Improving the impact strength of Poly (lactic acid)(PLA) in fused layer modeling (FLM) L Wang, WM Gramlich, DJ Gardner Polymer 114, 242-248, 2017 | 318 | 2017 |
Wood–plastic composite technology DJ Gardner, Y Han, L Wang Current Forestry Reports 1, 139-150, 2015 | 209 | 2015 |
Alignment of cellulose nanofibers: harnessing nanoscale properties to macroscale benefits K Li, CM Clarkson, L Wang, Y Liu, M Lamm, Z Pang, Y Zhou, J Qian, ... ACS nano 15 (3), 3646-3673, 2021 | 172 | 2021 |
Recent advances in functional materials through cellulose nanofiber templating ME Lamm, K Li, J Qian, L Wang, N Lavoine, R Newman, DJ Gardner, T Li, ... Advanced Materials 33 (12), 2005538, 2021 | 152 | 2021 |
Recycling of natural fiber composites: Challenges and opportunities X Zhao, K Copenhaver, L Wang, M Korey, DJ Gardner, K Li, ME Lamm, ... Resources, Conservation and Recycling 177, 105962, 2022 | 136 | 2022 |
Effect of fused layer modeling (FLM) processing parameters on impact strength of cellular polypropylene L Wang, DJ Gardner Polymer 113, 74-80, 2017 | 126 | 2017 |
Cellulose nanofibrils versus cellulose nanocrystals: Comparison of performance in flexible multilayer films for packaging applications L Wang, C Chen, J Wang, DJ Gardner, M Tajvidi Food Packaging and Shelf Life 23, 100464, 2020 | 107 | 2020 |
Adhesion theories in wood adhesive bonding DJ Gardner, M Blumentritt, L Wang, N Yildirim Progress in adhesion and adhesives, 125-168, 2015 | 90 | 2015 |
Material extrusion additive manufacturing of wood and lignocellulosic filled composites ME Lamm, L Wang, V Kishore, H Tekinalp, V Kunc, J Wang, DJ Gardner, ... Polymers 12 (9), 2115, 2020 | 88 | 2020 |
Towards a cellulose-based society: opportunities and challenges J Wang, L Wang, DJ Gardner, SM Shaler, Z Cai Cellulose 28, 4511-4543, 2021 | 86 | 2021 |
High-strength polylactic acid (PLA) biocomposites reinforced by epoxy-modified pine fibers X Zhao, K Li, Y Wang, H Tekinalp, G Larsen, D Rasmussen, RS Ginder, ... ACS Sustainable Chemistry & Engineering 8 (35), 13236-13247, 2020 | 83 | 2020 |
Cellulose nanofibril‐reinforced polypropylene composites for material extrusion: Rheological properties L Wang, DJ Gardner, DW Bousfield Polymer Engineering & Science 58 (5), 793-801, 2018 | 73 | 2018 |
Effect of fused deposition modeling process parameters on the mechanical properties of a filled polypropylene L Wang, JE Sanders, DJ Gardner, Y Han Progress in Additive Manufacturing 3, 205-214, 2018 | 72 | 2018 |
Review on nonconventional fibrillation methods of producing cellulose nanofibrils and their applications L Wang, K Li, K Copenhaver, S Mackay, ME Lamm, X Zhao, B Dixon, ... Biomacromolecules 22 (10), 4037-4059, 2021 | 69 | 2021 |
Towards industrial-scale production of cellulose nanocomposites using melt processing: a critical review on structure-processing-property relationships L Wang, DJ Gardner, J Wang, Y Yang, HL Tekinalp, M Tajvidi, K Li, ... Composites Part B: Engineering 201, 108297, 2020 | 60 | 2020 |
Spray-dried cellulose nanofibril-reinforced polypropylene composites for extrusion-based additive manufacturing: Nonisothermal crystallization kinetics and thermal expansion L Wang, WM Gramlich, DJ Gardner, Y Han, M Tajvidi Journal of Composites Science 2 (1), 7, 2018 | 58 | 2018 |
Contribution of printing parameters to the interfacial strength of polylactic acid (PLA) in material extrusion additive manufacturing L Wang, DJ Gardner Progress in Additive Manufacturing 3, 165-171, 2018 | 56 | 2018 |
Review on Hybrid Reinforced Polymer Matrix Composites with Nanocellulose, Nanomaterials, and Other Fibers MÖ Seydibeyoğlu, A Dogru, J Wang, M Rencheck, Y Han, L Wang, ... Polymers 15 (4), 984, 2023 | 53 | 2023 |
Bioinspired design toward nanocellulose-based materials X Zhao, S Bhagia, D Gomez-Maldonado, X Tang, S Wasti, S Lu, S Zhang, ... Materials Today, 2023 | 41 | 2023 |
Pretreatment of lignocellulosic feedstocks for cellulose nanofibril production K Copenhaver, K Li, L Wang, M Lamm, X Zhao, M Korey, D Neivandt, ... Cellulose 29 (9), 4835-4876, 2022 | 41 | 2022 |