A nonlinear beam model for photoresponsive thermoelastic solids driven by localised heating

Fuente: arXiv
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Main Authors: Simpkins, William T., Taffetani, Matteo, Hennessy, Matthew G.
Format: Preprint
Published: 2026
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author Simpkins, William T.
Taffetani, Matteo
Hennessy, Matthew G.
author_facet Simpkins, William T.
Taffetani, Matteo
Hennessy, Matthew G.
contents Asymptotic methods are used to derive a geometrically nonlinear beam model for thermoelastic solids with a spatially localised heat source. The asymptotic reduction is based on collapsing the heated region to a point. Away from the point of heating, the governing equations reduce to a pair of beam equations with nonlinear von Kármán strains. The effects of the localised heat source are captured through asymptotically consistent jump conditions that hold at the point of heating. The model accounts for changes in beam length due to longitudinal thermal expansion and bending moments produced by transverse thermal gradients. The model is used to study light-induced actuation of photoresponsive hydrogel beams with localised heating arising from laser irradiation. Two loading scenarios are considered. In the first, the ends of the beam are assumed to be free, resulting in a V-shaped deformation upon heating. An analytical expression for the fold angle of the V is provided. In the second, the beam is assumed to be in a pre-buckled configuration due to clamped end conditions. The critical conditions leading to light-driven snap-through are calculated. Offsetting the laser from the mid-point of the beam is found to inhibit the onset of snap through.
format Preprint
id arxiv_https___arxiv_org_abs_2605_28382
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle A nonlinear beam model for photoresponsive thermoelastic solids driven by localised heating
Simpkins, William T.
Taffetani, Matteo
Hennessy, Matthew G.
Classical Physics
Soft Condensed Matter
Asymptotic methods are used to derive a geometrically nonlinear beam model for thermoelastic solids with a spatially localised heat source. The asymptotic reduction is based on collapsing the heated region to a point. Away from the point of heating, the governing equations reduce to a pair of beam equations with nonlinear von Kármán strains. The effects of the localised heat source are captured through asymptotically consistent jump conditions that hold at the point of heating. The model accounts for changes in beam length due to longitudinal thermal expansion and bending moments produced by transverse thermal gradients. The model is used to study light-induced actuation of photoresponsive hydrogel beams with localised heating arising from laser irradiation. Two loading scenarios are considered. In the first, the ends of the beam are assumed to be free, resulting in a V-shaped deformation upon heating. An analytical expression for the fold angle of the V is provided. In the second, the beam is assumed to be in a pre-buckled configuration due to clamped end conditions. The critical conditions leading to light-driven snap-through are calculated. Offsetting the laser from the mid-point of the beam is found to inhibit the onset of snap through.
title A nonlinear beam model for photoresponsive thermoelastic solids driven by localised heating
topic Classical Physics
Soft Condensed Matter
url https://arxiv.org/abs/2605.28382