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Influence of Surface Treatments on the Mechanical Strength of Hotmelt Adhesive Joints Made of Cartonboards

机译:表面处理对纸箱板热熔胶接缝机械强度的影响

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摘要

The influence of surface treatments including pigment coating, surface sizing and calendering on the mechanical strength of hotmelt adhesive joints in pilot made cartonboards was studied. The mechanical strength of the joints was investigated using the Y-peel test device at 23°C and 50% relative humidity. Some of the samples were investigated with respect to the failure mode by scanning electron microscopy. The surfaces were characterized in terms of surface roughness, surface chemical composition, and adhesion behaviour. A strong adhesive bond displayed fibre tear. In addition to fibre tear, interfacial failure, i.e., failure between the cartonboard and the adhesive, was the main reason for fracture in the bonded assembly. The most important factor controlling the integrity of adhesive joints seemed to be the real contact area. The adhesive joints showed significantly higher strength when the hotmelt adhesive was first applied onto the rougher cartonboard of the assembly and then the smoother cartonboard was pressed on the adhesive than vice versa. The surface roughness of cartonboards mainly depended on whether the surface was pigment coated or not. Calendering displayed only a minor effect. No clear influence of surface chemical composition of the cartonboards on the adhesive joint strength was found due to the fact that changes in surface chemistry in this study also led to changes in surface roughness. The strongest adhesive joint was created between two medium-rough and surface-sized cartonboards.
机译:研究了颜料涂层,表面施胶和压延等表面处理对中试纸板的热熔胶接点机械强度的影响。使用Y型剥离试验装置在23°C和50%相对湿度下研究了接头的机械强度。通过扫描电子显微镜研究了一些样品的失效模式。根据表面粗糙度,表面化学组成和粘附行为表征表面。牢固的粘合力显示纤维撕裂。除纤维撕裂外,界面破坏,即纸板与粘合剂之间的破坏,是粘结组件破裂的主要原因。控制粘合接头完整性的最重要因素似乎是实际的接触面积。当首先将热熔粘合剂施加到组件的较粗糙的硬纸板上,然后将较光滑的硬纸板压在粘合剂上时,粘合剂接头显示出明显更高的强度,反之亦然。硬纸板的表面粗糙度主要取决于表面是否涂有颜料。压延仅显示较小的影响。由于本研究中表面化学的变化也导致表面粗糙度的变化,因此未发现纸板的表面化学成分对粘合接头强度有明显影响。最坚固的粘合缝是在两个中等粗糙度和表面尺寸的硬纸板之间形成的。

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