ANTISTATIC PACKAGING OF PLASTICIZED BIODEGRADABLE POLYLACTIC ACID / GRAPHENE NANCOMPOSITES

Saif M. Jaseem, N. Ali
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引用次数: 1

Abstract

Poly lactic acid is inexperienced various to organic compound artifact plastics, employed in packaging with graphene that being one atom thick sheet, composed of sp2 carbon atoms organized in an exceedingly flat honeycomb structure .In this analysis victimization plasticizer thymol with composites were ready by an answer casting technique with (0.5-10) % towers Graphene .Experimental work contain morphological (AFM,FTIR), mechanical(Tensile, Tear, Hardness),electrical conductivity Color , contact angle, and TGA . Results hyperbolic electrical physical phenomenon with hyperbolic Graphene and makes the composite less resistive and appropriate to be used as antistatic packaging , increase the strength and tensile modulus and elongation at (0.5-1)% and attenuate in (3-10%)%,Tear Resistance attenuate once the tensile decrease however hardness hyperbolic with graphene .The results of contact angle of pure PLA is 83◦ that hydrophobic and attenuate to 51◦ at PLA/thymol/Graphene 10% percent to get hydrophilic that able to dissipate or promote the decay of electricity and improve method ability of device. Color and Brightness show that attenuate however appropriate for antistatic packaging and have become opacity at 100 percent Graphene. Thermal stability shows that Graphene hydrolysis by oxidization and exfoliation of carbon and also by the functionalization of sheets graphene to hence on the mass loss of composites.
生物可降解聚乳酸/石墨烯纳米复合材料的防静电包装
聚乳酸是一种经验丰富的有机复合人造塑料,用于包装由sp2碳原子组成的极扁平蜂窝结构的单原子厚片状石墨烯。本研究采用(0.5-10)%的石墨烯复配铸造技术制备了增塑剂百里香酚与复合材料。实验工作包括形态学(AFM,FTIR),力学(拉伸,撕裂,硬度),电导率,颜色,接触角和热重。结果双曲型石墨烯与双曲型石墨烯存在双曲型电物理现象,使得复合材料电阻小,适合用作抗静电包装;拉伸模量和伸长率在(0.5-1)%时增加,拉伸模量和伸长率在(3-10%)%时衰减,抗撕裂性随拉伸降低而衰减,但硬度与石墨烯呈双曲线关系。纯PLA的接触角为83◦,为疏水性,在PLA/百里香酚/石墨烯10%时衰减为51◦,得到亲水性,能够消散或促进电的衰减,提高器件的方法能力。颜色和亮度显示衰减,但适合抗静电包装,并已成为不透明的100%石墨烯。热稳定性表明石墨烯通过氧化和碳的剥离以及石墨烯片的功能化而水解,从而导致复合材料的质量损失。
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