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010 _a 2025008714
020 _a9781394312696
_qepub
020 _a9781394312689
_qhardback
020 _a9781394312702
_qadobe pdf
035 _a24164046
035 _a(DLC)24123482
040 _aDLC
_beng
_cDLC
_erda
041 _aeng
042 _apcc
050 0 0 _aTA418.9.P6
082 0 0 _a620.1/16
_223/eng/20260601
100 1 _aAli, Musaddiq Al
_eauthor
_4aut
_4http://id.loc.gov/vocabulary/relators/aut
_0http://id.loc.gov/authorities/names/no2025034610
245 1 0 _aAdvanced techniques in porous structure design for additive manufacturing /
_cMusaddiq Al Ali.
250 _aFirst edition.
263 _a2506
264 1 _aHoboken, New Jersey :
_bWiley,
_c[2025]
264 4 _c©2026
300 _a1 online resource
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bc
_2rdamedia
338 _aonline resource
_bcr
_2rdacarrier
490 1 _aAdditive manufacturing skills in practice
500 _aIncludes index.
505 0 _gTable of Contents Preface ix Chapter 1 Introduction to Porous Structures and Additive Manufacturing 1 1.1 Introduction 1 1.2 Why Designing Porous Structures 6 1.3 Types of Cells 8 1.4 Challenges in the Design and Fabrication of Porous Structures 10 References 12 Chapter 2 Fundamentals of Additive Manufacturing 15 2.1 Introduction 15 2.2 Metallic Materials 16 2.3 Metallic Additive Manufacturing 20 2.4 Plastics 24 2.5 Plastic 3D Printing 26 2.6 Ceramics 28 2.7 Ceramic 3D Printing 29 2.8 The Production Cycle of 3D Printing 31 2.9 Challenges Facing Additive Manufacturing 34 2.10 Emerging Techniques in Additive Manufacturing 38 References 41 Chapter 3 Mathematical Modeling for the Calculation of Porous Structure Properties: Techniques and Applications 43 3.1 Introduction 43 3.2 Overview of Computational Assessments of Physical Properties of Materials 44 3.3 Mechanical Properties of Microstructure 47 3.4 Effective Elasticity Tensor for Porous Structures using FEM Formulation 57 References 63 Chapter 4 Advanced Techniques in Porous Structure Design 65 4.1 Introduction 65 4.2 Parametric Optimization 69 4.3 Non-Parametric Optimization 72 4.4 Multiphysics Topology Optimization Fundamentals 76 4.5 Topology Optimization Methodologies 81 4.6 Shape Optimization 86 4.7 Porous Structural Design 91 References 97 Chapter 5 Practical Examples and Case Studies 103 5.1 Introduction 103 5.2 Porous Heat Sink Designs with Non-Parametric Optimization 103 5.3 Application of Robotics 128 References 165 Chapter 6 Advanced Software Utilization for Designing and Analyzing Porous Structures 173 6.1 Introduction 173 6.2 Commercial Software 174 6.3 Coding-Based Commercial Software Design of Porous Structures 176 References 192 Chapter 7 Emerging Trends and Directions in Advanced Porous Structures 195 7.1 Introduction 195 7.2 Advanced Manufacturing 196 7.3 Applications of Advanced Porous Structures 197 7.4 Challenges and Future Directions 201 References 202 Index 207
520 _a"Porous structure design is used in engineering to create lightweight materials with exceptional characteristics like high mechanical strength-to-weight ratios. These structures feature interconnected voids or pores, which reduce overall weight without compromising strength, making them ideal for applications where weight and energy consumption is a concern, such as the aerospace and automotive industries. Additive manufacturing has emerged as the go-to method for producing such intricate structures because it allows for precise control over the internal architecture, enabling the creation of complex geometries that are challenging or impossible to achieve with traditional manufacturing methods. However, transitioning from design to 3D printing poses its challenges, and ensuring the fidelity of the final printed product requires careful consideration of factors like material properties and printing parameters."-- Provided by publisher.
545 0 _aAbout the Author Musaddiq Al Ali, PhD, is a research scientist at the Toyota Technological Institute, where his work on additive manufacturing methods for the creation of multifunctional, ultra-lightweight structures for smart vehicles is sponsored by the Toyota Corp. His career has included teaching undergraduate and postgraduate courses in mechanics, heat transfer, fluid dynamics, numerical methods, manufacturing processes, control systems, dynamics, computer-aided design, and mathematical programming.
588 _aDescription based on print version record and CIP data provided by publisher; resource not viewed.
650 0 _aPorous materials
_xDesign and construction
650 0 _aAdditive manufacturing
_0http://id.loc.gov/authorities/subjects/sh2020000052
655 4 _aElectronic books.
830 _aAdditive manufacturing skills in practice
856 4 0 _y Full text is available at Wiley Online Library Click here to view
_uhttps://onlinelibrary.wiley.com/doi/book/10.1002/9781394347537
942 _2ddc
_cER