an efficient noncontacting sou...
Increased use of advanced materials and more stringent requirements for process and quality control ...
Ultrasonic techniques are widely used in industry for thickness gauging, flaw detection and material...
Modern ceramic materials offer many attractive physical and mechanical properties for a wide and rap...
Sintering mechanisms in ceramic processing are not often well understood.Such knowledge, though, wou...
Ceramic materials can replace metals in many applications requiring high strength and resistance to ...
This report describes research performed at the Idaho National Engineering Laboratory from May 1983 ...
Localized heating produced by absorption from a pulsed laser provides an efficient noncontacting sou...
Many of the traditional NDE techniques of the past are today being investigated for their potential ...
Laser ultrasonics for metallurgy is an innovative sensor dedicated to the measurement of microstruct...
The ultrasonic testing of ceramic materials is a two headed problem. First, the defect must be detec...
Recent developments in laser-ultrasonic technology have made it possible to remotely inspect large a...
A noncontact ultrasonic technique for the characterization of piezoelectric ceramics is described. T...
Some laser-based techniques for the characterization of ceramic materials fired at different tempera...
Certain microstructural features of materials, such as grain size in metals, porosity in ceramics, a...
Localized heating produced by absorption from a pulsed laser provides an efficient noncontacting sou...
Increased use of advanced materials and more stringent requirements for process and quality control ...
Ultrasonic techniques are widely used in industry for thickness gauging, flaw detection and material...
Modern ceramic materials offer many attractive physical and mechanical properties for a wide and rap...
Sintering mechanisms in ceramic processing are not often well understood.Such knowledge, though, wou...
Ceramic materials can replace metals in many applications requiring high strength and resistance to ...
This report describes research performed at the Idaho National Engineering Laboratory from May 1983 ...
Localized heating produced by absorption from a pulsed laser provides an efficient noncontacting sou...
Many of the traditional NDE techniques of the past are today being investigated for their potential ...
Laser ultrasonics for metallurgy is an innovative sensor dedicated to the measurement of microstruct...
The ultrasonic testing of ceramic materials is a two headed problem. First, the defect must be detec...
Recent developments in laser-ultrasonic technology have made it possible to remotely inspect large a...
A noncontact ultrasonic technique for the characterization of piezoelectric ceramics is described. T...
Some laser-based techniques for the characterization of ceramic materials fired at different tempera...