The feasibility of generating precise thermomechanical deformation data to support constitutive model development was investigated. Here, the requirement is for experimental data that is free from anomalies caused by less than ideal equipment and procedures. A series of exploratory tests conducted on Hastelloy X showed that generally accepted techniques for strain controlled tests were lacking in at least three areas. Specifically, problems were encountered with specimen stability, thermal strain compensation, and temperature/mechanical strain phasing. The source of these difficulties was identified and improved thermomechanical testing techniques to correct them were developed. These goals were achieved by developing improved procedures fo...
During forging and machining manufacturing processes, the material is subject to large strains at hi...
Strain measurement is a major challenge in tensile tests performed in a mushy state. While non-cont...
Hot tensile testing is useful to understand the material behavior at elevated temperatures. Hence it...
A number of viscoplastic constitutive models were developed to describe deformation behavior under c...
An investigation of thermomechanical testing and deformation behavior of tubular specimens under tor...
Thermomechanical service conditions for high-temperature levels, thermal transients, and mechanical ...
Thermal analysis of mechanical behavior of material models with temperature dependent propertie
International audienceNumerical models of many forming processes of metals rely on description of rh...
Experimental evidence of thermomechanical history dependence on the cyclic hardening behavior of a r...
The purpose of this thesis was to determine and evaluate an experimental method for accurately measu...
The development of a biaxial extensometer capable of measuring axial, torsion, and diametral strains...
Experimental strain measurements have been made at the highly strained regions on notched plate spec...
The hot deformation behaviors of an aged Inconel 718 superalloy are investigated by isothermal compr...
Abstract Thermally activated shape memory polymers (SMPs) can display modulus changes of approximate...
In order to conduct uniaxial tensile tests for hot stamping applications, tests are normally perform...
During forging and machining manufacturing processes, the material is subject to large strains at hi...
Strain measurement is a major challenge in tensile tests performed in a mushy state. While non-cont...
Hot tensile testing is useful to understand the material behavior at elevated temperatures. Hence it...
A number of viscoplastic constitutive models were developed to describe deformation behavior under c...
An investigation of thermomechanical testing and deformation behavior of tubular specimens under tor...
Thermomechanical service conditions for high-temperature levels, thermal transients, and mechanical ...
Thermal analysis of mechanical behavior of material models with temperature dependent propertie
International audienceNumerical models of many forming processes of metals rely on description of rh...
Experimental evidence of thermomechanical history dependence on the cyclic hardening behavior of a r...
The purpose of this thesis was to determine and evaluate an experimental method for accurately measu...
The development of a biaxial extensometer capable of measuring axial, torsion, and diametral strains...
Experimental strain measurements have been made at the highly strained regions on notched plate spec...
The hot deformation behaviors of an aged Inconel 718 superalloy are investigated by isothermal compr...
Abstract Thermally activated shape memory polymers (SMPs) can display modulus changes of approximate...
In order to conduct uniaxial tensile tests for hot stamping applications, tests are normally perform...
During forging and machining manufacturing processes, the material is subject to large strains at hi...
Strain measurement is a major challenge in tensile tests performed in a mushy state. While non-cont...
Hot tensile testing is useful to understand the material behavior at elevated temperatures. Hence it...