Machine learning method to predict dynamic compressive response of concrete-like material at high strain rates
Author:
Funder
Fundamental Research Funds for the Central Universities
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
Metals and Alloys,Mechanical Engineering,Ceramics and Composites,Computational Mechanics
Reference47 articles.
1. Research of an SHPB device in two-by-two form for impact experiments of concrete-like heterogeneous materials;Guo;Acta Mech Solida Sin,2021
2. Further numerical investigation on concrete dynamic behaviors with considering stress non-equilibrium in SHPB test based on the waveform features;Lv;Acta Mech Sin,2020
3. Energy dissipation characteristic of red sandstone in the dynamic Brazilian disc test with SHPB setup;Gong;Adv Civ Eng,2020
4. Split Hopkinson (Kolsky) bar design, testing and applications;Chen,2011
5. Determining the impact behavior of concrete beams through experimental testing and meso-scale simulation: I. Drop-weight tests;Wu;Eng Fract Mech,2015
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