Hello
I'm playing with lithium cells for a while, harvesting and building packs thinking i know the base stuff and safety but i would like to go a step further:
I do IR test and capacity discharge test but sometimes a cell is testing ok for IR and capacity but once fully charged to 4.2v,
it rest at 4.10-15 after a while and some other (different brands/models) rest at 4.18-19.
Curiously i experience this on older cells that could have more wear and i wonder if it is a sign of that wear or it is just a coincidence with cell construction seating slightly lower than another ?
I do see some at 3.6v nominal instead of 3.7 but datasheet still talk about 4.2 fully charged for both....???
I know used cells could be self discharging but for the one I'm talking about, they drop to that lowered voltage quickly and remain there for weeks/month so it isn't like a cell that self drain in a couple days or less...
I did see worse with lifepo4 A123 26650 that seat at 3.30-3.4v instead of 3.65 but i know they are at 75-80% capacity remaining. (those well known 12s8p modules) I though it was related to the type of cells but i got some less used one that seat a bit higher at 3.45v instead... (don't worry, i didn't mixed them with the others) I did never try a brand new A123 to see if it would rest at 3.6-65 or less, those are more often avalable at 10+ years old and work great even with 20-25% capacity lost.
I wonder if for those cells, we should charge them accordingly? I mean, should we lower the max voltage at which the charger stop ?
Is the cell keep gaining capacity above that rest voltage or just make heat? It was fine with older chemistry to overvolt them to fully charge (pB,nicd/nimh) but i was under the impression that lithium didn't need this? I'm i right
I ask because i lowered the charge voltage with my A123 pack used for home electricity backup. I have a +/-3kwh 16s32p connected to inverter supplying emergency loads.
The inverter has annoying cooling fans and i look for ways to hear them less often. I did assume it may constantly supply extra voltage to the cells to bring them to 3.65 generating more heat for the fans. I lowered the ''charged'' voltage from 58.4 to 55v to help it but the changes are not obvious to see improvements on grid bill or on the fans duty cycle....
I figured out my inverter stay active and supply the load from the DC bus/batteries even if grid is ON without swithing. Furniture clocks never reset but it generate more heat that a system with a transfert switch and run the fans more often...(It is located beside my work counter.)
Was it a good idea to lower the voltage or i just lose capacity from my pack by doing this ?
Also i just bought a Tesla S module and would like to have a quick idea if it is a good deal or if i bought worn out cells, before i break it appart to harvest the cells. i don't have the gears to capacity test a 6s74p (I could patent one but it would take forever to drain 225-250Ah)
This bring me to ask if looking at resting voltage is a sign of wear or just a variable that doesn't matter ?
That pack came well balanced at 3.7per cell, i charged it to 4.2 at 15a rate (ISDT air 8 balance charger). The cells lowered to 4.15v after a short time. Since i don't know exactly how the ISDT figure out the state of fully charged and i did miss the time it stop charging, i made another attempt to charge but at only 1.4a to help with balancing and make sure it won't stop too soon.
And same: I came right after i heard the ''charged'' signal. The instant rest voltage was 4.17-18v but very soon (2-3hours) it returned to 4.15 again.
I was told the pack is 2014 and the car was still displaying range in km around 86-87% of the original range.
Is it a bad sign, or just normal ?
I'm playing with lithium cells for a while, harvesting and building packs thinking i know the base stuff and safety but i would like to go a step further:
I do IR test and capacity discharge test but sometimes a cell is testing ok for IR and capacity but once fully charged to 4.2v,
it rest at 4.10-15 after a while and some other (different brands/models) rest at 4.18-19.
Curiously i experience this on older cells that could have more wear and i wonder if it is a sign of that wear or it is just a coincidence with cell construction seating slightly lower than another ?
I do see some at 3.6v nominal instead of 3.7 but datasheet still talk about 4.2 fully charged for both....???
I know used cells could be self discharging but for the one I'm talking about, they drop to that lowered voltage quickly and remain there for weeks/month so it isn't like a cell that self drain in a couple days or less...
I did see worse with lifepo4 A123 26650 that seat at 3.30-3.4v instead of 3.65 but i know they are at 75-80% capacity remaining. (those well known 12s8p modules) I though it was related to the type of cells but i got some less used one that seat a bit higher at 3.45v instead... (don't worry, i didn't mixed them with the others) I did never try a brand new A123 to see if it would rest at 3.6-65 or less, those are more often avalable at 10+ years old and work great even with 20-25% capacity lost.
I wonder if for those cells, we should charge them accordingly? I mean, should we lower the max voltage at which the charger stop ?
Is the cell keep gaining capacity above that rest voltage or just make heat? It was fine with older chemistry to overvolt them to fully charge (pB,nicd/nimh) but i was under the impression that lithium didn't need this? I'm i right
I ask because i lowered the charge voltage with my A123 pack used for home electricity backup. I have a +/-3kwh 16s32p connected to inverter supplying emergency loads.
The inverter has annoying cooling fans and i look for ways to hear them less often. I did assume it may constantly supply extra voltage to the cells to bring them to 3.65 generating more heat for the fans. I lowered the ''charged'' voltage from 58.4 to 55v to help it but the changes are not obvious to see improvements on grid bill or on the fans duty cycle....
I figured out my inverter stay active and supply the load from the DC bus/batteries even if grid is ON without swithing. Furniture clocks never reset but it generate more heat that a system with a transfert switch and run the fans more often...(It is located beside my work counter.)
Was it a good idea to lower the voltage or i just lose capacity from my pack by doing this ?
Also i just bought a Tesla S module and would like to have a quick idea if it is a good deal or if i bought worn out cells, before i break it appart to harvest the cells. i don't have the gears to capacity test a 6s74p (I could patent one but it would take forever to drain 225-250Ah)
This bring me to ask if looking at resting voltage is a sign of wear or just a variable that doesn't matter ?
That pack came well balanced at 3.7per cell, i charged it to 4.2 at 15a rate (ISDT air 8 balance charger). The cells lowered to 4.15v after a short time. Since i don't know exactly how the ISDT figure out the state of fully charged and i did miss the time it stop charging, i made another attempt to charge but at only 1.4a to help with balancing and make sure it won't stop too soon.
And same: I came right after i heard the ''charged'' signal. The instant rest voltage was 4.17-18v but very soon (2-3hours) it returned to 4.15 again.
I was told the pack is 2014 and the car was still displaying range in km around 86-87% of the original range.
Is it a bad sign, or just normal ?




