| 1. | Analysis on the microstructure of calcium strontium aluminate sulfate c ement with hydrated setting and its synthesis 硫铝酸锶钙水硬性矿物的合成与显微结构分析 |
| 2. | The systhesized samples are the mixture of different strontium aluminate crystal by means of x - ray diffractometer analysis 对合成样品进行x射线粉晶衍射分析发现,合成物是几种铝酸锶晶体的混合相。 |
| 3. | Cerium ' s luminescence in the strontium aluminate are found that is a breakthrough for inaugurate new cheaper luminescence material 研究中发现了铈在铝酸锶基质中发光,这对开辟更便宜的新型发光材料具有突破性进展。 |
| 4. | Eu2 + ion activated strontium aluminate phosphors are a kind of photoluminescent materials with high brilliance , long afterglow and stable performance 稀土铕离子掺杂的铝酸锶基质发光材料是一类发光亮度高、余辉时间长、性能稳定的长余辉发光材料。 |
| 5. | In the study of cerium activate the strontium aluminate , the x - ray diffraction icon and sem photo are listed , the concentration of cerium that influence the luminescence are discussed 在铈激活的铝酸锶基质中,我们给出了发光体的x射线衍射图和sem图,并讨论了铈的浓度对合成物发光性的影响。 |
| 6. | The abundant and cheap raw material terbium and cerium are selected as the activated dose in this study , their luminescence capability and principium in the strontium aluminate are studied , the afterglow of terbium in the strontium aluminate are discussed 我们选用原料丰富、价格相对便宜的铈、铽分别作为激活剂,分别研究它们在铝酸锶基质中的发光性和发光机理,并对铽在铝酸锶基质中的余辉机理进行了探讨。 |
| 7. | In the study of terbium activate the strontium aluminate , a lot of experiment were done based the changes such as terbium , compounding temperature , reducer etc , the prime concentration of terbium and compounding temperature are confirmed , high quality green terbium actived phosphor are compounded 在铽激活的铝酸锶研究中,就改变铽的含量、合成温度、还原气氛等进行大量的实验,确定了铽最佳掺入量和最佳合成温度,合成了优质铽激活发绿色光的磷光体。 |
| 8. | The influence of chroma is investigated on physical compound of long - persistent red phosphor and strontium aluminate phosphors doped with eu2 + is investigated . lt is found that the long - persistent white phosphor can be acquired when red phosphor and strontium aluminate phosphors are mixed with molar proportion of 100 : 20 研究了红色磷光体与掺eu铝酸盐磷光体的物理复合及对色度的影响,实验发现红色磷光体与铝酸盐磷光体按100 : 20比例混配可获得接近白色长余辉磷光体。 |