Optimization of Creep Constitutive Modeling of Lead-Free Solder Using Gene Expression Programming Methods
Created by W.Langdon from
gp-bibliography.bib Revision:1.8344
- @InProceedings{Chen:2024:ICEPT,
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author = "Wei Chen3 and Xu He and Xiaowei Xu and Lu Liu",
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title = "Optimization of Creep Constitutive Modeling of
Lead-Free Solder Using Gene Expression Programming
Methods",
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booktitle = "2024 25th International Conference on Electronic
Packaging Technology (ICEPT)",
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year = "2024",
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month = aug,
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keywords = "genetic algorithms, genetic programming, Adaptation
models, Analytical models, Creep, Lead, Predictive
models, Prediction algorithms, creep constitutive
modelling, gene expression programming methods, machine
learning, gene expression programming",
-
ISSN = "2836-9734",
-
DOI = "
doi:10.1109/ICEPT63120.2024.10668800",
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abstract = "In this paper, the GEP method is used to derive an
ontological model for creep data, focusing on the
mechanical properties and structural deformation
mechanisms of solder at different scales. By analysing
the effect of micro-and meso-structural morphology on
the material, experimental validation is provided for
the construction of an ontological model that depicts
the viscoplasticity of Pb- Free solder in detail.
Iterative optimisation of a larger population of
experimental samples will drive the development of a
fine-grained intrinsic model that will be supported by
solid theoretical and empirical evidence, advancing the
field towards deeper understanding and innovation. In
this study, the GEP algorithm is used to fit the
intrinsic model of solder creep and is shown to have
good fitting results. The advantages of GEP in equation
model fitting are the simplicity of its heuristic
algorithm, the ease of its implementation and its good
optimisation results. In addition, GEP is highly
flexible, adaptable and robust to noisy data. After
comparing the experimental data simulations, it is
found that GEP is able to accurately analyse and
predict in the establishment and optimisation of creep
model, which brings an important contribution to the
field of solder research.",
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notes = "Also known as \cite{10668800}
Department of physics, Nanjing University of science
and technology, Nanjing, China",
- }
Genetic Programming entries for
Wei Chen3
Xu He
Xiaowei Xu
Lu Liu
Citations