Flow Behavior of 1.4841 Steel in Hot Compression Process

Journal Title: Jurnal Kejuruteraan - Year 2018, Vol 30, Issue 1

Abstract

Hot compression experiments using a dilatometer were carried out in order to study the effects of hot compression parameters on the flow behaviour of 1.4841 steel. Specifically, the effects of the strain rate and the deformation temperature within a temperature range of 950 – 1100 oC, strain rate of 0.001-0.5 s-1and strain value of 0.5 were studied among all the effective hot compression parameters. The results were shown in the actual strain–stress curve. Embedded in the work hardening, recrystallization and recovery theories, the hot compression mechanism was determined by focusing on the flow behaviour patterns of this steel. The sensitivity to strain rate and temperature, activation energy and the Zener – Holloman parameter were also investigated. Critical strains (εc) of 0.2 and 0.35 were calculated for strain rates of 0.001 and 0.01 s-1, respectively. The findings showed that the recrystallization and flow stress fell when a deformation was imposed at a low strain rate and high temperature. A further increase in the strain rate and a decrease in the temperature resulted in a dynamic recovery mechanism as the dominant process. With an increase in the temperature, the strain rate sensitivity increased, and the rise in the strain rate resulted in a decrease in the temperature sensitivity. The temperature sensitivity (ηa) for various strain rates was estimated more precisely to be within the range of 5.3 to 11.2. The QHW was measured and the value was 459.186 kJ/mol.

Authors and Affiliations

Javad Rajabi

Keywords

Related Articles

Effect of Chemical Treatments and Coupling Agents on the Properties of Unidirectional Jute Fiber Reinforced Polypropylene Composite

Due to different chemical nature of jute and polypropylene, their blended composite materials often show failures behavior when applied in load bearing purposes. The aim of the research is to improve the properties of un...

Pembentukan Mikrostruktur Berbentuk Sfera dalam Keadaan Separa Pepejal Aloi Aluminium Al-4.8Si-2.8Cu-0.5Mg (Formation of Spheroidal Microstructure in Semi-solid State of Al-4.8Si-2.8Cu-0.5Mg Aluminium Alloy)

Hasil penyelidikan mengenai pembentukan mikrostruktur berbentuk sfera dalam keadaan separa pepejal aloi aluminium Al-4.8Si-2.8Cu-0.5Mg dibentangkan dalam penulisan ini. Bahan awal aloi aluminium tersebut dihasilkan melal...

Tensile Properties and Strain Response of Cu-Al Bi-Metal Tube

Recent high price of copper in global market forced the heat, ventilation, and air condition (HVAC) industry players to find alternative materials with relatively lower market price compared to copper such as aluminium f...

A Novel Prototype and Simulation Model for Real Time Solid Waste Bin Monitoring System

This research deals with an exclusive solution to monitor the solid waste bin condition on real time. The system architecture is designed using wireless sensor networks. A set of carefully chosen sensors are used to meas...

Evaluation on the Stability of Slope at Faculty of Engineering and Built Environment (FKAB) using Slope/w

Slope stability topics have become one of the main issues due to the nature of topography and weather conditions in Malaysia. This study examines the stability of the slope at the Faculty of Engineering and Built Environ...

Download PDF file
  • EP ID EP455553
  • DOI 10.17576/jkukm-2018-30(1)-03
  • Views 74
  • Downloads 0

How To Cite

Javad Rajabi (2018). Flow Behavior of 1.4841 Steel in Hot Compression Process. Jurnal Kejuruteraan, 30(1), 17-22. https://europub.co.uk/articles/-A-455553