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1)  chemical gas phase flowing
化学气相流
2)  Fluidized bed chemical vapor deposition
流化床化学气相沉积
3)  gas chemistry
气相化学
1.
0, a detailed thermochemical reaction mechanism of methane combustion chemistry, was used to simulate C/H gas chemistry in HFCVD diamond films reactors.
0甲烷燃烧过程C/H/O/N四元体系热化学反应机理和动力学数据,模拟并分析了HFCVD金刚石膜的C/H气相化学反应,通过对反应流的简单模拟得到了衬底位置气相组成,结果与前人实验数据吻合。
4)  gas fluidized bed
气相流化床
1.
Reasons of ash content increasing in Unipol polyethylene produced from gas fluidized bed reactor and operated in condensate mode,were analysed.
对Unipol气相流化床反应器冷凝操作时聚乙烯树脂灰分增加的原因进行了分析。
5)  gas phase fluidized bed
气相流化床
1.
The film of linear low density polyethylene(LLDPE),produced by Unipol gas phase fluidized bed process,was low in light transmittance comparing with film of high pressure low density polyethylene due to high crystallinity of former.
Un ipol气相流化床工艺生产的线型低密度聚乙烯(LLDPE)的结晶度高,薄膜透光性比高压低密度聚乙烯薄膜的透光性差,影响了LLDPE薄膜的应用与推广。
6)  Chemical vapor infiltration
化学气相渗
1.
Chemical vapor infiltration (CVI) of carbon felts to fabricate C/C composites was carried out by implanting a special electrically conductive layer in the carbon felts, which resulted in rapid densification by a coupling effect of temperature gradient, reaction intermediate gradient, and magnetic field.
采用自行设计的化学气相渗(CVI)炉以炭毡作为纤维增强体,在坯体内部设计特殊的导电发热层,使坯体内部的温度场、气体反应的中间产物浓度场、电磁场等多元物理场实现耦合,进而达到坯体的快速增密。
2.
The heaterless chemical vapor infiltration (HCVI) process was used to fabricate C/C composites.
采用直热式化学气相渗工艺制备了 C/ C复合材料 ,以 2 D无纬织物和碳毡为纤维预制体 ,液化石油气为碳源气体 ,在常压下经 2 5 h左右沉积得到整体密度分别为 1。
补充资料:等离子化学气相沉积
分子式:
CAS号:

性质:PCVD  化学气相沉积(CVD)法是制备无机材料,尤其是无机薄膜和涂层的一种重要手段。用等离子辅助CVD,可在较低的温度下沉积,涂层均匀不剥落。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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