Study of Production Defects in Pure Aluminum and 3003 Aluminum Alloy by Electrical Measurements

Author:

Kamel N.A.1

Affiliation:

1. Minia University

Abstract

To Study the Defect Properties in the Crystal, it Is Necessary that they Are Present in Sufficiently High Concentration. Electrical Measurements Are Also One of the Oldest Techniques Used in Materials Science. this Paper Aims to Discuss the Possibility of Using Electrical Measurements as Diagnostic Techniques for Detecting Defects in a Set of Plastically Deformed Pure and 3003 Al Wrought Aluminum Alloys. the Results of Electrical Measurements Were Analyzed in Terms of the Variation of Resistivity. this Model Can Be Used to Investigate both the Defect and Dislocation Densities of the Samples under Investigation. Results Obtained by Means of Electrical Techniques Have Been Reported. Plastic Deformation Was Performed, and I-V Curves Were Measured in Order to Determine the Value of the Resistivity. the Values of Resistivity as a Function of Deformation and Annealing Behavior Were Studied. One of the Goals of the Work Was to Obtain the Activation Energy for the Formation of Defects by Performing Electrical Measurements on both Materials (pure Al and 3003 Al Alloys ).

Publisher

Trans Tech Publications, Ltd.

Subject

Condensed Matter Physics,General Materials Science,Radiation

Reference17 articles.

1. Aluminum Standards and Date . The Aluminum Association, Washington, DC (an update periodically) and American National Standard Institute ANST H35.

2. Metal and Alloys in the Unified Numbering System, 9th ed. SAE and ASTM (2001).

3. American National Standard Nomenclature System for Aluminum Metal Matrix Composite Materials,. ANSI H 35. 5, (2000).

4. Carter, G.F., Paul, D.E. (ed. )(1991), Materials Science and Engineering, ASM.

5. Harvey, P.D. (ed) (1982), Engineering Properties of Steel American Society for Metals (Metals Park, OH ).

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