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Photovoltaic industry

Mobile robot logistics solution for high-purity crystalline silicon application scenarios
Mobile robot logistics solution for high-purity crystalline silicon application scenarios
Reduction furnace → water quenching first crushing → water quenching second crushing → water quenching third crushing → horizontal tail beam → packaging and storage
In the application scenario of high-purity crystalline silicon in the photovoltaic industry, SIASUN mobile robots provide efficient logistics solutions. The underdrive lifting mobile robot flexibly shuttles between the reduction furnace and the water quenching and breaking process. With its compact body, it drives into the bottom of the equipment to lift materials for precise transportation. The fork-type mobile robot plays a key role in the horizontal tail beam and packaging and warehousing processes. Its powerful fork-picking ability can smoothly carry heavier materials. The two work together, connect in an orderly manner according to the process flow, reduce manual intervention, improve the speed and accuracy of material flow, ensure the efficient and stable operation of the entire production logistics chain, and improve the production efficiency of photovoltaic high-purity crystalline silicon.
Mobile robot logistics solutions for crystal pulling & slicing application scenarios
Mobile robot logistics solutions for crystal pulling & slicing application scenarios
Material preparation process → Quartz feeding process → Crystal pulling process → Cooling process → Gluing automation → Slicing automation → Degumming automation → Sorting → Packaging → Finished product warehouse → Finished product stacking
In the application scenarios of crystal pulling and slicing in the photovoltaic industry, SIASUN Mobile Robots has built a complete logistics solution. In view of the low degree of automation in processes such as quartz tube preparation, flexible automatic handling equipment is introduced and connected to the crystal pulling furnace production system to achieve automatic preparation, feeding and data sharing and traceability. The underdrive lifting AGV accurately docks the crystal rod material cart, stably transports it between the crystal pulling furnace, buffer area, cutter, and square grinder, and the empty material cart returns automatically. As for the problem of automatic loading and unloading of crystal rods and slicers, customized high-precision handling robots came into being. It can adapt to the differences in loading methods of docking equipment, complex processes, high-precision requirements and harsh environments, ensure the efficient flow of crystal rods in each link, and improve the logistics efficiency and automation level of the entire photovoltaic crystal pulling and slicing production process.
Battery Component Application Scenarios Mobile Robot Logistics Solutions
Battery Component Application Scenarios Mobile Robot Logistics Solutions
One glass production line → One EVA cutting and laying → Cell dicing, loading, and stringing process → Cell layout process → Two EVA cutting and laying → Two glass/back panel glazing processes → Automatic framing process → Junction box gluing and welding → Junction box automatic glue filling
In the application scenarios of battery components in the photovoltaic industry, SIASUN mobile robots have created efficient and intelligent logistics solutions. For processes such as battery cell inspection, single welding, and string welding, fork-type mobile robots use their powerful forking capabilities to accurately carry various material carriers to ensure smooth material flow between processes. In the stacking and lamination of components, the underdrive lifting mobile robot plays a unique advantage. It can flexibly drive into the bottom of the equipment, accurately lift materials and complete delivery. From the initial battery cells to the final packaging and warehousing, a variety of custom-developed mobile robots work together according to the material delivery characteristics and carrier forms of each process to achieve full-process intelligent delivery, which greatly improves the logistics efficiency of photovoltaic battery component production, reduces labor costs and error rates, and enhances the overall level of intelligence and competitiveness of production.
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