防务技术2024,Vol.33Issue(3) :78-99.DOI:10.1016/j.dt.2023.07.008

Tuning microstructures of TC4 ELI to improve explosion resistance

Changle Zhang Yangwei Wang Lin Wang Zixuan Ning Guoju Li Dongping Chen Zhi-Wei Yan Yuchen Song Xucai Wang
防务技术2024,Vol.33Issue(3) :78-99.DOI:10.1016/j.dt.2023.07.008

Tuning microstructures of TC4 ELI to improve explosion resistance

Changle Zhang 1Yangwei Wang 2Lin Wang 3Zixuan Ning 4Guoju Li 5Dongping Chen 6Zhi-Wei Yan 1Yuchen Song 1Xucai Wang7
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作者信息

  • 1. School of Materials Science and Engineering,Beijing Institute of Technology,Beijing 100081,China
  • 2. School of Materials Science and Engineering,Beijing Institute of Technology,Beijing 100081,China;National Key Laboratory of Science and Technology on Materials under Shock and Impact,Beijing 100081,China
  • 3. School of Materials Science and Engineering,Beijing Institute of Technology,Beijing 100081,China;National Key Laboratory of Science and Technology on Materials under Shock and Impact,Beijing 100081,China;State Key Laboratory of Explosive Science and Technology,Beijing Institute of Technology,Beijing 100081,China
  • 4. Aerospace Information Research Institute,Chinese Academy of Sciences,Beijing 100094,China
  • 5. School of Aeronautical Engineering,Zhengzhou University of Aeronautics,Henan Province,Zhengzhou 450046,China
  • 6. Shanxi Jiangyang Chemical Co.,Ltd.,Shanxi Province,Taiyuan 030041,China
  • 7. Shandong Institute of Non-metallic Materials,Shandong Province,Jinan 250031,China
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Abstract

A reasonable heat treatment process for TC4 ELI titanium alloy is crucial to tune microstructures to improve its explosion resistance.However,there is limited investigation on tuning microstructures of TC4 ELI to improve explosion resistance.Moreover,the current challenge is quantifying microstructural changes'effects on explosion resistance and incorporating microstructural changes into finite element models.This work aims to tune microstructures to improve explosion resistance and elucidate their anti-explosion mechanism,and find a suitable method to incorporate microstructural changes into finite element models.In this work,we systematically study the deformation and failure characteristics of TC4 ELI plates with varying microstructures using an air explosion test and LS-DYNA finite element modeling.The Johnson-Cook(JC)constitutive parameters are used to quantify the effects of microstructural changes on explosion resistance and incorporate microstructural changes into finite element models.Because of the heat treatment,one plate has equiaxed microstructure and the other has bimodal microstructure.The convex of the plate after the explosion has a quadratic relationship with the charge mass,and the simulation results demonstrate high reliability,with the error less than 17.5%.Therefore,it is feasible to obtain corresponding JC constitutive parameters based on the differences in microstructures and mechanical properties and characterize the effects of microstructural changes on explosion resis-tance.The bimodal target exhibits excellent deformation resistance.The response of bimodal micro-structure to the shock wave may be more intense under explosive loading.The well-coordinated structure of the bimodal target enhances its resistance to deformation.

Key words

Microstructure/Finite element modelling/Parameter optimization/Failure characteristics/Explosion resistance

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基金项目

National Key Laboratory of Science and Technology on Materials under Shock and Impact(WDZC2022-4)

出版年

2024
防务技术
中国兵工学会

防务技术

CSTPCD
影响因子:0.358
ISSN:2214-9147
参考文献量37
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