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Manufacturing and Processing of Advanced Materials / edited by Amar Patnaik [and three others].

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Format:
Book
Author/Creator:
Patnaik, Am ar, Author.
Contributor:
Patnaik, Amar, editor.
Language:
English
Subjects (All):
Manufacturing processes.
Materials.
Physical Description:
1 online resource (318 pages)
Edition:
First edition.
Place of Publication:
Singapore : Bentham Science Publishers Pte. Ltd., 2023.
Summary:
Explore the world of advanced materials and their manufacturing processes through this authoritative and enlightening reference. Discover how these innovations are shaping the future of high-tech industries and making a profound impact on our world. Manufacturing and Processing of Advanced Materials compiles current research and updates on development efforts in advanced materials, manufacturing, and their engineering applications. The book presents 22 peer-reviewed chapters that cover new materials and manufacturing processes. Key Topics Materials for the Future: Properties, classifications, and harmful effects of advanced engineering Innovative Manufacturing Techniques: Nanotechnology in material processing and manufacturing innovation. Advanced Welding and Joining: laser welding and friction stir welding in manufacturing composite materials. Sustainable Practices: Eco-Friendly machining, water vapor cutting fluid, for high-speed milling, natural fiber reinforcement with materials like bamboo leaves. Advanced Materials Characterization and Modeling: Carbon nanotube (CNT)-reinforced nanocomposites and tribology for durable and reliable materials ensuring reliability. Materials for Energy and Electronics: Energy Storage Innovations and smart materials for electronic devices Novel Drilling and Machining Processes: Microwave drilling, electric discharge machining and die-sinking electric discharge machining for metal matrix composites. Innovations in Nanoparticle Production: Spark discharge method (SDM) for advanced nanoparticle production. The book caters to a diverse audience, offering an invaluable resource for researchers, engineers, graduate students, and professionals in materials science, engineering, chemistry, and physics. By enhancing their knowledge and expertise, readers are poised to become key contributors to various industries and
technological advancements.
Contents:
Cover
Title
Copyright
End User License Agreement
Contents
Foreword
Preface
List of Contributors
A Review on the Joining of Dissimilar Materials with Special Context to Laser Welding
Aditya Purohit1, Tapas Bajpai1,*, Pankaj Kumar Gupta1 and Arpana Parihar2
INTRODUCTION
OPTIMIZATION
RESIDUAL STRESSES AND DISTORTIONS
MISCELLANEOUS
Offsetting of Laser Beam
Numerical Modelling of Dissimilar Laser Welded Joints
Effect of Variation of Pulse
Other Techniques
CONCLUSION
REFERENCES
A Study on Friction Stir Welding of Composite Materials for Aerospace Applications
Spruha Aniket Dhavale1,* and Shivprakash Bhagwatrao Barve1
Aluminium Composite Materials
FACTORS RESPONSIBLE FOR WELD STRENGTH
Process Parameters
Tool Design and its Position
FSW MACHINES
MECHANICAL PROPERTIES OF WELD
Microstructural Characteristics
Weld Defects
SCOPE FOR FURTHER RESEARCH
ABBREVIATION
Binder Jetting: A Review on Process Parameters and Challenges
Kriti Srivastava1,* and Yogesh Kumar1
Classification of AM
BINDER JETTING
Basic Principle
POWDER AND BINDER
Powder Selection
Green Strength
Flowability
Packing Density
Selection of Binder
DEFECTS AND CHALLENGES
CONCLUSION AND FUTURE SCOPE
Spot Welding of Dissimilar Materials Al6061/ Ss304 with an Interfacial Coating of Graphene Nano Platelets
Velavali Sudharshan1,* and Jinu Paul1
1. INTRODUCTION
MATERIALS AND METHODOLOGY
Materials
Methodology
RESULTS AND DISCUSSION
Microstructure Analysis
Scanning Electron Microscopy (SEM) Analysis
Lap Shear Strength Analysis
Analysis of Microhardness
CONSENT FOR PUBLICATION
CONFLICT OF INTEREST
ACKNOWLEDGEMENTS
REFERENCES.
Optimization of Laser Welding Parameters of Aluminium Alloy 2024 using Particle Swarm Optimization Technique
Aparna Duggirala1,*, Upama Dey1, Souradip Paul1, Bappa Acherjee2 and Souren Mitra3
EXPERIMENTAL SETUP
EXPERIMENTAL DESIGN
RESULTS AND DISCUSSIONS
Main Effects Plots for the Responses
Prediction of Objectives using Regression Equations
Particle Swarm Optimization
Computational Procedure
A Review on Theories and Discharge Mechanisms in Electro-Chemical Discharge Machining
Mahaveer Prasad Sharma1,*, Pankaj Kumar Gupta1 and Gaurav Kumar2
HISTORICAL DEVELOPMENTS IN ECDM
ELECTRO-CHEMICAL DISCHARGE MACHINING (ECDM) SYSTEM
THEORIES AND MECHANISMS OF DISCHARGE IN ECDM
Investigations on Magnetic Field Assisted Electrochemical Discharge Machining Process
Botcha Appalanaidu1,*, Rajendra Kumar Arya2 and Akshay Dvivedi1
Experimental Facility
Material Removal Mechanism
Measurements
Effect of Magnetic Field on Machined Hole Quality
Effect of Magnetic Field on Machined Hole Depth and Machining Speed
Microwave Drilling of Polymer Based Composite: Challenges and Opportunities
Gaurav Kumar1,*, Apurbba Kumar Sharma2 and Mukund Kumar3
MEASUREMENT AND CHARACTERIZATION
THERMAL DAMAGE
Overcut
OPPORTUNITIES AND CHALLENGES
Parametric Evaluation in Context to the Functional Role of Eco-Friendly Water Vapour Cutting Fluid Through Chip Deformation Analysis in HSM Of Inconel 718
Ganesh S. Kadam1,2,* and Raju Shrihari Pawade1
CONCLUSION.
ACKNOWLEDGEMENT
Parametric Analysis and Modeling of die-sinking Electric Discharge Machining of Al6061/SiC Metal Matrix Composite Using Copper Electrode
Bipul Kumar Singh1,*, Ankit Kumar Maurya1, Sanjay Mishra1 and Anjani Kumar Singh1
EXPERIMENTAL PROCEDURE
Material Preparation
Tool Selection
Equipment Used
DESIGN OF EXPERIMENT AND PARAMETERS
ANOVA for MRR
ANOVA for R a
Parametric Analysis for MRR and R a
ACKNOWLEDGEMENT
A Comprehensive Review on Application of Spark Discharge Method (SDM) for Production of Nanoparticles
Mudit K. Bhatnagar1, Siddharth Srivastava1, Vansh Malik1, Mamatha Theetha Gangadhar1 and Mohit Vishnoi1,*
NANOPARTICLE (NP) PRODUCTION THROUGH SDM
Experimental Apparatus
Material Selection for NP Production
Effects of Process Parameters on Nanoparticle Production
Zeta Potential
Energy per Spark
Flow Rate
Di-electric
Gap Between Electrodes
Spark Frequency
AMALGAMATION OF SDM WITH OTHER PROCESSES: HYBRID PROCESSES FOR NANOPARTICLE PRODUCTION
COMPARISON BETWEEN SPARK DISCHARGE METHOD (SDM) AND CONVENTIONAL METHODS OF NANOPARTICLE (NP) PRODUCTION
Conventional Methods of Nanoparticle Production
Mechanical Ball Milling
Vacuum Deposition and Vaporization
Sol-gel Method
Sputtering
Laser ablation
Pyrolysis
Advantages of SDM over Conventional Methods
APPLICATIONS OF NANOPARTICLES IN EMISSION CONTROL, COOLING AND LUBRICATION
LIMITATIONS OF SDM FOR NP PRODUCTION
Natural Fiber-Reinforced Polymer Composite: A Review
Satendra Singh1,* and Pankaj Kumar Gupta1
NATURAL FIBER-REINFORCED POLYMER COMPOSITE
APPLICATIONS OF NATURAL FIBER-REINFORCED POLYMER COMPOSITE.
STUDIES ON METHODS/TECHNIQUES TO ENHANCE THE PROPERTIES OF NATURAL FIBERS
FABRICATION TECHNIQUES OF NATURAL FIBER-REINFORCED POLYMER COMPOSITE
INVESTIGATIONS ON THE MECHANICAL PROPERTIES OF NATURAL FIBER-REINFORCED POLYMER COMPOSITE
Analysis of Pineapple Leaf Fiber Reinforced Composite Vehicle Bumper with Varying Fiber Volume Fraction
Abhishek Pothina1 and Saroj Kumar Sarangi1,*
Car bumper
Manufacturing Method
Literature Review
Setup Information
Mechanical Properties of the Materials
METHODOLOGY
Analytical Method
Density of the Composite
Longitudinal Modulus of the Composite
Transverse Modulus of the Composite
In-plane Poisson's Ratio of the Composite
Modelling and Simulation
Boundary Conditions
Results and Discussion
Experimental studies on Mechanical characteristics of Bamboo Leaf Ash reinforcement with Aluminum 7075 alloy using Rotary Stir Casting Technique
Murahari Kolli1,*, Dasari Sai Naresh2 and K.Ravi Prakash Babu3
EXPERIMENTS
Metallographic Characteristics
Microstructure
Tensile and Ultimate Yield Stress
Hardness
Ductility
Impact Energy
Experimental Investigation on the Joint Efficiency of Grit Blasted and Silica Particle Coated Adhesively Bonded Carbon and Glass Fibre Reinforced Polymer Composite Laminates
Mohammed Yusuf A. Yadwad1,*, Vishwas G.1 and N. Rajesh Mathivanan1
OBJECTIVES
EXPERIMENTAL INVESTIGATION
Material Properties
Specimen Preparations
Surface Preparations
Grit Blasting
Silica Particle Coating
Adhesive Bonding
Overlap Shear Test
CONSENT OF PUBLICATION
Colossal Dielectric Properties Of (Ta0.1Sm0.9)0.04Ti0.96O2/PVDF Composites For Energy Storage Applications
Dileep Chekkaramkodi1,*, Muhammed Hunize Chuttam Veettil1 and Murali Kodakkattu Purushothaman1
Experimental Part
Preparation of TSTO
Preparation of Polymer/Matrix Composites (PMCs)
Characterization
Dielectric Measurement
Modelling the Effects of Carbon Nanotube (CNT) and Interphase Parameters on Mechanical Properties of CNT-Reinforced Nanocomposites
Saurabh Mishra1, Surendra Kumar1,* and Amit Kumar1
MODELLING AND COMPUTATIONAL METHODOLOGY
Finite Element Modelling of RVE
Mori-Tanaka Model
NUMERICAL RESULTS
Effect of CNT Volume Fraction
Effect of Interphase Parameters
Interphase with Varied Modulus
Effect of Short CNTs
CONCLUDING REMARKS
Vibration and Deflection Analysis of Quadrilateral Sandwich Plate with Functionally Graded Core
Shivnandan Bind1, Manish Kumar1 and Saroj Kumar Sarangi1,*
MATHEMATICAL FORMULATION
MATERIALS PROPERTIES
Polymer Nanocomposites with Improved Electrical and Thermal Properties for Smart Electronic Material Applications
Tapan Kumar Patnaik1,*, Simadri Priyanka Achary1, Jyoti Behera1 and Sanjukta Mishra1
Smart Polymer Nanocomposite
Shape Memory Polymer
Self-healing Polymer
Classification of Nanocomposites
Intercalated Nanocomposites
Floccultaed Nano Composites
Exfoliated Nanocomposites
Fillers
Thermal Properties
Electrical Properties
Melt Intercalation
Template Synthesis
Exfoliation Absorption
In Situ Polymerization.
Applications of Polymer Nanocomposites in Electronic Components.
Notes:
Includes bibliographical references.
Description based on publisher supplied metadata and other sources.
Description based on print version record.
ISBN:
981-5136-71-2
OCLC:
1416188650

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