说明:双击或选中下面任意单词,将显示该词的音标、读音、翻译等;选中中文或多个词,将显示翻译。
您的位置:首页 -> 词典 -> 结晶结构
1)  crystal structure
结晶结构
1.
Mechanical activation effects on crystal structure and chemical reaction activity of maize starch;
机械活化对玉米淀粉结晶结构与化学反应活性的影响
2.
Effects of cooling condition of GF/PP composites made from commingled yarn on the crystal structure of the matrix;
冷却方式对GF/PP复合纱针织物复合材料基体结晶结构的影响
3.
Effect of Equal Channel Angular Extrusion on Crystal Structure and Mechanical Properties of PA1010;
等通道转角挤压对PA1010结晶结构和力学性能的影响
2)  crystalline structure
结晶结构
1.
Characterization of crystalline structure of alumimum oxide and its hydrate;
氧化铝及其水合物的结晶结构表征
2.
Its morphology,microfiber structure and crystalline structure were investigated and compared with those of cotton and flax and ramie fibers by optical microscopy,scanning electron microscope and X-ray diffraction analysis.
利用化学方法提取了毛竹单纤维,通过光学显微镜、扫描电子显微镜和X衍射研究了竹纤维的形态、微观结构和结晶结构,并与棉纤维和麻纤维进行了比较。
3.
After irradiation by()~(60)Co γ-ray,the average degree of polymerization of bamboo cellulose was determined by viscosimetry method,and the crystalline structure were studied by infrared spectra and X-ray diffraction,respectively.
采用60Coγ射线对高聚合度的造纸用竹纤维素浆粕进行辐照处理,用铜氨溶液法测定辐照前后竹纤维素浆粕的平均聚合度,并采用红外光谱法及X射线衍射法研究其结晶结构的变化。
3)  Crystal structure
晶体结构
1.
Synthesis and crystal structure [Cd(phen)_3]_2[PMo~ⅤMo_(11)~ⅥO_(40)] and H_3O[Co(phen)_3]_2[PMo_2~ⅤMo_(10)~ⅥO_(40)];
[Cd(phen)_3]_2[PMo~ⅤMo_(11)~ⅥO_(40)]和H_3O[Co(phen)_3]_2[PMo_2~ⅤMo_(10)~ⅥO_(40)]的合成与晶体结构
2.
Synthesis and Crystal Structure of Zn(Ⅱ) Complex between Bis(3,5-Dinitrobenzoic Acid) and Bis(1,10-phenanthroline);
二(3,5-二硝基苯甲酸)双(1,10-二氮杂菲)锌(Ⅱ)配合物的合成及晶体结构
3.
Synthesis and crystal structure of 2,5-bis(2,4-die thylbenzoyl) terephthalic acid;
2,5-二(2,4-二乙基苯甲酰基)对苯二甲酸的合成及晶体结构
4)  grain structure
晶粒结构
1.
The factors affecting the quality of phosphorized copper anode used for acidic copper electroplating were discussed, including materials, grain structure, phosphorous content and cleaning of anode surface.
主要探讨了影响电镀铜用磷铜阳极质量的因素,包括原材料、铜晶粒结构、磷含量及阳极表面的清洁。
2.
The comparison shows that the thermal etching carried out at a temperature lower than the sintering temperature can obviously reveal the grain structure of Al_2O_3 matrix.
比较表明,在低于烧结温度约150℃下进行的热腐蚀能够清晰地揭示基质Al2O3的晶粒结构,并且与化学的效果不同,保留了金属相粒子。
3.
The grain structure,the crystallographic orientation and the grain boundary character of Al interconnects were measured by using electron backscatter diffraction technique.
采用电子背散射衍射技术(EBSD),测量了微电子器件中A l互连线的晶粒结构、晶体学取向和晶界特征。
5)  crystalline structure
晶相结构
1.
Influence of K_2O impurity on the crystalline structure of cordierite synthesized from waste aluminum slag;
K_2O杂质对铝型材厂工业废渣合成的堇青石材料晶相结构的影响
2.
Effects of preparation methods on crystalline structure of Ni-Mo oxide catalysts;
制备方法对Ni-Mo氧化物催化剂晶相结构的影响
3.
Using the technologies such as X-ray diffraction (XRD) and Scanning electron microscope (SEM), the article discussed the influence of the factors such as crystalline structure of standards and samples and their preparation on the analytical result when analyzing silicon dioxide content in organic glass filler ash with X-ray fluorescence spectrometry (XRF
利用X射线衍射(XRD)和扫描电子显微镜(SEM)等分析技术,探讨了用X射线荧光光谱法(XRF)分析有机玻璃填料灰渣中二氧化硅含量时标样和样品晶相结构及样品制备方法等因素对分析结果的影响。
6)  crystal structure
晶格结构
1.
It was presented that there were different crystal mold and crystal structure of calcined calcium sulfate whiskers and the highest density crystal structure at 600 ℃.
不同温度下煅烧硫酸钙晶须,并用XRD测定煅烧产物的结构,发现其晶型和晶格结构均有变化,600℃左右煅烧的硫酸钙晶须晶格结构最为致密。
2.
The change of BNT crystal structure with that of parameter x was analyzed,and was compared with X-ray diffraction data of Ba6-3xSm8+2xTi18O54(BST) and Ba6-3xEu8+2xTi18O54(BET).
分析了BNT晶格结构随配比x的变化情况,与Ba6-3xSm8+2xTi18O54(BST)、Ba6-3xEu8+2xTi18O54(BET)进行比较,结果表明各离子在ab晶面内的分布对Ba6-3xR8+2xTi18O54(BRT)微波介电性能的影响较大。
3.
The variation in crystal structure and the transport properties of the sample were investigated through FTIR spectrum,Raman spectrum,ρ~T curves and ρ~T fitted curves.
通过样品的红外吸收光谱、Ramam光谱、ρ~T曲线以及ρ~T拟合曲线,研究了样品的晶格结构变化和输运性质。
补充资料:结晶玫瑰
分子式:C10H9Cl3O2
分子量:267.54
CAS号:90-17-5

性质:白色结晶。熔点86-88℃,,沸点280-282℃,微溶于醇,不溶于水。

制备方法:将粉状苛性钾缓缓加入苯甲醛与氯仿乙醚的混合液中,搅拌冷却反应后静置24h,然后减压分馏,收集145-160℃(3.33kPa)馏份,得三氯甲基苄醇,然后与乙酰氯加热回流5h,再精馏即得成品。

用途:用作皂用香精的定香剂,制别适宜于皂用、化妆品用调合香精,在配方中可作协调剂,同时亦有极佳的定香作用。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条