Characterisation of powder and microstructure, density and surface roughness for additively manufactured stent using medical grade ASTM F75 cobalt chromium (CoCrMo) by selective laser melting (SLM) technology

Author:

Omar M. Asnawi1ORCID,Baharudin B. T. H. T.1,Sulaiman S.1,Ismail M. I. S.1ORCID,Omar M. Afian2

Affiliation:

1. Fakulti Kejuruteraan, Universiti Putra Malaysia , Serdang, Malaysia

2. Advanced Materials Research Center, SIRIM Bhd., Kulim Hi-Tech Park , Kulim, Malaysia

Publisher

Informa UK Limited

Subject

Industrial and Manufacturing Engineering,Mechanics of Materials,General Materials Science

Reference12 articles.

1. 3D-Printing Strong High-Resolution Antioxidant Bioresorbable Vascular Stents

2. Additive manufacturing of cardiovascular CoCr stents by selective laser melting

3. Moritz M. (2017, September 20). 3D printing goes to the heart: 220,000€ for additive manufacturing of the NewGen stent. Retrieved from. https://www.3dnatives.com/de/3d-druck-newgen-stent200920171/

4. Suzanne, H. (2016, October 21). 3D-Printed Biodegradable Stents Bypass Traditional Stent Complications. Retrieved from. https://www.meddeviceonline.com/doc/d-printed-biodegradable-stents-bypass-traditional-stent-complications-0001

5. Zhou Y , Sun W , Zhang L. Method of producing personalized biomimetic drug-eluting coronary stents by 3d-printing, U.S. Patent 20160256610A1, issued April 17; 2018.

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