Advances in Materials Science and Engineering

Microstructure, Properties and Tribological Behaviour of Advanced Functional Materials


Publishing date
01 May 2022
Status
Published
Submission deadline
17 Dec 2021

1Sethu Institute of Technology, Tamil Nadu, India

2Federal University of Technology Akure, Akure, Nigeria

3Malek Ashtar University of Technology, Tehran, Iran

4Marmara University, Istanbul, Turkey


Microstructure, Properties and Tribological Behaviour of Advanced Functional Materials

Description

Material research focusing on advanced applications is rapidly expanding in the field of science and technology. Due to their unique physical, chemical, and functional attributes, multifunctional nanomaterials, polymers, and composites are useful in various technologies. As a result, significant research has been invested in developing these advanced functional materials (AFMs) in terms of synthesis, engineering, functionality, and applications. AFMs are emerging materials which can have several properties by varying the composition. These AFMs are employed in a wide range of applications. For instance, advanced research systems in engineering, medicine, and environmental protection, as well as everyday electronics. The future of materials must be focused on developing AFMs that may set new benchmarks in several engineering applications such as aviation, refineries, structural, power plants, shipbuilding and automotive, etc.

Nowadays, advanced functional material research is developing in a way that brings modern technology with intelligent systems. AFMs are gaining substantial attention for developing and improving polymers, energy conversion, fine ceramics, biomedicine, electronics, green fuel cells, quantum, and photonic technologies. AFMs can be prepared through squeeze casting, stir casting, centrifugal casting, powder metallurgy, deposition techniques, and additive manufacturing routes. However, some of these techniques are too expensive when bulk-type AFMs are required. Therefore, the challenge when attempting to expand the industrial applications of AFMs is to prepare the components with progressively disseminated properties in a simple and cost-effective manner.

The aim of this Special Issue is to bring together original research and review articles discussing the microstructure, properties and tribological behaviour of advanced functional materials. We especially welcome submissions including lightweight materials, micron or nanoparticles based advanced functional composite materials.

Potential topics include but are not limited to the following:

  • Additive manufacturing technologies for micron or nanoparticles based advanced functional composite materials
  • Applications of lightweight composite materials
  • Non-traditional machining processes for lightweight materials
  • Friction, lubrication, oil performance, wear and heat treatment processes
  • Advanced and analytical electron microscopy characterization
  • Modelling analysis and optimization for lightweight materials
  • Manufacturing techniques for advanced functional materials
  • Traditional and advanced joining techniques for lightweight materials
  • Structure of smart lightweight materials
  • Application of lightweight materials in Industry 4.0 concept
  • Microstructure of advanced functional materials in energy and engineering materials
  • Tribological behaviour of lightweight materials
  • Tribological behaviour of micron or nanoparticle-based advanced functional composite materials

Articles

  • Special Issue
  • - Volume 2021
  • - Article ID 9529199
  • - Review Article

A Cutting-Edge Survey of Tribological Behavior Evaluation Using Artificial and Computational Intelligence Models

Senthil Kumaran Selvaraj | Aditya Raj | ... | Velmurugan Paramasivam
  • Special Issue
  • - Volume 2021
  • - Article ID 7602160
  • - Review Article

Mechanical Properties of Titanium Diboride Particles Reinforced Aluminum Alloy Matrix Composites: A Comprehensive Review

V. Mohanavel | M. Ravichandran | ... | M. Muhibbullah
  • Special Issue
  • - Volume 2021
  • - Article ID 8273708
  • - Research Article

Characterization of TiZrN and TaZrN Nanocomposite Multilayer Coating Deposited via RF/DC Magnetron Sputtering on AISI4140 Steel

R. Hariharan | R. Raja | ... | Haiter Lenin Allasi
  • Special Issue
  • - Volume 2021
  • - Article ID 5756563
  • - Review Article

3D Printing Manufacturing Techniques, Materials, and Applications: An Overview

D. Srinivasan | M. Meignanamoorthy | ... | S. Rajkumar
  • Special Issue
  • - Volume 2021
  • - Article ID 7616666
  • - Research Article

The Investigation of Mixed Ferrofluids Containing Iron Oxide nanoparticles and Microspheres

Sharanabasava V. Ganachari | Veerabhadragouda B. Patil | ... | Shankar A. Hallad
  • Special Issue
  • - Volume 2021
  • - Article ID 4933450
  • - Research Article

Exploration on Mechanical Behaviours of Hyacinth Fibre Particles Reinforced Polymer Matrix-Based Hybrid Composites for Electronic Applications

Pradeep Kumar Panda | J. Jebastine | ... | I. Jenish
  • Special Issue
  • - Volume 2021
  • - Article ID 6843276
  • - Research Article

Statistical Modelling to Study the Implications of Coated Tools for Machining AA 2014 Using Grey Taguchi-Based Response Surface Methodology

Madhanagopal Manoharan | Arul Kulandaivel | ... | Gowthaman Buddharsamy
  • Special Issue
  • - Volume 2021
  • - Article ID 2832149
  • - Research Article

Evaluation of Mechanical Properties of Sisal and Bamboo Fibres Reinforced with Polymer Matrix Composites Prepared by Compression Moulding Process

S. Krishna Mohan | Arul Thayammal Ganesan | ... | Manikandan Ganesan
  • Special Issue
  • - Volume 2021
  • - Article ID 1934490
  • - Research Article

Liquid Crystal Display (LCD) and Organic Light Emitting Diode (OLED) Applications on Natural Fibre Reinforced Polymer Matrix Composites

V. Senthil Nayagam | Anamika | ... | David Christopher
  • Special Issue
  • - Volume 2021
  • - Article ID 4594465
  • - Research Article

Influence of Flax Fibre Hybridization on Mechanical Behaviour of Sisal Fibre-Polypropylene Composites Prepared with an Injection Moulding Machine

J. Allen Jeffrey | A. Sivakumar | ... | S. Rajkumar
Advances in Materials Science and Engineering
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Acceptance rate16%
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CiteScore3.300
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