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High-Temperature Internal Friction Peaks of Pure Aluminum Single-, Bi-, and Polycrystals Measured with an Inverted Flexure Pendulum
29
Citations
5
References
1984
Year
Inverted Flexure PendulumEngineeringSevere Plastic DeformationMechanical EngineeringLattice DislocationsFriction ControlMechanics ModelingVibrationsElasticity (Physics)MechanicsThermomechanical AnalysisMaterials ScienceMechanical BehaviorPure Aluminum Single-Solid MechanicsMechanical DeformationThermomechanical ProcessingMicrostructureMechanical PropertiesInternal FrictionMechanics Of Materials
The internal friction of pure aluminum single-, bi-, and polyerystalline sheet specimens is measured with an inverted flexure pendulum. The peak observed at about 250 °C is interpreted to be due to stress-induced grain boundary sliding by comparing the experimental results on various types of crystals. After deformation some additional peaks are also observed at temperatures below 200 °C in all the types of crystals. They are considered to be related with lattice dislocations. Innere Reibung von reinen Aluminium-Ein-, Doppel- und Polykristallen wird mit einem inversen Biegungspendel gemessen. Aus dem Vergleich der experimentellen Ergebnisse von verschiedenen Kristallen wird gezeigt, daß das Dämpfungsmaximum bei etwa 250 °C durch spanungsinduzierte Korngrenzengleitung verursacht wird. In allen Kristallen werden einige andere Dämpfungsmaxima bei Temperaturen unter 200 °C nach Verformung beobachtet. Diese Maxima scheinen durrh Versetzungen in der Körnern verursacht zu werden.
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