High Energy Rate Forming
Author:
Publisher
The Japan Society for Technology and Plasticity
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Link
https://www.jstage.jst.go.jp/article/sosei/56/655/56_628/_pdf
Reference55 articles.
1. 1) Applied Mech. Mater., 566(2014).
2. 2) Kabirian, F. et al. :Negative to positive strain rate sensitivity in 5xxx series aluminum alloys: Experiment and constitutive modeling, Int. J. Plasticity, 55(2014),232-246.
3. 3) Knezevic, M. et al. :A strain-rate and temperature dependent constitutive model for BCC metals incorporating non-Schmid effects: Application to tantalum-tungsten alloys, ibid., 62(2014),93-104.
4. 4) Lloyd, J.T. et al. :Simulation of shock wave propagation in single crystal and polycrystalline aluminum, ibid., 60(2014),118-144.
5. 5) Sharma, S. et al. :Evaluation of material properties of SA 516, Gr. 70 using split Hopkinson bar technique under tensile and compressive high strain-rate loading, Procedia Eng., 86(2014),123-130.
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