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Influence of atmospheric pressure plasma process parameters on the mechanical behavior of thermoplastic joints

机译:大气压等离子体工艺参数对热塑性关节力学行为的影响

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The capability of the Atmospheric Pressure Plasma Treatment (APPT) to increase the shear strength of adhesively bonded Single Lap Joints (SLJ) realized with polymeric adherends was investigated, by exploring the different response obtainable by changing the surface-to-nozzle distance and the treatment speed and by considering an industrial application as target. Beyond APPT, abrasion and chemical treatments were also performed and considered as reference. Three thermoplastic resins were used as adherends: polypropylene (PP), polyethylene (PE) and polyamide 66 (PA66). In addition to the mechanical characterization, even the variation of the surface free energy associated with the different combinations of parameters employed for the APPT was evaluated by means of optical contact angle (OCA) measurements. Moreover, for some representative combinations of substrates and APPT parameters, the changes of the polymer chemical structure were assessed by means of infra-red spectroscopy (IR). Finally, the sensitivity of the mechanical behavior to the time between the treatment and the deposition of the adhesive was assessed. The results showed that, in a plasma treated joint, a decrease of the surface-to-nozzle distance assured however an increase of the shear strength with respect to the chemical treated samples, provided that the treatment speed was correspondingly risen up. The trend of the wettability with the process configuration appeared to be consistent with the one exhibited by the joint shear strength, while any apparent influence of the delay time was detectable within 24 h, which allowed to assume that APPT represents a reliable pre-treatment technique for industrial applications.
机译:通过探讨通过改变表面到喷嘴距离和治疗来获得不同的反应来研究大气压等级处理(APPT)的粘接单圈接头(SLJ)的剪切强度来提高用聚合物粘物的剪切强度进行研究速度,通过将工业应用视为目标。除了Appt之外,还进行了磨损和化学处理并被视为参考。使用三种热塑性树脂作为粘附剂:聚丙烯(PP),聚乙烯(PE)和聚酰胺66(PA66)。除了机械表征之外,甚至通过光学接触角(OCA)测量,评估与APPT的不同参数的不同组合相关的表面自由能的变化。此外,对于底物的一些代表性组合,通过红外光谱(IR)评估聚合物化学结构的变化。最后,评估了机械行为对治疗和粘合剂沉积之间的时间的敏感性。结果表明,在等离子体处理的关节中,确保了表面到喷嘴距离的减小但是相对于化学处理的样品的剪切强度的增加,条件是对应于处理速度相应地上升。与过程配置的润湿性的趋势似乎与由关节剪切强度呈现的呈现一致,而延迟时间的任何明显影响在24小时内可检测,这使得Appt占代表可靠的预处理技术适用于工业应用。

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