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Ibrahim Emre Gunduz

Associate Professor
Mechanical and Aerospace Engineering
Graduate School of Engineering and Applied Sciences

Phone: (831) 656-6288
NPS Experience
  • 2018 - current: Associate Professor

Scholarly Work

Publications
  • Journal Article
  • Justice, A., Beason, M., Gunduz, I. E., Chen, W., & Son, S, (2020). Dynamic stress-strain response of high-energy ball milled aluminium powder compacts. MECHANICS OF MATERIALS, (143), 103337.
  • McClain, M. S., Afriat, A., Rhoads, J. F., Gunduz, I. E., & Son, S. F, (2020). Inside Cover: Development and Characterization of a Photopolymeric Binder for Additively Manufactured Composite Solid Propellant Using Vibration Assisted Printing. PROPELLANTS, EXPLOSIVES, PYROTECHNICS, 6(45), 846--846.
  • Olokun, A. M., Prakash, C., Gunduz, I. E., & Tomar, V, (2020). The role of microstructure in the impact induced temperature rise in hydroxyl terminated polybutadiene (HTPB)--cyclotetramethylene-tetranitramine (HMX) energetic materials using the cohesive finite element method. JOURNAL OF APPLIED PHYSICS, 6(128), 065901.
  • Prakash, C., Gunduz, I. E., & Tomar, V, (2019). Interface Chemistry and Strain Rate Effect on Fracture in Energetic Material Interfaces..
  • Vuppuluri, V. S., Bennion, J. C., Wiscons, R. A., Gunduz, I. E., Matzger, A. J., & Son, S. F, (2019). Detonation Velocity Measurement of a Hydrogen Peroxide Solvate of CL-20. PROPELLANTS, EXPLOSIVES, PYROTECHNICS, 3(44), 313-318.
  • Agrawal, R., Hanna, J., Gunduz, I. E., & Luhrs, C. C, (2019). Epoxy-PCM Composites with Nanocarbons or Multidimensional Boron Nitride as Heat Flow Enhancers. Molecules, 10(24).
  • Mares, Jesus O., Jr., Roberts, Z. A., Gunduz, I. E., Parab, N. D., Sun, T., Fezzaa, K., Chen, W. W., Son, S. F., & Rhoads, J. F, (2019). In-situ X-ray observations of ultrasound-induced explosive decomposition. APPLIED MATERIALS TODAY, (15), 286-+.
  • Isik, T., Xu, X., Son, S. F., Gunduz, I. E., & Ortalan, V, (2019). Investigation of Polymer Matrix Nano-Aluminum Composites with Pulsed Laser Heating by In-Situ TEM. Propellants, Explosives and Pyrotechnics, 12(44), 1608-1612.
  • Roberts, Z. A., Wickham, J. A., Sorensen, C. J., Manship, T. D., Gunduz, I. E., Son, S. F., & Rhoads, J. F, (2019). Mesoscale observations of the thermal decomposition of energetic composites under ultrasonic excitation. JOURNAL OF APPLIED PHYSICS, 21(125).
  • Prakash, C., Gunduz, I. E., & Tomar, V, (2019). Simulation guided experimental interface shock viscosity measurement in an energetic material. MODELLING AND SIMULATION IN MATERIALS SCIENCE AND ENGINEERING, 8(27).
  • Prakash, C., Gunduz, I. E., & Tomar, V, (2019). The effect of interface shock viscosity on the strain rate induced temperature rise in an energetic material analyzed using the cohesive finite element method. MODELLING AND SIMULATION IN MATERIALS SCIENCE AND ENGINEERING, 6(27).
  • McClain, M., Gunduz, I. E., & Son, S, (2019). Additive manufacturing of ammonium perchlorate composite propellant with high solids loadings. PROCEEDINGS OF THE COMBUSTION INSTITUTE, 3(37), 3135--3142.
  • Terry, B. C., Rubio, M. A., Gunduz, I. E., Son, S. F., & Groven, L. J, (2019). Altering Agglomeration in a Composite Propellant with Aluminum--Silicon Eutectic Alloy. JOURNAL OF PROPULSION AND POWER, 6(35), 1048--1056.
  • Westphal, E. R., Murray, A. K., McConnell, M. P., Fleck, T. J., Chiu, G. T., Rhoads, J. F., Gunduz, I. E., & Son, S. F, (2019). Inside Back Cover: The Effects of Confinement on the Fracturing Performance of Printed Nanothermites (Prop., Explos., Pyrotech. 1/2019) PROPELLANTS, EXPLOSIVES, PYROTECHNICS, 1(44), 115--115.
  • Westphal, E. R., Murray, A. K., McConnell, M. P., Fleck, T. J., Chiu, G. T., Rhoads, J. F., Gunduz, I. E., & Son, S. F, (2019). The Effects of Confinement on the Fracturing Performance of Printed Nanothermites. Propellants, Explosives, Pyrotechnics, 1(44), 47--54.
  • Powell, M. S., Gunduz, I. E., Shang, W., Chen, J., Son, S. F., Chen, Y., & Guildenbecher, D. R, (2018). Agglomerate Sizing in Aluminized Propellants Using Digital Inline Holography and Traditional Diagnostics. JOURNAL OF PROPULSION AND POWER, 4(34), 1002-1014.
  • Belal, H., Han, C. W., Gunduz, I. E., Ortalan, V., & Son, S. F, (2018). Ignition and combustion behavior of mechanically activated Al-Mg particles in composite solid propellants. COMBUSTION AND FLAME, (194), 410-418.
  • Ramachandran, R., Vuppuluri, V. S., Fleck, T. J., Rhoads, J. F., Gunduz, I. E., & Son, S. F, (2018). Influence of Stoichiometry on the Thrust and Heat Deposition of On-Chip Nanothermites. PROPELLANTS EXPLOSIVES PYROTECHNICS, 3(43), 258-266.
  • McBain, A., Vuppuluri, V., Gunduz, I. E., Groven, L. J., & Son, S. F, (2018). Laser ignition of CL-20 (hexanitrohexaazaisowurtzitane) cocrystals. COMBUSTION AND FLAME, (188), 104-115.
  • Cummock, N. R., Mares, Jesus O., Jr., Gunduz, I. E., & Son, S. F, (2018). Relating a small-scale shock sensitivity experiment to large-scale failure diameter in an aluminized ammonium nitrate non-ideal explosive. COMBUSTION AND FLAME, (194), 271-277.
  • Hussein, A., Alkhoori, A., Al Zaabi, Abdelaziz, Stefanini, C., Renda, F., Jaffar, S., Gunduz, I. E., Polychronopoulou, K., Rebholz, C. G., & Doumanidis, C. C, (2018). Underwater Robotic Welding of Lap Joints with Sandwiched Reactive Multilayers: Thermal, Mechanical and Material Analysis. MRS ADVANCES, 17(3), 911-920.
  • Gunduz, I. E., McClain, M. S., Cattani, P., Chiu, G. T., Rhoads, J. F., & Son, S. F, (2018). 3D printing of extremely viscous materials using ultrasonic vibrations. ADDITIVE MANUFACTURING, (22), 98-103.
  • Aureli, M., Doumanidis, C. C., Gunduz, I. E., Hussien, Aseel Gamal Suliman, Liao, Y., Kostoglou, N., Rebholz, C., & Doumanidis, C. C, (2018). Bimetallic diffusion modeling and temperature regulation during ball milling. MATERIALS & DESIGN, (155), 233-243.
  • Vuppuluri, V. S., Samuels, P. J., Caflin, K. C., Gunduz, I. E., & Son, S. F, (2018). Detonation Performance Characterization of a Novel CL-20 Cocrystal Using Microwave Interferometry. PROPELLANTS EXPLOSIVES PYROTECHNICS, 1(43), 38-47.
  • Prakash, C., Gunduz, I. E., Oskay, C., & Tomar, V, (2018). Effect of interface chemistry and strain rate on particle-matrix delamination in an energetic material. ENGINEERING FRACTURE MECHANICS, (191), 46-64.
  • Morris, L. A., Thompson, D. G., DeLuca, R., Shelburne, I., Gunduz, I. E., Son, S. F., & Haines, C. D, (2018). Impact Sensitivity and Ignition Mechanisms of Nanoaluminum-poly(perfluorinated methacrylate) Nanocomposites. MRS ADVANCES, 17(3), 887-903.
  • Kostoglou, N., Gunduz, I. E., Isik, T., Ortalan, V., Constantinides, G., Kontos, A. G., Steriotis, T., Ryzhkov, V., Bousser, E., Matthews, A., Doumanidis, C., Mitterer, C., & Rebholz, C, (2018). Novel combustion synthesis of carbon foam aluminum fluoride nanocomposite materials. MATERIALS & DESIGN, (144), 222-228.
  • Murray, A. K., Novotny, W. A., Bajaj, N., Gunduz, I. E., Son, S. F., Chiu, George T. -C., & Rhoads, J. F, (2018). Piezoelectric Inkjet-Printed Metallic Igniters. JOURNAL OF IMAGING SCIENCE AND TECHNOLOGY, 4(62).
  • Murray, A. K., Novotny, W. A., Fleck, T. J., Gunduz, I. E., Son, S. F., Chiu, G. T., & Rhoads, J. F, (2018). Selectively-deposited energetic materials: A feasibility study of the piezoelectric inkjet printing of nanothermites. ADDITIVE MANUFACTURING, (22), 69-74.
  • Beason, M. T., Pauls, J. M., Gunduz, I. E., Rouvimov, S., Manukyan, K. V., Matous, K., Son, S. F., & Mukasyan, A, (2018). Shock-induced reaction synthesis of cubic boron nitride. APPLIED PHYSICS LETTERS, 17(112).
  • Westphal, E. R., Murray, A. K., McConnell, M. P., Fleck, T. J., Chiu, G. T., Rhoads, J. F., Gunduz, I. E., & Son, S. F, (2018). The Effects of Confinement on the Fracturing Performance of Printed Nanothermites. Propellants, Explosives, Pyrotechnics, .
  • Aureli, M., Alzaabi, A. S., Hussien, A. G., Doumanidis, C. C., Jaffar, S. M., Gunduz, I. E., Rebholz, C., Kostoglou, N., Liao, Y., & Doumanidis, C. C, (2018). Thermostructural observation and adaptive control of fractal structure in ball-milled materials. Materials \& Design, (160), 772--782.
  • Belal, H., Han, C. W., Gunduz, I. E., Ortalan, V., & Son, S. F, (2018). Ignition and combustion behavior of mechanically activated Al-Mg particles in composite solid propellants. COMBUSTION AND FLAME, (194), 410-418.
  • Hu, R., Prakash, C., Tomar, V., Harr, M., Gunduz, I. E., & Oskay, C, (2017). Experimentally-validated mesoscale modeling of the coupled mechanical-thermal response of AP-HTPB energetic material under dynamic loading. INTERNATIONAL JOURNAL OF FRACTURE, 1-2(203), 277-298.
  • Terry, B. C., Gunduz, I. E., Pfeil, M. A., Sippel, T. R., & Son, S. F, (2017). A mechanism for shattering microexplosions and dispersive boiling phenomena in aluminum-lithium alloy based solid propellant. PROCEEDINGS OF THE COMBUSTION INSTITUTE, 2(36), 2309-2316.
  • Fleck, T. J., Ramachandran, R., Murray, A. K., Novotny, W. A., Chiu, George T. -C., Gunduz, I. E., Son, S. F., & Rhoads, J. F, (2017). Controlled Substrate Destruction Using Nanothermite. PROPELLANTS EXPLOSIVES PYROTECHNICS, 6(42), 579-584.
  • Aureli, M., Doumanidis, C. C., Gunduz, I. E., Hussien, Aseel Gamal Suliman, Liao, Y., Rebholz, C., & Doumanidis, C. C, (2017). Mechanics and energetics modeling of ball-milled metal foil and particle structures. ACTA MATERIALIA, (123), 305-316.
  • Fleck, T. J., Murray, A. K., Gunduz, I. E., Son, S. F., Chiu, G. T., & Rhoads, J. F, (2017). Additive manufacturing of multifunctional reactive materials. Additive Manufacturing, (17), 176--182.
  • Isik, T., Kundu, S., Gunduz, I. E., & Ortalan, V, (2017). Investigation of Nanoparticle Reactions with Laser Heating by In situ TEM. Microscopy and Microanalysis, S1(23), 1892--1893.
  • Patent
  • Terry, B. C., Son, S. F., & Gunduz, I. E, (2019). Solid-rocket propellants.
  • Rhoads, J. F., Gunduz, I. E., Son, S. F., & Chiu, G. T, (2019). Methods and apparatus for 3d printing of highly viscous materials.
  • Rhoads, J. F., Chiu, G. T., Gunduz, I. E., Fleck, T. J., Murray, A. K., & Son, S. F, (2019). 3d printed fluoropolymer-based energetic compositions.
  • Isert, S., Son, S. F., Lane, C. D., & Gunduz, I. E, (2018). Reactive burning rate accelerators, solid energetic materials comprising the same, and methods of using the same.