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   合金化过程 在 金属学及金属工艺 分类中 的翻译结果: 查询用时:0.357秒
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合金化过程
相关语句
  alloying process
    MAGNETIC PROPERLIES AND STRUCTURE OF A MIXTURE OF α-Fe and Fe_3N DURING MECHANICAL ALLOYING PROCESS
    机械合金化过程中α-Fe与Fe_3N混合粉末的结构和磁性
短句来源
    Structure change of Mg_(70)Al_(20)Ca_(10) alloy during mechanical alloying process
    Mg_(70)Al_(20)Ca_(10)合金机械合金化过程中的结构变化
短句来源
    Investigation of Mechanical Alloying Process of Fe_(75)Si_(25) and the Stability of the Product
    Fe_(75)Si_(25)机械合金化过程及其产物稳定性的研究
短句来源
    The mechanical alloying process of Fe_(75)Si_(25) powders and the stability of the product are studied in this paper.
    本文主要对Fe_(75)Si_(25)混合粉末机械合金化过程及其产物的稳定性进行了研究。
短句来源
    In this paper, the mechanical alloying process and magnetic properties of Fe-Si system are studied.
    本文对Fe-Si体系的机械合金化过程及其磁性能作了研究。
短句来源
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  “合金化过程”译为未确定词的双语例句
    Interaction between Manganese Oxide and Liquid Steel
    直接合金化过程中锰氧化物与钢液的作用
短句来源
    FINE STRUCTURE CHANGES OF IMMISCILE Cu-Fe SYSTEM DURING MECHANICAL ALLOYING
    难互溶Cu-Fe系机械合金化过程中的结构变化研究
短句来源
    X-ray diffraction and positron annihilation study on crystalline process of Fe_(73.5)Cu_1Nb_3Si_(13.5)B_9 amorphous alloy
    Fe_(73.5)Cu_1Nb_3Si_(13.5)B_9非晶合金化过程的X射线
短句来源
    The Phase Transformation during Mechanical Alloying of Fe-Ni
    Fe-Ni机械合金化过程中的相变
短句来源
    COMBUSTION REACTION OF Ni_(20)Ti_(50)C_(30) DURING MECHANICAL ALLOYING
    Ni_(20)Ti_(50)C_(30)机械合金化过程中的爆炸反应
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  alloying process
The intermetallic compound Nd-Fe-Ti-N has been successfully synthesized by a mechanical alloying process.
      
The parameters involved in current models of the mechanical alloying process do not suffice to explain the differences in transformation rates observed here.
      
Toward a Quantitative Understanding of the Mechanical Alloying Process
      
Nanocrystalline Fe25Ni75 powders were prepared by the mechanical alloying process.
      
The samples were prepared by mechanical alloying process, and the average crystal size was determined by X-ray diffraction.
      
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In this paper the method and theory on prparating RE intermediate alloys by electrolysis from the ionized melt are introduced:(1) the cathodic alloying process and its velocity;(2) thermodynamics of the alloying process;(3) the cuteent efficiency of the cathodic alloying process;(4) the indispensable conditions for cathodic alloying.Besides, the preparation of intermediate alloys Nd-Fe and Cu-R by molten salt electrolysis is described as on example in the paper.

本文介绍了从离子熔体中电解制取稀土金属中间合金的方法和理论:阴极合金化过程及速度,合金化过程的热力学,合金化阴极过程的电流效率,以及为使合金化顺利进行所必须创造的条件。列举了熔盐电解法在制取Nd-Fe和Cu-R等中间合金中应用的实例。

The technology of surface alloying on steel castings was studied in this paper.The steel castings with alloying surface were formed when chromium ferroalloy particles were put on the mold surface in loose state by virtue of the principle of vacuum sealed molding.The defects of blow holes,slag inclusions and poor coherent in traditional technology were eliminated.Hence the surface alloying process was stabilized and the alloying quality was improved.It is evident that mono-and multi-chromium-system alloys can...

The technology of surface alloying on steel castings was studied in this paper.The steel castings with alloying surface were formed when chromium ferroalloy particles were put on the mold surface in loose state by virtue of the principle of vacuum sealed molding.The defects of blow holes,slag inclusions and poor coherent in traditional technology were eliminated.Hence the surface alloying process was stabilized and the alloying quality was improved.It is evident that mono-and multi-chromium-system alloys can be metallurgically designed,and the synthetic properties of castings can be obtained according to the service conditions.

本文利用真空密封原理,在铸型表面铺置干、散状铬系合金粉粒,系统地进行了钢铸件耐磨表面合金化的试验研究.合金化过程中基本上排除了传统工艺易于产生结合不好、气孔和夹渣等疵病的原因,从而稳定了合金化工艺过程,提高了合金化质量。试验表明,可以根据铸件使用性能要求,进行单元和多元铬系合金耐磨表而的合金设计,匹配适当的工艺参数,以获致良好的综合使用性能.

The interaction between Mn-bearing slag and steel during direct alloying with manganese ore is studied in presernt paper. Basicity and [Si] and/or [C] content are the main factors influencing the reaction. When using FeSi and SiC as reducing agents, the reduction rate of MnO is in 10-5 Mn/s·cm2 order. But the dessolving process of SiC has some effects on the reduction. After about 10 to 15 minutes, [Mn] tends to be stable. The rate order of SiC-MnO reaction is first order, then increases somewhat.

本文研究了锰矿直接合金化过程中锰氧化物与钢液间的作用。碱度和钢中含硅量是影响还原反应的主要热力学因素,无论是FeSi还是SiC作还原剂,锰的还原速度均处于10~(-5)mol Mn/s·cm~2数量级。但SiC的溶入速度对还原过程有影响,反应5~15min基本趋于稳定,SiC作还原剂时,还原反应的表观反应级数开始为1,而后有所升高。

 
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