The 7.5 FK (C.I.P.[1]), also known as the 7.5 FK BRNO or the 7.5x27mm, is a bottlenecked rimless centerfire automatic pistol cartridge developed by the Czech firearms and ammunition manufacturer FK Brno Engineering s.r.o.

7.5 FK
TypePistol
Place of originCzech Republic
Production history
DesignerFK Brno Engineering s.r.o.
Designed2009–2014
Produced2014–present
Specifications
Case typeRimless, bottleneck
Bullet diameter7.8 mm (0.307 in)
Land diameter7.51 mm (0.296 in)
Neck diameter8.5 mm (0.335 in)
Shoulder diameter10.8 mm (0.425 in)
Base diameter10.8 mm (0.425 in)
Rim diameter10.80 mm (0.425 in)
Rim thickness1.40 mm (0.055 in)
Case length27 mm (1.063 in)
Overall length35 mm (1.378 in)
Case capacity1.50 cm3 (23.21 gr H2O)
Rifling twist270 mm (1 in 10,63 in)
Primer typeSmall pistol magnum
Maximum pressure350.0 MPa (50,763 psi)
Ballistic performance
Bullet mass/type Velocity Energy
6.16 g (95 gr) FKB S95 JHP 2,000 ft/s (610 m/s) 850 ft⋅lbf (1,150 J)
6.54 g (101 gr) FKB CFN 1,950 ft/s (590 m/s) 850 ft⋅lbf (1,150 J)
Test barrel length: 152mm (6")

History

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The 7.5 BRNO was developed between 2009 and 2014, for the specific purpose of providing high capacity automatic pistols the ability to engage combatant targets at a range of between 75–150 metres (82–164 yd) while retaining more kinetic energy at that range than a 9×19mm Parabellum cartridge can generate at the muzzle/point blank range.[2]

Due to the length of the cartridge, relatively high energy, and the pressure that the cartridge generates, no current high-capacity automatic pistol existed that could accommodate the new caliber. FK BRNO developed a specialized platform to accommodate and use this caliber.

Initially, it was chambered in the all-steel FK BRNO Field Pistol (2015) which had a patented recoil attenuating system, but subsequently FK BRNO developed a polymer version of that design, designated as the FK PSD (2020).[3]

Cartridge dimensions

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7.5 FK maximum C.I.P. cartridge dimensions[1]

The 7.5 FK has 1.50 cm3 (23.21 grain of H2O) cartridge case capacity. Americans would define the shoulder angle at alpha/2 = 30 degrees. The common rifling twist for this cartridge is 270mm (1 in 10.62" inch), 6 grooves, Ø lands = 7.5 mm, Ø grooves = 7.77mm, land width = 3.75 mm, and the primer type is small pistol.

According to C.I.P rulings, the 7.5 FK case can handle up to 350 MPa (50,763 psi) piezo pressure.[citation needed] In C.I.P regulated countries, every pistol cartridge combo has to be proofed at 130% of this maximum C.I.P pressure to certify for sale to consumers.[citation needed]

Characteristics

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The goal of the 7.5 FK project was to create a cartridge with a level of performance that could exceed that of the highly effective 125 gr (8.1 g) JHP .357 Magnum load,[clarification needed] be at least as effective terminally as the 7.62x39mm Russian and 5.56×45mm NATO cartridges when fired from short (8–10 in (20–25 cm)) barrel AK and AR type platforms, and to provide a package small enough to fit a standard-size military automatic pistol. Another goal was to have a flat trajectory and be accurate enough to engage targets at 75–150 m (82–164 yd), which is the most common engagement distance in modern combat situations. [citation needed]

Measurements of standard 7.5 cartridges loaded with 95 gr (6.2 g) bullets showed a muzzle velocity of 2,000 ft/s (610 m/s) out of a 5.3 in (13.46 cm) barrel equal to 4 in (10.16 cm) of free bore and a muzzle energy of 845 foot-pounds force (1,146 J),[4] which is almost 50% higher than the 357 magnum 125 grain JHP when using premium quality high pressure ammunition where the measured muzzle velocity is 1,450 ft/s (440 m/s) and muzzle energy of 584 foot-pounds force (792 J)[2] when fired from a 4 in (10.16 cm) barrel.

More importantly, the 7.5 FK cartridge achieves this without compromising the sectional density of the projectile, which is critical for penetration and stopping power. The 95 gr (6.2 g) 7.5 FK cartridge has a sectional density of 0.150, while the 101 gr (6.5 g) 7.5 FK cartridge has a sectional density of 0.160. In comparison, the 357 magnum 125 cartridge has a sectional density of 0.140. The higher sectional density allows the 7.5 FK projectile to retain higher velocity and lower trajectory at longer ranges, while having significantly deeper penetration,[5] especially since it has 40% more velocity. It is interesting to note that the measured velocity and energy of the 95 grain load 7.5 FK cartridge at the minimum design engagement distance of 75 m (82 yd) is 1,650 ft/s (500 m/s) and 577 foot-pounds force (782 J) respectively.[citation needed] Which is essentially almost the same as what the 125 grain JHP 357 magnum generates at point blank range from the same barrel length.[citation needed]

Performance

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The table below shows common performance parameters for several common automatic pistol calibers using kinetic energy as the main form of power comparison, using premium high-end ammunition using a 5 in (130 mm) barrel.[2]

Caliber Manufacturer Load Mass Velocity fps @ 1m Velocity fps @ 90m Energy ft/lbs @ 1m Energy ft/lbs @ 90m
9mm Luger Cor-Bon JHP p 125 gr 1,250 1,016 434 286
357 Sig Cor-Bon JHP 125 gr 1,425 1,119 564 348
40 S&W Fiocchi JHP 165 gr 1,100 942 450 325
10mm Auto Hornady JHP/XTP 180 gr 1,180 1,004 556 403
5.7x28 FN Speer gold Dot 40 gr 1,790 1,322 285 155
7.5 FK FK BRNO F5 95 gr 2,000 1,610 845 548

The concept of using kinetic energy tables as a measuring method for incapacitating power has been used for almost a century but has been disputed for almost as long by various different authorities, scholars, and writers as it does not take into account the projectile construction and design which may affect terminal performance significantly. It also does not take into account penetration capability which is highly influenced by projectile material, design, and sectional density. Several theories have been published that claim better prediction of incapacitating power than kinetic energy such as Taylor KO index, Hatchers theory, Lethality index, Bekker knock out formula, and Hornady HITS among others.[6] FK BRNO has published their own alternative method which they claim is more efficient and more accurate predictor of incapacitating power which they call Dynamic Shock Index (DSI).[7] They have also published a video showing the 7.5 cartridge being used to hunt large boars where they claim that the terminal ballistics efficiency shown in the video is due to the high DSI of these loads.[8]

Available loads

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7.5 FK bullet types[7]

See also

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References

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  1. ^ a b "C.I.P. TDCC datasheet 7.5 FK" (PDF). C.I.P. Archived (PDF) from the original on 2020-07-06. Retrieved 2021-03-24.
  2. ^ a b c Forker, Bob (2013). Ammo and Ballistics 5th edition. Safari Press. ISBN 978-1571574022.
  3. ^ Friedman, Ed. "FK Brno PSD Multi-Caliber Pistol". Shooting Illustrated. Archived from the original on 2020-12-31. Retrieved 2021-03-24.
  4. ^ FK BRNO PSD Comprehensive Range Review!, retrieved 2021-03-25
  5. ^ FK BRNO 7,5 FK SS, retrieved 2021-03-25
  6. ^ "Terminal Ballistics". www.rathcoombe.net. Retrieved 2021-03-25.
  7. ^ a b "FK Brno Ammuntion Ballistics". www.fkbrno.com. Archived from the original on 2020-11-24. Retrieved 2021-03-25.
  8. ^ Handgun Stopping Power Vs Dynamic Shock Index ; Real Examples using Cal. 7.5 FK Brno, retrieved 2021-03-25