Multifunctional Mechanical Metamaterials Based on Triply Periodic Minimal Surface Lattices

被引:580
作者
Al-Ketan, Oraib [1 ,3 ]
Abu Al-Rub, Rashid K. [1 ,2 ,3 ]
机构
[1] Khalifa Univ Sci & Technol, Adv Digital & Addit Mfg Ctr, Abu Dhabi, U Arab Emirates
[2] Khalifa Univ Sci & Technol, Dept Mech Engn, Abu Dhabi, U Arab Emirates
[3] Khalifa Univ Sci & Technol, Aerosapce Engn Dept, Abu Dhabi, U Arab Emirates
关键词
additive manufacturing; interpenetrating phase composites; lattices; metamaterials; triply periodic minimal surfaces; INTERPENETRATING PHASE COMPOSITES; POROUS SCAFFOLD DESIGN; TISSUE ENGINEERING SCAFFOLDS; EFFECTIVE ELASTIC PROPERTIES; FINITE-ELEMENT PREDICTIONS; LOW-DENSITY MATERIAL; 3D PRINTED SPACERS; CELLULAR STRUCTURES; TOPOLOGY OPTIMIZATION; GYROID SCAFFOLDS;
D O I
10.1002/adem.201900524
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In nature, cellular materials exhibit enhanced multifunctionalities driven mainly by their sophisticated topologies and length scales. These natural systems have inspired the development and expansion of synthetic architected materials for revolutionary applications. Consequently, both the design and synthesis techniques gained considerable attention and have massively progressed over the last few decades. Such materials with topology-controlled properties are commonly known as "metamaterials." Architected materials with topologies based on triply periodic minimal surfaces (TPMS) which are of particular interest have attracted much attention recently due to their mathematically controlled fascinating topologies and their exhibited physical and mechanical properties. Herein, the design, synthesis, and use of TPMS in the field of metamaterials and metacomposites for several applications are focused upon. The design process to create TPMS-based 3D lattices is summarized and the different manufacturing processes used to fabricate these lattices are highlighted. Herein, the material-topology-mechanical properties relationship of different TPMS-based lattices that are investigated in the literature is discussed. A further objective is to highlight the applications where TPMS-based lattices or composites can be efficiently used as well as the research areas to be explored.
引用
收藏
页数:39
相关论文
共 238 条
[1]   Mechanical Response of 3D Printed Bending-Dominated Ligament-Based Triply Periodic Cellular Polymeric Solids [J].
Abou-Ali, Aliaa M. ;
Al-Ketan, Oraib ;
Rowshan, Reza ;
Abu Al-Rub, Rashid .
JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2019, 28 (04) :2316-2326
[2]  
Abu Al-Rub RK, 2015, ADV STRUCT MAT, V64, P1, DOI 10.1007/978-3-319-19440-0_1
[3]   Mechanical properties of 3D printed polymeric Gyroid cellular structures: Experimental and finite element study [J].
Abueidda, Diab W. ;
Elhebeary, Mohamed ;
Shiang, Cheng-Shen ;
Pang, Siyuan ;
Abu Al-Rub, Rashid K. ;
Jasiuk, Iwona M. .
MATERIALS & DESIGN, 2019, 165
[4]   Shielding effectiveness and bandgaps of interpenetrating phase composites based on the Schwarz Primitive surface [J].
Abueidda, Diab W. ;
Karimi, Pouyan ;
Jin, Jian-Ming ;
Sobh, Nahil A. ;
Jasiuk, Iwona M. ;
Ostoja-Starzewski, Martin .
JOURNAL OF APPLIED PHYSICS, 2018, 124 (17)
[5]   Mechanical properties of 3D printed polymeric cellular materials with triply periodic minimal surface architectures [J].
Abueidda, Diab W. ;
Bakir, Mete ;
Abu Al-Rub, Rashid K. ;
Bergstrom, Jorgen S. ;
Sobh, Nahil A. ;
Jasiuk, Iwona .
MATERIALS & DESIGN, 2017, 122 :255-267
[6]   Effective conductivities and elastic moduli of novel foams with triply periodic minimal surfaces [J].
Abueidda, Diab W. ;
Abu Al-Rub, Rashid K. ;
Dalaq, Ahmed S. ;
Lee, Dong-Wook ;
Khan, Kamran A. ;
Jasiuk, Iwona .
MECHANICS OF MATERIALS, 2016, 95 :102-115
[7]   Electrical conductivity of 3D periodic architectured interpenetrating phase composites with carbon nanostructured-epoxy reinforcements [J].
Abueidda, Diab W. ;
Abu Al-Rub, Rashid K. ;
Dalaq, Ahmed S. ;
Younes, Hammad A. ;
Al Ghaferi, Amal A. ;
Shah, Tushar K. .
COMPOSITES SCIENCE AND TECHNOLOGY, 2015, 118 :127-134
[8]   Micromechanical finite element predictions of a reduced coefficient of thermal expansion for 3D periodic architectured interpenetrating phase composites [J].
Abueidda, Diab W. ;
Dalaq, Ahmed S. ;
Abu Al-Rub, Rashid K. ;
Jasiuk, Iwona .
COMPOSITE STRUCTURES, 2015, 133 :85-97
[9]   Finite element predictions of effective multifunctional properties of interpenetrating phase composites with novel triply periodic solid shell architectured reinforcements [J].
Abueidda, Diab W. ;
Dalaq, Ahmed S. ;
Abu Al-Rub, Rashid K. ;
Younes, Hammad A. .
INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2015, 92 :80-89
[10]   Compressive characteristics of radially graded porosity scaffolds architectured with minimal surfaces [J].
Afshar, M. ;
Anaraki, A. Pourkamali ;
Montazerian, H. .
MATERIALS SCIENCE AND ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2018, 92 :254-267