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How much tension to break an "E" string????

Texan

667 Neighbor of the Beast.
Aug 15, 2004
3,476
2,838
Houston, TX
Have you ever wondered how much tension it takes to break an "E" on a bass (Ultimate Tensile Strength)? Here are the results...(Yes, I was bored this morning in the lab...)

It took 162.13 ft/lbs to break a .105 steel core E string.

And yes, I am a Geek:D
 

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Interesting. Of course, the strength depends much more on the materials and cross section of the core than the diameter of the string. I am guessing that the strength of a G string would be similar if it used the same core. :ninja:
 
Interesting. Of course, the strength depends much more on the materials and cross section of the core than the diameter of the string. I am guessing that the strength of a G string would be similar if it used the same core. :ninja:

True, the core wire is .022", the core size of the G is .016", so I'm guessing that it will break at 90-110 ft/lbs. I'll test it if I get a chance, I'm curious now.

As a control, I may strip the wires to the bear core to findout if the wrap adds any strength.

Being that we have no idea what grade the material is and that the it's most likely cold rolled, which would increase brittle factor...now I want to experiment more!!!
 
But you're doing a straight pull. Given the way the string bends over the bridge, over the nut, around the tuning peg, and the fact that it is plucked perpendicular to the length of the string, I'd say your test doesn't accurately reflect all of the weaknesses in the string.

Moar tests!

True, but I don't have a fixture that will simulate that. We could guess that the saddle would create a "high tension area" and as a result, it would break at lower tension. But I could be wrong. The plucking vibration could weaken the saddle and nut contact areas, but i'm guessing that would require more tension than the neck could stand and lots of movement, not plausible in normal, even rough aggresive playing.

FYI, the G .016" core broke at 93.28 ft/lbs.
 
sooooooooooo, i came here looking for a breakdown of the difference between guitar and bass in ft lbs (while playing) and found something that has really piqued my interest!!! so i joined lol and btw, back in 97, i broke my e string while playing black velvet about halfway through the song...everything dropped about a quarter step and i had one hell of a time finishing. the strings were a couple months old and i play with a pick fairly aggressively but i dont really pick hard, it's mostly hammerons and pull offs which im sure takes its toll but that is the only e ive ever broken on a bass so i assume it was flawed or weakened.
 
Is 93.28 ft/lbs equivalent to a tension of 93.28 pound-force? I don't understand the unit :rollno: ;)

I realize your question is a year old and you might not see this answer but the unit is pounds (as it clearly says on the computer screen if you click on the photo) as one would expect. Evidently the OP is not so much a geek as a geek-in-training if he cannot get the units right! ;) Or maybe he is a car guy and is just in the habit of using ft-lbs which is a unit of torque or energy, not tension. But even in that case it is ft-lbs not ft/lbs. I can identify with your confusion....

If you look at the Circle K string tension charts the wound bass strings stop at about 60 lbs tension. I think that is close to the practical limit given the sharp bend at the tuning post. The only bass string I've broken was a G string that I was trying to tune up to A# and it broke right at that bend just before I got to A#. It was a 0.045 Fender flatwound string and while the Circle K chart is not gospel, only suggestive, for other brands and styles of strings it would have been off their chart at that frequency. I should have checked that before I tried tuning to A#, eh? :D

Ken
 
Have you ever wondered how much tension it takes to break an "E" on a bass (Ultimate Tensile Strength)? Here are the results...(Yes, I was bored this morning in the lab...)

It took 162.13 ft/lbs to break a .105 steel core E string.

And yes, I am a Geek:D

Interesting resuit. Boy that's an octave above standard. You can tune a low e bass string an entire octave. A .053 guitar low e string takes about 75 pounds of tension to break. How much tension does it take to break a low b .0130 string? I would estimate 200 pounds. Also have you tested other bass strings?