Page 64 - IJAMD-1-2
P. 64

International Journal of AI for
            Materials and Design
                                                                             AI-assisted ML monitoring in additive auxetics


            or indirectly. Separately, other authors declared that they   6.   Yu X, Zhou J, Liang H, Jiang Z, Wu L. Mechanical
            have no known competing financial interests or personal   metamaterials associated with stiffness, rigidity and
            relationships that could have influenced the work reported   compressibility: A  brief review.  Prog Mater Sci. 2018;94:
            in this paper.                                        114-173.
                                                                  doi: 10.1016/j.pmatsci.2017.12.003
            Author contributions
                                                               7.   Evans KE, Alderson A. Auxetic materials: Functional
            Conceptualization: Junheui Jo, Hugon Lee              materials and structures from lateral thinking! Adv Mater.
            Investigation: Junheui Jo                             2000;12(9):617-628.
            Methodology:  Junheui  Jo, Sukheon Kang, Minwoo  Park,      doi:  10.1002/(SICI)1521-4095(200005)12:9<617:AID-
               Chang-Yeon Gu                                      ADMA617>3.0.CO;2-3
            Supervision: Taek-Soo Kim, Seunghwa Ryu            8.   Li Y, Luo S, Yang MC, Liang R, Zeng C. Poisson ratio and
            Writing – original draft: Junheui Jo, Hugon Lee       piezoresistive sensing: A  New route to high-performance
            Writing – review & editing: Junheui Jo, Hugon Lee, Sukheon   3D flexible and stretchable sensors of multimodal sensing
               Kang, Minwoo Park, Seunghwa Ryu                    capability. Adv Funct Mater. 2016;26(17):2900-2908.
            Ethics approval and consent to participate            doi: 10.1002/adfm.201505070
                                                               9.   Zhai X, Gao J, Liao H, Kirk CD, Balogun YA, Chen WW.
            Not applicable.                                       Mechanical behaviors of auxetic polyurethane foam at
            Consent for publication                               quasi-static, intermediate and high strain rates. Int J Impact
                                                                  Eng. 2019;129:112-118.
            Not applicable.                                       doi: 10.1016/j.ijimpeng.2019.03.002

            Availability of data                               10.  Grima JN, Evans KE. Auxetic behavior from rotating
                                                                  squares. J Mater Sci Lett. 2000;19:1563-1565.
            Data used in this work are available from the corresponding
            author on reasonable request.                         doi: 10.1023/A:1006781224002
                                                               11.  Tretiakov KV. Negative poisson’s ratio of two-dimensional
            References                                            hard cyclic tetramers.  J  Non Cryst Solids. 2009;355(24-
                                                                  27):1435-1438.
            1.   Zhang XY, Ren X, Zhang Y, Xie YM. A  novel auxetic
               metamaterial with enhanced mechanical properties and      doi: 10.1016/j.jnoncrysol.2009.05.043
               tunable auxeticity. Thin Walled Struct. 2022;174:109162.  12.  Shin HG, Timilsina S, Sohn KS, Kim JS. Digital image
               doi: 10.1016/j.tws.2022.109162                     correlation compatible mechanoluminescent skin for
                                                                  structural health monitoring. Adv Sci. 2022;9(11):2105889.
            2.   Xin X, Liu L, Liu Y, Leng J. 4D printing auxetic metamaterials
               with tunable, programmable, and reconfigurable mechanical      doi: 10.1002/advs.202105889
               properties. Adv Funct Mater. 2020;30(43):2004226.  13.  Feng  A,  Smet PF.  A  review  of  mechanoluminescence  in
               doi: 10.1002/adfm.202004226                        inorganic solids: Compounds, mechanisms, models and
                                                                  applications. Materials (Basel). 2018;11(4):484.
            3.   Cheng X, Zhang Y, Ren X,  et al. Design and mechanical
               characteristics of auxetic metamaterial with tunable stiffness.      doi: 10.3390/ma11040484
               Int J Mech Sci. 2022;223:107286.                14.  Timilsina S, Kim JS, Kim J, Kim GW. Review of state-of-
               doi: 10.1016/j.ijmecsci.2022.107286                the-art sensor applications using mechanoluminescence
                                                                  microparticles.  Int J Precis Eng Manuf. 2016;17(9):
            4.   Ilani MA, Khoshnevisan M. Powder mixed-electrical   1237-1247.
               discharge machining (EDM) with the electrode is made
               by fused deposition modeling (FDM) at Ti-6Al-4V      doi: 10.1007/s12541-016-0149-y
               machining procedure. Multiscale Multidiscip Model Exp Des.   15.  Zhang JC, Wang X, Marriott G, Xu CN. Trap-controlled
               2020;3(3):173-186.                                 mechanoluminescent  materials.  Prog  Mater  Sci.
               doi: 10.1007/s41939-020-00070-6                    2019;103:678-742.
            5.   Wang Z, Luan C, Liao G, Liu J, Yao X, Fu J. Progress in auxetic      doi: 10.1016/j.pmatsci.2019.02.001
               mechanical  metamaterials:  Structures,  characteristics,   16.  Ni S, Zhu H, Neuzil P, Yobas L. A SiN microcalorimeter and
               manufacturing methods, and applications. Adv Eng Mater.   a non-contact precision method of temperature calibration.
               2020;22(10):2000312.                               J Microelectromech Syst. 2020;29(5):1103-1105.
               doi: 10.1002/adem.202000312                        doi: 10.1109/JMEMS.2020.3008867


            Volume 1 Issue 2 (2024)                         58                             doi: 10.36922/ijamd.3539
   59   60   61   62   63   64   65   66   67   68   69