The anelastic relaxation process in crystalline solids is influenced by various mechanisms including a.o. diffusion of point defects, dislocation formation, movement and multiplication. To analyze the type and concentration of relaxing units participating in a particular thermally activated process, measuring the temperature dependent internal friction is a well-known approach. In the present study, the impulse excitation technique was used to analyze the internal friction in single crystal Ge in the -, - and - directions between room and melting temperature. The internal friction spectra reveal up to three internal friction peaks. To interpret the observed internal friction peaks, various aspects of the peaks such as activation energy, pos...
An internal friction relaxation peak-located about 0.4 TM for a vibration frequency of 1 Hz is obser...
Experimental results in the strain-rate change tests on germanium single crystals done in a previous...
This paper presents a new apparatus to measure elastic properties and internal friction of materials...
The anelastic relaxation process in crystalline solids is influenced by various mechanisms including...
The anelastic relaxation process in crystalline solids is influenced by various mechanisms including...
The anelastic relaxation process in crystalline solids is influenced by various mechanisms including...
The anelastic relaxation process in crystalline solids is influenced by various mechanisms including...
The internal friction of germanium single crystals is investigated in the temperature range from 77 ...
The internal friction in deformed germanium single crystals is investigated in the temperature range...
In the present study, the vibrational properties of single crystal Ge samples are studied between ro...
The high-temperature internal friction of germanium and silicon, intrinsic and highly n-type, was me...
A carefull investigation of the low frequency (~ 1 Hz) amplitude dependent internal friction, in hig...
High temperature internal friction experiments were performed on different poly and single crystals ...
© The Electrochemical Society. The vibrational properties of single crystal Si and Ge are studied be...
The internal friction in deformed InSb single crystals is investigated in the temperature range from...
An internal friction relaxation peak-located about 0.4 TM for a vibration frequency of 1 Hz is obser...
Experimental results in the strain-rate change tests on germanium single crystals done in a previous...
This paper presents a new apparatus to measure elastic properties and internal friction of materials...
The anelastic relaxation process in crystalline solids is influenced by various mechanisms including...
The anelastic relaxation process in crystalline solids is influenced by various mechanisms including...
The anelastic relaxation process in crystalline solids is influenced by various mechanisms including...
The anelastic relaxation process in crystalline solids is influenced by various mechanisms including...
The internal friction of germanium single crystals is investigated in the temperature range from 77 ...
The internal friction in deformed germanium single crystals is investigated in the temperature range...
In the present study, the vibrational properties of single crystal Ge samples are studied between ro...
The high-temperature internal friction of germanium and silicon, intrinsic and highly n-type, was me...
A carefull investigation of the low frequency (~ 1 Hz) amplitude dependent internal friction, in hig...
High temperature internal friction experiments were performed on different poly and single crystals ...
© The Electrochemical Society. The vibrational properties of single crystal Si and Ge are studied be...
The internal friction in deformed InSb single crystals is investigated in the temperature range from...
An internal friction relaxation peak-located about 0.4 TM for a vibration frequency of 1 Hz is obser...
Experimental results in the strain-rate change tests on germanium single crystals done in a previous...
This paper presents a new apparatus to measure elastic properties and internal friction of materials...