首页> 外文期刊>Journal of Applied Polymer Science >Surface energy of corona treated PP, PE and PET films, its alteration as function of storage time and the effect of various corona dosages on their bond strength after lamination
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Surface energy of corona treated PP, PE and PET films, its alteration as function of storage time and the effect of various corona dosages on their bond strength after lamination

机译:电晕处理的PP,PE和PET薄膜的表面能,其变化作为储存时间的功能和各种电晕用量在层压后粘合强度的效果

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The aim of this study was to analyze how corona dosages above recommended levels affect film surface energy and hydrophobic recovery of such treated film surfaces as well as laminate bond strength of laminates made of these films. The adhesive for lamination was a polyurethane-adhesive with a dry film thickness of similar to 5 mu m. Polar and dispersive parts of the surface energy were measured frequently according to DIN 55660-2 (Owens-Wendt-Rabel-and-Kaelble method) for up to 140 days after corona treatment. The corona dosage had a value of up to 280 W min/m(2). Laminate bond strength was measured according to DIN 55543-5. The effect of corona treatment was highest for low-density polyethylene (PE-LD) films, mean for biaxial-oriented polypropylene (PPBO) films, and lowest for biaxial-oriented poly(ethylene terephthalate) (PET-BO) films. With increasing storage time, surface energy decreased, as expected. The higher the effect of corona treatment, the faster the polar part of surface energy decreased. At PE-LD, laminate bond strength increased with a higher corona dosage from 0.05 to 8.87 mN/15 mu m, whereas at PET-BO and PP-BO laminate bond strength was so high that samples teared before delamination during bond strength testing. By our results is shown that corona dosages above recommended levels resulted in higher laminate bond strength. Only at PP-BO a reduction of laminate bond strength due to "overtreatment" was be observed. (C) 2017 Wiley Periodicals, Inc.
机译:本研究的目的是分析高于推荐水平的电晕剂量如何影响这种处理过的薄膜表面的薄膜表面能和疏水恢复以及由这些薄膜制成的层压板的层压粘合强度。用于层压的粘合剂是具有与5μm类似的干膜厚度的聚氨酯粘合剂。通过DIN 55660-2(OWENS-WENDT-RABEL-KAELBER方法)经常测量表面能的极性和分散部件,在电晕处理后长达140天。电晕用量的值高达280W min / m(2)。根据DIN 55543-5测量层压粘合强度。对于低密度聚乙烯(PE-LD)膜,电晕处理的效果最高,对于面向双轴的聚丙烯(PPBO)膜,以及双轴导向的聚(苯二甲酸乙二醇酯)(PET-BO)薄膜的最低。随着储存时间的增加,表面能量随预期的预期降低。电晕处理的效果越高,表面能的极性部分的速度降低。在PE-LD,层压粘合强度随着0.05至8.87mN /15μm的较高的电晕用量而增加,而PET-BO和PP-BO-BOL层压粘合强度如此之高,在粘合强度试验期间撕裂的样品撕裂。结果表明,推荐水平的电晕用量导致较高的层压粘合强度。仅观察到由于“过处”而降低层压粘合强度的降低。 (c)2017 Wiley期刊,Inc。

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