Hybrid Composite Precast Systems : Numerical Investigation to Construction 1st edition by Won-Kee Hong – Ebook PDF Instant Download/DeliveryISBN: 0081027419, 9780081027417
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ISBN-10 : 0081027419
ISBN-13 : 9780081027417
Author: Won-Kee Hong
Hybrid Composite Precast Systems: Numerical Investigation to Construction focuses on the design and construction of novel composite precast frame systems that permit almost effortless erection and structural efficiency. The precast frame systems discussed in the book are similar to that of steel frames, but offer similar savings to concrete frames. The design of connections and detailed analysis of their structural behavior is discussed in detail. Fundamentals with regards to the post yield behavior of concrete and metal are also presented to illustrate how these two different materials are integrated together to remove individual material drawbacks.
Hybrid Composite Precast Systems : Numerical Investigation to Construction 1st Table of contents:
Chapter 1: Conventional precast assembly
Abstract
1.1 Review of conventional precast concrete structures
1.2 Conventional precast connection
1.3 Suggestion for the improvement of the precast joints
Chapter 2: Experimental investigation of the precast concrete and the precast steel-concrete hybrid composite frames having novel mechanical joints
Abstract
2.1 Conventional bolted endplates used for steel frames
2.2 Description of the mechanical joints
2.3 Design of the mechanical joints
2.4 Verification of the structural performance of the joint via the numerical investigation
2.5 Experimental investigation of the structural performance of the column-to-column connections
2.6 Experimental investigation of the structural performance of the beam-to-column connections
2.7 Test assembly
Chapter 3: The investigation of the structural performance of the hybrid composite precast frames with mechanical joints based on nonlinear finite element analysis
Abstract
3.1 Numerical investigation of the structural performance
3.2 Nonlinear finite element analysis of hybrid composite precast columns spliced by a mechanical metal plate
3.3 Nonlinear finite element analysis of the beam-to-column connections with mechanical metal plates for concrete/steel-concrete composite frame
Chapter 4: L-type hybrid precast frames with mechanical joints using laminated metal plates
Abstract
4.1 Experimental investigation of the L-type hybrid precast frames using mechanical joints with laminated metal plates
4.2 Nonlinear finite element analyses of the L-type columns with mechanical joints
4.3 Design verification of the beam-column frames
4.4 Test erection
Chapter 5: Novel erection of the precast frames using interlocking mechanical couplers
Abstract
5.1 Significance of the precast erection using interlocking mechanical joints
5.2 Assembly of the full-scale precast frame by interlocking couplers
5.3 Numerical investigation
Chapter 6: Novel precast frame for facile construction of low-rise buildings using mechanically assembled joint to replace conventional monolithic concrete frame
Abstract
6.1 Introduction
6.2 Design of the building with the mechanical joints
6.3 Design verification
6.4 Results and conclusions
Chapter 7: Novel pipe rack frames with rigid joints
Abstract
7.1 Overview of the pipe rack frames introduced in this chapter
7.2 Novel pipe rack frames with rigid joints
7.3 Case study
7.4 Conclusions
Chapter 8: Application to the modular construction
Abstract
8.1 Overview of the modular construction for low-rise buildings
8.2 Conventional modular construction
8.3 Implementation of the mechanical joints in precast connections for modular construction
8.4 Lateral stability of the hybrid composite precast frames with rigid mechanical joints
8.5 Conclusions
Chapter 9: Precast steel-concrete hybrid composite structural frames with monolithic joints
Abstract
9.1 Why the precast steel-concrete hybrid composite with monolithic joints?
9.2 Structural behavior of the hybrid composite beams with monolithic joints
9.3 Analytical prediction of the nonlinear structural behavior of the steel-concrete hybrid composite structures
9.4 Assembly of the steel beam-column joints with a skewed beam section
9.5 Application of the hybrid composite precast frames with the beam depth reduction capability to high-rise buildings
9.6 Contributions
Chapter 10: Artificial-intelligence-based design of the ductile precast concrete beams
Abstract
10.1 Concept and structure of the artificial neural networks
10.2 Multilayer perception
10.3 Artificial neural network-based design of the ductile precast concrete beams
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