Selected Papers from Experimental Stress Analysis 2020

This Special Issue consists of selected papers from the Experimental Stress Analysis 2020 conference. Experimental Stress Analysis 2020 was organized with the support of the Czech Society for Mechanics, Expert Group of Experimental Mechanics, and was, for this particular year, held online in 19-22 O...

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Other Authors: Kocich, Radim (Editor), Kunčická, Lenka (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel MDPI - Multidisciplinary Digital Publishing Institute 2022
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520 |a This Special Issue consists of selected papers from the Experimental Stress Analysis 2020 conference. Experimental Stress Analysis 2020 was organized with the support of the Czech Society for Mechanics, Expert Group of Experimental Mechanics, and was, for this particular year, held online in 19-22 October 2020. The objectives of the conference included identification of current situation, sharing professional experience and knowledge, discussing new theoretical and practical findings, and the establishment and strengthening of relationships between universities, companies, and scientists from the field of experimental mechanics in mechanical and civil engineering. The topics of the conference were focused on experimental research on materials and structures subjected to mechanical, thermal-mechanical, and dynamic loading, including damage, fatigue, and fracture analyses. The selected papers deal with top-level contemporary phenomena, such as modern durable materials, numerical modeling and simulations, and innovative non-destructive materials' testing. 
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650 7 |a Technology: general issues  |2 bicssc 
650 7 |a History of engineering & technology  |2 bicssc 
653 |a residual stresses 
653 |a neutron diffraction 
653 |a three axis setting 
653 |a high resolution 
653 |a bent crystal monochromator 
653 |a bent crystal analyzer 
653 |a stainless steel 316L 
653 |a additive manufacturing 
653 |a multiaxial loading 
653 |a plasticity 
653 |a digital image correlation method 
653 |a hill yield criterion 
653 |a isotropic hardening 
653 |a finite element method (FEM) 
653 |a straightening process 
653 |a three-point bending 
653 |a FEM 
653 |a control strategy 
653 |a billet straightening 
653 |a multiaxial fatigue 
653 |a high-cycle fatigue 
653 |a multiaxial fatigue experiments 
653 |a S-N curve approximation 
653 |a laser welding 
653 |a pressure vessel steel 
653 |a microstructure 
653 |a X-ray and neutron diffraction 
653 |a high-cycle fatigue tests 
653 |a wearable 
653 |a flexible 
653 |a structure 
653 |a stiffness 
653 |a biomedical 
653 |a mechanics 
653 |a simulation 
653 |a pattern 
653 |a 3D print 
653 |a PA12 
653 |a tram 
653 |a pedestrian 
653 |a crash 
653 |a windshield model 
653 |a HIC 
653 |a hole-drilling 
653 |a PhotoStress 
653 |a digital image correlation 
653 |a experimental analysis 
653 |a finite element analysis 
653 |a composite 
653 |a thermoplastic 
653 |a interlaminar strength 
653 |a polyphenylensulfid 
653 |a polyetheretherketone 
653 |a polyaryletherketone 
653 |a curved beam 
653 |a NDE 
653 |a infrared thermography 
653 |a Infrared Nondestructive Testing 
653 |a CFRP 
653 |a Anand material model 
653 |a material parameters 
653 |a ABS-M30 
653 |a indentation test 
653 |a genetic algorithm 
653 |a acoustic emission 
653 |a CFRP composite tube 
653 |a unsupervised learning approach 
653 |a failure mechanism 
653 |a n/a 
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