Floating charge protection type lithium iron phosphate storage battery and application thereof to direct current system of electric power engineering
A technology of lithium iron phosphate and storage battery, which is applied in the field of floating-charge protection type lithium iron phosphate storage battery to achieve the effects of improving durability, realizing independent chemical balance, and solving the problem of small balanced current
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Embodiment 1
[0148] The electrolyte uses a five-component solvent, and the mass ratio of the solvent is EC (ethylene carbonate): EMC (ethyl methyl carbonate): DMC (dimethyl carbonate): DEC (diethyl carbonate): PC (propylene carbonate) 60:5:15:15:5, add redox shuttle additive DDB (2,5-di-tert-butyl-1,4-dimethoxybenzene), its weight percentage is 1%, to obtain redox-containing Electrolyte with Fraxel additive. The electrolytic solution obtained above, together with the positive electrode, the negative electrode and the diaphragm, is made into a fresh initial state self-balancing battery according to the above-mentioned battery manufacturing method.
Embodiment 2
[0150] After recycling the battery prepared in Example 1 for 1000 times, it was maintained in a low dew point environment in the liquid injection room, and the detachable safety valve 5 was disassembled. Electrolyte (the electrolyte prepared in Example 1) supplement and waste gas release, check the state of the sealing gasket, assemble the detachable safety valve 5 according to the set torque after maintenance, and press the sealing gasket 6 to complete the internal maintenance.
Embodiment 3
[0161] like Figure 18 As shown, the battery pack system consists of N modules connected in series to form a battery pack system. Each module is equipped with a BPD. The BPD communicates with the control host computer.
[0162] The composition of BPD is as follows Figure 19 As shown, the entire BPD is composed of a connector, a sampling circuit, a balanced charging circuit, a balanced discharging circuit, and a communication chip. Figure 19 The entire BPD device 100 consists of multiple parts. The connector 200 is used to connect the temperature sensor reserved in the module, the wiring harness for collecting single voltage and the communication wiring harness with other BPDs. The sampling circuit 300 converts the collected analog signal into a digital signal and transmits it to the single chip microcomputer for calculation and processing. Balanced discharge circuit 400, when the information collected by the sampling circuit is sent to the single-chip microcomputer, the ...
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