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Discharge Plasma Treatment as an Efficient Tool for Improved Poly(lactide) Adhesive–Wood Interactions

机译:放电等离子体处理作为改善聚(丙交酯)粘合剂木相互作用的有效工具

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摘要

Poly(lactide) (PLA) films obtained by thermoforming or solution-casting were modified by diffuse coplanar surface barrier discharge plasma (300 W and 60 s). PLA films were used as hot-melt adhesive in joints in oak wood. It was demonstrated that lap shear strength increased from 3.4 to 8.2 MPa, respectively, for the untreated and plasma-treated series. Pull-off tests performed on particleboard for the untreated and treated PLA films showed 100% cohesive failure. Pull-off strength tests on solid oak demonstrated adhesion enhancement from 3.3 MPa with the adhesion failure mode to 6.6 MPa with the cohesion failure mode for untreated and treated PLA. XPS revealed that carbonyl oxygen content increased by two-to-three-fold, which was confirmed in the Fourier-transform infrared spectroscopy experiments of the treated PLA. The water contact angle decreased from 66.4° for the pristine PLA to 49.8° after treatment. Subsequently, the surface free energy increased from 47.9 to 61.05 mJ/m2. Thus, it was clearly proven that discharge air plasma can be an efficient tool to change surface properties and to strengthen adhesive interactions between PLA and woody substrates.
机译:通过热成型或溶液铸造获得的聚(丙交酯)(PLA)薄膜通过弥漫性共脉冲表面屏障排出等离子体(300W和60秒)来修饰。 PLA薄膜用作橡木木材的关节中的热熔粘合剂。据证明,对于未处理和等离子体处理的系列,液体剪切强度分别从3.4升至8.2MPa增加。在未处理和处理的PLA膜的刨花板上进行的拉出试验显示100%的内聚失效。固体橡木上的拉出强度试验粘附增强从3.3MPa的粘附性衰竭模式达到6.6MPa,具有未处理和处理的PLA的凝聚力衰竭模式。 XPS揭示了羰基氧含量增加了两到三倍,在处理PLA的傅里叶变换红外光谱实验中证实了这一点。在处理后,水接触角从66.4°降低到原始PLA至49.8°。随后,表面自由能量从47.9增加到61.05 mJ / m 2。因此,清楚地证明,排出空气等离子体可以是改变表面性质的有效工具,并加强PLA和木质基材之间的粘合剂相互作用。

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