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  • The plastic deformation of metals and plastic materials is a complex dynamic process which depends on numerous factors, especially on strain rate and temperatur.The Split Hopkinson Pressure Bar Test (SHPBT) and Taylor Anvil Test (TAT) are used to evaluate the dynamic process of the forming technology. The SHPBT is suitable for higher strain rates, where inertia, propagation of elastic waves, and mechanical resonance play an important role. We can obtain straight an evaluation of the necessary dependence relations: stress strain and strain rate, strain curve.
  • The plastic deformation of metals and plastic materials is a complex dynamic process which depends on numerous factors, especially on strain rate and temperatur.The Split Hopkinson Pressure Bar Test (SHPBT) and Taylor Anvil Test (TAT) are used to evaluate the dynamic process of the forming technology. The SHPBT is suitable for higher strain rates, where inertia, propagation of elastic waves, and mechanical resonance play an important role. We can obtain straight an evaluation of the necessary dependence relations: stress strain and strain rate, strain curve. (en)
Title
  • Hopkinson pressure bar method applied to plastic materials.
  • Hopkinson pressure bar method applied to plastic materials. (en)
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  • Hopkinson pressure bar method applied to plastic materials.
  • Hopkinson pressure bar method applied to plastic materials. (en)
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  • RIV/00216305:26210/06:PU62697!RIV11-MSM-26210___
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  • 478197
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  • RIV/00216305:26210/06:PU62697
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  • Split Hopkinson Pressure Bar test, high strain rate, plastic materials (en)
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  • 14th International Scientific Conference CO-MAT-TECH 2006
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  • Forejt, Milan
  • Šlais, Miroslav
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  • Slovenská technická univerzita v Bratislave. Vydavateľstvo STU
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  • 80-227-2472-6
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  • 26210
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