2023
DOI: 10.1007/s12540-023-01553-0
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Influence of Heat Flow on the Grain Morphology and Porosity of Wire Arc Additive Manufactured 2319 Aluminum Alloy

Yuchi Fang,
Leilei Wang,
Longxiang Sun
et al.
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Cited by 2 publications
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“…That is, the porosity is 1.23%, which is better than the porosity (1.52%) obtained by using the percentage of the area from the statistics of Fang et al [37]. The ultimate tensile strength (UTS) can reach 279.96 MPa, which is better than the 274 MPa proposed by Fang et al [38], and the yield strength is all greater than 110 MPa, indicating that the process window obtained from the proposed model can produce the thin-walled components of the WAAM 2219 aluminum alloy with a higher relative density and better mechanical properties.…”
Section: High Relative Density Process Window Reliability Verificationmentioning
confidence: 64%
“…That is, the porosity is 1.23%, which is better than the porosity (1.52%) obtained by using the percentage of the area from the statistics of Fang et al [37]. The ultimate tensile strength (UTS) can reach 279.96 MPa, which is better than the 274 MPa proposed by Fang et al [38], and the yield strength is all greater than 110 MPa, indicating that the process window obtained from the proposed model can produce the thin-walled components of the WAAM 2219 aluminum alloy with a higher relative density and better mechanical properties.…”
Section: High Relative Density Process Window Reliability Verificationmentioning
confidence: 64%