Advances in Materials Science and Engineering

The Influence of Bio, Physical, and Mechanical Attrition in Surface Engineering 2022


Publishing date
01 Feb 2023
Status
Published
Submission deadline
07 Oct 2022

Lead Editor

1Kalasalingam Academy of Research and Education, Virudhunagar, India

2International Islamic University, Selangor, Malaysia

3Karadeniz Technical University, Trabzon, Turkey

4University of Johannesburg, Johannesburg, South Africa


The Influence of Bio, Physical, and Mechanical Attrition in Surface Engineering 2022

Description

It is a well-known fact that desirable functional performance and service life of engineered parts can be obtained through a valid tribological process. To ensure the performance of the tribological process, each output response such as wear, material removal rate, surface finish, and the surface degradation process must be evaluated. Experiment design should be correlated with respect to the different input factors which have to be evaluated by following the standard procedures. In addition, surface characterization techniques such as SEM, EDS, XRD, AFM, surface residual stress, and many more surface qualities decide the quality of the tribological process.

Machining has been recommended as a post-processing technique to meet industrial expectations, especially in the development of materials through advanced manufacturing processes such as additive manufacturing. Cold formation, electro spark sintering, and many more through cast processing are followed by secondary experimental processes to infer the tribological performance of the developed material. Most research is focused on sliding wear, erosive wear, abrasive wear, electro spark erosion, laser ablation, bio-erosion, etc.

This Special Issue intends to disseminate knowledge of advanced technologies in handling engineering materials related to wear, friction, and lubricant. This Issue will support researchers with technical articles on tribological behavior of advanced materials including metals and non-metals. Articles should provide contributions to microbial abrasion, sliding erosion, fretting corrosion, laser ablation, spark erosion, abrasion, and numerical simulations on erosion. Submitted articles are expected to cover experimental approaches, influence of input parameter, results of advanced surface characterization studies, and significant justification on the mechanisms involved during the process. Original research and review articles are welcome.

Potential topics include but are not limited to the following:

  • Bio-tribology in biomedical engineering
  • Microbial machining of materials
  • Micro- and nano-machining
  • Lasers for surface engineering
  • Mechanical attrition for surface modification
  • Corrosion/Oxidation/Inhibition
  • Microscopy and surface analysis

Articles

  • Special Issue
  • - Volume 2024
  • - Article ID 4384178
  • - Research Article

Dry Sliding Wear Behavior of Copper Matrix Composites Enhanced with TiO2 and MoS2 Hybrids

V. Subbian | H. Sandeep | ... | Dereje H. Georgis Tefera
  • Special Issue
  • - Volume 2023
  • - Article ID 9456717
  • - Research Article

Microdrilling Studies PLA/Bronze Composite Samples Printed Using Fused Deposition Model

P. Sneha | K. Balamurugan | ... | Santhosh Krishnan
  • Special Issue
  • - Volume 2023
  • - Article ID 8275323
  • - Research Article

Optimization and Characterization Studies of Dissimilar Friction Stir Welding Parameters of Brass and Aluminum Alloy 6063 Using Taguchi

Vimal Agarwal | Deepam Goyal | ... | A. Haiter Lenin
  • Special Issue
  • - Volume 2023
  • - Article ID 9507757
  • - Research Article

Optimization of Wear Process Parameters of Al6061-Zircon Composites Using Taguchi Method

R. Vijayakumar | J. S. Srikantamurthy | ... | A. Haiter Lenin
  • Special Issue
  • - Volume 2023
  • - Article ID 2605414
  • - Research Article

A Neural Network-Based Prediction of Superplasticizers Effect on the Workability and Compressive Characteristics of Portland Pozzolana Cement-Based Mortars

P. Manikandan | V. Vasugi | ... | G. Senthil Kumaran
  • Special Issue
  • - Volume 2023
  • - Article ID 3383777
  • - Research Article

Effect of Varied Cashew Nut Ash Reinforcement in Aluminum Matrix Composite

Yallamati Abshalomu | Y. Jyothi | ... | Rabin Selvaraj
  • Special Issue
  • - Volume 2023
  • - Article ID 2386558
  • - Research Article

Effect of Boron Carbide Particles Addition on the Mechanical and Wear Behavior of Aluminium Alloy Composites

Ravindra | M. Rajesh | ... | Perumalla Janaki Ramulu
  • Special Issue
  • - Volume 2023
  • - Article ID 2141115
  • - Research Article

Corrosion Resistant Coating from Nano Printed Circuit Board Powder for the Reinforced Concrete Structures

R. Mohana | D. Selvaganesh | ... | M. Vignesh Kumar
  • Special Issue
  • - Volume 2023
  • - Article ID 8533871
  • - Research Article

Experimental Investigations on Erosion-Corrosion Characteristics of HVOF-Sprayed WC-10% Ni Coatings Deposited on Aluminum Alloy

G. S. Pradeep Kumar | Sampreeth Sunkad | ... | Dadapeer Basheer
  • Special Issue
  • - Volume 2023
  • - Article ID 8956234
  • - Research Article

Effect of Hot Rolling on Friction and Wear Characteristics of TiC Reinforced Copper-Based Metal Matrix Composites

S. Harish | R. Keshavamurthy | ... | Amith Kumar Gajakosh
Advances in Materials Science and Engineering
 Journal metrics
See full report
Acceptance rate16%
Submission to final decision115 days
Acceptance to publication21 days
CiteScore3.300
Journal Citation Indicator-
Impact Factor-
 Submit Evaluate your manuscript with the free Manuscript Language Checker

We have begun to integrate the 200+ Hindawi journals into Wiley’s journal portfolio. You can find out more about how this benefits our journal communities on our FAQ.