Significant roles of 4D printing using smart materials in the field of manufacturing
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Mohd Javaid | Abid Haleem | Rajiv Suman | Ravi Pratap Singh | R. Suman | M. Javaid | A. Haleem | R. Singh | Abid Haleem
[1] D. Fang,et al. Shape‐Memory Balloon Structures by Pneumatic Multi‐material 4D Printing , 2021, Advanced Functional Materials.
[2] Lang Xia,et al. Stereolithographic 4D Bioprinting of Multiresponsive Architectures for Neural Engineering , 2018, Advanced biosystems.
[3] Xiaoyong Tian,et al. Modelling and characterisation for the responsive performance of CF/PLA and CF/PEEK smart materials fabricated by 4D printing , 2017 .
[4] Tao Xie,et al. 4D Printing: History and Recent Progress , 2018, Chinese Journal of Polymer Science.
[5] Michael P. Chae,et al. Four-Dimensional (4D) Printing: A New Evolution in Computed Tomography-Guided Stereolithographic Modeling. Principles and Application , 2015, Journal of Reconstructive Microsurgery.
[6] Irsyad N A Khairil Anuar,et al. Spy&Go purification of SpyTag-proteins using pseudo-SpyCatcher to access an oligomerization toolbox , 2019, Nature Communications.
[7] Jack G. Zhou,et al. Current status of 4D printing technology and the potential of light-reactive smart materials as 4D printable materials , 2016 .
[8] Mohd Javaid,et al. Polyether ether ketone (PEEK) and its 3D printed implants applications in medical field: An overview , 2019, Clinical Epidemiology and Global Health.
[9] E. Iwase,et al. Hybrid hinge structure with elastic hinge on self-folding of 4D printing using a fused deposition modeling 3D printer , 2021 .
[10] 4D Printing Additive Manufacturing Review; Mechanisim, Chalanges, Applications and Future , 2020 .
[11] Carmen M. González-Henríquez,et al. Polymers for additive manufacturing and 4D-printing: Materials, methodologies, and biomedical applications , 2019, Progress in Polymer Science.
[12] Yong Liu,et al. 3D printing of smart materials: A review on recent progresses in 4D printing , 2015 .
[13] G. D. Goh,et al. 3D and 4D printing of polymer/CNTs-based conductive composites , 2020 .
[14] Gi Hoon Yang,et al. 4D Bioprinting: Technological Advances in Biofabrication. , 2019, Macromolecular bioscience.
[15] Sudip K. Sinha,et al. Additive manufacturing (AM) of medical devices and scaffolds for tissue engineering based on 3D and 4D printing , 2020 .
[16] IanakievAnton,et al. 4D Printing Inflatable Silicone Structures , 2015 .
[17] Mohd Javaid,et al. Exploring Smart Material Applications for COVID-19 Pandemic Using 4D Printing Technology , 2020 .
[18] C. Mandenius,et al. Dynamic peptide-folding mediated biofunctionalization and modulation of hydrogels for 4D bioprinting , 2020, Biofabrication.
[19] Mohd Javaid,et al. Four-dimensional printing applications in dentistry , 2019 .
[20] Chee Kai Chua,et al. A Perspective on 4D Bioprinting , 2016 .
[21] R. Bouncken,et al. Shared digital identity and rich knowledge ties in global 3D printing—A drizzle in the clouds? , 2020 .
[22] Beijun Shen,et al. Programming the time into 3D printing: current advances and future directions in 4D printing , 2020, Multifunctional Materials.
[23] Yu-Zhong Wang,et al. 4D printing of shape memory aliphatic copolyester via UV-assisted FDM strategy for medical protective devices , 2020 .
[24] Ali Khademhosseini,et al. 4D bioprinting: the next-generation technology for biofabrication enabled by stimuli-responsive materials , 2016, Biofabrication.
[25] E. Pei,et al. 4D printing: processability and measurement of recovery force in shape memory polymers , 2016, The International Journal of Advanced Manufacturing Technology.
[26] A. P. Piedade. 4D Printing: The Shape-Morphing in Additive Manufacturing , 2019, Journal of functional biomaterials.
[27] M. Javaid,et al. 3D printing for development of medical equipment amidst coronavirus (COVID-19) pandemic—review and advancements , 2020, Research on Biomedical Engineering.
[28] Sung Yun Hann,et al. 4D printing soft robotics for biomedical applications , 2020 .
[29] Feng Xu,et al. 4D Bioprinting for Biomedical Applications. , 2016, Trends in biotechnology.
[30] Matthew L. Becker,et al. 4D Printing of Resorbable Complex Shape Memory Poly(propylene fumarate) Star Scaffolds. , 2020, ACS applied materials & interfaces.
[31] Chee Kai Chua,et al. Two-Way 4D Printing: A Review on the Reversibility of 3D-Printed Shape Memory Materials , 2017 .
[32] Son Thai Ly,et al. 4D printing – fused deposition modeling printing with thermal-responsive shape memory polymers , 2017 .
[33] Martin L. Dunn,et al. Machine-learning based design of active composite structures for 4D printing , 2019, Smart Materials and Structures.
[34] F. Berto,et al. Fused Filament Fabrication-4D-Printed Shape Memory Polymers: A Review , 2021, Polymers.
[35] Mohd Javaid,et al. Expected role of four-dimensional (4D) CT and four-dimensional (4D) MRI for the manufacturing of smart orthopaedics implants using 4D printing. , 2019, Journal of clinical orthopaedics and trauma.
[36] Vasif Hasirci,et al. 3D and 4D Printing of Polymers for Tissue Engineering Applications , 2019, Front. Bioeng. Biotechnol..
[37] Kishor Kumar Sadasivuni,et al. Introduction to 3D and 4D printing technology: State of the art and recent trends , 2020 .
[38] Xuan Zhou,et al. Advanced 4D-bioprinting technologies for brain tissue modeling and study , 2019, International journal of smart and nano materials.
[39] Chaofan Sun,et al. Tunable electron transfer rate in a CdSe/ZnS-based complex with different anthraquinone chloride substitutes , 2019, Scientific Reports.
[40] Andrew Armstrong,et al. 4D Printing of Net Shape Parts Made from Ni-Mn-Ga Magnetic Shape-Memory Alloys , 2018 .
[41] Tao Xie,et al. 4D Printing of Digital Shape Memory Polymer with Tunable High Performance. , 2019, ACS applied materials & interfaces.
[42] Frédéric Demoly,et al. Design for 4D printing: A voxel-based modeling and simulation of smart materials , 2019, Materials & Design.
[43] Christophe Cruz,et al. An ontology-based framework to formalize and represent 4D printing knowledge in design , 2021, Comput. Ind..
[44] Amir Hosein Sakhaei,et al. Multimaterial 4D Printing with Tailorable Shape Memory Polymers , 2016, Scientific Reports.
[45] Narutoshi Hibino,et al. Dual-Gel 4D Printing of Bioinspired Tubes. , 2019, ACS applied materials & interfaces.
[46] Mohd Javaid,et al. Automation and manufacturing of smart materials in additive manufacturing technologies using Internet of Things towards the adoption of industry 4.0 , 2021 .
[47] Mohd Javaid,et al. Additive Manufacturing Applications in Industry 4.0: A Review , 2019, Journal of Industrial Integration and Management.
[48] J. Glass,et al. 4D Printing of Stretchable Supercapacitors via Hybrid Composite Materials , 2020, Advanced Materials & Technologies.
[49] Jing Zhao,et al. Modeling and characterization of shape memory properties and decays for 4D printed parts using stereolithography , 2021 .
[50] Daniel Therriault,et al. Multi‐Material 3D and 4D Printing: A Survey , 2020, Advanced science.
[51] Amelia Yilin Lee,et al. Preliminary Investigation of the Reversible 4D Printing of a Dual-Layer Component , 2019 .
[52] A. P. Piedade,et al. The chemistry behind 4D printing , 2020 .
[53] J. Shibli,et al. Bioresorbable Polymers: Advanced Materials and 4D Printing for Tissue Engineering , 2021, Polymers.
[54] Min Zhang,et al. 4D printing of mashed potato/purple sweet potato puree with spontaneous color change , 2020 .
[55] Yanju Liu,et al. 4D Printing of Bioinspired Absorbable Left Atrial Appendage Occluders: A Proof-of-Concept Study. , 2021, ACS applied materials & interfaces.
[56] Suiyang Khoo,et al. Pattern-driven 4D printing , 2018 .
[57] Yixin Jiang,et al. A high-efficiency way to improve the shape memory property of 4D-printed polyurethane/polylactide composite by forming in situ microfibers during extrusion-based additive manufacturing , 2020 .
[58] Pei-Chen Su,et al. 4D printing of high performance shape memory polymer using stereolithography , 2017 .
[59] R. Liang,et al. 4D Printing based piezoelectric composite for medical applications , 2018, Journal of Polymer Science Part B: Polymer Physics.
[60] Ma Quanjin,et al. Recent 3D and 4D intelligent printing technologies: A comparative review and future perspective , 2020, Procedia Computer Science.
[61] Saeed Maleksaeedi,et al. High speed 4D printing of shape memory polymers with nanosilica , 2020 .
[62] Chee Kai Chua,et al. Hierarchically self-morphing structure through 4D printing , 2017 .
[63] Balasubramanian Kandasubramanian,et al. Breakthrough in the printing tactics for stimuli-responsive materials: 4D printing , 2019, Chemical Engineering Journal.
[64] A. R. Damanpack,et al. Adaptive metamaterials by functionally graded 4D printing , 2017 .
[65] Martin L. Dunn,et al. Advances in 4D Printing: Materials and Applications , 2018, Advanced Functional Materials.
[66] Martin L. Dunn,et al. Active origami by 4D printing , 2014 .
[67] Ali Khademhosseini,et al. Advances and Future Perspectives in 4D Bioprinting , 2018, Biotechnology journal.
[68] Balasubramanian Kandasubramanian,et al. 4D printing of shape memory polymers , 2020 .
[69] Qi Ge,et al. Multimaterial direct 4D printing of high stiffness structures with large bending curvature , 2021 .
[70] Zhizhou Zhang,et al. Developments in 4D-printing: a review on current smart materials, technologies, and applications , 2019, International Journal of Smart and Nano Materials.
[71] Ye Zhou,et al. From 3D to 4D printing: approaches and typical applications , 2015, Journal of Mechanical Science and Technology.
[72] Suryani Dyah Astuti,et al. Review of Polymeric Materials in 4D Printing Biomedical Applications , 2019, Polymers.
[73] Jun Ni,et al. A review of 4D printing , 2017 .
[74] Suong V. Hoa. Factors affecting the properties of composites made by 4D printing (moldless composites manufacturing) , 2017 .
[75] Mahdi Bodaghi,et al. 4D Printing Self-Morphing Structures , 2019, Materials.
[76] Jian Lin,et al. 4D Printing of Shape-memory Polymeric Scaffolds for Adaptive Biomedical Implantation. , 2020, Acta biomaterialia.
[77] Jack G. Zhou,et al. Investigating the shape memory properties of 4D printed polylactic acid (PLA) and the concept of 4D printing onto nylon fabrics for the creation of smart textiles , 2017 .
[78] Eujin Pei,et al. Technological considerations for 4D printing: an overview , 2018 .
[79] Mahdi Bodaghi,et al. Shape-Adaptive Metastructures with Variable Bandgap Regions by 4D Printing , 2020, Polymers.
[81] Bankole I. Oladapo,et al. Nanostructural computation of 4D printing carboxymethylcellulose (CMC) composite , 2020 .
[82] M. Zafar,et al. 4D Printing: Future Insight in Additive Manufacturing , 2019, Metals and Materials International.
[83] M. Barletta,et al. 4D printing of shape memory polylactic acid (PLA) components: Investigating the role of the operational parameters in fused deposition modelling (FDM) , 2021 .
[84] H. Qi,et al. Recyclable Thermosetting Polymers for Digital Light Processing 3D Printing , 2020 .
[85] Ankush Raina,et al. Effect of fused deposition modelling process parameters on mechanical properties of 3D printed parts , 2019, World Journal of Engineering.
[86] K. Zhou,et al. Comparative study on 3D printing of polyamide 12 by selective laser sintering and multi jet fusion , 2021 .
[87] Dietmar W. Hutmacher,et al. Current developments in multifunctional smart materials for 3D/4D bioprinting , 2017 .
[88] Krishna Rawat,et al. 4D printing of materials for the future: Opportunities and challenges , 2020, Applied Materials Today.
[89] Lei Ren,et al. Biomimetic Shape–Color Double‐Responsive 4D Printing , 2019, Advanced Materials Technologies.
[90] Sung-Hoon Ahn,et al. From 3D to 4D printing – design, material and fabrication for multi-functional multi-materials , 2017 .
[91] K. Essa,et al. 4D Printing of NiTi Auxetic Structure with Improved Ballistic Performance , 2020, Micromachines.
[92] Han Ding,et al. Review of mechanisms and deformation behaviors in 4D printing , 2019, The International Journal of Advanced Manufacturing Technology.
[93] Desmond Adair,et al. 4D printing: a critical review of current developments, and future prospects , 2019, The International Journal of Advanced Manufacturing Technology.
[94] Dae-Eun Kim,et al. Review of 4D printing materials and their properties , 2017 .
[95] Howon Lee,et al. 4D printing reconfigurable, deployable and mechanically tunable metamaterials , 2019, Materials Horizons.
[96] M. Javaid,et al. Significant advancements of 4D printing in the field of orthopaedics. , 2020, Journal of clinical orthopaedics and trauma.
[97] Mohd Javaid,et al. 3D printed medical parts with different materials using additive manufacturing , 2020 .
[98] ChoiJin,et al. 4D Printing Technology: A Review , 2015 .
[99] M. Javaid,et al. 4D printing and its applications in Orthopaedics. , 2018, Journal of clinical orthopaedics and trauma.
[100] Ankush Raina,et al. Effect of surface texturing on friction behaviour of 3D printed polylactic acid (PLA) , 2020 .
[101] C. Boyer,et al. A Versatile 3D and 4D Printing System through Photocontrolled RAFT Polymerization. , 2019, Angewandte Chemie.
[102] Craig E. Banks,et al. Future of additive manufacturing: Overview of 4D and 3D printed smart and advanced materials and their applications , 2021 .
[103] Zhipeng Chen,et al. 4D Printing of Magnetoactive Soft Materials for On-Demand Magnetic Actuation Transformation. , 2021, ACS applied materials & interfaces.
[104] Suong V. Hoa,et al. Development of composite springs using 4D printing method , 2019, Composite Structures.
[105] Saeid Nahavandi,et al. Control-Based 4D Printing: Adaptive 4D-Printed Systems , 2020, Applied Sciences.
[106] Sung Yun Hann,et al. 4D Printed Cardiac Construct with Aligned Myofibers and Adjustable Curvature for Myocardial Regeneration. , 2021, ACS applied materials & interfaces.
[107] Ye Been Seo,et al. 4D-bioprinted silk hydrogels for tissue engineering. , 2020, Biomaterials.
[108] U. Lafont,et al. Additive manufacturing — A review of 4D printing and future applications , 2018, Additive Manufacturing.
[109] C. Yang,et al. Ultrahigh-performance TiNi shape memory alloy by 4D printing , 2019, Materials Science and Engineering: A.
[110] Skylar Tibbits,et al. 4D Printing: Multi‐Material Shape Change , 2014 .
[111] T. Thundat,et al. Review—Recent Progresses in 4D Printing of Gel Materials , 2020, Journal of The Electrochemical Society.
[112] Martin Möller,et al. 4D Printing of a Light-Driven Soft Actuator with Programmed Printing Density , 2020, ACS applied materials & interfaces.
[113] Andrew J Boydston,et al. Multimaterial actinic spatial control 3D and 4D printing , 2019, Nature Communications.
[114] A. Rajkumar,et al. Additive manufacturing-enabled shape transformations via FFF 4D printing , 2018, Journal of Materials Research.
[115] Jiangtao Wu,et al. 3D Printing of Highly Stretchable, Shape-Memory, and Self-Healing Elastomer toward Novel 4D Printing. , 2018, ACS applied materials & interfaces.
[116] Sungwook Chung,et al. Effective software solutions for 4D printing: A review and proposal , 2017 .
[117] Cédric Clévy,et al. 4D Printing: Enabling Technology for Microrobotics Applications , 2021, Adv. Intell. Syst..
[118] Shir Shapira,et al. 4D Printing of Shape Memory-Based Personalized Endoluminal Medical Devices. , 2017, Macromolecular rapid communications.
[119] Saeed Akbari,et al. Enhanced multimaterial 4D printing with active hinges , 2018 .
[120] Yuan Siang Lui,et al. 4D printing and stimuli-responsive materials in biomedical aspects. , 2019, Acta biomaterialia.
[121] Bin Gao,et al. Recent Advances in 4D Bioprinting , 2020, Biotechnology journal.
[122] Ho-Chan Kim,et al. A review on 3D printed smart devices for 4D printing , 2017 .
[123] Indra Apsite,et al. CuS/polyurethane composite appropriate for 4D printing , 2021, Journal of Polymer Research.
[124] Yanan Wang,et al. 4D printing reversible actuator with strain self-sensing function via structural design , 2021 .
[125] Tjprc,et al. Review on the Advancements to Additive Manufacturing-4D and 5D Printing , 2018 .
[126] J.E.M. Teoh,et al. 4D printing of customised smart sunshade: A conceptual study , 2017 .
[127] Keun Park,et al. 4D printing using anisotropic thermal deformation of 3D-printed thermoplastic parts , 2020 .
[128] Guohong Deng,et al. Corrigendum: Efficacy of PIVKA-II in prediction and early detection of hepatocellular carcinoma: a nested case-control study in Chinese patients , 2016, Scientific Reports.
[129] Silvia Titotto,et al. 4D Printing of Hydrogels: A Review , 2020, Advanced Functional Materials.
[130] Liwu Liu,et al. On 4D printing as a revolutionary fabrication technique for smart structures , 2020, Smart Materials and Structures.
[131] K. Essa,et al. 4D Printing of Origami Structures for Minimally Invasive Surgeries Using Functional Scaffold , 2020, Applied Sciences.
[132] Wenfeng Liang,et al. 4D Printing: A Review on Recent Progresses , 2020, Micromachines.
[133] J. Pérez-Landazábal,et al. Magnetically tunable damping in composites for 4D printing , 2021 .
[134] Abbas Z. Kouzani,et al. Topology-Optimized 4D Printing of a Soft Actuator , 2019, Acta Mechanica Solida Sinica.
[135] Ang Li,et al. 4D Printing of Recyclable Lightweight Architectures Using High Recovery Stress Shape Memory Polymer , 2019, Scientific Reports.
[136] Prashant K. Jain,et al. A Review on 4D Printing Material Composites and Their Applications , 2018 .
[137] Mohd Javaid,et al. 4D printing applications in medical field: A brief review , 2019, Clinical Epidemiology and Global Health.
[138] Richard S. Trask,et al. Responsive cellulose-hydrogel composite ink for 4D printing , 2018, Materials & Design.
[139] L. Ren,et al. Recent progress in 4D printing of stimuli-responsive polymeric materials , 2020, Science China Technological Sciences.
[140] Lin Li,et al. Energy Consumption Modeling of 4D Printing Thermal-responsive Polymers with Integrated Compositional Design for Material , 2020 .