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Physicochemical Characteristics of Solvent Vapor Bonded Polycarbonate

机译:溶剂气相键合聚碳酸酯的理化特性

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In this investigation attempt have been made to develop high throughput state of the art vaporized solvent bonding of transparent polymer such as polycarbonate. Focus has also been given to understand the influence of aggressive chemical environments on the interface and bond strengths. Different solvents such as acetone, dichloromethane, methyl ethyl ketone and chloroform have been used for vaporized solvent bonding of the polymer. Dichloromethane appears to be the best solvent for polycarbonate because the solubility parameter of dichloromethane closely matches with polycarbonate. Therefore, due to stable molecular structure of polycarbonate under vaporized solvent bonding, it is ensured that the physicochemical interaction between polycarbonate and solvent vapor resists the failure of bond when exposed to aggressive environment such as under Ringer's solution. The Fourier transform infrared spectroscopy peak indicates the presence of phenolic O-H functionality, which may attribute to ion induced-dipole interaction of solvents with polycarbonate. There is a considerable increase in bond strength with increasing pressure and scanning electron microscopy images clearly reveals that failure of solvent vapor bonded polycarbonate is essentially cohesive from the polymer resulting in significant improvement in bond strength.
机译:在该研究中,已经尝试开发高通量的现有技术,例如透明聚合物例如聚碳酸酯的汽化溶剂键合。还着重了解了侵蚀性化学环境对界面和粘结强度的影响。不同的溶剂,例如丙酮,二氯甲烷,甲乙酮和氯仿已用于聚合物的汽化溶剂键合。二氯甲烷似乎是聚碳酸酯的最佳溶剂,因为二氯甲烷的溶解度参数与聚碳酸酯非常匹配。因此,由于在汽化溶剂键合下聚碳酸酯具有稳定的分子结构,因此可以确保聚碳酸酯和溶剂蒸气之间的物理化学相互作用在暴露于腐蚀性环境(如林格氏溶液)时能够抵抗键合的失败。傅立叶变换红外光谱峰表明存在酚O-H功能,这可能归因于溶剂与聚碳酸酯的离子诱导偶极相互作用。随着压力的增加,粘合强度有了相当大的提高,并且扫描电子显微镜图像清楚地表明,溶剂蒸汽粘合的聚碳酸酯的失败与聚合物基本上是内聚的,从而导致粘合强度的显着提高。

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