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2023 Fiscal Year Annual Research Report

Design of auxetic metamaterials using deep learning

Research Project

Project/Area Number 22KJ0407
Allocation TypeMulti-year Fund
Research InstitutionNational Institute for Materials Science

Principal Investigator

ZHENG Xiaoyang  国立研究開発法人物質・材料研究機構, マテリアル基盤研究センター, 特別研究員(PD)

Project Period (FY) 2023-03-08 – 2024-03-31
KeywordsMaterial design / Mechanical metamaterial / Material informatics / Deep learning
Outline of Annual Research Achievements

In this year, I have three main works, including a review article in terms of deep learning in mechanical metamaterials, a research article in terms of multiphase metamaterials with highly variable stiffness, and a research article in terms of text-to-microstructure generation using deep learning.
In the review article, I provide a comprehensive overview of the capabilities of deep learning in property prediction, geometry generation, and inverse design of mechanical metamaterials. Additionally, I highlight the potential of leveraging deep learning to create universally applicable datasets, intelligently designed metamaterials, and material intelligence.
In the second article, I propose three multiphase metamaterials derived from triply periodic minimal surfaces. The multiphase metamaterials possess highly variable stiffness based on thermally-induced phase transition.
In the third article, I propose a new deep learning framework that can generate different and diverse material microstructures using text prompts.
I have published 6 peer-reviewed papers on international journals and 1 patent during this academic year.

  • Research Products

    (12 results)

All 2024 2023 Other

All Journal Article (6 results) (of which Int'l Joint Research: 3 results,  Peer Reviewed: 6 results,  Open Access: 2 results) Presentation (3 results) (of which Int'l Joint Research: 2 results) Remarks (2 results) Patent(Industrial Property Rights) (1 results)

  • [Journal Article] Minimal-surface-based multiphase metamaterials with highly variable stiffness2024

    • Author(s)
      Zheng Xiaoyang、Watanabe Ikumu、Wang Siqian、Chen Ta-Te、Naito Masanobu
    • Journal Title

      Materials & Design

      Volume: 237 Pages: 112548~112548

    • DOI

      10.1016/j.matdes.2023.112548

    • Peer Reviewed / Open Access
  • [Journal Article] De-icing performance evolution with increasing hydrophobicity by regulating surface topography2024

    • Author(s)
      Weng Wei、Zheng Xiaoyang、Tenjimbayashi Mizuki、Watanabe Ikumu、Naito Masanobu
    • Journal Title

      Science and Technology of Advanced Materials

      Volume: 25 Pages: 2334199

    • DOI

      10.1080/14686996.2024.2334199

    • Peer Reviewed
  • [Journal Article] 3D Sodiophilic Mixed-ion-electron-conducting Framework of Hierarchical Nanowire Arrays for Ultra-stable Sodium-Metal Batteries2024

    • Author(s)
      Huang Jiawen、Huang Zhongyi、Zheng Xiaoyang、Wang Yan、Rui Xianhong、Yu Yan、Dou Shi-Xue、Wu Chao
    • Journal Title

      Energy Storage Materials

      Volume: 0 Pages: 103420~103420

    • DOI

      10.1016/j.ensm.2024.103420

    • Peer Reviewed / Int'l Joint Research
  • [Journal Article] Deep Learning in Mechanical Metamaterials: From Prediction and Generation to Inverse Design2023

    • Author(s)
      Zheng Xiaoyang、Zhang Xubo、Chen Ta‐Te、Watanabe Ikumu
    • Journal Title

      Advanced Materials

      Volume: 35 Pages: 2302530

    • DOI

      10.1002/adma.202302530

    • Peer Reviewed
  • [Journal Article] Long Cycle Life and High‐Rate Sodium Metal Batteries Enabled by an Active/Inactive Co‐Sn alloy Interface2023

    • Author(s)
      Huang Zhongyi、Zheng Xiaoyang、Liu Haoxuan、Huang Jiawen、Xu Yi、Xu Xun、Dou Yuhai、Yuan Ding、Li Zhen、Dou Shi‐Xue、Liu Hua‐Kun、Chou Shulei、Wu Chao
    • Journal Title

      Advanced Functional Materials

      Volume: 34 Pages: 2302062

    • DOI

      10.1002/adfm.202302062

    • Peer Reviewed / Int'l Joint Research
  • [Journal Article] Multifunctional Separator Enables High‐Performance Sodium Metal Batteries in Carbonate‐Based Electrolytes2023

    • Author(s)
      Liu Haoxuan、Zheng Xiaoyang、Du Yumeng、Borr?s Marcela Chaki、Wu Kuan、Konstantinov Konstantin、Pang Wei Kong、Chou Shulei、Liu Huakun、Dou Shixue、Wu Chao
    • Journal Title

      Advanced Materials

      Volume: 36 Pages: 2307645

    • DOI

      10.1002/adma.202307645

    • Peer Reviewed / Open Access / Int'l Joint Research
  • [Presentation] Deep Learning in Mechanical Metamaterials2023

    • Author(s)
      ZHENG Xiaoyang, WATANABE Ikumu
    • Organizer
      Summit of Materials Science 2023 and GIMRT User Meeting 2023
    • Int'l Joint Research
  • [Presentation] Reprogrammable Mechanical Metamaterials.2023

    • Author(s)
      ZHENG Xiaoyang, UTO Koichiro, WATANABE Ikumu
    • Organizer
      NIMS Award Symposium 2023
  • [Presentation] Inverse Design of Voxelized Architected Materials2023

    • Author(s)
      ZHENG Xiaoyang, WATANABE Ikumu
    • Organizer
      XVII International Conference on Computational Plasticity
    • Int'l Joint Research
  • [Remarks] NIMS Samurai

    • URL

      https://samurai.nims.go.jp/profiles/zheng_xiaoyang?locale=en

  • [Remarks] Researchmap

    • URL

      https://researchmap.jp/zhengxiaoyang

  • [Patent(Industrial Property Rights)] 部材、アクチュエータ、及び形状記憶部材2023

    • Inventor(s)
      甲一郎 宇都, 育夢 渡邊, Xiaoyang Zheng
    • Industrial Property Rights Holder
      国立研究開発法人物質・材料研究機構
    • Industrial Property Rights Type
      特許
    • Industrial Property Number
      2023167263

URL: 

Published: 2024-12-25  

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