Effect of Heat Treatment on the Material Property and Cell Viability of Wire Arc Additively Manufactured Ti6Al4 V

Author:

Paul Amrit Raj123,Singh Sonu4,Hirwani Jaswant4,Yadav Suraj12,Dekiwadia Chaitali5,Mukherjee Manidipto12ORCID,Kalyanasundaram Dinesh46ORCID

Affiliation:

1. CSIR-Central Mechanical Engineering Research Institute, Durgapur 713209, West Bengal, India

2. Academy of Scientific and Innovative Research, Ghaziabad 201002, Uttar Pradesh, India

3. RMIT Centre for Additive Manufacturing, School of Engineering, STEM College, RMIT University, Melbourne 3000, Australia

4. Centre for Biomedical Engineering, Indian Institute of Technology Delhi, New Delhi 110016, India

5. RMIT Microscopy and MicroAnalysis Facility, STEM College, RMIT University, Melbourne 3000, Australia

6. Department of Biomedical Engineering, All India Institute of Medical Sciences, New Delhi 110029, India

Funder

Indian Council of Medical Research

Publisher

American Chemical Society (ACS)

Reference62 articles.

1. Additive manufacturing of bimetallic structures

2. A survey of additive manufacturing reviews

3. Perspectives of using machine learning in laser powder bed fusion for metal additive manufacturing

4. Additive manufacturing: A machine learning model of process-structure-property linkages for machining behavior of Ti-6Al-4V

5. Bekker, A. C. M.; Verlinden, J. C.; Galimberti, G. Challenges in Assessing the Sustainability of Wire + Arc Additive Manufacturing for Large Structures, Solid Freeform Fabrication 2016: Proceedings of the 27th Annual International Solid Freeform Fabrication Symposium - An Additive Manufacturing Conference, 2016; pp 406–416.

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