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Dheeraj Gupta

Researcher at Thapar University

Publications -  122
Citations -  2138

Dheeraj Gupta is an academic researcher from Thapar University. The author has contributed to research in topics: Austenitic stainless steel & Composite number. The author has an hindex of 22, co-authored 108 publications receiving 1538 citations. Previous affiliations of Dheeraj Gupta include Graphic Era University & University of Arizona.

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Microwave Processing of Materials and Applications in Manufacturing Industries: A Review

TL;DR: In this article, the main focused aim of developing new processing and manufacturing technologies are to reduce production or manufacturing costs, processing times, and to enhance manufactured product properties, and the developed processing techniques should be widely acceptable for all types of materials including metal matrix composites, ceramics, alloys, and fiber reinforced plastics.
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Development and microstructural characterization of microwave cladding on austenitic stainless steel

TL;DR: In this paper, microwave cladding was explored as a new processing method for enhancement of surface properties of austenitic stainless steel (SS-316) using microwave radiation as the heating source.
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Investigation on sliding wear performance of WC10Co2Ni cladding developed through microwave irradiation

TL;DR: In this paper, the authors reported on the investigation of sliding wear of cladding developed through a novel processing technique Wear resistant WC10Co2Ni cladding was developed using microwave irradiation on austenitic stainless steel (SS-316).
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On microstructure and flexural strength of metal–ceramic composite cladding developed through microwave heating

TL;DR: A domestic multimode microwave applicator was used to develop carbide reinforced (tungsten-based) metal-matrix composite cladding on austenitic stainless steel substrate as mentioned in this paper.
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Synthesis, characterization, and bioactivity investigation of biomimetic biodegradable PLA scaffold fabricated by fused filament fabrication process

TL;DR: In this article, the degradation rate of polylactic acid (PLA) implant was evaluated using in vitro simulated body fluid study, and the authors concluded the positive effect of process parameters on degradation rate and biocompatible behavior of PLA implant.