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Titlebook: Advances in Mechanics of Time-Dependent Materials; Holm Altenbach,Julius Kaplunov,Masayuki Nakada Book 2023 The Editor(s) (if applicable)

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Book 2023near and nonlinear mechanical behavior of viscoelastic materials and their composites, taking into consideration large deformations, low, moderate and large strain rates, as well as failure and fracture phenomena. The contributions are inspired by advanced applications in modern technologies, such a
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1869-8433 ing into consideration large deformations, low, moderate and large strain rates, as well as failure and fracture phenomena. The contributions are inspired by advanced applications in modern technologies, such as injection molding and extrusion. .978-3-031-22403-4978-3-031-22401-0Series ISSN 1869-8433 Series E-ISSN 1869-8441
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Laura Vietze,Mischa Bonn,Maksim Grechkodiscrete relaxation times for fitting experimental data. The associated discrete retardation spectrum and Prony series for the creep compliance is then obtained directly from the discrete relaxation spectrum.
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Michael S. Feld,Vladilen S. Letokhovally. Also in this chapter, an efficient method of finite element analysis with periodic boundary conditions and a method to predict tensile strength of randomly oriented short fiber-reinforced plastics.
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https://doi.org/10.1007/978-3-662-05273-0ear moduli. For different frequencies, we determine viscoelastic properties of the material and their sensitivity to changes in temperature. The obtained results can provide information on how fibers’ concentration and properties can affect effective characteristics and strain or stress relaxation patterns.
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https://doi.org/10.1007/978-981-19-4823-7ions. The predicted values were compared with experimentally obtained data measured from resin-impregnated CFRP strands as specimens of unidirectional CFRP. Finally, the statistical long-term tensile creep and fatigue strengths are discussed in terms of the role of the matrix resin viscoelasticity.
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https://doi.org/10.1007/978-3-662-05273-0 of how cellular responses correlate to tissue-level characteristics and how some diseases, such as cancer, grow in the body. This study focuses on modeling the viscoelastic mechanical properties of single suspended human mesenchymal stem cells (hMSCs). Mechanical properties of hMSC cells are partic
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