This work describes the design and validation of an elastic moduli measurement method developed to characterize optical materials in cryogenic environment. The testing procedure is based on the identification of the natural frequencies of a specimen at the temperatures of interest so that from the changes in the natural frequencies the material elastic properties changes are derived. The difference with respect to other conceptually similar methods is that material samples are excited by piezoelectric actuators, and identical elements are used as sensors to detect the temperature-dependent resonance frequencies. Given the low cost, mass and size of the adopted piezoelectric elements, the proposed method allows multiple samples parallel test...
It is well known that material properties determined from the standard tests of small specimens, whi...
This paper describes a unique experimental facility designed to measure damping of materials at cryo...
AbstractIn the paper, we suggest widening the scope of cryogenic atomic-force microscopy in order to...
This work describes the design and validation of an elastic moduli measurement method developed to c...
A lab facility for measuring elastic moduli up to 1700 C was constructed and delivered. It was shown...
Mit resonanter Ultraschallspektroskopie (RUS) werden die elastischen Konstanten verschiedener Materi...
We present a method to determine the frequency as well as the temperature dependence of mechanical m...
We propose a novel method for estimating the elastic modulus of several materials by processing the ...
Due to the character of the original source materials and the nature of batch digitization, quality ...
This paper presents a new apparatus to measure elastic properties and internal friction of materials...
The mechanical resonant response of a solid depends on its shape, density, elastic moduli and dissip...
International audienceA pulse-echo ultrasonic method is presented to measure elastic parameter varia...
A method for measuring elastic constants of piezoelectric materials at high temperature up to 1224 K...
Resonant Ultrasound Spectroscopy (RUS) is an experimental technique that can provide a full set of e...
An acoustic resonance based technique using a free-free bar has been extended to investigate the com...
It is well known that material properties determined from the standard tests of small specimens, whi...
This paper describes a unique experimental facility designed to measure damping of materials at cryo...
AbstractIn the paper, we suggest widening the scope of cryogenic atomic-force microscopy in order to...
This work describes the design and validation of an elastic moduli measurement method developed to c...
A lab facility for measuring elastic moduli up to 1700 C was constructed and delivered. It was shown...
Mit resonanter Ultraschallspektroskopie (RUS) werden die elastischen Konstanten verschiedener Materi...
We present a method to determine the frequency as well as the temperature dependence of mechanical m...
We propose a novel method for estimating the elastic modulus of several materials by processing the ...
Due to the character of the original source materials and the nature of batch digitization, quality ...
This paper presents a new apparatus to measure elastic properties and internal friction of materials...
The mechanical resonant response of a solid depends on its shape, density, elastic moduli and dissip...
International audienceA pulse-echo ultrasonic method is presented to measure elastic parameter varia...
A method for measuring elastic constants of piezoelectric materials at high temperature up to 1224 K...
Resonant Ultrasound Spectroscopy (RUS) is an experimental technique that can provide a full set of e...
An acoustic resonance based technique using a free-free bar has been extended to investigate the com...
It is well known that material properties determined from the standard tests of small specimens, whi...
This paper describes a unique experimental facility designed to measure damping of materials at cryo...
AbstractIn the paper, we suggest widening the scope of cryogenic atomic-force microscopy in order to...