Version 1.0

Additively Manufactured Ti–6Al–4V Thin-wall Thermal-Porosity Characterization Data

Zamiela, Christian;Tian, Wenmeng;Guo, Shenghan;Bian, Linkan

Description

In-process thermal melt pool images and post-fabrication porosity labels are acquired for Ti-6Al-4V thin-walled structure fabricated with OPTOMEC Laser Engineered Net Shaping (LENS™) 750 system. The data is collected for nondestructive thermal characterization of direct laser deposition (DLD) build. More specifically, a Stratonics Dual-wavelength pyrometer captures a top-down view of the melt pool of the deposition heat-affected zone (HAZ), which is above 1660°C, and Nikon X-Ray Computed Tomography (XCT) XT H225 captures internal porosity reflective of lack of fusion during the fabrication process. The pyrometer images provided in Comma Separated Values (CSV) format are cropped to center the melt pool to temperatures above 1000℃, indicative of the shape and distribution of temperature values. Melt pool coordinates are determined using pyrometer specifications and thin wall build parameters. XCT porosity labels of sizes between 0.05 mm to 1.00 mm are registered within 0.5 mm of the melt pool image coordinate. An XCT porosity-labeled table provided in the Excel spreadsheet format contains time stamps, melt pool coordinates, melt pool eccentricity, peak temperature, peak temperature coordinates, pore size, and pore label. Thermal-porosity data utilization aids in generating data-driven quality control models for manufacturing parts with lower degrees of porosity.

Citations (0)

Mentions (0)

Metrics

Dataset Index

0.4

FAIR Score

15%

Citations

1

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

Harvard Dataverse

License

Creative Commons Zero v1.0 Universal

Assigned Domain

Subfield

Mechanical Engineering

Field

Engineering

Domain

Physical Sciences

Confidence Score

100%

Source

Open Alex

Keywords

EngineeringAdditive manufacturingProcess monitoringPyrometer thermal imagingMelt poolX-ray computed tomography

Normalization Factors

FT

57.69

CTw

1.00

MTw

1.00