화학공학소재연구정보센터
검색결과 : 15건
No. Article
1 Ignition of nickel coated aluminum agglomerates using shock tube
Lee H, Kim JH, Kang S, Deshmukh PR, Sohn Y, Hyun HS, Shin WG
Combustion and Flame, 221, 160, 2020
2 Physical mechanisms involved into the flame propagation process through aluminum dust-air clouds: A review
Ben Moussa R, Proust C, Guessasma M, Saleh K, Fortin J
Journal of Loss Prevention in The Process Industries, 45, 9, 2017
3 Experimental Study on Dynamic Combustion Characteristics of Aluminum Particles
Zhou YA, Liu JZ, Wang JR, Xv TW, Wang JH, Zhou JH, Cen KF
Propellants Explosives Pyrotechnics, 42(8), 982, 2017
4 Evaluation of detonation characteristics of aluminum/JP-10/air mixtures at stoichiometric concentrations
Liu LJ, Zhang Q, Shen SL, Li D, Lian Z, Wang YX
Fuel, 169, 41, 2016
5 Activated aluminum powders for space propulsion
Maggi F, Dossi S, Paravan C, DeLuca LT, Liljedahl M
Powder Technology, 270, 46, 2015
6 Exothermic surface chemistry on aluminum particles promoting reactivity
Mulamba O, Pantoya ML
Applied Surface Science, 315, 90, 2014
7 Effect of packing density on flame propagation of nickel-coated aluminum particles
Sundaram DS, Yang V
Combustion and Flame, 161(11), 2916, 2014
8 Curing Viscosity of HTPB-Based Binder Embedding Micro- and Nano-Aluminum Particles
Maggi F
Propellants Explosives Pyrotechnics, 39(5), 755, 2014
9 Propagation and extinction of dust flames in narrow channels
Bidabadi M, Zadsirjan S, Mostafavi SA
Journal of Loss Prevention in The Process Industries, 26(1), 172, 2013
10 Radiation heat transfer in transient dust cloud flame propagation
Bidabadi M, Zadsirjan S, Mostafavi SA
Journal of Loss Prevention in The Process Industries, 26(4), 862, 2013