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  • The tensile test is by both construction layout of the tensile testing machine and by the shape of the tested specimen designed for evaluation of single axis tension effects. When we place more than one strain gages around the evaluated specimen cross section boundary, the measured deformation can be mutually different although the load tension is supposed to be equivalent in whole cross section. The tensile specimen in the tensile testing machine is always loaded with tension and also random unknown bending moment. The combination loading of the specimen causes the change of stress parameters of the stress cycle of cross section poinds - partly the schift of the prestress and further the change of the stress amplitude.
  • The tensile test is by both construction layout of the tensile testing machine and by the shape of the tested specimen designed for evaluation of single axis tension effects. When we place more than one strain gages around the evaluated specimen cross section boundary, the measured deformation can be mutually different although the load tension is supposed to be equivalent in whole cross section. The tensile specimen in the tensile testing machine is always loaded with tension and also random unknown bending moment. The combination loading of the specimen causes the change of stress parameters of the stress cycle of cross section poinds - partly the schift of the prestress and further the change of the stress amplitude. (en)
Title
  • Verification of Fatigue Test by Numerical Simulation
  • Verification of Fatigue Test by Numerical Simulation (en)
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  • Verification of Fatigue Test by Numerical Simulation
  • Verification of Fatigue Test by Numerical Simulation (en)
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  • RIV/68407700:21220/10:00174031!RIV11-GA0-21220___
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  • P(GA101/09/1492)
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  • 295529
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  • RIV/68407700:21220/10:00174031
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  • mechanical properties, tensile test, material fatigue (en)
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  • [95D27D05768D]
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  • Nečtiny
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  • Plzeň
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  • Computational Mechanics 2010
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  • Vítek, Karel
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number of pages
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  • Západočeská univerzita v Plzni
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  • 978-80-7043-919-7
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  • 21220
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