Investigation on adhesive joining of additively manufactured ULTEM 9085 and ALSi10Mg: effect of adhesive type and substrate characteristics

Abstract In this work, the adhesive bonding behaviour of joints between FDM-manufactured ULTEM™ 9085 and LPBF-produced AlSi10Mg was experimentally investigated under as-built surface conditions, deliberately avoiding any surface pre-treatment to assess the intrinsic bonding capability of different adhesive systems. Three commercially available structural adhesives with distinct chemistries were considered: an epoxy (Araldite ® 420 A/B), a methacrylate (Plexus MA832) and a cyanoacrylate (LOCTITE ® 401). Single-lap shear tests were carried out according to ASTM D3163-01, while the fracture mechanisms were investigated through optical microscopy, SEM observations and EDS microanalysis. The mechanical response was interpreted considering the combined contribution of adhesive chemistry, the controlled characteristics of the FDM-manufactured ULTEM™ substrate and the different as-built surface conditions of the LPBF AlSi10Mg adherends. Araldite ® 420 A/B exhibited the highest lap-shear strength together with predominantly cohesive fracture behaviour and limited sensitivity to the investigated surface conditions. Plexus MA832 showed the lowest mechanical performance, with failure mainly occurring at the polymer/adhesive interface, whereas LOCTITE ® 401 exhibited intermediate strength associated with a mixed cohesive/adhesive fracture mechanism. Overall, the study demonstrates that, in hybrid AM polymer–metal joints, the dominant factor controlling adhesion shifts from adhesive bulk properties to interfacial compatibility or substrate morphology depending on the adhesive system. These findings provide useful insights for the design of reliable and sustainable joining strategies using as-built surfaces.

Authors

Publication Details

Journal
The International Journal of Advanced Manufacturing Technology
Published
2026-08-26
DOI
https://doi.org/10.1007/s00170-026-18912-x
Primary Topic
Mechanical Behavior of Composites
Type
article
Field-Weighted Citation Impact
0.00

Funders

Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Investigation on adhesive joining of additively manufactured ULTEM 9085 and ALSi10Mg: effect of adhesive type and substrate characteristics

Ilaria Papa, A. Langella, Martina Panico
The International Journal of Advanced Manufacturing Technology
Mechanical Behavior of Composites
article

Investigation on adhesive joining of additively manufactured ULTEM 9085 and ALSi10Mg: effect of adhesive type and substrate characteristics

Ilaria Papa, A. Langella, Martina Panico
article en

Abstract

Abstract In this work, the adhesive bonding behaviour of joints between FDM-manufactured ULTEM™ 9085 and LPBF-produced AlSi10Mg was experimentally investigated under as-built surface conditions, deliberately avoiding any surface pre-treatment to assess the intrinsic bonding capability of different adhesive systems. Three commercially available structural adhesives with distinct chemistries were considered: an epoxy (Araldite ® 420 A/B), a methacrylate (Plexus MA832) and a cyanoacrylate (LOCTITE ® 401). Single-lap shear tests were carried out according to ASTM D3163-01, while the fracture mechanisms were investigated through optical microscopy, SEM observations and EDS microanalysis. The mechanical response was interpreted considering the combined contribution of adhesive chemistry, the controlled characteristics of the FDM-manufactured ULTEM™ substrate and the different as-built surface conditions of the LPBF AlSi10Mg adherends. Araldite ® 420 A/B exhibited the highest lap-shear strength together with predominantly cohesive fracture behaviour and limited sensitivity to the investigated surface conditions. Plexus MA832 showed the lowest mechanical performance, with failure mainly occurring at the polymer/adhesive interface, whereas LOCTITE ® 401 exhibited intermediate strength associated with a mixed cohesive/adhesive fracture mechanism. Overall, the study demonstrates that, in hybrid AM polymer–metal joints, the dominant factor controlling adhesion shifts from adhesive bulk properties to interfacial compatibility or substrate morphology depending on the adhesive system. These findings provide useful insights for the design of reliable and sustainable joining strategies using as-built surfaces.

The International Journal of Advanced Manufacturing Technology
Università degli Studi di Napoli Federico II
Openalex Percentile: Top 18%
Mechanical Behavior of Composites
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.