Synchronized Full-Field Strain and Temperature Measurements of Commercially Pure Titanium under Tension at Elevated Temperatures and High Strain Rates

被引:7
|
作者
Soares, Guilherme Correa [1 ]
Hokka, Mikko [1 ]
机构
[1] Tampere Univ, Engn Mat Sci Mat Sci & Environm Engn, Impact Multiscale Mech Res Grp, POB 589, Tampere 33014, Finland
关键词
high temperature; digital image correlation; infrared thermography; full-field measurements; commercially pure titanium; high strain rate; split Hopkinson pressure bar; PHASE-TRANSFORMATION; SHEAR BANDS; BEHAVIOR; DEFORMATION; TI-6AL-4V; ALLOY; HEAT; DISSIPATION; COMPRESSION; EVOLUTION;
D O I
10.3390/met12010025
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Understanding the mechanical behavior of materials at extreme conditions, such as high temperatures, high strain rates, and very large strains, is fundamental for applications where these conditions are possible. Although tensile testing has been used to investigate material behavior under high strain rates and elevated temperatures, it disregards the occurrence of localized strains and increasing temperatures during deformation. The objective of this work is to combine synchronized full-field techniques and an electrical resistive heating system to investigate the thermomechanical behavior of commercially pure titanium under tensile loading at high temperatures and high strain rates. An electrical resistive heating system was used to heat dog-bone samples up to 1120 degrees C, which were then tested with a tensile Split Hopkinson Pressure Bar at strain rates up to 1600 s(-1). These tests were monitored by two high-speed optical cameras and an infrared camera to acquire synchronized full-field strain and temperature data. The displacement and strain noise floor, and the stereo reconstruction error increased with temperature, while the temperature noise floor decreased at elevated temperatures. A substantial decrease in mechanical strength and an increase in ductility were observed with an increase in testing temperature. The localized strains during necking were much higher at elevated temperatures, while adiabatic heating was much lower or non-existent at elevated temperatures.
引用
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页数:27
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