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Lock time
Lock time or action time refers to the time interval (often measured in milliseconds) from when the trigger of a firearm is activated until the firing pin strikes the primer, and depends on the design of the firing mechanism. A long lock time increases the probability of the shooter pulling the sights away from the target before the bullet has left the barrel, a common shooter error which can lead to poor hits or even misses. Shooters can therefore tend to experience better precision using firearms with a shorter lock time, and short lock times are especially sought after for shooting competitions which require high precision on small targets from unstable positions, such as the standing offhand position.
Measuring lock time
The lock time can be measured electronically, but is often instead calculated mathematically by the manufacturer. Important mathematical design parameters taken into consideration is the spring constant (stiffness), firing pin weight as well as the weight of any other moving parts and length of movement.
The lock time of conventional bolt-action rifles is usually around 2.6 to 9.0 milliseconds. For example, the SIG Sauer 200 STR/SSG 3000 has a relatively short lock time of 2.4 ms. Firearm mechanisms utilizing a hammer are known for having long lock times since the hammer becomes an extra moving part contributing to a longer lock time. For instance, the mil-spec AR-15 and HK416 triggers have a lock time around 10 ms. Firearms with an electric primer can reach lock times close to zero milliseconds.
| Manufacturer and model | Lock time |
|---|---|
| milliseconds | |
| Rößler Titan 3, 6, 16 and Alpha | 1.6 ms |
| Savage 10 AccuTrigger | 1.6 ms |
| Anschütz 1827 Fortner | 1.7 ms |
| SIG Sauer 200 STR | 2.4 ms |
| Remington 700 (short action) | 2.6 ms |
| Winchester Model 70 | 3 ms |
| Remington 700 (long action) | 3 to 3.2 ms |
| Ruger M77 | 3.6 ms |
| M1917 Enfield | 4 to 5 ms |
| Mauser M98 | 4 to 5 ms |
| M1903A Springfield | 5.7 to 6.5 ms |
| Lee–Enfield | 8 to 9 ms |
| AR-15/M4/HK416 | approximately 10 ms |
Improvement of lock time
Aftermarket part kits are available for several production rifles under names such as known as "speedlock". These kits reduce the lock time compared to the factory rifle by using a lighter firing pin and more powerful springs. While ordinary firing pins are usually made of steel, speedlock firing pins are often either made of titanium or a mix of steel and aluminium, which in some cases can reduce the weight of the new firing pin to near half of the original. More powerful springs are used to further increase the firing pin velocity for further decreasing the lock time, as well as increase reliability since the new firing pin has less mass. On hammer fired firearms, a more lightweight hammer and a more powerful hammer spring can also shorten the lock time, but a hammer fired firearm will still have a noticeably longer lock time than mechanisms without a hammer.
Electronic trigger
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To reduce lock time, electronic trigger systems can sometimes be fitted instead of mechanical trigger systems. Electronic trigger systems are mostly found in high-end match arms and can reduce action time by about 90% or one order of magnitude. At very low lock times the dwell time of the bullet or pellet becomes the most influential element. The lock time for an electronic firing circuit with electric ignition of a cartridge can be expected to be around 27 microseconds (0.027 milliseconds). Remington's Model 700 EtronX electronic firing circuit achieves a two orders of magnitude reduction compared to the standard Remington 700 rifle mechanical trigger mechanism.
References
References
- [http://www.davidtubb.com/firingpin-remington-700 Tubb Precision Speedlock Firing Pin - Rem 700 Short Action]
- "Geissele Hi-Speed National Match Trigger manual".
- [https://www.titan6.com/en/downloads#product-catalogue titan6.com - Product Cataloge]
- [https://www.dfs.no/globalassets/documents/skytterkontoret/avdelinger/salg/sauer200str/sigsauerproduktbeskrivelse.pdf dfs.no - SigSauer - Produktbeskrivelse]«Slagtid på tennstempel er 2,4 ms»
- Van Zwoll, Wayne. (2012). "Gun Digest Shooter's Guide to Rifles". Gun Digest Books.
- [https://yarchive.net/gun/rifle/lock_time.html Lock time by Bart Bobbitt]
- [http://www.chuckhawks.com/locktime.htm Locktime by Randy Wakeman]
- [https://archive.org/details/EncyclopediaOfAmericanGunDesignAndPerformance.BookIRifles/page/n73/mode/2up Encyclopedia Of American Gun Design And Performance. Book I Rifles] Section "Ignition", page 68
- Wadham, Rodger. (2012). "The 2012 Complete Book on Lee Enfield Accurizing B&W". lullu.com.
- [http://daystate.com/lock_time/ Lock Time – The Key to an Airgun’s Firing Cycle, http://daystate.com, August 3, 2018]
- [https://www.popularmechanics.com/technology/gear/reviews/a211/1277311/ Remington's Model 700 EtronX Centerfire Target Rifle Redefines The Big Bang Theory, By Cliff Gromer, www.popularmechanics.com, Dec 7, 2004]
- [https://archive.org/details/EncyclopediaOfAmericanGunDesignAndPerformance.BookIRifles/page/n173/mode/2up Encyclopedia Of American Gun Design And Performance. Book I Rifles] Section "Ignition", page 170-171
- Petty, Charles E.. (2000). "Adjustable Sights". American Handgunner.
- [http://jga.anschuetz-sport.com/index.php5%3FproduktID%3D267%26menu%3D99%26sprache%3D1%26produktShow%3Ddetail J.G. ANSCHÜTZ GmbH & Co. KG - Biathlon] «With the extremely light firing pin with only 4 mm travel this rifle got an extremely short lock time of 4 ms, i. e. that the bullet left the barrel after 4 ms after the shot had been released by the trigger. It is of utmost importance for the shooter that the bullet leaves the barrel as fast as possible after shot release to reduce aiming mistakes.»
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