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首页> 外文期刊>Journal of Applied Polymer Science >Fabrication and characterization of HCl-treated clinoptilolite filled ethylene vinyl acetate composite films
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Fabrication and characterization of HCl-treated clinoptilolite filled ethylene vinyl acetate composite films

机译:盐酸处理斜发沸石填充乙烯乙酸乙烯酯复合薄膜的制备与表征

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摘要

As received and HCl treated Clinoptilolite (C)-ethylene vinyl acetate (EVA) composites were prepared via the melt-mixing technique, and extruded through a single-screw extruder to obtain composite strips with an average thickness of 0.5 mm. The films were then characterized for their morphological, structural, thermal, and mechanical properties. Optical micrographs show that at higher C loading, the particles form large agglomerates, resulting in the formation of voids on the surface of the films. With increasing zeolite loading, the films become brittle, resulting in reduced Young's modulus. Acid treatment of the C tends to affect the crystal structure of the zeolite, resulting in poor tensile properties of the HCl-treated zeolite-filled EVA films. Addition of the zeolite also increased the crystallinity of the structure, acting as a nucleating agent in the EVA crystallization. Modeling of the tensile yield data with Pukanszky model indicate that there is poor interfacial adhesion between the polymer matrix and the filler particles. Thermal characterization studies showed that addition of the zeolites retarded the onset degradation temperature of EVA. However, degradation temperatures including Tmax and the final decomposed temperature were increased, suggesting improved thermal stability due to reduced inter-chain mobility in the composite materials as a result of increased zeolite loading.
机译:接收并经过HCl处理的Clinoptilolite(C)-乙烯乙酸乙烯酯(EVA)复合材料通过熔融混合技术制备,并通过单螺杆挤出机挤出,获得平均厚度为0.5 mm的复合材料条。然后对膜的形态,结构,热和机械性能进行表征。光学显微照片显示,在较高的C负荷下,颗粒形成大的团聚物,导致在薄膜表面形成空隙。随着沸石负载的增加,膜变脆,导致杨氏模量降低。 C的酸处理往往会影响沸石的晶体结构,导致HCl处理的沸石填充EVA膜的拉伸性能差。沸石的加入也增加了结构的结晶度,在EVA结晶中用作成核剂。用Pukanszky模型对拉伸屈服数据进行建模表明,聚合物基体与填料颗粒之间的界面粘合性较差。热表征研究表明,沸石的加入阻碍了EVA的起始降解温度。然而,包括Tmax和最终分解温度在内的降解温度增加了,这表明由于沸石负载增加,复合材料中的链间迁移率降低,提高了热稳定性。

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