等离子冶金

  • 【冶】plasma metallurgy
等离子冶金等离子冶金
  1. 采用双层辉光等离子冶金技术在纯钛表面制备了Ti-Pd合金层。

    Ti-Pd alloy coating was prepared on pure Titanium surface by double glow plasma alloy technology .

  2. 等离子冶金梯度碳化物高强韧截齿刀头组织性能研究

    Study on the Carbide Cutter with High Strengthen and Toughness Produced by Dc-Plasma Gradient Metallurgy Technology

  3. 等离子冶金理论与进展

    Theory and Progress of Plasma Metallurgy

  4. 等离子冶金复合材料截齿齿体强韧化热处理组织与性能研究

    Study on the Structure and Properties of the Plasma Metallurgical Composite Cutting Picks Obtained by the Technique of Toughening Heat Treatment

  5. 等离子表面冶金Cr、Mo高速钢的研制

    Preparation of Surface Metallurgy Cr , Mo High Speed Steel

  6. 双层辉光等离子表面冶金W、Mo、Co时效硬化高速钢

    Surface Age-hardened High Speed Steel with Double Glow Plasma W , Mo , Co Alloying

  7. 低碳钢等离子表面冶金Mo-Cr合金层的研究

    Study on plasma surface metallurgy Mo-Cr alloy layer of mild steel

  8. 等离子表面冶金耐磨材料的研究及应用

    Research and Application on Wear Resistance Material by Plasma Surface Metallurgy

  9. 等离子表面冶金层中气孔形成机理

    Formation Mechanism of Blow Holes in Plasma Surface Metallurgical Coating

  10. 等离子表面冶金熔体粘度的研究

    Study on melt viscosity of alloy in surface metallurgy by plasma beam

  11. 双辉等离子表面冶金技术的新进展

    New Development of Double Glow Plasma Surface Metallurgy Technology

  12. 等离子梯度冶金碳化物高强韧截齿刀头

    Carbide cutter with high strength and toughness produced by plasma gradient metallurgy technology

  13. 方差分析在等离子表面冶金中的应用

    Application of Variance Analysis to Plasma Surface Metallurgy

  14. 等离子束冶金复合材料研究与应用

    Study on Composite by Plasma Metallurgy

  15. 研究了用等离子束冶金法制备复合材料的方法,成功制备了低碳低合金钢与高合金钢的复合材料。

    The composite of low-carbon and low-alloy steel and high-alloy steel , is manufactured successfully by the plasma metallurgy .

  16. 影响等离子表面冶金熔池中合金熔体粘度的主要因素是电流和粉末体系中的合金元素。

    The electric current and alloy elements in powder system are major factors for influencing melt viscosity in surface metallurgy by plasma beam .

  17. 结果表明,等离子表面冶金合金化涂层对基材具有良好的润湿性,基材表面熔化区的形成使得涂层与基材实现了完全的冶金结合。

    Results indicated that plasma surface metallurgical coating of Fe-Cr-Ni-B-Si had well wettability , and metallurgical bonding was obtained between coating and substrate .

  18. 为突破粉末冶金硬质合金技术瓶颈,本文采用等离子原位冶金技术制备碳化钨复合材料。

    WC-based composite material was successfully fabricated by plasma in-situ metallurgy to break through the bottleneck of powder metallurgy cemented carbide in this paper .

  19. 等离子束表面冶金数控设备PLC系统抗干扰措施

    Anti-interference Methods of Numerical Control Plasma Surface Metallurgical PLC System

  20. 论文探讨了等离子束表面冶金Fe基合金冶金过程,该过程是一个快速非平衡结晶过程,随着等离子炬的移动,合金熔池的形成与凝固是同时进行的。

    The process of plasma-jet surface metallurgy has been discussed , which is a course of quick and non-equilibrium freezing .

  21. 结果表明:等离子束表面冶金快速凝固过程中,形成了Al2Cu金属间化合物及α(Al)固溶体。

    The results show that during rapid freezing of the plasma beam surface metallurgical process , inter-metallic compound of Al_2Cu and Al solid solution are separated out from the liquid .

  22. 采用等离子束表面冶金技术,在Fe、C合金粉末中添加强碳化物形成元素W、Cr和少量的Al,在低碳钢基体上制备出原位析出的颗粒增强铁基复合涂层。

    The in situ particle reinforced Fe-matrix composite coating on a low carbon steel was prepared by plasma jet surface metallurgy using Fe , C , W , Cr , Al alloy powders .

  23. 等离子束表面冶金中熔体的流动特征及影响

    The Flow Characteristics and Influence of the Molten Bath on DC-Plasma-Jet

  24. 等离子束表面冶金多道搭接层的组织与性能

    Microstructure and Properties of Plasma Beam Surface Metallurgical Multi-pass Lap Coating

  25. 等离子束表面冶金是一种新的表面涂层技术。

    Surface metallurgy by DC plasma jet is a new coating technology .

  26. 等离子束表面冶金中感生磁场的影响

    Effect of Induced Electromagnetic Field in Surface Plasma Jet Metallurgy

  27. 等离子束表面冶金铁基合金的设计与研究

    Fe-based alloy design in surface metallurgy by plasma beam

  28. 等离子束表面冶金技术在刮板机溜槽上的应用研究

    Study to Appliance of Beam-Plasma Surface Metallization Technology in Chute of Scraping Conveyer

  29. 等离子束表面冶金技术研究及其进展

    Research Progress in Surface Metallurgy by DC Plasma Jet

  30. 等离子束表面冶金制备铁基梯度涂层的研究

    Research on the Production of Iron-based Gradient Alloy Coating Using Plasma Jet Surface Metallurgy