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  2023 (3)
Potential Applications of Thermoresponsive Poly (N-Isoproplacrylamide)-Grafted Nylon Membranes: Effect of Grafting Yield and Architecture on Gating Performance. Kajornprai, T.; Katesripongsa, P.; Nam, S. Y.; Hamid, Z. A. A.; Ruksakulpiwat, Y.; Suppakarn, N.; and Trongsatitkul, T. Polymers, 15(3): 497. 2023.
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Synthesis of thermoresponsive PNIPAm nanogel adsorbent by microwave-assisted polymerization for wastewater treatment application. Kajornprai, T.; Seejuntuek, A.; Suppakarn, N.; Prayoonpokarach, S.; and Trongsatitkul, T. Materials Today: Proceedings. 2023.
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Water Hyacinth Fiber as a Bio-Based Carbon Source for Intumescent Flame-Retardant Poly (Butylene Succinate) Composites. Suwanniroj, A.; and Suppakarn, N. Polymers, 15(21): 4211. 2023.
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  2022 (3)
Improving Mechanical Properties of Starch-Based Hydrogels Using Double Network Strategy. Sringam, J.; Pankongadisak, P.; Trongsatitkul, T.; and Suppakarn, N. Polymers, 14(17): 3552. 2022.
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Role of maleic anhydride-grafted poly (lactic acid) in improving shape memory properties of thermoresponsive poly (ethylene glycol) and poly (lactic acid) blends. Nonkrathok, W.; Trongsatitkul, T.; and Suppakarn, N. Polymers, 14(18): 3923. 2022.
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Influence of glycidyl methacrylate grafted poly (butylene succinate)(PBS-g-GMA) on flame retardancy and mechanical properties of water hyacinth fiber/ammonium polyphosphate/poly (butylene succinate) composites. Suwanniroj, A.; and Suppakarn, N. Journal of Applied Polymer Science, 139(43): e53063. 2022.
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  2020 (3)
Effects of PEG and MMT contents on mechanical, thermal, and shape memory properties of MMT/PEG/PLA nanocomposites. Nonkrathok, W; Suppakarn, N; and Trongsatitkul, T In AIP Conference Proceedings, volume 2279, 2020. AIP Publishing
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Effects of borax and montmorillonite contents on mechanical properties of cassava btarch-based composite hydrogels. Sringam, J.; Trongsatitkul, T.; and Suppakarn, N. In AIP Conference Proceedings, volume 2279, 2020. AIP Publishing
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Enhancement of flame retardancy and mechanical properties of poly (butylene succinate) composites by adding hybrid fillers. Suwanniroj, A.; and Suppakarn, N. In AIP Conference Proceedings, volume 2279, 2020. AIP Publishing
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  2018 (1)
Effect of silane treatment methods on physical properties of rice husk flour/natural rubber composites. Srisuwan, L.; Jarukumjorn, K.; and Suppakarn, N. Advances in Materials Science and Engineering, 2018. 2018.
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  2017 (1)
Adsorption of paraquat and pirimiphos-methyl by montmorillonite modified with tetradecylammonium chloride and intragallery templating method. Keawkumay, C.; Rakmae, S.; Rongchapo, W.; Suppakarn, N.; Prayoonpokarach, S.; and Wittayakun, J. Adsorption Science & Technology, 35(3-4): 357–371. 2017.
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  2015 (1)
Glycidyl methacrylate grafted polylactic acid: morphological properties and crystallization behavior. Kangwanwatthanasiri, P.; Suppakarn, N.; Ruksakulpiwat, C.; and Ruksakulpiwat, Y. In Macromolecular Symposia, volume 354, pages 237–243, 2015.
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  2014 (4)
The effects of alkalized and silanized woven sisal fibers on mechanical properties of natural rubber modified epoxy resin. Srisuwan, S; Prasoetsopha, N; Suppakarn, N; and Chumsamrong, P Energy Procedia, 56: 19–25. 2014.
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Effect of flame retardants on flame retardant, mechanical, and thermal properties of sisal fiber/polypropylene composites. Jeencham, R.; Suppakarn, N.; and Jarukumjorn, K. Composites Part B: Engineering, 56: 249–253. 2014.
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Effects of compatibilizer type and fiber loading on mechanical properties and cure characteristics of sisal fiber/natural rubber composites. Wongsorat, W.; Suppakarn, N.; and Jarukumjorn, K. Journal of Composite Materials, 48(19): 2401–2411. 2014.
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Effect of bis (triethoxysilylpropyl) tetrasulfide on physical properties of rice husk fiber/natural rubber composites. Srisuwan, L.; Jarukumjorn, K.; and Suppakarn, N. Advanced Materials Research, 844: 263–266. 2014.
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  2013 (7)
Effect of Compatibilizers on Mechanical and Thermal Properties of High Density Polyethylene Filled with Bio-Filler from Eggshell. Buakaew, W.; Ruksakulpiwat, Y.; Suppakarn, N.; and Sutapun, W. In Advanced Materials Research, volume 699, pages 57–62, 2013. Trans Tech Publ
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Application of calcined eggshell powder as functional filler for high density polyethylene. Sutapun, W.; Pakdeechote, P.; Suppakarn, N.; and Ruksakulpiwat, Y. Polymer-Plastics Technology and Engineering, 52(10): 1025–1033. 2013.
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Effect of triphenyl phosphate flame retardant on properties of arylamine-based polybenzoxazines. Rimdusit, S.; Thamprasom, N.; Suppakarn, N.; Jubsilp, C.; Takeichi, T.; and Tiptipakorn, S. Journal of Applied Polymer Science, 130(2): 1074–1083. 2013.
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Biocomposites From Cassava Pulp/Polylactic acid/Poly (butylene succinate). Kangwanwatthanasiri, P.; Suppakarn, N.; Ruksakulpiwat, C.; and Ruksakulpiwat, Y. In Advanced Materials Research, volume 747, pages 367–370, 2013. Trans Tech Publ
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Mechanical, Thermal and Morphological Properties of Poly (butylene Succinate) Filled with Bio-Functional Filler from Eggshell Waste. Buakaew, W.; Ruksakulpiwat, Y.; Suppakarn, N.; and Sutapun, W. In Advanced Materials Research, volume 747, pages 72–75, 2013. Trans Tech Publ
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Influence of heat-treated bovine bone-derived hydroxyapatite on physical properties and in vitro degradation behavior of poly (lactic acid) composites. Rakmae, S.; Lorprayoon, C.; Ekgasit, S.; and Suppakarn, N. Polymer-Plastics Technology and Engineering, 52(10): 1043–1053. 2013.
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Effect of Filler Particle Size on Mechanical and Thermal Properties of High Density Polyethylene Filled with Bio-Filler from Eggshell Waste. Buakaew, W.; Ruksakulpiwat, Y.; Suppakarn, N.; and Sutapun, W. In Pure and Applied Chemistry International Conference 2013, 2013.
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  2012 (14)
Study of B. Mori Silk Fabric and B. Mori Silk Reinforced Epoxy Composite. Chaisomkul, N; Suppakarn, N.; and Sutapun, W. Advanced Materials Research, 410: 329–332. 2012.
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Effect of Acrylic Acid Treated Rice Husk Silica on Properties of Poly (butylene adipate-co-terephthalate)(PBAT) Composites. Phosee, J.; Wittayakun, J.; and Suppakarn, N. Advanced Materials Research, 410: 81–85. 2012.
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Crystallization behavior of vetiver grass fiber-polylactic acid composite. Boonying, S.; Sutapun, W.; Suppakarn, N.; and Ruksakulpiwat, Y. Advanced Materials Research, 410: 55–58. 2012.
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Composite Materials Based on Natural Rubber Modified Epoxy Resin and Sisal Fiber. Srisuwan, S.; Prasoetsopha, N; Suppakarn, N.; and Chumsamrong, P. Advanced Materials Research, 410: 43–46. 2012.
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Characterization of precipitated calcium carbonate from eggshell powder. Sutapun, W.; Ruksakulpiwat, Y.; Suppakarn, N.; Jeencham, R.; and Aontee, A. Advanced Materials Research, 410: 228–231. 2012.
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Flame retardancy, thermal stability, and mechanical properties of sisal fiber/organoclay/polypropylene composites. Chanprapanon, W.; Suppakarn, N.; and Jarukumjorn, K. Advanced Materials Research, 410: 47–50. 2012.
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Influences of surfactant content and type on physical properties of natural rubber/organoclay nanocomposites. Keawkumay, C.; Jarukumjorn, K.; Wittayakun, J.; and Suppakarn, N. Journal of Polymer Research, 19: 1–9. 2012.
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Physical properties of rice husk fiber/natural rubber composites. Srisuwan, L.; Jarukumjorn, K.; and Suppakarn, N. Advanced Materials Research, 410: 90–93. 2012.
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Effect of silane coupling agent treated bovine bone based carbonated hydroxyapatite on in vitro degradation behavior and bioactivity of PLA composites. Rakmae, S.; Ruksakulpiwat, Y.; Sutapun, W.; and Suppakarn, N. Materials Science and Engineering: C, 32(6): 1428–1436. 2012.
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Effect of Heat Treatment on Chemical Structure of a Bio-Filler from Vetiver Grass. Sutapun, W.; Ruksakulpiwat, Y.; and Suppakarn, N. Advanced Materials Research, 410: 71–74. 2012.
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Sisal fiber/natural rubber composites: effect of fiber content and interfacial modification. Wongsorat, W.; Suppakarn, N.; and Jarukumjorn, K. Advanced Materials Research, 410: 63–66. 2012.
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The preparation of poly (lactic acid) via chain linked hydroxy-terminated lactic acid prepolymer. Songprateepkul, S.; Rakmae, S.; Deeprasertkul, C; Suppakarn, N.; and Chumsamrong, P. Advanced Materials Research, 410: 337–340. 2012.
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Thermal properties, biodegradability and cytotoxicity of PLA/sericin films. Rakmae, S.; and Suppakarn, N. Advanced Materials Research, 410: 86–89. 2012.
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Effect of Zn addition on sol-gel derived apatite/wollastonite glass-ceramics scaffolds. Rattanachan, S T.; Srakaew, N; Pethnin, R.; and Suppakarn, N. Journal of Metals, Materials and Minerals, 22(2). 2012.
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  2011 (7)
Effects of type and concentration of initiator on grafting of acrylic monomer onto depolymerized natural rubber. Prasoetsopha, N; Chumsamrong, P.; and Suppakarn, N. Advanced Materials Research, 264: 565–570. 2011.
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Physical properties and cytotoxicity of surface-modified bovine bone-based hydroxyapatite/poly (lactic acid) composites. Rakmae, S.; Ruksakulpiwat, Y.; Sutapun, W.; and Suppakarn, N. Journal of composite materials, 45(12): 1259–1269. 2011.
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Influence of filler types on mechanical properties and cure characteristics of natural rubber composites. Wongsorat, W.; Suppakarn, N.; and Jarukumjorn, K. Advanced Materials Research, 264: 646–651. 2011.
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Effects of mixing technique and filler content on physical properties of bovine bone-based CHA/PLA composites. Rakmae, S.; Ruksakulpiwat, Y.; Sutapun, W.; and Suppakarn, N. Journal of Applied Polymer Science, 122(4): 2433–2441. 2011.
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Effect of organoclay types on mechanical properties and flammability of polypropylene/sisal fiber composites. Chanprapanon, W; Suppakarn, N; and Jarukumjorn, K In Proceedings of the 18th International Conference on Composite Materials (ICCM’11), 2011.
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Effect of flame retardant on flame retardancy and mechanical properties of glass fiber/polypropylene composites. Jeencham, R.; Suppakarn, N.; and Jarukumjorn, K. Advanced Materials Research, 264: 652–656. 2011.
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Effect of triphenylphosphate flame retardant on properties of polybenzoxazines. Rimdusit, S.; Suppakarn, N.; and Jubsilp, C. Technical Report Chulalongkorn University, 2011.
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  2010 (5)
Flammability and mechanical properties of sisal fiber/polypropylene composites: effect of combination of flame retardants. Jeencham, R.; Suppakarn, N.; and Jarukumjorn, K. Advanced Materials Research, 123: 85–88. 2010.
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Study of characteristic of vetiver fiber before and after alkaline treatment. Sutapun, W.; Suppakarn, N.; and Ruksakulpiwat, Y. Advanced Materials Research, 123: 1191–1194. 2010.
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Effects of surfactant content and clay content on properties of NR nanocomposites. Keawkumay, C.; Jarukumjorn, K.; and Suppakarn, N. Advanced Materials Research, 123: 55–58. 2010.
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Mechanical properties and morphologies of rice husk silica (RHS)/poly (butylene adipate-co-terephthalate)(PBAT) composites: Effect of silane coupling agent. Phosee, J.; Wittayakun, J.; and Suppakarn, N. Advanced Materials Research, 123: 141–144. 2010.
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Mechanical properties, morphological properties, and cure characteristics of sisal fiber/natural rubber composites: effects of fiber and compatibilizer content. Wongsorat, W.; Suppakarn, N.; and Jarukumjorn, K. Advanced Materials Research, 123: 1171–1174. 2010.
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  2009 (4)
Shear-induced crystallization of injection molded vetiver grass-polypropylene composites. Somnuk, U.; Suppakarn, N.; Sutapun, W.; and Ruksakulpiwat, Y. Journal of applied polymer science, 113(6): 4003–4014. 2009.
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Improvement of impact property of natural fiber–polypropylene composite by using natural rubber and EPDM rubber. Ruksakulpiwat, Y.; Sridee, J.; Suppakarn, N.; and Sutapun, W. Composites Part B: Engineering, 40(7): 619–622. 2009.
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Mechanical properties and flammability of sisal/PP composites: Effect of flame retardant type and content. Suppakarn, N.; and Jarukumjorn, K. Composites Part B: Engineering, 40(7): 613–618. 2009.
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Effect of glass fiber hybridization on properties of sisal fiber–polypropylene composites. Jarukumjorn, K.; and Suppakarn, N. Composites Part B: Engineering, 40(7): 623–627. 2009.
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  2008 (8)
Effect of flame retardant on mechanical properties and flammability of sisal/PP composites. Suppakarn, N.; Jarukumjorn, K.; and Tananimit, S. Advanced Materials Research, 47: 403–406. 2008.
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Chicken Eggshell as a Filler for Polymer Composites: Preparation and Characterizations. Sanmuang, S.; Ruksakulpiwat, Y.; Suppakarn, N.; and Sutapun, W. Advanced Materials Research, 47: 490–493. 2008.
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Accumulation of polyhydroxyalkanoates by starch-utilizing bacteria. Rodtong, S.; Songsrirote, S.; Deeprasertkul, C.; Suppakarn, N.; and Sutheerawattananonda, M. Journal of Biotechnology, (136): S447. 2008.
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Production of bacterial polyhydroxyalkanoates for potential application. Rodtong, S.; Deeprasertkul, C.; Suppakarn, N.; Lertsiriyothin, W.; and Sutheerawattananonda, M. Journal of Biotechnology, (136): S447. 2008.
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Effect of surface modification on properties of natural hydroxyapatite/polypropylene composites. Suppakarn, N.; Sanmaung, S; Ruksakulpiwat, Y.; and Sutapun, W. Key Engineering Materials, 361: 511–514. 2008.
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Mechanical and morphological properties of sisal/glass fiber-polypropylene composites. Jarukumjorn, K.; Suppakarn, N.; and Kluengsamrong, J. Advanced Materials Research, 47: 486–489. 2008.
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Natural Rubber and EPDM Rubber as An Impact Modifier in Vetiver grass-Polypropylene Composites. Ruksakulpiwat, Y.; Sridee, J.; Suppakarn, N.; and Sutapun, W. Advanced Materials Research, 47: 427–430. 2008.
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Effect of Surface Modification on Properties of Natural Hydroxyapatite/Polypropylene Composites N. Suppakarn, S. Sanmaung, Y. Ruksakulpiwat and W. Sutapun. Suppakarn, N . 2008.
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  2007 (3)
Vetiver–polypropylene composites: physical and mechanical properties. Ruksakulpiwat, Y.; Suppakarn, N.; Sutapun, W.; and Thomthong, W. Composites Part A: Applied Science and Manufacturing, 38(2): 590–601. 2007.
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Development of wood-substituted composites from highly filled polybenzoxazine–phenolic novolac alloys. Rimdusit, S.; Kampangsaeree, N.; Tanthapanichakoon, W.; Takeichi, T.; and Suppakarn, N. Polymer Engineering & Science, 47(2): 140–149. 2007.
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Quiescent crystallization of natural fibers–polypropylene composites. Somnuk, U.; Eder, G.; Phinyocheep, P.; Suppakarn, N.; Sutapun, W.; and Ruksakulpiwat, Y. Journal of applied polymer science, 106(5): 2997–3006. 2007.
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  2006 (3)
Studies of thermal properties and surface characteristics of pretreated and silaned rossell fibers. Sutapun, W.; Ruksakulpiwat, Y.; Jarukumjorn, K.; Supakarn, N.; Chumsamrong, P.; and Kluengsamron, J. . 2006.
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Development of Polymer Composites Using Natural Fibers in Thailand. Ruksakulpiwat, Y.; Suppakarn, N.; Jarukumjorn, K.; Chumsamrong, P.; and Sutapun, W. . 2006.
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Shear-induced crystallization of natural fiber-polypropylene composites. Ruksakulpiwat, Y; Somnuk, U; Kleungsumrong, J; Phinyocheep, P; Suppakarn, N; and Sutapun, W . 2006.
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  2004 (1)
The study of using vetiver grass as a filler in polypropylene composites. Ruksakulpiwat, Y . 2004.
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  2001 (1)
Roles of Poly (propylene glycol) during Solvent-Based Lamination of Ceramic Green Tapes. Suppakarn, N.; Ishida, H.; and Cawley, J. D Journal of the American Ceramic Society, 84(2): 289–94. 2001.
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  2000 (1)
Polymer assisted lamination of ceramic green tape. Suppakarn, N. . 2000.
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  1999 (2)
Phase distribution within the organic constituents of ceramic green tape and relation to physical properties. Suppakarn, N. Ph.D. Thesis, Case Western Reserve University, 1999.
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Coated Feedstock for Fabrication of Ceramic parts by CAM-LEM. Liu, Z.; Suppakarn, N; and Cawley, J. D In 1999 International Solid Freeform Fabrication Symposium, 1999.
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