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基体合金 meaning in English

matrix alloy

Examples

  1. A better strengthening effect on am50 by adding re has a relation to the content of zn in the matrix alloy
    稀土对am50合金力学性能改善的效果硕士学位论文要比azgl好,这与基体合金中zn的含量有关。
  2. The hardness of the parts made of composits was higher than that of the parts made of the matrix alloys . but the hardness of both kinds was higher than their ingots respectively
    复合材料压铸件的布氏硬度比基体合金压铸件的布氏硬度高,两类压铸件的布氏硬度分别高于相应铸锭的布氏硬度。
  3. The results showed that sic particles dispersed uniformly in the composites , that the composites " hardness increased with the increasing volume fraction of sic particles , and that the composites had the outstanding wear resistance properties that were superior to the matrix alloy
    结果表明, sic颗粒在复合材料中分布均匀;复合材料的硬度随sic颗粒体积含量的增加而增加,且比基体合金的硬度高; sic颗粒增强铝基复合材料具有优良的耐磨性能,且优于基体合金。
  4. Because of its excellent properties , such as high strength , high module , wear resisting , and etc . , sicp was added to ferroalloy as a reinforce phase . but the intrinsic difference between the bonds led to poor fabrication of the composites . in this paper , the effects of alloying , sintering , and heat - treatment on the properties and microstructures of sicp / ferroalloy - based composites were studied , : it was found that sic particles reacted with ferroalloy when sintered in 1100
    碳化硅因其高强度、高模量、耐热、耐磨等优良性能而被作为颗粒增强体来制备铁基复合材料,但因其共价键与铁基体的金属键之间的本质区别导致两者复合困难,本文拟从基体合金化、烧结及热处理工艺等方面对铁合金基复合材料组织与性能的影响进行考察,具体内容如下:加入fe - cu - c基体中的sicp颗粒, 1100烧结时就已经开始发生分解,但反应不强烈,在颗粒表面镀镍可以延缓基颗粒与基体之间的反应。
  5. The results of the hardness test showed the composites " hardness increased with the increasing volume fraction of sic particles . results of the wear tests showed the composites had the outstanding wear resistance properties , especially in lubricated sliding case , the wear resistance properties of the composites were superior to the matrix alloy over one or two orders of magnitude
    结果表明,复合材料铸锭中, sic颗粒分布均匀;材料的硬度随sic颗粒体积含量的增加而增加; sic颗粒增强铝基复合材料具有优良的耐磨性能,在油润滑条件下,复合材料的耐磨性能比基体合金高一至两个数量级。

Related Words

  1. 弹性基体
  2. 基体石墨
  3. 基体扩散
  4. 基体晶格
  5. 基体材料
  6. 复合材料基体
  7. 内基体
  8. 动基体
  9. 瓷基体
  10. 基体组织
  11. 基体隔离
  12. 基体隔离法
  13. 基体金属
  14. 基体金属热电偶
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