高密度合金

  • 网络High-density alloy;Heavy alloy;HAD;W-Ni-Co
高密度合金高密度合金
  1. PIM高密度合金在液相烧结过程中的变形

    Distortion of PIM tungsten heavy alloy during liquid phase sintering

  2. MIM工艺对W-Ni-Fe高密度合金力学性能的影响

    Effect of MIM Processing on the Mechanical Properties of Tungsten Nickel Iron Heavy Alloy

  3. 碳/Me(Co,RE)对W-Ni-Fe高密度合金性能和显微组织的影响

    Influence of C and Me ( Co , RE ) on the properties and microstructures of W - Ni - Fe high density alloys

  4. W-Ni-Fe高密度合金的微波烧结

    Microwave sintering of W-Ni-Fe heavy alloys

  5. 高密度合金W-Ni-Mn的绝热剪切破坏研究

    Study on adiabatic shear failure of W-Ni-Mn heavy alloy

  6. 高密度合金W-Ni-Mn液相烧结

    Liquid-Phase-Sintering of High-Density W-Ni-Mn Alloy

  7. 采用高能球磨机械合金化、模压成型和真空烧结法制备了添加碳、钴和稀土氧化物粉末的W-Ni-Fe高密度合金。

    W-Ni-Fe tungsten high density alloys with Me ( Co , RE ) were fabricated by high energy ball milling mechanical alloying , combined mould compact and lower temperature sintering technique .

  8. 阐述了在核辐照条件下用ZFW系列高密度合金做较大直径(大于220mm)的惯性工件。

    The paper present a series of ZFW heavy alloys applied in producing larger diameter inertia workpieces ( J220mm ) in nuclear irradiation .

  9. 高密度合金在军工中用作穿甲弹是一个引人关注的话题。

    High density alloy used as penetrater is an attracting topic .

  10. 氧化-还原法再生利用高密度合金粉的研究

    Investigation on recycling high density alloy powder by oxidization-reduction process

  11. 高密度合金烧结后的热处理

    Heat Treatment of High Density Alloy after Sintering

  12. 高密度合金强化烧结工艺的研究

    Activated Sintering Process of a Tungsten Heavy Alloy

  13. 高密度合金粉末的制备与处理

    Preparation and Treatment of High-density Alloy Powder

  14. 高密度合金中硅测定的研究

    Determination of Silicon in High Density Alloy

  15. 研究了氧化-还原法直接再生回收高密度合金切屑粉末的工艺技术。

    The processes of directly recycling high density alloy by oxidation-reduction technique are investigated in details .

  16. 同时研究添加纳米复合粉末对W95Ni3.5Fe1.5高密度合金组织性能的影响。

    And the W_ 95Ni_ 3.5Fe _ 1.5 heavy gravity alloy was studied by doping the nano-composite W-Ni-Fe powder .

  17. 研究了注射成形高密度合金的变形行为和变形控制。

    The distortion behavior and distortion controlling processes of PIM tungsten based heavy alloys were studied in this paper .

  18. 此外,氧化-还原法直接再生回收的高密度合金粉末化学成分与原始粉末的相同。

    It has been also found that the chemical composition of the recycled alloy powder is as same as the initial powder .

  19. 高密度合金由于具有密度和强度高、延性好等一系列优异的性能,在军工上被用作动能穿甲弹材料。

    Tungsten heavy alloy is regarded as a very important kinetic penetrator in military use , due to its combined physical and mechanical properties , such as high density , high strength and hardness , good ductility .

  20. X射线荧光光谱法测定高密度钨合金中铁和镍

    Determination of Iron and Nickel in High Density Tungsten Alloys by X-ray Fluorescence Spectrometry

  21. W-Ni-Fe系高密度钨合金形变强化工艺研究进展

    Research Progress in W-Ni-Fe Tungsten Heavy Alloys by Deformation Strengthening Processing

  22. 高密度W-Ni-Fe合金的研究进展

    Research Progress in W-Ni-Fe High Density Alloys

  23. 采用液相烧结技术,对高密度钨合金90W-7Ni-3Fe及其添加有不同含量元素Ta合金的力学性能和显微组织进行了研究。

    By means of Liquid Phase Sintering ( LPS ), mechanical quality and micro-structure of tungsten high density alloys W-Ni-Fe and those alloys added with alloying element tantalum of different contents are investigated .

  24. 综合近年来国内外W-Ni-Fe,W-Ni-Cu,W-Cu等高密度钨合金及其材料的研究状况,介绍了有关钨合金方面的关键新技术,并且预测了今后钨合金材料的研究方向。

    This paper reviews the latest research on W-Ni-Fe , W-Ni-Cu , W-Cu high-density tungsten alloys . It introduces some key techniques for tungsten alloys , and points out research directions of tungsten alloy materials .

  25. 高密度钨合金在弹用材料中的应用及研究进展

    Application and Study of Tungsten Heavy Alloy as a Projectile Material

  26. 近十年高密度钨合金的研究进展

    The research progress of high-density tungsten alloys in current ten years

  27. 高密度钨合金及其在军事工业中的应用

    Investigation on high density tungsten alloy and its application in military industry

  28. 高密度钨合金中的沉淀相和强化研究

    Precipitation phases and their strengthening researches in tungsten heavy alloys

  29. 高密度钨合金静液挤压组织和缺陷分析

    Analysis for microstructure and defect of hydrostatic extrusion tungsten alloys

  30. 高密度钨合金材料设计知识库系统的开发

    The development of a knowledge base system about high density tungsten design