A Constitutive Model for Commercially Pure Titanium
- 1 April 1995
- journal article
- Published by ASME International in Journal of Engineering Materials and Technology
- Vol. 117 (2) , 139-144
- https://doi.org/10.1115/1.2804520
Abstract
Flow stress data for CP titanium were obtained using the torsion test in the temperature range from ambient to 750°C and at shear strain-rates in the range from 0.192 to 122.0 s−1. The temperature rise because of deformation heating was calculated numerically. It was found that the temperature rise is insignificant for strain rates below 0.192 s−1 where the deformation conditions are essentially isothermal while for strain rates above 27.0 s−1 deformation conditions are adiabatic. Large temperature gradients exist in the longitudinal direction of the specimen with the maximum temperature occurring at the middle of the gage length. The temperature gradients in the radial direction are much smaller and can be neglected for most practical applications. Isothermal shear stress-shear strain curves for CP titanium were obtained from the experimental torsion test data by accounting for the temperature rise produced by deformation. It was found that the data exhibits a good fit to a Johnson-Cook relationship with exponential thermal softening. The work emphasizes the importance of the need to consider the role of deformation heating when interpreting data on the effect of strain rate and temperature on the mechanical properties of materials.Keywords
This publication has 11 references indexed in Scilit:
- An Analysis of the Thin-Walled Torsion SpecimenJournal of Engineering Materials and Technology, 1992
- A numerical analysis for the formation of adiabatic shear bands including void nucleation and growthInternational Journal of Impact Engineering, 1989
- Hot Workability of Metals and AlloysJOM, 1987
- Response of Various Metals to Large Torsional Strains Over a Large Range of Strain Rates—Part 2: Less Ductile MetalsJournal of Engineering Materials and Technology, 1983
- Flow curves and deformation of materials at different temperatures and strain ratesJournal of Materials Processing Technology, 1982
- Dynamic Analysis of a Torsion Test Specimen Including Heat Conduction and Plastic FlowJournal of Engineering Materials and Technology, 1981
- FAST FRACTURE OF SOME USUAL METALS AT COMBINED HIGH STRAIN AND HIGH STRAIN RATEPublished by Elsevier ,1980
- Effect of strain-rate and temperature on the resistance to torsional deformation of several aluminum alloysInternational Journal of Mechanical Sciences, 1972
- The latent energy remaining in a metal after cold workingProceedings of the Royal Society of London. Series A, Containing Papers of a Mathematical and Physical Character, 1934
- The heat developed during plastic extension of metalsProceedings of the Royal Society of London. Series A, Containing Papers of a Mathematical and Physical Character, 1925