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加热烧结 meaning in Chinese

heat-agglomerating

Examples

  1. Comparing shrinkage under bpec and conventional heating , we can conclude that obvious shrinkage occurred at relative lower temperature and velocity of shrinkage was greater under bpec heating
    比较脉冲大电流和辐射加热烧结过程中样品的收缩,结果表明前者在相对较低的温度即发生明显的收缩,并且收缩速率大于后者。
  2. And is it the same as under radiation heating ? do the special electric and magnetic fields produced by bpec accelerate atom diffusion ? understanding the above questions fully is a key to expose the mechanism of pecht
    在脉冲大电流加工过程中原子是如何扩散的,与一般的加热烧结、焊接是否一样,脉冲大电流形成的特殊电场及磁场是否对原子的扩散有大的推动作用,弄清这些问题成为进一步揭示脉冲大电流热加工机理的关键。
  3. While sintered by radiation heating , the average pore size decreased slowly with increase of temperature at first , and then fell sharply , showing that the pecht technique could achieve consolidated structure at relative low temperature . fe was sintered at on / off of 6 / 1 , 12 / 2 , 24 / 4 , 48 / 8
    脉冲大电流烧结fe颗粒材料,烧结体孔径平均值随温度呈波浪关系;辐射加热烧结体的孔径平均值随温度的升高先缓慢减小,继续升高温度,孔径平均值急剧减小。

Related Words

  1. 脉冲烧结
  2. 加热
  3. 加热线
  4. 电子束加热
  5. 加热饭
  6. 放热加热
  7. 前缘加热
  8. 加热柜
  9. 加热速度
  10. 加热凝结
  11. 加热杀菌时间
  12. 加热上光
  13. 加热烧炬
  14. 加热烧料
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