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首页> 外文期刊>Polymer engineering and science >TPU/PLA nanocomposites with improved mechanical and shape memory properties fabricated via phase morphology control and incorporation of multi-walled carbon nanotubes nanofillers
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TPU/PLA nanocomposites with improved mechanical and shape memory properties fabricated via phase morphology control and incorporation of multi-walled carbon nanotubes nanofillers

机译:TPU / PLA纳米复合材料具有通过相位形态控制制造的改进的机械和形状记忆性能,并掺入多壁碳纳米管纳米填充物

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Shape memory polymer nanocomposites based on thermoplastic polyurethane (TPU)/polylactic acid (PLA) blends filled with pristine multi-walled carbon nanotubes (MWCNTs) and modified MWCNTs-COOH were fabricated by direct melt blending technique and investigated for its morphology, mechanical, thermal, electrical, and shape memory properties. Morphological characterizations by using transmission electron microscope (TEM) and field emission scanning electron microscope (FESEM) revealed better dispersion of MWCNTs-COOH in the polymer blend, which is attributed to the improved interfacial interactions between the polymer blends and MWCNTs-COOH. Loading of the MWCNTs-COOH in the TPU/PLA blends resulted in the significant improvements in the mechanical properties such as tensile strength and elastic modulus and these effects are more pronounced on increasing the MWCNTs-COOH loading amount, when compared to the pristine MWCNTs filled system. Thermal analysis showed that the glass transition temperature of the blends increases slightly with increasing loading of both pristine and modified MWCNTs in the system. The resistance of nanocomposites decreased from 2 x 10(12) Omega to 3.2 x 10(10) Omega after adding 3% MWCNTs-COOH. The shape memory performance tests showed that the enhancement of shape recovery by 252% could be achieved at 3% MWCNTs loading, when compared to that of TPU/PLA blends.
机译:基于热塑性聚氨酯(TPU)/聚乳酸(PLA)的形状内存聚合物纳米复合材料通过直接熔融共混技术制备填充有原始多壁碳纳米管(MWCNT)和改性的MWCNTS-COOH的混合物,并研究其形态,机械,热,电气和形状内存属性。通过使用透射电子显微镜(TEM)和场发射扫描电子显微镜(FeSEM)的形态学特征在聚合物共混物中更好地分散MWCNTS-COOH,其归因于聚合物共混物和MWCNTS-COOH之间的改进的界面相互作用。在TPU / PLA混合物中加载MWCNTS-COOH导致机械性能的显着改进,例如拉伸强度和弹性模量,并且与填充的原始MWNTS相比,这些效果更加明显,更明显地增加MWCNTS-COOH负载量系统。热分析表明,混合物的玻璃化转变温度随着系统中的原始和改性MWCNT的增加而略微增加。在加入3%MWCNTS-COOH后,纳米复合材料的电阻从2×10(12)Ω至3.2×10(10)ω降低。形状记忆性能测试表明,与TPU / PLA混合物相比,可以在3%MWCNTS负载下实现252%的形状回收的增强。

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