Universiti Teknologi Malaysia Institutional Repository

Effect of forging temperature on biodegradable MG-0.7%ca alloy properties for implant application

Nanda, Is Prima and Ali, Zahran and Anuar, Nur Farah Bazilah Wakhi and Idris, Mohd Hasbullah and Arafat, Andril (2021) Effect of forging temperature on biodegradable MG-0.7%ca alloy properties for implant application. In: 1st International Colloquium on Computational and Experimental Mechanics, ICCEM 2020, 25-26 June 2020, Selangor.

[img]
Preview
PDF
1MB

Official URL: http://dx.doi.org/10.1088/1757-899X/1062/1/012047

Abstract

The potential of binary Mg-Ca alloy as biodegradable material is considerable interest in implant application among researchers. This research was conducted to investigate the effect of different forging temperature and forging speed on the hardness, microstructure and corrosion rate of Mg-0.7%Ca. The experiment was established by preparing the alloy sample with 0.7%wt calcium content. The forging process was carried out under four different temperature variations of 140°C, 180°C, 220°C, and 260°C ( 10°C) with two different speed;25 and 45 strokes per minute (spm). The samples microstructure was examined by optical microscope and scanning electron microscope (SEM) equipped with energy dispersive X-ray (EDX). The mechanical properties of the forged samples were measured in its hardness and plastic deformation ability along with samples cold-working percentage. The corrosion rate was determined by performing the electrochemical test in simulated body fluid. This research found that increases of forging temperature and forging speed provide a higher rate of recrystallization and Mg2Ca compound precipitation results in greater hardness, increase deformation and reduce the cold-working percentage. However, the investigated factors still led to a high corrosion rate compared to a previous study and consequently, reduce the feasibility of the alloy in implant application for biodegradable material.

Item Type:Conference or Workshop Item (Paper)
Uncontrolled Keywords:biodegradable, calcium, forging, implant, microstructure, temperature
Subjects:T Technology > TJ Mechanical engineering and machinery
Divisions:Mechanical Engineering
ID Code:97270
Deposited By: intern1 intern1
Deposited On:26 Sep 2022 03:23
Last Modified:26 Sep 2022 03:23

Repository Staff Only: item control page