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Golam Kibria

Researcher at Aliah University

Publications -  49
Citations -  600

Golam Kibria is an academic researcher from Aliah University. The author has contributed to research in topics: Machining & Laser. The author has an hindex of 10, co-authored 49 publications receiving 451 citations. Previous affiliations of Golam Kibria include Jadavpur University & Sikkim Manipal University.

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Comparative study of different dielectrics for micro-EDM performance during microhole machining of Ti-6Al-4V alloy

TL;DR: In this paper, the impact of different types of dielectrics on the performance of micro-EDM machining was investigated using scanning electron microscope (SEM) micrographs and optical photographs.
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Experimental investigation and multi-objective optimization of Nd:YAG laser micro-turning process of alumina ceramic using orthogonal array and grey relational analysis

TL;DR: In this paper, an experimental investigation on the effect of process parameters during Nd:YAG laser micro-turning operation of 99% of alumina (Al2O3) ceramic materials was carried out.
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Laser Surface Texturing for Biomedical Applications: A Review

TL;DR: In this paper, an in-depth review of laser surface texturing for biomedical applications is presented; the effect of LST on important biomaterial has been thoroughly studied; it was found that LST has extreme potential for surface modification of biomaterial and can be utilized for biomedical application.
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ANFIS based prediction and parametric analysis during turning operation of stainless steel 202

TL;DR: In this paper, the parametric analysis and ANFIS-based modeling of process parameters during turning operation of stainless steel 202 was performed using the Taguchi L16 DOE, and the results showed that the TAGU-16 DOE was suitable for turning steel 202.
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Predictive model and process parameters optimization of Nd:YAG laser micro-turning of ceramics

TL;DR: In this article, the results of validation experimentation show a good agreement for the developed empirical models and sensitivity analyses of the developed models have been done to find out the variation in the output with respect to variations in the significant input process parameters such as laser beam average power, pulse frequency, workpiece rotational speed, assist air pressure, and Y feed rate with response criteria such as surface roughness and deviation in turned depth for achieving desired surface quality as well as dimensional accuracy during micro-turning operation using Nd:YAG laser system.