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首页> 外文期刊>Egyptian journal of petroleum >High performance nature of biodegradable polymeric nanocomposites for oil-well drilling fluids
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High performance nature of biodegradable polymeric nanocomposites for oil-well drilling fluids

机译:用于油井钻井液的可生物降解的聚合物纳米复合材料的高性能

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Multi-walled carbon nanotube (MWCNT) and graphene nanoplatelet reinforced thermoplastic poly(lactic acid) (PLA) biodegradable nanocomposites were designed and prepared using solution casting techniques. The prepared biodegradable polymers are expected to provide an environmentally friendly alternative to petroleum-based polymers. Both nanocomposite systems exhibited better thermal stability and improved mechanical performance over the unreinforced polymer exhibiting excellent strength and degradability. The addition of graphene nanofiller in varied amounts was aimed to enhance the thermal and mechanical properties of the nanocomposites even further and incorporate the outstanding characteristics of graphene nanoplatelets into the nanocomposites. The polymeric nanocomposites showed also superior advantages for oil drilling relevances, automotive lubricating purposes, membrane technology and food packaging. Scanning electron microscopy images indicated a homogeneous dispersion of the nanofiller within the polymeric matrix at low filler loadings and a cluster formation at higher loadings that could be responsible for the polymeric matrix movement restrictions. The enthalpy of mixing (the polymer and the nanofiller) measured could explain the cause of the repulsive interactions between the nanoparticles and the polymeric chains, which created an additional excluded volume that the polymeric segments were restricted to occupy, thus forcing the conformational characteristics of the polymeric chains to deviate away from those of the bulk chains. The prepared polymeric nano composites (poly lactic acid carbon nano tube and poly lactic acid graphene nanoplatelets) were utilized in the formulation of oil-base mud as a viscosifier. The rheological, filtration properties and electrical stability of the oil based mud formulation with the new polymeric nanocomposite were studied and the result compared to the oil-based mud formulation with commercial viscosifier.
机译:利用溶液流延技术设计并制备了多壁碳纳米管(MWCNT)和石墨烯纳米片增强的热塑性聚乳酸(PLA)可生物降解纳米复合材料。预期制备的可生物降解的聚合物将提供石油基聚合物的环保替代品。与未增强的聚合物相比,两种纳米复合材料系统均表现出更好的热稳定性和改善的机械性能,而未增强的聚合物则具有出色的强度和降解性。各种数量的石墨烯纳米填料的加入旨在进一步提高纳米复合材料的热性能和机械性能,并将石墨烯纳米片的杰出特性结合到纳米复合材料中。聚合物纳米复合材料还显示出与石油钻井相关性,汽车润滑目的,膜技术和食品包装方面的优越优势。扫描电子显微镜图像表明,纳米填料在低填料含量下均匀分散在聚合物基质中,而在较高载荷下形成团簇,这可能是造成聚合物基质运动受限的原因。所测量的混合焓(聚合物和纳米填料)可以解释纳米颗粒与聚合物链之间排斥相互作用的原因,这造成了聚合物链段被限制占据的额外排他体积,从而迫使聚合物的构象特征成为可能。聚合链偏离主体链。制备的聚合物纳米复合材料(聚乳酸碳纳米管和聚乳酸石墨烯纳米片)用于油基泥浆的增粘剂配制。研究了具有新型聚合物纳米复合材料的油基泥浆配方的流变,过滤性能和电稳定性,并将结果与​​具有商业增粘剂的油基泥浆配方进行了比较。

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