AOAO‑Lab Launches New‑Generation Complete Lithium‑Battery R&D Equipment to Boost Iteration of Energy‑Storage Battery Technology
(Xiamen, July 10, 2026) Based on the latest data released by GGII (Gaogong Industry Information Institute), China’s energy‑storage battery market has achieved explosive growth, fueling rapid expansion in demand for upstream R‑and‑D equipment. AOAO‑Lab, under Xiamen Ao‑Ao New Energy, has recently launched an upgraded complete‑set scheme for lithium‑battery laboratory‑grade equipment. Targeting research‑and‑development of lithium‑metal batteries and large‑capacity energy‑storage cells, this product fills gaps in high‑end domestic lithium‑battery experimental equipment and keeps pace with technological upgrading across the lithium‑battery sector.
Statistics from GGII show that domestic shipments of energy‑storage batteries surged by 80% year‑on‑year in the first half of 2026. Power‑battery and energy‑storage‑battery manufacturers are speeding up development of new‑generation high‑energy‑density battery cells. Purchases of calenders, vacuum glove boxes, battery‑testing devices and electrode‑preparation equipment by corporate laboratories rose by 45% year‑on‑year. High‑precision experimental equipment has become essential for industrial‑scale application of new‑developed materials.
According to officials from AOAO‑Lab, the newly launched full‑range equipment includes electrode calenders, precision die‑cutting machines, vacuum sealing devices, high‑precision battery capacity testers and low‑high‑temperature environmental test chambers. It supports full‑process experiments for coin‑type batteries, pouch‑type batteries and prismatic energy‑storage batteries. All equipment parameters are optimized complying with newly‑issued mandatory national standards for power‑battery safety, achieving a temperature‑control tolerance of ±0.2℃ and a minimum electrode rolling thickness of 3‑micron, which accommodates research and tests for cutting‑edge materials such as lithium‑iron‑manganese phosphate, innovative Electrolyte and lithium‑metal anodes. Besides, one‑stop supply of experimental consumables including Electrolyte, separators and battery casings is available. This model resolves common troubles for research institutes and battery manufacturers, namely fragmented procurement and mismatched equipment parameters, shortening the R‑D cycle of new materials by roughly 30%.

Samples of this equipment have been delivered to multiple domestic energy‑storage‑battery manufacturers and university‑run new‑energy laboratories. Bulk units are exported to R‑D institutions for energy‑storage projects across the Middle East and Europe, with overseas orders jumping 52% month‑on‑month compared to June.
An industry analyst from GGII commented that future competition within the sector will center on new materials and battery‑safety technology, bringing sustained market benefits for high‑end experimental‑grade equipment suppliers. Specialized manufacturers like AOAO‑Lab can accelerate industrial transformation of cutting‑edge laboratory technology, improve cycle life and lower production costs of energy‑storage batteries, and facilitate high‑quality upgrading of industrial production capacity. As overseas energy‑storage orders expand in the second half of the year, the overall market size for lithium‑battery R‑D equipment will see another round of growth.
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