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Ultra-low cost Ti powder for selective laser melting additive manufacturing and superior mechanical properties associated

Hou Yuhang et al · Editorial Office of Opto-Electronic Journals Group, Institute of Optics and Electronics, CAS, China · 2019

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One of the bottleneck issues for commercial scale-up of Ti additive manufacturing lies in high cost of raw material, i.e. the spherical Ti powder that is often made by gas atomization. In this study, we address this significant issue by way of powder modification & ball milling processing, which shows that it is possible to produce printable Ti powders based on ultra-low cost, originally unprintable hydrogenation-dehydrogenation (HDH) Ti powder. It is also presented that the as-printed Ti using the modified powder exhibits outstanding mechanical properties, showing a combination of excellent fracture strength (~895 MPa) and high ductility (~19.0% elongation).

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APA 7

al, H. Y. E. (2019). Ultra-low cost Ti powder for selective laser melting additive manufacturing and superior mechanical properties associated. https://doi.org/10.29026/oea.2019.180028

MLA

al, Hou Yuhang et. "Ultra-low cost Ti powder for selective laser melting additive manufacturing and superior mechanical properties associated." 2019. https://doi.org/10.29026/oea.2019.180028.

Chicago

al, Hou Yuhang et. 2019. "Ultra-low cost Ti powder for selective laser melting additive manufacturing and superior mechanical properties associated.". https://doi.org/10.29026/oea.2019.180028.

Harvard

al, H. Y. E. 2019, Ultra-low cost Ti powder for selective laser melting additive manufacturing and superior mechanical properties associated, Editorial Office of Opto-Electronic Journals Group, Institute of Optics and Electronics, CAS, China, available at: https://doi.org/10.29026/oea.2019.180028 [Accessed 6 Aug. 2026].

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Title
Ultra-low cost Ti powder for selective laser melting additive manufacturing and superior mechanical properties associated
Author / contributors
Hou Yuhang et al
Publisher
Editorial Office of Opto-Electronic Journals Group, Institute of Optics and Electronics, CAS, China
Publication year
2019
ISSN
2096-4579
ISSN
2096-4579
Language
English

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