Abstract A molecular simulation analysis of influence of lignosulphonate addition on properties of modified 2-ethyl hexyl acrylate/methyl methacrylate/acrylic acid based pressure sensitive adhesive
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A molecular simulation analysis of influence of lignosulphonate addition on properties of modified 2-ethyl hexyl acrylate/methyl methacrylate/acrylic acid based pressure sensitive adhesive

机译:木质素卟啉添加对丙烯酸甲酯/丙烯酸甲基甲基甲基甲基甲基甲基甲基甲基甲基甲基甲基甲酸甲酯的影响的分子模拟分析

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摘要

AbstractA novel PSA formulation that incorporates a bio-sourced lignosulphonate has been proposed. A molecular dynamics simulation study is attempted to explore the effect of lignosulphonate addition on the adhesion, thermal and mechanical properties of a conventionally used acrylic PSA composed of 2-EHA, MMA and AA. A good agreement of conventional PSA density and glass transition temperature,Tg, with literature estimates confirmed the accuracy of the molecular simulations. It is observed that there is an increase in PSA-substrate interaction energy with an increase in lignosulphonate content despite an increase inTgdue to its addition. This is proposed to be primarily due to an increase in polar groups contributed by lignosulphonate. The availability of more polar groups in bulk and increased density of these groups due to significant migration to interface results in an increase in interfacial energy, and hence, improved PSA adhesion. The shear modulus is observed to increase with increase in lignosulphonate content indicating its effectiveness to resist PSA shear deformation. Simulations suggest that in order to form an industrially useful adhesive, that may work well under RT conditions possessing an optimum cohesive strength and surface adhesion, a PSA formulation with ~15wt.% lignosulphonate may be used.]]>
机译:<![cdata [ 抽象 已经提出了包含生物源性木质素磺酸盐的新型PSA配方。分子动力学模拟研究试图探讨木质素卟啉添加对由2-EHA,MMA和AA组成的常规使用的丙烯酸类PSA的粘附性,热和力学性能的影响。常规PSA密度和玻璃化转变温度的良好一致, T g ,文献估计证实了分子模拟的准确性。观察到虽然增加了Lignosulphonate含量,但虽然增加了 t g 由于它增加了。这提出这主要是由于木质素硫酸盐贡献的极性群体的增加。由于对界面的显着迁移导致界面能量增加,因此,这些组的更高极性群体的可用性和这些组的更高的密度导致界面能量增加,因此改善了PSA粘附性。观察到剪切模量随着木质素磺酸盐含量的增加而增加,表明其有效性地抵抗PSA剪切变形。模拟表明,为了形成工业上有用的粘合剂,可以在具有最佳内聚力和表面粘附的RT条件下工作,这是〜15wt的PSA配方。可以使用%木质素酸酯。 < / ce:抽象-sec> ]]>

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