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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Effect of the direct injection plasma (DIP) treatment on the bonding strength of adhesive bonded joints
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Effect of the direct injection plasma (DIP) treatment on the bonding strength of adhesive bonded joints

机译:直喷等离子体(DIP)处理对粘接接头粘接强度的影响

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摘要

The adhesive bonding of thermoplastic materials requires, attributable to the low surface energy, a surface activation. The atmospheric pressure (AP) plasma treatment is a common method to improve the surface characteristics. An entirely new process type is the direct injection plasma (DIP) treatment, which combines the injection molding and the surface activation to a full-inline process. During the cooling phase of the injection molding cycle, a pre-defined area of the molded part can be activated by sending a plasma afterglow through a channel. In preliminary publications, it could be shown that the surface activation leads, dependent on the process parameters, to high surface energies up to a treatment length of more than 500?mm. The aim of the current investigations was to examine the influence factors for high bonding strengths after surface activation. Therefore, in this work, the bonding strengths of DIP-treated surfaces were investigated and compared with the surface energy and the XPS-spectrum along with the treatment length. Based on the DIN standard 1465, the lap shear test method was used to measure the bond strength, which, caused by the application-related test specimen, had to be adjusted for the investigations. Furthermore, for the investigation, two different substrate materials and adhesives were used. With PP, a nonpolar material and, with PA6, a polar material for the substrates were used. As adhesive systems, a polyurethane (PUR) and an epoxy resin system were used, both as multi-component adhesives.
机译:热塑性材料的粘合剂粘合需要归因于低表面能,表面活化。大气压(AP)等离子体处理是改善表面特性的常用方法。完全新的工艺类型是直接喷射等离子体(DIP)处理,它将注射成型和表面活化结合在全内联的过程中。在注射成型循环的冷却阶段期间,通过通过通道发送等离子体的速度,可以通过将等离子体粘合来激活模制部分的预定区域。在初步出版物中,可以表明表面激活引线,取决于工艺参数,高于500Ωmm的高表面能量。目前调查的目的是检查表面活化后高粘合强度的影响因素。因此,在这项工作中,研究了浸渍处理表面的粘合强度并与表面能和XPS光谱以及处理长度进行比较。基于DIN标准1465,使用LAP剪切试验方法测量由应用相关的试样引起的粘合强度,必须进行调整。此外,对于研究,使用两种不同的基材材料和粘合剂。使用PP,非极性材料和PA6,使用用于基板的极性材料。作为粘合系统,使用聚氨酯(PUR)和环氧树脂体系,既像多组分粘合剂一样使用。

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