Tensile Properties and Microstructures of Laser-Formed Ti-6Al-4V

被引:1
|
作者
J. Alcisto
A. Enriquez
H. Garcia
S. Hinkson
T. Steelman
E. Silverman
P. Valdovino
H. Gigerenzer
J. Foyos
J. Ogren
J. Dorey
K. Karg
T. McDonald
O. S. Es-Said
机构
[1] Loyola Marymount University,Mechanical Engineering Department
[2] Northrop Grumman,undefined
[3] Space Technology,undefined
[4] Triton Systems Incorporated,undefined
关键词
laser free-form fabrication (LF3); mechanical properties; microstructure; Ti-6Al-4V;
D O I
暂无
中图分类号
学科分类号
摘要
The room temperature tensile properties of Ti-6Al-4V alloy prepared under two different processing routes were evaluated and compared. One group of samples was prepared by conventional casting-forging-rolling into flat plates. The other group was prepared by using Triton’s Laser Free-Form Fabrication (LF3)™ processes, i.e., a laser was used to melt pre-alloyed powders of the required metallic composition as they were dropped onto a moveable substrate programmed to move in such a manner as to form a solid alloy plate. Five populations of Ti-6Al-4V were evaluated: a standard wrought form, an as-deposited form, a machined as-deposited form, a heat-treated as-deposited form, and a machined as-deposited and heat-treated form. The poorest mechanical properties occurred with the rough surfaces, likely due to existing microcracks and stress concentrations. The LF3™ as-deposited material had mechanical properties comparable to, if not higher than, the mechanical properties of the wrought material. Further evaluations of the laser-formed material for complex spacecraft piece parts were warranted, specifically in regards to improving the surface finish of the materials.
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页码:203 / 212
页数:9
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