| PROGRESS IN THE THEORY OF SHS
 | 
| Thermodynamic Analysis of SHS Processes S.S.Mamyan
 | 1 | 
| Thermodynamic Analysis of Combustion Synthesis of Alumium/Boride Composite S. Yin, Y.-H. Liu and H.-Y. Lai
 | 9 | 
| Mathematical 3d-Modeling for Spinning Gasless Combustion Waves T.P. Ivleva and A.G. Merzhanov
 | 13 | 
| The Convectiv-Conductive Mode of the Reaction Zone Propagation: a New Mechanism of Combustion of 'Gasless' Systems B.S. Seplyarskii
 | 21 | 
| Non-Equilibrium Thermodynamic and Nonlinear Dynamic Analysis of Combustion Wave in SHS Process Z.-G. Zou, Z.-Y. Fu and R.-Z. Yuan
 | 27 | 
| The Effect of Electric Diffusion and Heat Losses on the SHS Wave LM.Kotin
 | 21 | 
| Metal Liquid in SHS Reaction for Ò!Âã Ceramics Z.Y. Fu, H. Wang, W.M. Wang, Q.J. Zheng and R.-Z. Yuan
 | 41 | 
| The Role of Molecular Gas-Phase and Conduction Heat Transfer in Propagation of Combustion Wave A.Yu. Gordopolov, S.G. Vadchenko and A.S. Mukas'yan
 | 45 | 
| Shock-Induced Chemical Reaction in Ti-C Blends A.Yu. Gordopolov, Yu.A. Gordopolov, V.M. Fedorov and R.M. Shikhverdiev
 | 49 | 
| Kinetic Parameters of the Thermal Explosion Reaction of Ni-Al-Fe System X.-D. He, J.-C. Han and X.-H. Zhang
 | 51 | 
| SHS under Microgravity A.G. Merzhanov, A.S. Rogachev, V.N. Sanin, V.A. Shcherbakov, A.E. Sytschev and V.LYukhvid
 | 55 | 
| Self-Organization of the Liquid Flame Front A.I. Lesnikovich and S.A. Kirillov
 | 63 | 
| SHS OF COMPOSITE MATERIALS
 | 
| Luminescence of the Corundum-Containing Ti Compounds Composites by Self-Propagating High-Temperature Synthesis T.D. Xia, T.Z. Liu, W.J. Zhao, B.Y. MaandT.M. Wang
 | 71 | 
| Reactive Fabrication of Nanocrystalline Titanium Carbides by Mechanical Alloying X.-K. Zhu, B.-C. Cheng, K.-Y. Zhao, Q.-S. Lin and X.-Q. Zhang
 | 77 | 
| Chemically Activated SHS in Synthesis of Refractory Carbide Powders S.L. Kharatyan and H.H. Nersisyan
 | 83 | 
| Multiphase Ceramics and Cermets Made in One Step Synthesis and Densification by SHS/QP H. Wang, Z.-Y. Fu, W.M. Wang, Q.J. Zhang and R.-Z. Yuan
 | 93 | 
| Hysteresis Effects in High-Temperature Resistivity of SHS Ceramics A.V. Karpov, I.P. Borovinskaya, YU.G. Morozov and V.A. Buiun
 | 97 | 
| Joining of SiC Ceramic to Ni-Based Superalloy with Cu Intermediate Layer S.-J. Li, X.-B. Liang, H.-P. Duan, X.-M. Zang and Y. Zhang
 | 101 | 
| TiNi and Other Intermetallic Compounds Prepared by SHS Process and the Applications Y.-J. Wu, X.-M. Zhang, Y.-Q. Li, W.-H. Yin, L. Zhou and Z.-H. Jin
 | 111 | 
| Investigation on In-Situ NiAl-Based Composite Fabricated by HPES J.T. Guo and C.Y. Cui
 | 117 | 
| Thermodynamic Analysis of TiOz-Al-C-ZrOi Combustion Synthesis System Q. Tang, Q. Dong, W.C. Li and D.Y. Wu
 | 129 | 
| Characteristics of Combustion Reaction in Àl-Ðå20ç System under Gravitational Field T. Lin, S.-J. Guo, S. Yin, Z.-M. Guo andY.-P. Wei
 | 133 | 
| Porous NiTi Alloy Prepared from Combustion Synthesis Y.-H. Li, L.-J. Rong and Y.-Y. Li
 | 137 | 
| SHS OF GAS-SOLID SYSTEMS
 | 
| Development of SHS Nitride-Based Composites in LSCPM, USTB of China C.-C. Ge, J.-T. Li and K.-X. Chen
 | 143 | 
| Self-Propagating High-Temperature Synthesis ofNitrides - Progress of SHS in SICCAS B.-L. Zhang, H.-R. Zhuang, W.-L. Li, S.-Y. Xu, X.-Y. Luo and X.-R. Xu
 | 153 | 
| SHS and Some Properties ofSialon Ceramics K.L. Smimov and I.P. Borovinskaya
 | 159 | 
| Synthesis of Si3N4-TiN-SiC Composites by Combustion Reaction under High Nitrogen Pressures X.-H. Zhang, X.-D. He, J.-C. Han and G.-Q. Chen
 | 165 | 
| Structural Formation and Mechanism in Combustion Synthesis of Nitrogen Ceramics (AIN, Si3N4 and AIN-SiC) J.-T. Li, K.-X. Chen and C.-C. Ge
 | 173 | 
| INDUSTRIALIZATION OF SHS
 | 
| Self-Propagating Low-Temperature Synthesis of Ultrafine ÂàÒiO3 Powders C.-C. Ge and F.-R. Hu
 | 185 | 
| SHS Immobilization of Radioactive Wastes T.V. Barinova, I.P. Borovinskaya, V.I. Ratnikov, T.I. Ignatjeva and V.V. Zakorzhevsky
 | 193 | 
| Interface Phenomena in Ceramic-Lined Composite Pipes Produced by GS-T SHS Process Z.-M. Zhao, M.-H. Ye, J.-J. Wang, X.-K. Du and J.-H. Wen
 | 201 | 
| The Design and Application of Automation Equipment for Producing SHS Curved Ceramic-Lined Composite Pipes J.-J. Wang, Z.-M. Zhao, M.-H. Ye, X.-G. Chen, X.-K. Du and J.-H. Wen
 | 207 | 
| SHS Welding of Hard Alloy and Steel V.A. Shcherbakov
 | 215 | 
| Properties of Ceramic-Lined Composite Steel Pipes and their Application S.-G. Zhang, X.-X. Zhou and D.-H. Qian
 | 219 | 
| Author Index | 225 | 
| Keyword Index | 227 |