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Information Journal Paper

Title

INVESTIGATION OF MAGNETIC AND ELECTRICAL PROPERTIES OF PROGRAMMED BY FARID MASOUM CU30-NI70 /CNT NANOCOMPOSITE PRODUCED BY MECHANICAL ALLOYING

Pages

  29-36

Abstract

 In this study, Cu30-Ni70 alloy were synthesized by MECHANICAL ALLOYING. Different concentrations of CARBON NANOTUBES were then distributed in the alloy to fabricate Cu-Ni/CNT NANOCOMPOSITES. X-ray diffraction, scanning electron microscopy, vibrating sample magnetometer and 4point probe standard techniques were used to investigate the characteristics of the samples. XRD results of the alloy sample revealed that, homogeneous Cu30-Ni70 alloy was formed after 5 h of milling. The SEM micrographs of the specimens showed that CNTs have a significant effect on structural refinement of the NANOCOMPOSITES. The finest microstructure was obtained in the sample containing 5wt% CNTs. Decreasing the electrical resistivity values of the NANOCOMPOSITES due to increasing the CNT contents showed that CNTs have been uniformly distributed in the samples. More ever, the distribution of CNTs in the matrix decreases the saturation magnetization and increases the coercivity of the NANOCOMPOSITES.

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    APA: Copy

    BAKHSHAIE, P., ATAIE, A., & ABDIZADEH, H.. (2014). INVESTIGATION OF MAGNETIC AND ELECTRICAL PROPERTIES OF PROGRAMMED BY FARID MASOUM CU30-NI70 /CNT NANOCOMPOSITE PRODUCED BY MECHANICAL ALLOYING. JOURNAL OF ADVANCED MATERIALS AND TECHNOLOGIES, 3(1), 29-36. SID. https://sid.ir/paper/252338/en

    Vancouver: Copy

    BAKHSHAIE P., ATAIE A., ABDIZADEH H.. INVESTIGATION OF MAGNETIC AND ELECTRICAL PROPERTIES OF PROGRAMMED BY FARID MASOUM CU30-NI70 /CNT NANOCOMPOSITE PRODUCED BY MECHANICAL ALLOYING. JOURNAL OF ADVANCED MATERIALS AND TECHNOLOGIES[Internet]. 2014;3(1):29-36. Available from: https://sid.ir/paper/252338/en

    IEEE: Copy

    P. BAKHSHAIE, A. ATAIE, and H. ABDIZADEH, “INVESTIGATION OF MAGNETIC AND ELECTRICAL PROPERTIES OF PROGRAMMED BY FARID MASOUM CU30-NI70 /CNT NANOCOMPOSITE PRODUCED BY MECHANICAL ALLOYING,” JOURNAL OF ADVANCED MATERIALS AND TECHNOLOGIES, vol. 3, no. 1, pp. 29–36, 2014, [Online]. Available: https://sid.ir/paper/252338/en

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