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Turnad Lenggo Ginta

Researcher at Universiti Teknologi Petronas

Publications -  60
Citations -  889

Turnad Lenggo Ginta is an academic researcher from Universiti Teknologi Petronas. The author has contributed to research in topics: Machining & Surface roughness. The author has an hindex of 15, co-authored 59 publications receiving 601 citations. Previous affiliations of Turnad Lenggo Ginta include Petronas & ORCA.

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Thermal analysis during turning of AZ31 magnesium alloy under dry and cryogenic conditions

TL;DR: In this paper, the effect of both cryogenic and dry machining of AZ31 magnesium alloy on temperature and surface roughness was examined, and it was found that the cryogenic machining was able to reduce the maximum temperature at the machined surface to about 60%.
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Effect of Unit Cell Type and Pore Size on Porosity and Mechanical Behavior of Additively Manufactured Ti6Al4V Scaffolds.

TL;DR: Investigation of the influence of cube and gyroid unit cell types, with pore size ranging from 300 to 600 µm, on porosity and mechanical behavior of titanium alloy (Ti6Al4V) scaffolds shows promising results for application in orthopedic implants.
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A Review of Additive Mixed-Electric Discharge Machining: Current Status and Future Perspectives for Surface Modification of Biomedical Implants

TL;DR: Additive mixed-electric discharge machining (AM-EDM) is an emerging technology which simultaneously acts as a machining and surface modification technique as discussed by the authors. But, most of these techniques have several drawbacks such as excessive cost and surface cracks and require very high sintering temperature.

TOOL LIFE PREDICTION BY RESPONSE SURFACE METHODOLOGY FOR END MILLING TITANIUM ALLOY Ti-6Al-4V USING UNCOATED CARBIDE INSERTS

TL;DR: In this article, the authors present an approach to establish models for tool life in end milling of titanium alloy Ti-6Al-4V using uncoated carbide inserts under dry conditions.
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Effect of Cryogenic Cooling on the Heat Transfer during Turning of AZ31C Magnesium Alloy

TL;DR: In this article, a combined analytical and experimental study was carried out to analyze the effects of cryogenic cooling on temperature during turning of AZ31C magnesium alloy and the Finite Element method was employed.