Процесс производства положительного материала литиевых батарей -Литий - Оборудование для ионных аккумуляторов

Каков процесс производства положительных материалов для литиевых батарей -Литий-ионный аккумулятор Оборудование


30 мая 2023

The performance of lithium -ion battery positive materials directly affects the performance of lithium -ion batteries, and its cost also directly determines the cost of battery costs. There are many industrialized production processes in the positive electrode materials, and the synthesis routes are relatively complicated, and the control of temperature, environment, and impurities is also strict. There are many industrialized production processes in the positive electrode materials, and the synthetic routes are relatively complicated. The control of temperature, environment, and impurities is also strict. Positive materials are important in cobaltate, lithium manganate, lithium iron phosphate, ternary material, etc.(Lithium - Ion Battery Equipment)

波 Burning technology, uses microwave dry new technology to dry lithium -ion battery positive electrode material, solves the time of the drying technology of regular lithium -ion battery positive materials, which makes the capital turn slowly, and the dry depth is insufficient. The specific characteristics are:

1. Use lithium -ion battery positive electrode material microwave dry equipment, fast and fast, and can complete deep drying in a few minutes, which can make the final water content more than one thousandths or more;

2. Dry and uniform, good product dry quality;

3. High -efficiency energy saving, safe and environmental protection of lithium -ion battery positive materials;

4. It has no heat inertia, and the instantaneous heat is easy to control. Microwave sintering lithium ion battery positive materials have the characteristics of fast heating speed, high energy utilization rate, high heating efficiency, and no pollution without pollution, and can improve the uniformity and yield of the product, and improve the micro structure and performance of sintering materials.
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