Computing stopping power with John Taylor’s TKO formula
TKO, or Taylor knockout formula was created by an old african elephant hunter named John Taylor in the late 1800’s.
His formula dealt with slow moving black powder lead projectiles of the late 1800’s against elephants, and dealt mainly with near miss brain shots that incapacitated them, or simply knocked them out with that near miss to the brain.
EDIT: An Elephant skull is unlike almost any north american game animal skull that we deal with, in that the bread loaf size brain is surrounded by a spongy bone mass, it was the shock imparted to this spongy mass and whether it incapacitated the elephant by having the power to transfer that shock to the elephants brain in a near miss scenario.
The formula is mass x velocity x projectile width in inches divided by 7000.
So a 3006 with a 180 grain bullet at 2700 FPS would be 21.4 roughly.
A 375 with 300 grain bullets roughly doubles that figure.
A .177 10 grain pellet @ 1000 FPS comes in at .25.
A 18 grain exact at 900 FPS would be .51.
My Condor with 25.4 grain King at 970 FPS would be .88.
Jerry’s 70 grain slugs @800 are right at 2.0, we can see why they are so popular, at 2.0 that is a no brainer.
So you can see why we have fans of the quarter bore that use them for hunting small game and tout their effectiveness as game stoppers.
The Ranger 45 shooting a 408 grain bullet at 850 is 22.3, any idea why I consider it to be an elk gun?
Taylors formula was based on slow moving black powder lead projectiles of the day, and for many has lost it’s validity in the time of hyper velocity jacketed expanding bullets and rightly so, for to try to compare any hyper velocity jacketed bullet performance with slow moving heavy big bore lead projectiles is ludacris, there just has not been a formula so far that does it accurately.
It is apples and oranges, it does not work.
But for air gunners, dealing with the same subsonnic velocity lead projectiles, I think we can see correlations in John Taylors formula.
Plug your own numbers in as see what you get. 💡
Pellet weight x velocity x area IE., .177 or .22 or .251 and divide by 7000.
Regards,
Roachcreek
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Looks like a rough formula for converting ball velocity into pressure (psi).
Weight (grains) X Velocity (fps) X Bullet Diameter (inches)
7000 grains (1 lb)
You would need to convert the diameter in inches to feet to pounds/square foot per second which could then be easily converted into pounds/square inch per second…
The thing that bothers me is the per second mixed into the psi number.
Is this the purpose of the formula? It would make sense if the idea was figuring penetration through hard objects of a known density…
Similar to figuring out how hard to stamp a 1″ diameter hole in a 1″ thick piece of mild plate steel with a punching press…. 😉