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Strong and Ductile Titanium Via Additive Manufacturing Under a Reactive Atmosphere

41 Pages Posted: 19 Nov 2022 Publication Status: Published

See all articles by Yangping Dong

Yangping Dong

Southern University of Science and Technology

Dawei Wang

Southern University of Science and Technology

Qizhen Li

Southern University of Science and Technology

Xiaoping Luo

affiliation not provided to SSRN

Jian Zhang

Jiangnan University

Prashanth Konda Gokuldoss

affiliation not provided to SSRN

Pei Wang

Shenzhen University

Jürgen Eckert

Montanuniversität Leoben - Chair of Materials Physics

Lutz Mädler

University of Bremen

Ilya V. Okulov

University of Bremen

Ming Yan

Southern University of Science and Technology

Abstract

Pure metals tend to have a superior malleability compared to alloys. However, the applicability of pure metals is limited by their low strengths and hardness properties. In this study, strong and ductile pure Ti was synthesized via an approach involving powder modification and additive manufacturing (AM) under a reactive atmosphere. Specifically, pure Ti was processed by laser powder bed fusion in an environment containing a mixture of argon and nitrogen gases. In-situ high-energy synchrotron X-ray diffraction analysis reveals that in-situ nitrogen strengthening of the pure Ti occurs during the reactive AM of Ti. Furthermore, the presence of a nitrogen solid solution leads to the formation of high-strength pure Ti (yield strength of ~979 MPa and ultimate tensile strength of ~1058 MPa, respectively). This material exhibits excellent uniform elongation (11%) due to strong work hardening caused by the interaction of interstitial elements and heterostructures. The proposed reactive AM approach paves the way for in-situ strengthening of pure metals and alloys.

Keywords: pure titanium, reactive atmosphere, additive manufacturing, laser powder bed fusion

Suggested Citation

Dong, Yangping and Wang, Dawei and Li, Qizhen and Luo, Xiaoping and Zhang, Jian and Konda Gokuldoss, Prashanth and Wang, Pei and Eckert, Jürgen and Mädler, Lutz and Okulov, Ilya V. and Yan, Ming, Strong and Ductile Titanium Via Additive Manufacturing Under a Reactive Atmosphere. Available at SSRN: https://ssrn.com/abstract=4281801 or http://dx.doi.org/10.2139/ssrn.4281801

Yangping Dong

Southern University of Science and Technology

No 1088, xueyuan Rd.
Xili, Nanshan District
Shenzhen, 518055
China

Dawei Wang

Southern University of Science and Technology ( email )

No 1088, xueyuan Rd.
Xili, Nanshan District
Shenzhen, 518055
China

Qizhen Li

Southern University of Science and Technology ( email )

No 1088, xueyuan Rd.
Xili, Nanshan District
Shenzhen, 518055
China

Xiaoping Luo

affiliation not provided to SSRN ( email )

No Address Available

Jian Zhang

Jiangnan University ( email )

1800 Lihu Ave.
Wuxi, 214122
China

Prashanth Konda Gokuldoss

affiliation not provided to SSRN ( email )

No Address Available

Pei Wang

Shenzhen University ( email )

3688 Nanhai Road, Nanshan District
Shenzhen, 518060
China

Jürgen Eckert

Montanuniversität Leoben - Chair of Materials Physics ( email )

Lutz Mädler

University of Bremen ( email )

Ilya V. Okulov

University of Bremen ( email )

Universitaetsallee GW I
Bremen, D-28334
Germany

Ming Yan (Contact Author)

Southern University of Science and Technology ( email )

No 1088, xueyuan Rd.
Xili, Nanshan District
Shenzhen, 518055
China

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