Master'sOpen Access

The effect of alloy composition on microhardness and electrochemical corrosion on Ni-Ti-Nb shape memory alloys

2022
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Advisor: Doç. Dr. Fethi Dağdelen

Abstract (EN)

This theis investigated the effects of four varying quantities of niobium (Nb) on some physical and chemical properties of Ni-Ti alloy. The effect of thermal cycling at various temperatures on some thermodynamic parameters was also evaluated.The sample manufacturing procedure was carried out using the Induction melting furnace. The effect of the Nb additive on transformation temperatures and different thermal parameters of Ni-Ti-Nb SMAs was investigated using differential scanning calorimetry (DSC) with different heating rates. SEM was also used to investigate the microstructural properties of materials, and the Vickers microhardness technique was performed to evaluate the microhardness of all samples. Both Nb additive and thermal cycling decreased transformation temperatures and other thermodynamic parameters such as enthalpy change, entropy change, elastic energy, and Gibbs free energy, but it increased the temperature hysteresis of the martensitic phase transformation. The addition of Nb decreased the activation energy while increasing the microhardness of the Ni-Ti-Nb alloy. The corrosion resistance test results also showed that Nb has a positive effect on improving Ni-Ti alloy biocompatibility by increasing the corrosion resistance of the SMAs.

Author

Husseın Ahmed Qadır

How to Cite

Husseın Ahmed Qadır (Master Thesis). The effect of alloy composition on microhardness and electrochemical corrosion on Ni-Ti-Nb shape memory alloys, 2022, Fırat University.

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