Stephen C. Danforth
Affiliations: | Rutgers University, New Brunswick, New Brunswick, NJ, United States |
Area:
Materials Science Engineering, Biochemistry, Pharmaceutical ChemistryGoogle:
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Publications
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Labropoulos KC, Niesz DE, Danforth SC. (2012) Modeling the Dynamic Rheological Bebavior of Agar Based Aqueous Binders Ceramic Transactions. 129: 53-65 |
Iyer S, Mcintosh J, Bandyopadhyay A, et al. (2008) Microstructural characterization and mechanical properties of Si3N4 formed by fused deposition of ceramics International Journal of Applied Ceramic Technology. 5: 127-137 |
Bandyopadhyay A, Panda RK, Janas VF, et al. (2005) Processing of Piezocomposites by Fused Deposition Technique Journal of the American Ceramic Society. 80: 1366-1372 |
Rangarajan S, Qi G, Venkataraman N, et al. (2004) Powder Processing, Rheology, and Mechanical Properties of Feedstock for Fused Deposition of Si3N4 Ceramics Journal of the American Ceramic Society. 83: 1663-1669 |
Wu S, Rangarajan S, Dai C, et al. (2003) Warm isostatic pressing (WIP'ing) of GS44 Si3N4 FDC parts for defect removal Materials and Design. 24: 681-686 |
Chen B, Cheeseman BA, Safari A, et al. (2002) Theoretical and numerical predictions of the electromechanical behavior of spiral-shaped lead zirconate titanate (PZT) actuators. Ieee Transactions On Ultrasonics, Ferroelectrics, and Frequency Control. 49: 319-26 |
Turcu S, Jadidian B, Danforth SC, et al. (2002) Piezoelectric properties of novel oriented ceramic-polymer composites with 2-2 and 3-3 connectivity Journal of Electroceramics. 9: 165-171 |
Wu G, Langrana NA, Sadanji R, et al. (2002) Solid freeform fabrication of metal components using fused deposition of metals Materials and Design. 23: 97-105 |
Labropoulos KC, Niesz DE, Danforth SC, et al. (2002) Dynamic rheology of agar gels: Theory and experiments. Part II: Gelation behavior of agar sols and fitting of a theoretical rheological model Carbohydrate Polymers. 50: 407-415 |
Labropoulos KC, Niesz DE, Danforth SC, et al. (2002) Dynamic rheology of agar gels: Theory and experiments. Part I. Development of a rheological model Carbohydrate Polymers. 50: 393-406 |