方案摘要
方案下载应用领域 | 能源/新能源 |
检测样本 | 锂电池 |
检测项目 | |
参考标准 | 无 |
Summary Impurities and contaminants in the material used in the production of Li-ion batteries can have catastrophic impacts on the finished products. As such, monitoring of the quality and cleanliness of materials throughout the production process is essential if contaminants are to be found and their sources controlled. This monitoring must start with the raw materials produced at the mine and continue through to the final battery grade powders. This application note demonstrates a scanning electron microscopy (SEM) based solution for automatic detection and identification of impurities in battery raw material powders. By taking samples at different steps of the production process it is possible to identify where contaminants are introduced; thereby allowing sources to be identified and solutions developed.
Summary
Impurities and contaminants in the material used in the production of Li-ion batteries can have
catastrophic impacts on the finished products. As such, monitoring of the quality and cleanliness of
materials throughout the production process is essential if contaminants are to be found and their
sources controlled. This monitoring must start with the raw materials produced at the mine and
continue through to the final battery grade powders.
This application note demonstrates a scanning electron microscopy (SEM) based solution for
automatic detection and identification of impurities in battery raw material powders. By taking
samples at different steps of the production process it is possible to identify where contaminants are
introduced; thereby allowing sources to be identified and solutions developed.
一文了解 EDS 能谱技术发展历程
应用分享|红外辐射全无惧——牛津仪器新型高温 EDS / EBSD 助力原位分析
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