Concrete at High Temperatures - Material Properties and Mathematical Models.pdf

Concrete at High Temperatures - Material Properties and Mathematical Models

Zdenek-P Bazant

Date de parution

Mathematical Modeling of Creep and Shrinkage of Concrete (editor, wrote two chapters), J. Wiley, Chichester; Z.P. Bažant, T. Belytschko and T.-P. Chang (1984). "Continuum theory for strain softening." ASCE Journal of Engineering Mechanics, 110 (1984): 1666-1692; Z.P. Bažant (1976). "Instability, ductility, and size effect in strain softening Some Physical Properties of Concrete at High …

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9780582086265 ISBN
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Concrete at High Temperatures - Material Properties and Mathematical Models.pdf

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Sofya Voigtuh

Concrete at High Temperatures: Material Properties and Math-ematical Models, Longman (Addison-Wesley), London (monograph and reference volume, 412 + xii pp.) (2nd printing Pearson Education, Edinburgh, 2002). B4. Baˇzant, Z.P., and Planas, J. (1998). Fracture and Size Effect in Concrete and Other Quasibrittle Materi-als. CRC Press, Boca Raton PUBLICATIONS OF ZDENEK P. BAˇ ZANTˇ

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Mattio Müllers

Structural concrete became an essential construction material during the second half of the 19th century. Reportedly, one of several reasons for this was its good behavior when exposed to the high temperatures that develop in accidental fire situations, especially when compared to other construction materials of that age. Concrete arguably exhibits better fire performance than structural steel Physical and Thermal Properties of Concrete Subjected to ...

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Noels Schulzen

What physical phenomena can be neglected when …

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Jason Leghmann

Concrete at High Temperatures Material Properties and Mathematical Models Provides a systematic review of the properties and mathematical modelling of Concrete at high temperatures. Part 1 deals with material properties and behaviour in a descriptive, non-mathematical manner, whilst part 2 requires a greater knowledge of mechanics, mathematics and physics. 英文书摘要. 查看全文信息

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Jessica Kolhmann

Mathematical Modeling of Creep and Shrinkage of Concrete (editor, wrote two chapters), J. Wiley, Chichester; Z.P. Bažant, T. Belytschko and T.-P. Chang (1984). "Continuum theory for strain softening." ASCE Journal of Engineering Mechanics, 110 (1984): 1666-1692; Z.P. Bažant (1976). "Instability, ductility, and size effect in strain softening Some Physical Properties of Concrete at High …