The elastic and anelastic behavior of a metallic glass
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- Type
- article
- Published
- 1971-05-01
- Cited by
- 90
- References
- 5
- OpenAlex
- https://openalex.org/W2010033226
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:136583839
Keywords
Amorphous metal, Materials science, Alloy, Activation energy, Annealing (glass)
References
- A Rapid Quenching Technique for the Preparation of Thin Uniform Films of Amorphous Solids
- Delayed Elasticity in Inorganic Glasses
- Viscous Liquids and the Glass Transition: A Potential Energy Barrier Picture
- Formation, stability and structure of palladium-silicon based alloy glasses
- Amorphous Phase in Palladium—Silicon Alloys
Cited by
- The Internal Friction and Elastic Modulus of Amorphous Pd-Si and Fe-P-C Alloys
- Anomalous Viscoelastic Behavior of Metallic Glasses of Pd–Si‐Based Alloys
- REVIEW ARTICLE: Glassy metals
- Internal friction in Cu-Ti glass
- Internal friction and reversible structural relaxation in the metallic glass Fe32Ni36Cr14P12B6
- Flow of melt and glass forms of metallic alloys
- Structural Stability and Mechanical Properties of Amorphous Metals
- Crystallization of an Fe-Ni base amorphous alloy
- Effect of cobalt microalloying on the glass forming ability of Ti–Cu–Pd–Zr metallic glass
- Measurement of Young’s modulus on small samples of amorphous metals using the impulse induced resonance technique
- Mechanical properties of two metallic glasses
- Structural relaxation in metallic glasses
- Internal Friction Peaks and Structural Relaxation on Some Electroless Deposited Amorphous Alloys
- Experimental evidence of Snoek-like relaxation in annealed metallic glass
- Internal friction and shear modulus of certain metallic glasses
- Splat cooling and metastable phases
- Excess specific heat of a glassy Pd0.775Cu0.06Si0.165 alloy at low temperature
- STATISTICAL THERMODYNAMICS OF CONFIGURATIONAL PROPERTIES *
- Structure relaxation spectrum of metallic glasses
- Relaxation of rapidly quenched metallic glasses: Effect of the relaxation state on the slow low temperature dynamics
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