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Acta Biomaterialia, ISSN 1742-7061, 07/2017, Volume 56, pp. 102 - 109
The meniscus is comprised of circumferentially aligned fibers that resist the tensile forces within the meniscus (i.e., hoop stress) that develop during... 
Electrospinning | Mechanical properties | Meniscus | Scaffold | TENDON | MATERIALS SCIENCE, BIOMATERIALS | COLLAGEN | ENGINEERING, BIOMEDICAL | REPLICATE | TENSILE BEHAVIOR | ORGANIZATION | REPAIR | INTERFIBRILLAR SHEAR-STRESS | MODELS | SCAFFOLDS | TISSUES | Biological products | Tissue engineering | Analysis | electrospinning | scaffold | meniscus | mechanical properties
Journal Article
Journal of Sound and Vibration, ISSN 0022-460X, 07/2017, Volume 399, pp. 285 - 307
Journal Article
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, ISSN 1364-503X, 05/2019, Volume 377, Issue 2144, p. 20180067
A relatively simple molecular-statistical model for rubber elasticity, similar to the Wang-Guth and the Arruda-Boyce (AB) models, is presented. Discussion of... 
strain energy | finite elasticity | MULTIDISCIPLINARY SCIENCES | rubber | inverse Langevin function | molecular chain network | limiting chain extensibility | CONSTITUTIVE MODEL
Journal Article
Journal of Biomechanical Engineering, ISSN 0148-0731, 07/2017, Volume 139, Issue 7, pp. 071006 - 071006-10
Journal Article
Journal Article
Journal of Experimental Biology, ISSN 0022-0949, 2002, Volume 205, Issue 15, pp. 2211 - 2216
Journal Article
Fatigue & Fracture of Engineering Materials & Structures, ISSN 8756-758X, 04/2010, Volume 33, Issue 4, pp. 227 - 237
Journal Article
Applied Soft Computing Journal, ISSN 1568-4946, 10/2019, Volume 83, p. 105604
Journal Article
International Journal of Non-Linear Mechanics, ISSN 0020-7462, 12/2018, Volume 107, pp. 16 - 33
The typical approach to hyperelasticity is to assume an analytical expression of the stored energy function in terms of invariants and some constants, named... 
Data-driven hyperelasticity | Soft materials | Orthotropy | MECHANICS | MODELS | EXTENSION | WYPIWYG HYPERELASTICITY | STRAIN-ENERGY | Algorithms | Specific gravity | Anisotropy | Analysis
Journal Article
Fatigue & Fracture of Engineering Materials & Structures, ISSN 8756-758X, 05/2015, Volume 38, Issue 5, pp. 597 - 609
Journal Article
Journal of Elasticity, ISSN 0374-3535, 4/2011, Volume 103, Issue 2, pp. 173 - 187
A three-parameter strain energy function is developed to model the nonlinearly elastic response of rubber-like materials. The development of the model is... 
Strain energy | 74820 | Elastomer | Mechanics | Automotive Engineering | Finite elasticity | Rubber | Physics | Constitutive equations | 74805 | MECHANICS | ENGINEERING, MULTIDISCIPLINARY | MATERIALS SCIENCE, MULTIDISCIPLINARY | DEFORMATIONS | Mechanical engineering | Analysis
Journal Article
Structural Engineering and Mechanics, ISSN 1225-4568, 08/2018, Volume 67, Issue 4, pp. 327 - 336
In this study, an efficient damage index is proposed to identify multiple damage cases in structural systems using the concepts of frequency response function... 
Damage identification | Strain energy | Damage index | Frequency response function | ENGINEERING, CIVIL | strain energy | damage index | frequency response function | damage identification | IDENTIFICATION | ENGINEERING, MECHANICAL
Journal Article
Journal of Food Engineering, ISSN 0260-8774, 09/2013, Volume 118, Issue 2, pp. 178 - 187
The article presents a mechanical model to characterize apple and potato by considering tissues as a lattice of hexagonal cellular structure under an external... 
Stress–strain | Tissue | Strain energy function | Tension | Damage | Stress-strain | FOOD SCIENCE & TECHNOLOGY | STRUCTURAL MODEL | HYPERELASTIC MATERIALS | CONSTITUTIVE MODEL | ENGINEERING, CHEMICAL | DENSITY-FUNCTION | MECHANICS MODEL | VEGETATIVE TISSUE | RUBBER-LIKE MATERIALS | FINITE-ELEMENT-ANALYSIS | BIOLOGICAL TISSUES | Apples | Lattices | Regression | Tables | Constants | Mathematical models | Foods | Strain
Journal Article