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Modeling of Mechanical Properties

The mechanical property models were established in Chapter 5, including effective -modulus (Eq. (5.6)) and coefficient of thermal expansion (Eq. (5.13)). The initial values at room temperature were given in Table 7.1 for the E-modulus and coefficient of thermal expansion. Those mechanical property models and the initial values will be directly inserted into the mechanical respxjnse model. [Pg.137]


P.R. Dawson On modeling of mechanical property changes during flat rolling of aluminum. Int. J. Solids Struct. 23, 947-968 (1987)... [Pg.125]

Theodorou, D.N., Suter, U.W. Atomistic modeling of mechanical properties of polymeric glasses, Macromolecules 19, 139-154 (1986)... [Pg.355]

Therefore, mathematical/numerical modeling of mechanical properties of composite hollow deck boards should take into account those important structural... [Pg.318]

El Huge C, Younes R, Aboura Z, Benzeggah ML, Zoaeter M. Analytical and numerical modeling of mechanical properties of orthogonal 3D CFRP. Compos Sci Technol 2009 69 111-6. [Pg.49]

Theodorou, D. N. and Suter, U. W. (1986) Atomistic modeling of mechanical properties... [Pg.111]

The perspectives to advance require a multidisciplinary approach combining synthetic macromolecular chemistry and microstructural studies, with the study and quantitative modelling of mechanical properties. [Pg.228]

O. Jirsak, D. Lukas, R. Charrat, A two-dimensional model of mechanical properties of textiles, J Text Inst 84 (1993) 1—14. [Pg.204]

Peterlin, A. (1975) Structural model of mechanical properties and failure of crystalline polymer solids with fibrous structure. Int. J. Fracture, 11, 761. [Pg.444]

It appeared that a successful modeling of mechanical properties of crystalline polymers within the elastic range requires a consideration of lamellae thickness and crystallinity but also the lamellae width and length. Varying elastic properties of the amorphous phase are to be considered when the constraints between lamellar crystals change due to differentiated solidification conditions. [Pg.65]

Zhang, L., E. D. Yihnaz, J. Schjpdt-Thomsen, J. C. Rauhe, and R. Pyrz. 2011. MWNT reinforced polyurethane foam Processing, characterization and modelling of mechanical properties. Comp. Sci. Tech. 71 877-884. [Pg.148]

R.G. Veprek, D.M. Parks, A.S. Argon, S. Veprek, Non-linear finite element constitutive modeling of mechanical properties of hard and superhard materials studied by indentation. Mater. Sci. Eng. Struct. Mater. Prop. Microstruct. Process. 422(1-2), 205-217 (2006)... [Pg.657]


See other pages where Modeling of Mechanical Properties is mentioned: [Pg.199]    [Pg.200]    [Pg.202]    [Pg.204]    [Pg.206]    [Pg.208]    [Pg.210]    [Pg.137]    [Pg.151]    [Pg.168]    [Pg.399]    [Pg.410]    [Pg.7420]    [Pg.390]    [Pg.125]    [Pg.144]    [Pg.44]    [Pg.354]    [Pg.1535]    [Pg.87]    [Pg.110]   


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Mechanical models

Mechanical properties modeled

Mechanical properties models

Mechanics Model

Mechanics Modeling

Mechanism model

Mechanisms modeling

Modelling the mechanical properties of textiles

Models of Mechanisms

Properties models

Property modelling

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