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Weld zone porosity elimination process of galvanized steel zero-gap lap joints in remote laser spiral welding

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Weld zone porosity elimination process of galvanized steel zero-gap lap joints in remote laser spiral welding. / Xiong, W.; Zhang, P.; Yu, Z. et al.
In: MATERIALS RESEARCH EXPRESS, Vol. 8, No. 6, 066502, 02.06.2021.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Xiong, W, Zhang, P, Yu, Z, Yan, H, Wu, D, Lu, Q & Tian, Y 2021, 'Weld zone porosity elimination process of galvanized steel zero-gap lap joints in remote laser spiral welding', MATERIALS RESEARCH EXPRESS, vol. 8, no. 6, 066502. https://doi.org/10.1088/2053-1591/ac04ee

APA

Xiong, W., Zhang, P., Yu, Z., Yan, H., Wu, D., Lu, Q., & Tian, Y. (2021). Weld zone porosity elimination process of galvanized steel zero-gap lap joints in remote laser spiral welding. MATERIALS RESEARCH EXPRESS, 8(6), Article 066502. https://doi.org/10.1088/2053-1591/ac04ee

Vancouver

Xiong W, Zhang P, Yu Z, Yan H, Wu D, Lu Q et al. Weld zone porosity elimination process of galvanized steel zero-gap lap joints in remote laser spiral welding. MATERIALS RESEARCH EXPRESS. 2021 Jun 2;8(6):066502. doi: 10.1088/2053-1591/ac04ee

Author

Xiong, W. ; Zhang, P. ; Yu, Z. et al. / Weld zone porosity elimination process of galvanized steel zero-gap lap joints in remote laser spiral welding. In: MATERIALS RESEARCH EXPRESS. 2021 ; Vol. 8, No. 6.

Bibtex

@article{b0c83e2cd5ae42db8dd9ef1a20f89562,
title = "Weld zone porosity elimination process of galvanized steel zero-gap lap joints in remote laser spiral welding",
abstract = "The remote Laser spiral welding was utilized to zero-gap lap welding of galvanized steel. The relationship between pores in the weld zone and process parameters were investigated. The combination of high keyhole velocity and small spiral spacing was found to be essential for eliminating porosity in the weld area. As the spiral pitch decreases from 0.7 mm to 0.3 mm, the porosity decreases rapidly from approximately 20% to 0%. When the spiral spacing of 0.3 mm, the porosity reaches an acceptable quality level of less than 1%. The porosity tends to decrease as the keyhole velocity increases from 3 m min-1 to 9 m min-1. At the spiral pitch of 0.3 mm and keyhole velocity of 9 m min-1, the porosity in the weld area is almost completely suppressed. The peak shear strength of the spiral weld without porosity was 8819.8 N and the peak shear strength of the spiral weld with porosity was 5104.3 N. The tensile shear performance was increased by 72.8%. The low porosity caused by the spiral laser beam improves the tensile shear strength of the oscillating weld. ",
keywords = "Galvanizing, Laser beams, Tensile strength, Welding, Welds, Acceptable quality levels, Elimination process, Galvanized steels, Low porosity, Peak shear strength, Process parameters, Tensile shear strength, Tensile shears, Porosity",
author = "W. Xiong and P. Zhang and Z. Yu and H. Yan and D. Wu and Q. Lu and Y. Tian",
year = "2021",
month = jun,
day = "2",
doi = "10.1088/2053-1591/ac04ee",
language = "English",
volume = "8",
journal = "MATERIALS RESEARCH EXPRESS",
issn = "2053-1591",
publisher = "IOP Publishing Ltd.",
number = "6",

}

RIS

TY - JOUR

T1 - Weld zone porosity elimination process of galvanized steel zero-gap lap joints in remote laser spiral welding

AU - Xiong, W.

AU - Zhang, P.

AU - Yu, Z.

AU - Yan, H.

AU - Wu, D.

AU - Lu, Q.

AU - Tian, Y.

PY - 2021/6/2

Y1 - 2021/6/2

N2 - The remote Laser spiral welding was utilized to zero-gap lap welding of galvanized steel. The relationship between pores in the weld zone and process parameters were investigated. The combination of high keyhole velocity and small spiral spacing was found to be essential for eliminating porosity in the weld area. As the spiral pitch decreases from 0.7 mm to 0.3 mm, the porosity decreases rapidly from approximately 20% to 0%. When the spiral spacing of 0.3 mm, the porosity reaches an acceptable quality level of less than 1%. The porosity tends to decrease as the keyhole velocity increases from 3 m min-1 to 9 m min-1. At the spiral pitch of 0.3 mm and keyhole velocity of 9 m min-1, the porosity in the weld area is almost completely suppressed. The peak shear strength of the spiral weld without porosity was 8819.8 N and the peak shear strength of the spiral weld with porosity was 5104.3 N. The tensile shear performance was increased by 72.8%. The low porosity caused by the spiral laser beam improves the tensile shear strength of the oscillating weld.

AB - The remote Laser spiral welding was utilized to zero-gap lap welding of galvanized steel. The relationship between pores in the weld zone and process parameters were investigated. The combination of high keyhole velocity and small spiral spacing was found to be essential for eliminating porosity in the weld area. As the spiral pitch decreases from 0.7 mm to 0.3 mm, the porosity decreases rapidly from approximately 20% to 0%. When the spiral spacing of 0.3 mm, the porosity reaches an acceptable quality level of less than 1%. The porosity tends to decrease as the keyhole velocity increases from 3 m min-1 to 9 m min-1. At the spiral pitch of 0.3 mm and keyhole velocity of 9 m min-1, the porosity in the weld area is almost completely suppressed. The peak shear strength of the spiral weld without porosity was 8819.8 N and the peak shear strength of the spiral weld with porosity was 5104.3 N. The tensile shear performance was increased by 72.8%. The low porosity caused by the spiral laser beam improves the tensile shear strength of the oscillating weld.

KW - Galvanizing

KW - Laser beams

KW - Tensile strength

KW - Welding

KW - Welds

KW - Acceptable quality levels

KW - Elimination process

KW - Galvanized steels

KW - Low porosity

KW - Peak shear strength

KW - Process parameters

KW - Tensile shear strength

KW - Tensile shears

KW - Porosity

U2 - 10.1088/2053-1591/ac04ee

DO - 10.1088/2053-1591/ac04ee

M3 - Journal article

VL - 8

JO - MATERIALS RESEARCH EXPRESS

JF - MATERIALS RESEARCH EXPRESS

SN - 2053-1591

IS - 6

M1 - 066502

ER -