Powder Casting: Producing Bulk Metal Components from Powder Without Compaction

被引:0
|
作者
James D. Paramore
Matthew K. Dunstan
Brady G. Butler
Daniel O. Lewis
机构
[1] United States Army Research Laboratory,Department of Materials Science and Engineering
[2] Texas A&M University,undefined
来源
JOM | 2020年 / 72卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Powder casting was developed to produce metal components with near-theoretical density from low-cost, loose powder using hydrogen sintering and phase transformation. This has significant implications for non-beam metal additive manufacturing processes (e.g., metal extrusion AM, binder jetting, and ordered powder lithography), which produce green parts with relatively low densities. Additionally, powder casting can enable the production of geometries typically not suitable for powder processing, such as plate and bar stock. In the current study, Ti-6Al-4V, Zr, and Hf were densified to 99.2%, 95.7%, and 94.0% of their respective theoretical densities, when sintered from loose powder at 1200°C for 4 h. The relative density and pore size distributions of Ti-6Al-4V produced by powder casting were very similar to those produced by press-and-sinter HSPT. The powder-cast Ti-6Al-4V samples also displayed ductility consistent with press-and-sinter HSPT. However, they exhibited lower strength due to unintentional overheating during the dehydrogenation step.
引用
收藏
页码:3112 / 3120
页数:8
相关论文
共 50 条
  • [1] Powder Casting: Producing Bulk Metal Components from Powder Without Compaction
    Paramore, James D.
    Dunstan, Matthew K.
    Butler, Brady G.
    Lewis, Daniel O.
    [J]. JOM, 2020, 72 (09) : 3112 - 3120
  • [2] SIMULATION OF THE COMPACTION OF POWDER COMPONENTS
    WEBER, GG
    BROWN, SB
    [J]. 1989 ADVANCES IN POWDER METALLURGY, VOLS 1-3, 1989, 1-3 : A105 - A118
  • [3] Fracture in metal powder compaction
    Tahir, SM
    Ariffin, AK
    [J]. INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2006, 43 (06) : 1528 - 1542
  • [4] Explosive Compaction of Metal Powder
    Mohammadi, K.
    Dravizeh, A.
    [J]. ADVANCES IN MATERIALS AND PROCESSING TECHNOLOGIES, PTS 1 AND 2, 2010, 83-86 : 959 - 967
  • [5] COMPACTION OF METAL-POWDER BY ROLLING
    SHIMA, S
    YAMADA, M
    [J]. POWDER METALLURGY, 1984, 27 (01) : 39 - 44
  • [6] General constitutive equation for metal powder compaction and its application to closed die compaction and powder rolling
    Wang, YB
    Matsugi, K
    Yanagisawa, O
    [J]. JOURNAL OF THE JAPAN INSTITUTE OF METALS, 2003, 67 (05) : 252 - 258
  • [7] Ultrasonic assisted hot metal powder compaction
    Abedini, Rezvan
    Abdullah, Amir
    Alizadeh, Yunes
    [J]. ULTRASONICS SONOCHEMISTRY, 2017, 38 : 704 - 710
  • [8] Balanced die method for metal powder compaction
    Holownia, BP
    [J]. POWDER METALLURGY, 1996, 39 (03) : 207 - 209
  • [9] Numerical modelling of cold compaction of metal powder
    Redanz, P
    [J]. INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 1998, 40 (11) : 1175 - 1189
  • [10] COMPARISON OF EQUATIONS FOR METAL-POWDER COMPACTION
    DEJU, R
    GEORGEONI, P
    TURCANU, CN
    DOBOS, I
    [J]. REVUE ROUMAINE DE PHYSIQUE, 1979, 24 (06): : 627 - 636