PROPERTIES AND MORPHOLOGY OF UNSATURATED POLYESTER/ACRYLATE-TERMINATED POLYURETHANE/ORGANO-MONTMORIL

来源 :Chinese Journal of Polymer Science | 被引量 : 0次 | 上传用户:zrn851207
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Unsaturated polyester resin(UPR)/acrylate-terminated polyurethane(ATPU)/organo-modified montmorillonite (OMMT)nanocomposites were prepared by the in situ intercalative polymerization method.Samples were prepared by the sequential mixing,i.e.mixture of the ATPU and styrene(S)and OMMT were prepared in the first step;UPR was then added to the pre-intercalates of ATPU/S/OMMT.Results indicate that the mechanical properties and thermal properties of UPR/ATPU/OMMT nanocomposites greatly depend on the amount of ATPU and OMMT.Results show that the addition of ATPU could increase the impact strength of UPR/ATPU composites,but the tensile strength,flexural strength and heat resistance of the materials are obviously decreased.When the weight ratio between UPR,ATPU and OMMT were 82:15:3, the impact strength and heat distortion-temperature of nanocomposite were greatly improved,meanwhile there was little change for other properties of the nanocomposites.The synergistic enhancement effects of ATPU and OMMT on the composites were observed.The structures and morphology of the composites were investigated by X-ray diffraction, scanning electron microscopy and transmission electron microscopy. Unsaturated polyester resin (UPR) / acrylate-terminated polyurethane (ATPU) / organo-modified montmorillonite (OMMT) nanocomposites were prepared by the in situ intercalative polymerization method. Samples were prepared by the sequential mixing, ie mixture of the ATPU and styrene ) and OMMT were prepared in the first step; UPR was then added to the pre-intercalates of ATPU / S / OMMT. Results indicate that the mechanical properties and thermal properties of UPR / ATPU / OMMT nanocomposites greatly depend on the amount of ATPU and OMMT.Results show that the addition of ATPU could increase the impact strength of UPR / ATPU composites, but the tensile strength, flexural strength and heat resistance of the materials is obviously decreased. When the weight ratio between UPR, ATPU and OMMT were 82: 15: 3, the impact strength and heat distortion-temperature of nanocomposite were greatly improved, meanwhile there was little change for other properties of the nanocomposites. The synergistic enhancement effects of ATPU an d OMMT on the composites were observed. Structures and morphology of the composites were investigated by X-ray diffraction, scanning electron microscopy and transmission electron microscopy.
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