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Discussion

Discussion: “Mechanical Anisotropy and Strain Rate Dependency Behavior of Ti6Al4V Produced Using E-Beam Additive Fabrication” (Ladani, L., Razmi, J., and Choudhury, S. F., 2014, ASME J. Eng. Mater. Technol., 136(3), p. 031006)

[+] Author and Article Information
Cody Petitt

Mechanical Engineering Department,
Ohio University,
Athens, OH 45701
e-mail: cp745210@ohio.edu

John Mullen

Mechanical Engineering Department,
Ohio University,
Athens, OH 45701
e-mail: jm181214@ohio.edu

Tejas Bhave

Mechanical Engineering Department,
Ohio University,
Athens, OH 45701
e-mail: tb518813@ohio.edu

Frank F. Kraft

Mechanical Engineering Department,
Ohio University,
Athens, OH 45701
e-mail: kraftf@ohio.edu

Contributed by the Materials Division of ASME for publication in the JOURNAL OF ENGINEERING MATERIALS AND TECHNOLOGY. Manuscript received February 26, 2015; final manuscript received April 1, 2015; published online May 6, 2015. Editor: Mohammed Zikry.

J. Eng. Mater. Technol 137(3), 035501 (Jul 01, 2015) (2 pages) Paper No: MATS-15-1048; doi: 10.1115/1.4030341 History: Received February 26, 2015; Revised April 01, 2015; Online May 06, 2015

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References

Ladani, L., Razmi, J., and Farhan Choudhury, S., 2014, “Mechanical Anisotropy and Strain Rate Dependency Behavior of Ti6Al4V Produced Using E-Beam Additive Fabrication,” ASME J. Eng. Mater. Technol., 136(3), p. 031006. [CrossRef]
Dieter, G., 1988, Mechanical Metallurgy, McGraw-Hill Book Company, New York, Chaps. 8–9.
Svensson, M., and Ackelid, U., 2010, “Titanium Alloys Manufactured With Electron Beam Melting Mechanical and Chemical Properties,” Materials and Processes for Medical Devices Conference (MDM V), Minneapolis, MN, Aug. 10–12, pp. 189–194.
Simonelli, M., Tse, Y. Y., and Tuck, C., 2014, “Effect of the build orientation on the Mechanical Properties and Fracture Modes of SLM Ti–6Al–4V,” Mater. Sci. Eng. A, 616, pp. 1–11. [CrossRef]

Figures

Grahic Jump Location
Fig. 1

Strain rate sensitivity

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