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1)  melamine [英]['meləmi:n]  [美]['mɛlə'min]
蜜胺
1.
Synthesis of sorbitol phosphonate of melamine;
山梨醇磷酸酯蜜胺盐的合成
2.
Fabrication of Supramolecular Nanotubes Based on Barbituric Acid and Melamine Derivatives;
以巴比妥酸和蜜胺衍生物为组件构建的一种新型超分子纳米管
3.
Synthesis of melamine salt of starch phosphate;
淀粉磷酸酯蜜胺盐的合成
2)  melamine-formaldehyde resin
蜜胺树脂
1.
The abamectin microcapsules were prepared by in-situ polymerization process in this work,with melamine-formaldehyde resin and urea-formaldehyde resin as wall materials respectively.
采用原位聚合法,分别使用脲醛树脂和蜜胺树脂两种囊壁材料对生物农药-阿维菌素进行了微胶囊包覆。
2.
The photochromic microcapsules were prepared by in-situ polymerization,using melamine-formaldehyde resin as wall materials and photochromic materials as core materials.
蜜胺树脂为壁材、光致变色材料为芯材,采用原位聚合法制备了具有光致变色性能的微胶囊。
3)  melamine resin
蜜胺树脂
1.
The article explains the synthetic technology and conditions for the highly reactive melamine resin and discusses the influences of proportion of maperial putting temperature, catalyst on the reactive procedure.
本文阐述了高反应活性蜜胺树脂的合成工艺和条件,讨论了投料比,温度、催化剂等因素,对反应过程和树脂性能的影响。
2.
The pure cotton fabrics finished by perfume compound microencapsulation with melamine resin as shell material were described.
论述了用部分醚化的蜜胺树脂作为壁材 ,对香精进行胶囊化制成香精微胶囊 ,再对纯棉织物进行香味整理的过程。
3.
The adsorption behaviour of Rhodium(Ⅲ) on the melamine resin in nitric medium and the relevant factors effecting on the adsorption have been studied.
研究了在硝酸介质中蜜胺树脂对铑的吸附行为及其相关的影响因素,并对其吸附机理进行了初步探
4)  Melam ['me,læm]
蜜白胺
1.
Melam was synthesized from melamine and methane-sulfonic acid,and then reacted with phenol and formaldehyde to synthesize melam phenolic.
以三聚氰胺、甲磺酸为原料合成蜜白胺,用蜜白胺和苯酚、甲醛反应合成蜜白胺酚醛树脂,并对其进行了表征,同时对各步的反应条件进行了优化,还研究了蜜白胺酚醛树脂热稳定性,初步探讨了其阻燃性。
5)  Basofil fiber
蜜胺纤维
1.
Weaving technical of flame retardant viscose/Nomex, flame retardant viscose/Basofil fiber were studied, and the property of blend fabrics were discussed.
本文研究了绿色无机纳米阻燃粘胶纤维的制备及性能、阻燃粘胶/芳纶混纺工艺与织物性能、阻燃粘胶/蜜胺纤维混纺丝工艺与织物性能,并根据消防服不同用途设计几种消防用纺织材料等。
6)  Hexamethylmelamine
六甲蜜胺
补充资料:蜜胺
    分子量  126.13
    性质  白色柱状结晶体。密度1.573g/cm3。熔点354℃。微溶于水。乙二醇、甘油、吡啶,极微溶于乙醇,不溶于乙醚、苯、四氯化碳。加热升华,急剧加热则分解。低毒。在一般情况下较稳定,但在高温下可能会分解放出氰化物。
    应用  主要作为有机合成单体,与甲醛制成三聚氰胺树脂,是一种重要的热固件塑料,也是油漆工业的重要原料。还用于制备纺织物防折防缩处理剂、金属涂料、皮革鞣皮剂、粘合剂、防水剂的交联剂等。作为化学试剂,在有机微量分析中用作测定氮的标准试剂。
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