Benchmarking adhesive performance in bonding FDM TPU to PBF PA12 3D-printed parts

S Sachintha Alwis Weerasinghe A Adam Kłodowski R R Scott Semken G Grzegorz Orzechowski A Aki Mikkola

Abstract

Abstract Additive manufacturing provides an efficient method to rapidly develop prototypes utilizing TPU, which is flexible, and Nylon (PA12), which is known for strength and chemical resistance. Five structural adhesives to bond, without plasma/flame pretreatments, flexible FDM TPU to rigid PBF PA12 were benchmarked using the ASTM D903 (180° peel), D2095 (butt-joint tensile), and D3163/D3164 (lap-shear) standards. The adhesives tested were Loctite HY4070, Permatex Plastic Welder, Mannol 9904, Loctite 401 with 770 primer, and 3M DP8010. Across five samples per test, Loctite 401 + 770 achieved the highest mean strengths with low scatter (COV ≤ 15%) in peel (2.6 N/mm), shear (3.0 MPa), and tensile (2.7 MPa) testing. Occasional adherend-side failures in shear suggested joint strengths approaching that of the substrate. The performances of HY4070 and Permatex were acceptable but fell below that of the Loctite 401 + 770. DP8010 and Mannol underperformed, especially in peel and tensile testing. Stress–displacement curves and failure-surface images suggest these adhesives predominantly experienced cohesive failures. Adhesive TPU-PA12 bonding using Loctite 401 with 770 primer is a robust, simple, and fast assembly approach when the presence of thin bond lines is acceptable. We minimize variability through defined process controls and, for durability-critical products, recommend next-stage tests: aging, impact, UV, and fatigue.

Article Details

Volume / Issue Vol. 16, Issue 1
Published December 19, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (5)

S

Sachintha Alwis Weerasinghe

A

Adam Kłodowski

R

R Scott Semken

G

Grzegorz Orzechowski

A

Aki Mikkola