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首页> 外文期刊>International Journal of Polymeric Materials >Elaboration and Characterization of an Organic/Inorganic Hybrid Material: Effect of the Interface on the Mechanical and Thermal Behavior of PP/CaCO3 Composite
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Elaboration and Characterization of an Organic/Inorganic Hybrid Material: Effect of the Interface on the Mechanical and Thermal Behavior of PP/CaCO3 Composite

机译:有机/无机杂化材料的精细加工和表征:界面对PP / CaCO3复合材料机械和热行为的影响

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The present work deals with the study of the effect of the interfaces on the thermal and mechanical behavior of a composite based on polypropylene and calcium carbonate that was treated with bifunctional coupling agents. In order to enhance the coupling of the filler and the polymer, a compatibilizer, namely maleic anhydride grafted polypropylene, was used. The synthesis of the compatibilizer was carried out in a brabender mixer at 180℃. The grafting reaction was assessed by two techniques that were titration of the anhydride function and identification by means of Fourier transform infrared spectroscopy. It was found that the resulting structure depends much on the nature of the coupling agent. The use. of the treated calcium carbonate had a great effect on the thermal and mechanical properties of the composites. It resulted in an important increase in both the modulus and tensile stress. The extent of reinforcement obtained with the zirconate coupling agent was higher than that of the composite containing the filler treated with the silane coupling agents. The decrease noted in the strain could reflect an important coupling between the filler and the polymer. This coupling was favored by a complex inter-facial structure depending on the individual structure of each coupling agent. The thermal analysis showed that the fusion temperature and the crystallization temperature were not affected by the presence of the filler nor the coupling agents. However, the percentage crystallinity varied with both the amount of the filler and the type of the coupling agent.
机译:本工作涉及界面对用双功能偶联剂处理过的基于聚丙烯和碳酸钙的复合材料的热和机械性能的影响的研究。为了增强填料和聚合物的偶联,使用了相容剂,即马来酸酐接枝的聚丙烯。增容剂的合成在布拉本德混合器中于180℃进行。接枝反应通过两种技术评估:酸酐功能的滴定和傅立叶变换红外光谱法的鉴定。发现所得到的结构在很大程度上取决于偶联剂的性质。使用。碳酸钙的处理量对复合材料的热和机械性能有很大的影响。这导致模量和拉伸应力都显着增加。用锆酸酯偶联剂得到的增强程度高于含有用硅烷偶联剂处理过的填料的复合材料的增强程度。应变的下降可能反映了填料与聚合物之间的重要耦合。取决于每种偶联剂的单独结构,复杂的界面结构有利于这种偶联。热分析表明,熔融温度和结晶温度不受填料和偶联剂存在的影响。但是,结晶度百分数随填料的量和偶联剂的类型而变化。

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