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Vaporized solvent bonding of polymethyl methacrylate

机译:聚甲基丙烯酸甲酯的汽化溶剂键合

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摘要

This investigation highlights rationale of vaporized solvent bonding for fabrication of transparent polymers such as polymethyl methacrylate (PMMA) in terms of optical transparency and bond strength. Vaporized solvent bonding is employed to fabricate the polymer, and its bonding characteristics with appropriate solvents are analyzed. It is observed that chloroform exhibits superior bonding characteristics in comparison with other solvents such as acetone, ethanol, and dichloromethane. In order to see the effect of prior surface modification carried out by ultraviolet (UV) irradiation and low-pressure plasma, surface energy of the polymer was estimated. It is observed that due to surface modification of PMMA by UV irradiation and low-pressure plasma, surface energy of the polymer increases considerably. However, due to exposure under UV irradiation and low-pressure plasma, molecular weight of PMMA decreases and atomic force microscopy (AFM) studies reveal that the topography of PMMA changes significantly resulting in deterioration of vaporized solvent bonding strength. Therefore, in the case of vaporized solvent bonding, increase in surface energy of the polymer is not a primary factor rather retention of molecular weight is more necessary.
机译:这项研究从光学透明性和粘合强度的角度突出了汽化溶剂粘合在制造透明聚合物如聚甲基丙烯酸甲酯(PMMA)方面的基本原理。使用汽化溶剂键合来制造聚合物,并分析其与适当溶剂的键合特性。可以看出,与其他溶剂(如丙酮,乙醇和二氯甲烷)相比,氯仿显示出优异的键合特性。为了看到通过紫外线(UV)照射和低压等离子体进行的先有表面改性的效果,估算了聚合物的表面能。观察到由于归因于紫外线辐射和低压等离子体对PMMA的表面改性,聚合物的表面能大大增加。然而,由于在紫外线辐射和低压等离子体下暴露,PMMA的分子量降低,原子力显微镜(AFM)研究表明,PMMA的形貌发生了显着变化,从而导致蒸发的溶剂粘合强度下降。因此,在汽化溶剂键合的情况下,聚合物表面能的增加不是主要因素,而是更需要保持分子量。

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