Load-Dependent Instrumented Indentation Test and Local Micromechanical Response near a Pore in Additively Manufactured IN718

In this work, the load-dependent indentation response of as-built Inconel 718 produced by direct laser deposition was studied, followed by local mapping around a single surface-intersecting pore. A working load of 100 mN was selected because the indentation modulus approached a depth-independent plateau and the penetration depth was substantially larger than the measured surface roughness. At this load, the reference matrix response was HIT = 2.69 ± 0.26 GPa and EIT = 160 ± 11 GPa. An equivalent contact radius ac was calculated from the projected contact area, and pore-edge distance was normalized as ξ = s/ac. For the reference response, ac ≈ 3.44 µm and the first numerically defined position at s = 20 µm corresponded to ξ ≈ 5.8. Robust regression of 56 individual measurements showed no statistically resolved dependence of EIT on ξ, whereas a small negative HIT slope was observed and interpreted cautiously because of directional variability. The analysis is restricted to this single pore and to ξ ≥ 5.8; the immediate pore-edge regime was not experimentally resolved. The contact-scale normalization provides a reproducible framework for interpreting local indentation data near a geometrical defect without treating the two-dimensional pore-area fraction as bulk porosity.

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Journal
Applied Mechanics
Published
2026-09-24
DOI
https://doi.org/10.3390/applmech7040079
Primary Topic
Additive Manufacturing Materials and Processes
Type
article
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article

Load-Dependent Instrumented Indentation Test and Local Micromechanical Response near a Pore in Additively Manufactured IN718

А. S. Umanskii, Alexander Ilyinsky, Kirill Igorevich Doronin, Artem Kondrat'ev
Applied Mechanics
Additive Manufacturing Materials and Processes
article

Load-Dependent Instrumented Indentation Test and Local Micromechanical Response near a Pore in Additively Manufactured IN718

А. S. Umanskii, Alexander Ilyinsky, Kirill Igorevich Doronin, Artem Kondrat'ev
article en

Abstract

In this work, the load-dependent indentation response of as-built Inconel 718 produced by direct laser deposition was studied, followed by local mapping around a single surface-intersecting pore. A working load of 100 mN was selected because the indentation modulus approached a depth-independent plateau and the penetration depth was substantially larger than the measured surface roughness. At this load, the reference matrix response was HIT = 2.69 ± 0.26 GPa and EIT = 160 ± 11 GPa. An equivalent contact radius ac was calculated from the projected contact area, and pore-edge distance was normalized as ξ = s/ac. For the reference response, ac ≈ 3.44 µm and the first numerically defined position at s = 20 µm corresponded to ξ ≈ 5.8. Robust regression of 56 individual measurements showed no statistically resolved dependence of EIT on ξ, whereas a small negative HIT slope was observed and interpreted cautiously because of directional variability. The analysis is restricted to this single pore and to ξ ≥ 5.8; the immediate pore-edge regime was not experimentally resolved. The contact-scale normalization provides a reproducible framework for interpreting local indentation data near a geometrical defect without treating the two-dimensional pore-area fraction as bulk porosity.

Applied MechanicsVol. 7(4)
ITMO University (RU), Saint Petersburg Mining University (RU)
Sustainable cities and communities
Openalex Percentile: Top 21%
Additive Manufacturing Materials and Processes
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Load-Dependent Instrumented Indentation Test and Local Micromechanical Response near a Pore in Additively Manufactured IN718 — А. S. Umanskii, Alexander Ilyinsky, et al. · Applied Mechanics (2026) | TGRS Research Map | TGRS