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  • What is the experimental evidence of side effects of lithium deposition, collected from different angles?

    What is the experimental evidence of side effects of lithium deposition, collected from different angles?

    Sep , 30 2021
    When charging lithium ion battery, Lithium precipitation not only reduces the performance of the battery and greatly shortens the cycle life, but also limits the fast charging capacity of the battery, and may cause disastrous consequences such as combustion and explosion. In a series of articles we will discuss about the problems from the macro scale of lithium-ion battery, working conditions, gra...
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  • Lithium battery cycle data analysis with curves and equations

    Lithium battery cycle data analysis with curves and equations

    Oct , 23 2021
    Generally, cycle life testing will generate a lot of data, which can obtain a lot of information. What analysis and processing can we do with these cycle data? The following summarizes some of the data processing. 1. Charge and discharge curve The charge-discharge curve refers to the curve of the battery's voltage, current, capacity, etc. changing over time during the charging and discharging proc...
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  • Lithium battery cycle data analysis with constant voltage charging current and capacity decay curve

    Lithium battery cycle data analysis with constant voltage charging current and capacity decay curve

    Oct , 29 2021
    Generally, cycle life testing will generate a lot of data, which can obtain a lot of information. What analysis and processing can we do with these cycle data? The following summarizes some of the data processing, continuation from last week’s article. 1. Constant voltage charging current and time Lithium-ion batteries are usually discharged at different currents during use, and often cannot under...
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  • Lithium battery failure model-explain the phenomenon of lithium evolution in graphite anode: part-1

    Lithium battery failure model-explain the phenomenon of lithium evolution in graphite anode: part-1

    Nov , 01 2021
    During the long-cycle cycle, the reversible capacity of the lithium-ion battery will continue to decrease due to the reduction of active materials, the precipitation of metal lithium, the continuous consumption of electrolyte, the increase of internal resistance and thermal runaway. Among them, the lithium evolution phenomenon of the graphite negative electrode is the most important cause of batte...
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  • Lithium battery failure model-explain the phenomenon of lithium evolution in graphite anode: part-2

    Lithium battery failure model-explain the phenomenon of lithium evolution in graphite anode: part-2

    Nov , 01 2021
    During the long-cycle cycle, the reversible capacity of the lithium-ion battery will continue to decrease due to the reduction of active materials, the precipitation of metal lithium, the continuous consumption of electrolyte, the increase of internal resistance and thermal runaway. Among them, the lithium evolution phenomenon of the graphite negative electrode is the most important cause of batte...
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  • Lithium battery failure model-explain the phenomenon of lithium evolution in graphite anode: part-3

    Lithium battery failure model-explain the phenomenon of lithium evolution in graphite anode: part-3

    Nov , 03 2021
    During the long-cycle cycle, the reversible capacity of the lithium-ion battery will continue to decrease due to the reduction of active materials, the precipitation of metal lithium, the continuous consumption of electrolyte, the increase of internal resistance and thermal runaway. Among them, the lithium evolution phenomenon of the graphite negative electrode is the most important cause of batte...
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  • Lithium battery failure model-explain the phenomenon of lithium evolution in graphite anode: part-4

    Lithium battery failure model-explain the phenomenon of lithium evolution in graphite anode: part-4

    Nov , 03 2021
    During the long-cycle cycle, the reversible capacity of the lithium-ion battery will continue to decrease due to the reduction of active materials, the precipitation of metal lithium, the continuous consumption of electrolyte, the increase of internal resistance and thermal runaway. Among them, the lithium evolution phenomenon of the graphite negative electrode is the most important cause of batte...
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  • What are the formulas to do the battery charger sizing calculation?

    What are the formulas to do the battery charger sizing calculation?

    Nov , 03 2021
    From our long experience of providing industrial battery charger solutions to our customers and partners, we have seen that there are some basic questions that are always asked. One of the basic questions we are always asked by our valuable customers is “what are the formulas needed to do the battery charger sizing calculations?” Here we are sharing the basic formulas for your convenience. . CHARG...
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  • Things You Must Know Before Buying A Residential Energy Storage Battery

    Things You Must Know Before Buying A Residential Energy Storage Battery

    Nov , 09 2021
    With the requirement for energy growing by leaps and bounds in all aspects of life, it is wise to save energy for the future, instead of wasting away the excess. This is where a residential energy storage battery comes into the picture. When attached to the grid-based system, the battery stores sustainable energy and supplies it during the times when you cannot gain access to solar power or other ...
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  • Three things the energy storage industry should know about end of battery life

    Three things the energy storage industry should know about end of battery life

    Nov , 12 2021
    In the latest update of Circular Energy Storage’s data on the lithium-ion battery end-of-life market we conclude that over 1.2 million tons of waste batteries will be recycled in 2030. Although it sounds like a massive number, the recycling industry is in fact well prepared and will most probably fight for the volumes. This is good news for the energy storage industry, as it is for all other busin...
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  • Why small, low-cost batteries are generally a poor match for highly capable ohmic battery monitoring products?

    Why small, low-cost batteries are generally a poor match for highly capable ohmic battery monitoring products?

    Nov , 18 2021
    The answer isn’t just cost. There are some contrasts between the differing performance expectations and resource environments of two categories of stationary battery system users. It proposes some simple requirements for battery monitoring at cost-constrained sites with modest-sized stationary battery systems and proposes a solution to providing battery health assessment at such sites. Operators o...
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  • Why high performance battery monitoring solutions suit sophisticated users?

    Why high performance battery monitoring solutions suit sophisticated users?

    Nov , 18 2021
    The battery monitoring industry has made a strong case that today’s ohmic battery monitoring systems are effective at discovering battery weakness well in advance of complete failure. Such systems are employed to increase a user’s certainty that stationary batteries will deliver their rated output when needed, thus preventing application downtime. The need for uptime at a credit card processing si...
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