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Ajay Batish

Ajay Batish

D-Index & Metrics

Engineering and Technology

D-Index
31
Citations
3432
World Ranking
9713
National Ranking
189

Overview

Ajay Batish is a researcher affiliated with Thapar University in India, specializing in engineering with a primary focus on additive manufacturing and related materials science. Their work spans various aspects of manufacturing technologies, materials engineering, and mechanical processes, demonstrating a concentration on both theoretical and applied research within engineering disciplines.

Their publication record includes a significant number of papers in areas such as automotive engineering, biomedical engineering, mechanical engineering, building and construction, and industrial and manufacturing engineering. The main fields of study covered by their research comprise:

  • Engineering

Within this broader field, specific subfields include:

  • Automotive Engineering
  • Biomedical Engineering
  • Mechanical Engineering
  • Building and Construction
  • Industrial and Manufacturing Engineering

Batish's work addresses several main topics, demonstrating the diverse research focus areas:

  • Additive Manufacturing and 3D Printing Technologies
  • Innovations in Concrete and Construction Materials
  • Advanced Sensor and Energy Harvesting Materials
  • Manufacturing Process and Optimization
  • Biodegradable Polymer Synthesis and Properties
  • Bone Tissue Engineering Materials
  • Advanced Welding Techniques Analysis

Frequent publication venues for Ajay Batish include:

  • Journal of Thermoplastic Composite Materials
  • Materials Today Proceedings
  • Journal of Materials Engineering and Performance
  • Proceedings of the Institution of Mechanical Engineers Part C Journal of Mechanical Engineering Science
  • Critical Reviews in Solid State and Materials Sciences/CRC Critical Reviews in Solid State and Materials Sciences

Notable frequent co-authors collaborating with Batish are:

  • Rupinder Singh
  • Sudhir Kumar
  • Ravinder Sharma
  • T.P. Singh
  • Tajinder P. Singh

Examples of recent research papers authored or co-authored by Ajay Batish, including publication year and venue, are:

  • Fused filament fabrication: A comprehensive review (2020), Journal of Thermoplastic Composite Materials
  • Multi material 3D printing of PLA-PA6/TiO2 polymeric matrix: Flexural, wear and morphological properties (2020), Journal of Thermoplastic Composite Materials
  • Dynamic recrystallization during solid state friction stir welding/processing/additive manufacturing: Mechanisms, microstructure evolution, characterization, modeling techniques and challenges (2024), Critical Reviews in Solid State and Materials Sciences/CRC Critical Reviews in Solid State and Materials Sciences
  • Investigations for mechanical, thermal and magnetic properties of polymeric composite matrix for four-dimensional printing applications (2020), Journal of the Brazilian Society of Mechanical Sciences and Engineering
  • On flexural and pull out properties of 3D printed PLA based hybrid composite matrix (2020), Materials Research Express

Best Publications

  • Estimating the effect of cutting parameters on surface finish and power consumption during high speed machining of AISI 1045 steel using Taguchi design and ANOVA

    Anirban Bhattacharya;Santanu Das;P. Majumder;Ajay Batish

  • On Surface Finish and Dimensional Accuracy of FDM Parts after Cold Vapor Treatment

    Ashu Garg;Anirban Bhattacharya;Ajay Batish

  • Chemical vapor treatment of ABS parts built by FDM: Analysis of surface finish and mechanical strength

    Ashu Garg;Anirban Bhattacharya;Ajay Batish

  • Study of Surface Properties in Particulate-Reinforced Metal Matrix Composites (MMCs) Using Powder-Mixed Electrical Discharge Machining (EDM)

    Sarabjeet Singh Sidhu;Ajay Batish;Sanjeev Kumar

  • Surface characterization and material migration during surface modification of die steels with silicon, graphite and tungsten powder in EDM process

    Anirban Bhattacharya;Ajay Batish;Naveen Kumar

  • Metal Matrix Composites for Thermal Management: A Review

    Sarabjeet Singh Sidhu;Sanjeev Kumar;Ajay Batish

  • Optimal parameter settings for rough and finish machining of die steels in powder-mixed EDM

    Anirban Bhattacharya;Ajay Batish;Gurmail Singh;V. K. Singla

  • A hybrid Taguchi-artificial neural network approach to predict surface roughness during electric discharge machining of titanium alloys

    Sanjeev Kumar;Ajay Batish;Rupinder Singh;T. P. Singh

  • Study of Material Transfer Mechanism in Die Steels Using Powder Mixed Electric Discharge Machining

    Ajay Batish;Anirban Bhattacharya;V. K. Singla;Gurmail Singh

  • Fused filament fabrication: A comprehensive review:

    Sudhir Kumar;Rupinder Singh;TP Singh;Ajay Batish

  • Multi material 3D printing of PLA-PA6/TiO2 polymeric matrix: Flexural, wear and morphological properties:

    Sudhir Kumar;Rupinder Singh;Mohit Singh;TP Singh

  • On investigation of rheological, mechanical and morphological characteristics of waste polymer-based feedstock filament for 3D printing applications

    Sudhir Kumar;Rupinder Singh;TP Singh;Ajay Batish

  • Dynamic recrystallization during solid state friction stir welding/processing/additive manufacturing: Mechanisms, microstructure evolution, characterization, modeling techniques and challenges

    Unknown

  • Effect of cryogenically treated copper-tungsten electrode on tool wear rate during electro-discharge machining of Ti-5Al-2.5Sn alloy

    Sanjeev Kumar;Ajay Batish;Rupinder Singh;Anirban Bhattacharya

  • Optimization of powder mixed electric discharge machining using dummy treated experimental design with analytic hierarchy process

    A Bhattacharya;A Batish;G Singh

  • Failure investigation of fused deposition modelling parts fabricated at different raster angles under tensile and flexural loading

    Ashu Garg;Anirban Bhattacharya;Ajay Batish

  • Atomic-level finishing of aluminum alloy by chemo-mechanical magneto-rheological finishing (CMMRF) for optical applications

    Viney Ghai;Prabhat Ranjan;Ajay Batish;Harpreet Singh

  • Study on barium titanate and graphene reinforced PVDF matrix for 4D applications

    Ravinder Sharma;Rupinder Singh;Ajay Batish

  • Modeling the tool wear rate in powder mixed electro-discharge machining of titanium alloys using dimensional analysis of cryogenically treated electrodes and workpiece:

    Sanjeev Kumar;Rupinder Singh;Ajay Batish;TP Singh

  • Investigations of polylactic acid reinforced composite feedstock filaments for multimaterial three-dimensional printing applications:

    Sudhir Kumar;Rupinder Singh;TP Singh;Ajay Batish

  • On mechanical characterization of 3-D printed PLA-PVC-wood dust-Fe3O4 composite:

    Sudhir Kumar;Rupinder Singh;TP Singh;Ajay Batish

  • Powder Mixed Dielectric: An Approach for Improved Process Performance in EDM

    Ajay Batish;Anirban Bhattacharya;Naveen Kumar

  • Multimaterial printing and characterization for mechanical and surface properties of functionally graded prototype

    Sudhir Kumar;Rupinder Singh;TP Singh;Ajay Batish

  • Investigations for magnetic properties of PLA-PVC-Fe3O4-wood dust blend for self-assembly applications:

    Sudhir Kumar;Rupinder Singh;TP Singh;Ajay Batish

  • Electric discharge machining of titanium and its alloys: a review

    Sanjeev Kumar;Rupinder Singh;Ajay Batish;T.P. Singh

  • Additive manufacturing of smart materials exhibiting 4-D properties: A state of art review:

    Sudhir Kumar;Rupinder Singh;Ajay Batish;TP Singh

  • A multipoint method for 5-axis machining of triangulated surface models

    Ravinder Kumar Duvedi;Sanjeev Bedi;Ajay Batish;Stephen Mann

Frequent Co-Authors

Rupinder Singh
Rupinder Singh National Institute of Technical Teachers Training and Research
Stephen Mann
Stephen Mann University of Bristol
Sudhir Kumar
Sudhir Kumar Temple University
Francesco Colangelo
Francesco Colangelo Parthenope University of Naples
Partha P. Majumder
Partha P. Majumder Indian Statistical Institute
Fernando Fraternali
Fernando Fraternali University of Salerno
Harpreet Singh
Harpreet Singh Indian Institute of Technology Ropar

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