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Surface Characteristics of St-modified CaCO3 Particles by Emulsion Polymerization

机译:通过乳液聚合的ST改性CaCO3颗粒的表面特征

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@@1.Introduction The industrial importance of ground calcium carbonate (GCC) as a filler in composite materials such as plastics, rubbers, paints, encapsulant and paper is well recognized [1]. However, the GCC has some disadvantages itself. The character of conglomerating by its high surface energy, the incompatibility of its high energetic hydrophilic surface with the low energy surface of hydrophobic polymers are problems to be solved before it can be used as functional filler. Some measurements should be taken to improve the property of the calcium carbonate. Surface modification, a key process in functional powder preparation, is commonly used to achieve this purpose. The surface of calcium carbonate is often rendered organophilic by a variety of surface modifiers such as stearic acid, titanate coupling agents, aluminate coupling agents or silane coupling agents[2-3]. Recently, researchers pay more attention to treat calcium carbonate with polymer. In this paper the GCC is modified by means of an emulsion polymerization method.
机译:@@ 1.介绍了碳酸钙(GCC)作为塑料,橡胶,涂料,密封剂和纸等复合材料中碳酸钙(GCC)的工业重要性,均得到很好的认可[1]。但是,GCC本身有一些缺点。通过其高表面能的结晶性的特性,其高能亲水表面与疏水性低能量表面的不相容性是在其用作功能填料之前的问题。应采取一些测量以改善碳酸钙的性质。表面改性,功能粉末制备的关键方法,通常用于达到此目的。碳酸钙的表面通常通过各种表面改性剂如硬脂酸,钛酸钛偶联剂,铝酸酯偶联剂或硅烷偶联剂(硅烷偶联剂)无子系。最近,研究人员更多地注意与聚合物治疗碳酸钙。本文通过乳液聚合方法改性GCC。

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