His work on Composite material is being expanded to include thematically relevant topics such as Composite number. His Composite number study frequently draws parallels with other fields, such as Composite material. Machining and Surface integrity are two areas of study in which Alokesh Pramanik engages in interdisciplinary work. His multidisciplinary approach integrates Surface integrity and Surface roughness in his work. He conducts interdisciplinary study in the fields of Surface roughness and Surface finish through his works. His Surface finish study frequently intersects with other fields, such as Mechanical engineering. His Mechanical engineering study typically links adjacent topics like Electrical discharge machining. Many of his studies on Electrical discharge machining apply to Metallurgy as well. His Metallurgy study frequently intersects with other fields, such as Tool wear.
Alokesh Pramanik regularly ties together related areas like Composite number in his Composite material studies. The study of Composite number is intertwined with the study of Composite material in a number of ways. His study ties his expertise on Electrical discharge machining together with the subject of Metallurgy. As part of his studies on Machining, he often connects relevant subjects like Mechanical engineering. His research brings together the fields of Machining and Mechanical engineering. He connects Alloy with Titanium alloy in his study. Alokesh Pramanik integrates several fields in his works, including Titanium alloy and Alloy. In his works, Alokesh Pramanik performs multidisciplinary study on Surface roughness and Surface finish. In his papers, Alokesh Pramanik integrates diverse fields, such as Surface finish and Surface roughness.
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Joining of carbon fibre reinforced polymer (CFRP) composites and aluminium alloys-A review
A. Pramanik;A.K. Basak;Y. Dong;P.K. Sarker.
Composites Part A-applied Science and Manufacturing (2017)
Problems and solutions in machining of titanium alloys
Alokesh Pramanik.
The International Journal of Advanced Manufacturing Technology (2014)
Prediction of cutting forces in machining of Metal Matrix Composites
Alokesh Pramanik;Liangchi Zhang;Joseph Arsecularatne.
International Journal of Machine Tools & Manufacture (2006)
Machining of metal matrix composites: effect of ceramic particles on residual stress, surface roughness and chip formation
Alokesh Pramanik;Liangchi Zhang;Joseph Arsecularatne.
International Journal of Machine Tools & Manufacture (2008)
An FEM investigation into the behavior of metal matrix composites: tool-particle interaction during orthogonal cutting
Alokesh Pramanik;Liangchi Zhang;Joseph Arsecularatne.
International Journal of Machine Tools & Manufacture (2007)
Performance Evaluation of Alumina-graphene Hybrid Nano-cutting Fluid in Hard Turning
Rabesh Kumar Singh;Anuj Kumar Sharma;Amit Rai Dixit;Arun Kumar Tiwari.
Journal of Cleaner Production (2017)
Developments in the non-traditional machining of particle reinforced metal matrix composites
Alokesh Pramanik.
International Journal of Machine Tools & Manufacture (2014)
Tool condition monitoring techniques in milling process — a review
T. Mohanraj;S. Shankar;R. Rajasekar;N.R. Sakthivel.
Journal of materials research and technology (2020)
Effects of reinforcement on wear resistance of aluminum matrix composites
Alokesh Pramanik.
Transactions of Nonferrous Metals Society of China (2016)
Machining of Titanium Alloy (Ti-6Al-4V)—Theory to Application
Alokesh Pramanik;Guy Littlefair.
Machining Science and Technology (2015)
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