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Stone Cladding Engineering

Autor Rui de Sousa Camposinhos
en Limba Engleză Hardback – 29 aug 2013
This volume presents new methodologies for the design of dimension stone based on the concepts of structural design while preserving the excellence of stonemasonry practice in façade engineering. Straightforward formulae are provided for computing action on cladding, with special emphasis on the effect of seismic forces, including an extensive general methodology applied to non-structural elements. Based on the Load and Resistance Factor Design Format (LRDF), minimum slab thickness formulae are presented that take into consideration stress concentrations analysis based on the Finite Element Method (FEM) for the most commonly used modern anchorage systems. Calculation examples allow designers to solve several anchorage engineering problems in a detailed and objective manner, underlining the key parameters. The design of the anchorage metal parts, either in stainless steel or aluminum, is also presented.
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Specificații

ISBN-13: 9789400768475
ISBN-10: 9400768478
Pagini: 184
Ilustrații: IX, 171 p.
Dimensiuni: 155 x 235 x 16 mm
Greutate: 0.45 kg
Ediția:2014
Editura: SPRINGER NETHERLANDS
Colecția Springer
Locul publicării:Dordrecht, Netherlands

Public țintă

Research

Cuprins

Preface.- 1 Cladding with Stone: Introduction.- 2 Natural Stone Characterization.- 3 Wall and Cladding Systems.- 4 Limit States Design.- 5 Actions and Stone Strength.- 6 Dowel Anchorage.- 7 Undercut Anchorage.- 8 Kerf Anchorage.- 9 Stainless Steel and Aluminium Anchors.- Index.

Textul de pe ultima copertă

This volume presents new methodologies for the design of dimension stone based on the concepts of structural design while preserving the excellence of stonemasonry practice in façade engineering. Straightforward formulae are provided for computing action on cladding, with special emphasis on the effect of seismic forces, including an extensive general methodology applied to non-structural elements. Based on the Load and Resistance Factor Design Format (LRDF), minimum slab thickness formulae are presented that take into consideration stress concentrations analysis based on the Finite Element Method (FEM) for the most commonly used modern anchorage systems. Calculation examples allow designers to solve several anchorage engineering problems in a detailed and objective manner, underlining the key parameters. The design of the anchorage metal parts, either in stainless steel or aluminum, is also presented.

Caracteristici

Formula and tables for the evaluation of strength capacity of dowel, undercut and kerf anchorage systems are given Provides an introduction to prestressed natural Stone panels Includes practical Calculation Examples