PDF

Examination of the Corrosion Behavior of Shape Memory NiTi Material for Biomedical Applications

A.A.M. Soltan, ˙I. Esen

2023encorrosionbiomedicalmaterialsNiTishape memory

Abstract

Language:

In this study, corrosion and wear tests of NiTi alloy (Ni 55%–Ti 45%) samples, known as shape memory alloy, which offer a shape recovery memory effect between memory temperatures ranging from 25 to 35 ◦C, have been carried out. The standard metallographically prepared samples’ microstructure images were obtained using an optical microscope device and SEM with an EDS analyzer. For the corrosion test, the samples are immersed with a net into the beaker of synthetic body fluid, whose contact with the standard air is cut off. Electrochemical corrosion analyses were performed after potentiodynamic testing in synthetic body fluid and at room temperature. The wear tests of the investigated NiTi superalloy were carried out by performing reciprocal wear tests under 20 N and 40 N loads in a dry environment and body fluid. During wear, a 100CR6-quality steel ball of the counter material was rubbed on the sample surface for a total of 300 m with a unit line length of 13 mm and a sliding speed of 0.04 m/s. As a result of both the potentiodynamic polarization and immersion corrosion tests in the body fluid, an average of 50% thickness reduction in the samples was observed in proportion to the change in the corrosion current values. In addition, the weight loss of the samples in corrosive wear is 20% less than that of the non-corroded samples.

Download

Cite This Work

@article{7d66d60f-1f25-462a-b2ac-d06c46217119,
  title={Examination of the Corrosion Behavior of Shape Memory NiTi Material for Biomedical Applications},
  author={A.A.M. Soltan and ˙I. Esen},
  year={2023},
  language={en}
}
TY  - JOUR
TI  - Examination of the Corrosion Behavior of Shape Memory NiTi Material for Biomedical Applications
AU  - A.A.M. Soltan
AU  - ˙I. Esen
PY  - 2023
LA  - en
ER  -

Similar Items

Materials for Nuclear Plants

W. Hoffelner

Structural materials must be able to operate under demanding exposure conditions, particularly for advanced nuclear plants where challenges arise from

2013enPDF

Introduction to Eng. Materials

Msc. Shaymaa Mahmood

The evolution of mankind has been marked by the ability to utilize and develop various materials to meet human needs. This paper explores the signific

2019enPDF

...

Arthur C. Reardon

This publication, edited by Arthur C. Reardon and published by ASM International®, serves as a comprehensive guide in the field of materials science.

2011enPDF

Glossary

This glossary serves as a comprehensive compilation of key terms and concepts related to materials science and chemistry. The objective is to provide

2023enPDF

Optimization of Integrated Steel Plant R

This paper addresses the challenge of assessing the feasibility of wind power plant projects at sites with insufficient or no local historic wind data

2025enPDF

Design for Recovery of Precious and Base

2026enPDF