The result shows that ultra-fine tungsten powder can be produced with blue tungsten oxide under appropriate conditions.
结果表明:在适当的工艺条件下,使用蓝钨可以制得超细钨粉。
The results show that different tungsten oxides, including violet tungsten oxide, blue tungsten oxide and yellow tungsten oxide, are of different microstructure.
结果表明,不同氧化钨——紫钨、蓝钨、黄钨具有不同的微观结构,其中紫钨具有独特的单晶棒状结构,适合生产细颗粒钨粉。
The quality of violet tungsten oxide is studied and violet tungsten oxide is classified as well as a new kind of relative visual detecting method is put forward.
研究了紫钨的质量状况,将紫钨分类并提出了一种新的较为直观的检测方法。
The formation of these WO3 tubes is attributed to the lateral coalescence of tungsten oxide nanowires.
这种氧化钨管是由多根平行生长的氧化钨纳米线横向联合而成。
In the present study, tungsten oxide nanorods were prepared by a plasma arc gas condensation technique where a gas nozzle was introduced to provide blowing gas.
本研究以电浆电弧为加热源蒸发钨靶材,并藉由气凝合成机制,外加一套吹气装置制备氧化钨奈米棒,分别探讨腔体压力与奈米棒平均直径及产率的关系。
The results showed that reduction temperature is critical for the preparation of ultra-fine W-powder from blue tungsten oxide under appropriate technological conditions.
结果表明:还原温度是制取超细钨粉的关键因素,在适当的工艺条件下,可以使用蓝钨制得超细钨粉。
Ultra-fine tungsten powder was obtained from blue tungsten oxide by hydrogen. The effect of temperature, weight and flow rate of hydrogen on granularity of W-powder also was studied.
以蓝钨为原料,通过氢还原制取超细W粉末,研究了还原温度、装舟量和氢气流量对制取W粉粒度的影响。
In this article, the process and main phase composition are studied during the deoxidization of blue tungsten oxide in hydrogen.
研究蓝钨氢还原工艺并分析了蓝钨在氢气还原过程中主要相成份的变化。
Cesium tungsten oxide can be incorporated into one or more layers of a bilayer.
可以将氧化铯钨掺入双层的一层或多层之中。
The present invention involves bilayers that include cesium tungsten oxide as an infrared absorbing agent.
本发明涉及包含作为红外线吸收剂的氧化铯钨的双层。
The thermal desorption spectra of propene and oxygen adsorbed on blue tungsten oxide WO_ (2.90) have been measured by means of flash heating the sample in ultra high vacuum.
在超高真空条件下,用对样品进行闪烁加热的方法测定了蓝色氧化钨WO _(2.90)吸附丙烯和氧的热脱附谱。
WO_3 is probably the most promising one of various electrochromic materials due to its excellent electrochromic properties, especially the amorphous tungsten oxide films.
非晶态WO_3薄膜具有优良的电致变色特性,被认为是最有发展前景的功能材料之一。