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首页> 外文期刊>Cellular Polymers: An International Journal >A study on the effect of porous CaCO3 on microcellular plastics as an additive for nucleation
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A study on the effect of porous CaCO3 on microcellular plastics as an additive for nucleation

机译:多孔碳酸钙对微孔塑料成核添加剂影响的研究

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Plastics are widely used in industry in that they are light and easily manufactured. Much research is being conducted currently to increase the strengths and to reduce the price of the material.Foaming techniques are used to achieve insulation properties, to reduce weight, and to reduce the material cost. Due to their unique properties, foamed plastics are applied to refrigerator, pipe, and insulators. In 1980, Microcellular foaming was invented at MIT By applying the outstanding foaming technique, many small cells are generated in the polymer matrices and microcellular foamed plastics show relatively high specific strength.We investigated the role of CaCO3, which is one of the most widely used additives in the plastics industry, for nucleation in view of cell morphology. Porous CaCO3 chemically treated to increase the dispersibility and to lower the density was used in this study. Two experiments were conducted in order to check the role of the additive for nucleation. One is the compound-ability test and the other is for the role as nucleation agents.
机译:塑料由于重量轻且易于制造而广泛用于工业中。当前正在进行大量研究以提高强度并降低材料的价格。发泡技术用于实现绝缘性能,减轻重量并降低材料成本。由于其独特的性能,泡沫塑料被应用于冰箱,管道和绝缘子。 1980年,麻省理工学院发明了微孔发泡技术,运用出色的发泡技术,在聚合物基体中产生了许多小孔,微孔发泡塑料表现出相对较高的比强度,我们研究了CaCO3的作用,CaCO3是应用最广泛的泡沫之一考虑到细胞形态,在塑料工业中用于成核的添加剂。本研究中使用了化学处理的多孔CaCO3,以增加分散性并降低密度。为了检查添加剂对成核的作用,进行了两个实验。一种是复合能力测试,另一种是作为成核剂的作用。

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