Related Experiment Video
Updated: Nov 20, 2025

Strain Sensing Based on Multiscale Composite Materials Reinforced with Graphene Nanoplatelets
Published on: November 7, 2016
Analysis of strain sensitivity under flexural load of 3D printed carbon nanotube-doped epoxy circuits
J Manzano-Santamaría1, M Sánchez1, X F Sánchez-Romate1
1Materials Science and Engineering Area, University Rey Juan Carlos, C/Tulipán s/n, Móstoles 28933, Madrid, Spain.
Abstract:
A 3D printing system able to print circuits of conductive epoxy resin doped with carbon nanotubes (CNTs) is proposed. Different simple circuits, more specifically lines and strain gauge patterns, made of resins reinforced with 0.3, 0.5, 0.8 and 1 wt% of CNTs were printed on the surface of glass fiber laminates. It was observed that increasing the CNT content reduced the wettability of the printed circuits on the glass fiber substrate. In every case the contact angle was far below 90°. Furthermore, the strain sensing capabilities were analyzed under a flexural load. The results showed that the sensitivity increased with CNT content (with gauge factor values from 1.5 to 2.5) as a result of the prevalent effect of well-dispersed areas due to a reduction in the tunneling distance. On the other hand, the strain gauges showed a lower sensitivity (around 20%-40% less, depending on the condition) compared with line circuits due to localized compressive effects. Furthermore, good repeatability of the strain sensors was proved during cycling tests, with similar baseline and peak values for the electrical resistance in each cycle. Therefore, the proposed materials have a high potential for applications in structural health monitoring.
Related Concept Videos
Stress-Strain Diagram - Ductile Materials
Three-Dimensional Analysis of Strain
Strain and Elastic Modulus
Relation between Poisson's ratio, Modulus of Elasticity and Modulus of Rigidity
Residual Stresses in Bending
Flexural Stress
Hooke's Law states that within the material's elastic limits, stress is directly proportional to strain. In a member experiencing a bending moment, the strain at any point is relative to its distance...

