Replication Data for: Analytical Description of the Criterion for the Columnar-To-Equiaxed Transition During Laser Beam Welding of Aluminum Alloys (doi:10.18419/darus-2075)

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Document Description

Citation

Title:

Replication Data for: Analytical Description of the Criterion for the Columnar-To-Equiaxed Transition During Laser Beam Welding of Aluminum Alloys

Identification Number:

doi:10.18419/darus-2075

Distributor:

DaRUS

Date of Distribution:

2021-08-05

Version:

1

Bibliographic Citation:

Böhm, Constantin; Hagenlocher, Christian; Wagner, Jonas; Graf, Thomas; Weihe, Stefan, 2021, "Replication Data for: Analytical Description of the Criterion for the Columnar-To-Equiaxed Transition During Laser Beam Welding of Aluminum Alloys", https://doi.org/10.18419/darus-2075, DaRUS, V1

Study Description

Citation

Title:

Replication Data for: Analytical Description of the Criterion for the Columnar-To-Equiaxed Transition During Laser Beam Welding of Aluminum Alloys

Identification Number:

doi:10.18419/darus-2075

Authoring Entity:

Böhm, Constantin (University of Stuttgart, MPA)

Hagenlocher, Christian (University of Stuttgart, IFSW)

Wagner, Jonas (University of Stuttgart, IFSW)

Graf, Thomas (University of Stuttgart, IFSW)

Weihe, Stefan (University of Stuttgart, MPA)

Grant Number:

398552773

Distributor:

DaRUS

Access Authority:

Böhm, Constantin

Access Authority:

Weihe, Stefan

Depositor:

Böhm, Constantin

Date of Deposit:

2021-07-06

Holdings Information:

https://doi.org/10.18419/darus-2075

Study Scope

Keywords:

Engineering, Laser Beam Welding, Full Penetration Welding, Microstructure, Equiaxed Crystals, Aluminium, Polarising Light Micrographs, Metallography

Abstract:

The here published experimental data was done in a collaborative DFG project between IFSW and MPA (project number 398552773). The published data is repilcation data for a publication. In this project laser beam weld trials were conducted and the resulting weld seams were prepared metallographically. The here presented data is a set of optical micrographs etched with Barker's method. The optical micrographs highlight the type of weld microstrucutre: columnar dendritic and equiaxed dendritic grain structure.

Kind of Data:

images of optical micrographs

Notes:

This work was funded in by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) - project number 398552773.

Methodology and Processing

Sources Statement

Data Access

Other Study Description Materials

Related Publications

Citation

Title:

Böhm, C., Hagenlocher, C., Wagner, J. et al. Analytical Description of the Criterion for the Columnar-To-Equiaxed Transition During Laser Beam Welding of Aluminum Alloys. Metall Mater Trans A 52, 2720-2731 (2021).

Identification Number:

10.1007/s11661-021-06238-0

Bibliographic Citation:

Böhm, C., Hagenlocher, C., Wagner, J. et al. Analytical Description of the Criterion for the Columnar-To-Equiaxed Transition During Laser Beam Welding of Aluminum Alloys. Metall Mater Trans A 52, 2720-2731 (2021).

Other Study-Related Materials

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Top surface of weld seam etched with Barker's method and viewed under polarized light.

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Results_Table.txt

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List of image name, process parameter and measuring results.

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text/plain