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氮化

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A simplified 1/8 model,considering silicon dioxide and nitride process as well as stack anodic bonding and adhesive bonding processes,was developed.

这里研究了简化的1/8模型,模型考虑了二氧化硅和氮化硅生成过程及堆阳极键合和胶粘结合过程。

This paper investigates the deposition process of silicon nitride with PECVD using the SiH_4/N_2 gas mixture.

本文对(SiH_4-N_2)混合气体等离子体增强化学气相淀积氮化硅薄膜工艺进行了研究。

Qualitative. Jingmo. Nitride surface, polishing process from refining, with high wear-resistant.

精磨。表面氮化,抛光等工艺精制而成,具有高耐磨。

Microstructure-evolution of the silicon nitride ceramics sample during sintering process was investigated by a synchrotron radiation X-ray computed tomography technique. The projection images of the sample were obtained during the sintering process in real-time. 2-D and 3-D reconstructed images were obtained by treating the projection images of different sintering periods with filter back projection arithmetic and digital image processing methods.

利用同步辐射CT技术,在氮化硅陶瓷样品烧结过程中对其进行实时投影成像,并应用滤波反投影算法和数字图像处理技术,得到了样品在整个烧结过程中内部微结构演化的二维和三维重建图像,实现了对陶瓷固相烧结过程实时、无损的观测。

The mainly conclusions in our research are as flowing: tungsten trioxide powders with 100 nm primary particle are obtained by spray drying,calcination and wet milling process, and an average size of quadric particle composed of agglomerated particles is 0.64 μm; tungtsen powders with 39 nm grain size and 60 -100 nm primary particle are produced directly from previous tungsten trioxide using one step reduction in hydrogen at 700℃, and an average size of quadric particle of tungsten powder is 2.91 μm; tungsten trioxide and copper tungstate compound powders with 100 nm - 200 nm primary particle are produced using ammonia metatungsten and copper nitrate as raw materials by spray drying,calcination and wet milling process;the compound powders are transformed completely into tungsten and copper compound powders by reduction in hydrogen at 700℃,in which tungsten grain size is 59 nm and copper grain size is 51 nm; primary particle size of compound powders is 80 - 120 nm,and an average size of agglomerated quadric particle is 1.86 μm; tungsten nitride powders with 35 nm grain size are prepared from tungsten trioxide powders by nitrogen treatment thoroughly in pure ammonia at 650℃, and an average size of agglomerated quadric particle is 0.64 μm in normal temperature.

研究结果表明:采用喷雾干燥—焙烧—球磨工艺可以制备出粒度约为100nm的WO_3粉体,它们在团聚后形成的二次颗粒平均粒度为0.64μm;采用一步直接氢还原方法可在700℃下从上述WO_3粉体制备出晶粒尺寸为39nm的、一次颗粒粒度为60-100nm的W粉体,其二次颗粒的平均粒度为2.91μm;以偏钨酸铵、硝酸铜为原料,采用喷雾干燥—焙烧—球磨工艺可制备出一次粒度为100-200nm的WO_3和CuWO_4混合粉体;采用氢还原工艺可在700℃下将这种粉体完全转变为W、Cu复合粉体,其中W的平均晶粒粒尺寸为59nm,Cu的平均晶粒尺寸为51nm;复合粉体的一次颗粒尺寸为80-120nm,在常温下团聚后形成的二次平均粒度为1.86μm;采用纯氨氮化工艺可以在650℃下由WO_3粉体制得WN,其晶粒尺度为35nm,在常温下团聚后的二次平均粒度为6.4μm。

Various kinds of steel such as structure steel, tool steel, pipe line steel, reinforcing steel bar, common engineering steel and cast iron may be improved in their properties by vanadium nitrides and carbides.

已有的研究表明碳氮化钒添加于钢中能提高钢的耐磨性、耐腐性、韧性、强度、延展性和硬度以及抗热疲劳性等综合机械性能,并使钢具有良好的可焊接性能,而且它能起到消除夹杂物等作用,在高强度低合金钢中的应用效果更加明显。

A series of alumina-supported nickel molybdenum nitrides were prepared by temperature programmed reduction successfully.

采用程序升温还原法制备氧化铝载体负载的氮化镍钼。

As this grinding operation removes part of all of a nitrides surface, the designer should specify that through-hardened and tempered sleeves are supplied for this purpose.

由于磨削工序磨掉了所有氮化的表面,在这种使用场合,设计者应该订购整体硬化和调质的顶管。

The presented results can be used to highlight the different deformation mechanism for the base material and for nitrided surfaces.

给出的结果可以用来突出不同的变形机制为基础材料和氮化表面。

The microstructure of the hexagonal GaN grown on GaAs (001) with nitrided AlAs buffer layer has been studied.

高分辨像显示氮化引起的AlAs表面处的原子台阶是马赛克结构的起源。

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