Additive Friction Stir Deposition 1st edition by Hang Z. Yu – Ebook PDF Instant Download/DeliveryISBN: 0128243954, 9780128243954
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ISBN-10 : 0128243954
ISBN-13 : 9780128243954
Author: Hang Z. Yu
Additive Friction Stir Deposition is a comprehensive summary of the state-of-the-art understanding on this emerging solid-state additive manufacturing technology. Sections cover additive friction stir deposition, encompassing advances in processing science, metallurgical science and innovative applications. The book presents a clear description of underlying physical phenomena, shows how the process determines the printing quality, covers resultant microstructure and properties in the as-printed state, highlights its key capabilities and limitations, and explores niche applications in repair, cladding and multi-material 3D printing.
Additive Friction Stir Deposition 1st Table of contents:
Chapter 1. Introduction
Abstract
1.1 Additive manufacturing for metals
1.2 Solid-state metal additive manufacturing
1.3 Additive friction stir deposition
1.4 Organization of this book
References
Chapter 2. Process fundamentals
Abstract
2.1 Elements of friction theory
2.2 Fundamentals of heat and mass transfer
2.3 Basic principle of additive friction stir deposition
2.4 Establishment of an integrated in situ monitoring system: real-time measurement of temperature, force, torque, and material flow
2.5 Temperature evolution in the deposited material and substrate
2.6 Force and torque evolution
2.7 In situ visualization of material rotation and flow
2.8 Correlation of the material flow behavior to temperature, force, and torque evolution
2.9 Summary
References
Chapter 3. Material flow phenomena
Abstract
3.1 Plasticity and finite deformation theory
3.2 Elements of fluid mechanics
3.3 Previous experimental studies on material flow in friction stir welding
3.4 Design of tracer experiments for material flow investigation in additive friction stir deposition
3.5 Flow path of the center volume of the feed material
3.6 Flow path of the edge volume of the feed material
3.7 Material deformation and flow at the interface
3.8 Summary
References
Chapter 4. Dynamic microstructure evolution
Abstract
4.1 Elements of microstructure evolution
4.2 Dynamic recrystallization mechanisms
4.3 Thermomechanical history in additive friction stir deposition
4.4 Characteristics of the resulting microstructures by additive friction stir deposition
4.5 Dynamic microstructure evolution along the flow path of an Al–Cu alloy
4.6 Processing-microstructure linkages of Al-Mg-Si and Cu
4.7 Dynamic phase evolution
4.8 Summary
References
Chapter 5. Effects of tool geometry
Abstract
5.1 A survey of tool effects in friction stir welding
5.2 Tool types and geometries for additive friction stir deposition
5.3 Effects of tool geometry on interface morphology
5.4 Effects of tool geometry on microstructure
5.5 Summary
References
Chapter 6. Beyond metals and alloys: additive friction stir deposition of metal matrix composites
Abstract
6.1 Introduction to metal matrix composites
6.2 Current processing approaches to metal matrix composites
6.3 Additive friction stir deposition of metal matrix composites
6.4 Examples
6.5 Limitations of this printing approach
6.6 Summary
References
Chapter 7. Mechanical properties of the printed materials
Abstract
7.1 Elements of the mechanical behavior of materials
7.2 Tensile properties of the printed metals and alloys
7.3 Fracture behavior
7.4 Fatigue behavior
7.5 Mechanical properties of bilayer structures
7.6 Mechanical properties of printed metal matrix composites
7.7 Summary
References
Chapter 8. Niche applications
Abstract
8.1 Structural repair
8.2 Selective-area cladding on thin automotive sheet metals
8.3 Recycling
8.4 Large-scale additive manufacturing
8.5 Printing and repair under harsh conditions
8.6 Summary
References
Chapter 9. Future perspectives
Abstract
9.1 In-depth understanding of the underlying physics
9.2 Material innovation
9.3 Incorporation of artificial intelligence
9.4 Summary
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Tags: Additive Friction, Stir Deposition, Hang Yu