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PVC Inorganic Hybrids Based on Kaolinite/Urea Intercalates

机译:基于高岭土/尿素的PVC无机杂种嵌入

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Polymer/clay hybrids materials receive much attention due to their interesting mechanical and thermal properties. Composites of poly(vinyl chloride) have been prepared by melt intercalation method using commercial type of pure kaolinite (SAK47), urea intercalated kaolinite (SAK47/urea), and intercalated/exfoliated kaolinite after washing of urea from kaolinite-urea (del. SAK47). In the next step the untreated and treated kaolinite was modified by Bis(2-ethylhexyl)phthalate, DEHP, (SAK47/DEHP, SAK47/urea/DEHP and del. SAK47/DEHP). For the PVC/kaolinite composites the suspension type of PVC with K value 60 was used. Untreated and treated kaolinite samples as well as PVC composites were examined by X-ray diffraction (XRD) and microscopy (SEM). The interactions between kaolinite and modifier were discussed by FTIR-ATR. Tested mechanical properties were improved almost for all PVC mixtures. The highest values of tensile strength and E-modulus were observed for PVC+del.SAK47/DEHP.
机译:聚合物/粘土杂种材料由于其有趣的机械和热性能而受到巨大的关注。使用商业类型的纯高岭石(SAK47),尿素插入高岭石(SAK47 /尿素),尿素在从高岭土 - 尿素洗涤后(Del.Sak47)后尿素后嵌入/剥落的高岭石和插入/剥落的高岭石制备了聚(氯乙烯)的复合材料。 )。在下一步中,通过双(2-乙基己基)邻苯二甲酸酯,DEHP,(SAK47 / DEHP,SAK47 /尿素/ DEHP和DEL。SAK47 / DEHP)改性未处理和处理的高岭石。对于PVC / Kaolinite复合材料,使用具有K值60的PVC的悬浮型。通过X射线衍射(XRD)和显微镜(SEM)检查未处理和处理的高岭石样品以及PVC复合材料。通过FTIR-ATR讨论了高岭石和改性剂之间的相互作用。对于所有PVC混合物,几乎改善了测试的机械性能。对于PVC + Del.SAK47 / DEHP,观察到拉伸强度和E-模量的最高值。

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