Journal Article

·2022

Microstructure, Mechanical, and Wear Properties of Al-Alloyed Austempered Ductile Irons

Rıdvan Gecü YTU

Tribology Transactions

Abstract

Spheroidal graphite cast irons with 0–4 wt% aluminum addition fabricated by green sand casting were austenitized at 900 °C for 90 min and subsequently austempered at 300 °C for 60 min. The samples were subjected to dry sliding wear tests against Al2O3 balls under various conditions. Microstructural analysis showed that increasing Al decreased the acicular ferrite ratio and disrupted graphite nodularity. Accordingly, ultimate tensile strength (UTS) and hardness decreased while impact strength increased except for the 4 wt% Al-alloyed cast iron. The Al2O3 layer formed around graphite nodules could not be removed during the austempering and caused an increase in the mechanical strength of this sample. Sliding tests revealed that the wear resistance of the samples increased with sliding speed and decreased with applied load. Worn surfaces predominantly suffered from abrasion, adhesion, and delamination. Although lower Al addition increased wear losses, 4 wt% Al-alloyed cast iron showed the best wear resistance.

Keywords

Austempering Materials science Metallurgy Ultimate tensile strength Microstructure Acicular ferrite Graphite Cast iron Ferrite (magnet) Abrasion (mechanical) Casting Delamination (geology) Composite material Bainite Austenite

Subject Areas

Metal Alloys Wear and Properties ·Materials Chemistry ·Physical Sciences
Microstructure and Mechanical Properties of Steels ·Mechanical Engineering ·Physical Sciences
Aluminum Alloys Composites Properties ·Mechanical Engineering ·Physical Sciences

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