Journal Papers 2016
- Adriano A., Guo S. J. & Pumera M., "Helical 3D-Printed Metal Electrodes as Custom-Shaped 3D Platform for Electrochemical Devices", Advanced Functional Materials, 26(5), 698-703, 2016.
- Adriano A. & Pumera M., "3D-printing technologies for electrochemical applications", Chemical Society Reviews, 45(10), 2740-2755, 2016.
- Ahn I. H, Seung K. M. & Bi G., “Hole Design Quality Identification in Laser Aided Additive Manufacturing,” Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 0954-4054, 2016.
- Anwar A. Bin & Pham Q. C., "Selective laser melting of AlSi10Mg: Effects of scan direction, part placement and inert gas flow velocity on tensile strength", Journal of Materials Processing Technology, 240, 388–396, 2016.
- Du Z., Tan M. J., Guo J. F., Bi G. & Wei J., "Fabrication of a new Al-Al2O3-CNTs composite using friction stir processing (FSP)", Journal of Materials Science and Engineering: A: Structural Materials: Properties, Microstructure and Processing, 667, 125–131, 2016.
- Du Z., Tan M. J., Guo J. F. & Jun W., “Dispersion of CNTs in Selective Laser Melting Printed AlSi10Mg Composites via Friction Stir Processing”, Materials Science Forum, 879, 1915-1920, 2016.
- Gan M. X. & Wong C. H., "Practical support structures for selective laser melting", Journal of Materials Processing Technology, 238, 474-484, 2016.
- Goh G. L., Ma J., Chua K. L. F., Shweta A., Yeong W. Y. & Zhang, Y. P., "Inkjet-printed patch antenna emitter for wireless communication application", Virtual and Physical Prototyping, 11(4), 289-294, 2016.
- Ho J. Y., Wong K. K. & Leong K. C., "Saturated pool boiling of FC-72 from enhanced surfaces produced by selective laser melting", International Journal of Heat and Mass Transfer, 99, 107121, 2016.
- Junfeng, G., Bing Yang, L., Zhenglin, D., Guijun, B., Ming Jen, T. and Jun, W. (2016) Effect of Nano-Particle Addition on Grain Structure Evolution of Friction Stir Processed Al 6061 During Postweld Annealing. The Journal of The Minerals, Metals & Materials Society (TMS) [JOM], Volume 68, Issue 8, 2268-2273. doi:10.1007/s11837-016-1991-1.
- Khoa D. D. & Li P., "The effect of laser energy input on the microstructure, physical and mechanical properties of Ti-6Al-4V alloys by selective laser melting", Virtual and Physical Prototyping, 11(1), 41-47, 2016.
- Kok Y., Tan X., Loh N. H., Tor S. B. & Chua C. K., "Geometry dependence of microstructure and microhardness for selective electron beam-melted Ti–6Al–4V parts", Virtual and Physical Prototyping, 11(3), 183-191, 2016.
- Lee B. H., Lum N., Seow L. Y., Lim P. Q. & Tan L. P., "Synthesis and Characterization of Types A and B Gelatin Methacryloyl for Bioink Applications", Materials, 9(10), 797, 2016.
- Lee J. M., Sing S. L., Tan Y. S. E., et al., "Bioprinting in cardiovascular tissue engineering: a review", International Journal of Bioprinting, 2(2), 27–36. 2016.
- Lee J. M. & Yeong W. Y., "Design and Printing Strategies in 3D Bioprinting of Cell‐Hydrogels: A Review", Advanced Healthcare Materials, 5(22), 2856–2865, 2016.
- Lee J. M., Zhang M. & Yeong W. Y., "Characterization and evaluation of 3D printed microfluidic chip for cell processing", Microfluidics and Nanofluidics, 20(1), 1-15, 2016.
- Lee J. Y., Tan W. S., An J., Chua C. K., Tang C. Y., Fane A. G. & Chong T. H., "The potential to enhance membrane module design with 3D printing technology", Journal of Membrane Science, 499, 480-190, 2016.
- Lei N., Yao X., Seung K. M. & Bi G., "An Additive Manufacturing Process Model for Product Family Design", Journal of Engineering Design, 27(11), 751-767, 2016.
- Li H., Liu S. & Li L., "Rheological study on 3D printability of alginate hydrogel and effect of graphene oxide", International Journal of Bioprinting, 2(2), 54-66, 2016.
- Lim, C. W. J., Le, K. Q., Lu, Q., & Wong, C. H. (2016). An Overview of 3-D Printing in Manufacturing, Aerospace, and Automotive Industries. IEEE Potentials, 35(4), 18-22.
- Liu S., Li H., Tang B., Bi S. & Li L., "Scaling law and microstructure of alginate hydrogel", Carbohydrate Polymers, 135, 101-109, 2016.
- Ng W. L., Yeong W. Y. & Naing M. W., "Polyelectrolyte gelatin-chitosan hydrogel optimized for 3D bioprinting in skin tissue engineering", International Journal of Bioprinting, 2(1), 53-62, 2016.
- Ng W. L., Wang S., Yeong W. Y. & Naing M. W., "Skin Bioprinting: Impending Reality or Fantasy?", Trends in Biotechnology, 34(9), 689 - 699, 2016.
- Nitipon S., Tuan T. & Chua C. K., "A Review: Additive Manufacturing for Active Electronic Components", Virtual and Physical Prototyping, 1-16, 2016.
- Panwar A. & Tan L. P., "Current Status of Bioinks for Micro-Extrusion-Based 3D Bioprinting", Molecules, 21(6), 685, 2016.
- Shen F., Yuan S., Guo C., Zhao B., Bai J., Qwamizadeh M., Chua C. K., Wei J. & Zhou K.*, "Energy absorption of thermoplastic polyurethane lattice structures via 3D printing: modeling and prediction", International Journal of Applied Mechanics, 8(8), 1699001, 2016.
- Shrestha M. & Lau G. K., "Tunable window device based on micro-wrinkling of nanometric zincoxide thin film on elastomer", Optics Letters, 41(19), 4433 - 4436, 2016.
- Sing S. L., An J., Yeong W. Y. & Wiria F. E., "Laser and electron-beam powder-bed additive manufacturing of metallic implants: A review on processes, materials and designs", Journal of Orthopaedic Research, 34(3), 369-385, 2016.
- Sing S. L., Yeong W. Y. & Wiria F. E., "Selective laser melting of titanium alloy with 50 wt% tantalum: Microstructure and mechanical properties", Journal of Alloys and Compounds, 660, 461–470, 2016.
- Sing S. L., Yeong W. Y., Wiria F. E. & Tay B. Y., "Characterization of Titanium Lattice Structures Fabricated by Selective Laser Melting Using an Adapted Compressive Test Method", Experimental Mechanics, 56(5), 735-748, 2016.
- Sun Z., Tan X., Tor S. B., Yeong W. Y., "Selective laser melting of stainless steel 316L with low porosity and high build rates", Materials & Design, 104, 197-204, 2016.
- Suntornnond R., An J., Ajay T., Leong K. F., Chua C. K. & Tan L. P., "A Solvent-free surface suspension melted techniques of biodegradable PCL membrane scaffold for tissue engineering applications", Molecules, 21(3), 386, 2016.
- Suntornnond R., An J. & Chua C. K., "Effect of Gas Plasma on Polycaprolactone (PCL) Membrane Wettability and Collagen Type I Immobilized For Enhancing Cell Proliferation", Materials Letters, 171, 293-296, 2016.
- Suntornnond R., Tan Y. S. E., An J. & Chua C. K., "A mathematical model on the resolution of extrusion bioprinting for development of new bioinks", Materials, 9(9), 756, 2016.
- Tan H. W., Tuan T. & Chua C. K., "A review of printed passive electronic components through fully additive manufacturing methods", Virtual and Physical Prototyping, 11(4), 271-288, 2016.
- Tan W. S., Chua C. K., Chong T. H., Fane A. G., & An J., "3D printing by selective laser sintering of polypropylene feed channel spacers for spiral wound membrane modules for the water industry", Virtual And Physical Prototyping, 11(3), 151-158, 2016.
- Tan X., Kok Y., Toh W. Q., Tan Y. J., Descoins M., Mangelinck D., Tor S. B., Leong K. F. & Chua C.K., "Revealing martensitic transformation and α/β interface evolution in electron beam melting three-dimensional-printed Ti-6Al-4V", Scientific Reports, 6, 26039, 2016.
- Tan Y. J., Tan X., Yeong W. & Tor S. B., "Additive Manufacturing of Patient-Customizable Scaffolds for Tubular Tissues Using the Melt-Drawing Method", Materials, 9(11), 893, 2016.
- Tan Y. J., Tan X., Yeong W. Y. & Tor S. B., "Hybrid microscaffold-based 3D bioprinting of multicellular constructs with high compressive strength: A new biofabrication strategy", Scientific Reports, 6, 39140, 2016.
- Tan Y. J., Yeong W. Y., Tan X., An J., Chian K. S. & Leong K. F., "Characterization, mechanical behavior and in vitro evaluation of a melt-drawn scaffold for esophageal tissue engineering", Journal of the Mechanical Behaviour of Biomedical Materials, 57, 246–59, 2016.
- Tay Y. W., Panda B., Paul S. C., Tan M. J., Qian S. Z., Leong K. F. & Chua C. K., "Processing and Properties of Construction Materials for 3D Printing", Materials Science Forum, 861, 177-181, 2016.
- Toh W. Q., Wang P., Tan X., Nai M. L. S., Liu E. & Tor S. B., "Microstructure and Wear Properties of Electron Beam Melted Ti-6Al-4V Parts: A Comparison Study against As-Cast Form", Metals, 6(11), 284, 2016.
- Wang P., Tan X., Nai N. L. S., Tor S. B. & Wei J., "Spatial and geometrical-based characterization of microstructure and microhardness for an electron beam melted Ti-6Al-4V component", Materials and Design, 95, 287-295, 2016.
- Wong K. K., Ho J. Y., Leong K. C. & Wong T. N., "Fabrication of heat sinks by Selective Laser Melting for convective heat transfer applications", Virtual and Physical Prototyping, 11(3), 159165, 2016.
- Yao X., Seung K. M. & Bi G., "A Cost-Driven Design Methodology for Additive Manufactured Variable Platforms in Product Families", Journal of Mechanical Design, 138(4), 041701, 2016.
- Yao X., Seung K. M., Bi G. & Son H., “Commonality and Performance Metrics to Evaluate and Optimize the Design of Additive Manufactured Product Families,” International Journal of Manufacturing Research, 2016, Accepted.
- Yang H., Lim J. C., Liu Y., Qi X., Yap Y. L., Dikshit V., Yeong W. Y. & Wei J., "Performance evaluation of ProJet multi-material jetting 3D printer", Virtual and Physical Prototyping, 1745-2759, 1-9, 2016.
- Yap C.Y., Chua C.K. & Dong Z., "An Effective Analytical Model of Selective Laser Melting", Virtual and Physical Prototyping, 11(1), 21-26, 2016.
- Yuan S., Bai J., Chua C. K., Wei J. & Zhou K., "Highly enhanced thermal conductivity of thermoplastic nanocomposites with a low mass fraction of MWCNTs by a facilitated latex approach", Composites Part A: Applied Science and Manufacturing, 90, 699-710, 2016.
- Yuan S., Bai J., Chua C. K., Zhou K. & Jun W., "Characterization of creeping and shape memory effect in laser sintered thermoplastic polyurethane", Journal of Computing and Information Science in Engineering, 16(4), 041007, 2016.
- Yuan S., Bai J., Chua C. K., Zhou K. & Jun W., "Material evaluation and process optimization of CNTs-coated polymer powders for selective laser sintering", Polymers, 8(10), 370, 2016.