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10% KEDVEZMÉNY?
- Kiadói listaár GBP 170.00
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76 755 Ft (73 100 Ft + 5% áfa)
Az ár azért becsült, mert a rendelés pillanatában nem lehet pontosan tudni, hogy a beérkezéskor milyen lesz a forint árfolyama az adott termék eredeti devizájához képest. Ha a forint romlana, kissé többet, ha javulna, kissé kevesebbet kell majd fizetnie.
- Kedvezmény(ek) 10% (cc. 7 676 Ft off)
- Kedvezményes ár 69 080 Ft (65 790 Ft + 5% áfa)
69 080 Ft
Beszerezhetőség
Még nem jelent meg, de rendelhető. A megjelenéstől számított néhány héten belül megérkezik.
Why don't you give exact delivery time?
A beszerzés időigényét az eddigi tapasztalatokra alapozva adjuk meg. Azért becsült, mert a terméket külföldről hozzuk be, így a kiadó kiszolgálásának pillanatnyi gyorsaságától is függ. A megadottnál gyorsabb és lassabb szállítás is elképzelhető, de mindent megteszünk, hogy Ön a lehető leghamarabb jusson hozzá a termékhez.
A termék adatai:
- Kiadás sorszáma 1
- Kiadó CRC Press
- Megjelenés dátuma 2026. szeptember 29.
- ISBN 9781032706863
- Kötéstípus Keménykötés
- Terjedelem528 oldal
- Méret 254x178 mm
- Súly 453 g
- Nyelv angol
- Illusztrációk 26 Illustrations, black & white; 90 Illustrations, color; 1 Halftones, black & white; 24 Halftones, color; 25 Line drawings, black & white; 66 Line drawings, color; 59 Tables, black & white 0
Kategóriák
Rövid leírás:
15 step-by-step application examples in fibre-polymer composite design for civil engineering structures illustrate the practical use of the Technical Specification. 11 are highly detailed, focusing at the member or connection level; and the other 4 are more general, focusing at the structure level. For designers and also graduate students.
TöbbHosszú leírás:
The European Technical Specification CEN/TS 19101: 2022, Design of fibre-polymer composite structures, published in November 2022, constitutes a milestone for the use of fibre-polymer composites in civil engineering structures. These 15 worked examples provide designers with step-by-step application examples that illustrate the practical use of the Technical Specification. Eleven examples are highly detailed, focusing at the member or connection level; and the other four are more general, focusing at the structure level.
This book provides a powerful and enlightening resource for designers and graduate students.
TöbbTartalomjegyzék:
"Type A" Examples. A1. ULS verifications of a balanced symmetrical laminate subjected to in-plane and out-plane loading. A2. ULS verifications of a balanced symmetrical laminate subjected to in-plane and out-plane loading - preliminary design. A3. ULS verifications of a simply supported fibre-polymer composite profile with double symmetric H-cross-section subjected to axial compression. A4. ULS and SLS verifications of a simply supported fibre-polymer composite profile with double symmetric I-cross-section subjected to a uniformly distributed transverse load. A5. ULS and SLS verifications of a simply supported composite sandwich beam with complex balsa core. A6. ULS and SLS verifications of a simply supported fibre-polymer composite homogeneous-core sandwich panel subjected to a uniformly distributed transverse load. A7. ULS and SLS verifications of a simply supported web-core sandwich panel subjected to a uniformly distributed transverse load. A8. ULS verification of a double-lap adhesive joint with pultruded adherends: Stress-based approach. A9. ULS verification of a double-lap adhesive joint with pultruded adherends: Fracture mechanics’ approach. A10. ULS verifications of simply supported fibre-polymer composite profiles with double symmetric ‘H’ and ‘I’ cross-section subjected to axial compression. A11. ULS & SLS verifications of a simply supported fibre-polymer composite profile with double symmetric rectangular hollow (RHS) cross-section subjected to a uniformly distributed transverse load. "Type B" Examples. B1. Ultimate Limit State (ULS) verifications for bolted connections of pultruded profiles of a truss bridge with a span length of 13,50 m. B2. ULS verifications of a glass fibre-polymer composite footbridge. B3. Design of a vacuum infused composite web-core sandwich road bridge. B4. ULS verification of a pultruded fibre-polymer composite spatial frame structure.
Több