A novel unified data-based approach for determining the material constants in complex unified constitutive equations
Zhang, Chi and Zou, Guotong and Lu, Qiong and Liu, Yuehan and Yasmeen, Tabassam and Hopper, Christopher and Aucott, Lee and Jiang, Jun (2026) A novel unified data-based approach for determining the material constants in complex unified constitutive equations. International Journal of Non-Linear Mechanics, 180. 105249. ISSN 0020-7462 (https://doi.org/10.1016/j.ijnonlinmec.2025.105249)
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Abstract
In the hot metal forming processes, materials deform viscoplastically and the microstructure changes dynamically, and constitutive equations used to characterize the material flow and microstructure evolution can be complicated. Although different types of constitutive equations have been proposed by many researchers, due to the strong non-linear relationship and interconnectivity between the variables, determining the material constants could be complex, and it lacks a unified optimization method and program for these problems. This work will develop a groundbreaking step-by-step optimization methodology to determine the material constants in constitutive equations effectively and efficiently. Relationships between the variables will be analyzed, and the computational complexity and cost will be reduced by dividing the whole optimization process into several steps and considering only one or several variables in each step. Five different sets of experimental data for different materials and forming conditions will be considered in this work for demonstration, and different constitutive equations will be used to describe the material flow behaviors and microstructure evolution, where the material constants will be determined using the proposed optimization method. Instead of taking days, weeks or even months to accurately determine the large number of material constants, the proposed unified data-based optimization method only took less than 7 min even for the most complex case, using a conventional personal desktop computer. This transformative optimization method will significantly improve the accuracy and efficiency of viscoplastic constitutive models’ development, enabling more complex microstructure behaviors e.g., phase transformation, void reduction, solid welding quality to be incorporated and reliably modelled.
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Item type: Article ID code: 94020 Dates: DateEventJanuary 2026Published27 August 2025Published Online26 August 2025AcceptedSubjects: Technology > Mechanical engineering and machinery Department: Faculty of Engineering > Design, Manufacture and Engineering Management > Advanced Forming Research Centre (AFRC) Depositing user: Pure Administrator Date deposited: 03 Sep 2025 08:44 Last modified: 17 Nov 2025 22:37 Related URLs: URI: https://strathprints.strath.ac.uk/id/eprint/94020
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