nucleation

1. Diamond nucleation is the key of synthesizing diamond films.
金刚石核化是制备金刚石薄膜的关键。

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2. And the property of dissolvent will change the nucleation rate.
溶剂的性质也将改变成核速率的大小。

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3. The reason of the pit reduced the nucleation energy is analyzed.
分析和讨论了凹坑降低金刚石核形成能的原因。

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4. The nature and role of the nucleation centers were also discussed.
对于晶核中心的性质和作用还作了讨论。

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5. The rate of nucleation based on this mechanism has been calculated.
根据这样的机构我们得出有序核的成核率。

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6. In the physical foaming system can play a very good nucleation effect.
在物理发泡体系中能起到很好的成核效果。

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7. The nucleation, growth and connection of fatigue cracks were photographed.
拍摄了热疲劳裂纹的形核、成长、连接过程。

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8. The supersaturation used is too low to produce an appreciable rate of nucleation.
所用的过饱和度太低,不能产生一个值得重视的成核率。

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9. The second reaction consists of nucleation pregnant and exploded reaction stages.
第二次反应为形核孕育和爆发性反应二个阶段。

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10. The mechanism of negative bias enhanced diamond nucleation is emphatically analyzed.
着重分析了负衬底偏压增强金刚石核化的机制。

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11. Their growth mechanism could be explained by symmetrical nucleation and growth model.
其生长机理可以用对称性的形核生长模型来解释。

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12. The relationship between nucleation temperature and flexural strength was investigated.
探讨了核化温度与抗弯强度之间的关系。

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13. Continuous nucleation model is applied to describe heterogeneous nucleation in liquid metal.
采用连续形核模型来描述液相中的自发形核。

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14. A great impact of surface diffusion on CVD diamond nucleation is discovered and investigated.
发现和研究了表面扩散对CVD金刚石成核的重要影响。

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15. Fundamentals of annealing, spinodal decomposition, nucleation, growth, and particle coarsening.
退火、节分解、核、长和颗粒粗化的基本原理。

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16. The result demonstrates polymers have an profound influence on the nucleation and crystal growth.
结果表明,聚合物对碳酸钙晶核的形成和晶体的生长有很大影响。

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17. Only pseudomonas aeruginosa and enTerococcus faecalis could ly shorten the cholesterol nucleation time.
仅铜绿假单胞菌和粪肠球菌能缩短胆固醇晶体成核时间。

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18. Effects of the specific pressure on nucleation rate and linear growth velocity were expounded in squeeze casting.
阐述了挤压铸造比压对形核率及成长线速度的影响。

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19. Phase competitive nucleation in the alloy was discussed by classical nucleation theory and transient nucleation theory.
利用经典形核理论与瞬态形核理论计算讨论偏晶合金的两相竞争形核规律。

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20. The effect of austenite deformation on nucleation rate of ferrite is discussed with classical nucleation theory as well.
最后在经典形核理论的前提下讨论了奥氏体形变对铁素体形核率的影响。

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21. In the paper, the enhancing process of diamond nucleation by negative substrate bias in hot filament CVD system was analyzed.
对利用热灯丝cvd沉积金刚石膜时负衬底偏压增强金刚石的核化过程进行了分析。

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22. On the basis of discussion for nucleation mechanism of ammonium molybdate, the crystallized nucleation rate of AQM at different speed.
在讨论钼酸铵成核机理的基础上,研究了不同酸化速度下四钼酸铵(AQM)结晶的成核速率。

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23. Influencing mechanism of ultrasonic on refrigerant hydrate nucleation and growth was first analyzed and then experimental study was made.
首先分析了超声波对制冷剂水合物成核生长的影响机理,然后进行了实验研究。

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24. Characteristic nucleation time and characteristic diffusion time were employed to judge the controlling factor of the nucleation process.
提出采用特征成核时间和特征扩散时间,判定反应沉淀过程的成核控制因素。

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25. A new dynamic recrystallization model consisting of particle-stimulated nucleation and sub-grain rotated-induced nucleation was proposed.
为此,提出了一种新的粒子激发形核与亚晶倾转形核长大的混合再结晶模式。

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26. When the maximum radius approaches to the minimum, the active nucleation sites density decreases and the nucleation boiling is restrained.
当最大空穴半径趋近于最小空穴半径时,活化核心密度减小,核态沸腾受到抑制。

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27. The refinement mechanism was interpreted from nucleation attribute, nucleation velocity and crystallographic analysis in nucleation process.
从形核的属性、速度以及过程的晶体学分析对其细化机理进行了解释。

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28. Approaches to expediting nucleation rate are temperature original reaction concentration and supersaturation ratio in the nucleation course.
加快成核速率的途径有升高成核时的温度、增大成核时反应物浓度和增大过饱和比。

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29. If the generation of the nucleation rate faster, and crystal nucleus formation, growth speed is slow, it generated more cell number, grain is fine.
如果晶核的生成速度较快,而晶核生成后的成长速度较慢,则生成的晶核数目较多,晶粒较细。

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30. If the generation of the nucleation rate faster, and crystal nucleus formation, growth speed is slow, it generated more cell number, grain is fine.
如果晶核的生成速度较快,而晶核生成后的成长速度较慢,则生成的晶核数目较多,晶粒较细。

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