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PtIr protective coating system for precision glass molding tools: Design, evaluation and mechanism of degradation

机译:PTIR精密玻璃成型工具保护涂层系统:设计,评估和降解机制

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During Precision Glass Molding (PGM), the molding tools have to withstand severe thermo-chemical and thermo-mechanical loads cyclically. To protect their high-quality surface against degradation and increase their service lifetime, protective coatings are applied on the molding tools. In this work, we designed four different PtIr protective coating systems, where the thickness of the PtIr layer and the adhesion layer were varied. Their lifetimes were evaluated and compared using an in-house built testing bench. Among all the studied coating systems, the protective coating, which consists of a 600-nm-thick PtIr layer and a 20-nm-thick Cr adhesion layer, showed the best durability. To understand the degradation mechanism of the coating during actual engineering production, an industrial PGM machine was used and emulation PGM tests were conducted. Detailed sample characterization was performed using an array of complementary techniques including white light interferometry (WLI), scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDX), scanning transmission electron microscopy (STEM) and atom probe tomography (APT). Phenomena such as interdiffusion, oxidation, coating spallation and glass sticking on the coating were observed and are discussed in the context of optimization of the coating's performance and durability.
机译:在精密玻璃成型(PGM)期间,模塑工具必须循环地承受严重的热化学和热机械载荷。为了保护他们的高质量表面免于降解并增加其使用寿命,保护涂层施加在模制工具上。在这项工作中,我们设计了四种不同的PTIR保护涂层系统,其中PTIR层和粘合层的厚度变化。使用内部建造的测试台进行评估并进行评估其寿命。在所有研究的涂料系统中,由600nm厚的PTIR层和20nm厚的Cr粘附层组成的保护涂层显示出最佳耐久性。要了解涂层的降解机制在实际工程生产过程中,使用工业PGM机,进行仿真PGM测试。使用包括白色光干涉测量(WLI)的互补技术阵列进行详细的样品表征,扫描电子显微镜(SEM),能量分散X射线光谱(EDX),扫描透射电子显微镜(茎)和原子探测断层扫描(APT )。观察到涂层上的相互扩散,氧化,涂层脱落和玻璃的现象,并在优化涂层性能和耐用性的背景下讨论。

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