A New Data Processing Approach for the SHPB Test Based on PSO-TWER

Author:

Wang Xuesong12ORCID,Xu Zhenyang23,Guo Lianjun1

Affiliation:

1. School of Materials Science and Engineering, Shenyang University of Technology, Shenyang 110870, China

2. College of Mining Engineering, University of Science and Technology, Anshan 114051, China

3. Engineering Research Center of Green Mining of Metal Mineral Resources Liaoning Province, Anshan 114051, China

Abstract

This study addresses the challenge of accurately determining the arrival time of stress wave signals in SHPB test data processing. To eliminate human error, we introduce the time-window energy ratio method and evaluate six filters for noise reduction using box fractal dimensions. A mathematical model is established to optimize the stress equilibrium and impact process, which is solved using particle swarm optimization, resulting in the PSO-TWER method. We explore the impact of inertia weight and calculation methods on optimization outcomes, defining a stress equilibrium evaluation index. The results indicate that time-window length significantly affects arrival-time outputs, and the dynamic inertia weight factor enhances optimization convergence. The method accurately determines arrival times and effectively screens test data, providing a robust approach for SHPB test data processing.

Funder

National Natural Science Foundation of China

Educational Commission of Liaoning Province of China

Liao Ning Revitalization Talents Program

Foundation for University Key Teacher by University of Science and Technology Liaoning

Publisher

MDPI AG

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