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Analysis of the Machining Process of Titanium Ti6Al-4V Parts Manufactured by Wire Arc Additive Manufacturing (WAAM)
by
Gil Del Val, Alain
, Alonso, Unai
, Veiga, Fernando
, Suárez, Alfredo
in
Accuracy
/ Additive manufacturing
/ Aircraft
/ Cutting tools
/ Experiments
/ Geometry
/ Lasers
/ Machine tools
/ Machining
/ Mechanical properties
/ Plasma arc welding
/ Plasma jets
/ Production methods
/ Stress concentration
/ Titanium alloys
/ Titanium base alloys
/ Wire
2020
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Analysis of the Machining Process of Titanium Ti6Al-4V Parts Manufactured by Wire Arc Additive Manufacturing (WAAM)
by
Gil Del Val, Alain
, Alonso, Unai
, Veiga, Fernando
, Suárez, Alfredo
in
Accuracy
/ Additive manufacturing
/ Aircraft
/ Cutting tools
/ Experiments
/ Geometry
/ Lasers
/ Machine tools
/ Machining
/ Mechanical properties
/ Plasma arc welding
/ Plasma jets
/ Production methods
/ Stress concentration
/ Titanium alloys
/ Titanium base alloys
/ Wire
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Analysis of the Machining Process of Titanium Ti6Al-4V Parts Manufactured by Wire Arc Additive Manufacturing (WAAM)
by
Gil Del Val, Alain
, Alonso, Unai
, Veiga, Fernando
, Suárez, Alfredo
in
Accuracy
/ Additive manufacturing
/ Aircraft
/ Cutting tools
/ Experiments
/ Geometry
/ Lasers
/ Machine tools
/ Machining
/ Mechanical properties
/ Plasma arc welding
/ Plasma jets
/ Production methods
/ Stress concentration
/ Titanium alloys
/ Titanium base alloys
/ Wire
2020
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Analysis of the Machining Process of Titanium Ti6Al-4V Parts Manufactured by Wire Arc Additive Manufacturing (WAAM)
Journal Article
Analysis of the Machining Process of Titanium Ti6Al-4V Parts Manufactured by Wire Arc Additive Manufacturing (WAAM)
2020
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Overview
In the current days, the new range of machine tools allows the production of titanium alloy parts for the aeronautical sector through additive technologies. The quality of the materials produced is being studied extensively by the research community. This new manufacturing paradigm also opens important challenges such as the definition and analysis of the optimal strategies for finishing-oriented machining in this type of part. Researchers in both materials and manufacturing processes are making numerous advances in this field. This article discusses the analysis of the production and subsequent machining in the quality of TI6Al4V produced by Wire Arc Additive Manufacturing (WAAM), more specifically Plasma Arc Welding (PAW). The promising results observed make it a viable alternative to traditional manufacturing methods.
Publisher
MDPI AG,MDPI
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