自蔓延

  • 网络self propagating;SHS
自蔓延自蔓延
  1. 获得的制件质量良好、陶瓷涂层无损坏,表明涂层模具具有优异的工艺适应性,静态自蔓延技术可以用于半固态金属加工模具表面强化处理。

    There is no flaws in the ceramic coating of the developed sample and its quality is satisfying , which indicate that the mould possesses excellent technology adaptability and the techniques of static SHS can be used in the process of Semi-Solid Metal Forming mould for the surface strengthening .

  2. 自蔓延模式下的Al-Ti-C细化剂对纯铝有着更好的细化效果;

    Al-Ti-C grain refiner prepared by the shs mode had more efficient grain refining effect on industry pure aluminum .

  3. Al2O3陶瓷/不锈钢自蔓延高温原位合成连接

    Al_2O_3 ceramics / stainless steel joining with self-propagating high-temperature in-situ synthesis

  4. Mo(Si,Al)2的自蔓延高温燃烧合成

    Self-propagating high-temperature synthesis of mo ( si , al ) - 2

  5. Fe基手工自蔓延焊接接头的组织和性能

    Structure and property of Fe-base manual SHS welding joint

  6. SiCp/Al基复合材料的铝浴自蔓延反应制备及其热学性能

    Reactive process and thermal properties of self-propagated SiC_p / Al composites

  7. 机械诱发自蔓延反应合成Ti3AlC2的机理研究

    Reaction mechanism for the synthesis of Ti_3AlC_2 by mechanically induced self-propagation reaction

  8. 自蔓延高温合成LaB6微粉的制备及表征

    Preparation of LaB_6 Micropowder by Self-Propagating High-Temperature Synthesis and Characterization

  9. TiC-Al2O3复合材料的自蔓延高温合成和致密化

    Fabrication of tic-al_2o_3 composites by self-propagating high - temperature synthesis and densification

  10. 自蔓延高温反应合成Ti/Al2O3梯度功能材料

    The synthesis of ti / al 2O 3 functionally gradient materials by SHS methods

  11. 利用自蔓延燃烧合成法制备了MoSi2-WSi2复合粉体,并对合成产物进行了X射线衍射分析。

    MoSi 2 WSi 2 powders have been synthesized by means of self propagating high temperature combustion .

  12. 预热自蔓延合成SiC粉末机理的研究

    Study on the mechanism of self-propagating high-temperature synthesis for manufacture of SiC powder

  13. 自蔓延高温合成β-SiC超细粉

    Self-propagating high temperature synthesis ( SHS ) of β - SiC ultrafine powder

  14. La2CuO4前驱物粉体的自蔓延燃烧合成及其晶化

    Prepartion of la_2cuo_4 precursor powders by self-propagating combustion synthesis and their crystallization

  15. (W,Ti)C自蔓延高温合成

    Study on self propagating high temperature synthesis ( shs ) of ( w , ti ) c

  16. TiC/Fe体系自蔓延高温合成过程中金属相Fe的作用

    The Effect of Metal Fe on Self Propagating High Temperature Synthesis of TiC / Fe System

  17. 添加Y2O3的自蔓延高温合成β-Sialon粉的微波烧结

    Microwave Sintering of SHS-Prepared β - Sialon Powders with Y_2O_3 as Additive

  18. 高温自蔓延法合成ZnCr2O4绿色尖晶石型陶瓷色料

    Study on Preparation of zncr_2o_4-spinel green ceramic pigment by self-propagating high-temperature synthesis

  19. 自蔓延高温合成法制备WC-Al2O3复合陶瓷材料的研究

    Study on wc-al_2o_3 compound ceramic material prepared by SHS

  20. 以自蔓延高温合成SiC颗粒为增强体的光学/仪表级铝基复合材料

    Optical and Instrument Grade Aluminum Matrix Composites Reinforced with Self-Propagating High-Temperature Synthesized SiC Particle

  21. 气压对自蔓延高温还原合成B4C的影响

    Influence of pressure on B 4C produced by SHS

  22. 自蔓延燃烧法合成ZnO粉体及其压敏电阻的制备

    Varistors prepared by self-propagating combustion ZnO powders

  23. 对Ti(C,N)粉末的高温自蔓延合成工艺做了较系统的试验研究,研究了钛粉及碳黑品种、成分配比;压坯密度;

    The technology of producing Ti ( C , N ) powders by Self-propagating High-temperature Synthesis ( SHS ) was studied .

  24. 自蔓延高温合成Ti/Al2O3金属陶瓷复合材料的研究

    The fabrication of titanium / alumina cermet composite and the process of combustion synthesis

  25. 自蔓延高温合成Ti(44)Ni(47)Nb9合金过程中的燃烧界面成分与组织

    Composition and Structure of Combustion Boundary of the Ti 44 Ni 47 Nb 9 Alloy

  26. 自蔓延高温合成V3TiNi(0.56)Al(0.2)贮氢材料及其电化学性能

    Synthesis of hydrogen storage materials V_3TiNi_ ( 0.56 ) Al_ ( 0.2 ) by self-propagating high-temperature and electrochemical properties

  27. 二次自蔓延高温合成钙钛矿固化~(90)Sr

    Synthesis of Perovskite by Double-SHS for Immobilization of ~ ( 90 ) Sr

  28. 稀释剂含量对自蔓延高温合成Si3N4-SiC-TiN陶瓷的影响

    Effect of diluent content on si_3n_4-sic-tin ceramics prepared by self-propagation high-temperature synthesis

  29. 氮气压力对Si3N4-SiC-TiN陶瓷自蔓延燃烧合成的影响

    Effect of nitrogen pressure on combustion synthesis of Si_3N_4-SiC-TiN ceramic

  30. 自蔓延高温合成TiC复合添加剂增强铁基粉末冶金材料

    Iron-based powder metallurgical material reinforced by SHS TiC composite powders