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设计了含改性松香无苯环的环氧固化体系和无松香的对照体系,分别是无松香体系Ⅰ:丁二醇二缩水甘油醚(BDGE)和甲基六氢苯酐(MeHHPA);无规体系Ⅱ:丙烯酸松香(AR)、BDGE和MeHHPA;有规体系Ⅲ:丙烯酸松香基环氧树脂(ARE,由AR和BDGE预聚而来)和MeHHPA。对三体系的固化反应应用动态示差扫描量热仪(DSC)进行了研究,利用KAS法求得不同转化率下的表观活化能,通过整个反应过程反应活化能的变化,得到了三体系反应的内在机理,结果发现松香基的引入及引入顺序都对固化反应产生影响。 相似文献
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A process for microencapsulation by complex coacervation, introduced by Green and Schleider in 1957, produced a dry powder
form of the liquid biocide tributyltin chloride (TBTCL). Static immersion testing of fiberglass panels painted with the shipbottom
paint formulated with 14% w/w TBTCL microcapsules (10–30 μm diam.) gave excellent test results (0% fouling for up to 49 mo)
when three coats of this paint were applied to panels. Rationale for the extension of protection against attachment and growth
of common marine forms in this formulation are given. 相似文献
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采用自制脱氢松香基甜菜碱功能性两亲分子构筑得到3种形貌均匀的Ni(OH)2/NiOOH微纳米复合材料, 分别为孔径约2 μm的三维珊瑚状、花状空心微球和宽度约100 nm的二维纳米片, 对复合材料的物相组成和形貌结构采用X射线衍射(XRD)、扫描电镜(SEM)和透射电镜(TEM)等技术手段分析表征。结合自制松香基甜菜碱两亲分子红外光谱(FT-IR)、核磁(NMR)结构表征和优异的表面活性推测得到松香基甜菜碱两亲分子构筑3种不同形貌微纳米复合材料的机理;研究表明, 在松香基甜菜碱两亲分子稳定刚性结构的作用下, 通过反应温度控制其吸附能力可构筑出3种形貌分散性较好的氢氧化镍复合材料。 相似文献
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In this study, the synthesis, characterization, and properties of a short oil length chain–stopped(rapid) alkyd resin is investigated. Gum rosin modified alkyd resin (RA-GR) was prepared using soybean oil, phthalic anhydride, glycerin and gum rosin acid. An alkyd modified with benzoic acid (RA-BA) was also prepared for comparison. FTIR analyses and GPC measurements of the alkyds were used for characterization. Other properties such as the viscosity, acid value, and solid content of the final resins were determined. Separately, the synthesized resins were used in paint formulations without any changes in other parameters such as filler, airdrying agents, solvents, etc. Paints were applied to metal and glass surfaces and the effect of gum rosin was investigated by looking at touch and hard drying times, adhesion to metals and gloss changes. Compared to the benzoic acid modified resin (RA-BA), gum rosin modified resin (RA-GR) exhibited remarkable positive effects on the paint with a better adhesion to the metals, and short drying times without any loses in the glosses. 相似文献
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采用自制脱氢松香基甜菜碱功能性两亲分子构筑得到3种形貌均匀的Ni(OH)_2/NiOOH微纳米复合材料,分别为孔径约2μm的三维珊瑚状、花状空心微球和宽度约100 nm的二维纳米片,对复合材料的物相组成和形貌结构采用X射线衍射(XRD)、扫描电镜(SEM)和透射电镜(TEM)等技术手段分析表征。结合自制松香基甜菜碱两亲分子红外光谱(FT-IR)、核磁(NMR)结构表征和优异的表面活性推测得到松香基甜菜碱两亲分子构筑3种不同形貌微纳米复合材料的机理;研究表明,在松香基甜菜碱两亲分子稳定刚性结构的作用下,通过反应温度控制其吸附能力可构筑出3种形貌分散性较好的氢氧化镍复合材料。 相似文献