高硅铸铁

  • 网络high silicon cast iron;ferrosilicon
高硅铸铁高硅铸铁
  1. 研究了Cu和稀土对高硅铸铁的微观组织结构和性能的影响。

    Influence of Cu and Rare Earth on the microstructure and properties of high silicon cast iron are studied in this paper .

  2. 改善高硅铸铁的性能

    Improvements of the Property of the High Silicon Cast Iron

  3. 方波脉冲电流作用下高硅铸铁阳极的电化学性能

    Electrochemical Performance of High Silicon-Iron Anodes Exerted by Square Wave Pulsed Current

  4. 提高高硅铸铁泵性能的研究

    Research of Improving the Capability of Cast-iron Pump with High Silicon Content

  5. 高硅铸铁在多种环境下的腐蚀行为研究

    Corrosion behavior of high silicon cast iron in several kinds of corrosion conditions

  6. 孕育处理和过热保温对高硅铸铁性能的影响

    Effect of the Inoculation and Overheating-holding on the Properties of Cast Iron with High Silicon

  7. 高硅铸铁的研究

    Study of High Silicon Cast Iron

  8. 实桩试验表明,用高硅铸铁作为辅助阳极材料,采用侧壁式安装方法固定阳极,是行之有效的。

    A high silicon cast iron is used as an auxiliary anode and sidewall installation for fixing anodes .

  9. 采用电化学方法和阳极消耗率评价法研究了高硅铸铁阳极在方波脉冲电流作用下的电化学性能。

    The electrochemical performance of High Silicon-Iron Anodes Exerted by Square Wave Pulsed Currents ( SWPCs ) was studied by electrochemical .

  10. 浅埋高硅铸铁阳极地床降阻技术在库鄯输油管线阴极保护工程中的应用

    Reduction of resistance for shallow buried high silicon cast iron anode in cathodic protection of oil pipeline from Kurle to Shanshan

  11. 应用:高硅铸铁阳极广泛应用于海上石油钻井平台,地下管道地下电缆等设施的外加电流的阴极保护。

    Applying : broadly used in the outer current cathode protection of the sea oil drilling platform , underground pipe and cable etc.

  12. 采用失重分析、金相分析等实验方法研究了高硅铸铁的组织及在不同环境下的耐腐蚀性能。

    Structure and corrosion behavior of the high silicon cast iron in several different environments have been tested by means of weight-loss analysis and metallograph .

  13. 因此输送硫酸的泵阀通常采用高硅铸铁(铸造及加工难度大)、高合金不锈钢(20号合金)制造。

    Thus transport of sulfuric acid pump usually high silicon cast iron ( casting and processing is very difficult ), high-alloy stainless steel ( alloy No.20 ) to create .

  14. 阴极保护系统在采用深井作为阳极地床时,以往使用较多的是石墨阳极或高硅铸铁阳极,但其存在很多弊端。

    Graphite anode or Duriron anode ( high silicon castiron anode ) is more often used in deep well ground bed for cathodic protection , but they have some shortcomings .

  15. 文章介绍了金属氧化物阳极材料的性能、阳极地床的布置及结构,并对比了金属氧化物阳极与高硅铸铁阳极的接地电阻和保护电位。

    This paper presents the performance of metal oxide anode material , deployment and configuration of anode ground bed , and makes contrast of grounding resistance and protective potential between metal oxide anode and Duriron anode .

  16. 改善高硅耐酸铸铁机械性能的研究

    Research of Improving the Mechanical Properties of High Silicon Acid-proof Cast Iron

  17. 本文采用正交试验方法系统地研究了铜、钒、稀土钙钡和熔炼工艺对高硅耐酸铸铁机械性能的影响。

    Using the orthogonal experiment design , this article studied systematically the effects of Copper , Vanadium , Rear Earth-calcium-barium and melting technology on mechanical properties of high silicon acid-proof cast iron .

  18. 高硅球墨铸铁的硅脆现象及其消除方法

    Brittleness of high silicon nodular cast iron and its elimination

  19. 高铬硅耐磨铸铁的研制

    Development of High Chromium - Silicon Wear - Resistant CastIron

  20. 用高硅碳比铸铁生产车床床身铸件

    High Si / C Cast Iron for Turning Bed Casting

  21. 高硅碳比铸铁的生产多种锰矿搭配比计算模型

    Production of High Silicon / Carbon Ratio Cast Iron

  22. 高硅碳比铸铁在造纸机烘缸上的应用

    Application of High Si / C Ratio Grey Cast Iron to Dryer of Paper Machine

  23. 高硅碳比铸铁熔化处理工艺探讨

    An Approach to Melting and Treatment Process of Cast Iron with High Si / C Ratio

  24. 高硅碳比灰铸铁的熔炼技术

    Melting Technique of High Si / C Ratio Gray Iron

  25. 汽车发动机排气岐管的优良材质&高硅钼球墨铸铁

    A Fine Material of Motor Engine Exhaust Manifold High-Silicon-Molybdenum Ductile Cast Iron

  26. 高硅碳比灰铸铁用孕育剂

    The Inoculant Used for the Grey Iron with High Si / C Ratio

  27. 高硅钼球墨铸铁在内燃机排气系统中的设计应用

    The Design Application of the High Silicon Molybdenum Nodular Cast Iron in the Exhaust System of Diesel Engine

  28. 从化学成分选择、炉料配比、熔炼操作、孕育处理、炉前检验等几个方面综述了国内近年来高硅碳比灰铸铁生产的冲天炉熔炼特点、总结了高硅碳比灰铸铁的熔炼技术。

    The experiences in using cupola to melt high Si / C ratio gray iron during last few years were summarized covering selection of chemical composition , mixture ratio , melting operation , inoculation and testing on the melting spot .