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Electrical Resistivity of Wire Arc Sprayed Zn and Cu Coatings for In-Mold-Metal-Spraying

机译:电弧电弧喷涂Zn和Cu涂层用于模塑金属喷涂的电阻率

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Electrical functionalities can be integrated into plastic parts by integrating thermally sprayed metal coatings into the non-conductive base material. Thermally sprayed conducting tracks for power and signal transmission are one example. In this case, the electrical resistance or resistivity of the coatings should be investigated. Therefore, the electrical resistivity of wire arc sprayed Zn and Cu coatings has been investigated. In case of Zn coatings, spray distance, gas pressure and wire diameter could be identified as significant influencing parameters on the electrical resistivity. In contrast, process gas, gas pressure and voltage do have a significant influence on the electrical resistivity of Cu coatings. Through the use of the In-Mold-Metal-Spraying method (IMMS), thermal degradation can be avoided by transferring thermally sprayed coating from a mold insert onto the plastic part. Therefore, the influence of the transfer process on the electrical resistance of the coatings has also been investigated.
机译:通过将热喷涂的金属涂层集成到非导电基材中,可以将电功能集成到塑料部件中。用于电力和信号传输的热喷射导电轨道是一个示例。在这种情况下,应研究涂层的电阻或电阻率。因此,研究了线弧喷涂Zn和Cu涂层的电阻率。在Zn涂层的情况下,可以将喷射距离,气体压力和线径被识别为电阻率的显着影响参数。相比之下,处理气体,气体压力和电压确实对Cu涂层的电阻率产生了显着的影响。通过使用模油金属喷涂方法(Immms),可以通过将热喷涂的涂层从模具插入件转移到塑料部件上来避免热劣化。因此,还研究了转移过程对涂层电阻的影响。

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