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Generalized configurational force for thermoelasticity with application to isogeometric analysis of thermoelastic crack propagation | Synapse
March 3, 2026
Generalized configurational force for thermoelasticity with application to isogeometric analysis of thermoelastic crack propagation
CL
Chung-Shuo Lee
PC
Pei-En Chou
GS
Ganesh Subbarayan
Key Points
Thermoelasticity impacts crack propagation behavior in materials under thermal stress, enhancing predictions of failure.
The study identifies configurational force as a key element influencing crack propagation in thermoelastic materials, yielding improved results.
Analysis of isogeometric methods provides a new framework for studying the interaction of thermal and mechanical properties in materials.
Findings indicate that understanding configurational forces may enable better approaches to prevent material failure during thermal cycles.
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Lee et al. (Tue,) studied this question.
synapsesocial.com/papers/69a76060c6e9836116a2d10e
https://doi.org/https://doi.org/10.1016/j.jmps.2026.106541