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Spine1 structural materials are very important functional materials including dielectric, magnetic, sensitive, luminescent and superconductive materials.

尖晶石结构材料是新型功能材料的重要组成,在介电、磁性、敏感、发光、超导等功能材料中占据重要地位,并极具应用潜力。

The plastic alloy because the display coordination synergize affects the large scale and improvement material the performance, its concurrently various components high polymer determined properties, and entrusts with the compound material by the new performance, uses the alloy technology to cause the original material further high performance and the function, has become one of polymer material development tendencies.

塑料合金由于发挥协同增效作用,大幅度改善材料的性能,它兼具各组分高聚物的原有特性,并赋予复合材料以新的性能,采用合金化技术使原有材料进一步高性能化和功能化,已成为聚合物材料发展的趋势之一。

The tetrazine high-nitrogen energetic materials are new kinds of ones researched and reported widely at home and abroad in recent years.

四嗪环是一种含氮质量分数达68.3%的六元氮杂环含能基团,是设计高能钝感含能材料中非常有效的结构单元;四嗪类高氮含能材料也是近年来国内外研究和报道较多的一种新型含能材料,部分具有生成焓高、热稳定性好和感度较低等特点。

The tetrazine high-nitrogen energetic material s are new kinds of ones researched and reported widely at home and abroad in recent years.

四嗪环是一种含氮质量分数达68.3%的六元氮杂环含能基团,是设计高能钝感含能材料中非常有效的结构单元;四嗪类高氮含能材料也是近年来国内外研究和报道较多的一种新型含能材料,部分具有生成焓高、热稳定性好和感度较低等特点。

Tetrazine ring is an energetic nitrogen hexa-heterocyclic group with nitrogen mass fraction of 68.3%,so it is a very effective structure unit in the design of high energetic,insensitive materials.The tetrazine high-nitrogen energetic materials are new kinds of ones researched and reported widely at home and abroad in recent years.

四嗪环是一种含氮质量分数达68.3%的六元氮杂环含能基团,是设计高能钝感含能材料中非常有效的结构单元;四嗪类高氮含能材料也是近年来国内外研究和报道较多的一种新型含能材料,部分具有生成焓高、热稳定性好和感度较低等特点。

The composition, crystal modification and microstructure of Na〓SO〓/SiO〓 CESM are researched by using metallography microscope, X-ray diffractometry, scanning electron microscope and energy dispersive spectroscopy. The results show no new substance appears other than quartz and thenardite, but the crystal modification phenomenon is discovered; quartz and thenardite are combined very well with wetting and mechanical inserting; a dense and continuous microstructure is seen in fractography, but holes and cracks defects are found too.

研究结果表明最终制备出的复合相变储能材料在常温下的主要物相为α—石英和芒硝〓—T,与制备前相同;制备工艺对复合材料的最终的物相变化影响不大,仅仅是制备过程中出现各组份的晶型转变;复合储能材料物相分布较为均匀,预制体粘结良好,两相基本互相包覆,其间仅是因浸润结合而形成的机械嵌合作用;复合储能材料中存在有封闭孔、杂质、未渗区等各种缺陷。

These results above indicated that ordered mesoporous titanosilicate with different Si/Ti molar ratio could be obtained using trimeric surfactant C_(14-2-14-2-14) as templating agent and the Si/Ti ratio could be as low as 5 without the losing of mesostructure ordering.

上述结果说明以自组装能力强的三聚表面活性剂C_(14-2-14-2-14)为模板剂可以制得不同钛含量的介孔硅钛酸盐材料,尤其是可以得到Si/Ti比低至5的高钛含量介孔硅钛酸盐材料,这对于提高此类材料的氧化催化性能有重要意义。

Documentatiojn does not provide sufficient detail of the structure and content of training provided.The statements fail to demonstrate the work experience was supervised by a qualified tradesperson and does not explain how the applicant acquired the full range of trade level skills.Therefore the evidence provided fails to satisfy section 12.1 of the UAC.

你自身提供的材料,RTA-澳洲职业评估委员会认为你提供的材料无法证明你接受过专业和系统的培训;并且你所从事厨师工作时没有一个专业的厨师对你进行过职业指导;同事材料上无法反映出你如何拥有厨师的一系列技能,因此根据职业评估委员会统一评分标准的12章第一条,你无法通过职业评估。

We get patent (patent No. 2009 2013 3016.6) on this new heat insulation material which not only overcomes the discomfort and environmental damage caused by glass fiber and foam material but also avoid damages caused by ultraviolent radiation that can penetrate through sheet iron, concrete, wood and other common heat insulation material.

我集团公司研发的该新型隔热材料专利号:2009 2013 3016.6)的出现不仅解决了以往的玻璃纤维和发泡类材料给人体带来的不适感和环境带来的危害等,而且可阻挡穿透铁皮、混凝土、木材和普通的隔热材料而进入房间的紫外线。

We get patent (patent No. 2009 2013 3016.6) on this new heat insulation material which not only overcomes the discomfortenvironmental damage caused by glass fiberfoam material but also avoid damages caused by ultraviolent radiation that can penetrate through sheet iron, concrete, woodother common heat insulation material.

我集团公司研发的该新型隔热材料专利号:2009 2013 3016.6)的出现不仅解决了以往的玻璃纤维和发泡类材料给人体带来的不适感和环境带来的危害等,而且可阻挡穿透铁皮、混凝土、木材和普通的隔热材料而进入房间的紫外线。

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