1. 1) Ning Zhang, Philippe Carrez, and Rouzbeh Shahsvari : Screw-Dislocation-Induced Strengthening - Toughening Mechanisms in Complex Layered Materials : The Case Study of Tobermorite, ACS Applied Materials & Interfaces, 9, 1496-1506, 2017
2. 2) Saito, T., et al. : DESIGN AND CONSTRUCTION OF HANCHIKU ARCHITECTURE BUILT IN SETOUCHI SEA-Experimental study on material properties of rammed earth-, AIJ Journal of Technology and Design, Vo.24, No.57, pp.487-490, 2018.6 (in Japanese) 齊藤正, 寺井雅和, 難波義郎:瀬戸内に建つ版築建築の設計および施工− 版築の材料特性に関する実験的研究−, 日本建築学会技術報告集, Vol.24, No.57, pp.487-490, 2018.6
3. 3) Kamimura, K., et al. : Computational Morphogenesis of Continuum Shell Structures Using IESO Method, Journal of Structural and Construction Engineering (Transactions of AIJ), Vol.83, No.745, pp.459-465, 2018.3 (in Japanese) 上村紘一, 眞鍋匡利, 松本慎也, 藤井大地:IESO 法を用いた連続体シェル構造の形態創生, 日本建築学会構造系論文集, Vol.83, No.745, pp.459-465, 2018.3
4. 4) Sameshima, Y., et al. : Study on Computational Morphogenesis of Unreinforced Concrete Shell Using IESO Method Part1 Review of sensitivity number and morphogenesis of shell with rectangular boundary, Journal of Structural and Construction Engineering B (Transactions of AIJ), Vol.68B, pp.127-134, 2022.4 (in Japanese) 鮫島有太佳, 寺井雅和, 齊藤正, 藤井大地:IESO 法を用いた無筋コンクリートシェルの形態創生に関する研究 その 1 感度指標の見直しと矩形境界を有するシェルの形態創生, 日本建築学会構造工学論文集 B, Vol.68B, pp.127-134, 2022.4
5. 5) Niiuchi, Y., et al. : Topology Optimization of 3D Structures Using Improved ESO Method, Journal of Structural and Construction Engineering (Transactions of AIJ), Vol.81, No.723, pp.851-858, 2016.5 (in Japanese) 新内洋平, 松本慎也, 藤井大地:改良型 ESO 法を用いた 3 次元構造物の位相最適化, 日本建築学会構造系論文集, Vol.81, No.723, pp.851-858, 2016.5