PDF

A Review on Heat Treatment of Cast Iron: Phase Evolution and Mechanical Characterization

Ojo Jeremiah Akinribide, Olasupo Daniel Ogundare

2022Englishcast ironheat treatmentphase transformationmechanical propertiesaustempered ductile ironautomotive components

Abstract

Language:

The isothermal heat treatment process has been identified as a unique process of fabricating exceptional graphite cast iron due to its remarkable mechanical properties, such as excellent machinability, toughness, and high level of ultimate tensile strength. Austempered ductile iron (ADI), ductile iron (DI), and gray cast iron (GCI), known as spheroidal cast irons, are viable alternative materials compared to traditional steel casting, as well as aluminum casting. The graphite nodules from the microstructures of DI, ADI, and GCI are consistently encompassed by acicular ferrite and carbon-saturated austenite in the matrix, forming a distinctive ausferritic structure. All these materials are extensively used in the fabrication of engine sleeves, engine blocks, valves, gears, and camshafts in the automobile sector. With relative motion and outward loads, these components are regular.

Download

Cite This Work

@article{e0d1966d-36a0-4b82-a6eb-a9b5aecaa62b,
  title={A Review on Heat Treatment of Cast Iron: Phase Evolution and Mechanical Characterization},
  author={Ojo Jeremiah Akinribide and Olasupo Daniel Ogundare},
  year={2022},
  language={English}
}
TY  - JOUR
TI  - A Review on Heat Treatment of Cast Iron: Phase Evolution and Mechanical Characterization
AU  - Ojo Jeremiah Akinribide
AU  - Olasupo Daniel Ogundare
PY  - 2022
LA  - English
ER  -

Similar Items

Influence of Heat Treatment Parameters of Austempered Ductile Iron on the Microstructure, Corrosion and Tribological Properties

Halina Krawiec, Janusz Lelito

The influence of heat treatment parameters such as the annealing time and austempering temperature on the microstructure, tribological properties and

2023EnglishPDF

The Effect of Extrusion and Heat Treatment on the Microstructure and Tensile Properties of 2024 Aluminum Alloy

Qilun Li, Xiaobo Zhang

Hot extrusion forming is one of the best cost-effective processing methods to obtain high-strength aluminum alloys. In order to obtain high performanc

2022EnglishPDF

Structures and Mechanical Properties of Some Dual-Phase Steels with Low Manganese Content

Constantin Dulucheanu, Traian Lucian Severin

In recent years, to reduce car costs, research has been conducted on dual-phase steels with low manganese content (below 1.0%). This study investigate

2022EnglishPDF

Evaluation of a Method for Determining Material Strength Based on Hardness Measurements: A Case Study of the Ti6Al4V Alloy

Karolina Karolewska, Mateusz Wirwicki

The aim of this study was to evaluate the feasibility of estimating the tensile strength of Ti6Al4V alloy, based on HV measurements. The investigation

2025EnglishPDF

Additive Manufacturing for Rapid Sand Casting: Mechanical and Microstructural Investigation of Aluminum Alloy Automotive Prototypes

Silvia Cecchel, Giovanna Cornacchia

The automotive industry is undergoing a rapid evolution to meet today’s challenges; therefore, continuous innovation and product development are neede

2024EnglishPDF

Mechanical and Corrosion Properties of AA2024 Aluminum Alloy with Multimodal Gradient Structures

Zhenwei Xie, Liexing Zhou

Enhancing the strength and toughness of aluminum alloys using microstructure optimization remains a key challenge. In this study, an AA2024 aluminum a

2025EnglishPDF