Hybrid Composite Precast Systems: Numerical Investigation to Construction: Woodhead Publishing Series in Civil and Structural Engineering
Autor Won-Kee Hongen Limba Engleză Paperback – 2 dec 2019
Readers are given a broad introduction to existing technologies that are then combined with a description of the construction methods the author proposes. This book will help the end users become familiar with the existing types of structural forms, not just the "Lego" type frame system that the author proposes.
- Discusses how traditional construction methods can be replaced by innovative hybrid composite precast frame systems that provide rapid and effortless erection capabilities and structural efficiency
- Contains several design examples using non-linear finite element analysis completed with Abaqus based-software
- Contains new milestone inventions in construction that offer structural engineering solutions using a novel, modularized hybrid frame system
- Provides information on structural testing that verifies the accuracy of the structural design
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Specificații
ISBN-13: 9780081027219
ISBN-10: 0081027214
Pagini: 493
Dimensiuni: 216 x 276 mm
Greutate: 1.13 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Civil and Structural Engineering
ISBN-10: 0081027214
Pagini: 493
Dimensiuni: 216 x 276 mm
Greutate: 1.13 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Civil and Structural Engineering
Public țintă
civil and structural engineers,materials scientists, architects and structural designers, PhD students working in materials, structural design and constructionCuprins
1. Conventional precast assembly
2. Experimental investigation of precast concrete and precast steel-concrete composite frames having novel mechanical joints
3. The investigation of the structural performance of the hybrid composite precast frames with mechanical joints based on nonlinear finite element analysis
4. L-type hybrid precast frames with mechanical joints using laminated metal plates
5. Novel erection of precast frames using interlocking mechanical couplers
6. Novel precast frame for facile construction of low-rise buildings using mechanically assembled joint to replace conventional monolithic concrete frame
7. Novel pipe rack frames with rigid joints
8. Application to modular construction
9. Precast steel-concrete composite structural frames with monolithic joints
10. Artificial-intelligence-based design of ductile precast concrete beams
2. Experimental investigation of precast concrete and precast steel-concrete composite frames having novel mechanical joints
3. The investigation of the structural performance of the hybrid composite precast frames with mechanical joints based on nonlinear finite element analysis
4. L-type hybrid precast frames with mechanical joints using laminated metal plates
5. Novel erection of precast frames using interlocking mechanical couplers
6. Novel precast frame for facile construction of low-rise buildings using mechanically assembled joint to replace conventional monolithic concrete frame
7. Novel pipe rack frames with rigid joints
8. Application to modular construction
9. Precast steel-concrete composite structural frames with monolithic joints
10. Artificial-intelligence-based design of ductile precast concrete beams