taiyangnews 前天 20:34
Refining Paste Composition And Metallization For HJT Cells
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文章探讨了HJT电池生产中高速印刷面临的挑战,以及如何通过优化银浆配方来解决这些问题。关键在于银浆有机成分的改进,包括导电基材、树脂、有机溶剂和添加剂的协同作用,以实现窄开口和高速印刷。文章还展望了HJT电池金属化技术的未来发展,包括降低银耗量、采用先进的金属化技术,以及最终替代银浆的可能性。通过ZBB技术、银包铜浆料、激光转移印刷等手段,HJT电池的银浆消耗有望与TOPCon持平,甚至更低。

🔬 HJT电池银浆由三部分组成:导电基材(如纯银或银包铜粉)、树脂(通常是环氧树脂)以及有机溶剂和添加剂。这些成分之间的兼容性至关重要,不兼容会导致颗粒聚集,进而引发印刷缺陷,如线条扩散、断线或网版堵塞。

⚙️ 优化金属化是HJT电池的关键。目前,行业目标是在大规模生产中实现银耗量降低至30%甚至10%。

💡 先进的金属化技术,如激光转移印刷,可以实现小于20μm的超细栅线,并且纵横比超过50,从而减少银耗量,提高至少0.1%的效率。

🚀 最终目标是完全替代银浆。一些浆料制造商正在研发铜浆解决方案,以降低成本并提高效率。

As screen openings become increasingly narrower, maintaining high-speed printing in HJT cell production is becoming more challenging. Therefore, a paste composition that supports both ultra-narrow screen openings and fast printing speeds is crucial, and this largely depends on the optimization of the paste’s organic composition. A typical HJT silver paste consists of 3 key components. The first is the conductive base, typically made of pure silver or silver-coated copper powder. The second component is the resin, which is usually an epoxy type. The third includes organic solvents and additives. Poor compatibility among these ingredients can lead to particle aggregation, preventing uniform dispersion within the system. This, in turn, can lead to printing defects such as line spreading, broken fingers, or – in more severe cases – screen clogging due to high levels of aggregation. The paste formulation must strike the right balance to ensure smooth and reliable printing. This means achieving synergy between optimized particle size and morphology, a well-matched resin, and effective dispersants – all tailored to perform according to the demands of narrow openings and fast production speeds.

Looking ahead, optimization of metallization is the key for HJT. The roadmap for how to bring HJT’s silver consumption on par with TOPCon is clear – ZBB in combination with 30% silver content of silver-coated copper paste. In the short term, the industry’s goal is to make such, or even an ultra-low 10%, silver consumption a standard in mass production. Advanced metallization techniques, such as laser transfer printing, can also help realize ultra-thin fingers below 20 μm with aspect ratios above 50%. Additionally, they can help reduce silver consumption and improve efficiency by at least 0.1%, according to Fusion. But the eventual and ultimate goal is to replace silver altogether, with several paste makers already working in this direction. At the TaiyangNews High Efficiency Solar Technologies Conference, Fusion also showed a glimpse of the copper paste solutions it is working on (see Fusion PV Paste Solutions Come With Lower Silver Concentration).

This text is an excerpt from the TaiyangNews Cell & Module Technology Trends 2025 report, which can be downloaded for free here.

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HJT电池 银浆 金属化 印刷技术
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