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Dynamic characteristics study of composite base plate: numerical simulation, processing technology research and modal
Fengfeng Wang1,2, Guolai Yang3, Lei Li3
1School of Mechanical and Electrical Engineering, Jinling Institute of Technology, Nanjing, 211169, China. wangfengfengxcd@163.com.
Lightweight composite mortar base plates were developed using modal analysis for enhanced mobility. Experimental results validated the efficient modeling method, ensuring structural reliability for future artillery applications.
Area of Science:
- Materials Science
- Mechanical Engineering
- Defense Technology
Background:
- Mortars are vital in modern warfare, necessitating improved mobility.
- Composite materials offer lightweight advantages for critical components like mortar base plates.
- Modal analysis is key for understanding and optimizing the dynamic behavior of structural components.
Purpose of the Study:
- To develop an efficient modeling method for composite mortar base plates.
- To design composite layups and establish computational models for modal analysis.
- To validate the model through experimental modal analysis and perform dynamic response analysis.
Main Methods:
- Finite element modeling and subspace method for eigenvalue problem computation.
- Composite layup design and specialized structural connection schemes.
- Experimental modal analysis using the hammering method for validation.
Main Results:
- A consistent correlation was found between computational and experimental modal analysis results.
- The developed model accurately predicts the dynamic characteristics of composite base plates.
- The study demonstrated the feasibility of using composite materials for lightweight mortar base plates.
Conclusions:
- The proposed efficient modeling method guides the structural design and optimization of composite base plates.
- This research supports the integration of advanced composite materials in artillery systems.
- Enhanced mobility through lightweight base plates is achievable for future mortar systems.
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