Current collector: Reducing the interface resistance between the current collector and the active material and improving the bond strength between the two are important means to improve the performance of 168体育:lithium ion power batteries. Coating a conductive carbon coating on the surface of the aluminum foil and corona treatment on the aluminum foil can effectively reduce the interface impedance of the battery. Compared with ordinary aluminum foil, the use of carbon-coated aluminum foil can reduce the internal resistance of the battery by about 65%, and can reduce the increase in the internal resistance of the battery during use. The AC internal resistance of corona treated aluminum foil c﷽an be reduced by about 20%. In the commonly used 20%~90% SOC range, the overall DC internal resistance is relatively small and the increase is gradually smaller as the depth of discharge increases.
3. The 26650 battery cells designed and manufactured by 168体育:Power Long Battery are optimized in terms of the material, quantity and location of 🌠the tabs.🌠 The battery cells have obvious advantages of low internal resistance and good consistency.
(2) NCM/NCA Battery: The outstanding advantage of ternary lithium material is its high energy density. With 3 kinds of materials, the specific energy density of ternary lithium is the highest. For example, the NCM battery of 811 material has a single energy density of 300Wh/kg, which is almost twice LTO and LFP. Therefore, 168体育:battery NCM is particularly suitable for small and light application scenarios, which can obtain the most energy storage and the longest driving mileage, such as pure EV and electric motorcycles. The low-temperature characteristi🥀cs of NCM are similar to those of LMO, and it can also maintain good activity at low temperatures, and its high-temperature performance is significantly better than LTO. It works at high temperatures and its cycle life will not rapidly decline. Therefore, the operating temperature range NCM is wdier, which can meet various climate conditions in the south and north. The obviously shortcomings of NCM are high cost and poor safety. Because the prices of cobalt, nickel, and aluminum are relatively high, the price of NCM always stay in high, which is not good for promotion in the civilian market. Moreover, NCM with poor stability at high temperatures, and will easily decompose and release oxygen when exposed to heat, causing thermal runaway of the battery, burning or explosion. With higher nickel content of the NCM, the higher energy density, but the lower the safety, so there with great contradictory between high energy density and safety for NCM batteries. Due to the consideration of cost and safety, the application of NCM battery with limited used.
The main manifestations of lithium precipitation are:
Under low temperature conditions, the ionic conductivity of the electrolyte will decrease, ✱the resistance of lithium ions from the positive electrode and the insertion of the negative electrode will be greatly increased, and the increase in the resistance of the negative electrode will be greater, which will cause lithium precipitation.
The battery system reaction process mainly includes four steps: Li+ transport in the electrolyte, crossing the electrolyte/electrode interface membrane, charge transfer, and Li+ diffusion in the active material body. At low temperatures, the rate of each step decreases, which causes the impedance of each step to increase, which leads to aggravation of electrode polarization, and causes problems such as a decrease in low- temperature discharge capacity and lithium precipitation in the negative electrode. The poor low-temperature performance of lithium-ion batteries is mainly due to the following three factors:
1. At low temperatures, the viscosity of the electrolyte increases, and the conductivity decreases;
2. The electrolyte/electrode interface membrane impedance and charge transfer impedance increase;
3. The migr﷽ation rate of lithium ions in the active material body is reduced. As a result, the electrode polarization is increased at low temperatures and the charge and discharge capacity is reduced.