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1.
NUMERICAL SIMULATION OF SELF-PROPAGATING HIGH-TEMPERATURE SYNTHESIS PROCESS OF Ti-C SYSTEM
Ti-C系自蔓延高温合成过程的数值模拟
2.
Technology of C/C++ Program Optimization Based on TI C6000 DSP
基于TI C6000系列DSP的C/C++程序优化技术
3.
Combustion Synthesis Reaction Mechanism of Ni-Ti-C/B_4C Systems
Ni-Ti-C/B_4C体系燃烧合成反应机制
4.
Thermodynamic Analysis of SHS Reaction of Ti-C-3Ni-Al System
Ti-C-3Ni-Al体系SHS反应热力学分析
5.
Calculation on Ti-Al-C/TiB_2 Composite Ceramics
Ti-Al-C系/TiB_2复合陶瓷计算研究
6.
Influence of Al on Reactive System of Ti-B_4C-sucrose (Precursor of Carbon)
Al对Ti-B_4C-蔗糖(C的前驱体)体系的影响
7.
Study on the Combustion Behaviour of Fe-Ti-C Systems Based on a Field Activation;
基于场激发的Fe-Ti-C三元系燃烧行为研究
8.
Study on Thermodynamics Analysis and Kinetics Mechanism for Ti-Al-C System;
Ti-Al-C体系热力学分析及动力学机理研究
9.
Relationship between (Ti,Me)C/Fe Cermet Interfacial Valence Electron Structure and Properties
(Ti,Me)C-Fe金属陶瓷界面电子结构与性能的关系
10.
The Relationship between the Wettability and the Valence Electron Structure of Ceramic Phase in Ti(C,N) Based Cermets;
Ti(C,N)基金属陶瓷中润湿性与陶瓷相价电子结构的关系
11.
Investigation of Reaction Behavior and Mechanism of Thermal Explosion from Ni-Ti-C System under the Participation of Air;
空气气氛下Ni-Ti-C体系热爆反应行为及机制研究
12.
Effect of Kinetics Factors on Products of Self-propagating High-temperature Synthesis Reaction of Cr-Ti-C System;
动力学因素对Cr-Ti-C体系自蔓延高温合成反应产物的影响
13.
Study on the Laser-ignited Self-propagating Sintering and Products of Al-C-Ti System Powder Materials;
Al-C-Ti系粉末材料激光点火自蔓延烧结及产物的研究
14.
Reaction Behaviors of Combustion Synthesis and Fabrication of Steel Matrix Composites from Cu-Ti-C/B_4C System;
Cu-Ti-C/B_4C体系燃烧合成行为及钢基复合材料的制备
15.
Structure Macro Kinetics of Combustion Synthesis Al-T-C and Grain Refining Performance Evaluation;
燃烧合成Al-Ti-C结构宏观动力学及Al-Ti-C细化效果评价
16.
Microstructure and properties of WC-(W,Ti)C-(Ta,Nb)C-Co coated carbide alloy
WC-(W,Ti)C-(Ta,Nb)C-Co涂层硬质合金的组织与性能
17.
Study on the Mechanical Properties of (Ti,V)C/Fe Produced by In-situ Synthesis;
(Ti,V)C/Fe的原位合成及机械性能研究
18.
The Research on Process of Al-Ti-C Master Alloy Prepared by Thermal Explosion Method;
热爆法制备Al-Ti-C中间合金工艺研究