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   金刚石生长模式 的翻译结果: 查询用时:0.213秒
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金刚石生长模式
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  相似匹配句对
     GRADATIONAL GROWTH OF DIAMOND THIN FILMS
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短句来源
     Phase Diagrams in C-H-N System for Low Pressure CVD Diamond Growth
     C-H-N体系生长金刚石薄膜
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     THE INTERFACIAL STRUCTURE OF POLYCRYSTALLINES OF D D(BONDING) DIAMOND AND ITS GROWTH PATTERN
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     Fluid Enclosure & Generate Pattern of Diamond
     金刚石的流体包裹体及生成模式
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The component distribution of covering film on the surface of synthetic diamond was examined by an Auger electron spectrometer. Based on this, the author discussed the effect of covering film on synthetic diamond growth, developing the growth model of synthetic diamond.

利用俄歇电子能谱仪对人造金刚石表面的包覆膜进行了成分分布检测,结合显微组织分析,探讨了金刚石表面包覆膜对人造金刚石生长的作用,提出了触煤作用下人造金刚石的生长模式。

Diamond polycrystalline sphere were deposited via acetone and ethanol as carbon sources in HFCVD system respectively.Radio frequency discharge was applied in the system by connecting with either filament or substrate.So four different assisted-growth models were produced.Study on the rate of theses models was made in details.It is found that plasma enhancing can enhance growth rate of diamond dramatically.Growth rate of diamond under electron enhancing is slowest,Its rate is even slower than that of plasma enhancing...

Diamond polycrystalline sphere were deposited via acetone and ethanol as carbon sources in HFCVD system respectively.Radio frequency discharge was applied in the system by connecting with either filament or substrate.So four different assisted-growth models were produced.Study on the rate of theses models was made in details.It is found that plasma enhancing can enhance growth rate of diamond dramatically.Growth rate of diamond under electron enhancing is slowest,Its rate is even slower than that of plasma enhancing with substrate biasing.Growth rate of plasma enhancing with substrate biasing gets slow when current of radio frequency discharge increases.However,growth rate of conventional HFCVD is related to the molecular structure of these carbon sources.

在传统的HFCVD系统中,引入射频电源后,通过与灯丝或者衬底的连接,组成了射频放电辅助下的四种不同沉积金刚石的生长模式。在各种生长模式下,分别以酒精和丙酮为碳源,沉积出了金刚石多晶球,并就不同辅助模式下的金刚石的生长速率进行了研究。结果表明,等离子体增强法能够明显促进金刚石的生长,而电子促进法的生长速率最慢,甚至慢于偏压等离子体的生长速率;与等离子体促进增强法相比,偏压等离子体增强法的生长速率也有所变慢,并且随着偏压射频电流的增大,其生长速率越来越慢;而传统热丝法的生长速率与沉积金刚石时所选用碳源的分子结构有很大的关系。

 
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