4.7 Article

Effects of process parameters and cooling gas on powder formation during the plasma rotating electrode process

Related references

Note: Only part of the references are listed.
Article Engineering, Chemical

Impact of atomization gas on characteristics of austenitic stainless steel powder feedstocks for additive manufacturing

M. Z. Gao et al.

Summary: In the powder bed fusion additive manufacturing, the intricate laser-material interactions have led to the necessity for precise alloy composition control in the metal powder feedstock, resulting in the use of specific gases during atomization. Changes in atomization gas affect powder flow and packing, impacting powder performance. Different atomization atmospheres yield stainless steel powders with varied morphologies and rheological properties, influencing powder behavior.

POWDER TECHNOLOGY (2021)

Review Engineering, Chemical

A simple method for assessing powder spreadability for additive manufacturing

Moustafa Ahmed et al.

POWDER TECHNOLOGY (2020)

Article Engineering, Biomedical

A novel design, analysis and 3D printing of Ti-6Al-4V alloy bio-inspired porous femoral stem

Hassan Mehboob et al.

JOURNAL OF MATERIALS SCIENCE-MATERIALS IN MEDICINE (2020)

Article Materials Science, Multidisciplinary

Effect of particle size distribution on the packing of powder beds: A critical discussion relevant to additive manufacturing

Alessandro Averardi et al.

MATERIALS TODAY COMMUNICATIONS (2020)

Article Engineering, Chemical

Low-cost Ti powders for additive manufacturing treated by fluidized bed

Wangwang Ding et al.

POWDER TECHNOLOGY (2019)

Article Engineering, Chemical

Characteristics and atomization behavior of Ti-6Al-4V powder produced by plasma rotating electrode process

Junjie Tang et al.

ADVANCED POWDER TECHNOLOGY (2019)

Review Engineering, Chemical

A review of powdered additive manufacturing techniques for Ti-6al-4v biomedical applications

W. S. W. Harun et al.

POWDER TECHNOLOGY (2018)

Review Engineering, Chemical

A review of powder additive manufacturing processes for metallic biomaterials

W. S. W. Harun et al.

POWDER TECHNOLOGY (2018)

Article Nanoscience & Nanotechnology

Effects of post-processing on cyclic fatigue response of a titanium alloy additively manufactured by electron beam melting

Xiaoli Shui et al.

MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING (2017)

Article Engineering, Chemical

Production of fine calcium powders by centrifugal atomization with rotating quench bath

Liang Tian et al.

POWDER TECHNOLOGY (2017)

Review Engineering, Manufacturing

Powder characterisation techniques and effects of powder characteristics on part properties in powder-bed fusion processes

Austin T. Sutton et al.

VIRTUAL AND PHYSICAL PROTOTYPING (2017)

Article Chemistry, Physical

Preparation, characterization and microwave absorbing properties of FeNi alloy prepared by gas atomization method

Yongbao Feng et al.

JOURNAL OF ALLOYS AND COMPOUNDS (2012)

Article Engineering, Chemical

Influence of process parameters on SAC305 lead-free solder powder produced by centrifugal atomization

Thawatchai Plookphol et al.

POWDER TECHNOLOGY (2011)

Article Engineering, Chemical

Preparation of aluminum/silicon carbide metal matrix composites using centrifugal atomization

Morteza Eslamian et al.

POWDER TECHNOLOGY (2008)

Article Nanoscience & Nanotechnology

Progress toward gas atomization processing with increased uniformity and control

IE Anderson et al.

MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING (2002)