The elastics modulus directly reflects the bonding strength and structure of a solid state. Usually this factor can only be modified slightly for a given material, but in amorphous carbon films large variations in Young's modulus (from less than 100 Gpa up to more than 500 Gpa) are found. This can be attributed mainly to the varying fraction of sp3 and sp2 bonds. Even for hard amorphous carbon films of diamond-like nature, the modulus achieves only 30 per cent-50 per cent of the value of crystalline diamond. Young's modulus was measured by a method based on the determination of the frequency- dependent propagation velocity of ultrasonic surface waves and ist mathematical evaluation. The potential of this non-destructive method has been demo...
Two contact resonance frequencies atomic force acoustic microscopy imaging technique has been used ...
Two contact resonance frequencies atomic force acoustic microscopy imaging technique has been used ...
Two contact resonance frequencies atomic force acoustic microscopy imaging technique has been used ...
The elastic moduli directly reflect binding strength and structure. Usually these factors can be onl...
Amorphous carbon films have been prepared by special pulsed vacuum arc deposition methods allowing h...
Young's modulus is often underestimated in its relevance for thin film characterisation. It represen...
Amorphous hydrogen-free carbon films (a-C) combine the outstanding properties of diamond with those ...
The elastic constants of thin Diamond-Like Carbon (DLC) films supply important information, but thei...
The protecting against damage, computer hard disks have to be coated by hard films. The increasing d...
Young's modulus of diamond-like carbon films varies in a wide range which suggests the use of this m...
Brillouin light scattering is a well-established technique for measuring sound velocities and theref...
The method of ultrasonic surface waves is suitable to determine the elastic modulus of thin diamond-...
The determination of all the elastic constants of a supported film of thickness smaller than 1 mm is...
Carbon films of thickness down to 2 nanometers are necessary to achieve a storage density of 100 Gbi...
A simple technique to measure the elastic modulus and Poisson's ratio of diamond-1ike carbon (D...
Two contact resonance frequencies atomic force acoustic microscopy imaging technique has been used ...
Two contact resonance frequencies atomic force acoustic microscopy imaging technique has been used ...
Two contact resonance frequencies atomic force acoustic microscopy imaging technique has been used ...
The elastic moduli directly reflect binding strength and structure. Usually these factors can be onl...
Amorphous carbon films have been prepared by special pulsed vacuum arc deposition methods allowing h...
Young's modulus is often underestimated in its relevance for thin film characterisation. It represen...
Amorphous hydrogen-free carbon films (a-C) combine the outstanding properties of diamond with those ...
The elastic constants of thin Diamond-Like Carbon (DLC) films supply important information, but thei...
The protecting against damage, computer hard disks have to be coated by hard films. The increasing d...
Young's modulus of diamond-like carbon films varies in a wide range which suggests the use of this m...
Brillouin light scattering is a well-established technique for measuring sound velocities and theref...
The method of ultrasonic surface waves is suitable to determine the elastic modulus of thin diamond-...
The determination of all the elastic constants of a supported film of thickness smaller than 1 mm is...
Carbon films of thickness down to 2 nanometers are necessary to achieve a storage density of 100 Gbi...
A simple technique to measure the elastic modulus and Poisson's ratio of diamond-1ike carbon (D...
Two contact resonance frequencies atomic force acoustic microscopy imaging technique has been used ...
Two contact resonance frequencies atomic force acoustic microscopy imaging technique has been used ...
Two contact resonance frequencies atomic force acoustic microscopy imaging technique has been used ...